EP2745321A2

Apparatuses and methods comprising a channel region having different minority carrier lifetimes

Abstract

This record has no abstract on file.

Term

Projected expiry 14 August 2032.

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29 claims: 4 independent, 25 dependent

  1. 1
    Claims of equivalent WO 2013025719 A2 What is claimed is:j . An apparatus, comprising: an elongated channel region, having a source region coupled to a first end, and a drain region coupled to a second end;and a number of memory cell gates disposed along a length of a body region of the elongated channel region, each of the plurality of gates being separated from the elongated channel region by a respective charge storage structure, wherein the elongated channel region further comprises a first recombination region l ocated at the first end of the elongated channel region, and a second recombination region located at the second end of the elongated channel region, wherein the body region is between the first and second recombination regions, and wherein at least one of the first recombination region and the second recombination region have a lower minority carrier lifetime than the body region.
  2. 10
    An apparatus, comprising:a p-type doped elongated channel region, having a source region coupled to a first end, and a drain region coupled to a second end;and a number of memory cell gates disposed along a length of a middle portion of the elongated channel region, each of the plurality of gates being separated from the elongated channel region by a respective charge storage structure, wherein a p-dopant concentration is higher at the first end and the second end of the ρ-type doped elongated channel region than in the middle portion of the elongated channel region.
  3. 15
    A method of forming a memory string, comprising:forming source and drain regions;forming an elongated channel region coupled between the source and drain regions;and forming a number of memory cell gates, each of the memory cell gates being separated from the elongated channel region by a respective charge storage structure, wherein forming the elongated channel region comprises forming end portions of the elongated channel region wherein at least one of the end portions has a lower minority carrier lifetime than a middle portion of the elongated channel region.
  4. 22
    A method of forming a memory string, comprising:forming an n-type source region and an n-type drain region;forming a p-type elongated body region;forming a number of memory cell gates, each of the memory cell gates being separated from the elongated body region by a respective charge storage structure;forming a first more heavily doped p-type region than the p-type elongated body region between the n-type source region and the p-type elongated body region;and forming a second more heavily doped p-type region than the p-type elongated body region between the n-type drain region and the p-type elongated body region.