IP Library › Granted Patent US 10,886,729
Granted Patent B2
US 10,886,729 · App. 15/973,544 · Granted Jan 5, 2021

Electrostatic discharge protection device for high supply voltage operations

Inventor: Yuh-Yue Chen (Taipei, TW)
Assignee: RichWave Technology Corp.
H02H9/044H01L27/0248H01L27/0285H01L27/0629H01L27/0922H01L29/1033H01L29/1095H02H9/046H01L28/20H01L28/40H01L29/93
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,886,729
App. No.
15/973,544
Granted
Jan 5, 2021
Kind
B2
Abstract

An electrostatic discharge protection device includes a voltage divider, a resistor, a capacitor, a first primary transistor, a second primary transistor, a first control circuit, and a second control circuit. The voltage divider is coupled between a first system terminal and a second system terminal for providing a voltage. The resistor is coupled to the first system terminal, and the capacitor is coupled to the resistor. The first primary transistor and the second primary transistor are coupled in series between the first system terminal and the second system terminal. The first control circuit turns on the first primary transistor when an electrostatic discharge event occurs according to voltages provided by the voltage divider and the resistor. The second control circuit turns on the second primary transistor when the electrostatic discharge event occurs according to voltages provided by the voltage divider and the first control circuit.

Claims (106)

1. An electrostatic discharge protection device, comprising:

a voltage divider coupled to a first system terminal for receiving a first voltage and a second system terminal for receiving a second voltage, and configured to provide at least one voltage between the first voltage and the second voltage;

a first resistor having a first terminal coupled to the first system terminal, and a second terminal;

a capacitor having a first terminal coupled to the second terminal of the first resistor, and a second terminal;

a first primary transistor having a first terminal coupled to the first system terminal, a second terminal, and a control terminal;

a second primary transistor having a first terminal coupled to the second terminal of the first primary transistor, a second terminal coupled to the second system terminal, and a control terminal;

a first control circuit configured to turn on the first primary transistor when an electrostatic discharge event occurs, and the first control circuit comprising:

a first terminal coupled to the first system terminal;

an input terminal coupled to the second terminal of the first resistor;

a second terminal coupled to the voltage divider for receiving a third voltage between the first voltage and the second voltage; and

an output terminal coupled to the control terminal of the first primary transistor for controlling the first primary transistor; and

a second control circuit configured to turn on the second primary transistor when the electrostatic discharge event occurs, and the second control circuit comprising:

a first terminal coupled to the output terminal of the first control circuit;

an input terminal coupled to the voltage divider for receiving a voltage between the first voltage and the second voltage;

a second terminal coupled to the second system terminal;

an output terminal coupled to the control terminal of the second primary transistor for controlling the second primary transistor;

a second P-type transistor having a first terminal coupled to the first terminal of the second control circuit, a second terminal coupled to the output terminal of the second control circuit, and a control terminal coupled to the input terminal of the second control circuit; and

a plurality of second N-type transistors coupled in series between the output terminal of the second control circuit and the second system terminal with control terminals of the plurality of second N-type transistors coupled to the input terminal of the second control circuit.

2. The electrostatic discharge protection device of claim 1 , wherein the first control circuit further comprises:

a first P-type transistor having a first terminal coupled to the first terminal of the first control circuit, a second terminal coupled to the output terminal of the first control circuit, and a control terminal coupled to the input terminal of the first control circuit; and

a first N-type transistor having a first terminal coupled to the second terminal of the first P-type transistor, a second terminal coupled to the second terminal of the first control circuit, and a control terminal coupled to the input terminal of the first control circuit.

3. The electrostatic discharge protection device of claim 2 , wherein:

the first N-type transistor is disposed in a deep N-well coupled to the first terminal of the first control circuit;

a body terminal of the first P-type transistor is coupled to the first terminal of the first control circuit; and

a body terminal of the first N-type transistor is coupled to the second terminal of the first N-type transistor.

4. The electrostatic discharge protection device of claim 2 , wherein the first control circuit further comprises:

a second resistor coupled between the first terminal of the first N-type transistor and the output terminal of the first control circuit.

