ZX81PLUS35 ZX81 clone: Difference between revisions
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Even though I was hospitalized, then immobilized for several months (in the months of June July and August 2014) due to an operation on my leg, I still managed to work a bit on the layout of the ZX14, its not finished yet, but here is a preview of how the work is progressing | Even though I was hospitalized, then immobilized for several months (in the months of June July and August 2014) due to an operation on my leg, I still managed to work a bit on the layout of the ZX14, its not finished yet, but here is a preview of how the work is progressing. As of November 25, 2014. routing is now 100% finished, clean-up, optimizing and copper filling will follow. Picture below is actually a screen shot from a gerber viewer. | ||
[[File:Component placement 16 September 2014.png]] | [[File:Component placement 16 September 2014.png]] | ||
Revision as of 20:23, 29 November 2014
The ZX14 is a much improved Sinclair ZX81 clone built with the modern materials techniques and components of 2014.
it will be fully open sourced effort (but note that the original design of the zx81 is still owned by Amstrad)
As for now comments and questions on the design can be made here [1] (raspberry PI forum off topic section) :-)
3D Preview
Here is a (3D rendered) preview of the main ZX14 board, to the right a small preview of the complete system,.
Schematic
the latest schematic can be found here:
A small preview of it can be found on the right, click on it for a somewhat larger version:
there is also a color coded schematic (.PDF), it can be found here:
File:Color coded ZX14 schematic with eprom support.pdf
note that SMT components are depicted purple, and PTH ones green.
Layout
Even though I was hospitalized, then immobilized for several months (in the months of June July and August 2014) due to an operation on my leg, I still managed to work a bit on the layout of the ZX14, its not finished yet, but here is a preview of how the work is progressing. As of November 25, 2014. routing is now 100% finished, clean-up, optimizing and copper filling will follow. Picture below is actually a screen shot from a gerber viewer.
Keyboard
I have also been busy designing a solution for the keyboard. My solution is to use commercially available cheap 6x6mm buttons, which (with some effort by bending the pins a bit) can be mounted on an EuroCard sized piece of 1/10"raster perfboard, the result would like something like the picture on the left.
Here is the schematic of the keyboard: File:KB matrix schematic.pdf
I also designed a new keyboard overlay suitable for such a keyboard with the keys going through holes in the overlay. Here is a drawing showing how it would look:
Here is a .PDF version that should be correctly scaled when printed on A4 paper.