Counter electromotive force detection circuit of brushless direct current motor and range hood applying counter electromotive force detection circuit

A technology of brushed DC motor and counter electromotive force, which is applied in the direction of electronic commutation motor control, application, and oil fume removal, etc. It can solve the problems of high cost, affecting product function expansion, and less resources, and achieves fast hardware processing speed and improved processing real-time The effect of simplification and complexity

Pending Publication Date: 2020-06-19
VATTI CORP LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Obviously, on a multifunctional range hood, too much MCU processor resources are consumed in the motor control function, which will inevitably lead to too few resources reserved for other functions to be realized, or affect the subsequent function expansion of the product. If the internal More resource-rich MCU processors will result in high cost

Method used

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  • Counter electromotive force detection circuit of brushless direct current motor and range hood applying counter electromotive force detection circuit
  • Counter electromotive force detection circuit of brushless direct current motor and range hood applying counter electromotive force detection circuit

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Effect test

Embodiment 1

[0023] Embodiment 1 of the present invention provides a back electromotive force detection circuit of a brushless DC motor, such as figure 1 As shown, it includes an input comparison module 1, a conversion module 2 and a latch output module 3. The input comparison module 1 compares the bus voltage and the counter electromotive force, and sends the comparison result to the latch output module 3. The latch After receiving the trigger signal from the conversion module 2, the storage and output module 3 latches the comparison result of the input comparison module 1 and finally outputs it.

[0024] In this way, using the above structure, the input comparison module 1 is used to compare the input bus voltage Vbus and the counter electromotive force Vemf after processing, and output the intermediate result result_temp of Uemf≥1 / 2Ubus or Uemf≤1 / 2Ubus to the latch output module 3, After receiving the trigger signal from the conversion module 2, the latch output module 3 latches and out...

Embodiment 2

[0045] Embodiment 2 of the present invention provides a range hood, which includes the counter electromotive force detection circuit of the brushless DC motor, the range hood body and the motor, the range hood body is equipped with a motor, and the motor is equipped with Back EMF detection circuit for brushed DC motor.

[0046] In this way, the counter electromotive force detection circuit of the brushless DC motor of the present invention is arranged in the motor in the main body of the range hood, and the DC variable frequency range hood using the counter electromotive force detection circuit of the brushless DC motor of the present invention can realize real-time control of the motor. Both performance and accuracy have been effectively improved.

[0047] The invention replaces the software algorithm with the hardware circuit detection method, releases the internal resources of the MCU processor, and provides MCU space resources for the expansion of functions other than moto...

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Abstract

The invention discloses a counter electromotive force detection circuit of a brushless direct current motor and a range hood applying the counter electromotive force detection circuit. The counter electromotive force detection circuit of the brushless direct current motor comprises an input comparison module, a conversion module and a latch output module. The input comparison module compares a busvoltage with a back electromotive force and transmits a comparison result to the latch output module, and the latch output module latches the comparison result of the input comparison module after receiving a trigger signal of the conversion module and finally outputs the comparison result. According to the counter electromotive force detection circuit of the brushless direct current motor, a hardware circuit detection method is used for replacing a software algorithm, internal resources of the MCU processor are released, MCU space resources are provided for expansion of other functions except motor control, and the cost is reduced; meanwhile, the hardware processing speed is higher than that of software processing, a zero-crossing detection result is directly outputted by hardware without a software algorithm, the complexity of software design is greatly simplified and the real-time performance of processing is improved.

Description

technical field [0001] The invention belongs to the technical field of brushless direct current motors, and in particular relates to a counter electromotive force detection circuit of a brushless direct current motor and a range hood using the same. Background technique [0002] At present, brushless DC motors are widely used in range hood products. In order to reduce the manufacturing cost of motors and improve reliability, brushless DC motors without Hall sensors are becoming a trend. There is no Hall sensor inside the motor, which means that the motor control software needs to perform very precise timing control on the commutation time of the motor, which undoubtedly increases the burden on the MCU processor. [0003] In the electronic control software, the general practice is to compare the zero-crossing by sampling the bus voltage Vbus and the counter electromotive force Vemf. When it is detected that Vemf≥1 / 2Vbus or Vemf≤1 / 2Vbus, it means that a zero-crossing event has...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02P6/182F24C15/20
CPCF24C15/20H02P6/182
Inventor 罗淦恩高宁潘叶江
Owner VATTI CORP LTD
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