IP Library Granted Patent US 11,387,729
Granted Patent B2
US 11,387,729 · App. 15/487,226 · Granted Jul 12, 2022

Buck-converter-based drive circuits for driving motors of compressors and condenser fans

Inventor: Joseph G. Marcinkiewicz (St. Peters, MO)
Assignee: Emerson Climate Technologies, Inc.
H02M1/42F25B49/025H02M1/08H02M1/14H02M1/32H02M1/4225H02M1/44H02M5/458H02M7/06H02P5/74H02P27/06F25B2600/021F25B2600/024F25B2600/111F25B2700/151H02M1/008H02M1/0009H02M1/0032H02M1/327H02M1/4208H02M1/4216H02M1/4291H02M7/53871Y02B30/70Y02B70/10
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Quick Facts
Patent No.
US 11,387,729
App. No.
15/487,226
Granted
Jul 12, 2022
Kind
B2
Abstract

A drive circuit is provided and includes a rectification circuit, a buck converter, a first inverter, and a second inverter. The rectification circuit is configured to rectify a first AC voltage signal to generate a rectified voltage signal. The buck converter is configured to downconvert the rectified voltage signal to a DC voltage signal, wherein the DC voltage signal is supplied to a DC bus. The first inverter is configured to convert the DC voltage signal to a second AC voltage signal and supply the second AC voltage signal to a compressor motor. The second inverter is configured to convert the DC voltage signal to a third AC voltage signal and supply the third AC voltage signal to a condenser fan motor. Peak voltages of the second AC voltage signal and the third AC voltage signal are less than peak voltages of the first AC voltage signal.

Claims (58)

1. A drive circuit comprising:

a rectification circuit configured to rectify a first alternating current (AC) voltage signal to generate a rectified voltage signal;

a buck converter configured to downconvert the rectified voltage signal to a direct current (DC) voltage signal, wherein the DC voltage signal is supplied to a DC bus;

a first inverter configured to convert the DC voltage signal to a second AC voltage signal and supply the second AC voltage signal to a compressor motor; and

a second inverter configured to convert the DC voltage signal to a third AC voltage signal and supply the third AC voltage signal to a condenser fan motor,

wherein peak voltages of the second AC voltage signal and the third AC voltage signal are less than peak voltages of the first AC voltage signal.

2. The drive circuit of claim 1 , wherein:

the buck converter comprises

a switch, and

a driver configured to transition the switch between an open state and a closed state;

a peak voltage of the DC voltage signal is based on an average voltage at an output of the switch; and

the driver is configured to reduce a DC voltage of the DC voltage signal by adjusting a duty cycle of the switch.

3. The drive circuit of claim 1 , further comprising an inductor connected in series between an output of the second inverter and an input of the condenser fan motor.

4. The drive circuit of claim 1 , wherein a speed of the condenser fan motor is independent of a speed of the compressor motor.

5. The drive circuit of claim 1 , further comprising a control module, wherein:

the buck converter comprises a switch and a driver;

the driver is configured to receive a first control signal from the control module and control a state of the switch based on the first control signal;

the first inverter and the second inverter are configured to receive a plurality of control signals from the driver or the control module; and

the control module is separate from the driver.

6. The drive circuit of claim 5 , wherein the driver is configured to receive a second control signal from the control module and provide the plurality of control signals to the first inverter and the second inverter based on the second control signal.

7. The drive circuit of claim 5 , wherein the control module is configured to provide the plurality of control signals to the first inverter and the second inverter.

8. A drive circuit comprising:

a rectification circuit configured to rectify a first alternating current (AC) voltage signal to generate a rectified voltage signal;

a buck converter configured to downconvert the rectified voltage signal to a first direct current (DC) voltage signal, wherein the first DC voltage signal is supplied to a DC bus;

a first inverter configured to convert the first DC voltage signal to a second AC voltage signal and supply the second AC voltage signal to a compressor motor; and

a condenser fan motor assembly configured to receive the first DC voltage signal and one of

convert the first DC voltage signal to a third AC voltage signal and supply the third AC voltage signal to a condenser fan motor,

pulse the first DC voltage signal and supply the pulsed first DC voltage signal to the condenser fan motor, and

convert the first DC voltage signal to a second DC voltage signal and supply a pulsed version of the second DC voltage signal to the condenser fan motor.

