Title :
A high-density data-path generator with stretchable cells
Author :
Tsujihashi, Yoshiki ; Matsumoto, Hisashi ; Hishimaki, H. ; Miyanishi, Atsushi ; Nakao, Hiroomi ; Kitada, Osamu ; Iwade, Shuuhei ; Kayano, Shinpei ; Sakao, Masayoshi
Author_Institution :
ASIC Design Eng. Center, Mitsubishi Electr. Corp., Hyogo, Japan
fDate :
1/1/1994 12:00:00 AM
Abstract :
This paper describes a newly developed module generator for cell-based design which generates a data-path layout comparable to a handcrafted one both in speed and in transistor density. The chip designer enters his schematic data-path diagram using the configurable function block library provided. There is no constraint either in the number of function blocks used, or in how to interconnect them. The data-path generator generates the function blocks, which are components of the data-path, and automatically places and routes them. The configurable function blocks were developed in 0.8-μm double metal CMOS technology. A new cell structure suitable for over the cell routing, called “stretchable cell with access free terminals,” is adopted as a bit-slice element of the data-path generator. This removes the routing region outside the cell for the wiring between function blocks, and a high density layout can be obtained. Also because of the new cell structure, there is no upper limit on the number of tracks per bit. Using this data-path generator, several data-paths were generated with high density of more than 6k Trs./mm2
Keywords :
CMOS integrated circuits; application specific integrated circuits; circuit layout CAD; integrated logic circuits; logic CAD; network routing; 0.8 mum; ASIC; SCAT cell structure; access free terminals; automatic placement; automatic routing; bit-slice element; cell-based design; configurable function block library; data-path layout; double metal CMOS technology; high density layout; high-density data-path generator; module generator; over the cell routing; stretchable cells; Application specific integrated circuits; CMOS technology; Decoding; Design engineering; Image processing; Libraries; Microprocessors; Routing; Variable structure systems; Wiring;
Journal_Title :
Solid-State Circuits, IEEE Journal of