>Fans of Hall-effect mechanical switches note that they should last longer than traditional mechanical switches since they don't rely on metallic contact, which can result in degradation. Has anyone ever typed so much on a keyboard that the switches wore out? Aren't they good for literally millions of actuations?
I've seen keys fail after heavy use, but so far all of them have been the solder joints connecting the switch to the circuit board giving up. Mouse switches on the other hand...
DIY mechanical keyboard switch lets you set its actuation point
61–70 of 79 posts
Re: DIY mechanical keyboard switch lets you set its actuation point
#62>Fans of Hall-effect mechanical switches note that they should last longer than traditional mechanical switches since they don't rely on metallic contact, which can result in degradation. Has anyone ever typed so much on a keyboard that the switches wore out? Aren't they good for literally millions of actuations?
Re: DIY mechanical keyboard switch lets you set its actuation point
#63If you want something you can actually buy, check out the wooting he https://next.wooting.io/wooting-60he You can set per key actuation points, and bind multiple different inputs to the same key but different depths, etc. Great review here https://m.youtube.com/watch?v=glQNEbh79xg You can even mod it into another case for the DIY crowd.
Re: DIY mechanical keyboard switch lets you set its actuation point
#64At this rate, soon each switch will have a programmable controller inside, and you'll have drivers adjusting them as you type. Thought idea: predict what key you are about to press next, and make the ones around it stiffer so you are less likely to press them by mistake.
I agree that having a software defined key-press resistance would be amazing. If you could manage that and then add in haptic feedback to simulate standard mechanical keyboard actuation clicks...
Re: DIY mechanical keyboard switch lets you set its actuation point
#65>Fans of Hall-effect mechanical switches note that they should last longer than traditional mechanical switches since they don't rely on metallic contact, which can result in degradation. Has anyone ever typed so much on a keyboard that the switches wore out? Aren't they good for literally millions of actuations?
In the opposite direction: I had a keyboard once that I set aside for a couple of years and when I tried to use it again some of the keys didn't register reliably. It took a couple of days of use before everything worked smoothly.
Re: DIY mechanical keyboard switch lets you set its actuation point
#66Earlier quoted context omitted.
That's probably the spring mechanism wearing out - the actual electrical part is still working properly.
That's also the part that isn't worn out under this hall effect approach; the keys are magnetically levitated.
Re: DIY mechanical keyboard switch lets you set its actuation point
#67seems like wasted potential by not reading the sensors with an ADC. you could have analog keys this way, which opens up a whole new world.
Re: DIY mechanical keyboard switch lets you set its actuation point
#68While it works in theory, in practice the feeling of magnet-on-magnet force curve feels really unnatural for typing (since it's not linear like most springs). Maybe some combination of both approaches would work better in my case.
Re: DIY mechanical keyboard switch lets you set its actuation point
#69>Fans of Hall-effect mechanical switches note that they should last longer than traditional mechanical switches since they don't rely on metallic contact, which can result in degradation. Has anyone ever typed so much on a keyboard that the switches wore out? Aren't they good for literally millions of actuations?
Re: DIY mechanical keyboard switch lets you set its actuation point
#70Earlier quoted context omitted.
> Thought idea: predict what key you are about to press next, and make the ones around it stiffer so you are less likely to press them by mistake. If the bottom magnet were an electromagnet, then in fact one could make the keypress stiffer. As it stands, this project only changes the actuation point, but not the stiffness curve. That said, I would love the feature that you mention. It could possibly introduce a new f…
With an electromagnet, you could take that control of feel far enough give it a buckling-spring ‘click’ feel.