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		<id>https://www.explainxkcd.com/wiki/api.php?action=feedcontributions&amp;feedformat=atom&amp;user=172.69.68.195</id>
		<title>explain xkcd - User contributions [en]</title>
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		<updated>2026-04-15T21:02:29Z</updated>
		<subtitle>User contributions</subtitle>
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	<entry>
		<id>https://www.explainxkcd.com/wiki/index.php?title=1371:_Brightness&amp;diff=214548</id>
		<title>1371: Brightness</title>
		<link rel="alternate" type="text/html" href="https://www.explainxkcd.com/wiki/index.php?title=1371:_Brightness&amp;diff=214548"/>
				<updated>2021-07-02T05:03:48Z</updated>
		
		<summary type="html">&lt;p&gt;172.69.68.195: /* Explanation */ Mentioned absurdity, including two reasons&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;{{comic&lt;br /&gt;
| number    = 1371&lt;br /&gt;
| date      = May 21, 2014&lt;br /&gt;
| title     = Brightness&lt;br /&gt;
| image     = brightness.png&lt;br /&gt;
| titletext = Recently, some exoplanet astronomers have managed to use careful analysis of reflected light to discover Earth during the day.&lt;br /&gt;
}}&lt;br /&gt;
&lt;br /&gt;
==Explanation==&lt;br /&gt;
{{w|Exoplanets}} are planets outside of our solar system, and exoplanet astronomers are astronomers who attempt to discover and study such planets.&lt;br /&gt;
&lt;br /&gt;
[[Megan]] is using a common exoplanet {{w|Exoplanet#Indirect_methods|discovery technique}} to discover a planet around a nearby star. When a planet passes between an observing astronomer and a star, the planet will block some tiny part of the light coming from that star, causing it to appear dimmer for some amount of time. The {{w|Kepler (spacecraft)|Kepler telescope}} used this technique to find evidence for exoplanets.&lt;br /&gt;
&lt;br /&gt;
But here Megan is standing on the surface of the Earth at night, looking at the ground, and therefore presumably looking in the direction of the sun. By observing that it is completely occluded at night, she correctly concludes that the Sun is orbited by at least one planet: the Earth. This is obviously an absurd usage of that method. Reasons include the fact that exoplanets are not big enough to block out all of their stars' light when seen from Earth{{citation need}}, making what Megan says a massive understatement, and that the period of the brightness oscillations would correspond to the length of a day, not a year as it would for exoplanets.&lt;br /&gt;
&lt;br /&gt;
The title text alludes to using more complicated techniques to observe light reflected by small planets like the Earth, for example by detecting {{w|Methods of detecting exoplanets#Polarimetry|polarized light}} reflected from the planet's atmosphere. In some sense, observing the light that reflects off of the Earth during the day is in fact how we see everything around us. It also implies that astronomers, who because of their career choice are more likely to work at night, might be completely unaware of Earth's existence in the daytime and thus surprised to &amp;quot;discover&amp;quot; it from their nighttime work.&lt;br /&gt;
&lt;br /&gt;
==Transcript==&lt;br /&gt;
:[A black panel with white text and a white Megan who is standing staring at the ground.]&lt;br /&gt;
:Megan: Based on this decrease in the star's brightness, I believe it is orbited by at least one planet.&lt;br /&gt;
&lt;br /&gt;
:[Caption below the panel:]&lt;br /&gt;
:Exoplanet astronomers at night&lt;br /&gt;
&lt;br /&gt;
==Trivia==&lt;br /&gt;
*The title text may also be a reference to [[1231: Habitable Zone]] where an astronomer is messed up by someone who puts a mirror in front of the telescope.&lt;br /&gt;
*More details at: {{w|Methods of detecting exoplanets}}.&lt;br /&gt;
&lt;br /&gt;
{{comic discussion}}&lt;br /&gt;
&lt;br /&gt;
[[Category:Comics with inverted brightness]]&lt;br /&gt;
[[Category:Comics featuring Megan]]&lt;br /&gt;
[[Category:Astronomy]]&lt;br /&gt;
[[Category:Exoplanets]]&lt;/div&gt;</summary>
		<author><name>172.69.68.195</name></author>	</entry>

	<entry>
		<id>https://www.explainxkcd.com/wiki/index.php?title=Talk:672:_Suggestions&amp;diff=214530</id>
		<title>Talk:672: Suggestions</title>
		<link rel="alternate" type="text/html" href="https://www.explainxkcd.com/wiki/index.php?title=Talk:672:_Suggestions&amp;diff=214530"/>
				<updated>2021-07-01T16:22:19Z</updated>
		
		<summary type="html">&lt;p&gt;172.69.68.195: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;What is the icon in the third panel supposed to be? --[[User:NeatNit|NeatNit]] ([[User talk:NeatNit|talk]]) 13:40, 26 June 2014 (UTC)&lt;br /&gt;
: Two people being warm against each other. --[[User:Bedunkel|BD]] ([[User talk:Bedunkel|talk]]) 01:14, 20 November 2014 (UTC)&lt;br /&gt;
::So we have a multi millionaire with no life, no respect for anyone's privacy and no moral scruples that has been running this make-believe world since he was a pimply kid and offering the full Monty to any would be Faust.&lt;br /&gt;
::HTF did we let that happen? :~D &lt;br /&gt;
::Oh yes, sexual persuasion. Why do I get the impression this is all going to end badly for everyone involved?&lt;br /&gt;
[[User:Weatherlawyer| I used Google News BEFORE it was clickbait]] ([[User talk:Weatherlawyer|talk]]) 00:09, 28 January 2015 (UTC)&lt;br /&gt;
&lt;br /&gt;
How is Susie &amp;quot;drawn as a sexy version of Megan&amp;quot;? That seems to be a bit of a reach to me. {{unsigned ip|172.68.110.64}}&lt;br /&gt;
: On the other side: How can you tell she isn't ;-) [[Special:Contributions/162.158.90.54|162.158.90.54]] 14:29, 12 June 2019 (UTC)&lt;br /&gt;
::It is objectively false that she is a sexy version of anything. She is a stick figure. I also don't think it makes any sense to call anyone Megan in any xkcd strip unless they are called Megan in that specific strip. Xkcd seldom has continuity of any kind, and imputing it to characters is goofy.&lt;br /&gt;
::If I believed that this wiki should be a source of ultimate truth, I would have removed the line about sexy Megan. Since I think this wiki is a fun collaborative writing project in its own right, I added a citation needed tag to this assertion, because it is funnier that way. If you remove it, or the thing about being sexy Megan, your mom's a ho. [[Special:Contributions/172.68.38.44|172.68.38.44]] 23:58, 24 July 2020 (UTC)&lt;br /&gt;
:::I removed it and think you should have learned the joke before you used it. This community gives real (but sarcastic) explanations on the comic. The &amp;quot;citation needed&amp;quot; joke should be used on things that are universally understood to be true, and should not normally need a citation. The concept of a sexy stick figure isn't that... all I see is more random words with isn't funny except to a mind where random is funny, to whom I direct to xkcd:1210 [[Special:Contributions/172.69.68.195|172.69.68.195]] 16:22, 1 July 2021 (UTC)&lt;/div&gt;</summary>
		<author><name>172.69.68.195</name></author>	</entry>

	<entry>
		<id>https://www.explainxkcd.com/wiki/index.php?title=Talk:672:_Suggestions&amp;diff=214529</id>
		<title>Talk:672: Suggestions</title>
		<link rel="alternate" type="text/html" href="https://www.explainxkcd.com/wiki/index.php?title=Talk:672:_Suggestions&amp;diff=214529"/>
				<updated>2021-07-01T16:21:52Z</updated>
		
		<summary type="html">&lt;p&gt;172.69.68.195: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;What is the icon in the third panel supposed to be? --[[User:NeatNit|NeatNit]] ([[User talk:NeatNit|talk]]) 13:40, 26 June 2014 (UTC)&lt;br /&gt;
: Two people being warm against each other. --[[User:Bedunkel|BD]] ([[User talk:Bedunkel|talk]]) 01:14, 20 November 2014 (UTC)&lt;br /&gt;
::So we have a multi millionaire with no life, no respect for anyone's privacy and no moral scruples that has been running this make-believe world since he was a pimply kid and offering the full Monty to any would be Faust.&lt;br /&gt;
::HTF did we let that happen? :~D &lt;br /&gt;
::Oh yes, sexual persuasion. Why do I get the impression this is all going to end badly for everyone involved?&lt;br /&gt;
[[User:Weatherlawyer| I used Google News BEFORE it was clickbait]] ([[User talk:Weatherlawyer|talk]]) 00:09, 28 January 2015 (UTC)&lt;br /&gt;
&lt;br /&gt;
How is Susie &amp;quot;drawn as a sexy version of Megan&amp;quot;? That seems to be a bit of a reach to me. {{unsigned ip|172.68.110.64}}&lt;br /&gt;
: On the other side: How can you tell she isn't ;-) [[Special:Contributions/162.158.90.54|162.158.90.54]] 14:29, 12 June 2019 (UTC)&lt;br /&gt;
::It is objectively false that she is a sexy version of anything. She is a stick figure. I also don't think it makes any sense to call anyone Megan in any xkcd strip unless they are called Megan in that specific strip. Xkcd seldom has continuity of any kind, and imputing it to characters is goofy.&lt;br /&gt;
::If I believed that this wiki should be a source of ultimate truth, I would have removed the line about sexy Megan. Since I think this wiki is a fun collaborative writing project in its own right, I added a citation needed tag to this assertion, because it is funnier that way. If you remove it, or the thing about being sexy Megan, your mom's a ho. [[Special:Contributions/172.68.38.44|172.68.38.44]] 23:58, 24 July 2020 (UTC)&lt;br /&gt;
:::I removed it and think you should have learned the joke before you used it. This community gives real (but sarcastic) explanations on the comic. The &amp;quot;citation needed&amp;quot; joke should be used on things that are universally understood to be true, and should not normally need a citation. The concept of a sexy stick figure isn't that... all I see is more random words with isn't funny except to a mind where random is funny, to whom I direct to xkcd:1210&lt;/div&gt;</summary>
		<author><name>172.69.68.195</name></author>	</entry>

	<entry>
		<id>https://www.explainxkcd.com/wiki/index.php?title=Talk:2319:_Large_Number_Formats&amp;diff=193415</id>
		<title>Talk:2319: Large Number Formats</title>
		<link rel="alternate" type="text/html" href="https://www.explainxkcd.com/wiki/index.php?title=Talk:2319:_Large_Number_Formats&amp;diff=193415"/>
				<updated>2020-06-13T21:47:19Z</updated>
		
		<summary type="html">&lt;p&gt;172.69.68.195: Why that number?&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;&amp;lt;!--Please sign your posts with ~~~~ and don't delete this text. New comments should be added at the bottom.--&amp;gt;&lt;br /&gt;
&lt;br /&gt;
I've added the way I'm familiar with (Polish) to the &amp;quot;normal person in Europe outside of UK&amp;quot; caveat, but I think this still might be over-generalization to say that all Europe outside UK uses &amp;quot;.&amp;quot; separator; I've actually never seen it used, but I've seen &amp;quot;'&amp;quot; used, even though I have no connection whatsoever with Switzerland. [[Special:Contributions/162.158.154.175|162.158.154.175]] 11:13, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
== Scientist avoiding rounding ==&lt;br /&gt;
&lt;br /&gt;
Would love an explanation of the scientist avoiding rounding one. Would make sense to me with 2.525997..., but as 2.5997... I'm at a loss! {{unsigned ip|198.41.238.106|22:19, 12 June 2020 (UTC)}}&lt;br /&gt;
&lt;br /&gt;
: Truncating the number just before a digit less than 5 so that the final digit is not rounded up. (I do this all the time, and, I am a scientist.) {{unsigned ip|108.162.216.172|00:48, 13 June 2020‎ (UTC)}}&lt;br /&gt;
&lt;br /&gt;
(The above was posted (anonymously?) seconds before I could get mine in, so here it is in the original format.)&lt;br /&gt;
&lt;br /&gt;
This is probably completely irrelevant but it seems Randall made a small typo when trying to show a &amp;quot;Scientest trying to avoid rounding up.&amp;quot;&lt;br /&gt;
I assume it should be 2.525997*10^13. It seems he left out a 5 and a 2 and I say such because whether he forgot the 52 or 25 is up for debate.&lt;br /&gt;
&lt;br /&gt;
Relevant screenshot: [[https://i.imgur.com/NrvOivy.png]]&lt;br /&gt;
&lt;br /&gt;
Also, if I'm just being completely daft and am missing something completely, please feel free to criticize me harshly and I'll go back to my little hideyhole. [[Special:Contributions/108.162.237.24|108.162.237.24]] 22:21, 12 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
: In reality, a scientist would probably say 6.416*10^13 cm. (Although possible counterpoint, this comic is really about the ''number'' 25,259,974,097,204, not the distance 25,259,974,097,204 inches.) [[Special:Contributions/172.69.33.207|172.69.33.207]] 22:47, 12 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
:: Centimetres are not an SI unit. it would be 6.416*10^11 m [[Special:Contributions/172.68.255.14|172.68.255.14]] 01:51, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
I believe the &amp;quot;2.5997&amp;quot; was intentional, or at least I thought it was when reading it. At first I thought it was a typo, but Randall calls that number &amp;quot;Scientist ''trying'' to avoid rounding up&amp;quot; which makes me think Randall intentionally made that &amp;quot;mistake&amp;quot; as if the scientist had accidentally forgotten the first two digits (25) and used the remainder of the number (259974...), rounding it to &amp;quot;2.5997x10^13&amp;quot; [[User:Kirypto|Kirypto]] ([[User talk:Kirypto|talk]]) 23:03, 12 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
: Randall fixed it! [[User:Gvanrossum|Gvanrossum]] ([[User talk:Gvanrossum|talk]]) 05:43, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
: Looks like that was just a typo, Randall replaced it with a new version. [[User:Natg19|Natg19]] ([[User talk:Natg19|talk]]) 02:55, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
As a (not so?) old British person, I approve. Let the Trillions come around later, when it's ''worth'' increasing the prefix to &amp;quot;level 3&amp;quot;. Don't waste them on the more petty numbers. [[Special:Contributions/162.158.155.122|162.158.155.122]] 23:13, 12 June 2020 (UTC)&lt;br /&gt;
:I'm also a not-so-old British person, and therefore use the short-scale as a matter of course. But, although I'm too young to ever have used the long scale, I regret its passing, for all that. On a visual level, if a million gives us a chunk of six zeroes, there's a simple elegance to the &amp;quot;bi-&amp;quot;, &amp;quot;tri-&amp;quot;, &amp;quot;quad-&amp;quot; (etc.) prefixes numerating two chunks, three chunks, four chunks, etc. From a less visual, more linguistically neat perspective, if you've got a million^2, a million^3, a million^4 and so on, then using &amp;quot;bi&amp;quot; to mean two, &amp;quot;tri&amp;quot; to mean three, &amp;quot;quad&amp;quot; to mean four makes sense...because that's what those things mean.[[User:Yorkshire Pudding|Yorkshire Pudding]] ([[User talk:Yorkshire Pudding|talk]]) 10:32, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
== &amp;quot;Engineering&amp;quot; notation omitted? ==&lt;br /&gt;
&lt;br /&gt;
I find it somewhat strange that Randall doesn't offer '''25e12''' or any of those variants ('''25.259...*10^12'''). I feel like a lot of &amp;quot;non-normal&amp;quot; people would map billion to E12 instead of requiring a single digit to the left of the decimal point. shrug [[User:JohnHawkinson|JohnHawkinson]] ([[User talk:JohnHawkinson|talk]]) 23:09, 12 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
: Honestly I thought &amp;quot;engineering&amp;quot; notation was a myth invented by HP's calculator division. But I'm personally offended that the programmers' notation 25_259_... was omitted. Maybe Randall still uses Python 2. :-) [[User:Gvanrossum|Gvanrossum]] ([[User talk:Gvanrossum|talk]]) 05:47, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
::Well, just because HP's calculator division invented something doesn't mean it's a myth. They do have the power to invent things and had the market penetration for their names to have power and influence the world; but for sure, having used HP calculators in high school affected how I thought about numbers in college. But I think anyone who works with SI prefixes on a regular basis and reports results using them will appreciate &amp;quot;engineering&amp;quot; notation given the direct correspondence. And, of course, it also corresponds to how &amp;quot;normal&amp;quot; people use write numbers in the millions/billions/trillions, as this comic shows…which was the point… [[User:JohnHawkinson|JohnHawkinson]] ([[User talk:JohnHawkinson|talk]]) 12:03, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
==Actual scientist: ==&lt;br /&gt;
&lt;br /&gt;
&amp;quot;What's an inch?&amp;quot; [[Special:Contributions/162.158.62.119|162.158.62.119]] 23:18, 12 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
: The imaginary nano-scale multiple of the speed of light times Planck's constant. Which, dimensionally, would seem to be kg.m³/s²? [[Special:Contributions/162.158.154.73|162.158.154.73]] 00:15, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
As an article pointed out to me the other day that seemed obvious after it was said it's a non-tariff trade barrier used as American protectionism that doesn't get tariffed back. {{unsigned ip|172.69.63.81|00:10, 13 June 2020 (UTC)}}&lt;br /&gt;
&lt;br /&gt;
== Can someone explain the set theory notation? ==&lt;br /&gt;
&lt;br /&gt;
Can someone explain the set theory notation? {{unsigned ip|172.68.255.14|01:56, 13 June 2020 (UTC)}}&lt;br /&gt;
&lt;br /&gt;
: You can use only sets to construct the natural numbers, see https://en.wikipedia.org/wiki/Natural_number#Constructions_based_on_set_theory - {{unsigned ip|172.68.215.76|02:20, 13 June 2020 (UTC)}}&lt;br /&gt;
&lt;br /&gt;
==Title Text 10^13.4024==&lt;br /&gt;
&lt;br /&gt;
It seems nobody has pointed out that the power of 10 in the title text is really just the log(x) of the number, which is in fact very common in scientific contexts -&amp;gt; log(25,259,974,097,204) = 13.4024 [[User:Ianrbibtitlht|Ianrbibtitlht]] ([[User talk:Ianrbibtitlht|talk]]) 02:31, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
The alternative would be for him to write 10^13.402432900872993447734410070128 (Rounded up). Notation that produces a longer string of digits than the original number seems useless on all fronts but somehow even more fun. I like the current explanation, though. It was insightful, IMO. -B- [[Special:Contributions/162.158.106.126|162.158.106.126]] 17:14, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
== Old Sweden ==&lt;br /&gt;
We have kept the olden ways here in the north. Miljon (10^6), miljard (10^9), biljon (10^12), biljard (10^15). Also, &amp;quot;biljard&amp;quot; is the same word as the game of pool in Swedish.&lt;br /&gt;
[[User:Embridioum|Embridioum]] ([[User talk:Embridioum|talk]]) 07:17, 13 June 2020 (UTC)&lt;br /&gt;
:Another thing an Older British Person might argue about is Billiards, the cue-and-ball game. Often, among all the vaiations, it was the three-ball version (white and white-spot cueballs, for each player, and red ball as the common target) on either pocketted or non-pocketted tables (the former mostly as a sop to using an unmodified snooker table) or, explicitly, Bar Billiards with target holes and obstacle pegs (quite common as early coin-operated pay-to-play tables). Only by succumbing to the americanism was Pool (usually 15-ball, spots+stripes+8ball) ever called billiards. Well, ''I'' thought that was interesting... [[Special:Contributions/162.158.159.136|162.158.159.136]] 12:49, 13 June 2020 (UTC)&lt;br /&gt;
::&amp;quot;Why sure I'm a billiard player, certainly mighty proud to say, I'm always mighty proud to say it. I consider that the hours I spend with a cue in my hand are golden.&amp;quot; -Harold Hill [[Special:Contributions/108.162.216.60|108.162.216.60]] 14:34, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
Also Italian uses the long scale for large numbers, and also in Italian the word for the game of pool coincides with 10^15. Albeit I have to say that I've never heard anyone use bilione and biliardo referring to numbers. We usually stop at miliardo, saying things like &amp;quot;un milione di miliardi&amp;quot; when we need to say those large numbers, or use the scientific notation. --[[Special:Contributions/172.68.198.106|172.68.198.106]] 09:04, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
While we're on different languages, how about this one: 1262998704860-vingt-quatre - French person. --[[User:IByte|IByte]] ([[User talk:IByte|talk]]) 11:11, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
:Russian uses the short scale, like million, billion, trillion, quadrillion, etc. But it calls a billion a milliard, and a thousand milliards is a trillion. Why? [[Special:Contributions/172.69.68.195|172.69.68.195]] 18:09, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
== Why *that* number? ==&lt;br /&gt;
OK, so it's a big number (well, maybe not compared to all the other numbers).  One oddity is that the prime factors are:&lt;br /&gt;
&lt;br /&gt;
2 2 7 11 82012902913&lt;br /&gt;
&lt;br /&gt;
7 11?  Subliminal advertising?  If you turn the big prime upside-down calculator style, you get:  eigzogzlos8&lt;br /&gt;
&lt;br /&gt;
I'm surprised that 5 and 23 are missing.  In fact, that's almost suspicious.&lt;/div&gt;</summary>
		<author><name>172.69.68.195</name></author>	</entry>

