Earlier quoted context omitted.
> strike a key less than 100 ms after some visual stimuli, I'm sure I couldn't do it The video game "Super Hexagon"[1] is a surprisingly interesting demonstration of this limitation, and how the mind tries to workaround the problem. The higher difficulties ("hexagonest"[2]) seem impossible at first. In the easier levels you can react , but now the time it takes to see the scree, parse the simple graphics, recognize t…
This is also clear on rhythm games like Stepmania. Here's a random video from a keyboard user: https://youtu.be/TWiMnENdcyY?t=56 At this speed the player is reacting (and hitting with correct timing) about ten notes (arrows) per second. This is possible by memorizing and reacting to group patterns instead of individual notes, but more importantly, reacting unconsciously. A player can play at this level without consci…
Keyboard latency
121–130 of 274 posts
Re: Keyboard latency
#122Earlier quoted context omitted.
Yes, they want freesync or g-sync monitors with high refresh rates.
Or a good enough machine so that you never dip below native framerate.
Re: Keyboard latency
#123PS/2 keyboards are used by serious gamers because the scan rate is higher than USB. See https://superuser.com/questions/16893/do-usb-or-ps-2-keyboar...
I think the only PS/2 holdouts you'll find are the old Korean Starcraft players that are still using a Qsenn DT-35.
Re: Keyboard latency
#124Earlier quoted context omitted.
> strike a key less than 100 ms after some visual stimuli, I'm sure I couldn't do it The video game "Super Hexagon"[1] is a surprisingly interesting demonstration of this limitation, and how the mind tries to workaround the problem. The higher difficulties ("hexagonest"[2]) seem impossible at first. In the easier levels you can react , but now the time it takes to see the scree, parse the simple graphics, recognize t…
This is also clear on rhythm games like Stepmania. Here's a random video from a keyboard user: https://youtu.be/TWiMnENdcyY?t=56 At this speed the player is reacting (and hitting with correct timing) about ten notes (arrows) per second. This is possible by memorizing and reacting to group patterns instead of individual notes, but more importantly, reacting unconsciously. A player can play at this level without consci…
The first season was played very conciously and slow. After each season, I recognized that certain patterns just came out perfectly without difficulty. Sometimes I was even surprised by myself.
However, what I wanted to say is, it was enjoyable just letting the brain do its job of processing patterns and reacting to them. It was relaxing.
Re: Keyboard latency
#125But Apple 2 keys are not short travel keys
Re: Keyboard latency
#126Earlier quoted context omitted.
> strike a key less than 100 ms after some visual stimuli, I'm sure I couldn't do it The video game "Super Hexagon"[1] is a surprisingly interesting demonstration of this limitation, and how the mind tries to workaround the problem. The higher difficulties ("hexagonest"[2]) seem impossible at first. In the easier levels you can react , but now the time it takes to see the scree, parse the simple graphics, recognize t…
This is also clear on rhythm games like Stepmania. Here's a random video from a keyboard user: https://youtu.be/TWiMnENdcyY?t=56 At this speed the player is reacting (and hitting with correct timing) about ten notes (arrows) per second. This is possible by memorizing and reacting to group patterns instead of individual notes, but more importantly, reacting unconsciously. A player can play at this level without consci…
I think part of the reason is from my experience as an organist: some instruments have a noticeable delay from the time that the key is pressed to when the sound reaches my ears, whether due to delays built into the control mechanism itself, as well as sound delay (the console is sometimes located on the opposite side of the hall from the pipes). I think this has caused my brain to be wired to accommodate these sorts of situations.
Re: Keyboard latency
#127I'm surprised the "humans don't notice 100 ms" argument is even made. That's trivially debunkable with a simple blind A/B test at the command line using `sleep 0.1` with and without `sleep` aliased to `true`. To my eyes, the delay is obvious at 100 ms, noticeable at 50 ms, barely perceptible at 20 ms, and unnoticeable at 10 ms. Not to mention that 100 ms is musically a 16th note at 150 bpm. Being off by a 16th note e…
[1]: http://www.press.uchicago.edu/Misc/Chicago/093185.htmlRe: Keyboard latency
#128Earlier quoted context omitted.
That's fine though. It's about the experience end-to-end. I love the apple keyboards. I still type faster on them than other keyboards, including high-end mechanical keyboards. The short keys and actuation feel responsive, yet I've never felt like I've accidentally triggered a key.
That's fine, but then the study should be called Key Size Comparisons rather than Keyboard Latency, since it appears that the length of time the key takes to travel dominates the "latency" measurement.
Re: Keyboard latency
#129Compare with musical keyboards where not only key number but also the velocity matters, so each key has two electrical contacts, and the whole thing is usually scanned around 10kHz for proper velocity measurement. Although key contacts are arranged in a diode matrix, the latency is usually below 2 ms, even with good old MIDI. So neither the keyboard matrix nor the debouncing justify a latency of 10 ms or above. It is…
Now to learn to type with a keyboard... or game I suppose.
Re: Keyboard latency
#130I'm surprised the "humans don't notice 100 ms" argument is even made. That's trivially debunkable with a simple blind A/B test at the command line using `sleep 0.1` with and without `sleep` aliased to `true`. To my eyes, the delay is obvious at 100 ms, noticeable at 50 ms, barely perceptible at 20 ms, and unnoticeable at 10 ms. Not to mention that 100 ms is musically a 16th note at 150 bpm. Being off by a 16th note e…
> strike a key less than 100 ms after some visual stimuli, I'm sure I couldn't do it The video game "Super Hexagon"[1] is a surprisingly interesting demonstration of this limitation, and how the mind tries to workaround the problem. The higher difficulties ("hexagonest"[2]) seem impossible at first. In the easier levels you can react , but now the time it takes to see the scree, parse the simple graphics, recognize t…
From what I recall, to finish the final level I was relying for the most part on 'muscle memory' in relation to the familiar patterns. I would visually interpret what kind of pattern it was, my position relative to the pattern and then there seemed to be a conscious disconnect to the actions I performed to get through the pattern.
I think it's interesting because the actions I'm referring to weren't merely a sequence of button presses performed as fast as you could. There was a critical factor of very small differences in durations between actions and how long you execute actions for that seem (and I assume are) completely beyond my conscious abilities.