IP Library Granted Patent US 9,316,702
Granted Patent B2
US 9,316,702 · App. 13/750,589 · Granted Apr 19, 2016

Magnetic-field detection microcomputer and magnetic-field detecting method

Inventors: Shigeyuki Komatsu (Kyoto, JP); Hideo Tomita (Shiga, JP)
Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
G01R33/02G01R33/0023G01R33/07G01R33/072G06F17/00H01L27/22
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Quick Facts
Patent No.
US 9,316,702
App. No.
13/750,589
Granted
Apr 19, 2016
Kind
B2
Abstract

A magnetic-field detection microcomputer includes: a magnetic-field detection device; a differential amplifier; a variable voltage circuit which generates a reference voltage that is variable; a comparator which compares an output from the differential amplifier with the reference voltage; a register which outputs a voltage control value to the variable voltage circuit; a ROM which previously store a first table in which a magnetic-field intensity and the voltage control value are associated with each other; and a CPU which sets, to the register, the voltage control value, and determines presence or absence of the magnetic-field intensity associated with the voltage control value based on a result of the comparison by the comparator and the first table.

Claims (46)

1. A magnetic-field detection microcomputer comprising:

a magnetic-field detection device which detects a magnetic field;

a differential amplifier which amplifies an output voltage from the magnetic-field detection device;

a variable voltage circuit which generates, according to a voltage control signal, a reference voltage that is variable;

a comparator which compares an output from the differential amplifier with the reference voltage generated by the variable voltage circuit;

a voltage controlling register which holds a voltage control value for controlling a level of the reference voltage generated by the variable voltage circuit, and outputs the voltage control signal having the voltage control value to the variable voltage circuit;

a storage unit configured to previously store a first table in which a magnetic-field intensity indicating an intensity of the magnetic field to be applied to the magnetic-field detection device and the voltage control value are associated with each other; and

a central processing unit (CPU) configured to set, to the voltage controlling register, the voltage control value corresponding to a magnetic field to be detected, and to determine presence or absence of the magnetic-field intensity associated with the voltage control value based on a result of the comparison by the comparator and the first table.

2. The magnetic-field detection microcomputer according to claim 1 , further comprising

a gain controlling register which holds one or more gain control values each for setting a gain of the differential amplifier, and outputs a gain control signal having a corresponding one of the gain control values to the differential amplifier,

wherein the differential amplifier is capable of varying the gain according to the gain control signal, and

the storage unit is configured to previously store the first table in which the magnetic-field intensity and the voltage control value are associated with each other, for each of the gain control values.

3. The magnetic-field detection microcomputer according to claim 1 ,

wherein the CPU is configured to increase or decrease the voltage control value held in the voltage controlling register, and to read out the magnetic-field intensity associated with the voltage control value from the first table as the detected magnetic-field intensity, when an output from the comparator is inverted.

4. The magnetic-field detection microcomputer according to claim 1 ,

wherein the variable voltage circuit is a digital-to-analog (D/A) converter.

5. The magnetic-field detection microcomputer according to claim 1 ,

wherein the storage unit is further configured to previously store: (i) a second table in which an intensity of a magnetic-field in a south pole to be applied to the magnetic-field detection device and the voltage control value indicating a condition under which the output from the comparator is inverted, are associated with each other; and (ii) the first table in which an intensity of a magnetic-field in a north pole to be applied to the magnetic-field detection device and the voltage control value indicating the condition under which the output from the comparator is inverted, are associated with each other.

6. The magnetic-field detection microcomputer according to claim 5 ,

wherein the CPU is configured to alternately perform magnetic-field detection using the first table and magnetic-field detection using the second table, a predetermined number of times for each of the magnetic-field detection.

7. The magnetic-field detection microcomputer according to claim 1 , further comprising:

a voltage-raising circuit which raises a power-supply voltage; and

a voltage-switching circuit which selects one of the power-supply voltage in which the voltage is raised and the power-supply voltage in which the voltage is not raised, so as to supply the selected power-supply voltage to the magnetic-field detection device,

wherein the storage unit is configured to previously store the first table in which the magnetic-field intensity and the voltage control value are associated with each other, for each of the power-supply voltage in which the voltage is raised and the power-supply voltage in which the voltage is not raised, and

the CPU is configured to detect the magnetic-field intensity using the voltage control value corresponding to the power-supply voltage selected by the voltage-switching circuit.

8. The magnetic-field detection microcomputer according to claim 1 ,

wherein the magnetic-field detection device is a hall element, and

the magnetic-field detection device, the differential amplifier, the variable voltage circuit, the comparator, the voltage controlling register, the storage unit, and the CPU are formed in a single semiconductor substrate.

9. The magnetic-field detection microcomputer according to claim 8 ,

wherein the hall element is formed in at least one corner among four corners of the semiconductor substrate.

10. The magnetic-field detection microcomputer according to claim 8 , further comprising:

three magnetic-field detection devices each having the same configuration as a configuration of the magnetic-field detection device; and

three sets each having the same configuration as a configuration of a set which includes the differential amplifier, the variable voltage circuit and the comparator,

wherein the four magnetic-field detection devices are placed in the respective four corners of the semiconductor substrate, and

the CPU is configured to detect the magnetic field using the four sets.

11. A magnetic-field detecting method performed by a magnetic-field detection microcomputer including:

a magnetic-field detection device which detects a magnetic field;

a differential amplifier which amplifies an output voltage from the magnetic-field detection device;

a variable voltage circuit which generates, according to a voltage control signal, a reference voltage that is variable;

a comparator which compares an output from the differential amplifier with the reference voltage generated by the variable voltage circuit;

a voltage controlling register which holds a voltage control value for controlling a level of the reference voltage generated by the variable voltage circuit, and outputs the voltage control signal having the voltage control value to the variable voltage circuit; and

a storage unit configured to previously store a first table in which a magnetic-field intensity indicating an intensity of the magnetic field to be applied to the magnetic-field detection device and the voltage control value are associated with each other,

the magnetic-field detecting method comprising:

setting, to the voltage controlling register, the voltage control value corresponding to the magnetic field to be detected;

determining whether or not an output from the comparator is inverted; and

reading out the magnetic-field intensity associated with the voltage control value from the first table, when in the determining, the output from the comparator is determined to be inverted.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE ERRONEOUSLY FILED APPLICATION NUMBERS 13/384239, 13/498734, 14/116681 AND 14/301144 PREVIOUSLY RECORDED ON REEL 034194 FRAME 0143. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Dec 24, 2020
From: PANASONIC CORPORATION
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 056788/0362 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2020
From: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
To: PANASONIC SEMICONDUCTOR SOLUTIONS CO., LTD.
Reel/Frame 052755/0870 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2014
From: PANASONIC CORPORATION
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 034194/0143 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2014
From: KOMATSU, SHIGEYUKI; TOMITA, HIDEO
To: PANASONIC CORPORATION
Reel/Frame 032005/0706 →
Priority Claims (1)
JP 2010-173025 · Jul 30, 2010 · national
Continuity (2)
Continuation PCTJP2011003762 · Jun 30, 2011
Related Publication 20130138374A1 · May 30, 2013