EP1410105A2

Alleviating line end shortening in transistor endcaps by extending phase shifters

Abstract

One embodiment of the invention provides a system and a method for reducing line end shortening during an optical lithography process for manufacturing an integrated circuit. The system operates by receiving a specification of the integrated circuit, wherein the specification defines transistors that include gates. Next, the system identifies a gate within the specification, wherein the gate includes an endcap that is susceptible to line end shortening during the optical lithography process. The system then extends a phase shifter used to form the gate, so that the phase shifter defines at least a portion of the endcap and thereby reduces line end shortening of the endcap due to optical effects.

Term

Term ended

Projected expiry passed 11 February 2022, 4.6 years ago.

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56 claims: 15 independent, 41 dependent

  1. 1
    Claims of equivalent WO 02082182 A2 What Is Claimed Is:1. A method for reducing line end shortening during an optical lithography process for manufacturing an integrated circuit, comprising: receiving a specification of the integrated circuit, wherein the specification defines transistors that include gates;identifying a gate within the specification, wherein the gate includes an endcap that is susceptible to line end shortening during the optical lithography process;and extending a phase shifter used to form the gate beyond an associated active region, so that the phase shifter defines at least a portion of the endcap and thereby reduces line end shortening of the endcap due to optical effects.
  2. 9
    A computer-readable storage medium storing instructions that when executed by a computer cause the computer to perform a method for reducing line end shortening during an optical lithography process for manufacturing an integrated circuit, the method comprising:receiving a specification of the integrated circuit, wherein the specification defines transistors that include gates;identifying a gate within the specification, wherein the gate includes an endcap that is susceptible to line end shortening during the optical lithography process;and extending a phase shifter used to form the gate beyond an associated active region, so that the phase shifter defines at least a portion of the endcap and thereby reduces line end shortening of the endcap due to optical effects.
  3. 17
    A mask for use in fabricating an integrated circuit, wherein the mask includes a phase shifter that defines a gate, wherein the phase shifter extends into an endcap of an associated transistor to control line end shortening arising from optical effects, comprising:the phase shifter within the mask that is configured to create a region of destructive light interference on a photoresist layer;wherein the phase shifter defines the gate within the associated transistor that includes the endcap that is susceptible to line end shortening during an optical lithography process;wherein the phase shifter extends beyond an associated active region of the associated transistor, so that the phase shifter defines at least a portion of the endcap and thereby reduces line end shortening of the endcap due to optical effects.
  4. 23
    A semiconductor structure within an integrated circuit that is formed through a process that controls line end shortening arising from optical effects, the semiconductor structure comprising:a first transistor including a first gate;wherein the first gate includes an endcap that is susceptible to line end shortening during an optical lithography process;wherein the endcap is formed by extending a phase shifter used to form the first gate beyond an associated active region, so that the phase shifter defines at least a portion of the endcap and thereby reduces line end shortening of the endcap due to optical effects.
  5. 26
    A system for reducing line end shortening during an optical lithography process for manufacturing an integrated circuit, comprising:a first means for receiving a specification of the integrated circuit, wherein the specification defines transistors that include gates;a second means for identifying a gate within the specification, wherein the gate includes an endcap that is susceptible to line end shortening during the optical lithography process;and a third means for extending a phase shifter used to form the gate beyond an associated active region, so that the phase shifter defines at least a portion of the endcap and thereby reduces line end shortening of the endcap due to optical effects.
  6. 27
    A method for reducing line end shortening during an optical lithography process for manufacturing an integrated circuit, comprising:receiving a specification of the integrated circuit, wherein the specification defines transistors that include gates;identifying a gate within the specification, wherein the gate includes an endcap that is susceptible to line end shortening during the optical lithography process;and using an extended a phase shifter to form the gate, wherein the extended phase shifter defines at least a portion of the endcap and thereby reduces line end shortening of the endcap due to optical effects.
  7. 28
    A mask for use in fabricating an integrated circuit, wherein the mask includes a phase shifter that defines a gate, wherein the phase shifter extends into an endcap of an associated transistor to control line end shortening arising from optical effects, comprising:the phase shifter within the mask that is configured to create a region of destructive light interference on a photoresist layer;wherein the phase shifter defines the gate within the associated transistor that includes the endcap;wherein the phase shifter defines at least a portion of the endcap and thereby reduces line end shortening of the endcap due to optical effects.
  8. 29
