IP Library Granted Patent US 10,063,223
Granted Patent B1
US 10,063,223 · App. 15/803,906 · Granted Aug 28, 2018

Audio switch circuit for reducing on-resistance variation

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Quick Facts
Patent No.
US 10,063,223
App. No.
15/803,906
Granted
Aug 28, 2018
Kind
B1
Abstract

According to an implementation, an audio switch circuit includes an audio switch configured to selectively couple an input node to an output node to transfer an audio signal across the audio switch. The audio switch has an on-resistance in response to the input node being coupled to the output node. The on-resistance of the audio switch changes by a first value in response to an input voltage of the audio signal increasing from a first level to a second level. The audio switch circuit includes an on-resistance compensation circuit configured to have an on-resistance that changes by a second value in response to the input voltage of the audio signal increasing from the first level to the second level. The on-resistance compensation circuit is coupled to the audio switch such that the second value at least partially offsets the first value.

Claims (32)

1. An audio switch circuit comprising:

an audio switch configured to selectively couple an input node to an output node to transfer an audio signal across the audio switch, the audio switch having an on-resistance in response to the input node being coupled to the output node, the on-resistance of the audio switch changing by a first value in response to an input voltage of the audio signal increasing from a first level to a second level; and

an on-resistance compensation circuit configured to have an on-resistance that changes by a second value in response to the input voltage of the audio signal increasing from the first level to the second level, the on-resistance compensation circuit being coupled to the audio switch such that the second value at least partially offsets the first value.

2. The audio switch circuit of claim 1 , wherein the on-resistance compensation circuit is coupled in parallel with the audio switch.

3. The audio switch circuit of claim 1 , wherein the on-resistance compensation circuit is coupled in series with the audio switch.

4. The audio switch circuit of claim 1 , wherein the first value is positive and the second value is negative.

5. The audio switch circuit of claim 1 , wherein the on-resistance compensation circuit includes a complementary metal-oxide-semiconductor (CMOS) switch, the CMOS switch including a first transistor in parallel with a second transistor.

6. The audio switch circuit of claim 5 , wherein the on-resistance compensation circuit includes a first gate voltage generator coupled to a gate of the first transistor, and a second gate voltage generator coupled to a gate of the second transistor.

7. The audio switch circuit of claim 6 , wherein the first gate voltage generator includes a first resistor, a second resistor, and a bias voltage source.

8. An audio switch circuit comprising:

an audio switch configured to selectively couple an input node to an output node to transfer an audio signal across the audio switch, the audio switch having an on-resistance in response to the input node being coupled to the output node, the on-resistance of the audio switch increasing in response to an input voltage of the audio signal increasing from a first level to a second level; and

a complementary metal-oxide-semiconductor (CMOS) switch coupled to the audio switch, the CMOS switch configured to have an on-resistance that decreases in response to the input voltage increasing from the first level to the second level, the CMOS switch being coupled to the audio switch such that the increasing of the on-resistance of the audio switch is at least partially offset by the decreasing of the on-resistance of the CMOS switch.

9. The audio switch circuit of claim 8 , wherein the CMOS switch is coupled in parallel with the audio switch.

10. The audio switch circuit of claim 8 , wherein the CMOS switch is coupled in series with the audio switch.

11. The audio switch circuit of claim 8 , wherein the audio switch is a first audio switch, and the CMOS switch is a first CMOS switch, the audio switch circuit further comprising:

a second audio switch; and

a second CMOS switch coupled to the second audio switch, the second CMOS switch configured to compensate a changing of an on-resistance of the second audio switch.

12. The audio switch circuit of claim 8 , wherein the CMOS switch including a P-channel transistor in parallel with an N-channel transistor, the audio switch circuit further comprising:

a first gate voltage generator coupled to a gate of the P-channel transistor, the first gate voltage generator configured to generate a first gate voltage based on the input voltage of the audio signal; and

a second gate voltage generator coupled to a gate of the P-channel transistor, the second gate voltage generator configured to generate a second gate voltage based on the input voltage of the audio signal.

13. The audio switch circuit of claim 12 , wherein the first gate voltage generator includes a voltage divider and a bias voltage source.

14. The audio switch circuit of claim 12 , wherein the second gate voltage generator includes a voltage divider and a bias voltage source.

15. An audio switch circuit comprising:

a first audio switch;

a second audio switch;

an on-resistance compensation circuit coupled to at least one of the first audio switch or the second audio switch, the on-resistance compensation circuit configured to compensate a changing of an on-resistance of at least one of the first audio switch or the second audio switch in response to an input voltage of an audio signal changing from a first level to a second level.

16. The audio switch circuit of claim 15 , wherein the on-resistance compensation circuit is coupled to the first audio switch and the second audio switch.

17. The audio switch circuit of claim 15 , wherein the on-resistance compensation circuit is coupled in parallel to the first audio switch, and the on-resistance compensation circuit is coupled in parallel to the second audio switch.

18. The audio switch circuit of claim 15 , wherein the on-resistance compensation circuit is a first on-resistance compensation circuit, the first on-resistance compensation circuit being coupled to the first audio switch, the audio switch circuit further comprising:

a second on-resistance compensation circuit coupled to the second audio switch.

19. The audio switch circuit of claim 15 , wherein the on-resistance compensation circuit includes a complementary metal-oxide-semiconductor (CMOS) switch, the CMOS switch including a first transistor in parallel with a second transistor.

20. The audio switch circuit of claim 19 , wherein the on-resistance compensation circuit includes a first gate voltage generator coupled to a gate of the first transistor, and a second gate voltage generator coupled to a gate of the second transistor.

Assignments (3)
RELEASE OF SECURITY INTEREST IN PATENTS RECORDED AT REEL 046530, FRAME 0494 Recorded Jun 23, 2023
From: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
To: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC; FAIRCHILD SEMICONDUCTOR CORPORATION
Reel/Frame 064159/0524 →
PATENT SECURITY AGREEMENT Recorded Jul 11, 2018
From: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC; FAIRCHILD SEMICONDUCTOR CORPORATION
To: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
Reel/Frame 046530/0494 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2017
From: HUANG, LEI; MENG, NA
To: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC
Reel/Frame 044036/0395 →