Nova Patents
EP0102644A2

Semiconductor integrated circuit device.

Abstract

A semiconductor integrated circuit device is disclosed. A plurality of unit cells (2) each having at least a basic transistor device fixedly arranged on one main surface of a semiconductor substrate are arranged in a line to form a unit cell line. At least two of such unit cell lines are arranged in adjacent to and in parallel with each other to form a basic cell line (3). A plurality of such basic cell lines (3) are arranged in parallel with each other with a wiring region (4) of a predetermined width being interleaved between adjacent basic cell lines (3).

EP0102644A2, drawing sheet 1
Sheet 1 of 15

Term

Term ended

Projected expiry passed 6 September 2003, 23 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

9 claims: 3 independent, 6 dependent

  1. 1
    A semiconductor integrated circuit device comprising:a plurality of basic cell lines (3) arranged in parallel to each other on a semiconductor substrate (20), with a wiring region (4) of a predetermined width being interleaved between adjacent basic cell lines (3), . said basic cell lines (3) each having at least two unit cell lines (52) arranged in adjacent to and in parallel to each other, said unit cell lines (52) each having a plurality of unit cells (2) arranged in a line, said unit cells (2) each having at least a basic transistor device fixedly arranged on one main surface of said semiconductor substrate (20).
  2. 2
    A semiconductor integrated circuit device according to Claim 1 wherein said unit cell (2) is arranged such that sub-cells (2-1, 2-2) defined by evenly dividing said basic cell by a line normal to said basic cell line (3) are line symmetric with respect to the direction of said basic cell line (3).
  3. 3
    A semiconductor integrated circuit device according to Claim 1 wherein said unit cell (2) is arranged such that sub-cells (2-3, 2-4) defined by evenly dividing said basic cell by a line normal to said basic cell line (3) are line symmetric with respect to the direction normal to said basic cell line(3).
  4. 4
    A semiconductor integrated circuit device according to Claim 2 or 3 wherein said basic cell line (3) is a conventional unit cell line.
  5. 5
    A semiconductor integrated circuit device according to Claim 1 wherein the cells in adjacent ones of said basic cell lines (3) are arranged in a zigzag pattern.
  6. 6
    A semiconductor integrated circuit device comprising:a semiconductor substrate (20) having a plurality of basic cell lines (3) arranged in parallel to each other;said basic cell lines (3) each having a plurality of basic cells (2) arranged in a line;said basic cells each having i first conductivity channel MOS transistors (101, 102) having sources or drains thereof connected in series and i+l second conductivity channel MOS transistors (201, 202, 203) having sources or drains thereof connected in series, arranged on one main surface of said semiconductor substrate;and a plurality of wiring layers (4) stacked on said semiconductor substrate with insulation layers (22) being interposed therebetween, for connecting elements in each of said basic cells and connecting said basic cells.
  7. 7
    A semiconductor integrated circuit device according to Claim 6 wherein the size of the second conductivity channel MOS transistor (203) which is not paired with the first conductivity channel MOS transistor (101, 102) is smaller than the sizes of other MOS transistors (201, 202).
  8. 8
    A semiconductor integrated circuit device according to Claim 6 wherein a gate electrode of the second conductivity channel MOS transistor(203) which is not paired with the first conductivity channel M OS transistor (101, 102) is used as an underpath.
  9. 9
    A semiconductor integrated circuit device comprising:a semiconductor substrate (20) having a plurality of semiconductor devices (180, 181) formed in a portion of a main surface thereof and a field insulation layer (21) formed thereon except said portion;a plurality of wiring layers (4) stacked on said semiconductor substrate with insulation layers (22) being 'nterposed therebetween;and contact holes (9, 9') selectively formed in said insulation layers at crosspoints of said wiring layers for connecting elements in each of said semiconductor devices and connecting said semiconductor devices;a spacing between adjacent crosspoints crossing a boundary of said semiconductor device and said field insulation layer being larger than spacings between other crosspoints.