EP1835530A2

Non-volatile memory device and method of manufacturing the same

Abstract

Provided is a non-volatile memory device less susceptible to reading disturbance and having an improved short channel effect and a method of manufacturing the same. The non-volatile memory device may include a semiconductor substrate having a body and a pair of fins. A bridge insulating layer may non-electrically connect upper portions of the pair of fins to define a void between the pair of fins, wherein outer surfaces of the pair of fins are the surfaces of the pair of fins that do not face the void and inner surfaces of the pair of fins are the surfaces of the pair of fins that do face the void. The non-volatile memory device may further include at least one control gate electrode may cover at least a portion of outer surfaces of the pair of fins, may extend over the bridge insulating layer, and may be isolated from the semiconductor substrate. At least one pair of gate insulating layers may be between the at least one control gate electrode and the pair of fins, and at least one pair of storage nodes may be between the at least one pair of gate insulating layers and the at least one control gate electrode.

EP1835530A2, drawing sheet 1
Sheet 1 of 10

Term

Projected expiry 2 March 2027.

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

20 claims: 6 independent, 14 dependent

  1. 1
    A non-volatile memory device comprising:a semiconductor substrate having a body, and a pair of fins projecting from the body and spaced apart opposite each other;and a bridge insulating layer non-electrically connecting upper portions of the pair of fins to define a void between the pair of fins, wherein outer surfaces of the pair of fins are the surfaces of the pair of fins that do not face the void and inner surfaces of the pair of fins are the surfaces of the pair of fins that do face the void.
  2. 8
    The non-volatile memory device of any of claims 2 to 7, further comprising:at least one source region formed in the pair of fins on one side of the at least one control gate electrode and at least one drain region formed in the pair of fins on the other side of the at least one control gate electrode.
  3. 10
    The non-volatile memory device of any preceding claim, wherein the bridge insulating layer is on top of the pair of fins, and the void is defined between the bridge insulating layer and the pair of fins.
  4. 11
    The non-volatile memory device of any of claims 1 to 9, wherein the bridge insulating layer extends to connect the upper portions of the inner surfaces of the pair of fins, and the void is defined between the bridge insulating layer and the pair of fins.
  5. 12
    The non-volatile memory device of any preceding claim, wherein the semiconductor substrate is formed by etching a bulk semiconductor wafer.
  6. 13
    A method of manufacturing a non-volatile memory device comprising:etching a semiconductor substrate to define a body and a pair of fins each projecting from the body;forming a bridge insulating layer connecting portions of the pair of fins to define a void between the pair of fins;forming gate insulating layers partially covering outer surfaces of the pair of fins which do not face the void;forming storage node layers covering the gate insulating layers;and forming a control gate electrode covering the storage node layers, and extending over the bridge insulating layer.
  7. 18
    The method of any of claims 13 to 17, wherein the defining of the body and the pair of fins comprises:forming a pair of first trenches in the semiconductor substrate;forming a device isolating layer filled in the first trenches and projecting from the semiconductor substrate;forming spacer insulating layers along the projecting sidewalls of the device isolating layer;and etching the semiconductor substrate exposed between the spacer insulating layers to define the pair of fins projecting from the body.