In-circuit current measurement
First Claim
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1. A method for measuring current I0 in a circuit, comprising:
- selecting an element in said circuit having a low resistance with respect to a remainder of the circuit, said element remaining connected in said circuit;
connecting a current source in parallel with said element, said current source having an output current and a current control input for controlling said output current;
connecting a voltage measuring device in parallel with both said element and said current source, said voltage measuring device having a voltage measurement output for providing a voltage measurement across said element and a voltage measurement control input for controlling said voltage measurement;
providing a control device connected to said current control input and said voltage measurement control input;
providing a calculation device having a calculation control input connected to said control device;
driving a first current I1 through the element with said current source and measuring a first voltage V1 across the element with said measuring device, all in response to said control device, said first current being at or near zero;
driving a second current I2 through the element with said current source and measuring a second voltage V2 across the element with said measuring device, all in response to said control device, said second current being greater than said first current;
calculating a value for the current I0 with said calculation device in response to said control device according to ##EQU8## providing the calculated value to a user or to an automated test system in response to said control device.
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Abstract
A current in a circuit is measured without breaking the circuit. A relatively low resistance element in the circuit such as a component lead is chosen. A current is forced through the element and the voltage drop measured. Another current is forced through the element and the voltage drop measured. The values of these currents and voltages are used to determine the original current in the circuit.
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Citations
14 Claims
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1. A method for measuring current I0 in a circuit, comprising:
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selecting an element in said circuit having a low resistance with respect to a remainder of the circuit, said element remaining connected in said circuit; connecting a current source in parallel with said element, said current source having an output current and a current control input for controlling said output current; connecting a voltage measuring device in parallel with both said element and said current source, said voltage measuring device having a voltage measurement output for providing a voltage measurement across said element and a voltage measurement control input for controlling said voltage measurement; providing a control device connected to said current control input and said voltage measurement control input; providing a calculation device having a calculation control input connected to said control device; driving a first current I1 through the element with said current source and measuring a first voltage V1 across the element with said measuring device, all in response to said control device, said first current being at or near zero; driving a second current I2 through the element with said current source and measuring a second voltage V2 across the element with said measuring device, all in response to said control device, said second current being greater than said first current; calculating a value for the current I0 with said calculation device in response to said control device according to ##EQU8## providing the calculated value to a user or to an automated test system in response to said control device. - View Dependent Claims (2, 3, 4, 5, 6, 7)
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8. A method for measuring current I0 in a circuit, comprising:
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selecting an element in said circuit having a low resistance with respect to a remainder of the circuit, said element remaining connected in said circuit; connecting a current source in parallel with said element, said current source having an output current and a current control input for controlling said output current; connecting a voltage measuring device in parallel with both said element and said current source, said voltage measuring device having a voltage measurement output for providing a voltage measurement across said element and a voltage measurement control input for controlling said voltage measurement; providing a control device connected to said current control input and said voltage measurement control input; providing a calculation device having a calculation control input connected to said control device; measuring an initial voltage V0 across the element in response to said measuring device; driving a first current I1 through the element with said current source and measuring a first voltage V1 across the element with said measuring device, all in response to said control device; driving a second current I2 through the element with said current source and measuring a second voltage V2 across the element with said measuring device, all in response to said control device, said second current being greater than said first current; calculating a value for the current I0 with said calculation device in response to said control device according to ##EQU9## providing the calculated value to a user or to an automated test system in response to said control device. - View Dependent Claims (9, 10, 11, 12, 13, 14)
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Specification