	<entry>
		<id>https://www.explainxkcd.com/wiki/index.php?title=Talk:2319:_Large_Number_Formats&amp;diff=193408</id>
		<title>Talk:2319: Large Number Formats</title>
		<link rel="alternate" type="text/html" href="https://www.explainxkcd.com/wiki/index.php?title=Talk:2319:_Large_Number_Formats&amp;diff=193408"/>
				<updated>2020-06-13T18:09:44Z</updated>
		
		<summary type="html">&lt;p&gt;172.69.68.195: /* Old Sweden */ + Russia.&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;&amp;lt;!--Please sign your posts with ~~~~ and don't delete this text. New comments should be added at the bottom.--&amp;gt;&lt;br /&gt;
&lt;br /&gt;
I've added the way I'm familiar with (Polish) to the &amp;quot;normal person in Europe outside of UK&amp;quot; caveat, but I think this still might be over-generalization to say that all Europe outside UK uses &amp;quot;.&amp;quot; separator; I've actually never seen it used, but I've seen &amp;quot;'&amp;quot; used, even though I have no connection whatsoever with Switzerland. [[Special:Contributions/162.158.154.175|162.158.154.175]] 11:13, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
== Scientist avoiding rounding ==&lt;br /&gt;
&lt;br /&gt;
Would love an explanation of the scientist avoiding rounding one. Would make sense to me with 2.525997..., but as 2.5997... I'm at a loss! {{unsigned ip|198.41.238.106|22:19, 12 June 2020 (UTC)}}&lt;br /&gt;
&lt;br /&gt;
: Truncating the number just before a digit less than 5 so that the final digit is not rounded up. (I do this all the time, and, I am a scientist.) {{unsigned ip|108.162.216.172|00:48, 13 June 2020‎ (UTC)}}&lt;br /&gt;
&lt;br /&gt;
(The above was posted (anonymously?) seconds before I could get mine in, so here it is in the original format.)&lt;br /&gt;
&lt;br /&gt;
This is probably completely irrelevant but it seems Randall made a small typo when trying to show a &amp;quot;Scientest trying to avoid rounding up.&amp;quot;&lt;br /&gt;
I assume it should be 2.525997*10^13. It seems he left out a 5 and a 2 and I say such because whether he forgot the 52 or 25 is up for debate.&lt;br /&gt;
&lt;br /&gt;
Relevant screenshot: [[https://i.imgur.com/NrvOivy.png]]&lt;br /&gt;
&lt;br /&gt;
Also, if I'm just being completely daft and am missing something completely, please feel free to criticize me harshly and I'll go back to my little hideyhole. [[Special:Contributions/108.162.237.24|108.162.237.24]] 22:21, 12 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
: In reality, a scientist would probably say 6.416*10^13 cm. (Although possible counterpoint, this comic is really about the ''number'' 25,259,974,097,204, not the distance 25,259,974,097,204 inches.) [[Special:Contributions/172.69.33.207|172.69.33.207]] 22:47, 12 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
:: Centimetres are not an SI unit. it would be 6.416*10^11 m [[Special:Contributions/172.68.255.14|172.68.255.14]] 01:51, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
I believe the &amp;quot;2.5997&amp;quot; was intentional, or at least I thought it was when reading it. At first I thought it was a typo, but Randall calls that number &amp;quot;Scientist ''trying'' to avoid rounding up&amp;quot; which makes me think Randall intentionally made that &amp;quot;mistake&amp;quot; as if the scientist had accidentally forgotten the first two digits (25) and used the remainder of the number (259974...), rounding it to &amp;quot;2.5997x10^13&amp;quot; [[User:Kirypto|Kirypto]] ([[User talk:Kirypto|talk]]) 23:03, 12 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
: Randall fixed it! [[User:Gvanrossum|Gvanrossum]] ([[User talk:Gvanrossum|talk]]) 05:43, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
: Looks like that was just a typo, Randall replaced it with a new version. [[User:Natg19|Natg19]] ([[User talk:Natg19|talk]]) 02:55, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
As a (not so?) old British person, I approve. Let the Trillions come around later, when it's ''worth'' increasing the prefix to &amp;quot;level 3&amp;quot;. Don't waste them on the more petty numbers. [[Special:Contributions/162.158.155.122|162.158.155.122]] 23:13, 12 June 2020 (UTC)&lt;br /&gt;
:I'm also a not-so-old British person, and therefore use the short-scale as a matter of course. But, although I'm too young to ever have used the long scale, I regret its passing, for all that. On a visual level, if a million gives us a chunk of six zeroes, there's a simple elegance to the &amp;quot;bi-&amp;quot;, &amp;quot;tri-&amp;quot;, &amp;quot;quad-&amp;quot; (etc.) prefixes numerating two chunks, three chunks, four chunks, etc. From a less visual, more linguistically neat perspective, if you've got a million^2, a million^3, a million^4 and so on, then using &amp;quot;bi&amp;quot; to mean two, &amp;quot;tri&amp;quot; to mean three, &amp;quot;quad&amp;quot; to mean four makes sense...because that's what those things mean.[[User:Yorkshire Pudding|Yorkshire Pudding]] ([[User talk:Yorkshire Pudding|talk]]) 10:32, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
== &amp;quot;Engineering&amp;quot; notation omitted? ==&lt;br /&gt;
&lt;br /&gt;
I find it somewhat strange that Randall doesn't offer '''25e12''' or any of those variants ('''25.259...*10^12'''). I feel like a lot of &amp;quot;non-normal&amp;quot; people would map billion to E12 instead of requiring a single digit to the left of the decimal point. shrug [[User:JohnHawkinson|JohnHawkinson]] ([[User talk:JohnHawkinson|talk]]) 23:09, 12 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
: Honestly I thought &amp;quot;engineering&amp;quot; notation was a myth invented by HP's calculator division. But I'm personally offended that the programmers' notation 25_259_... was omitted. Maybe Randall still uses Python 2. :-) [[User:Gvanrossum|Gvanrossum]] ([[User talk:Gvanrossum|talk]]) 05:47, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
::Well, just because HP's calculator division invented something doesn't mean it's a myth. They do have the power to invent things and had the market penetration for their names to have power and influence the world; but for sure, having used HP calculators in high school affected how I thought about numbers in college. But I think anyone who works with SI prefixes on a regular basis and reports results using them will appreciate &amp;quot;engineering&amp;quot; notation given the direct correspondence. And, of course, it also corresponds to how &amp;quot;normal&amp;quot; people use write numbers in the millions/billions/trillions, as this comic shows…which was the point… [[User:JohnHawkinson|JohnHawkinson]] ([[User talk:JohnHawkinson|talk]]) 12:03, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
==Actual scientist: ==&lt;br /&gt;
&lt;br /&gt;
&amp;quot;What's an inch?&amp;quot; [[Special:Contributions/162.158.62.119|162.158.62.119]] 23:18, 12 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
: The imaginary nano-scale multiple of the speed of light times Planck's constant. Which, dimensionally, would seem to be kg.m³/s²? [[Special:Contributions/162.158.154.73|162.158.154.73]] 00:15, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
As an article pointed out to me the other day that seemed obvious after it was said it's a non-tariff trade barrier used as American protectionism that doesn't get tariffed back. {{unsigned ip|172.69.63.81|00:10, 13 June 2020 (UTC)}}&lt;br /&gt;
&lt;br /&gt;
== Can someone explain the set theory notation? ==&lt;br /&gt;
&lt;br /&gt;
Can someone explain the set theory notation? {{unsigned ip|172.68.255.14|01:56, 13 June 2020 (UTC)}}&lt;br /&gt;
&lt;br /&gt;
: You can use only sets to construct the natural numbers, see https://en.wikipedia.org/wiki/Natural_number#Constructions_based_on_set_theory - {{unsigned ip|172.68.215.76|02:20, 13 June 2020 (UTC)}}&lt;br /&gt;
&lt;br /&gt;
==Title Text 10^13.4024==&lt;br /&gt;
&lt;br /&gt;
It seems nobody has pointed out that the power of 10 in the title text is really just the log(x) of the number, which is in fact very common in scientific contexts -&amp;gt; log(25,259,974,097,204) = 13.4024 [[User:Ianrbibtitlht|Ianrbibtitlht]] ([[User talk:Ianrbibtitlht|talk]]) 02:31, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
The alternative would be for him to write 10^13.402432900872993447734410070128 (Rounded up). Notation that produces a longer string of digits than the original number seems useless on all fronts but somehow even more fun. I like the current explanation, though. It was insightful, IMO. -B- [[Special:Contributions/162.158.106.126|162.158.106.126]] 17:14, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
== Old Sweden ==&lt;br /&gt;
We have kept the olden ways here in the north. Miljon (10^6), miljard (10^9), biljon (10^12), biljard (10^15). Also, &amp;quot;biljard&amp;quot; is the same word as the game of pool in Swedish.&lt;br /&gt;
[[User:Embridioum|Embridioum]] ([[User talk:Embridioum|talk]]) 07:17, 13 June 2020 (UTC)&lt;br /&gt;
:Another thing an Older British Person might argue about is Billiards, the cue-and-ball game. Often, among all the vaiations, it was the three-ball version (white and white-spot cueballs, for each player, and red ball as the common target) on either pocketted or non-pocketted tables (the former mostly as a sop to using an unmodified snooker table) or, explicitly, Bar Billiards with target holes and obstacle pegs (quite common as early coin-operated pay-to-play tables). Only by succumbing to the americanism was Pool (usually 15-ball, spots+stripes+8ball) ever called billiards. Well, ''I'' thought that was interesting... [[Special:Contributions/162.158.159.136|162.158.159.136]] 12:49, 13 June 2020 (UTC)&lt;br /&gt;
::&amp;quot;Why sure I'm a billiard player, certainly mighty proud to say, I'm always mighty proud to say it. I consider that the hours I spend with a cue in my hand are golden.&amp;quot; -Harold Hill [[Special:Contributions/108.162.216.60|108.162.216.60]] 14:34, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
Also Italian uses the long scale for large numbers, and also in Italian the word for the game of pool coincides with 10^15. Albeit I have to say that I've never heard anyone use bilione and biliardo referring to numbers. We usually stop at miliardo, saying things like &amp;quot;un milione di miliardi&amp;quot; when we need to say those large numbers, or use the scientific notation. --[[Special:Contributions/172.68.198.106|172.68.198.106]] 09:04, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
While we're on different languages, how about this one: 1262998704860-vingt-quatre - French person. --[[User:IByte|IByte]] ([[User talk:IByte|talk]]) 11:11, 13 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
:Russian uses the short scale, like million, billion, trillion, quadrillion, etc. But it calls a billion a milliard, and a thousand milliards is a trillion. Why? [[Special:Contributions/172.69.68.195|172.69.68.195]] 18:09, 13 June 2020 (UTC)&lt;/div&gt;</summary>
		<author><name>172.69.68.195</name></author>	</entry>

	<entry>
		<id>https://www.explainxkcd.com/wiki/index.php?title=Talk:2317:_Pinouts&amp;diff=193188</id>
		<title>Talk:2317: Pinouts</title>
		<link rel="alternate" type="text/html" href="https://www.explainxkcd.com/wiki/index.php?title=Talk:2317:_Pinouts&amp;diff=193188"/>
				<updated>2020-06-10T22:46:51Z</updated>
		
