Electronic circuit tester and method of use
View Patent ↗An electrical circuit tester including a resistive load and a testing station for detecting the variable load. The testing station includes at least one electrical current transducer capable of detecting the variable load in an adjacent electrical power circuit. The detection of the variable load is communicated to the testing station and a variable load detection function.
1. A method of detecting a single occurrence of a pulse of load current in a plurality of electrical circuits, comprising:
coupling a plurality of transducer transformers to a plurality of electrical conductors comprising the plurality of electrical circuits;
sensing the magnetic flux in each of the plurality of electrical circuits;
reading first digital representations of the sensed magnetic flux in each of the plurality of electrical circuits;
inducing additional magnetic flux in at least one of the electrical circuits by coupling a single occurrence pulse of load current to one of the plurality of electrical circuits;
reading second digital representations of the sensed magnetic flux in each of the plurality of electrical circuits;
detecting a change from the first digital representations to the second digital representations induced by the single occurrence pulse of load current; and
identifying on which of the plurality of electrical conductors the single occurrence pulse of load current was coupled.
2. The method of detecting in claim 1 , wherein;
the single occurrence of pulse of load current is between about 0.1 and 10 amps and lasts for between 10 milliseconds and 10 seconds.
3. The method of detecting in claim 2 , wherein;
the single occurrence of pulse of load current is about 2 amps and lasts for about 3 seconds.
4. The method of detecting in claim 1 , further comprising;
communicating the identity, on which of the plurality of electrical conductors the single occurrence pulse of load current was coupled, to a display device.
5. The method of detecting in claim 1 , further comprising;
setting a plurality of reference points equivalent to each of the first digital representations of the sensed magnetic flux in each of the plurality of electrical circuits.
6. The method of detecting in claim 1 , wherein;
coupling a plurality of transducer transformers to a plurality of electrical conductors coupling comprises closing split-core transducers around the plurality of electrical conductors.
7. The method of detecting in claim 1 , wherein reading first digital representations further comprises;
converting, by an analog to digital converter, the sensed magnetic flux in each of the plurality of electrical circuits to digital representations that are stored in at least one memory location.
8. The method of detecting in claim 1 , wherein detecting a change from the first digital representations to the second digital representations induced by the single occurrence pulse of load current further comprises;
comparing the first digital representations to the second digital representations.
9. The method of detecting in claim 1 , wherein inducing additional magnetic flux in at least one of the electrical circuits by coupling a single occurrence pulse of load current, comprises;
coupling a resistive load across at least one of the hot wires in one of the plurality of electrical circuits.
10. The method of detecting in claim 9 wherein, coupling a resistive load across at least one of the hot wires in one of the plurality of electrical circuits, comprises;
coupling a resistive load across the hot and neutral wires of one of the plurality of electrical circuits.
11. The method of detecting in claim 1 , wherein coupling a plurality of transducer transformers to a plurality of electrical conductors comprises;
placing each of the plurality of transducer transformers in magnetic flu flux of the plurality of electrical conductors.