IP Library › Granted Patent US 12,055,566
Granted Patent B2
US 12,055,566 · App. 17/990,549 · Granted Aug 6, 2024

Locking current transformer

Inventors: Jeffrey Jay Weinstein (Mansfield, MA); John Andrew Watlington (Acton, MA); Joseph Louis Bamberg (Reading, MA); Walter L. Xu (Somerville, MA)
Assignee: Schneider Electric USA, Inc.
G01R15/186G01R19/0092H01F19/04H01F27/02H01F27/027H01F27/24H01F38/00H05K5/0004H05K5/0221H05K5/023
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Quick Facts
Patent No.
US 12,055,566
App. No.
17/990,549
Granted
Aug 6, 2024
Kind
B2
Abstract

A current transformer includes a first housing including a first handle portion and a first distal portion, a second housing including a second handle portion and a second distal portion, a first core mounted in the first distal portion, a second core mounted in the second distal portion, and a lock attached to the second handle portion at a pivot point, wherein the first housing is rotationally coupled to the second housing about a fulcrum point and the lock is rotatable about the pivot point into a closed position wherein the lock engages the first handle portion and prevents the first handle portion and the second handle portion from rotating towards each other.

Claims (42)

1. A current transformer comprising:

a first housing having a first handle portion and a first distal portion;

a second housing having a second handle portion and a second distal portion;

a first core, wherein the first core is mounted within the first distal portion;

a second core, wherein the second core is mounted within the second distal portion; and

a lock attached to the second handle portion at a pivot point, wherein the lock is rotatable about the pivot point;

wherein the first housing is rotationally coupled to the second housing about a fulcrum point; and

wherein the lock is rotatable into a closed position to engage the first handle portion and prevent the first handle portion and the second handle portion from rotating towards each other.

2. The current transformer of claim 1 , wherein the first core has a first proximal core end and a first distal core end and the second core has a second proximal core end and a second distal core end.

3. The current transformer of claim 2 , wherein when the lock is rotated into the closed position, the first housing and the second housing are secured into a position wherein the first distal core end is in contact with the second distal core end and the first proximal core end is in contact with the second proximal core end.

4. The current transformer of claim 3 , wherein when rotated into the closed position, the lock achieves and maintains solid contact between the first core and the second core.

5. The current transformer of claim 2 , wherein the first core is adapted to rotate within the first distal portion and the second core is adapted to rotate within the second distal portion to enable contact between the first proximal core end and the second proximal core end and to enable contact between the first distal core end and the second distal core end when the first housing and the second housing are rotated into a closed position.

6. The current transformer of claim 1 , wherein the lock mechanically wedges the current transformer into a closed position.

7. The current transformer of claim 1 , wherein the lock is configured such that it can be rotated into and out of a closed position with a single hand.

8. The current transformer of claim 1 , wherein the lock is configured to provide at least one of audible or tactile feedback when rotated into the closed position.

9. The current transformer of claim 1 , wherein the lock is configured to cam away when not in the closed position.

10. The current transformer of claim 1 , wherein a ratio of (i) a distance between the fulcrum point and an end of the first distal portion and (ii) a distance between the fulcrum point and an end of the first handle portion is at least 5 to 1.

11. The current transformer of claim 1 , wherein a maximum thickness of the first housing is less than or equal to 11 millimeters.

12. The current transformer of claim 1 , wherein the lock is made of plastic.

13. A system comprising:

a current transformer assembly comprising:

a first housing having a first handle portion and a first distal portion;

a second housing having a second handle portion and a second distal portion;

a first core, wherein the first core is mounted within the first distal portion;

a second core, wherein the second core is mounted within the second distal portion;

a lock attached to the second handle portion at a pivot point, wherein the lock is rotatable about the pivot point;

a cord; and

a plug;

wherein the first housing is rotationally coupled to the second housing about a fulcrum point; and

wherein the lock is rotatable into a closed position to engage the first handle portion and prevent the first handle portion and the second handle portion from rotating towards each other; and

a power monitor comprising at least one processor and at least one memory, wherein the power monitor is configured to receive a first sensor value from the current transformer assembly.

14. The system of claim 13 , wherein the first core has a first proximal core end and a first distal core end and the second core has a second proximal core end and a second distal core end.

15. The system of claim 14 , wherein when the lock is rotated into the closed position, the first housing and the second housing are secured into a position wherein the first distal core end is in contact with the second distal core end and the first proximal core end is in contact with the second proximal core end.

16. The system of claim 15 , wherein when rotated into the closed position, the lock achieves and maintains solid contact between the first core and the second core.

17. The system of claim 14 , wherein the first core is adapted to rotate within the first distal portion and the second core is adapted to rotate within the second distal portion to enable contact between the first proximal core end and the second proximal core end and to enable contact between the first distal core end and the second distal core end when the first housing and the second housing are rotated into a closed position.

18. The system of claim 13 , wherein the lock mechanically wedges the current transformer assembly into a closed position.

19. The system of claim 13 , wherein the lock is configured such that it can be rotated into and out of a closed position with a single hand.

20. The system of claim 13 , wherein the lock is configured to provide at least one of audible or tactile feedback when rotated into the closed position.

21. The system of claim 13 , wherein the lock is configured to cam away when not in the closed position.

22. The system of claim 13 , wherein the current transformer assembly further comprises a memory chip that stores a scale factor pertaining to the current transformer assembly.

23. The system of claim 22 , wherein the memory chip is located within the plug.

24. The system of claim 13 , wherein the plug is adapted to be plugged into the power monitor, and the first core and the second core are connected to the power monitor via wires running through the cord and the plug.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2024
From: SENSE LABS, INC.
To: SCHNEIDER ELECTRIC USA, INC.
Reel/Frame 067810/0023 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2024
From: WEINSTEIN, JEFFREY JAY
To: SENSE LABS, INC.
Reel/Frame 066789/0293 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2024
From: WATLINGTON, JOHN ANDREW; BAMBERG, JOSEPH LOUIS; XU, WALTER L.
To: SENSE LABS, INC.
Reel/Frame 066789/0527 →
Continuity (3)
Continuation 16858897 · Apr 27, 2020
Provisional Application 62873132 · Jul 11, 2019
Related Publication 20230081587A1 · Mar 16, 2023