		<summary type="html">&lt;p&gt;172.69.68.195: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;&amp;lt;!--Please sign your posts with ~~~~ and don't delete this text. New comments should be added at the bottom.--&amp;gt;&lt;br /&gt;
Can we add this one to a new category, &amp;quot;Comics that Randall makes just to screw with xkcd wiki contributors&amp;quot;? I can think of plenty of candidates for this category! [[User:Cosmogoblin|Cosmogoblin]] ([[User talk:Cosmogoblin|talk]]) 21:42, 8 June 2020 (UTC)&lt;br /&gt;
:Wouldn't be more useful to make a category for comics that Randall DOESN'T make to screw with xkcd wiki contributors? Might be smaller ... -- [[User:Hkmaly|Hkmaly]] ([[User talk:Hkmaly|talk]]) 22:26, 10 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
The claim that a coax has only one conductive part is incorrect.  It has two.  The pin is the inner conductor. The shield is the outer conductor. Without both it wouldn't work.&lt;br /&gt;
:yes, but it's a &amp;quot;pin&amp;quot; out.  Hence, &amp;quot;pin&amp;quot; [[User:WhiteDragon|WhiteDragon]] ([[User talk:WhiteDragon|talk]]) 21:37, 9 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
I'd also say that the claim at the top that a pin can have only one bit or one voltage of power at a time is incorrect.  Power over Ethernet is a perfect example of power and data at the same time.  There are also plenty of types of signals which transmit multiple bits at once.  A simple example would be a signal using four voltage levels to transmit two bits simultaneously, but there are many more fancy analog encodings that use phase and frequency and other characteristics to transmit data. Plus, you can often included two signals on the same conductors. For example, ADSL combined a normal phone signal and a higher frequency data signal on the same lines.  Also cable TV combined many signals on one set of conductors.&lt;br /&gt;
&lt;br /&gt;
So, anyway, I'd remove the claim.&lt;br /&gt;
[[User:Mootstrap|Mootstrap]] ([[User talk:Mootstrap|talk]]) 23:00, 8 June 2020 (UTC)&lt;br /&gt;
:Just because it’s interesting: DCC with RailCom+ allows some cool stuff. It allows many-to-many high-power power transmission, robust many-to-many bidirectional data transmission, hot-swap with automatic configuration and collision resolution, physical position tracking of the connected devices, some way of short-circuit resolution with continued communication, mixing with other protocols, and all with only two pins, which may be arbitrarily interchanged at any time. Admittedly it has a much lower data rate than Power over Ethernet and terrible EMI, but potentially ''much'' higher power. [[Special:Contributions/162.158.89.193|162.158.89.193]] 08:22, 9 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
For that matter, the RF cable connecting a regular TV antenna, or the wire in a car that connects the radio antenna, carries the signals of all the channels.[[Special:Contributions/172.69.33.65|172.69.33.65]] 02:20, 9 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
I think &amp;quot;Pin Roulette&amp;quot; is a pun on [[wikipedia:Penn Jillette|Penn Jillette]], the talkative half of the [[wikipedia:Penn &amp;amp; Teller|Penn &amp;amp; Teller]] magic act, and maybe also a reference to [[wikipedia:chatroulette|chatroulette]]. [[User:Barmar|Barmar]] ([[User talk:Barmar|talk]]) 23:10, 8 June 2020 (UTC)&lt;br /&gt;
:Possible, but I'd stick with the simple explanation - that the &amp;quot;Pin Roulette&amp;quot; pin selects a random function when the connector's plugged in. [[Special:Contributions/108.162.245.64|108.162.245.64]] 23:18, 8 June 2020 (UTC)&lt;br /&gt;
::Modern conectors additionally tend to have multi-purpose pins, which might be dangerous if you guess the current meaning of the pin wrong.[[User:Gunterkoenigsmann|Gunterkoenigsmann]] ([[User talk:Gunterkoenigsmann|talk]]) 06:15, 9 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
In addition to pins being able to carry both data and power, or to carry multiple bits at a time, some pins function as clock signal pins that indicate bit boundaries rather than themselves carrying data; therefore I also think the claim should be either omitted or changed entirely.&lt;br /&gt;
[[User:Vaedez|Vaedez]] ([[User talk:Vaedez|talk]]) 23:33, 8 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
Firstly, no [[1293|Soup]]? Secondly, [https://acronyms.thefreedictionary.com/GNDN GNDN] might easily have been referenced. Thirdly, would a pin made of solder melt, as pins connected to wires/boards ''by'' solder do not melt the solder (under proper range of use). [[Special:Contributions/141.101.107.158|141.101.107.158]] 23:38, 8 June 2020 (UTC)&lt;br /&gt;
:i think the implication is that it ''could'' melt, which is a trap--[[User:Vaedez|Vaedez]] ([[User talk:Vaedez|talk]]) 23:48, 8 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
Perhaps we should add the actual usage of the pins to help those who actually want to know? [[Special:Contributions/162.158.62.245|162.158.62.245]] 00:08, 9 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
Wouldn't 3.3eV/C be a tiny fraction of 3.3V, since a columb is a much greater value of charge than that of the electron?--[[Special:Contributions/172.69.63.203|172.69.63.203]] 00:24, 9 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
Depending on how you read it, the third pin from the top might match the 120V AC. This would make it a different kind of &amp;quot;tribute&amp;quot; to FireWire... [[User:Ehusmark|EHusmark]] ([[User talk:Ehusmark|talk]]) 07:52, 9 June 2020 (UTC)&lt;br /&gt;
:AFAIK FireWire allows many-to-many communication, while USB never did. The FireWire tribute pin could be a way to establish many-to-many communication. Alternatively, FireWire allows daisy-chaining, while USB supports only a tree network trough hubs. The FireWire pin could be somehow physically strange, so a second USB-C cable could be connected to it. [[Special:Contributions/162.158.89.193|162.158.89.193]] 08:22, 9 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
Added a little more description to the coax cable section, just in case it wasn't obvious to a layman what an example of the cable would be or why it was included with a cartoon about digital data cables.--[[Special:Contributions/172.69.68.195|172.69.68.195]] 22:46, 10 June 2020 (UTC)&lt;/div&gt;</summary>
		<author><name>172.69.68.195</name></author>	</entry>

	<entry>
		<id>https://www.explainxkcd.com/wiki/index.php?title=Talk:2317:_Pinouts&amp;diff=193187</id>
		<title>Talk:2317: Pinouts</title>
		<link rel="alternate" type="text/html" href="https://www.explainxkcd.com/wiki/index.php?title=Talk:2317:_Pinouts&amp;diff=193187"/>
				<updated>2020-06-10T22:45:17Z</updated>
		
		<summary type="html">&lt;p&gt;172.69.68.195: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;&amp;lt;!--Please sign your posts with ~~~~ and don't delete this text. New comments should be added at the bottom.--&amp;gt;&lt;br /&gt;
Can we add this one to a new category, &amp;quot;Comics that Randall makes just to screw with xkcd wiki contributors&amp;quot;? I can think of plenty of candidates for this category! [[User:Cosmogoblin|Cosmogoblin]] ([[User talk:Cosmogoblin|talk]]) 21:42, 8 June 2020 (UTC)&lt;br /&gt;
:Wouldn't be more useful to make a category for comics that Randall DOESN'T make to screw with xkcd wiki contributors? Might be smaller ... -- [[User:Hkmaly|Hkmaly]] ([[User talk:Hkmaly|talk]]) 22:26, 10 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
The claim that a coax has only one conductive part is incorrect.  It has two.  The pin is the inner conductor. The shield is the outer conductor. Without both it wouldn't work.&lt;br /&gt;
:yes, but it's a &amp;quot;pin&amp;quot; out.  Hence, &amp;quot;pin&amp;quot; [[User:WhiteDragon|WhiteDragon]] ([[User talk:WhiteDragon|talk]]) 21:37, 9 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
I'd also say that the claim at the top that a pin can have only one bit or one voltage of power at a time is incorrect.  Power over Ethernet is a perfect example of power and data at the same time.  There are also plenty of types of signals which transmit multiple bits at once.  A simple example would be a signal using four voltage levels to transmit two bits simultaneously, but there are many more fancy analog encodings that use phase and frequency and other characteristics to transmit data. Plus, you can often included two signals on the same conductors. For example, ADSL combined a normal phone signal and a higher frequency data signal on the same lines.  Also cable TV combined many signals on one set of conductors.&lt;br /&gt;
&lt;br /&gt;
So, anyway, I'd remove the claim.&lt;br /&gt;
[[User:Mootstrap|Mootstrap]] ([[User talk:Mootstrap|talk]]) 23:00, 8 June 2020 (UTC)&lt;br /&gt;
:Just because it’s interesting: DCC with RailCom+ allows some cool stuff. It allows many-to-many high-power power transmission, robust many-to-many bidirectional data transmission, hot-swap with automatic configuration and collision resolution, physical position tracking of the connected devices, some way of short-circuit resolution with continued communication, mixing with other protocols, and all with only two pins, which may be arbitrarily interchanged at any time. Admittedly it has a much lower data rate than Power over Ethernet and terrible EMI, but potentially ''much'' higher power. [[Special:Contributions/162.158.89.193|162.158.89.193]] 08:22, 9 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
For that matter, the RF cable connecting a regular TV antenna, or the wire in a car that connects the radio antenna, carries the signals of all the channels.[[Special:Contributions/172.69.33.65|172.69.33.65]] 02:20, 9 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
Added a little more description to the coax cable section, just in case it wasn't obvious to a layman what an example of the cable would be or why it was included with a cartoon about digital data cables.&lt;br /&gt;
&lt;br /&gt;
I think &amp;quot;Pin Roulette&amp;quot; is a pun on [[wikipedia:Penn Jillette|Penn Jillette]], the talkative half of the [[wikipedia:Penn &amp;amp; Teller|Penn &amp;amp; Teller]] magic act, and maybe also a reference to [[wikipedia:chatroulette|chatroulette]]. [[User:Barmar|Barmar]] ([[User talk:Barmar|talk]]) 23:10, 8 June 2020 (UTC)&lt;br /&gt;
:Possible, but I'd stick with the simple explanation - that the &amp;quot;Pin Roulette&amp;quot; pin selects a random function when the connector's plugged in. [[Special:Contributions/108.162.245.64|108.162.245.64]] 23:18, 8 June 2020 (UTC)&lt;br /&gt;
::Modern conectors additionally tend to have multi-purpose pins, which might be dangerous if you guess the current meaning of the pin wrong.[[User:Gunterkoenigsmann|Gunterkoenigsmann]] ([[User talk:Gunterkoenigsmann|talk]]) 06:15, 9 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
In addition to pins being able to carry both data and power, or to carry multiple bits at a time, some pins function as clock signal pins that indicate bit boundaries rather than themselves carrying data; therefore I also think the claim should be either omitted or changed entirely.&lt;br /&gt;
[[User:Vaedez|Vaedez]] ([[User talk:Vaedez|talk]]) 23:33, 8 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
Firstly, no [[1293|Soup]]? Secondly, [https://acronyms.thefreedictionary.com/GNDN GNDN] might easily have been referenced. Thirdly, would a pin made of solder melt, as pins connected to wires/boards ''by'' solder do not melt the solder (under proper range of use). [[Special:Contributions/141.101.107.158|141.101.107.158]] 23:38, 8 June 2020 (UTC)&lt;br /&gt;
:i think the implication is that it ''could'' melt, which is a trap--[[User:Vaedez|Vaedez]] ([[User talk:Vaedez|talk]]) 23:48, 8 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
Perhaps we should add the actual usage of the pins to help those who actually want to know? [[Special:Contributions/162.158.62.245|162.158.62.245]] 00:08, 9 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
Wouldn't 3.3eV/C be a tiny fraction of 3.3V, since a columb is a much greater value of charge than that of the electron?--[[Special:Contributions/172.69.63.203|172.69.63.203]] 00:24, 9 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
Depending on how you read it, the third pin from the top might match the 120V AC. This would make it a different kind of &amp;quot;tribute&amp;quot; to FireWire... [[User:Ehusmark|EHusmark]] ([[User talk:Ehusmark|talk]]) 07:52, 9 June 2020 (UTC)&lt;br /&gt;
:AFAIK FireWire allows many-to-many communication, while USB never did. The FireWire tribute pin could be a way to establish many-to-many communication. Alternatively, FireWire allows daisy-chaining, while USB supports only a tree network trough hubs. The FireWire pin could be somehow physically strange, so a second USB-C cable could be connected to it. [[Special:Contributions/162.158.89.193|162.158.89.193]] 08:22, 9 June 2020 (UTC)&lt;/div&gt;</summary>
		<author><name>172.69.68.195</name></author>	</entry>

	<entry>
		<id>https://www.explainxkcd.com/wiki/index.php?title=2317:_Pinouts&amp;diff=193179</id>
		<title>2317: Pinouts</title>
		<link rel="alternate" type="text/html" href="https://www.explainxkcd.com/wiki/index.php?title=2317:_Pinouts&amp;diff=193179"/>
				<updated>2020-06-10T22:30:25Z</updated>
		
