{"id":7175048069300,"title":"Dual DC Motor Driver Module Board, H-Bridge DC 3~36V 10A Peak 30A Speed Control PWM Module, MOSFET IRF3205 Quick Response Control Board for Arduino Robot Smart Car","handle":"dual-dc-motor-driver-module-board-h-bridge-dc-3-36v-10a-peak-30a-speed-control-pwm-module-mosfet-irf3205-quick-response-control-board-for-arduino-robot-smart-car","description":"\u003ch3\u003eDual DC Motor Driver Module Board, H-Bridge DC 3~36V 10A Peak 30A Speed Control PWM Module, MOSFET IRF3205 Quick Response Control Board for Arduino Robot Smart Car\u003c\/h3\u003e\n\u003cp id=\"b\"\u003eFeatures:MOSFET driver chip comes with hardware brake function and power\nfeedback.N-channel MOSFET IRF3205 MOSFET, use two dedicated half-bridge driver\nchip on the top tube using the boostrap capacitor, so that the tube has enough\ndrive voltage of the MOSFET channel can be opened quickly, improve motor\nacceleration curvature, but also quickly for the motor brake. This allows the\ntrolley can quickly start can quickly kill the car.The driver can operate at\n0-99% of the duty cycle of the PWM modulation, the motor driving voltage can\nbe obtained sufficiently.Specifications:Condition:100% Brand NewMotor forward:\nDIR = 1 PWM = PWMMotor reversal: DIR = 0 PWM = PWMParking brake: DIR = X PWM =\n0 (X is an arbitrary state)Motor and power connectionsPOWER connected to the\npositive power supply, GND power supply is negative. Two motors were connected\nMOTOR1, MOTOR2Rated voltage: 3v-36v (can be customized according to the\nuser)Rated Current: 10APeak current: 30ASize:\nApprox.10858mm\/4.32.3in(LW)Package List:1Dual Motor driver module board\nH-Bridge DC MOSFET IRF3205 3-36V 10A\u003c\/p\u003e \n\n\u003ch3\u003eProduct Features\u003c\/h3\u003e\n \u003cul class=\"a\"\u003e\n \u003cli\u003eDC MOTOR DRIVE BOARD: 10A dual-channel motor drive board, stepping DC motor with brake H-bridge balance car drive module, DC motor high-current full-bridge drive specially designed for robot competitions.\u003c\/li\u003e\n \u003cli\u003ePWM MODULATION: It can work at 0%-99% PWM modulation duty cycle (note that it cannot be 100%), so that the motor can get enough driving voltage. When the motor is connected, it can not be directly given high level, and it should not be left floating. The best frequency is above 400HZ Frequency: 400HZ-20KHZ!\u003c\/li\u003e\n \u003cli\u003eN-CHANNEL IRF3205 MOSFET: It can quickly open the MOSFET channel, improve the acceleration curvature of the motor, and also quickly brake the motor. This allows the car to start and kill the car quickly.\u003c\/li\u003e\n \u003cli\u003eTEST: 1. Determine the PWM signal. Before testing the drive board, please use an oscilloscope or a multimeter to determine whether the PWM signal you provide is accurate (set PWM to 0 when the main program is executed). 2. Do not connect the motor first, and all other signal power supplies are normal. Use a multimeter or oscilloscope to test the waveform between the motors. 3. Connect the motor for testing.\u003c\/li\u003e\n \u003cli\u003eNOTE: For customers who use arduino STM32 microcontrollers, please note that because these microcontrollers take a long time to initialize, it is necessary to add a 2K pull-down resistor to PWM1 and PWM2 respectively.\u003c\/li\u003e\n \u003c\/ul\u003e\n\n","published_at":"2022-06-30T01:01:41+10:00","created_at":"2022-06-30T01:01:50+10:00","vendor":"Thincol","type":"Unknown","tags":["industrial"],"price":13000,"price_min":13000,"price_max":13000,"available":true,"price_varies":false,"compare_at_price":null,"compare_at_price_min":0,"compare_at_price_max":0,"compare_at_price_varies":false,"variants":[{"id":41619655458996,"title":"Default Title","option1":"Default Title","option2":null,"option3":null,"sku":"B08JM4Z1HP","requires_shipping":true,"taxable":true,"featured_image":null,"available":true,"name":"Dual DC Motor Driver Module Board, H-Bridge DC 3~36V 10A Peak 30A Speed Control PWM Module, MOSFET IRF3205 Quick Response Control Board for Arduino Robot Smart Car","public_title":null,"options":["Default