System and method for voltage and current sensing
In accordance with one aspect of the present disclosure, a current sensor configured to measure an AC current of a first conductor includes an outer coil having a first portion and a second portion. Each of the first and second portions are disposed about the first conductor passing through a center of the outer coil. The current sensor further includes an inner conductor disposed within the first and second portions of the outer coil and connected to each of the first and second portions of the outer coil.
1. A current sensor configured to measure an AC (Alternating Current) current of a first conductor, the current sensor comprising: an outer coil including a first coil and a second coil, wherein each of the first and second coils are disposed about the first conductor passing through a center of the outer coil, the first and second coils each having a first end and a second end; an inner conductor disposed within the first and second coils of the outer coil, the inner conductor having a first and second end, wherein the first end of the inner conductor is coupled to the first end of the first coil and the second end of the inner conductor is coupled to the first end of the second coil, and a conditioning circuit including: a first connection coupled to the second end of the first coil; a second connection coupled to the second end of the second coil; a first resistor coupled to the first connection; a second resistor coupled to the second connection; an amplifier including a first input coupled to the first resistor and a second input coupled to the second resistor; and a first filter and a second filter connected in parallel to the amplifier.
2. The current sensor according to claim 1 ,
wherein the conditioning circuit is configured to amplify and integrate a voltage received from the first and second connections of the conditioning circuit and to output a measured AC current of the first conductor.
3. The current sensor according to claim 2 , wherein the first and second connectors of the conditioning circuit generate a fourth voltage.
4. The current sensor according to claim 1 , wherein the first end of the first coil and the first end of the second coil are separated by a gap and the inner conductor comprises a third connector connecting the inner conductor to a ground, such that the gap and the third connector define an axis and the current sensor is symmetrical about the axis.
5. The current sensor according to claim 4 , wherein the inner conductor is connected to ground at approximately 0° relative to the locations of the first and second connectors of the conditioning circuit along the axis.
6. The current sensor according to claim 4 , wherein the first end of the inner conductor is connected to a first end of the first coil approximately 180° relative to the locations of the first and second connectors of the conditioning circuit along the axis.
7. The current sensor according to claim 4 , wherein the second end of the inner conductor is connected to a first end of the second coil approximately 180° relative to the locations of the first and second connectors of the conditioning circuit along the axis.
8. The current sensor according to claim 1 , wherein the first and second coils are configured as a single coil with a center tap configured to connect the inner conductor to the outer coil.