		<summary type="html">&lt;p&gt;172.69.68.195: /* Coax */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;{{comic&lt;br /&gt;
| number    = 2317&lt;br /&gt;
| date      = June 8, 2020&lt;br /&gt;
| title     = Pinouts&lt;br /&gt;
| image     = pinouts.png&lt;br /&gt;
| titletext = The other side of USB-C is rotationally symmetric except that the 3rd pin from the top is designated FIREWIRE TRIBUTE PIN.&lt;br /&gt;
}}&lt;br /&gt;
&lt;br /&gt;
==Explanation==&lt;br /&gt;
{{incomplete|Created by a FIREWIRE TRIBUTE PIN. Should include a column for the actual purpose of the pin. Do NOT delete this tag too soon.}}&lt;br /&gt;
Electronics connectors are designed to transport both information and power. A {{w|pinout}} diagram describes the function of each pin such as to communicate data, transport power, physical function (keying), etc. In this comic there is an absurd alternative to the actual pins used in connectors. The pin labels are references to many tech issues and attributes, and not all may be documented correctly here.&lt;br /&gt;
&lt;br /&gt;
Hardware hobbyists might feel excitement at seeing a unified specification for these common connectors, but the comic is of course humorous. The real life diagrams are as follows: [http://unitedtechnologies.com.pk/Nti/image/10ci.png HDMI], [https://www.arrow.com/en/research-and-events/articles/micro-connector-usb-pinout Micro USB], [https://www.allaboutcircuits.com/technical-articles/introduction-to-usb-type-c-which-pins-power-delivery-data-transfer/ USB-C].&lt;br /&gt;
&lt;br /&gt;
=== HDMI ===&lt;br /&gt;
&lt;br /&gt;
{| class=&amp;quot;wikitable&amp;quot;&lt;br /&gt;
! Label !! Explanation !! Pin No. !! Actual purpose&lt;br /&gt;
|-&lt;br /&gt;
| +3.3V DC&lt;br /&gt;
| 3.3V is a typical voltage in digital electronics. The &amp;quot;+&amp;quot; Indicates a voltage positive with respect to ground.&lt;br /&gt;
| 1&lt;br /&gt;
| TMDS Data2+&lt;br /&gt;
|-&lt;br /&gt;
| Data&lt;br /&gt;
| Most digital communications cables contain at least one wire that carries data. {{w|Serial communication}} protocols have one data line. Typically there will be a more descriptive name if there are multiple data pins. &amp;quot;Data&amp;quot; and &amp;quot;3.3V&amp;quot; set up the appearance of a normal pinout diagram to experienced readers.&lt;br /&gt;
| 2&lt;br /&gt;
| TMDS Data2 Shield&lt;br /&gt;
|-&lt;br /&gt;
| -3.3V DC&lt;br /&gt;
| Negative voltages were used more frequently in the past; however, modern systems typically generate any negative voltages they might require internally from the given positive voltages. This could be a reference to frustration specification implementers have to go through when handling hardware quirks: negative voltages are very abnormal, and would require design alteration to meet, but the designers of a ubiquitous plug can do whatever they want.&lt;br /&gt;
| 3&lt;br /&gt;
| TMDS Data2-&lt;br /&gt;
|-&lt;br /&gt;
| +5V&lt;br /&gt;
| 5V is a typical voltage in digital electronics. The &amp;quot;+&amp;quot; Indicates a voltage positive with respect to Ground. Typically this is assumed to be DC. V is also the Roman numeral for 5.&lt;br /&gt;
| 4&lt;br /&gt;
| TMDS Data1+&lt;br /&gt;
|-&lt;br /&gt;
| Tx&lt;br /&gt;
| &amp;quot;Tx&amp;quot; typically refers to pins used to transmit as opposed to &amp;quot;Rx&amp;quot; (receive).&lt;br /&gt;
| 5&lt;br /&gt;
| TMDS Data1 Shield&lt;br /&gt;
|-&lt;br /&gt;
| +6VI&lt;br /&gt;
| V is usually used to represent volts, but here, VI represents the Roman numeral 6. (See Pin 4)&amp;lt;br&amp;gt;Voltages above 5 are not usually used in micro-circuitry cables.&amp;lt;br&amp;gt;The product VI (Voltage * Current) is equal to Power.&lt;br /&gt;
| 6&lt;br /&gt;
| TMDS Data1-&lt;br /&gt;
|-&lt;br /&gt;
| Wx&lt;br /&gt;
| &amp;quot;Wx&amp;quot; does not typically exist in the &amp;quot;Tx&amp;quot;/&amp;quot;Rx&amp;quot; scheme. In the weather forecasting community, Wx means &amp;quot;weather&amp;quot;.&lt;br /&gt;
| 7&lt;br /&gt;
| TMDS Data0+&lt;br /&gt;
|-&lt;br /&gt;
| +7VII&lt;br /&gt;
| V is usually used to represent volts, but here, VII represents the Roman numeral 7, continuing the pattern from above.&lt;br /&gt;
| 8&lt;br /&gt;
| TMDS Data0 Shield&lt;br /&gt;
|-&lt;br /&gt;
| Rx Only&lt;br /&gt;
| &amp;quot;Rx&amp;quot; typically refers to pins used to receive as opposed to &amp;quot;Tx&amp;quot; (transmit). This description might also be related to the fact that most Ethernet devices can exchange the Rx and Tx port automatically, if needed, in order to eliminate the need for crossover cables and the fact that it is possible to insert the USB-C connector rotated by 180°.&amp;lt;br&amp;gt;Additionally, &amp;quot;Rx&amp;quot;, standing for the Latin &amp;quot;recipe&amp;quot; is a common abbreviation for {{w|medical prescription}}s. Some medicines are prescription only or, in other words, &amp;quot;Rx Only&amp;quot;. &lt;br /&gt;
| 9&lt;br /&gt;
| TMDS Data0-&lt;br /&gt;
|-&lt;br /&gt;
| Antidata&lt;br /&gt;
| Some ports use differential signaling, where a signal and its inverse are sent over a pair of pins (e.g. D+ and D-). The combined signal is more robust to interference. This mixes that practice with a humorous reference to the notion of matter versus antimatter. Currently there is no such thing as antidata{{Citation needed}}. Antidata pins could be needed in the future as low-entropy or high-entropy source in quantum communication connectors to securely dispose of data.&lt;br /&gt;
| 10&lt;br /&gt;
| TMDS Clock+&lt;br /&gt;
|-&lt;br /&gt;
| Unknown&lt;br /&gt;
| Occasionally extra pins will be included for future use; however they will typically be labeled &amp;quot;reserved&amp;quot; to point out that their usage is not yet defined. The use of &amp;quot;unknown&amp;quot; suggests that this pinout is based on an incomplete reverse-engineering of the HDMI format, instead of on the official documentation, or maybe the official documentation doesn't explain it and this pin's function is being kept as a secret by the ones who designed it.&lt;br /&gt;
| 11&lt;br /&gt;
| TMDS Clock Shield&lt;br /&gt;
|-&lt;br /&gt;
| Water&lt;br /&gt;
| Labs and hospitals often have ports connecting to common sources of various supplies (oxygen, water, fuel, vacuum).&lt;br /&gt;
| 12&lt;br /&gt;
| TMDS Clock-&lt;br /&gt;
|-&lt;br /&gt;
| +240V DC&lt;br /&gt;
| This is a reference to heavy-duty home and commercial appliances, which use 240V AC for power. Additionally, many cable specifications try to provide a way to power devices over them (PS/2, USB, Power over Ethernet,) but these small communication cables usually carry only DC and not AC electricity.&lt;br /&gt;
High voltage power is only sometimes used in small communications connectors. It might help to keep the current of power lines low to avoid generating excess heat. With +240V DC inside the HDMI cable, monitors would not need any longer a separate power plug. This is similar to Power-over-Ethernet, which does not exceed 60V, or ISDN, which goes up to 110V depending on country, and helps surveillance cameras or telephones to work with one connecting cable only. But with this much voltage on such a small cable, a short could lead more likely to melting the insulation and wiring in a sudden burst of toxic smoke. The produced thermal power through a short with resistance R_short that is building up is U²/R_short, increasing with the square of the voltage (also the breakdown voltage of the isolation is more easily reached). However, a high voltage reduces the chance of a peripheral drawing too much current, which could cause a fire on thin wires otherwise: The current through the cable for a device, needing a given power of P, is I = P_dev/U, the thermal power of the cables with resistance R is P_cables = R_cables*I² = R_cables*P_dev²/U², so it is reduced by the square of the voltage.&lt;br /&gt;
| 13&lt;br /&gt;
| CEC&lt;br /&gt;
|-&lt;br /&gt;
| Vacuum&lt;br /&gt;
| Labs often have ports connecting to common sources of various supplies (oxygen, water, fuel, vacuum).&lt;br /&gt;
| 14&lt;br /&gt;
| Reserved (1.0-1.3a), Utility (1.4+, optional)&lt;br /&gt;
|-&lt;br /&gt;
| 5V AC&lt;br /&gt;
| Pins often supply low voltage direct current to devices. This pin supplies 5V {{w|alternating current}}, which is not typically supplied. AC is used in {{w|Electric power transmission|electrical transmission}} because it can be stepped up to high voltage to minimize transmission losses, then stepped down to more useful voltages right before loads. DC power is required for logic circuitry like in computers. Conversion between the the two kinds of power everywhere would make for transformers being embedded in most modern devices, taking extra materials to manufacture and losing a significant percentage of all electricity in the conversion. Having both is not entirely unheard of: the Commodore 64 power supply provides both DC, for the logic of the motherboard; and AC, for powering the tape drive.&lt;br /&gt;
| 15&lt;br /&gt;
| SCL (I²C serial clock for DDC)&lt;br /&gt;
|-&lt;br /&gt;
| Amazon Copyright Pin&lt;br /&gt;
| HDMI can optionally be protected by a {{w|digital rights management}} (DRM) scheme, known as {{w|High-bandwidth Digital Content Protection|HDCP}}. This pin humorously implies the presence of a different DRM scheme specific to {{w|Amazon (company)|Amazon}} the company, as well as poking fun at the fact that copyright is an explicit part of the HDMI protocol (although it is not assigned to a specific pin). This is likely a reference to how chips and cables and specifications often have specific strange additions or functionality in them to meet the requests of various bodies invested in the design process: additionally after reverse engineering many strange things have been found laying around in the functionality of hardware that do unexpected special things.&lt;br /&gt;
| 16&lt;br /&gt;
| SDA (I²C serial data for DDC)&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| GND typically refers to &amp;quot;ground&amp;quot; on pinout diagrams. Remarkably, this is correct.&lt;br /&gt;
| 17&lt;br /&gt;
| DDC/CEC Ground&lt;br /&gt;
|-&lt;br /&gt;
| Decorative&lt;br /&gt;
| Decorative elements are pieces of an assembly that serve only an aesthetic purpose without any technical function. This would not be particularly useful inside a connector, as almost no one will ever see it--however, in HDMI, pin 14 was reserved for future use in versions 1.0–1.3a (and was only assigned an official use in 1.4). A decorative pin is also a popular piece of jewelry.&lt;br /&gt;
| 18&lt;br /&gt;
| +5V&lt;br /&gt;
|-&lt;br /&gt;
| Ground&lt;br /&gt;
| Compared to Pin 17 (&amp;quot;GND&amp;quot;), this appears to be the same ground pin. However, the presence of both GND and Ground seems to imply that GND represents something other than the standard &amp;quot;ground&amp;quot; pin. Alternatively, this pin could supply &amp;quot;Ground&amp;quot; as in soil (like the &amp;quot;soup&amp;quot; electrical outlet from [[1293: Job Interview|1293]]). Some systems have different grounds for analog and digital sections, but they would typically be disambiguated by terms like AGND. Many pinouts have multiple grounds or DC supplies with no apparent explanation, seen more prominently on Randall's USB connector.&lt;br /&gt;
| 19&lt;br /&gt;
| Hot Plug Detect&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
The {{w|HDMI}} interface uses four pairs of shielded twisted-pair connectors, along with seven other connectors. ({{w|Twisted pair}} means a wire is wrapped with the other wire that returns the current to the original device, thus minimizing electromagnetic noise. Shielding refers to wrapping a cable with a conductor to absorb the energy of noise.) Three of these pairs are for data (TMDS Data0, Data1, and Data2) and the other is a clock. These pairs take up three pins as one of them is a ground pin for the shielding wrapped around each pair. TMDS stands for &amp;quot;{{w|Transition-minimized differential signaling}}&amp;quot; and is also used in the DVI standard.&lt;br /&gt;
&lt;br /&gt;
DDC stands for &amp;quot;Display Data Channel&amp;quot; and is based on the {{w|I²C}} serial standard. It is used to allow the transmitting device to learn what formats of data the receiving device can accept.&lt;br /&gt;
&lt;br /&gt;
CEC stands for &amp;quot;Consumer Electronics Control&amp;quot; and is supposed to allow a single remote control to control multiple devices.&lt;br /&gt;
&lt;br /&gt;
&amp;quot;Hot Plug Detect&amp;quot; refers to hot-plugging, where a cable is connected to a device already turned on. The device should then ideally detect that the cable has been plugged in and respond appropriately.&lt;br /&gt;
&lt;br /&gt;
=== Micro USB ===&lt;br /&gt;
&lt;br /&gt;
{| class=&amp;quot;wikitable&amp;quot;&lt;br /&gt;
! Label !! Explanation !! Pin No. !! Actual Purpose&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| A ground pin&lt;br /&gt;
| 1&lt;br /&gt;
| +5 V&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| A second ground pin&lt;br /&gt;
| 2&lt;br /&gt;
| Data- (Differential signalling)&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| A third ground pin&lt;br /&gt;
| 3&lt;br /&gt;
| Data+&lt;br /&gt;
|-&lt;br /&gt;
| USB&lt;br /&gt;
| Apparently the only data pin in this connector. This could be a play on how the USB specification tries to squeeze all data onto a single channel as if it is a software protocol rather than specializing the structure of a physical cable to provide for rapidly carrying the information likely to flow over it. USB is an external packet network similar to Ethernet, but uses a totally new design without any reuse of prior similar specification. Ironically, in the real Micro- and Mini-USB standards, this pin is not connected to a wire in the cable.&lt;br /&gt;
| 4&lt;br /&gt;
| On-The-Go ID, does not have a wire in the cable.&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| A fourth ground pin. A real micro USB only has one ground pin, in addition to the metal plug housing. This is the location of the actual ground pin.&lt;br /&gt;
| 5&lt;br /&gt;
| Ground.&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
A ground pin is commonly found on USB and other pin connectors. At least one ground is necessary to complete the circuit, and some cables use multiple ground lines to distribute current or to support {{w|twisted pair}}s. However, there is no purpose served by having many more ground pins than data pins. Therefore, it seems rather silly for the micro USB to have 4 ground pins and only 1 functional &amp;quot;USB&amp;quot; pin. It also does not give much information about what the &amp;quot;USB&amp;quot; pin would do, as opposed to a standard pinout diagram. This diagram also leaves out the +5V power pin that is present in the real micro USB connector, which would render most USB peripherals unable to function.&lt;br /&gt;
&lt;br /&gt;
The ordering and count of the pins may be an allusion to {{w|Monty Python}}'s {{w|Spam (Monty Python)|&amp;quot;Spam&amp;quot;}} sketch, in which one of the many Spam-related menu items is &amp;quot;Spam, Spam, Spam, egg, and Spam&amp;quot;.&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
=== USB-C ===&lt;br /&gt;
{| class=&amp;quot;wikitable&amp;quot;&lt;br /&gt;
! Label !! Explanation !! Pin No. !! Actual Purpose&lt;br /&gt;
|-&lt;br /&gt;
| +5V DC&lt;br /&gt;
| A common electronics supply voltage.&lt;br /&gt;
| A12&lt;br /&gt;
| Ground&lt;br /&gt;
|-&lt;br /&gt;
| +3.3V DC&lt;br /&gt;
| Another common electronics supply voltage. This pin is not present on USB type C, mostly because the voltage is too low to supply useful levels of power at the current limit of the pins.&lt;br /&gt;
| A11&lt;br /&gt;
| Rx2+ (Differential Signalling for Superspeed or alternate modes)&lt;br /&gt;
|-&lt;br /&gt;
| +120V AC&lt;br /&gt;
| Residential supply voltage in the United States; its use on an electronics connector would be very unusual, as it would burn out any unguarded transistor-logic electronics, producing smoke and melting the metal together such that the cable likely couldn't be removed. But this high a voltage might be an allusion to the high voltages USB-C screens and similar devices can request in order to get enough energy without exceeding the cable's current limit.&lt;br /&gt;
| A10&lt;br /&gt;
| Rx2-&lt;br /&gt;
|-&lt;br /&gt;
| Boobytrap Pin (Pure solder)&lt;br /&gt;
| {{w|Solder}} is a metal alloy with a low melting temperature (typically around 360°C, but in special cases melting points between 90°C and 450°C or above are available), used to bond electronic components together permanently. Most solder materials are quite ductile so it might be too easy for the forces a connector is subject to to permanently change their shape. Along with the fact that the resistance of solder is typically way higher than that for copper the pin under heavy electrical stress could overheat and melt, thus bonding the connector to its receptacle, and thereby &amp;quot;trapping&amp;quot; the receptacle. Additionally putting a pin that might slightly change their shape directly next to a high voltage pin means risking accidentally connecting two power rails with entirely different voltages together (causing an overvoltage in the lower-voltage rail that is likely to break the circuit, as has happened with some Apple devices). In this case the +120V AC pin might be able to deliver enough power to actually fuse the solder-only pin. This could also be a reference to increasing publicity around the fields of electronics security: hobby reverse engineers have been finding ways for some time now to evade the blown fuses in microcircuitry preventing them from being reprogrammed, using glitching techniques.&lt;br /&gt;
&lt;br /&gt;
Another issue is that the heat required for anyone to solder a wire to the cable-side of that pin would cause the entire pin to melt and coagulate, triggering the boobytrap, and causing the pin to disappear and possibly make a mess next to the other pins. &lt;br /&gt;
| A9&lt;br /&gt;
| VBUS (+5V)&lt;br /&gt;
|-&lt;br /&gt;
| Mechanical&lt;br /&gt;
| All connectors include portions whose job is to ensure a solid connection between the cable and the port. This is typically not the job of the pins, however. In real USB type C connectors, this task is performed by the center tongue of the female connector. It could also imply transmission of energy or signal through a mechanical principle, such as torque or reciprocating motion.&lt;br /&gt;
| A8&lt;br /&gt;
| SBU1 (Sideband Use)&lt;br /&gt;
|-&lt;br /&gt;
| +3.3eV/C&lt;br /&gt;
| {{w|Electron-volts}} per {{w|coulomb}} would be a very unusual unit to see in a pinout. These units are used in particle physics, but the appearance is very similar to the common 3.3V supply. It would be a unit of electric potential equivalent to approximately 1.60217662 * 10&amp;lt;sup&amp;gt;-19&amp;lt;/sup&amp;gt; volts. Thus 3.3eV/C would be 5.287183 * 10&amp;lt;sup&amp;gt;-19&amp;lt;/sup&amp;gt; volts, or slightly more than 1/2 attovolts. It could also be read as +3.3 eV/c (per {{w|speed of light}}), in which case it is equivalent to a momentum of 5.3E-28 kg m/s, In high-energy physics, the momentum of particles is sometimes expressed in MeV/c or GeV/c units.&lt;br /&gt;
| A7&lt;br /&gt;
| D- (USB 2.0 Data)&lt;br /&gt;
|-&lt;br /&gt;
| Candlepin&lt;br /&gt;
| Randall is making a pun on the word ''pin'', which refers to a electrical connector pin as well as a thing to knock down in bowling. {{w|Candlepin bowling}} is a form of bowling.&lt;br /&gt;
| A6&lt;br /&gt;
| D+&lt;br /&gt;
|-&lt;br /&gt;
| Facebook use&lt;br /&gt;
| This would imply that Facebook had a hand in specifying USB type C, and had a pin dedicated to their use. This could be seen as strange given Facebook's primary business is web technology and would have little need for a dedicated pin in the USB standard, but a lot of back doors have been found in electronics.&lt;br /&gt;
| A5&lt;br /&gt;
| CC1 (Configuration Channel)&lt;br /&gt;
|-&lt;br /&gt;
| +5V (Positrons)&lt;br /&gt;
| {{w|Positron}}s are the antimatter counterparts to electrons. So this pin is supplying +5V, but does so by sourcing positrons into the device rather than sinking electrons out. Positrons cannot be conducted through normal matter conductors as they would annihilate the electrons.&lt;br /&gt;
| A4&lt;br /&gt;
| VBUS (+5V)&lt;br /&gt;
|-&lt;br /&gt;
| Pin Roulette&lt;br /&gt;
| Presumably in the same vein as &amp;quot;{{w|Chatroulette}}&amp;quot;, this pin's purpose is not rigidly defined and is instead left to chance. According to the title text, this pin's counterpart on the other side of the connector is the &amp;quot;FireWire Tribute Pin&amp;quot;, so this cable would only be truly rotationally symmetric (which is the whole point of the USB-C connector) when the pin roulette ball lands on that same function.&lt;br /&gt;
| A3&lt;br /&gt;
| Tx1- (Differential Signalling for Superspeed or alternate modes)&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| Ground pin. Typically denoted as &amp;quot;GND&amp;quot;.&lt;br /&gt;
| A2&lt;br /&gt;
| Tx1+&lt;br /&gt;
|-&lt;br /&gt;
| SKY&lt;br /&gt;
| Reference to the ground pin, which refers to the common grounding on the larger metal body. There is no corresponding &amp;quot;sky&amp;quot; pin, although sky is often thought as the opposite of ground.&lt;br /&gt;
| A1&lt;br /&gt;
| GND&lt;br /&gt;
|-&lt;br /&gt;
| FireWire Tribute Pin&lt;br /&gt;
| ''In title text:'' {{w|FireWire}} is Apple's version of IEEE 1394 which is a 6 pin connector that has a ground pin, a power pin and two pairs of data pins. It was something of a competitor to USB, and had faster data rates than USB 2.0, but is much less popular now, and has essentially been replaced by {{w|Thunderbolt (interface)|Thunderbolt}}. Presumably the writers of the USB-C standard (which far outpaces its data rates) wished to memorialize it somehow, although it's not clear how the pin actually works for that purpose.&lt;br /&gt;
| B3&lt;br /&gt;
| Tx2-&lt;br /&gt;
|}&lt;br /&gt;
The two sides of a USB C connector are labeled &amp;quot;A&amp;quot; and &amp;quot;B&amp;quot;. These are rotationally symmetric, mostly. For example, B10 and B11 are Rx1, a separate twisted-pair for receiving information in Superspeed mode compared to A10 and A11's Rx2. This gives two Rx/Tx pairs for Superspeed use. CC1 and SBU1 are mirrored to CC2 and SBU2. However, the D, VBUS, and GND pins are perfectly mirrored.&lt;br /&gt;
&lt;br /&gt;
The fact that only half of the USB-C pins are documented might hint to an alternative way to manufacture connectors that can be inserted rotated by 180°: Make the receiver use only the right side of the pins and make the sender connect both the left and the right side so all Pins that might match a function are connected correctly no matter if the cable is rotated by 180°. However, doing this would result in only having one Rx/Tx pair for Superspeed use.&lt;br /&gt;
&lt;br /&gt;
=== Coax ===&lt;br /&gt;
&lt;br /&gt;
A {{w|RF connector|coaxial RF connector}} has two contacts - one pin, and the shield; typically the whole connector is labeled with whatever function/signal is carried by the pair.  The joke here is that the label is ''technically'' correct (the best kind of correct), but not very useful to the end user, as it does not specify the voltage rating, impedance, connector size, or other useful information about the cable.  Some serial data transmission systems, such as {{w|Ethernet|Ethernet}}, used coaxial cable early on as a low cost, widely available solution, however most of these have largely become obsolete.  A common coaxial cable still widely in use is {{w|RG-6|RG-6}}, which is typically used to deliver satellite television, cable television, and cable Internet services in the United States.&lt;br /&gt;
&lt;br /&gt;
==Transcript==&lt;br /&gt;
&lt;br /&gt;
:[Caption at top]&lt;br /&gt;
:Pinouts&lt;br /&gt;
:Quick Reference Guide&lt;br /&gt;
&lt;br /&gt;
:[Four common connectors are depicted - vertically, rather than the usual horizontal orientation.]&lt;br /&gt;
&lt;br /&gt;
:[The first connector is a 19-pin HDMI connector.]&lt;br /&gt;
:[The nine pins on the left are labeled:]&lt;br /&gt;
:*Data&lt;br /&gt;
:*+5V&lt;br /&gt;
:*+6VI&lt;br /&gt;
:*+7VII&lt;br /&gt;
:*Antidata&lt;br /&gt;
:*Water&lt;br /&gt;
:*Vacuum&lt;br /&gt;
:*Amazon Copyright Pin&lt;br /&gt;
:*Decorative&lt;br /&gt;
:[The ten pins on the right are labeled:]&lt;br /&gt;
:*+3.3V DC&lt;br /&gt;
:*-3.3V DC&lt;br /&gt;
:*Tx&lt;br /&gt;
:*Wx&lt;br /&gt;
:*Rx Only&lt;br /&gt;
:*Unknown&lt;br /&gt;
:*+240V DC&lt;br /&gt;
:*5V AC&lt;br /&gt;
:*GND&lt;br /&gt;
:*Ground&lt;br /&gt;
&lt;br /&gt;
:[The second connector is a 5-pin Micro USB connector.]&lt;br /&gt;
:[The five pins are labeled:]&lt;br /&gt;
:*GND&lt;br /&gt;
:*GND&lt;br /&gt;
:*GND&lt;br /&gt;
:*USB&lt;br /&gt;
:*GND&lt;br /&gt;
&lt;br /&gt;
:[The third connector is a 24-pin USB-C connector, with only the right side labeled.]&lt;br /&gt;
:[The twelve pins on the right are labeled:]&lt;br /&gt;
:*+5V DC&lt;br /&gt;
:*+3.3V DC&lt;br /&gt;
:*+120V AC&lt;br /&gt;
:*Boobytrap Pin (Pure Solder)&lt;br /&gt;
:*Mechanical&lt;br /&gt;
:*+3.3eV/C&lt;br /&gt;
:*Candlepin&lt;br /&gt;
:*Facebook Use&lt;br /&gt;
:*+5V (Positrons)&lt;br /&gt;
:*Pin Roulette&lt;br /&gt;
:*GND&lt;br /&gt;
:*SKY&lt;br /&gt;
&lt;br /&gt;
:[The fourth and final connector is a 1-pin COAX connector.]&lt;br /&gt;
:[The one pin in the center is labeled:]&lt;br /&gt;
:*Pin&lt;br /&gt;
&lt;br /&gt;
{{comic discussion}}&lt;br /&gt;
[[Category:Computers]]&lt;/div&gt;</summary>
		<author><name>172.69.68.195</name></author>	</entry>

