My reading of this seems to be a matter of them simply reducing the chip complexity (down to 4 bit) so they can obviously have fewer components on the die. Aside from that simplification, I can't find anything actually new techniques. It also continues to annoy me that semiconductor-on-plastic gets labelled as a plastic processor.
It seems like they changed a lot and got a hugely different niche. > Instead of adapting an existing microcontroller architecture to plastic, Kumar’s team started from scratch to create a design called Flexicore. “Yield goes down very quickly as you increase gate count,” says Kumar. Knowing that, they came up with a design meant to minimize the number of gates needed. Using 4-bit and 8-bit logic instead of 16-bit or…
The first high-yield, sub-penny plastic processor
11–20 of 72 posts
Re: The first high-yield, sub-penny plastic processor
#12Re: The first high-yield, sub-penny plastic processor
#13Re: The first high-yield, sub-penny plastic processor
#14What's the advantage of a processor that costs less than a penny? I would think that the connectors, battery, I/O, etc. would cost at least 10-25 cents for pretty much anything you can think of. So not sure how much you gain from making the CPU so cheap, unless there are other benefits like power consumption.
When all the devices can be 'printed', you might be able to put electronics on pages in books/newspapers or on labels of products for zero cents because you're already putting that paper through a printing press.
Re: The first high-yield, sub-penny plastic processor
#15My reading of this seems to be a matter of them simply reducing the chip complexity (down to 4 bit) so they can obviously have fewer components on the die. Aside from that simplification, I can't find anything actually new techniques. It also continues to annoy me that semiconductor-on-plastic gets labelled as a plastic processor.
It seems like they changed a lot and got a hugely different niche. > Instead of adapting an existing microcontroller architecture to plastic, Kumar’s team started from scratch to create a design called Flexicore. “Yield goes down very quickly as you increase gate count,” says Kumar. Knowing that, they came up with a design meant to minimize the number of gates needed. Using 4-bit and 8-bit logic instead of 16-bit or…
Re: The first high-yield, sub-penny plastic processor
#16Earlier quoted context omitted.
It seems like they changed a lot and got a hugely different niche. > Instead of adapting an existing microcontroller architecture to plastic, Kumar’s team started from scratch to create a design called Flexicore. “Yield goes down very quickly as you increase gate count,” says Kumar. Knowing that, they came up with a design meant to minimize the number of gates needed. Using 4-bit and 8-bit logic instead of 16-bit or…
It does raise the question... Why didn't they just use an Intel 4004... The patents have long expired and plenty of other companies make very old intel clones to out in modern products (eg. Most optical mice use a 50 year old intel to control a custom DSP to do image processing to figure out which way you're moving the mouse)
Re: The first high-yield, sub-penny plastic processor
#17Why would anyone actively work towards "ubiquitous electronics"? That sounds like a nightmare.
Re: The first high-yield, sub-penny plastic processor
#18Re: The first high-yield, sub-penny plastic processor
#19Why would anyone actively work towards "ubiquitous electronics"? That sounds like a nightmare.
I'm sure someone in the 18 century, when informed, that people are working towards that future would conclude that it's a nightmare.
Re: The first high-yield, sub-penny plastic processor
#20Why would anyone actively work towards "ubiquitous electronics"? That sounds like a nightmare.
A person from the other side of the globe can bother you at any time of the day and you are expected to make yourself available for the conversation on moments notice. And it's not just for kings and queens. It's for everybody, like your annoying aunt. I'm sure someone in the 18 century, when informed, that people are working towards that future would conclude that it's a nightmare.