IP Library Granted Patent US 7,242,187
Granted Patent B1
US 7,242,187 · App. 11/405,459 · Granted Jul 10, 2007

Hall effect switching circuit and apparatus and method using the same

Assignee: Anachip Corporation
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Quick Facts
Patent No.
US 7,242,187
App. No.
11/405,459
Granted
Jul 10, 2007
Kind
B1
Abstract

A Hall Effect switching circuit and apparatus and method using the same are disclosed. The Hall Effect switching circuit comprises a power supply device, a Hall Effect detecting device and a buffer. The power supply device provides operation power to the Hall Effect detecting device. The Hall Effect detecting device provides a first triggering signal to a first output pin and a second triggering signal to a second output pin in accordance to a magnetic field through the Hall Effect detecting device. The buffer receives and buffers the voltage levels of the first/second triggering signals.

Claims (29)

1. A Hall Effect switching circuit, comprising:

a power supply apparatus for providing an operation power;

a magnetic detecting apparatus, comprising:

a magnetic north pole detecting unit, having a first sensing unit and a first comparator, detecting a field intensity of magnetic north pole for obtaining a first detected result by using the first sensing unit, and determining a voltage level of a first triggering signal outputting to a first output terminal in accordance to a compare result obtained from comparing the first detected result with a predetermined value by using the first comparator; and

a magnetic south pole detecting unit, having a second sensing unit and a second comparator, detecting a field intensity of magnetic south pole for obtaining a second detected result by using the second sensing unit, and determining a voltage level of a second triggering signal outputting to a second output terminal in accordance to a compare result obtained from comparing the second detected result with a predetermined value by using the second comparator; and

a buffer unit for receiving and buffering the voltage levels of the first triggering signal and the second triggering signal.

2. The Hall Effect switching circuit of claim 1 , wherein the magnetic north pole detecting unit further comprising an amplifier coupled between the first comparator and the first output terminal, and the amplifier amplifies a signal output from the first comparator to generate the first triggering signal.

3. The Hall Effect switching circuit of claim 1 , wherein the magnetic south pole detecting unit further comprising an amplifier coupled between the second comparator and the second output terminal, and the amplifier amplifies a signal output from the second comparator to generate the second triggering signal.

4. The Hall Effect switching circuit of claim 1 , further comprising an OR gate having two input terminals respectively coupled to the buffer unit for receiving the first triggering signal and the second triggering signal, and the OR gate performs an OR logic operation on the first and second triggering signals to generate a control signal.

5. The Hall Effect switching circuit of claim 4 , further comprising a switch coupled to the OR gate to receive the control signal and the switch is determined whether to be turned on or not in accordance to the control signal.

6. An apparatus using Hall Effect switching circuit, comprising:

a magnetic field generator for generating a magnetic field; and

a Hall Effect switching circuit for detecting intensity of the magnetic field, comprising:

a power supply apparatus for providing an operation power; and

a magnetic detecting apparatus, comprising:

a magnetic north pole detecting unit, having a first sensing unit and a first comparator, detecting a field intensity of magnetic north pole for obtaining a first detected result by using the first sensing unit, and determining a voltage level of a first triggering signal outputting to a first output terminal in accordance to a compare result obtained from comparing the first detected result with a predetermined value by using the first comparator; and

a magnetic south pole detecting unit, having a second sensing unit and a second comparator, detecting a field intensity of magnetic south pole for obtaining a second detected result by using the second sensing unit, and determining a voltage level of a second triggering signal outputting to a second output terminal in accordance to a compare result obtained from comparing the second detected result with a predetermined value by using the second comparator; and

a buffer unit for receiving and buffering the voltage levels of the first triggering signal and the second triggering signal.

7. The apparatus of claim 6 , wherein the magnetic north pole detecting unit further comprising an amplifier coupled between the first comparator and the first output terminal, and the amplifier amplifies a signal output from the first comparator to generate the first triggering signal.

8. The apparatus of claim 6 , wherein the magnetic south pole detecting unit further comprising an amplifier coupled between the second comparator and the second output terminal, and the amplifier amplifies a signal output from the second comparator to generate the second triggering signal.

9. The apparatus of claim 6 , further comprising an OR gate having two input terminals respectively coupled to the buffer unit for receiving the first triggering signal and the second triggering signal, and the OR gate performs an OR logic operation on the first and second triggering signals to generate a control signal.

10. The apparatus of claim 9 , further comprising a switch coupled to the OR gate to receive the control signal and the switch is determined whether to be turned on or not in accordance to the control signal.

11. A method for using Hall Effect switching circuit, which is adapted to a Hall Effect switching circuit comprising a magnetic north pole detecting unit and a magnetic south pole detecting unit, wherein the magnetic north pole detecting unit having a first sensing unit and a first comparator, and the magnetic south pole detecting unit having a second sensing unit and a second comparator, the method comprises the steps of:

using the magnetic north pole detecting unit to detecting a field intensity of magnetic north pole when operation power is provided to the magnetic north pole detecting unit, such that a corresponding first triggering signal is generated accordingly;

using the magnetic south pole detecting unit to detecting a field intensity of magnetic south pole when operation power is provided to the magnetic south pole detecting unit, such that a corresponding second triggering signal is generated accordingly; and

buffering the first and second triggering signal respectively for controlling circuit operation.

12. The method of claim 11 , wherein the step of buffering the first and second triggering signal respectively for controlling circuit operation comprises:

performing an OR logic operation on the first and second triggering signals to generate a corresponding control signal; and

determining whether to turn on a switch or not in accordance to the control signal.

Assignments (2)
MERGER Recorded Oct 11, 2010
From: ANACHIP CORPORATION
To: DIODES TAIWAN INC.
Reel/Frame 025114/0231 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 18, 2006
From: KU, MING-HUA; LEE, CHING-HSIENG
To: ANACHIP CORPORATION
Reel/Frame 017785/0486 →