	<entry>
		<id>https://www.explainxkcd.com/wiki/index.php?title=2317:_Pinouts&amp;diff=193178</id>
		<title>2317: Pinouts</title>
		<link rel="alternate" type="text/html" href="https://www.explainxkcd.com/wiki/index.php?title=2317:_Pinouts&amp;diff=193178"/>
				<updated>2020-06-10T22:29:35Z</updated>
		
		<summary type="html">&lt;p&gt;172.69.68.195: /* Coax */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;{{comic&lt;br /&gt;
| number    = 2317&lt;br /&gt;
| date      = June 8, 2020&lt;br /&gt;
| title     = Pinouts&lt;br /&gt;
| image     = pinouts.png&lt;br /&gt;
| titletext = The other side of USB-C is rotationally symmetric except that the 3rd pin from the top is designated FIREWIRE TRIBUTE PIN.&lt;br /&gt;
}}&lt;br /&gt;
&lt;br /&gt;
==Explanation==&lt;br /&gt;
{{incomplete|Created by a FIREWIRE TRIBUTE PIN. Should include a column for the actual purpose of the pin. Do NOT delete this tag too soon.}}&lt;br /&gt;
Electronics connectors are designed to transport both information and power. A {{w|pinout}} diagram describes the function of each pin such as to communicate data, transport power, physical function (keying), etc. In this comic there is an absurd alternative to the actual pins used in connectors. The pin labels are references to many tech issues and attributes, and not all may be documented correctly here.&lt;br /&gt;
&lt;br /&gt;
Hardware hobbyists might feel excitement at seeing a unified specification for these common connectors, but the comic is of course humorous. The real life diagrams are as follows: [http://unitedtechnologies.com.pk/Nti/image/10ci.png HDMI], [https://www.arrow.com/en/research-and-events/articles/micro-connector-usb-pinout Micro USB], [https://www.allaboutcircuits.com/technical-articles/introduction-to-usb-type-c-which-pins-power-delivery-data-transfer/ USB-C].&lt;br /&gt;
&lt;br /&gt;
=== HDMI ===&lt;br /&gt;
&lt;br /&gt;
{| class=&amp;quot;wikitable&amp;quot;&lt;br /&gt;
! Label !! Explanation !! Pin No. !! Actual purpose&lt;br /&gt;
|-&lt;br /&gt;
| +3.3V DC&lt;br /&gt;
| 3.3V is a typical voltage in digital electronics. The &amp;quot;+&amp;quot; Indicates a voltage positive with respect to ground.&lt;br /&gt;
| 1&lt;br /&gt;
| TMDS Data2+&lt;br /&gt;
|-&lt;br /&gt;
| Data&lt;br /&gt;
| Most digital communications cables contain at least one wire that carries data. {{w|Serial communication}} protocols have one data line. Typically there will be a more descriptive name if there are multiple data pins. &amp;quot;Data&amp;quot; and &amp;quot;3.3V&amp;quot; set up the appearance of a normal pinout diagram to experienced readers.&lt;br /&gt;
| 2&lt;br /&gt;
| TMDS Data2 Shield&lt;br /&gt;
|-&lt;br /&gt;
| -3.3V DC&lt;br /&gt;
| Negative voltages were used more frequently in the past; however, modern systems typically generate any negative voltages they might require internally from the given positive voltages. This could be a reference to frustration specification implementers have to go through when handling hardware quirks: negative voltages are very abnormal, and would require design alteration to meet, but the designers of a ubiquitous plug can do whatever they want.&lt;br /&gt;
| 3&lt;br /&gt;
| TMDS Data2-&lt;br /&gt;
|-&lt;br /&gt;
| +5V&lt;br /&gt;
| 5V is a typical voltage in digital electronics. The &amp;quot;+&amp;quot; Indicates a voltage positive with respect to Ground. Typically this is assumed to be DC. V is also the Roman numeral for 5.&lt;br /&gt;
| 4&lt;br /&gt;
| TMDS Data1+&lt;br /&gt;
|-&lt;br /&gt;
| Tx&lt;br /&gt;
| &amp;quot;Tx&amp;quot; typically refers to pins used to transmit as opposed to &amp;quot;Rx&amp;quot; (receive).&lt;br /&gt;
| 5&lt;br /&gt;
| TMDS Data1 Shield&lt;br /&gt;
|-&lt;br /&gt;
| +6VI&lt;br /&gt;
| V is usually used to represent volts, but here, VI represents the Roman numeral 6. (See Pin 4)&amp;lt;br&amp;gt;Voltages above 5 are not usually used in micro-circuitry cables.&amp;lt;br&amp;gt;The product VI (Voltage * Current) is equal to Power.&lt;br /&gt;
| 6&lt;br /&gt;
| TMDS Data1-&lt;br /&gt;
|-&lt;br /&gt;
| Wx&lt;br /&gt;
| &amp;quot;Wx&amp;quot; does not typically exist in the &amp;quot;Tx&amp;quot;/&amp;quot;Rx&amp;quot; scheme. In the weather forecasting community, Wx means &amp;quot;weather&amp;quot;.&lt;br /&gt;
| 7&lt;br /&gt;
| TMDS Data0+&lt;br /&gt;
|-&lt;br /&gt;
| +7VII&lt;br /&gt;
| V is usually used to represent volts, but here, VII represents the Roman numeral 7, continuing the pattern from above.&lt;br /&gt;
| 8&lt;br /&gt;
| TMDS Data0 Shield&lt;br /&gt;
|-&lt;br /&gt;
| Rx Only&lt;br /&gt;
| &amp;quot;Rx&amp;quot; typically refers to pins used to receive as opposed to &amp;quot;Tx&amp;quot; (transmit). This description might also be related to the fact that most Ethernet devices can exchange the Rx and Tx port automatically, if needed, in order to eliminate the need for crossover cables and the fact that it is possible to insert the USB-C connector rotated by 180°.&amp;lt;br&amp;gt;Additionally, &amp;quot;Rx&amp;quot;, standing for the Latin &amp;quot;recipe&amp;quot; is a common abbreviation for {{w|medical prescription}}s. Some medicines are prescription only or, in other words, &amp;quot;Rx Only&amp;quot;. &lt;br /&gt;
| 9&lt;br /&gt;
| TMDS Data0-&lt;br /&gt;
|-&lt;br /&gt;
| Antidata&lt;br /&gt;
| Some ports use differential signaling, where a signal and its inverse are sent over a pair of pins (e.g. D+ and D-). The combined signal is more robust to interference. This mixes that practice with a humorous reference to the notion of matter versus antimatter. Currently there is no such thing as antidata{{Citation needed}}. Antidata pins could be needed in the future as low-entropy or high-entropy source in quantum communication connectors to securely dispose of data.&lt;br /&gt;
| 10&lt;br /&gt;
| TMDS Clock+&lt;br /&gt;
|-&lt;br /&gt;
| Unknown&lt;br /&gt;
| Occasionally extra pins will be included for future use; however they will typically be labeled &amp;quot;reserved&amp;quot; to point out that their usage is not yet defined. The use of &amp;quot;unknown&amp;quot; suggests that this pinout is based on an incomplete reverse-engineering of the HDMI format, instead of on the official documentation, or maybe the official documentation doesn't explain it and this pin's function is being kept as a secret by the ones who designed it.&lt;br /&gt;
| 11&lt;br /&gt;
| TMDS Clock Shield&lt;br /&gt;
|-&lt;br /&gt;
| Water&lt;br /&gt;
| Labs and hospitals often have ports connecting to common sources of various supplies (oxygen, water, fuel, vacuum).&lt;br /&gt;
| 12&lt;br /&gt;
| TMDS Clock-&lt;br /&gt;
|-&lt;br /&gt;
| +240V DC&lt;br /&gt;
| This is a reference to heavy-duty home and commercial appliances, which use 240V AC for power. Additionally, many cable specifications try to provide a way to power devices over them (PS/2, USB, Power over Ethernet,) but these small communication cables usually carry only DC and not AC electricity.&lt;br /&gt;
High voltage power is only sometimes used in small communications connectors. It might help to keep the current of power lines low to avoid generating excess heat. With +240V DC inside the HDMI cable, monitors would not need any longer a separate power plug. This is similar to Power-over-Ethernet, which does not exceed 60V, or ISDN, which goes up to 110V depending on country, and helps surveillance cameras or telephones to work with one connecting cable only. But with this much voltage on such a small cable, a short could lead more likely to melting the insulation and wiring in a sudden burst of toxic smoke. The produced thermal power through a short with resistance R_short that is building up is U²/R_short, increasing with the square of the voltage (also the breakdown voltage of the isolation is more easily reached). However, a high voltage reduces the chance of a peripheral drawing too much current, which could cause a fire on thin wires otherwise: The current through the cable for a device, needing a given power of P, is I = P_dev/U, the thermal power of the cables with resistance R is P_cables = R_cables*I² = R_cables*P_dev²/U², so it is reduced by the square of the voltage.&lt;br /&gt;
| 13&lt;br /&gt;
| CEC&lt;br /&gt;
|-&lt;br /&gt;
| Vacuum&lt;br /&gt;
| Labs often have ports connecting to common sources of various supplies (oxygen, water, fuel, vacuum).&lt;br /&gt;
| 14&lt;br /&gt;
| Reserved (1.0-1.3a), Utility (1.4+, optional)&lt;br /&gt;
|-&lt;br /&gt;
| 5V AC&lt;br /&gt;
| Pins often supply low voltage direct current to devices. This pin supplies 5V {{w|alternating current}}, which is not typically supplied. AC is used in {{w|Electric power transmission|electrical transmission}} because it can be stepped up to high voltage to minimize transmission losses, then stepped down to more useful voltages right before loads. DC power is required for logic circuitry like in computers. Conversion between the the two kinds of power everywhere would make for transformers being embedded in most modern devices, taking extra materials to manufacture and losing a significant percentage of all electricity in the conversion. Having both is not entirely unheard of: the Commodore 64 power supply provides both DC, for the logic of the motherboard; and AC, for powering the tape drive.&lt;br /&gt;
| 15&lt;br /&gt;
| SCL (I²C serial clock for DDC)&lt;br /&gt;
|-&lt;br /&gt;
| Amazon Copyright Pin&lt;br /&gt;
| HDMI can optionally be protected by a {{w|digital rights management}} (DRM) scheme, known as {{w|High-bandwidth Digital Content Protection|HDCP}}. This pin humorously implies the presence of a different DRM scheme specific to {{w|Amazon (company)|Amazon}} the company, as well as poking fun at the fact that copyright is an explicit part of the HDMI protocol (although it is not assigned to a specific pin). This is likely a reference to how chips and cables and specifications often have specific strange additions or functionality in them to meet the requests of various bodies invested in the design process: additionally after reverse engineering many strange things have been found laying around in the functionality of hardware that do unexpected special things.&lt;br /&gt;
| 16&lt;br /&gt;
| SDA (I²C serial data for DDC)&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| GND typically refers to &amp;quot;ground&amp;quot; on pinout diagrams. Remarkably, this is correct.&lt;br /&gt;
| 17&lt;br /&gt;
| DDC/CEC Ground&lt;br /&gt;
|-&lt;br /&gt;
| Decorative&lt;br /&gt;
| Decorative elements are pieces of an assembly that serve only an aesthetic purpose without any technical function. This would not be particularly useful inside a connector, as almost no one will ever see it--however, in HDMI, pin 14 was reserved for future use in versions 1.0–1.3a (and was only assigned an official use in 1.4). A decorative pin is also a popular piece of jewelry.&lt;br /&gt;
| 18&lt;br /&gt;
| +5V&lt;br /&gt;
|-&lt;br /&gt;
| Ground&lt;br /&gt;
| Compared to Pin 17 (&amp;quot;GND&amp;quot;), this appears to be the same ground pin. However, the presence of both GND and Ground seems to imply that GND represents something other than the standard &amp;quot;ground&amp;quot; pin. Alternatively, this pin could supply &amp;quot;Ground&amp;quot; as in soil (like the &amp;quot;soup&amp;quot; electrical outlet from [[1293: Job Interview|1293]]). Some systems have different grounds for analog and digital sections, but they would typically be disambiguated by terms like AGND. Many pinouts have multiple grounds or DC supplies with no apparent explanation, seen more prominently on Randall's USB connector.&lt;br /&gt;
| 19&lt;br /&gt;
| Hot Plug Detect&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
The {{w|HDMI}} interface uses four pairs of shielded twisted-pair connectors, along with seven other connectors. ({{w|Twisted pair}} means a wire is wrapped with the other wire that returns the current to the original device, thus minimizing electromagnetic noise. Shielding refers to wrapping a cable with a conductor to absorb the energy of noise.) Three of these pairs are for data (TMDS Data0, Data1, and Data2) and the other is a clock. These pairs take up three pins as one of them is a ground pin for the shielding wrapped around each pair. TMDS stands for &amp;quot;{{w|Transition-minimized differential signaling}}&amp;quot; and is also used in the DVI standard.&lt;br /&gt;
&lt;br /&gt;
DDC stands for &amp;quot;Display Data Channel&amp;quot; and is based on the {{w|I²C}} serial standard. It is used to allow the transmitting device to learn what formats of data the receiving device can accept.&lt;br /&gt;
&lt;br /&gt;
CEC stands for &amp;quot;Consumer Electronics Control&amp;quot; and is supposed to allow a single remote control to control multiple devices.&lt;br /&gt;
&lt;br /&gt;
&amp;quot;Hot Plug Detect&amp;quot; refers to hot-plugging, where a cable is connected to a device already turned on. The device should then ideally detect that the cable has been plugged in and respond appropriately.&lt;br /&gt;
