EP0395084A2

Logic semiconductor device having non-volatile memory and method of manufacturing the same.

Abstract

The present invention discloses a logic semicon­ductor device having a non-volatile memory in which a memory cell portion and a logic circuit portion are formed on a single semiconductor substrate, and a floating gate (107a) of the memory cell portion and a gate (112b) of the logic circuit portion are made of different materials, and a method of manufacturing the same.

EP0395084A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 27 April 2010, 16.4 years ago.

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

5 claims: 3 independent, 2 dependent

  1. 1
    A semiconductor device in which a non-volatile memory and a logic circuit portion are formed on a single semiconductor substrate, characterized by com­prising:a semiconductor substrate (101, 201);a memory cell portion formed on a first surface of said substrate (101, 201);a logic circuit portion formed on a second surface of said substrate (101, 201);a cell transistor consisting of said memory cell portion;and a transistor consisting of said logic circuit por tion, wherein a floating gate (107, 207) of said cell transistor of said memory cell and a gate (112b, 217b) of said transistor of said logic circuit portion are formed by conductive layers formed in different steps.
  2. 3
    A method of manufacturing a semiconductor device in which a non-volatile memory and a logic circuit portion are formed on a single semiconductor substrate, characterized by comprising the steps of:forming a first insulating film (102) serving as an element isolating region on said semiconductor substrate (101);partially removing said first insulating film (102) to expose a memory cell portion forming region and a logic circuit portion forming region on said substrate (101);forming a second insulating film which is to serve as a first gate insulating film (103) of a cell transistor of said memory cell portion;doping an impurity for controlling a threshold value of said cell transistor in a channel region of said cell transistor of said memory cell portion;forming a first conductive layer on an entire surface of a resultant structure;patterning said first conductive layer to form a floating gate of said memory cell portion of said memory cell portion and to expose said logic circuit portion forming region;forming a third insulating film which is to serve as a gate insulating film (108b) of a transistor of said logic circuit portion and as a second gate insulating film of said cell transistor of said memory cell portion on an entire surface of a resultant structure;doping an impurity for controlling a threshold value of said transistor in a channel region of said transistor of said logic circuit portion;and patterning said second conductive layer to form a control gate (112a) of said cell transistor of said memory cell portion and a gate (112b) of said transistor of said logic circuit portion.
  3. 4
    A method of manufacturing a semiconductor device in which a non-volatile memory and a logic circuit portion are formed on a single semiconductor substrate, characterized by comprising the steps of:forming a first insulating film (202) which is to serve as an element isolating region on a surface of a semiconductor substrate (201);partially removing said first insulating film (202) to form a memory cell portion forming region and a logic circuit portion forming region of said substrate (202);forming a second insulating film which is to serve as a first gate insulating film (203) of a cell tran­sistor of said memory cell portion on an entire surface of a resultant structure;doping an impurity for controlling a threshold value of said cell transistor in a channel region of said cell transistor of said memory cell portion;forming a first conductive layer on an entire surface;patterning said first conductive layer to form a floating gate (207) of said memory cell of said memory cell portion and to expose said logic circuit portion forming region;forming an insulating layer consisting of a plu­rality of insulating films on an entire surface of a resultant structure;patterning said insulating layer to expose said logic circuit portion forming region on the substrate (201);forming a second insulating film (212) which is to serve as a sacrificial oxide film of said logic circuit portion on an entire surface of a resultant structure;doping an impurity for controlling a threshold value of a transistor of said logic circuit portion in said logic circuit portion through said second insu­lating film (212);removing said second insulating film (212);forming a third insulating film (216) on an entire surface of a resultant structure;forming a second conductive layer (217) on an entire surface of a resultant structure;doping an impurity in said second conductive layer (217);and patterning said insulating layer remaining on said second conductive layer (217) and said memory cell portion to form a control gate (217a), a second gate insulating film, and a floating gate (207a) of said memory cell portion and a gate (217b) and a gate insu­lating film (216b) of said logic circuit portion.