IP Library Patent Application 18231792
Patent Application
App. No. 18/231,792

SMART CURRENT TRANSFORMER SYSTEM

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
18/231,792
Abstract

The present invention pertains to a device designed for accurate current measurement in a primary conductor. Key components include a current transformer, equipped with a secondary winding and a specified turns ratio, capable of converting the primary current into a proportionally scaled-down secondary current. Integral to the device's operation is a machine-readable code affixed to the current transformer. This code, encoded with calibration data specific to the current transformer's performance characteristics, ensures precise measurements and enhances the device's overall reliability and functionality.

Claims (46)

1 . A device for measuring current in a primary conductor, the device comprising:

a current transformer equipped with a secondary winding and having a specified turns ratio, which is designed to encircle the primary conductor and convert the primary current flowing through the primary conductor into a proportionally scaled-down secondary current in accordance with the turns ratio; and

a machine-readable code securely affixed to a surface of the current transformer, wherein the machine-readable code is encoded with calibration data pertinent to the current transformer's performance characteristics.

2 . The device of claim 1 , wherein the current transformer is configured to be linked with a power meter, facilitating the measurement of the secondary current flowing through the secondary winding.

3 . The device of claim 1 , wherein the machine-readable code also encodes supplementary data related to the current transformer, the supplementary data comprising at least one of:

the turns ratio;

the date and time of manufacture;

a distinct serial number;

and the model designation of the current transformer.

4 . The device of claim 1 , wherein the machine-readable code is further encoded with operational and environmental data pertaining to the current transformer, the operational and environmental data comprising at least one of:

operational data that specifies the operating temperature range of the current transformer;

optimal usage conditions indicating the ideal conditions under which the current transformer performs optimally; and

environmental resistance data providing information on the current transformer's resilience to environmental factors such as dust, water, and humidity.

5 . A current transformer and power meter installation system comprising:

a current transformer equipped with a secondary winding and having a specified turns ratio, which is designed to encircle the primary conductor and convert the primary current flowing through the primary conductor into a proportionally scaled-down secondary current in accordance with the turns ratio; and

a machine-readable code securely affixed to a surface of the current transformer, wherein the machine-readable code is encoded with calibration data pertinent to the current transformer's performance characteristics;

a power meter interfaced with the secondary winding, purposed to measure the secondary current on the secondary winding, wherein the power meter is designed to accept calibration data from a portable scanning device, thereby enabling the calibration of the measured secondary current for accurate determination of the primary current; and

a portable scanning device, provisioned with capabilities to scan the machine-readable code, thereby retrieving calibration data related to the current transformer and conveying this data to the power meter for calibration purposes.

6 . The system of claim 5 , wherein the machine-readable code is further encoded with additional information pertaining to the current transformer, the additional information selected from the group comprising:

the turns ratio;

the manufacturing timestamp;

a unique serial number;

and the specific model of the current transformer.

7 . The system of claim 5 , wherein the machine-readable code is further encoded with operational and environmental data pertaining to the current transformer, the operational and environmental data comprising:

operational data that specifies the operating temperature range of the current transformer;

optimal usage conditions indicating the ideal conditions under which the current transformer performs optimally; and

environmental resistance data providing information on the current transformer's resilience to environmental factors such as dust, water, and humidity.

8 . A method for determining a primary current through a primary conductor, the method comprising:

installing on the primary conductor, a device comprising:

a current transformer equipped with a secondary winding and having a specified turns ratio, which is designed to encircle the primary conductor and convert the primary current flowing through the primary conductor into a proportionally scaled-down secondary current in accordance with the turns ratio; and

a machine-readable code securely affixed to a surface of the current transformer, wherein the machine-readable code is encoded with calibration data pertinent to the current transformer's performance characteristics;

establishing a connection between a power meter and the current transformer via the secondary winding;

measuring a secondary current at the secondary winding utilizing the power meter, and at the power meter:

receiving the calibration data from a portable scanning device which is provisioned to scan the code, thereby retrieving calibration data related to the current transformer; and

using the received calibration data to calibrate the measured secondary current to accurately determine the primary current.

9 . The method of claim 8 , wherein the machine-readable code is further encoded with additional information pertaining to the current transformer, the additional information selected from the group comprising:

the turns ratio;

the manufacturing timestamp;

a unique serial number;

and the specific model of the current transformer.

10 . The method of claim 9 , wherein the machine-readable code is further encoded with operational and environmental data pertaining to the current transformer, the operational and environmental data comprising:

operational data that specifies the operating temperature range of the current transformer;

optimal usage conditions indicating the ideal conditions under which the current transformer performs optimally; and

environmental resistance data providing information on the current transformer's resilience to environmental factors such as dust, water, and humidity.

11 . The method of claim 10 , further comprising the step of storing, by the power meter, at least one of the additional information, and operational and environmental data encoded in the machine-readable code.

12 . The method of claim 11 , further comprising the steps of the power meter utilizing the serial number encoded in the machine-readable code to trace and document the service history of the current transformer and forwarding the serial number to an energy management server for enabling predictive maintenance and inventory management strategies.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2023
From: WANG, YUFAN; WANG, LIANG; LI, KETAO
To: ACCUENERGY (CANADA) INC.
Reel/Frame 064547/0453 →