IP Library › Granted Patent US 11,448,668
Granted Patent B2
US 11,448,668 · App. 17/016,571 · Granted Sep 20, 2022

Current detection circuit, current detection system, and method of adjusting current detection circuit

Inventors: Kazuhiro Taguchi (Yokohama Kanagawa, JP); Akihiro Murayama (Yokohama Kanagawa, JP)
Assignees: KABUSHIKI KAISHA TOSHIBA; TOSHIBA ELECTRONIC DEVICES & STORAGE CORPORATION
G01R19/0023G01R19/0092G01R19/16571G01R19/257
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Quick Facts
Patent No.
US 11,448,668
App. No.
17/016,571
Granted
Sep 20, 2022
Kind
B2
Abstract

According to one embodiment, a current detection circuit includes a current detection part including an operational amplifier configured to compare a first voltage proportional to a load current with a second voltage proportional to a detection current. The current detection part is configured to output the detection current. The current detection circuit includes an adjustment part configured to generate data in accordance with a result of comparing a monitor voltage proportional to the detection current with a reference voltage, and to adjust an input offset of the operational amplifier.

Claims (47)

1. A current detection circuit comprising:

a current detection part including an operational amplifier configured to receive inputs of a first voltage proportional to a load current and a second voltage proportional to a detection current, and to be adjustable in an input offset voltage by data, the current detection part being configured to output the detection current on a basis of an output of the operational amplifier; and

an adjustment part configured to generate the data in accordance with a result of comparing a monitor voltage proportional to the detection current with a reference voltage, and to adjust an offset of the operational amplifier,

wherein the adjustment part includes

a voltage comparison circuit configured to compare the monitor voltage with the reference voltage and output the data,

a pulse generation circuit configured to generate a predetermined timing signal, and

a latch circuit configured to latch the data in response to the timing signal.

2. The current detection circuit according to claim 1 , wherein the adjustment part is configured to start adjustment of the offset in response to an adjustment start signal.

3. The current detection circuit according to claim 2 , wherein the adjustment start signal is a standby cancellation signal for cancelling a standby state of the current detection part.

4. The current detection circuit according to claim 2 , comprising a mode control part configured to generate the adjustment start signal and supply the adjustment start signal to the adjustment part.

5. The current detection circuit according to claim 4 , wherein the mode control part is configured to generate the adjustment start signal in response to application of a power supply voltage.

6. The current detection circuit according to claim 1 , configured to adjust the offset of the operational amplifier when a drive element that supplies the load current to a load is off, and then to turn on the drive element after adjustment of the offset of the operational amplifier is completed and to supply the load current to the load.

7. The current detection circuit according to claim 1 , wherein

the operational amplifier includes a differential pair to which an n-number of transistor pairs with current amplification rates sequentially adjusted in accordance with weighting of 2 n (n is 0 to n) are connected, and

the adjustment part is configured to make one of each pair of the transistor pairs conductive by the data.

8. The current detection circuit according to claim 1 , wherein

the reference voltage is set to a value to be a voltage slightly in a positive direction with respect to a ground potential, and

the current detection part is configured such that the detection current flows in accordance with the reference voltage when the load current is zero.

9. A current detection system comprising:

a drive element configured to supply a load current to a load;

a drive control part configured to supply a drive signal to the drive element to control supply of the load current to the load;

a current detection part including an operational amplifier configured to receive inputs of a first voltage proportional to the load current and a second voltage proportional to a detection current, and to be adjustable in an input offset voltage by data, the current detection part being configured to output the detection current on a basis of an output of the operational amplifier;

an adjustment part configured to generate the data in accordance with a result of comparing a monitor voltage proportional to the detection current with a reference voltage, and to adjust an offset of the operational amplifier; and

a control circuit configured to supply an adjustment start signal for starting adjustment of the offset by the adjustment part,

wherein the adjustment part includes

a voltage comparison circuit configured to compare the monitor voltage with the reference voltage and output the data,

a pulse generation circuit configured to generate a predetermined timing signal, and

a latch circuit configured to latch the data in response to the timing signal.

10. The current detection system according to claim 9 , wherein the adjustment start signal is a standby cancellation signal for cancelling a standby state of the current detection part.

11. The current detection system according to claim 9 , comprising a mode control part configured to generate the adjustment start signal and supply the adjustment start signal to the adjustment part.

12. The current detection system according to claim 11 , wherein the mode control part is configured to generate the adjustment start signal in response to application of a power supply voltage.

13. The current detection system according to claim 9 , wherein

the reference voltage is set to a value to be a voltage slightly in a positive direction with respect to a ground potential, and

the current detection part is configured to output the detection current in accordance with the reference voltage when the load current is zero.

14. A method of adjusting a current detection circuit that includes a current detection part including an operational amplifier configured to amplify a difference voltage between a first voltage proportional to a load current and a second voltage proportional to a detection current that is a current reduced at a predetermined ratio with respect to the load current, the method comprising:

comparing a monitor voltage proportional to the detection current with a reference voltage; and

adjusting an offset of the operational amplifier to cause the monitor voltage to be equal to the reference voltage,

wherein the adjusting includes

comparing the monitor voltage with the reference voltage and outputting the data,

generating a predetermined timing signal, and

latching the data in response to the timing signal.

15. The method of adjusting a current detection circuit according to claim 14 , wherein the method comprises starting adjustment of the offset of the operational amplifier in response to a cancellation signal for cancelling a standby state of the current detection part.

16. The method of adjusting a current detection circuit according to claim 14 , wherein the method comprises starting adjustment of the offset of the operational amplifier in response to a reset signal that is generated in response to application of a power supply voltage to the current detection circuit.

17. The method of adjusting a current detection circuit according to claim 14 , wherein the method comprises adjusting the offset of the operational amplifier when a drive element that outputs the load current is off, and then turning on the drive element after adjustment of the offset of the operational amplifier is completed and supplying the load current to the load.

18. The method of adjusting a current detection circuit according to claim 14 , wherein

the operational amplifier includes a differential pair to which a plurality of transistors adjusted in size in accordance with predetermined weighting are connected in parallel, and

the method comprises selecting transistors to adjust the offset of the operational amplifier, in order from a transistor larger in weighting among the plurality of transistors.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 29, 2020
From: TAGUCHI, KAZUHIRO; MURAYAMA, AKIHIRO
To: KABUSHIKI KAISHA TOSHIBA; TOSHIBA ELECTRONIC DEVICES & STORAGE CORPORATION
Reel/Frame 054210/0783 →
Priority Claims (1)
JP JP2020-035515 · Mar 3, 2020 · national
Continuity (1)
Related Publication 20210278444A1 · Sep 9, 2021
Cited By (1)
US 12,416,937