5. The electrostatic discharge protection device of claim 1 , wherein:

a channel length of the second P-type transistor is smaller than a channel length of each of the plurality of second N-type transistors; and

a channel width of the second P-type transistor is greater than a channel width of each of the plurality of second N-type transistors.

6. The electrostatic discharge protection device of claim 1 , wherein the second control circuit further comprises:

at least one second P-type transistor, each having a first terminal coupled to the first terminal of the second control circuit, a second terminal coupled to the output terminal of the second control circuit, and a control terminal coupled to the input terminal of the second control circuit.

7. The electrostatic discharge protection device of claim 6 , wherein:

body terminals of the plurality of second N-type transistors are coupled to the second system terminal.

8. The electrostatic discharge protection device of claim 1 , further comprising:

a first gate resistor coupled between the input terminal of the first control circuit and the voltage divider; and

a second gate resistor coupled between the input terminal of the second control circuit and the voltage divider.

9. The electrostatic discharge protection device of claim 1 , further comprising:

a third gate resistor coupled between the control terminal of the first primary transistor and the second terminal of the first primary transistor; and

a fourth gate resistor coupled between the control terminal of the second primary transistor and the second terminal of the second primary transistor.

10. The electrostatic discharge protection device of claim 1 , wherein:

the first primary transistor is disposed in a deep N-well coupled to the first system terminal;

a body terminal of the first primary transistor is coupled to the second terminal of the first primary transistor; and

a body terminal of the second primary transistor is coupled to the second terminal of the second primary transistor.

11. The electrostatic discharge protection device of claim 1 , wherein the voltage divider comprises:

a first voltage gap circuit coupled to the first system terminal and a first intermediate node for providing the third voltage; and

a second voltage gap circuit coupled to the first intermediate node and the second system terminal;

wherein the input terminal of the second control circuit is coupled to the first intermediate node for receiving the third voltage.

12. The electrostatic discharge protection device of claim 11 , wherein:

the first voltage gap circuit comprises at least one first diode or at least one fourth resistor coupled in series between the first system terminal and the first intermediate node; and

the second voltage gap circuit comprises at least one second diode or at least one fifth resistor coupled in series between the first intermediate node and the second system terminal.

13. The electrostatic discharge protection device of claim 1 , wherein the voltage divider comprises:

a first voltage gap circuit coupled to the first system terminal and a first intermediate node for providing the third voltage;

a second voltage gap circuit coupled to the first intermediate node and a second intermediate node for providing a fourth voltage between the first voltage and the second voltage; and

a third voltage gap circuit coupled to the second intermediate node and the second system terminal;

wherein the input terminal of the second control circuit is coupled to the second intermediate node for receiving the fourth voltage.

14. The electrostatic discharge protection device of claim 1 , wherein:

the second terminal of the capacitor is coupled to the second system terminal; and

the capacitor is implemented by a metal-oxide-metal capacitor or a metal-insulator-metal capacitor.

15. The electrostatic discharge protection device of claim 1 , wherein:

the second terminal of the capacitor is configured to receive the third voltage; and

the capacitor is implemented by an N-type transistor, a P-type transistor, a metal-oxide-semiconductor varactor, a metal-oxide-metal capacitor or a metal-insulator-metal capacitor.

16. An electrostatic discharge protection device comprising:

a voltage divider coupled to a first system terminal for receiving a first voltage and a second system terminal for receiving a second voltage, and configured to provide at least one voltage between the first voltage and the second voltage;

a first resistor having a first terminal coupled to the first system terminal, and a second terminal;

a capacitor having a first terminal coupled to the second terminal of the first resistor, and a second terminal;

a first primary transistor having a first terminal coupled to the first system terminal, a second terminal, and a control terminal;

a second primary transistor having a first terminal coupled to the second terminal of the first primary transistor, a second terminal coupled to the second system terminal, and a control terminal;

a first control circuit configured to turn on the first primary transistor when an electrostatic discharge event occurs, and the first control circuit comprising:

