IP Library › Granted Patent US 12,146,903
Granted Patent B2
US 12,146,903 · App. 17/617,807 · Granted Nov 19, 2024

DC meter for electrical vehicle charging station

Inventors: Florent Balboni (Lyons, FR); Tomislav Hajak (Saint Priest, FR); Sylvain Barrat (Belleville em Beaujolais, FR)
Assignee: LEM INTERNATIONAL SA
G01R22/06B60L53/62G01R19/10
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Quick Facts
Patent No.
US 12,146,903
App. No.
17/617,807
Granted
Nov 19, 2024
Kind
B2
Abstract

A DC meter for an electrical vehicle charging station having a pair of DC power supply lines extending from a charging station controller to an electrical vehicle connector, the DC meter comprising a meter unit and a sensor unit. The meter unit comprises a user interface, a sensor interface for connection to the sensor unit, a metering interface for connection to the charging station controller, and a microprocessor configured to receive and process signals received from the sensor unit, to exchange data with the charging station controller and to receive commands from the user interface and output information to the user interface. The sensor unit is separate and connected at a point distal from the meter unit via an interconnection cable for the transmission of measurement signals.

Claims (9)

1. A DC meter for an electrical vehicle charging station having a pair of DC power supply lines extending from a charging station controller to an electrical vehicle connector, the DC meter comprising a meter unit and a sensor unit, the meter unit comprising a user interface, a sensor interface for connection to the sensor unit, a metering interface for connection to the charging station controller, and a microprocessor configured to receive and process signals received from the sensor unit, to exchange data with the charging station controller and to receive commands from the user interface and output information to the user interface, wherein the sensor unit is separate from the meter unit and connected at a point distal from the meter unit via an interconnection cable for the transmission of measurement signals, the sensor unit comprising a current sensor coupled to one of the pair of DC power supply lines and configured for measuring the current flowing through said power line, the sensor unit further comprising a voltage sensor for coupling to each of the pair of power supply lines for measuring a voltage difference therebetween, the sensor unit further comprising a microprocessor with analog to digital convertors (ADC) for converting received analog voltage measurement and current measurement signals to digital signals, the sensor unit further comprising a communication interface configured for transmission of encrypted data through the interconnection cable to the meter unit, wherein the voltage sensor comprises a connector coupled to voltage sensor cables having connection ends distal from the sensor unit for connection to the DC power supply lines at or proximate the electrical vehicle connector, wherein the sensor unit comprises a connector for the voltage sensor cables and a connector for the communication interface for connection to the interconnection cable.

2. The DC meter according to claim 1 , wherein the microprocessor of the sensor unit comprises a module for computation of the power consumed by a connected electrical vehicle using the voltage measurement and current measurement signals, a power measurement value computed by the microprocessor being transmitted to the meter unit.

3. The DC meter according to claim 2 , wherein the power measurement computation is computed from a current measurement signal and/or voltage measurement signal sampled every 1 to 0.01 seconds.

4. The DC meter according to claim 2 , wherein in addition to a power measurement signal transferred from the sensor unit to the meter unit, voltage and current measurement data are also transmitted.

5. The DC meter according to claim 1 , wherein the sensor unit and meter unit comprise unique identification numbers stored in respective memories, the sensor unit and meter unit being able to communicate once they have been paired with their unique identification numbers.

6. The DC meter according to claim 1 , wherein the sensor unit and meter unit comprise encryption modules for encrypted communication of data between the sensor unit and meter unit.

7. The DC meter according to claim 1 , wherein the current sensor is a current measurement shunt and one of the DC power supply lines is split and comprises connection ends for connection to respective connection terminals of the sensor unit.

8. The DC meter according to claim 1 , wherein the sensor unit comprises a housing having at least a base and a cap, primary conductor connection terminals being provided extending out of the base and covered by the cap, the cap being removably positionable over the terminals and connectors and comprising means for tamper proof securing to the base.

9. The DC meter according to claim 1 , wherein the sensor unit communication interface transmits data to the meter unit via the interconnection cable at a voltage of less than 50 volts.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 9, 2021
From: BALBONI, FLORENT; HAJAK, TOMISLAV; BARRAT, SYLVAIN
To: LEM INTELLECTUAL PROPERTY SA
Reel/Frame 058350/0299 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 9, 2021
From: LEM INTELLECTUAL PROPERTY SA
To: LEM INTERNATIONAL SA
Reel/Frame 058350/0471 →
Priority Claims (1)
EP 19179831 · Jun 12, 2019 · regional
Continuity (1)
Related Publication 20220334156A1 · Oct 20, 2022