    A method for reducing line end shortening during an optical lithography process for manufacturing an integrated circuit, comprising:receiving a specification of the integrated circuit, wherein the specification defines transistors that include gates;identifying a gate within the specification, wherein the gate includes an endcap that is susceptible to line end shortening during the optical lithography process;if the endcap includes a modification for optical proximity correction, removing the modification;and extending a phase shifter used to form the gate beyond an associated active region, so that the phase shifter defines at least a portion of the endcap and thereby reduces line end shortening of the endcap due to optical effects.
  9. 33
    A method for reducing line end shortening during an optical lithography process for manufacturing an integrated circuit, comprising:receiving a specification of the integrated circuit, wherein the specification defines transistors that include gates;identifying a gate within the specification, wherein the gate includes an endcap that is susceptible to line end shortening during the optical lithography process;if the endcap is not straight, replacing the endcap with a straight endcap;and extending a phase shifter used to form the gate beyond an associated active region, so that the phase shifter defines at least a portion of the endcap and thereby reduces line end shortening of the endcap due to optical effects.
  10. 38
    A computer-readable storage medium storing instructions that when executed by a computer cause the computer to perform a method for reducing line end shortening during an optical lithography process for manufacturing an integrated circuit, the method comprising:receiving a specification of the integrated circuit, wherein the specification defines transistors that include gates;identifying a gate within the specification, wherein the gate includes an endcap that is susceptible to line end shortening during the optical lithography process;if the endcap includes a modification for optical proximity correction, removing the modification;and extending a phase shifter used to form the gate beyond an associated active region, so that the phase shifter defines at least a portion of the endcap and thereby reduces line end shortening of the endcap due to optical effects.
  11. 42
    A computer-readable storage medium storing instructions that when executed by a computer cause the computer to perform a method for reducing line end shortening during an optical lithography process for manufacturing an integrated circuit, the method comprising:receiving a specification of the integrated circuit, wherein the specification defines transistors that include gates;identifying a gate within the specification, wherein the gate includes an endcap that is susceptible to line end shortening during the optical lithography process;if the endcap is not straight, replacing the endcap with a straight endcap;and extending a phase shifter used to form the gate beyond an associated active region, so that the phase shifter defines at least a portion of the endcap and thereby reduces line end shortening of the endcap due to optical effects.
  12. 47
    A system for reducing line end shortening during an optical lithography process for manufacturing an integrated circuit, comprising:a first means for receiving a specification of the integrated circuit, wherein the specification defines transistors that include gates;a second means for identifying a gate within the specification, wherein the gate includes an endcap that is susceptible to line end shortening during the optical lithography process;a third means for removing existing optical proximity correction from the endcap;and a fourth means for extending a phase shifter used to form the gate beyond an associated active region, so that the. phase shifter defines at least a portion of the endcap and thereby reduces line end shortening of the endcap due to optical effects.
  13. 48
    A system for reducing line end shortening during an optical lithography process for manufacturing an integrated circuit, comprising:a first means for receiving a specification of the integrated circuit, wherein the specification defines transistors that include gates;a second means for identifying a gate within the specification, wherein the gate includes an endcap that is susceptible to line end shortening during the optical lithography process;a third means for replacing a non-straight endcap with a straight endcap;and a fourth means for extending a phase shifter used to form the gate beyond an associated active region, so that the phase shifter defines at least a portion of the endcap and thereby reduces line end shortening of the endcap due to optical effects.
  14. 49
    A method for alleviating line end shortening on a transistor gate in a layout having optical proximity corrections, the method comprising:identifying the transistor gate in the layout, the transistor gate comprising an active region and an endcap;determining if the endcap includes an optical proximity correction;and if the endcap includes the optical proximity correction: removing the optical proximity correction, placing an at least one phase shifter in the layout to define the active region and at least a portion of the endcap, wherein placement of the at least one phase shifter reduces line end shortening of the endcap due to optical effects of an optical lithograph process.
  15. 53
    An apparatus for alleviating line end shortening during an optical lithography process for manufacturing an integrated circuit through removal of extant optical proximity corrections on transistor gate endcaps, the apparatus comprising:means for identifying a transistor gate in a layout wherein the transistor gate comprises an active area and an endcap, the active area defined using an at least one phase shifter and the endcap including an at least one optical proximity correction;means for modifying the endcap to remove the at least one optical proximity correction;and means for extending the at least one phase shifter to define at least a portion of the endcap.
Independent claims15