IP Library Granted Patent US 10,012,684
Granted Patent B2
US 10,012,684 · App. 15/383,828 · Granted Jul 3, 2018

Ground fault detection circuit

Inventors: Mark Towers (Newtown, GB); Dylan Wyn Davies (Oswestry, GB)
Assignee: NIDEC CONTROL TECHNIQUES LIMITED
G01R31/025G01R27/18G01R31/024G01R31/07H02S50/10H02S40/32
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Quick Facts
Patent No.
US 10,012,684
App. No.
15/383,828
Granted
Jul 3, 2018
Kind
B2
Abstract

A ground fault detection circuit comprising a fuse and a fuse detect circuit. The fuse and the fuse detect circuit are arranged to be coupled in parallel between a reference point and a second point of a monitored circuit for which ground faults are to be detected. The fuse detect circuit is further arranged to detect a fuse break indicative of a ground fault condition and disable at least a portion of the monitored circuit.

Claims (28)

1. A ground fault detection circuit comprising:

a fuse;

a fuse detect circuit;

the fuse and the fuse detect circuit being arranged to be coupled in parallel between a reference point and a second point of a monitored circuit for which ground faults are to be detected, wherein the fuse detect circuit comprises a voltage monitor coupled in parallel between the reference point and the second point of the monitored circuit, wherein the ground fault detection circuit further comprises a potential divider coupled between the voltage monitor and the fuse, the potential divider being directly coupled to the fuse, and wherein

the fuse detect circuit is further arranged to:

detect a fuse break indicative of a ground fault condition; and

disable at least a portion of the monitored circuit.

2. The ground fault detection circuit of claim 1 wherein a fuse break indicative of a ground fault is detectable by detecting at least a pre-determined voltage across the fuse or a signal indicative of current passing through the fuse, and optionally wherein the pre-determined voltage across the fuse is caused by the breaking of the fuse due to at least a pre-determined current flowing therethrough.

3. The ground fault detection circuit of claim 1 wherein the fuse detect circuit comprises at least two voltage monitors arranged to be coupled in parallel between the reference point and the second point of a monitored circuit for which ground faults are to be detected.

4. The ground fault detection circuit of claim 1 wherein the potential divider comprises resistors of a value between 100 k ohms and 100 M ohms.

5. The ground fault detection circuit of claim 1 wherein the fuse is rated between 1A and 5A.

6. The ground fault detection circuit of claim 1 wherein each voltage monitor is a voltage monitoring relay.

7. The ground fault detection circuit of claim 1 wherein the fuse detect circuit is further arranged to indicate a fault condition on an output.

8. The ground fault detection circuit of claim 1 wherein the second point of the monitored circuit is a positive connection or a negative connection.

9. The ground fault detection circuit of claim 1 wherein the circuit is tolerant to voltages of 600V or more, and optionally wherein the circuit is tolerant to voltages of 1000V or more.

10. The ground fault detection circuit of claim 1 wherein the reference point is a ground connection.

11. The ground fault detection circuit of claim 1 wherein the second point is a direct current (DC) connection or an alternating current (AC) connection.

12. A method of detecting a ground fault comprising:

detecting, by a fuse detect circuit, a break in a fuse indicative of a ground fault condition, the fuse and the fuse detect circuit arranged to be coupled in parallel between a reference point and a second point of a monitored circuit for which ground faults are to be detected; and

disabling at least a portion of the monitored circuit in response to detecting the fuse break condition;

wherein the fuse detect circuit comprises a voltage monitor coupled in parallel between the reference point and the second point of the monitored circuit, and wherein a potential divider is coupled between the voltage monitor and the fuse, the potential divider being directly coupled to the fuse.

13. The method of claim 12 wherein detecting a fuse break indicative of a ground fault comprises detecting at least a pre-determined voltage across the fuse or a signal indicative of current passing through the fuse, and optionally wherein the pre-determined voltage across the fuse is caused by the breaking of the fuse due to at least a pre-determined current flowing therethrough.

14. The method of claim 12 wherein the fuse detect circuit comprises at least two voltage monitors arranged to be coupled in parallel between the reference point and the second point of a monitored circuit for which ground faults are to be detected.

15. The method of claim 12 wherein the fuse detect circuit is further arranged to indicate a fault condition on an output.

16. A ground fault detection system comprising:

the circuit of claim 1 ;

wherein a photovoltaic (PV) array is the monitored circuit; and

wherein an inverter of the PV array is arranged to be disabled in response to detecting the fuse break indicative of a ground fault condition.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2017
From: TOWERS, MARK; DAVIES, DYLAN WYN
To: CONTROL TECHNIQUES LIMITED
Reel/Frame 041703/0003 →
CHANGE OF NAME Recorded Mar 23, 2017
From: CONTROL TECHNIQUES LIMITED
To: NIDEC CONTROL TECHNIQUES LIMITED
Reel/Frame 042082/0827 →
Priority Claims (2)
GB 1303207.3 · Feb 22, 2013 · national
GB 1309114.5 · May 21, 2013 · national
Continuity (2)
Continuation 14186543 · Feb 21, 2014
Related Publication 20170097385A1 · Apr 6, 2017