IP Library Granted Patent US 9,490,765
Granted Patent B2
US 9,490,765 · App. 14/864,619 · Granted Nov 8, 2016

Microphone biasing circuitry and method thereof

Inventors: Andrew James Howlett (Edinburgh, GB); Graeme Gordon Mackay (Dunfermline, GB); Douglas James Wallace MacFarlane (Edinburgh, GB)
Assignee: Cirrus Logic, Inc.
H03G3/348H04R3/00
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Quick Facts
Patent No.
US 9,490,765
App. No.
14/864,619
Granted
Nov 8, 2016
Kind
B2
Abstract

A host device for use with a removable peripheral apparatus having a microphone, and to the biasing circuitry for said microphone. The host device may have a device connector for forming a mating connection with a respective peripheral connector. A source of bias is arranged to supply an electrical bias to a device microphone contact of the device connector via a biasing path. A capacitor is connected between a reference voltage node and a capacitor node of the biasing path. A first switch is located between the capacitor node and the device microphone contact. Detection circuitry detects disconnection of the peripheral connector and device connector; and control circuitry controls the switch to disable the biasing path.

Claims (38)

1. A host device for use with a removable peripheral apparatus having a microphone, the host device comprising:

a device connector capable of forming a mating connection with a respective peripheral connector of the removable peripheral device, the device connector having a device microphone contact;

a biasing path for supplying, in use, an electrical bias from a bias source to said device microphone contact;

an input path for supplying, in use, an input signal from said device microphone contact to input circuitry;

a first switch located in the biasing path and not in the input path, said first switch being operable to disable the biasing path;

a second switch located in the input path and not in the biasing path, said second switch being operable to disable the input path;

detection circuitry for detecting disconnection of the peripheral connector and device connector; and

control circuitry for controlling said first and second switches in response to detection of disconnection of the peripheral connector and device connector.

2. A host device as claimed in claim 1 wherein part of the biasing path also forms part of the input path.

3. A host device as claimed in claim 1 comprising a DC blocking capacitor located in the input path.

4. A host device as claimed in claim 3 wherein the second switch is located between the DC blocking capacitor and the input circuitry.

5. A host device as claimed in claim 3 comprising an input path resistor located in the input path between the DC blocking capacitor and the input circuitry wherein said second switch is located between the input path resistor and the input circuitry.

6. A host device as claimed in claim 3 wherein the input path comprises an input path resistor located in the input path between the DC blocking capacitor and the input circuitry wherein said second switch is located between the DC blocking capacitor and the input path resistor.

7. A host device as claimed in claim 4 further comprising electrostatic discharge protection circuitry connected to an ESD node of the input path located between the DC blocking capacitor and the second switch, said electrostatic discharge protection circuitry comprising a first plurality of diodes connected in series.

8. A host device as claimed in claim 7 wherein the first plurality of diodes are connected between a low-side reference voltage node and the ESD node of the input path.

9. A host device as claimed in claim 8 wherein electrostatic discharge protection circuitry further comprises at least one diode connected between the ESD node of the input path and a high-side reference voltage node.

10. A host device as claimed in claim 1 comprising a filter capacitor connected between a reference voltage node and a capacitor node of the biasing path.

11. A host device as claimed in claim 10 further comprising a filter capacitor switch in parallel with the filter capacitor wherein the control circuitry is configured to close said filter capacitor switch when opening the first and second switches.

12. A host device as claimed in claim 11 further comprising at least one resistor in the biasing path wherein the first switch is located between said at least one resistor and the device microphone contact.

13. A host device as claimed in claim 11 further comprising at least first and second resistors in series in the biasing path wherein the first switch is located between first and second resistors.

14. A host device as claimed in claim 1 , further comprising a ground switch operable to connect said device microphone contact to a ground node wherein the control circuitry is configured to close said ground switch when opening the first and second switches.

15. A host device as claimed in claim 1 wherein the control circuitry is configured such that said first and second switches are closed only when a microphone contact of the peripheral connector is detected to be connected to said device microphone contact.

16. A host device as claimed in claim 1 wherein said control circuitry is configured to generate a control signal to disable the input circuitry in response to detection of disconnection of the peripheral connector and device connector.

17. A circuit for biasing a microphone, comprising:

a microphone connector node for, in use, connecting to a microphone contact;

a biasing path for, in use, supplying an electric bias to said microphone connector node;

an input path for, in use, an input signal from said device microphone connector node to input circuitry;

a first switch located in the biasing path and not in the input path;

a second switch located in the input path and not in the biasing path; and

control circuitry, wherein said control circuitry is configured to control the first and second switches in use to disconnect the microphone connector node from the biasing path and from the input path in response to a detection that a microphone contact is disconnected from said microphone connector node.

18. A circuit as claimed in claim 17 wherein the circuit comprises a DC blocking capacitor located in the input path and not in the biasing path and wherein the second switch is located in the biasing path between the DC blocking capacitor and the input circuitry.

19. A circuit, comprising:

a biasing source for, in use, supplying an electric bias to a microphone connector node;

input circuitry for, in use, receiving a microphone signal from the microphone connector node via a DC blocking capacitor;

a first switch located in an electric path between the biasing source and the microphone connector node;

a second switch located in an electric path between the DC blocking capacitor and the input circuitry; and

control circuitry for opening said first and second switches in response to a detection that a microphone contact is electrically disconnected from the microphone connector node.

20. A circuit as claimed in claim 19 further comprising a electrostatic discharge protection circuitry connected to an ESD node located in an electrical path between the DC blocking capacitor and the second switch, said electrostatic discharge protection circuitry comprising a first plurality of diodes connected in series between a reference voltage node and the ESD node.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2016
From: CIRRUS LOGIC INTERNATIONAL SEMICONDUCTOR LTD.
To: CIRRUS LOGIC, INC.
Reel/Frame 039812/0812 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2015
From: CIRRUS LOGIC INTERNATIONAL (UK) LTD
To: CIRRUS LOGIC INTERNATIONAL SEMICONDUCTOR LTD.
Reel/Frame 037358/0038 →
CHANGE OF NAME Recorded Dec 14, 2015
From: WOLFSON MICROELECTRONICS LTD
To: CIRRUS LOGIC INTERNATIONAL (UK) LTD
Reel/Frame 037284/0937 →
CHANGE OF NAME Recorded Nov 23, 2015
From: WOLFSON MICROELECTRONICS PLC
To: WOLFSON MICROELECTRONICS LTD
Reel/Frame 037154/0692 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2015
From: HOWLETT, ANDREW JAMES; MACKAY, GRAEME GORDON; MACFARLANE, DOUGLAS JAMES WALLACE
To: WOLFSON MICROELECTRONICS PLC
Reel/Frame 037023/0782 →
Priority Claims (1)
GB 1306633.7 · Apr 11, 2013 · national
Continuity (2)
Continuation 14244075 · Apr 3, 2014
Related Publication 20160056786A1 · Feb 25, 2016