a first terminal coupled to the first system terminal;

an input terminal coupled to the second terminal of the first resistor;

a second terminal coupled to the voltage divider for receiving a third voltage between the first voltage and the second voltage;

an output terminal coupled to the control terminal of the first primary transistor for controlling the first primary transistor;

a first P-type transistor having a first terminal coupled to the first terminal of the first control circuit, a second terminal coupled to the output terminal of the first control circuit, and a control terminal coupled to the input terminal of the first control circuit; and

a first N-type transistor having a first terminal coupled to the second terminal of the first P-type transistor, a second terminal coupled to the second terminal of the first control circuit, and a control terminal coupled to the input terminal of the first control circuit; and

a second control circuit configured to turn on the second primary transistor when the electrostatic discharge event occurs, and the second control circuit comprising:

a first terminal coupled to the output terminal of the first control circuit;

an input terminal coupled to the voltage divider for receiving a voltage between the first voltage and the second voltage;

a second terminal coupled to the second system terminal; and

an output terminal coupled to the control terminal of the second primary transistor for controlling the second primary transistor;

wherein:

a channel length of the first P-type transistor is smaller than a channel length of the first N-type transistor; and

a channel width of the first P-type transistor is greater than a channel width of the first N-type transistor.

17. An electrostatic discharge protection device comprising:

a voltage divider coupled to a first system terminal for receiving a first voltage and a second system terminal for receiving a second voltage, and configured to provide at least one voltage between the first voltage and the second voltage;

a first resistor having a first terminal coupled to the first system terminal, and a second terminal;

a capacitor having a first terminal coupled to the second terminal of the first resistor, and a second terminal;

a first primary transistor having a first terminal coupled to the first system terminal, a second terminal, and a control terminal;

a second primary transistor having a first terminal coupled to the second terminal of the first primary transistor, a second terminal coupled to the second system terminal, and a control terminal;

a first control circuit configured to turn on the first primary transistor when an electrostatic discharge event occurs, and the first control circuit comprising:

a first terminal coupled to the first system terminal;

an input terminal coupled to the second terminal of the first resistor;

a second terminal coupled to the voltage divider for receiving a third voltage between the first voltage and the second voltage;

an output terminal coupled to the control terminal of the first primary transistor for controlling the first primary transistor;

a plurality of first P-type transistors, each having a first terminal coupled to the first terminal of the first control circuit, a second terminal coupled to the output terminal of the first control circuit, and a control terminal coupled to the input terminal of the first control circuit; and

a plurality of first N-type transistors coupled in series between the output terminal and the second terminal of the first control circuit with control terminals of the plurality of first N-type transistors coupled to the input terminal of the first control circuit; and

a second control circuit configured to turn on the second primary transistor when the electrostatic discharge event occurs, and the second control circuit comprising:

a first terminal coupled to the output terminal of the first control circuit;

an input terminal coupled to the voltage divider for receiving a voltage between the first voltage and the second voltage;

a second terminal coupled to the second system terminal; and

an output terminal coupled to the control terminal of the second primary transistor for controlling the second primary transistor.

18. The electrostatic discharge protection device of claim 17 , wherein the second control circuit further comprises:

a second P-type transistor having a first terminal coupled to the output terminal of the first control circuit, a second terminal coupled to the output terminal of the second control circuit, and a control terminal coupled to the input terminal of the second control circuit; and

a second N-type transistor having a first terminal coupled to the output terminal of the second control circuit, a second terminal coupled to the second system terminal, and a control terminal coupled to the input terminal of the second control circuit.

19. The electrostatic discharge protection device of claim 18 , wherein the second control circuit further comprises:

a third resistor coupled between the first terminal of the second N-type transistor and the output terminal of the second control circuit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 8, 2018
From: CHEN, YUH-YUE
To: RICHWAVE TECHNOLOGY CORP.
Reel/Frame 045736/0844 →
Continuity (2)
Provisional Application 62513447 · Jun 1, 2017
Related Publication 20180351352A1 · Dec 6, 2018
Cited By (2)
US 12,451,687 US 12,519,307