9. The drive circuit of claim 8 , wherein:

the condenser fan motor assembly comprises a control circuit; and

the control circuit is configured to convert the first DC voltage signal to the third AC voltage signal and supply the third AC voltage signal to the condenser fan motor of the condenser fan motor assembly.

10. The drive circuit of claim 8 , wherein:

the buck converter comprises

a switch, and

a driver configured to transition the switch between an open state and a closed state; and

a peak voltage of the DC voltage signal is based on an average voltage at an output of the switch.

11. The drive circuit of claim 8 , wherein:

the buck converter comprises a switch and a driver; and

the driver is configured to reduce a DC voltage of the first DC voltage signal by adjusting a duty cycle of the switch.

12. The drive circuit of claim 8 , wherein the condenser fan motor assembly is configured to convert the first DC voltage signal to the third AC voltage signal and supply the third AC voltage signal to the condenser fan motor.

13. The drive circuit of claim 8 , wherein the condenser fan motor assembly is configured to pulse the first DC voltage signal and supply the pulsed first DC voltage signal to the condenser fan motor.

14. The drive circuit of claim 8 , wherein the condenser fan motor assembly is configured to convert the first DC voltage signal to the second DC voltage signal and supply the pulsed version of the second DC voltage signal to the condenser fan motor.

15. A drive circuit comprising:

a rectification circuit configured to rectify a first alternating current (AC) voltage signal to generate a rectified voltage signal;

a buck converter configured to downconvert the rectified voltage signal to a first direct current (DC) voltage signal, wherein the first DC voltage signal is supplied to a DC bus;

a first inverter configured to convert the first DC voltage signal to a second AC voltage signal and supply the second AC voltage signal to a compressor motor;

a condenser fan motor assembly configured to receive the first DC voltage signal and one of

convert the first DC voltage signal to a third AC voltage signal and supply the third AC voltage signal to a condenser fan motor,

pulse the first DC voltage signal and supply the pulsed first DC voltage signal to the condenser fan motor, and

convert the first DC voltage signal to a second DC voltage signal and supply a pulsed version of the second DC voltage signal to the condenser fan motor; and

a control module, wherein

the buck converter comprises a switch and a driver,

the driver is configured to receive a first control signal from the control module and control a state of the switch based on the first control signal,

the condenser fan motor assembly comprises a controller,

the controller is configured to receive a second control signal from the control module and adjust the third AC voltage signal based on the second control signal to adjust a speed of the condenser fan motor, and

the control module is separate from the driver and the condenser fan motor assembly.

16. The drive circuit of claim 15 , wherein the control module is configured to, based on at least one of a load or a commanded torque of the compressor motor, generate the first control signal and the second control signal.

Assignments (7)
SECURITY INTEREST Recorded Jul 9, 2024
From: COPELAND LP
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 068241/0264 →
SECURITY INTEREST Recorded Jul 17, 2023
From: COPELAND LP
To: ROYAL BANK OF CANADA, AS COLLATERAL AGENT
Reel/Frame 064278/0598 →
SECURITY INTEREST Recorded Jul 17, 2023
From: COPELAND LP
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 064279/0327 →
SECURITY INTEREST Recorded Jul 17, 2023
From: COPELAND LP
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 064280/0695 →
ENTITY CONVERSION Recorded Jun 22, 2023
From: EMERSON CLIMATE TECHNOLOGIES, INC.
To: COPELAND LP
Reel/Frame 064058/0724 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2018
From: EMERSON ELECTRIC CO.
To: EMERSON CLIMATE TECHNOLOGIES, INC.
Reel/Frame 044852/0126 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2017
From: GREEN, CHARLES E.; MARCINKIEWICZ, JOSEPH G.; BOCKHORST, KRAIG
To: EMERSON ELECTRIC CO.
Reel/Frame 043334/0961 →
Continuity (6)
Provisional Application 62398641 · Sep 23, 2016
Provisional Application 62398658 · Sep 23, 2016
Provisional Application 62323505 · Apr 15, 2016
Provisional Application 62323607 · Apr 15, 2016
Provisional Application 62323498 · Apr 15, 2016
Related Publication 20170302200A1 · Oct 19, 2017