IP Library › Granted Patent US 10,018,657
Granted Patent B2
US 10,018,657 · App. 14/362,121 · Granted Jul 10, 2018

Current measuring circuit, battery and motor vehicle

Inventor: Patrick Kaupp (Stuttgart, DE)
Assignees: Robert Bosch GmbH; Samsung SDI Co., Ltd.
G01R19/00G01R1/203G01R15/20G01R31/3606G01R33/07
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Quick Facts
Patent No.
US 10,018,657
App. No.
14/362,121
Granted
Jul 10, 2018
Kind
B2
Abstract

A current measuring circuit for redundantly measuring electrical current includes a measuring resistor, a magnetic field sensor, and an evaluation circuit on an evaluation circuit board. The evaluation circuit is used to determine electrical current using the measuring resistor. The magnetic field sensor on the evaluation circuit board and the evaluation circuit board are arranged in direct proximity to the measuring resistor such that the magnetic field sensor is configured to detect the magnetic field from the current-carrying resistor. A battery includes the current measuring circuit and a motor vehicle includes the battery.

Claims (26)

1. A current-measuring circuit for redundantly measuring an electric current, comprising:

a measuring resistor, a magnetic-field sensor, and an evaluation circuit on an evaluation-circuit printed circuit board configured to determine the electric current using the measuring resistor,

wherein the magnetic-field sensor on the evaluation-circuit printed circuit board and the evaluation-circuit printed circuit board are arranged in the immediate vicinity of the measuring resistor such that the magnetic-field sensor is configured to detect the magnetic field of the measuring resistor when current flows through it,

wherein the evaluation circuit is further configured to compare a primary signal corresponding to the current determined by the measuring resistor with a secondary signal corresponding to the current determined by the magnetic-field sensor and to output an error signal in the event that the two signals differ,

wherein the evaluation-circuit printed circuit board having the magnetic-field sensor lies flat against the measuring resistor, and

wherein an electrical isolator is arranged between the evaluation-circuit printed circuit board and the measuring resistor which electrically isolates the evaluation-circuit printed circuit board from the measuring resistor except for electrically conductive connections between the evaluation-circuit printed circuit board and measuring resistor.

2. The current-measuring circuit as claimed in claim 1 , wherein a distance between the magnetic-field sensor and the measuring resistor is less than 10 mm.

3. The current-measuring circuit as claimed in claim 2 , wherein the distance between the magnetic-field sensor and the measuring resistor is less than or equal to 5 mm.

4. The current-measuring circuit as claimed in claim 1 , wherein the measuring resistor has an electrical resistance of less than 1 mΩ.

5. The current-measuring circuit as claimed in claim 1 , wherein the magnetic-field sensor is a Hall sensor.

6. A battery, comprising:

at least one battery cell; and

a current-measuring circuit configured to redundantly measure an electrical current output by the at least one battery cell, the current-measuring circuit including:

a measuring resistor, a magnetic-field sensor, and an evaluation circuit on an evaluation-circuit printed circuit board configured to determine the electric current using the measuring resistor,

wherein the magnetic-field sensor on the evaluation-circuit printed circuit board and the evaluation-circuit printed circuit board are arranged in the immediate vicinity of the measuring resistor such that the magnetic-field sensor is configured to detect the magnetic field of the measuring resistor when current flows through it,

wherein the evaluation circuit is further configured to compare a primary signal corresponding to the current determined by the measuring resistor with a secondary signal corresponding to the current determined by the magnetic-field sensor and to output an error signal in the event that the two signals differ,

wherein the evaluation-circuit printed circuit board having the magnetic-field sensor lies flat against the measuring resistor, and

wherein an electrical isolator is arranged between the evaluation-circuit printed circuit board and the measuring resistor which electrically isolates the evaluation-circuit printed circuit board from the measuring resistor except for electrically conductive connections between the evaluation-circuit printed circuit board and measuring resistor.

7. The battery as claimed in claim 6 , wherein the at least one battery cell is a lithium-ion battery cell.

8. A motor vehicle or electrical device, comprising:

a battery including a current-measuring circuit configured to redundantly measure an electrical current, the current-measuring circuit including:

a measuring resistor, a magnetic-field sensor, and an evaluation circuit on an evaluation-circuit printed circuit board configured to determine the electric current using the measuring resistor,

wherein the magnetic-field sensor on the evaluation-circuit printed circuit board and the evaluation-circuit printed circuit board are arranged in the immediate vicinity of the measuring resistor such that the magnetic-field sensor is configured to detect the magnetic field of the measuring resistor when current flows through it,

wherein the evaluation circuit is further configured to compare a primary signal corresponding to the current determined by the measuring resistor with a secondary signal corresponding to the current determined by the magnetic-field sensor and to output an error signal in the event that the two signals differ,

wherein the evaluation-circuit printed circuit board having the magnetic-field sensor lies flat against the measuring resistor, and

wherein an electrical isolator is arranged between the evaluation-circuit printed circuit board and the measuring resistor which electrically isolates the evaluation-circuit printed circuit board from the measuring resistor except for electrically conductive connections between the evaluation-circuit printed circuit board and measuring resistor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 10, 2014
From: KAUPP, PATRICK
To: ROBERT BOSCH GMBH; SAMSUNG SDI CO., LTD.
Reel/Frame 033927/0221 →
Priority Claims (1)
DE 10 2011 088 893 · Dec 16, 2011 · national
Continuity (1)
Related Publication 20140333314A1 · Nov 13, 2014
Cited By (1)
US 12,638,511