EP2186136A2

Semiconductor device with dynamic array section

Abstract

This record has no abstract on file.

Term

Projected expiry 31 July 2028.

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

48 claims: 6 independent, 42 dependent

  1. 1
    Claims of equivalent WO 2009017828 A2 CLAIMS 1. A semiconductor chip configured to include one or more distinct but functionally interfaced dynamic array sections, comprising:a dynamic array section on the semiconductor chip, the dynamic array section following a dynamic array architecture, the dynamic array architecture requiring conductive features to be linearly defined along a virtual grate in each of a plurality of levels of the dynamic array section, and each level in the plurality of levels having a respective virtual grate that is perpendicular to another virtual grate that is either a level above or a level below, the dynamic array architecture further defined, (i) wherein each virtual grate is defined by a framework of parallel lines spaced at about a constant pitch, (ii) wherein given ones of the parallel lines in the virtual grate are occupied by multiple conductive features and a substantially uniform gap is maintained between proximate ends of adjacent conductive features that occupy a common line in the virtual grate;and (iii) wherein the substantially uniform gap between the proximate ends of adjacent conductive features is maintained within each line that is occupied by multiple conductive features within a given virtual grate.
  2. 8
    A semiconductor device, comprising:a substrate portion allocated for a dynamic array section, the substrate portion having at least one diffusion region defined therein;a first plurality of linear conductive features defined in a first level over the substrate portion, the first plurality of linear conductive features disposed according to a first virtual grate projected upon the substrate portion, the first virtual grate defined by a framework of parallel lines spaced at a constant pitch, each of the first plurality of linear conductive features disposed upon a line of the first virtual grate such that manufacturability of the linear conductive feature and its neighboring linear conductive features within the first level can be accurately predicted, wherein a uniform separation distance is used to separate proximate ends of adjacent linear conductive features within a common line of the first virtual grate, the uniform separation distance applied consistently within the first level across each line of the first virtual grate;and a second plurality of linear conductive features defined in a second level over the first level, the second plurality of linear conductive features disposed according to a second virtual grate projected upon the substrate portion, the second virtual grate defined by a framework of parallel lines spaced at a constant pitch, the lines of the second virtual grate oriented to be perpendicular to the lines of the first virtual grate, each of the second plurality of linear conductive features disposed upon a line of the second virtual grate such that manufacturability of the linear conductive feature and its neighboring linear conductive features within the second level can be accurately predicted.
  3. 13
    A method for designing a semiconductor chip having one or more functionally interfaced dynamic array sections, comprising:laying out a virtual grate for conductive features used to define a gate electrode level of a dynamic array section, the virtual grate defined by a framework of parallel lines defined at a substantially constant pitch;arranging one or more conductive features along a number of lines of the virtual grate;for each line of the virtual grate that has multiple conductive features arranged thereon, defining a gap between proximate ends of each pair of adjacent conductive features such that each gap is defined to maintain a substantially consistent separation between proximate ends of conductive features, and some of the conductive features being designed to define gate electrodes of transistor devices of the dynamic array section;and defining each conductive feature to be devoid of a substantial change in direction, such that the conductive features remain substantially aligned to the framework of parallel lines of the virtual grate.
  4. 26
    A method for designing a semiconductor chip having one or more functionally interfaced dynamic array sections, comprising:defining a dynamic array section grid on a portion of the chip, wherein the dynamic array section grid is defined by a virtual network of perpendicular gridlines projected upon the portion of the chip;defining boundaries of a dynamic array section, wherein each of the defined boundaries of the dynamic array section aligns with a gridline of the dynamic array section grid, wherein the dynamic array section represents a portion of the chip defined according to a dynamic array architecture;defining one or more diffusion regions to be formed within a substrate portion of the dynamic array section;and defining a plurality of levels of the chip above the substrate portion within the dynamic array section by, defining a virtual grate for each of the plurality of levels, the virtual grate defined by a framework of parallel lines spaced at a substantially constant pitch, such that the framework of parallel lines that define the virtual grate for a particular level are oriented to be substantially perpendicular to the framework of parallel lines that define the virtual grate for either a level above or a level below the particular level, and defining a number of linear conductive features along the framework of lines that define the virtual grate in each of the plurality of levels, wherein some of the lines that define the virtual grates in the plurality of levels have defined thereon multiple linear conductive features having proximate ends separated by a gap, wherein each gap is defined to maintain a substantially uniform distance between proximate ends of linear conductive features within a portion of a given level of the chip within the dynamic array section, wherein each of the number of linear conductive features is defined to be devoid of a substantial change in direction relative to the line of the virtual grate along which the linear conductive feature is defined.
  5. 33
    A method for defining a dynamic array section to be manufactured on a semiconductor chip, comprising:defining a peripheral boundary of the dynamic array section;defining a manufacturing assurance halo outside the boundary of the dynamic array section;and controlling chip layout features within the manufacturing assurance halo to ensure that manufacturing of conductive features inside the boundary of the dynamic array section is not adversely affected by chip layout features within the manufacturing assurance halo.
  6. 41
    A method for designing a semiconductor chip having one or more functionally interfaced dynamic array sections, comprising:selecting a dynamic array section to be defined on a portion of the chip, the selected dynamic array section having an associated manufacturing assurance halo defined outside a boundary of the selected dynamic array section;and placing the selected dynamic array section within a layout of the portion of the chip such that layout features not associated with the selected dynamic array section and within the manufacturing' assurance halo are compatible with the manufacturing assurance halo so as to avoid adversely impacting manufacturability of the selected dynamic array section.