
By Antonym
Sun Feb 18, 2007 6:47 pm
i've received tons of pms recently about the pad solution, various questions n such
so here's an update on what's up.
these are the new sensors.
the bits n pieces.
why are these better than this setup?
you can see the same thing going on here as in the old pads - conductive rubber against a copper spiral. issue was that the conductive rubber square comes of the active area. simple problem, really tricky solution - not such an easy thing to do. the options were limited since space is such a huge issue in there - and i didn't want to do any adhesion since that seems to inevitably comes loose.
enter these sensors. nice little things - durable and tiny. the active area is about 1/2 or so the size of the original sensor - but that doesn't matter since area is not a factor in this type of resistive sensor - it's all about the pressure-conductive rubber.
so these sensors don't use adhesion - the conductive rubber is held in place by the rubber dome, which is held in place by the metal clip.
this means they won't fall apart or break. the life of these things is greater than 100,000 actuations - and i do mean a LOT greater.
in testing these, i had less than optimum conditions - but i could feel the range. these things are nice, especially after tuning them using the mpc's pad sensitivity settings (which i hope to lobby for a more specific "tuning" feature in future os's). the rubber is the same as the rubber in the akai sensors - this stuff called inastoemr.
much of the sensors' sensitivity depends on their environment - what type of rubber is hitting it? how thick is the rubber? what is shape of the surface of the rubber?
luckily, the actuation point of these sensors are DOMED, which saves a ton of trouble with the mold for the rubber pads.
moldmaking is really tricky. negative space n very specific measurements. i am hand making the molds for these pads. the rubber pads will come in 2 by 2 pad sheets - not one 4 by 4 pad sheet. this is all current projection and may change when i get the rubber/start trying molds.
to everyone who has shown interest - hang on, i'll keep you all as updated as possible. hopefully this teaser satisfies you a bit.
nym
so here's an update on what's up.
these are the new sensors.
the bits n pieces.
why are these better than this setup?
you can see the same thing going on here as in the old pads - conductive rubber against a copper spiral. issue was that the conductive rubber square comes of the active area. simple problem, really tricky solution - not such an easy thing to do. the options were limited since space is such a huge issue in there - and i didn't want to do any adhesion since that seems to inevitably comes loose.
enter these sensors. nice little things - durable and tiny. the active area is about 1/2 or so the size of the original sensor - but that doesn't matter since area is not a factor in this type of resistive sensor - it's all about the pressure-conductive rubber.
so these sensors don't use adhesion - the conductive rubber is held in place by the rubber dome, which is held in place by the metal clip.
this means they won't fall apart or break. the life of these things is greater than 100,000 actuations - and i do mean a LOT greater.
in testing these, i had less than optimum conditions - but i could feel the range. these things are nice, especially after tuning them using the mpc's pad sensitivity settings (which i hope to lobby for a more specific "tuning" feature in future os's). the rubber is the same as the rubber in the akai sensors - this stuff called inastoemr.
much of the sensors' sensitivity depends on their environment - what type of rubber is hitting it? how thick is the rubber? what is shape of the surface of the rubber?
luckily, the actuation point of these sensors are DOMED, which saves a ton of trouble with the mold for the rubber pads.
moldmaking is really tricky. negative space n very specific measurements. i am hand making the molds for these pads. the rubber pads will come in 2 by 2 pad sheets - not one 4 by 4 pad sheet. this is all current projection and may change when i get the rubber/start trying molds.
to everyone who has shown interest - hang on, i'll keep you all as updated as possible. hopefully this teaser satisfies you a bit.
nym




