IP Library Granted Patent US 8,385,846
Granted Patent B2
US 8,385,846 · App. 13/401,014 · Granted Feb 26, 2013

Active load isolator and wireless speaker for mixed signal environments

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Quick Facts
Patent No.
US 8,385,846
App. No.
13/401,014
Granted
Feb 26, 2013
Kind
B2
Abstract

An isolation circuit includes a low dropout operational current control loop and a shunt regulator. The current control loop is configured to drive the shunt regulator to result in a high dynamic impedance ratio between a voltage source and a load. The current control loop may include a series-pass transistor, a current sensing resistor, and a high side current sensor.

Claims (56)

1. An isolation circuit for a wireless speaker, comprising:

a current control loop; and

a shunt regulator,

wherein the current control loop comprises:

a series-pass transistor;

a current sensing resistor connected between a power source and an input terminal of the series-pass transistor; and

a high side current sensor connected in parallel across the current sensing resistor,

wherein the shunt regulator comprises:

a first transistor comprising an input terminal connected to an output terminal of the series-pass transistor;

a second transistor comprising an input terminal connected to a control terminal of the first transistor;

a zener diode connected to the output terminal of the series-pass transistor, and connected to a control terminal of the second transistor; and

a second diode connected directly in series with the zener diode.

2. The isolation circuit of claim 1 , wherein the first transistor is 2N3906 small signal transistor and the second transistor is a TIP 32 transistor.

3. The isolation circuit of claim 1 , wherein the collector or drain dynamic impedance ranges between a few thousand ohms to tens of thousands of ohms and a dynamic impedance of the shunt regulator is in the order of tens of millions of milliohms.

4. The isolation circuit of claim 1 , further comprising:

a summing junction;

an integrator; and

a reference voltage,

wherein the summing junction receives an output of the sensor, and output of the reference voltage, and provides an output to the integrator.

5. The isolation circuit of claim 1 , wherein the high side current sensor is a transconductance amplifier.

6. The isolation circuit of claim 1 , wherein the series-pass transistor is one of a FET or BJT transistor.

7. The isolation circuit of claim 1 , further comprising a decoupling capacitor connected across the shunt regulator.

8. An isolation circuit for a wireless speaker, comprising:

a current control loop; and

an adjustable shunt regulator,

wherein the current control loop comprises:

a series-pass transistor;

a current sensing resistor connected between a power source and the series-pass transistor;

a high side current sensor connected in parallel across the current sensing resistor; and

an integrator receiving an output based on an output of the sensor, wherein an output of the integrator controls a control terminal of the series-pass transistor.

9. The isolation circuit of claim 8 , wherein the adjustable shunt regulator is a LMV431CZ adjustable shunt regulator.

10. The isolation circuit of claim 8 , further comprising:

a summing junction; and

a reference voltage,

wherein the summing junction receives an output of the sensor, and output of the reference voltage, and provides an output to the integrator.

11. The isolation circuit of claim 8 , wherein the high side current sensor is a transconductance amplifier.

12. The isolation circuit of claim 8 , wherein the series-pass transistor is one of a FET or BJT transistor.

13. An isolation circuit for a wireless speaker, comprising:

a low dropout operational current control loop; and

a shunt regulator,

wherein the current control loop comprises:

a series-pass transistor;

a current sensing resistor connected between the power source and the series-pass transistor;

a high side current sensor connected in parallel across the current sensing resistor; and

an integrator receiving an output based on an output of the sensor,

wherein the integrator comprises an operational amplifier and a capacitor connected across an output and input of the operational amplifier, the output of the operational amplifier controlling a control terminal of the series-pass transistor.

14. An isolation circuit for a wireless speaker, comprising:

a current control loop; and

a shunt regulator,

wherein the current control loop comprises:

a series-pass transistor; and

a current sensing resistor connected between a power source and the series-pass transistor;

a current sensor connected in parallel across the current sensing resistor;

a summing junction receiving an output of the high side current sensor and a reference voltage; and

an integrator coupled between an output of the summing junction and a gate terminal of the series-pass transistor,

wherein the integrator comprises an operational amplifier and a capacitor connected across an input and an output of the operational amplifier, wherein the shunt regulator is connected to a non-control terminal of the series-pass transistor.

Assignments (2)
RELEASE OF PATENT SECURITY INTEREST RECORDED AT R/F 038631/0001 Recorded Apr 3, 2025
From: WELLS FARGO BANK, NATIONAL ASSOCIATION
To: VOXX INTERNATIONAL CORPORATION; KLIPSCH GROUP, INC.; AUDIO PRODUCTS INTERNATIONAL CORP.; TECHNUITY, INC.; VOXX ELECTRONICS CORP.; CODE SYSTEMS, INC.
Reel/Frame 070739/0910 →
SECURITY AGREEMENT Recorded May 6, 2016
From: KLIPSCH GROUP, INC.; AUDIO PRODUCTS INTERNATIONAL CORP.; VOXX INTERNATIONAL CORPORATION; CODE SYSTEMS, INC.; VOXX ELECTRONICS CORPORATION; TECHNUITY, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 038631/0001 →