IP Library › Granted Patent US 10,359,463
Granted Patent B2
US 10,359,463 · App. 15/478,786 · Granted Jul 23, 2019

Electric leakage detecting device

Inventor: Yu Onishi (Tokyo, JP)
Assignee: NEW JAPAN RADIO CO., LTD.
G01R31/025G01R35/005H02H1/0007H02H3/162H02H3/33H02H1/0092
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Quick Facts
Patent No.
US 10,359,463
App. No.
15/478,786
Granted
Jul 23, 2019
Kind
B2
Abstract

One embodiment provides an electric leakage detecting device for shutting off an AC electric circuit. A digital comparator generates a detection signal by comparing an output signal corresponding to output signals of a zero-phase current transformer with positive and negative thresholds, a control signal generator generates a control signal based on the detection signal, and a judging device generates a judgment signal if an electric leakage state is judged. In addition, a delay counter generates a final control signal if the judgment signal has been received continuously more than a first prescribed time, a reset counter resets every time the control signal is received, and resets the judging device and the delay counter if the control signal is not received in a second prescribed time, and a switch driving circuit shuts off the AC electric circuit based on the final control signal.

Claims (45)

1. An electric leakage detecting device for shutting off an AC electric circuit by detecting a ground-fault current occurring in the AC electric circuit by a zero-phase current transformer, the electric leakage detecting device including:

an A/D converter which analog-to-digital-converts a difference signal between positive and negative output signals of the zero-phase current transformer;

a digital filter which extracts low-frequency components of a digital signal that is output from the A/D converter;

a digital comparator which generates a detection signal by comparing an output signal of the digital filter with the positive threshold and the negative threshold;

a trip control signal generator which generates a positive trip control signal or a negative trip control signal based on the detection signal output from the digital comparator;

an electric leakage judging device which judges whether the AC electric circuit is in an electric leakage state based on the positive trip control signal and the negative trip control signal, and generates an electric leakage judgment signal if judging that the AC electric circuit is in the electric leakage state;

a delay counter which generates a final trip control signal if the electric leakage judgment signal has been received continuously from the electric leakage judging device more than a first prescribed time;

a reset signal generation counter which is reset every time the positive trip control signal or the negative trip control signal is received from the trip control signal generator, and resets the electric leakage judging device and the delay counter it neither the positive trip control signal nor the negative trip control signal is received in a second prescribed time after being reset; and

a switch driving circuit which shuts off the AC electric circuit when the final trip control signal is received from the delay counter.

2. The electric leakage detecting device of claim 1 ,

wherein the digital filter eliminates frequency components that are higher than a main frequency of the AC electric circuit.

3. The electric leakage detecting device of claim 1 ,

wherein the digital comparator generates, as the detection signal,

a positive-threshold-excess detection signal when the output signal of the digital filter is larger than the positive threshold, and

a negative-threshold-excess detection signal when the output signal of the digital filter is smaller than the negative threshold,

wherein the trip control signal generator includes a time measuring unit, and generates

the positive trip control signal if the time measuring unit detects that the positive-threshold-excess detection signal has been received continuously for a third prescribed time, and

the negative trip control signal if the time measuring unit detects that the negative-threshold-excess detection signal has been received continuously for the third prescribed time, and

wherein the electric leakage judging device generates the electric leakage judgment signal if the positive trip control signal and the negative trip control signal are received from the trip control signal generator

in an order of the positive trip control signal, the negative rip control signal and the positive trip control signal, or

in an order of the negative trip control signal, the positive trip control signal and the negative trip control signal.

4. The electric leakage detecting device of claim 3 ,

wherein the trip control signal generator is reset into a standby state to wait for input of the positive-threshold-excess detection signal or the negative-threshold-excess detection signal if the negative-threshold-excess detection signal is received after generation of the positive trip control signal, or if the positive-threshold-excess detection signal is received after generation of the negative trip control signal.

5. The electric leakage detecting device of claim 1 ,

wherein the digital comparator generates, as the detection signal,

a positive-threshold-excess detection signal when the output signal of the digital filter is larger than the positive threshold, and

a negative-threshold-excess detection signal when the output signal of the digital filter is smaller than the negative threshold,

wherein the trip control signal generator includes a time measuring unit, and generates

the positive trip control signal if the time measuring unit detects that the positive-threshold-excess detection signal has been received continuously for a third prescribed time, and

the negative trip control signal if the time measuring unit detects that the negative-threshold-excess detection signal has been received continuously for the third prescribed time, and

wherein the electric leakage judging device generates the electric leakage judgment signal if

the positive trip control signal is received successively twice from the trip control signal generator, or

the negative trip control signal is received successively twice from the trip control signal generator.

6. The electric leakage detecting device of claim 5 ,

wherein the digital comparator further includes a second positive threshold that as smaller than the positive threshold and a second negative threshold that is larger than the negative threshold, and generates

a second-positive-threshold-excess detection signal when the output signal of the digital filter is larger than the second positive threshold, or

a second-negative-threshold-excess detection signal when the output signal of the digital filter is smaller than the second negative threshold, and

wherein the trip control signal generator is reset into a standby state to wait for input of the positive-threshold-excess detection signal or the negative-threshold-excess detection signal, if the second-positive-threshold-excess detection signal is not received after generation of the positive trip control signal or if the second-negative-threshold-excess detection signal is not received after generation of the negative trip control signal.

7. The electric leakage detecting device of claim 3 ,

wherein the digital comparator further generates

a between-thresholds detection signal when the output signal of the digital filter is between the positive threshold and the negative threshold, and

wherein the trip control signal generator is

switched into a detection state to start measurement of a continuation time of the negative-threshold-excess detection signal with the time measuring unit being reset, if the detection signal of the digital comparator is changed from the positive-threshold-excess detection signal to the negative-threshold-excess detection signal before the time measuring unit detects a lapse of the third prescribed time,

switched into a detection state to start measurement of a continuation time of the positive-threshold-excess detection signal with the time measuring unit being reset, if the detection signal of the digital comparator is changed from the negative-threshold-excess detection signal to the positive-threshold-excess detection signal before the time measuring unit detects a lapse of the third prescribed time, and

reset into a standby state to wait for input of the positive-threshold-excess detection signal or the negative-threshold-excess detection signal if the detection signal of the digital comparator is changed from the positive-threshold-excess detection signal or the negative-threshold-excess detection signal to the between-thresholds detection signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2017
From: ONISHI, YU
To: NEW JAPAN RADIO CO., LTD.
Reel/Frame 041847/0584 →
Priority Claims (1)
JP 2016-074850 · Apr 4, 2016 · national
Continuity (1)
Related Publication 20170285087A1 · Oct 5, 2017