Title"],"price":13000,"weight":45,"compare_at_price":null,"inventory_management":null,"barcode":"8888841203420","requires_selling_plan":false,"selling_plan_allocations":[]}],"images":["\/\/auspowers.com\/cdn\/shop\/products\/B08JM4Z1HP.jpg?v=1656572101","\/\/auspowers.com\/cdn\/shop\/products\/71o_zYpAiZL.jpg?v=1656514911","\/\/auspowers.com\/cdn\/shop\/products\/71ad3dNXBEL.jpg?v=1656514911","\/\/auspowers.com\/cdn\/shop\/products\/71MctmDblhL.jpg?v=1656514911","\/\/auspowers.com\/cdn\/shop\/products\/61Kdx5XNE2L.jpg?v=1656514911","\/\/auspowers.com\/cdn\/shop\/products\/71qh9xwaP-L.jpg?v=1656514911","\/\/auspowers.com\/cdn\/shop\/products\/71qigWHakxL.jpg?v=1656514911","\/\/auspowers.com\/cdn\/shop\/products\/51x2JcSwVHL.jpg?v=1656514911"],"featured_image":"\/\/auspowers.com\/cdn\/shop\/products\/B08JM4Z1HP.jpg?v=1656572101","options":["Title"],"media":[{"alt":"[Australia - 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AusPower] - Dual DC Motor Driver Module Board, H-Bridge DC 3~36V 10A Peak 30A Speed Control PWM Module, MOSFET IRF3205 Quick Response Control Board for Arduino Robot Smart Car ","id":26340016881844,"position":5,"preview_image":{"aspect_ratio":1.0,"height":1001,"width":1001,"src":"\/\/auspowers.com\/cdn\/shop\/products\/61Kdx5XNE2L.jpg?v=1656514911"},"aspect_ratio":1.0,"height":1001,"media_type":"image","src":"\/\/auspowers.com\/cdn\/shop\/products\/61Kdx5XNE2L.jpg?v=1656514911","width":1001},{"alt":"[Australia - AusPower] - Dual DC Motor Driver Module Board, H-Bridge DC 3~36V 10A Peak 30A Speed Control PWM Module, MOSFET IRF3205 Quick Response Control Board for Arduino Robot Smart Car ","id":26340016914612,"position":6,"preview_image":{"aspect_ratio":1.0,"height":1001,"width":1001,"src":"\/\/auspowers.com\/cdn\/shop\/products\/71qh9xwaP-L.jpg?v=1656514911"},"aspect_ratio":1.0,"height":1001,"media_type":"image","src":"\/\/auspowers.com\/cdn\/shop\/products\/71qh9xwaP-L.jpg?v=1656514911","width":1001},{"alt":"[Australia - 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This allows the\ntrolley can quickly start can quickly kill the car.The driver can operate at\n0-99% of the duty cycle of the PWM modulation, the motor driving voltage can\nbe obtained sufficiently.Specifications:Condition:100% Brand NewMotor forward:\nDIR = 1 PWM = PWMMotor reversal: DIR = 0 PWM = PWMParking brake: DIR = X PWM =\n0 (X is an arbitrary state)Motor and power connectionsPOWER connected to the\npositive power supply, GND power supply is negative. Two motors were connected\nMOTOR1, MOTOR2Rated voltage: 3v-36v (can be customized according to the\nuser)Rated Current: 10APeak current: 30ASize:\nApprox.10858mm\/4.32.3in(LW)Package List:1Dual Motor driver module board\nH-Bridge DC MOSFET IRF3205 3-36V 10A\u003c\/p\u003e \n\n\u003ch3\u003eProduct Features\u003c\/h3\u003e\n \u003cul class=\"a\"\u003e\n \u003cli\u003eDC MOTOR DRIVE BOARD: 10A dual-channel motor drive board, stepping DC motor with brake H-bridge balance car drive module, DC motor high-current full-bridge drive specially designed for robot competitions.\u003c\/li\u003e\n \u003cli\u003ePWM MODULATION: It can work at 0%-99% PWM modulation duty cycle (note that it cannot be 100%), so that the motor can get enough driving voltage. When the motor is connected, it can not be directly given high level, and it should not be left floating. The best frequency is above 400HZ Frequency: 400HZ-20KHZ!\u003c\/li\u003e\n \u003cli\u003eN-CHANNEL IRF3205 MOSFET: It can quickly open the MOSFET channel, improve the acceleration curvature of the motor, and also quickly brake the motor. This allows the car to start and kill the car quickly.\u003c\/li\u003e\n \u003cli\u003eTEST: 1. Determine the PWM signal. Before testing the drive board, please use an oscilloscope or a multimeter to determine whether the PWM signal you provide is accurate (set PWM to 0 when the main program is executed). 2. Do not connect the motor first, and all other signal power supplies are normal. Use a multimeter or oscilloscope to test the waveform between the motors. 3. Connect the motor for testing.\u003c\/li\u003e\n \u003cli\u003eNOTE: For customers who use arduino STM32 microcontrollers, please note that because these microcontrollers take a long time to initialize, it is necessary to add a 2K pull-down resistor to PWM1 and PWM2 respectively.\u003c\/li\u003e\n \u003c\/ul\u003e\n\n"}