&lt;br /&gt;
=== Micro USB ===&lt;br /&gt;
&lt;br /&gt;
{| class=&amp;quot;wikitable&amp;quot;&lt;br /&gt;
! Label !! Explanation !! Pin No. !! Actual Purpose&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| A ground pin&lt;br /&gt;
| 1&lt;br /&gt;
| +5 V&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| A second ground pin&lt;br /&gt;
| 2&lt;br /&gt;
| Data- (Differential signalling)&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| A third ground pin&lt;br /&gt;
| 3&lt;br /&gt;
| Data+&lt;br /&gt;
|-&lt;br /&gt;
| USB&lt;br /&gt;
| Apparently the only data pin in this connector. This could be a play on how the USB specification tries to squeeze all data onto a single channel as if it is a software protocol rather than specializing the structure of a physical cable to provide for rapidly carrying the information likely to flow over it. USB is an external packet network similar to Ethernet, but uses a totally new design without any reuse of prior similar specification. Ironically, in the real Micro- and Mini-USB standards, this pin is not connected to a wire in the cable.&lt;br /&gt;
| 4&lt;br /&gt;
| On-The-Go ID, does not have a wire in the cable.&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| A fourth ground pin. A real micro USB only has one ground pin, in addition to the metal plug housing. This is the location of the actual ground pin.&lt;br /&gt;
| 5&lt;br /&gt;
| Ground.&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
A ground pin is commonly found on USB and other pin connectors. At least one ground is necessary to complete the circuit, and some cables use multiple ground lines to distribute current or to support {{w|twisted pair}}s. However, there is no purpose served by having many more ground pins than data pins. Therefore, it seems rather silly for the micro USB to have 4 ground pins and only 1 functional &amp;quot;USB&amp;quot; pin. It also does not give much information about what the &amp;quot;USB&amp;quot; pin would do, as opposed to a standard pinout diagram. This diagram also leaves out the +5V power pin that is present in the real micro USB connector, which would render most USB peripherals unable to function.&lt;br /&gt;
&lt;br /&gt;
The ordering and count of the pins may be an allusion to {{w|Monty Python}}'s {{w|Spam (Monty Python)|&amp;quot;Spam&amp;quot;}} sketch, in which one of the many Spam-related menu items is &amp;quot;Spam, Spam, Spam, egg, and Spam&amp;quot;.&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
=== USB-C ===&lt;br /&gt;
{| class=&amp;quot;wikitable&amp;quot;&lt;br /&gt;
! Label !! Explanation !! Pin No. !! Actual Purpose&lt;br /&gt;
|-&lt;br /&gt;
| +5V DC&lt;br /&gt;
| A common electronics supply voltage.&lt;br /&gt;
| A12&lt;br /&gt;
| Ground&lt;br /&gt;
|-&lt;br /&gt;
| +3.3V DC&lt;br /&gt;
| Another common electronics supply voltage. This pin is not present on USB type C, mostly because the voltage is too low to supply useful levels of power at the current limit of the pins.&lt;br /&gt;
| A11&lt;br /&gt;
| Rx2+ (Differential Signalling for Superspeed or alternate modes)&lt;br /&gt;
|-&lt;br /&gt;
| +120V AC&lt;br /&gt;
| Residential supply voltage in the United States; its use on an electronics connector would be very unusual, as it would burn out any unguarded transistor-logic electronics, producing smoke and melting the metal together such that the cable likely couldn't be removed. But this high a voltage might be an allusion to the high voltages USB-C screens and similar devices can request in order to get enough energy without exceeding the cable's current limit.&lt;br /&gt;
| A10&lt;br /&gt;
| Rx2-&lt;br /&gt;
|-&lt;br /&gt;
| Boobytrap Pin (Pure solder)&lt;br /&gt;
| {{w|Solder}} is a metal alloy with a low melting temperature (typically around 360°C, but in special cases melting points between 90°C and 450°C or above are available), used to bond electronic components together permanently. Most solder materials are quite ductile so it might be too easy for the forces a connector is subject to to permanently change their shape. Along with the fact that the resistance of solder is typically way higher than that for copper the pin under heavy electrical stress could overheat and melt, thus bonding the connector to its receptacle, and thereby &amp;quot;trapping&amp;quot; the receptacle. Additionally putting a pin that might slightly change their shape directly next to a high voltage pin means risking accidentally connecting two power rails with entirely different voltages together (causing an overvoltage in the lower-voltage rail that is likely to break the circuit, as has happened with some Apple devices). In this case the +120V AC pin might be able to deliver enough power to actually fuse the solder-only pin. This could also be a reference to increasing publicity around the fields of electronics security: hobby reverse engineers have been finding ways for some time now to evade the blown fuses in microcircuitry preventing them from being reprogrammed, using glitching techniques.&lt;br /&gt;
&lt;br /&gt;
Another issue is that the heat required for anyone to solder a wire to the cable-side of that pin would cause the entire pin to melt and coagulate, triggering the boobytrap, and causing the pin to disappear and possibly make a mess next to the other pins. &lt;br /&gt;
| A9&lt;br /&gt;
| VBUS (+5V)&lt;br /&gt;
|-&lt;br /&gt;
| Mechanical&lt;br /&gt;
| All connectors include portions whose job is to ensure a solid connection between the cable and the port. This is typically not the job of the pins, however. In real USB type C connectors, this task is performed by the center tongue of the female connector. It could also imply transmission of energy or signal through a mechanical principle, such as torque or reciprocating motion.&lt;br /&gt;
| A8&lt;br /&gt;
| SBU1 (Sideband Use)&lt;br /&gt;
|-&lt;br /&gt;
| +3.3eV/C&lt;br /&gt;
| {{w|Electron-volts}} per {{w|coulomb}} would be a very unusual unit to see in a pinout. These units are used in particle physics, but the appearance is very similar to the common 3.3V supply. It would be a unit of electric potential equivalent to approximately 1.60217662 * 10&amp;lt;sup&amp;gt;-19&amp;lt;/sup&amp;gt; volts. Thus 3.3eV/C would be 5.287183 * 10&amp;lt;sup&amp;gt;-19&amp;lt;/sup&amp;gt; volts, or slightly more than 1/2 attovolts. It could also be read as +3.3 eV/c (per {{w|speed of light}}), in which case it is equivalent to a momentum of 5.3E-28 kg m/s, In high-energy physics, the momentum of particles is sometimes expressed in MeV/c or GeV/c units.&lt;br /&gt;
| A7&lt;br /&gt;
| D- (USB 2.0 Data)&lt;br /&gt;
|-&lt;br /&gt;
| Candlepin&lt;br /&gt;
| Randall is making a pun on the word ''pin'', which refers to a electrical connector pin as well as a thing to knock down in bowling. {{w|Candlepin bowling}} is a form of bowling.&lt;br /&gt;
| A6&lt;br /&gt;
| D+&lt;br /&gt;
|-&lt;br /&gt;
| Facebook use&lt;br /&gt;
| This would imply that Facebook had a hand in specifying USB type C, and had a pin dedicated to their use. This could be seen as strange given Facebook's primary business is web technology and would have little need for a dedicated pin in the USB standard, but a lot of back doors have been found in electronics.&lt;br /&gt;
| A5&lt;br /&gt;
| CC1 (Configuration Channel)&lt;br /&gt;
|-&lt;br /&gt;
| +5V (Positrons)&lt;br /&gt;
| {{w|Positron}}s are the antimatter counterparts to electrons. So this pin is supplying +5V, but does so by sourcing positrons into the device rather than sinking electrons out. Positrons cannot be conducted through normal matter conductors as they would annihilate the electrons.&lt;br /&gt;
| A4&lt;br /&gt;
| VBUS (+5V)&lt;br /&gt;
|-&lt;br /&gt;
| Pin Roulette&lt;br /&gt;
| Presumably in the same vein as &amp;quot;{{w|Chatroulette}}&amp;quot;, this pin's purpose is not rigidly defined and is instead left to chance. According to the title text, this pin's counterpart on the other side of the connector is the &amp;quot;FireWire Tribute Pin&amp;quot;, so this cable would only be truly rotationally symmetric (which is the whole point of the USB-C connector) when the pin roulette ball lands on that same function.&lt;br /&gt;
| A3&lt;br /&gt;
| Tx1- (Differential Signalling for Superspeed or alternate modes)&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| Ground pin. Typically denoted as &amp;quot;GND&amp;quot;.&lt;br /&gt;
| A2&lt;br /&gt;
| Tx1+&lt;br /&gt;
|-&lt;br /&gt;
| SKY&lt;br /&gt;
| Reference to the ground pin, which refers to the common grounding on the larger metal body. There is no corresponding &amp;quot;sky&amp;quot; pin, although sky is often thought as the opposite of ground.&lt;br /&gt;
| A1&lt;br /&gt;
| GND&lt;br /&gt;
|-&lt;br /&gt;
| FireWire Tribute Pin&lt;br /&gt;
| ''In title text:'' {{w|FireWire}} is Apple's version of IEEE 1394 which is a 6 pin connector that has a ground pin, a power pin and two pairs of data pins. It was something of a competitor to USB, and had faster data rates than USB 2.0, but is much less popular now, and has essentially been replaced by {{w|Thunderbolt (interface)|Thunderbolt}}. Presumably the writers of the USB-C standard (which far outpaces its data rates) wished to memorialize it somehow, although it's not clear how the pin actually works for that purpose.&lt;br /&gt;
| B3&lt;br /&gt;
| Tx2-&lt;br /&gt;
|}&lt;br /&gt;
The two sides of a USB C connector are labeled &amp;quot;A&amp;quot; and &amp;quot;B&amp;quot;. These are rotationally symmetric, mostly. For example, B10 and B11 are Rx1, a separate twisted-pair for receiving information in Superspeed mode compared to A10 and A11's Rx2. This gives two Rx/Tx pairs for Superspeed use. CC1 and SBU1 are mirrored to CC2 and SBU2. However, the D, VBUS, and GND pins are perfectly mirrored.&lt;br /&gt;
&lt;br /&gt;
The fact that only half of the USB-C pins are documented might hint to an alternative way to manufacture connectors that can be inserted rotated by 180°: Make the receiver use only the right side of the pins and make the sender connect both the left and the right side so all Pins that might match a function are connected correctly no matter if the cable is rotated by 180°. However, doing this would result in only having one Rx/Tx pair for Superspeed use.&lt;br /&gt;
&lt;br /&gt;
=== Coax ===&lt;br /&gt;
&lt;br /&gt;
A {{w|RF connector|coaxial RF connector}} has two contacts - one pin, and the shield; typically the whole connector is labeled with whatever function/signal is carried by the pair.  The joke here is that the label is ''technically'' correct (the best kind of correct), but not very useful to the end user, as it does not specify the voltage rating, impedance, connector size, or other useful information about the cable.  Some serial data transmission systems, such as {{w|Ethernet|Ethernet}}, used coaxial cable early on as a low cost, widely available solution, however most of these have largely become obsolete.  A common coaxial cable still widely in use is {{w|RG-6|RG-6}}, which is typically used to deliver satellite television, cable television and cable Internet services in the United States.&lt;br /&gt;
&lt;br /&gt;
==Transcript==&lt;br /&gt;
&lt;br /&gt;
:[Caption at top]&lt;br /&gt;
:Pinouts&lt;br /&gt;
:Quick Reference Guide&lt;br /&gt;
&lt;br /&gt;
:[Four common connectors are depicted - vertically, rather than the usual horizontal orientation.]&lt;br /&gt;
&lt;br /&gt;
:[The first connector is a 19-pin HDMI connector.]&lt;br /&gt;
:[The nine pins on the left are labeled:]&lt;br /&gt;
:*Data&lt;br /&gt;
:*+5V&lt;br /&gt;
:*+6VI&lt;br /&gt;
:*+7VII&lt;br /&gt;
:*Antidata&lt;br /&gt;
:*Water&lt;br /&gt;
:*Vacuum&lt;br /&gt;
:*Amazon Copyright Pin&lt;br /&gt;
:*Decorative&lt;br /&gt;
:[The ten pins on the right are labeled:]&lt;br /&gt;
:*+3.3V DC&lt;br /&gt;
:*-3.3V DC&lt;br /&gt;
:*Tx&lt;br /&gt;
:*Wx&lt;br /&gt;
:*Rx Only&lt;br /&gt;
:*Unknown&lt;br /&gt;
:*+240V DC&lt;br /&gt;
:*5V AC&lt;br /&gt;
:*GND&lt;br /&gt;
:*Ground&lt;br /&gt;
&lt;br /&gt;
:[The second connector is a 5-pin Micro USB connector.]&lt;br /&gt;
:[The five pins are labeled:]&lt;br /&gt;
:*GND&lt;br /&gt;
:*GND&lt;br /&gt;
:*GND&lt;br /&gt;
:*USB&lt;br /&gt;
:*GND&lt;br /&gt;
&lt;br /&gt;
:[The third connector is a 24-pin USB-C connector, with only the right side labeled.]&lt;br /&gt;
:[The twelve pins on the right are labeled:]&lt;br /&gt;
:*+5V DC&lt;br /&gt;
:*+3.3V DC&lt;br /&gt;
:*+120V AC&lt;br /&gt;
:*Boobytrap Pin (Pure Solder)&lt;br /&gt;
:*Mechanical&lt;br /&gt;
:*+3.3eV/C&lt;br /&gt;
:*Candlepin&lt;br /&gt;
:*Facebook Use&lt;br /&gt;
:*+5V (Positrons)&lt;br /&gt;
:*Pin Roulette&lt;br /&gt;
:*GND&lt;br /&gt;
:*SKY&lt;br /&gt;
&lt;br /&gt;
:[The fourth and final connector is a 1-pin COAX connector.]&lt;br /&gt;
:[The one pin in the center is labeled:]&lt;br /&gt;
:*Pin&lt;br /&gt;
&lt;br /&gt;
{{comic discussion}}&lt;br /&gt;
[[Category:Computers]]&lt;/div&gt;</summary>
		<author><name>172.69.68.195</name></author>	</entry>

