Mark E. Thierbach
17Patents
9h-index
17Co-inventors
69Inventor score
Filing activity: Feb 10, 1981 → May 30, 2008
Most-cited inventions
| Patent | Title | Area | Cited by | Status |
|---|---|---|---|---|
| US5432804A | Digital processor and viterbi decoder having shared memory | Electricity | 25 | Expired |
| US5802382A | Flexible single chip digital processor architecture | Physics | 18 | Expired |
| US4661922A | Programmed logic array with two-level control timing | Electricity | 17 | Expired |
| US6073228A | Modulo address generator for generating an updated address | Physics | 14 | Expired |
| US4399516A | Stored-program control machine | Physics | 13 | Expired |
| US6467035B2 | System and method for performing table look-ups using a multiple data fetch architecture | Physics | 12 | Expired |
| US6530014B2 | Near-orthogonal dual-MAC instruction set architecture with minimal encoding bits | Physics | 11 | Expired |
| US5454014A | Digital signal processor | Electricity | 10 | Expired |
| US5465275A | Efficient utilization of present state/next state registers | Electricity | 9 | Expired |
| US4493029A | Microprocessor with PLA adapted to implement subroutines | Physics | 9 | Expired |
| US6115805A | Non-aligned double word fetch buffer | Physics | 8 | Expired |
| US5559837A | Efficient utilization of present state/next state registers | Electricity | 8 | Expired |
| US6092179A | Core processor with customizable function unit | Physics | 8 | Expired |
| US6148386A | Address generator circuity for a circular buffer | Physics | 5 | Expired |
| US6801995B1 | Method for optimally encoding a set of instruction codes for a digital processor having a plurality of instruction selectable resource types and an associated optimized set of instruction codes | Physics | 4 | Expired |
| US7818135B2 | Optimum timing of write and read clock paths | Physics | 0 | Active |
| USRE32858E | Stored-program control machine | General | 0 | Expired |
Source: USPTO / EPO open patent data. Inventor disambiguation is heuristic; counts are objective bibliographic measures.