Dual DC Motor Driver Module Board, H-Bridge DC 3~36V 10A Peak 30A Speed Control PWM Module, MOSFET IRF3205 Quick Response Control Board for Arduino Robot Smart Car

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Dual DC Motor Driver Module Board, H-Bridge DC 3~36V 10A Peak 30A Speed Control PWM Module, MOSFET IRF3205 Quick Response Control Board for Arduino Robot Smart Car

Features:MOSFET driver chip comes with hardware brake function and power feedback.N-channel MOSFET IRF3205 MOSFET, use two dedicated half-bridge driver chip on the top tube using the boostrap capacitor, so that the tube has enough drive voltage of the MOSFET channel can be opened quickly, improve motor acceleration curvature, but also quickly for the motor brake. This allows the trolley can quickly start can quickly kill the car.The driver can operate at 0-99% of the duty cycle of the PWM modulation, the motor driving voltage can be obtained sufficiently.Specifications:Condition:100% Brand NewMotor forward: DIR = 1 PWM = PWMMotor reversal: DIR = 0 PWM = PWMParking brake: DIR = X PWM = 0 (X is an arbitrary state)Motor and power connectionsPOWER connected to the positive power supply, GND power supply is negative. Two motors were connected MOTOR1, MOTOR2Rated voltage: 3v-36v (can be customized according to the user)Rated Current: 10APeak current: 30ASize: Approx.10858mm/4.32.3in(LW)Package List:1Dual Motor driver module board H-Bridge DC MOSFET IRF3205 3-36V 10A

Product Features

  • DC MOTOR DRIVE BOARD: 10A dual-channel motor drive board, stepping DC motor with brake H-bridge balance car drive module, DC motor high-current full-bridge drive specially designed for robot competitions.
  • PWM MODULATION: It can work at 0%-99% PWM modulation duty cycle (note that it cannot be 100%), so that the motor can get enough driving voltage. When the motor is connected, it can not be directly given high level, and it should not be left floating. The best frequency is above 400HZ Frequency: 400HZ-20KHZ!
  • N-CHANNEL IRF3205 MOSFET: It can quickly open the MOSFET channel, improve the acceleration curvature of the motor, and also quickly brake the motor. This allows the car to start and kill the car quickly.
  • TEST: 1. Determine the PWM signal. Before testing the drive board, please use an oscilloscope or a multimeter to determine whether the PWM signal you provide is accurate (set PWM to 0 when the main program is executed). 2. Do not connect the motor first, and all other signal power supplies are normal. Use a multimeter or oscilloscope to test the waveform between the motors. 3. Connect the motor for testing.
  • NOTE: For customers who use arduino STM32 microcontrollers, please note that because these microcontrollers take a long time to initialize, it is necessary to add a 2K pull-down resistor to PWM1 and PWM2 respectively.