IP Library › Granted Patent US 10,770,543
Granted Patent B2
US 10,770,543 · App. 16/191,070 · Granted Sep 8, 2020

Semiconductor chip integrating high and low voltage devices

Inventor: Hideaki Tsuchiko (San Jose, CA)
Assignee: ALPHA AND OMEGA SEMICONDUCTOR INCORPORATED
H01L29/0649H01L21/761H01L21/8222H01L21/8228H01L21/823481H01L21/823493H01L27/0623H01L27/0629H01L27/0635H01L27/088H01L27/0821H01L27/0823H01L29/063H01L29/10H01L29/1079H01L29/1083H01L29/66272H01L29/732H01L29/735H01L29/7816H01L29/7835H01L29/8611H01L29/42368
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Quick Facts
Patent No.
US 10,770,543
App. No.
16/191,070
Granted
Sep 8, 2020
Kind
B2
Abstract

The present invention is directed to a semiconductor chip comprising a high voltage device and a low voltage device disposed thereon. The chip may be formed in several different configurations. For example, the semiconductor chip may include a NPN bipolar transistor, PNP bipolar transistor, a diode, an N channel DMOS transistor and the like. the first doped well being configured as a base of the DMOS transistor, a P channel DMOS transistor and the like. These and other embodiments are described in further detail below.

Claims (26)

1. A semiconductor chip comprising a high voltage device and a low voltage device disposed thereon, said semiconductor chip further comprising:

a substrate layer of a first conductivity type;

a first epitaxial layer of the first conductivity type on a top surface of the substrate layer;

a second epitaxial layer of a second conductivity opposite to the first conductivity type on a top surface of the first epitaxial layer;

a deep buried implant region of the second conductivity type in an area for the high voltage device;

a buried implant region of the second conductivity type in an area for the low voltage device; and

a first doped well of the first conductivity type extending from a top surface of the second epitaxial layer above the deep buried implant region; and a second doped well of the first conductivity type from a top surface of the second epitaxial layer above the buried implant region, wherein the second doped well of the first conductivity type has a greater doping concentration than the first epitaxial layer and substrate.

2. The semiconductor chip as recited in claim 1 wherein the dopant concentration of the first epitaxial layer being substantially the same as the substrate.

3. A semiconductor chip comprising a high voltage device and a low voltage device disposed thereon, said semiconductor chip further comprising:

a substrate layer of a first conductivity type;

a first epitaxial layer of the first conductivity type on a top surface of the substrate layer;

a second epitaxial layer of a second conductivity opposite to the first conductivity type on a top surface of the first epitaxial layer;

a deep buried implant region of the second conductivity type in an area for the high voltage device, wherein the deep buried implant region of the second conductivity type further comprises a deep buried highly doped region of the second conductivity type and a deep buried lightly doped region of the second conductivity type surrounding the deep buried highly doped region;

a buried implant region of the second conductivity type in an area for the low voltage device; and

a first doped well of the first conductivity type extending from a top surface of the second epitaxial layer above the deep buried implant region; and a second doped well of the first conductivity type from a top surface of the second epitaxial layer above the buried implant region.

4. The semiconductor chip as recited in claim 3 wherein the deep buried lightly doped region extending from a depth of the substrate to a top surface of the first epitaxial layer and having a doping concentration substantially the same as the second epitaxial layer.

5. The semiconductor chip as recited in claim 4 further comprising isolation regions surrounding active areas of the high voltage device and low voltage device.

6. A semiconductor chip comprising a high voltage device and a low voltage device disposed thereon, said semiconductor chip further comprising:

a substrate layer of a first conductivity type;

a first epitaxial layer of the first conductivity type on a top surface of the substrate layer, with the dopant concentration of the first epitaxial layer being substantially the same as the substrate;

a second epitaxial layer of a second conductivity opposite to the first conductivity type on a top surface of the first epitaxial layer;

a deep buried implant region of the second conductivity type in an area for the high voltage device, said deep buried region includes a highly doped region of the second conductivity type and a deep buried lightly doped region of the second conductivity type surrounding the deep buried highly doped region;

a buried implant region of the second conductivity type in an area for the low voltage device;

a first doped well of the first conductivity type extending from a top surface of the second epitaxial layer above the deep buried implant region; and a second doped well of the first conductivity type from a top surface of the second epitaxial layer above the buried implant region; and

isolation regions surrounding active areas of the high voltage device and said low voltage device.

7. The semiconductor chip as recited in claim 6 wherein the deep buried lightly doped region extending from a depth of the substrate to a top surface of the first epitaxial layer and having a doping concentration substantially the same as the second epitaxial layer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 14, 2018
From: TSUCHIKO, HIDEAKI
To: ALPHA AND OMEGA SEMICONDUCTOR INCORPORATED
Reel/Frame 047505/0053 →
Continuity (3)
Division 14968679 · Dec 14, 2015
Continuation 13237842 · Sep 20, 2011
Related Publication 20190088740A1 · Mar 21, 2019