IP Library Granted Patent US 9,887,692
Granted Patent B2
US 9,887,692 · App. 15/599,277 · Granted Feb 6, 2018

Drive circuit

Inventor: Asaki Mizuta (Tokyo, JP)
Assignee: Renesas Electronics Corporation
H03K5/01H03F3/211H03F3/45475H03F2200/129H03F2203/45116H03F2203/45138H03K2005/00286
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Quick Facts
Patent No.
US 9,887,692
App. No.
15/599,277
Granted
Feb 6, 2018
Kind
B2
Abstract

A drive circuit including a signal source that outputs an AC signal, a voltage generator circuit that includes a differential amplifier that generates a first AC voltage with a constant amplitude from the AC signal and outputs the first AC voltage to one end of an external load, a voltage-to-current converter circuit that supplies an AC current with a constant amplitude in opposite phase to the first AC voltage to another end of the external load in accordance with the AC signal.

Claims (49)

1. A drive circuit comprising:

a signal source that outputs an AC signal;

a voltage generator circuit that includes a differential amplifier that generates a first AC voltage with a constant amplitude from the AC signal and outputs the first AC voltage to one end of an external load;

a voltage-to-current converter circuit that supplies an AC current with a constant amplitude in opposite phase to the first AC voltage to another end of the external load in accordance with the AC signal,

wherein the AC signal is a positive voltage varying with a constant amplitude with reference to a specified voltage,

wherein the voltage generator circuit includes

a first resistor, the specified voltage being applied to one end of the first resistor and another end of the first resistor being coupled to an inverting input terminal of the differential amplifier, and

a second resistor, one end of the second resistor being coupled to the inverting input terminal of the differential amplifier and another end of the second resistor being coupled to an output terminal of the differential amplifier,

wherein the AC signal is input to a non-inverting input terminal of the differential amplifier,

wherein the first AC voltage is output from the output terminal of the differential amplifier,

wherein one or both of the first resistor and the second resistor is a variable resistor, and

the drive circuit further comprises a control circuit that controls a resistance of one or both of the first resistor and the second resistor; and

a phase adjuster that is placed between the signal source and the voltage-to-current converter circuit or between the signal source and the voltage generator circuit, and adjusts a phase of the AC signal,

wherein the control circuit controls a phase adjustment amount of the AC signal in the phase adjuster.

2. A drive circuit comprising:

a signal source that outputs an AC signal;

a voltage generator circuit that includes a differential amplifier that generates a first AC voltage with a constant amplitude from the AC signal and outputs the first AC voltage to one end of an external load; and

a voltage-to-current converter circuit that supplies an AC current with a constant amplitude in opposite phase to the first AC voltage to another end of the external load in accordance with the AC signal,

wherein the AC signal is a positive voltage varying with a constant amplitude with reference to a specified voltage,

wherein the voltage generator circuit includes

a first resistor, the AC signal being applied to one end of the first resistor and another end of the first resistor being coupled to an inverting input terminal of the differential amplifier, and

a second resistor, one end of the second resistor being coupled to the inverting input terminal of the differential amplifier and another end of the second resistor being coupled to an output terminal of the differential amplifier,

wherein the specified voltage is input to a non-inverting input terminal of the differential amplifier, and

wherein the first AC voltage is output from the output terminal of the differential amplifier.

3. The drive circuit according to claim 2 , wherein

one or both of the first resistor and the second resistor is a variable resistor, and

the drive circuit further comprises a control circuit that controls a resistance of one or both of the first resistor and the second resistor.

4. The drive circuit according to claim 3 , further comprising:

a phase adjuster that is placed between the signal source and the voltage-to-current converter circuit or between the signal source and the voltage generator circuit, and adjusts a phase of the AC signal, wherein

the control circuit controls a phase adjustment amount of the AC signal in the phase adjuster.

5. A drive circuit comprising:

a signal source that outputs an AC signal;

a voltage generator circuit that includes a differential amplifier that generates a first AC voltage with a constant amplitude from the AC signal and outputs the first AC voltage to one end of an external load; and

a voltage-to-current converter circuit that supplies an AC current with a constant amplitude in opposite phase to the first AC voltage to another end of the external load in accordance with the AC signal,

wherein the AC signal is a positive voltage varying with a constant amplitude with reference to a specified voltage.

wherein the specified voltage is input to a non-inverting input terminal of the differential amplifier,

the AC signal is input to an inverting input terminal of the differential amplifier, and

the first AC voltage is output from an output terminal of the differential amplifier.

6. A drive circuit comprising:

a signal source that outputs an AC signal;

a voltage generator circuit that includes a differential amplifier that generates a first AC voltage with a constant amplitude from the AC signal and outputs the first AC voltage to one end of an external load;

a voltage-to-current converter circuit that supplies an AC current with a constant amplitude in opposite phase to the first AC voltage to another end of the external load in accordance with the AC signal;

a phase adjuster that is placed between the signal source and the voltage-to-current converter circuit or between the signal source and the voltage generator circuit, and adjusts a phase of the AC signal; and

a control circuit that controls a phase adjustment amount of the AC signal in the phase adjuster.

7. A drive circuit comprising:

a signal source that outputs an AC signal;

a voltage generator circuit that includes a differential amplifier that generates a first AC voltage with a constant amplitude from the AC signal and outputs the first AC voltage to one end of an external load; and

a voltage-to-current converter circuit that supplies an AC current with a constant amplitude in opposite phase to the first AC voltage to another end of the external load in accordance with the AC signal,

wherein the signal source outputs a first AC signal as the AC signal to the voltage-to-current converter circuit, outputs a second AC signal as the AC signal to the voltage generator circuit, and is configured to be able to adjust a phase of one or both of the first AC signal and the second AC signal.

Assignments (1)
CHANGE OF ADDRESS Recorded Dec 18, 2017
From: RENESAS ELECTRONICS CORPORATION
To: RENESAS ELECTRONICS CORPORATION
Reel/Frame 045764/0902 →
Priority Claims (1)
JP 2014-031371 · Feb 21, 2014 · national
Continuity (2)
Division 14622618 · Feb 13, 2015
Related Publication 20170257085A1 · Sep 7, 2017