IP Library Granted Patent US 11,062,068
Granted Patent B2
US 11,062,068 · App. 15/985,676 · Granted Jul 13, 2021

Electronic computer-aided design tool

Inventor: Hanan Potash (Austin, TX)
G06F30/33G06F30/30G06F30/367
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Quick Facts
Patent No.
US 11,062,068
App. No.
15/985,676
Granted
Jul 13, 2021
Kind
B2
Abstract

An electronic computer-aided design tool includes a design module and a printed electronics printer coupled to the design module. The design module determines one or more design specifications for an electronic device. The printed electronics printer produces one or more printed electronics prototypes of the electronic device based at least in part on at least on at least one of the design specifications. In some embodiments, the electronic computer-aided design tool includes a prototype testing unit that tests prototypes made by the printed electronics printer.

Claims (29)

1. An electronic computer-aided design tool, comprising:

a printed electronics printer, wherein the printed electronics printer is configured to produce one or more printed electronics prototypes of a production version of an integrated circuit to be formed on a single die, wherein the printed electronics printer is configured to deposit ink on a substrate to form transistors corresponding to transistors of the production version of the integrated circuit on the substrate and interconnects corresponding to interconnects of the production version of the integrated circuit on the substrate such that the produced printed electronics prototype is a prototype of the production version of the integrated circuit to be formed on the single die;

a prototype testing unit configured to test the at least one of the printed electronic prototypes made by the printed electronics printer;

a design module configured to make one or more modifications to the design of the integrated circuit based on information from testing of at least one of the printed electronics prototypes, wherein the integrated circuit comprises a MOSFET device, wherein the design module is configured to determine a design for the MOSFET device based on information from testing at least one of the printed electronics prototypes; and

a production module configured to produce a production version of the integrated circuit based at least in part on information from testing of at least one of the printed electronics prototypes.

2. The electronic computer-aided design tool of claim 1 , wherein the prototype testing unit is configured to test the prototype to verify logic of the integrated circuit.

3. The electronic computer-aided design tool of claim 1 , wherein the prototype testing unit is configured to test the prototype to verify no race conditions exist in integrated circuit.

4. The electronic computer-aided design tool of claim 1 , wherein the prototype testing unit is configured to test the prototype to isolate power active but not operatively working parts in the integrated circuit.

5. The electronic computer-aided design tool of claim 1 , wherein the prototype testing unit is configured to test the prototype at reduced speed to verify logic of the production version of the integrated circuit.

6. The electronic computer-aided design tool of claim 1 , wherein the prototype testing unit is configured to test timing dependencies of the production version of the integrated circuit.

7. The electronic computer-aided design tool of claim 1 , further comprising a logic simulator configured to operate at least one of printed electronics prototype to simulate the logic of the production version of the integrated circuit.

8. The electronic computer-aided design tool of claim 1 , wherein the printed electronics printer is configured to produce a printed electronics prototype that is on an enlarged physical scale compared to the production version of the integrated circuit.

9. The electronic computer-aided design tool of claim 1 , wherein the design module is configured to make at least one modification to the interconnect design of the production version of the integrated circuit based on information from testing of a prototype.

10. The electronic computer-aided design tool of claim 1 , wherein the design module is configured to make at least one modification to reduce metal interconnect layers in the production version of the integrated circuit.

11. The electronic computer-aided design tool of claim 1 , wherein the design module is configured to determine a design for the die based on information from testing at least one of the printed electronics prototypes.

12. The electronic computer-aided design tool of claim 1 , wherein the design module is configured to make at least one modification to make or more power saving changes to the design based at least in part on information from testing at least one printed electronics prototype.

13. The electronic computer-aided design tool of claim 1 , wherein the printed electronics printer is configurable to print a printed electronics prototype for the production version of the integrated circuit that is at least about 100 to 1 of the physical size of the production version of the integrated circuit.

14. A method of producing a production version of an integrated circuit, wherein the integrated circuit comprises a MOSFET device, comprising:

producing, by a printed electronics printer, one or more printed electronics prototypes of a production version of an integrated circuit to be formed on a single die, wherein comprises depositing ink on a substrate to form transistors corresponding to transistors of the production version of the integrated circuit on the substrate such that the produced printed electronics prototype is a prototype of the production version of the integrated circuit to be formed on the single die;

testing, by a prototype testing unit, the at least one of the printed electronic prototypes made by the printed electronics printer, wherein testing the prototype comprises verifying logic of the integrated circuit;

making, by a design module, one or more modifications to the design of the integrated circuit based on information from testing at least one of the printed electronics prototypes;

determining, by the design module, a design for the MOSFET device based on information from testing at least one of the printed electronics prototypes; and

producing a production version of the integrated circuit based at least in part on information from testing of at least one of the printed electronics prototypes.

15. An electronic computer-aided design tool, comprising:

a printed electronics printer, wherein the printed electronics printer is configured to produce one or more printed electronics prototypes of a production version of an integrated circuit to be formed on a single die, wherein the printed electronics printer is configured to deposit ink on a substrate to form transistors corresponding to transistors of the production version of the integrated circuit such that the produced printed electronics prototype is a prototype of the production version of the integrated circuit to be formed on the single die;

a prototype testing unit configured to test the at least one of the printed electronic prototypes made by the printed electronics printer;

a design module configured to make one or more modifications to the design of the integrated circuit based on information from testing of at least one of the printed electronics prototypes, wherein the integrated circuit comprises a MOSFET device, wherein the design module is configured to determine a design for the MOSFET device based on information from testing at least one of the printed electronics prototypes; and

a production module configured to produce a production version of the integrated circuit based at least in part on information from testing of at least one of the printed electronics prototypes,

wherein the printed electronics printer is configured to produce a printed electronics prototype that is on an enlarged scale compared to the production version of the integrated circuit.

Continuity (2)
Continuation 15048435 · Feb 19, 2016
Related Publication 20180336303A1 · Nov 22, 2018