	<entry>
		<id>https://www.explainxkcd.com/wiki/index.php?title=2317:_Pinouts&amp;diff=193177</id>
		<title>2317: Pinouts</title>
		<link rel="alternate" type="text/html" href="https://www.explainxkcd.com/wiki/index.php?title=2317:_Pinouts&amp;diff=193177"/>
				<updated>2020-06-10T22:28:36Z</updated>
		
		<summary type="html">&lt;p&gt;172.69.68.195: /* Explanation */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;{{comic&lt;br /&gt;
| number    = 2317&lt;br /&gt;
| date      = June 8, 2020&lt;br /&gt;
| title     = Pinouts&lt;br /&gt;
| image     = pinouts.png&lt;br /&gt;
| titletext = The other side of USB-C is rotationally symmetric except that the 3rd pin from the top is designated FIREWIRE TRIBUTE PIN.&lt;br /&gt;
}}&lt;br /&gt;
&lt;br /&gt;
==Explanation==&lt;br /&gt;
{{incomplete|Created by a FIREWIRE TRIBUTE PIN. Should include a column for the actual purpose of the pin. Do NOT delete this tag too soon.}}&lt;br /&gt;
Electronics connectors are designed to transport both information and power. A {{w|pinout}} diagram describes the function of each pin such as to communicate data, transport power, physical function (keying), etc. In this comic there is an absurd alternative to the actual pins used in connectors. The pin labels are references to many tech issues and attributes, and not all may be documented correctly here.&lt;br /&gt;
&lt;br /&gt;
Hardware hobbyists might feel excitement at seeing a unified specification for these common connectors, but the comic is of course humorous. The real life diagrams are as follows: [http://unitedtechnologies.com.pk/Nti/image/10ci.png HDMI], [https://www.arrow.com/en/research-and-events/articles/micro-connector-usb-pinout Micro USB], [https://www.allaboutcircuits.com/technical-articles/introduction-to-usb-type-c-which-pins-power-delivery-data-transfer/ USB-C].&lt;br /&gt;
&lt;br /&gt;
=== HDMI ===&lt;br /&gt;
&lt;br /&gt;
{| class=&amp;quot;wikitable&amp;quot;&lt;br /&gt;
! Label !! Explanation !! Pin No. !! Actual purpose&lt;br /&gt;
|-&lt;br /&gt;
| +3.3V DC&lt;br /&gt;
| 3.3V is a typical voltage in digital electronics. The &amp;quot;+&amp;quot; Indicates a voltage positive with respect to ground.&lt;br /&gt;
| 1&lt;br /&gt;
| TMDS Data2+&lt;br /&gt;
|-&lt;br /&gt;
| Data&lt;br /&gt;
| Most digital communications cables contain at least one wire that carries data. {{w|Serial communication}} protocols have one data line. Typically there will be a more descriptive name if there are multiple data pins. &amp;quot;Data&amp;quot; and &amp;quot;3.3V&amp;quot; set up the appearance of a normal pinout diagram to experienced readers.&lt;br /&gt;
| 2&lt;br /&gt;
| TMDS Data2 Shield&lt;br /&gt;
|-&lt;br /&gt;
| -3.3V DC&lt;br /&gt;
| Negative voltages were used more frequently in the past; however, modern systems typically generate any negative voltages they might require internally from the given positive voltages. This could be a reference to frustration specification implementers have to go through when handling hardware quirks: negative voltages are very abnormal, and would require design alteration to meet, but the designers of a ubiquitous plug can do whatever they want.&lt;br /&gt;
| 3&lt;br /&gt;
| TMDS Data2-&lt;br /&gt;
|-&lt;br /&gt;
| +5V&lt;br /&gt;
| 5V is a typical voltage in digital electronics. The &amp;quot;+&amp;quot; Indicates a voltage positive with respect to Ground. Typically this is assumed to be DC. V is also the Roman numeral for 5.&lt;br /&gt;
| 4&lt;br /&gt;
| TMDS Data1+&lt;br /&gt;
|-&lt;br /&gt;
| Tx&lt;br /&gt;
| &amp;quot;Tx&amp;quot; typically refers to pins used to transmit as opposed to &amp;quot;Rx&amp;quot; (receive).&lt;br /&gt;
| 5&lt;br /&gt;
| TMDS Data1 Shield&lt;br /&gt;
|-&lt;br /&gt;
| +6VI&lt;br /&gt;
| V is usually used to represent volts, but here, VI represents the Roman numeral 6. (See Pin 4)&amp;lt;br&amp;gt;Voltages above 5 are not usually used in micro-circuitry cables.&amp;lt;br&amp;gt;The product VI (Voltage * Current) is equal to Power.&lt;br /&gt;
| 6&lt;br /&gt;
| TMDS Data1-&lt;br /&gt;
|-&lt;br /&gt;
| Wx&lt;br /&gt;
| &amp;quot;Wx&amp;quot; does not typically exist in the &amp;quot;Tx&amp;quot;/&amp;quot;Rx&amp;quot; scheme. In the weather forecasting community, Wx means &amp;quot;weather&amp;quot;.&lt;br /&gt;
| 7&lt;br /&gt;
| TMDS Data0+&lt;br /&gt;
|-&lt;br /&gt;
| +7VII&lt;br /&gt;
| V is usually used to represent volts, but here, VII represents the Roman numeral 7, continuing the pattern from above.&lt;br /&gt;
| 8&lt;br /&gt;
| TMDS Data0 Shield&lt;br /&gt;
|-&lt;br /&gt;
| Rx Only&lt;br /&gt;
| &amp;quot;Rx&amp;quot; typically refers to pins used to receive as opposed to &amp;quot;Tx&amp;quot; (transmit). This description might also be related to the fact that most Ethernet devices can exchange the Rx and Tx port automatically, if needed, in order to eliminate the need for crossover cables and the fact that it is possible to insert the USB-C connector rotated by 180°.&amp;lt;br&amp;gt;Additionally, &amp;quot;Rx&amp;quot;, standing for the Latin &amp;quot;recipe&amp;quot; is a common abbreviation for {{w|medical prescription}}s. Some medicines are prescription only or, in other words, &amp;quot;Rx Only&amp;quot;. &lt;br /&gt;
| 9&lt;br /&gt;
| TMDS Data0-&lt;br /&gt;
|-&lt;br /&gt;
| Antidata&lt;br /&gt;
| Some ports use differential signaling, where a signal and its inverse are sent over a pair of pins (e.g. D+ and D-). The combined signal is more robust to interference. This mixes that practice with a humorous reference to the notion of matter versus antimatter. Currently there is no such thing as antidata{{Citation needed}}. Antidata pins could be needed in the future as low-entropy or high-entropy source in quantum communication connectors to securely dispose of data.&lt;br /&gt;
| 10&lt;br /&gt;
| TMDS Clock+&lt;br /&gt;
|-&lt;br /&gt;
| Unknown&lt;br /&gt;
| Occasionally extra pins will be included for future use; however they will typically be labeled &amp;quot;reserved&amp;quot; to point out that their usage is not yet defined. The use of &amp;quot;unknown&amp;quot; suggests that this pinout is based on an incomplete reverse-engineering of the HDMI format, instead of on the official documentation, or maybe the official documentation doesn't explain it and this pin's function is being kept as a secret by the ones who designed it.&lt;br /&gt;
| 11&lt;br /&gt;
| TMDS Clock Shield&lt;br /&gt;
|-&lt;br /&gt;
| Water&lt;br /&gt;
| Labs and hospitals often have ports connecting to common sources of various supplies (oxygen, water, fuel, vacuum).&lt;br /&gt;
| 12&lt;br /&gt;
| TMDS Clock-&lt;br /&gt;
|-&lt;br /&gt;
| +240V DC&lt;br /&gt;
| This is a reference to heavy-duty home and commercial appliances, which use 240V AC for power. Additionally, many cable specifications try to provide a way to power devices over them (PS/2, USB, Power over Ethernet,) but these small communication cables usually carry only DC and not AC electricity.&lt;br /&gt;
High voltage power is only sometimes used in small communications connectors. It might help to keep the current of power lines low to avoid generating excess heat. With +240V DC inside the HDMI cable, monitors would not need any longer a separate power plug. This is similar to Power-over-Ethernet, which does not exceed 60V, or ISDN, which goes up to 110V depending on country, and helps surveillance cameras or telephones to work with one connecting cable only. But with this much voltage on such a small cable, a short could lead more likely to melting the insulation and wiring in a sudden burst of toxic smoke. The produced thermal power through a short with resistance R_short that is building up is U²/R_short, increasing with the square of the voltage (also the breakdown voltage of the isolation is more easily reached). However, a high voltage reduces the chance of a peripheral drawing too much current, which could cause a fire on thin wires otherwise: The current through the cable for a device, needing a given power of P, is I = P_dev/U, the thermal power of the cables with resistance R is P_cables = R_cables*I² = R_cables*P_dev²/U², so it is reduced by the square of the voltage.&lt;br /&gt;
| 13&lt;br /&gt;
| CEC&lt;br /&gt;
|-&lt;br /&gt;
| Vacuum&lt;br /&gt;
| Labs often have ports connecting to common sources of various supplies (oxygen, water, fuel, vacuum).&lt;br /&gt;
| 14&lt;br /&gt;
| Reserved (1.0-1.3a), Utility (1.4+, optional)&lt;br /&gt;
|-&lt;br /&gt;
| 5V AC&lt;br /&gt;
| Pins often supply low voltage direct current to devices. This pin supplies 5V {{w|alternating current}}, which is not typically supplied. AC is used in {{w|Electric power transmission|electrical transmission}} because it can be stepped up to high voltage to minimize transmission losses, then stepped down to more useful voltages right before loads. DC power is required for logic circuitry like in computers. Conversion between the the two kinds of power everywhere would make for transformers being embedded in most modern devices, taking extra materials to manufacture and losing a significant percentage of all electricity in the conversion. Having both is not entirely unheard of: the Commodore 64 power supply provides both DC, for the logic of the motherboard; and AC, for powering the tape drive.&lt;br /&gt;
| 15&lt;br /&gt;
| SCL (I²C serial clock for DDC)&lt;br /&gt;
|-&lt;br /&gt;
| Amazon Copyright Pin&lt;br /&gt;
| HDMI can optionally be protected by a {{w|digital rights management}} (DRM) scheme, known as {{w|High-bandwidth Digital Content Protection|HDCP}}. This pin humorously implies the presence of a different DRM scheme specific to {{w|Amazon (company)|Amazon}} the company, as well as poking fun at the fact that copyright is an explicit part of the HDMI protocol (although it is not assigned to a specific pin). This is likely a reference to how chips and cables and specifications often have specific strange additions or functionality in them to meet the requests of various bodies invested in the design process: additionally after reverse engineering many strange things have been found laying around in the functionality of hardware that do unexpected special things.&lt;br /&gt;
| 16&lt;br /&gt;
| SDA (I²C serial data for DDC)&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| GND typically refers to &amp;quot;ground&amp;quot; on pinout diagrams. Remarkably, this is correct.&lt;br /&gt;
| 17&lt;br /&gt;
| DDC/CEC Ground&lt;br /&gt;
|-&lt;br /&gt;
| Decorative&lt;br /&gt;
| Decorative elements are pieces of an assembly that serve only an aesthetic purpose without any technical function. This would not be particularly useful inside a connector, as almost no one will ever see it--however, in HDMI, pin 14 was reserved for future use in versions 1.0–1.3a (and was only assigned an official use in 1.4). A decorative pin is also a popular piece of jewelry.&lt;br /&gt;
| 18&lt;br /&gt;
| +5V&lt;br /&gt;
|-&lt;br /&gt;
| Ground&lt;br /&gt;
| Compared to Pin 17 (&amp;quot;GND&amp;quot;), this appears to be the same ground pin. However, the presence of both GND and Ground seems to imply that GND represents something other than the standard &amp;quot;ground&amp;quot; pin. Alternatively, this pin could supply &amp;quot;Ground&amp;quot; as in soil (like the &amp;quot;soup&amp;quot; electrical outlet from [[1293: Job Interview|1293]]). Some systems have different grounds for analog and digital sections, but they would typically be disambiguated by terms like AGND. Many pinouts have multiple grounds or DC supplies with no apparent explanation, seen more prominently on Randall's USB connector.&lt;br /&gt;
| 19&lt;br /&gt;
| Hot Plug Detect&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
The {{w|HDMI}} interface uses four pairs of shielded twisted-pair connectors, along with seven other connectors. ({{w|Twisted pair}} means a wire is wrapped with the other wire that returns the current to the original device, thus minimizing electromagnetic noise. Shielding refers to wrapping a cable with a conductor to absorb the energy of noise.) Three of these pairs are for data (TMDS Data0, Data1, and Data2) and the other is a clock. These pairs take up three pins as one of them is a ground pin for the shielding wrapped around each pair. TMDS stands for &amp;quot;{{w|Transition-minimized differential signaling}}&amp;quot; and is also used in the DVI standard.&lt;br /&gt;
&lt;br /&gt;
DDC stands for &amp;quot;Display Data Channel&amp;quot; and is based on the {{w|I²C}} serial standard. It is used to allow the transmitting device to learn what formats of data the receiving device can accept.&lt;br /&gt;
&lt;br /&gt;
CEC stands for &amp;quot;Consumer Electronics Control&amp;quot; and is supposed to allow a single remote control to control multiple devices.&lt;br /&gt;
&lt;br /&gt;
&amp;quot;Hot Plug Detect&amp;quot; refers to hot-plugging, where a cable is connected to a device already turned on. The device should then ideally detect that the cable has been plugged in and respond appropriately.&lt;br /&gt;
&lt;br /&gt;
=== Micro USB ===&lt;br /&gt;
&lt;br /&gt;
{| class=&amp;quot;wikitable&amp;quot;&lt;br /&gt;
! Label !! Explanation !! Pin No. !! Actual Purpose&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| A ground pin&lt;br /&gt;
| 1&lt;br /&gt;
| +5 V&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| A second ground pin&lt;br /&gt;
| 2&lt;br /&gt;
| Data- (Differential signalling)&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| A third ground pin&lt;br /&gt;
| 3&lt;br /&gt;
| Data+&lt;br /&gt;
|-&lt;br /&gt;
| USB&lt;br /&gt;
| Apparently the only data pin in this connector. This could be a play on how the USB specification tries to squeeze all data onto a single channel as if it is a software protocol rather than specializing the structure of a physical cable to provide for rapidly carrying the information likely to flow over it. USB is an external packet network similar to Ethernet, but uses a totally new design without any reuse of prior similar specification. Ironically, in the real Micro- and Mini-USB standards, this pin is not connected to a wire in the cable.&lt;br /&gt;
