IP Library Patent Application 18768718
Patent Application
App. No. 18/768,718

COMPRESSOR WITH VARIABLE PERFORMANCE SINGLE PHASE INDUCTION MOTOR

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Quick Facts
Patent No.
US None
App. No.
18/768,718
Abstract

A single phase induction motor of a scroll compressor includes: a main winding that is center tapped forming: a first winding having a first end and a second end; a second winding having a third end and a fourth end; and a node between the second end of the first winding and the third end of the second winding; a first switch: including a first input to receive single phase power from a source; including a first output connected to the first end of the first winding; and including a second output; a second switch: including a second input connected to the second output of the first switch; including a third output connected to the node between the second end of the first winding and the third end of the second winding; and an auxiliary winding.

Claims (66)

1 . A single phase induction motor of a scroll compressor, the motor comprising:

a main winding that is center tapped forming:

a first winding having a first end and a second end;

a second winding having a third end and a fourth end; and

a node between the second end of the first winding and the third end of the second winding;

a first switch:

including a first input to receive single phase power from a source;

including a first output connected to the first end of the first winding; and

including a second output;

a second switch:

including a second input connected to the second output of the first switch;

including a third output connected to the node between the second end of the first winding and the third end of the second winding; and

an auxiliary winding.

2 . The motor of claim 1 further comprising a capacitor connected in series with the auxiliary winding.

3 . The motor of claim 2 wherein the auxiliary winding and the capacitor are connected between the first input of the first switch and the fourth end of the second winding.

4 . A motor control system, comprising:

the motor of claim 1 ; and

a switch control module configured to actuate the first and second switches.

5 . The motor control system of claim 4 wherein the switch control module is configured to actuate the first and second switches based on a line current from the source.

6 . The motor control system of claim 5 wherein the switch control module is configured to, when the line current is between zero and a first predetermined current:

actuate the first switch and electrically connect the first input to the first output and electrically disconnect the first input from the second output.

7 . The motor control system of claim 6 wherein the switch control module is further configured to, when the line current is between 0 and the first predetermined current, actuate the second switch and electrically disconnect the second input from the third output.

8 . The motor control system of claim 5 wherein the switch control module is further configured to, when the line current is between the first predetermined current and a second predetermined current that is greater than the first predetermined current:

actuate the first switch and electrically disconnect the first input from the first output and electrically connect the first input to the second output; and

actuate the second switch and electrically connect the second input to the third output connected to the node between the second end of the first winding and the third end of the second winding.

9 . The motor control system of claim 8 wherein the switch control module is further configured to, when the line current is greater than the second predetermined current:

actuate the first switch and electrically disconnect the first input from both the first output and the second output; and

actuate the second switch and electrically disconnect the second input from the third output connected to the node between the second end of the first winding and the third end of the second winding.

10 . The motor control system of claim 4 wherein the switch control module is configured to, based on undercompression operation of the compressor:

actuate the first switch and electrically connect the first input to the first output and electrically disconnect the first input from the second output.

11 . The motor control system of claim 10 wherein the switch control module is further configured to, based on overcompression operation of the compressor:

actuate the first switch and electrically disconnect the first input from the first output and electrically connect the first input to the second output; and

actuate the second switch and electrically connect the second input to the third output connected to the node between the second end of the first winding and the third end of the second winding.

12 . The motor control system of claim 1 wherein at least one of the first and second switches automatically actuates based on a line current from the source.

13 . A single phase induction motor of a scroll compressor, the motor comprising:

a main winding that is center tapped forming:

a first winding having a first end and a second end;

a second winding having a third end and a fourth end; and

a first node between the second end of the first winding and the third end of the second winding;

a first switch:

including a first input to receive single phase power from a source via a second node;

including a first output connected to the first end of the first winding; and

including a second output connected to the first node between the second end of the first winding and the third end of the second winding;

a second switch:

including a second input connected to the fourth end of the second winding via a third node;

including a second output connected to the source; and

an auxiliary winding connected between the third node and the second node.

14 . The motor of claim 13 further comprising a capacitor connected in series with the auxiliary winding.

15 . A motor control system, comprising:

the motor of claim 13 ; and

a switch control module configured to actuate the first and second switches.

16 . The motor control system of claim 15 wherein the switch control module is configured to actuate the first and second switches based on a line current from the source.

17 . The motor control system of claim 16 wherein the switch control module is configured to, when the line current is between zero and a first predetermined current:

actuate the first switch and electrically connect the first input to the first output and electrically disconnect the first input from the second output.

18 . The motor control system of claim 17 wherein the switch control module is further configured to, when the line current is between zero and the first predetermined current, actuate the second switch and electrically disconnect the second input from the third output.

19 . The motor control system of claim 16 wherein the switch control module is further configured to, when the line current is between the first predetermined current and a second predetermined current that is greater than the first predetermined current:

actuate the first switch and electrically disconnect the first input from the first output and electrically connect the first input to the second output; and

actuate the second switch and electrically connect the second input to the third output.

20 . The motor control system of claim 19 wherein the switch control module is further configured to, when the line current is greater than the second predetermined current:

actuate the first switch and electrically disconnect the first input from both the first output and the second output; and

actuate the second switch and electrically disconnect the second input from the third output.

21 . The motor control system of claim 15 wherein the switch control module is configured to:

based on undercompression operation of the compressor, actuate the first switch and electrically connect the first input to the first output and electrically disconnect the first input from the second output; and

based on overcompression operation of the compressor:

actuate the first switch and electrically disconnect the first input from the first output and electrically connect the first input to the second output; and

actuate the second switch and electrically connect the second input to the third output.

Assignments (6)
SECURITY INTEREST Recorded Feb 4, 2025
From: COPELAND SCROLL COMPRESSORS LP
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 070100/0275 →
SECURITY INTEREST Recorded Feb 4, 2025
From: COPELAND SCROLL COMPRESSORS LP
To: ROYAL BANK OF CANADA, AS COLLATERAL AGENT
Reel/Frame 070100/0348 →
SECURITY INTEREST Recorded Feb 3, 2025
From: COPELAND LP; COPELAND COLD CHAIN LP; COPELAND COMFORT CONTROL LP; COPELAND SCROLL COMPRESSORS LP; COPELAND INDUSTRIAL LP
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 070094/0094 →
SECURITY INTEREST Recorded Feb 3, 2025
From: COPELAND LP; COPELAND SCROLL COMPRESSORS LP; COPELAND INDUSTRIAL LP; COPELAND COMFORT CONTROL LP; COPELAND COLD CHAIN LP
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 070568/0920 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2024
From: KADAM, VAIBHAV AVADHUT; SALUNKHE, VISHAL VASANT; MOHOL, AMAR BALASAHEB
To: COPELAND LP
Reel/Frame 067951/0631 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2024
From: COPELAND LP
To: COPELAND SCROLL COMPRESSORS LP
Reel/Frame 067951/0680 →