| 4&lt;br /&gt;
| On-The-Go ID, does not have a wire in the cable.&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| A fourth ground pin. A real micro USB only has one ground pin, in addition to the metal plug housing. This is the location of the actual ground pin.&lt;br /&gt;
| 5&lt;br /&gt;
| Ground.&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
A ground pin is commonly found on USB and other pin connectors. At least one ground is necessary to complete the circuit, and some cables use multiple ground lines to distribute current or to support {{w|twisted pair}}s. However, there is no purpose served by having many more ground pins than data pins. Therefore, it seems rather silly for the micro USB to have 4 ground pins and only 1 functional &amp;quot;USB&amp;quot; pin. It also does not give much information about what the &amp;quot;USB&amp;quot; pin would do, as opposed to a standard pinout diagram. This diagram also leaves out the +5V power pin that is present in the real micro USB connector, which would render most USB peripherals unable to function.&lt;br /&gt;
&lt;br /&gt;
The ordering and count of the pins may be an allusion to {{w|Monty Python}}'s {{w|Spam (Monty Python)|&amp;quot;Spam&amp;quot;}} sketch, in which one of the many Spam-related menu items is &amp;quot;Spam, Spam, Spam, egg, and Spam&amp;quot;.&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
=== USB-C ===&lt;br /&gt;
{| class=&amp;quot;wikitable&amp;quot;&lt;br /&gt;
! Label !! Explanation !! Pin No. !! Actual Purpose&lt;br /&gt;
|-&lt;br /&gt;
| +5V DC&lt;br /&gt;
| A common electronics supply voltage.&lt;br /&gt;
| A12&lt;br /&gt;
| Ground&lt;br /&gt;
|-&lt;br /&gt;
| +3.3V DC&lt;br /&gt;
| Another common electronics supply voltage. This pin is not present on USB type C, mostly because the voltage is too low to supply useful levels of power at the current limit of the pins.&lt;br /&gt;
| A11&lt;br /&gt;
| Rx2+ (Differential Signalling for Superspeed or alternate modes)&lt;br /&gt;
|-&lt;br /&gt;
| +120V AC&lt;br /&gt;
| Residential supply voltage in the United States; its use on an electronics connector would be very unusual, as it would burn out any unguarded transistor-logic electronics, producing smoke and melting the metal together such that the cable likely couldn't be removed. But this high a voltage might be an allusion to the high voltages USB-C screens and similar devices can request in order to get enough energy without exceeding the cable's current limit.&lt;br /&gt;
| A10&lt;br /&gt;
| Rx2-&lt;br /&gt;
|-&lt;br /&gt;
| Boobytrap Pin (Pure solder)&lt;br /&gt;
| {{w|Solder}} is a metal alloy with a low melting temperature (typically around 360°C, but in special cases melting points between 90°C and 450°C or above are available), used to bond electronic components together permanently. Most solder materials are quite ductile so it might be too easy for the forces a connector is subject to to permanently change their shape. Along with the fact that the resistance of solder is typically way higher than that for copper the pin under heavy electrical stress could overheat and melt, thus bonding the connector to its receptacle, and thereby &amp;quot;trapping&amp;quot; the receptacle. Additionally putting a pin that might slightly change their shape directly next to a high voltage pin means risking accidentally connecting two power rails with entirely different voltages together (causing an overvoltage in the lower-voltage rail that is likely to break the circuit, as has happened with some Apple devices). In this case the +120V AC pin might be able to deliver enough power to actually fuse the solder-only pin. This could also be a reference to increasing publicity around the fields of electronics security: hobby reverse engineers have been finding ways for some time now to evade the blown fuses in microcircuitry preventing them from being reprogrammed, using glitching techniques.&lt;br /&gt;
&lt;br /&gt;
Another issue is that the heat required for anyone to solder a wire to the cable-side of that pin would cause the entire pin to melt and coagulate, triggering the boobytrap, and causing the pin to disappear and possibly make a mess next to the other pins. &lt;br /&gt;
| A9&lt;br /&gt;
| VBUS (+5V)&lt;br /&gt;
|-&lt;br /&gt;
| Mechanical&lt;br /&gt;
| All connectors include portions whose job is to ensure a solid connection between the cable and the port. This is typically not the job of the pins, however. In real USB type C connectors, this task is performed by the center tongue of the female connector. It could also imply transmission of energy or signal through a mechanical principle, such as torque or reciprocating motion.&lt;br /&gt;
| A8&lt;br /&gt;
| SBU1 (Sideband Use)&lt;br /&gt;
|-&lt;br /&gt;
| +3.3eV/C&lt;br /&gt;
| {{w|Electron-volts}} per {{w|coulomb}} would be a very unusual unit to see in a pinout. These units are used in particle physics, but the appearance is very similar to the common 3.3V supply. It would be a unit of electric potential equivalent to approximately 1.60217662 * 10&amp;lt;sup&amp;gt;-19&amp;lt;/sup&amp;gt; volts. Thus 3.3eV/C would be 5.287183 * 10&amp;lt;sup&amp;gt;-19&amp;lt;/sup&amp;gt; volts, or slightly more than 1/2 attovolts. It could also be read as +3.3 eV/c (per {{w|speed of light}}), in which case it is equivalent to a momentum of 5.3E-28 kg m/s, In high-energy physics, the momentum of particles is sometimes expressed in MeV/c or GeV/c units.&lt;br /&gt;
| A7&lt;br /&gt;
| D- (USB 2.0 Data)&lt;br /&gt;
|-&lt;br /&gt;
| Candlepin&lt;br /&gt;
| Randall is making a pun on the word ''pin'', which refers to a electrical connector pin as well as a thing to knock down in bowling. {{w|Candlepin bowling}} is a form of bowling.&lt;br /&gt;
| A6&lt;br /&gt;
| D+&lt;br /&gt;
|-&lt;br /&gt;
| Facebook use&lt;br /&gt;
| This would imply that Facebook had a hand in specifying USB type C, and had a pin dedicated to their use. This could be seen as strange given Facebook's primary business is web technology and would have little need for a dedicated pin in the USB standard, but a lot of back doors have been found in electronics.&lt;br /&gt;
| A5&lt;br /&gt;
| CC1 (Configuration Channel)&lt;br /&gt;
|-&lt;br /&gt;
| +5V (Positrons)&lt;br /&gt;
| {{w|Positron}}s are the antimatter counterparts to electrons. So this pin is supplying +5V, but does so by sourcing positrons into the device rather than sinking electrons out. Positrons cannot be conducted through normal matter conductors as they would annihilate the electrons.&lt;br /&gt;
| A4&lt;br /&gt;
| VBUS (+5V)&lt;br /&gt;
|-&lt;br /&gt;
| Pin Roulette&lt;br /&gt;
| Presumably in the same vein as &amp;quot;{{w|Chatroulette}}&amp;quot;, this pin's purpose is not rigidly defined and is instead left to chance. According to the title text, this pin's counterpart on the other side of the connector is the &amp;quot;FireWire Tribute Pin&amp;quot;, so this cable would only be truly rotationally symmetric (which is the whole point of the USB-C connector) when the pin roulette ball lands on that same function.&lt;br /&gt;
| A3&lt;br /&gt;
| Tx1- (Differential Signalling for Superspeed or alternate modes)&lt;br /&gt;
|-&lt;br /&gt;
| GND&lt;br /&gt;
| Ground pin. Typically denoted as &amp;quot;GND&amp;quot;.&lt;br /&gt;
| A2&lt;br /&gt;
| Tx1+&lt;br /&gt;
|-&lt;br /&gt;
| SKY&lt;br /&gt;
| Reference to the ground pin, which refers to the common grounding on the larger metal body. There is no corresponding &amp;quot;sky&amp;quot; pin, although sky is often thought as the opposite of ground.&lt;br /&gt;
| A1&lt;br /&gt;
| GND&lt;br /&gt;
|-&lt;br /&gt;
| FireWire Tribute Pin&lt;br /&gt;
| ''In title text:'' {{w|FireWire}} is Apple's version of IEEE 1394 which is a 6 pin connector that has a ground pin, a power pin and two pairs of data pins. It was something of a competitor to USB, and had faster data rates than USB 2.0, but is much less popular now, and has essentially been replaced by {{w|Thunderbolt (interface)|Thunderbolt}}. Presumably the writers of the USB-C standard (which far outpaces its data rates) wished to memorialize it somehow, although it's not clear how the pin actually works for that purpose.&lt;br /&gt;
| B3&lt;br /&gt;
| Tx2-&lt;br /&gt;
|}&lt;br /&gt;
The two sides of a USB C connector are labeled &amp;quot;A&amp;quot; and &amp;quot;B&amp;quot;. These are rotationally symmetric, mostly. For example, B10 and B11 are Rx1, a separate twisted-pair for receiving information in Superspeed mode compared to A10 and A11's Rx2. This gives two Rx/Tx pairs for Superspeed use. CC1 and SBU1 are mirrored to CC2 and SBU2. However, the D, VBUS, and GND pins are perfectly mirrored.&lt;br /&gt;
&lt;br /&gt;
The fact that only half of the USB-C pins are documented might hint to an alternative way to manufacture connectors that can be inserted rotated by 180°: Make the receiver use only the right side of the pins and make the sender connect both the left and the right side so all Pins that might match a function are connected correctly no matter if the cable is rotated by 180°. However, doing this would result in only having one Rx/Tx pair for Superspeed use.&lt;br /&gt;
&lt;br /&gt;
=== Coax ===&lt;br /&gt;
&lt;br /&gt;
A {{w|RF connector|coaxial RF connector}} has two contacts - one pin, and the shield; typically the whole connector is labeled with whatever function/signal is carried by the pair.  The joke here is that the label is ''technically'' correct (the best kind of correct), but not very useful to the end user, as it does not specify the voltage rating, impedance, connector size, or other useful information about the cable.  Some serial data transmission systems, such as {{w|Ethernet|Ethernet}} used coaxial cable early on as a low cost, widely available solution, however most of these have largely become obsolete.  A common coaxial cable still widely in use is {{w|RG-6|RG-6}}, which is typically used to deliver satellite television, cable television and cable Internet services in the United States.&lt;br /&gt;
&lt;br /&gt;
==Transcript==&lt;br /&gt;
&lt;br /&gt;
:[Caption at top]&lt;br /&gt;
:Pinouts&lt;br /&gt;
:Quick Reference Guide&lt;br /&gt;
&lt;br /&gt;
:[Four common connectors are depicted - vertically, rather than the usual horizontal orientation.]&lt;br /&gt;
&lt;br /&gt;
:[The first connector is a 19-pin HDMI connector.]&lt;br /&gt;
:[The nine pins on the left are labeled:]&lt;br /&gt;
:*Data&lt;br /&gt;
:*+5V&lt;br /&gt;
:*+6VI&lt;br /&gt;
:*+7VII&lt;br /&gt;
:*Antidata&lt;br /&gt;
:*Water&lt;br /&gt;
:*Vacuum&lt;br /&gt;
:*Amazon Copyright Pin&lt;br /&gt;
:*Decorative&lt;br /&gt;
:[The ten pins on the right are labeled:]&lt;br /&gt;
:*+3.3V DC&lt;br /&gt;
:*-3.3V DC&lt;br /&gt;
:*Tx&lt;br /&gt;
:*Wx&lt;br /&gt;
:*Rx Only&lt;br /&gt;
:*Unknown&lt;br /&gt;
:*+240V DC&lt;br /&gt;
:*5V AC&lt;br /&gt;
:*GND&lt;br /&gt;
:*Ground&lt;br /&gt;
&lt;br /&gt;
:[The second connector is a 5-pin Micro USB connector.]&lt;br /&gt;
:[The five pins are labeled:]&lt;br /&gt;
:*GND&lt;br /&gt;
:*GND&lt;br /&gt;
:*GND&lt;br /&gt;
:*USB&lt;br /&gt;
:*GND&lt;br /&gt;
&lt;br /&gt;
:[The third connector is a 24-pin USB-C connector, with only the right side labeled.]&lt;br /&gt;
:[The twelve pins on the right are labeled:]&lt;br /&gt;
:*+5V DC&lt;br /&gt;
:*+3.3V DC&lt;br /&gt;
:*+120V AC&lt;br /&gt;
:*Boobytrap Pin (Pure Solder)&lt;br /&gt;
:*Mechanical&lt;br /&gt;
:*+3.3eV/C&lt;br /&gt;
:*Candlepin&lt;br /&gt;
:*Facebook Use&lt;br /&gt;
:*+5V (Positrons)&lt;br /&gt;
:*Pin Roulette&lt;br /&gt;
:*GND&lt;br /&gt;
:*SKY&lt;br /&gt;
&lt;br /&gt;
:[The fourth and final connector is a 1-pin COAX connector.]&lt;br /&gt;
:[The one pin in the center is labeled:]&lt;br /&gt;
:*Pin&lt;br /&gt;
&lt;br /&gt;
{{comic discussion}}&lt;br /&gt;
[[Category:Computers]]&lt;/div&gt;</summary>
		<author><name>172.69.68.195</name></author>	</entry>

	<entry>
		<id>https://www.explainxkcd.com/wiki/index.php?title=Talk:2314:_Carcinization&amp;diff=192763</id>
		<title>Talk:2314: Carcinization</title>
		<link rel="alternate" type="text/html" href="https://www.explainxkcd.com/wiki/index.php?title=Talk:2314:_Carcinization&amp;diff=192763"/>
				<updated>2020-06-02T00:31:03Z</updated>
		
		<summary type="html">&lt;p&gt;172.69.68.195: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;&amp;lt;!--Please sign your posts with ~~~~ and don't delete this text. New comments should be added at the bottom.--&amp;gt;&lt;br /&gt;
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Honestly, what is there to explain here? The only thing I can imagine in this explanation page is an explanation of why carcinization happens, which isn't explaining the comic. [[Special:Contributions/162.158.62.119|162.158.62.119]] 22:52, 1 June 2020 (UTC)&lt;br /&gt;
:We might need to look at the differences between various 'false crabs' and their relatives, to show that ''in the false crabs' lifestyle'', some crab-feature they have and their close cousins do not is a thing that the CCs would be unable to match if they lived in the FC-like style.  This is probably the subject of a whole dissertation (if not several). [[Special:Contributions/141.101.107.80|141.101.107.80]] 00:22, 2 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
Does this mean all programming languages evolve into Rust?[[Special:Contributions/172.69.68.87|172.69.68.87]] 23:08, 1 June 2020 (UTC)&lt;br /&gt;
&lt;br /&gt;
Is it just a coincidence that today's Questionable Content also contained a reference to crabs? [[Special:Contributions/172.69.68.195|172.69.68.195]] 00:31, 2 June 2020 (UTC)&lt;/div&gt;</summary>
		<author><name>172.69.68.195</name></author>	</entry>

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