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Motor Speed Controller Module 35V DC/220V AC - ThinkRobotics.in Motor Speed Controller Module 35V DC/220V AC - ThinkRobotics.in
90W 5A / 200W PWM Motor Speed Controller Module from ₹ 199.99 ₹ 289.99
PWM Module to control motors and led lights. It has a potentiometer to control PWM signals. Can be used for  electric furnace, water heater, lamps, small motor, electric iron etc. Details 90W variant: Operating Voltage: DC 3V-35V Control Power: 90W (maximum) Quiescent Current: 0.015A (standby) PWM Duty Cycle: 1% -100% PWM Frequency: 10khz Size: 24*30mm/0.94*1.18" Details 2000W variant: Input voltage: 220V. Maximum power: 2000W. Adjustable voltage: 50-220V AC. Material: plastic, metal. Size: 4.8cm x 5.5cm x 2.7cm. PWM Duty Cycle: 1% -100% PWM Frequency: 10khz Specifications Tutorial
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DRV8833 2 Channel DC Motor Driver Module - ThinkRobotics.in DRV8833 2 Channel DC Motor Driver Module - ThinkRobotics.in
DRV8833 2 Channel DC Motor Driver Module ₹ 99.99 ₹ 330.00
DRV8833 is a dual H-bridge motor driver IC that can be used for bidirectional control of two brushed DC motors at 2.7 V to 10.8 V. It can supply up to about 1.2 A per channel continuously and can tolerate peak currents up to 2 A per channel for a few seconds, making it an ideal driver for small motors that run on relatively low voltages. The board ships populated with SMD components, including the DRV8833, and adds a FET for reverse battery protection. This board is very similar to our DRV8835 dual motor driver carrier in operating voltage range and continuous current rating, but the DRV8835 has a lower minimum operating voltage, offers an extra control interface mode, and is 0.1″ smaller in each dimension; we also carry a DRV8835 dual motor driver shield that is easy to use with an Arduino. The DRV8833 has a higher peak current rating (2 A per channel vs 1.5 A), optional built-in current-limiting, and no need for externally supplied logic voltage. For a smaller, lower-cost, single-channel alternative to this driver, please consider our DRV8838 carrier, which offers a similar operating voltage range and current capabilities. For higher-voltage alternatives to this driver, consider our A4990 and DRV8801 motor driver carriers. Note - The color and the layout of the board may differ, but it is the same Motor Driver Module. Features Dual-H-bridge motor driver: can drive two DC motors or one bipolar stepper motor Operating voltage: 2.7‌‌ V to 10.8 V Output current: 1.2 A continuous (2 A peak) per motor Motor outputs can be paralleled to deliver 2.4 A continuous (4 A peak) to a single motor Inputs are 3V- and 5V-compatible Under-voltage lockout and protection against over-current and over-temperature Reverse-voltage protection circuit Current limiting can be enabled by adding sense resistors (not included) Specifications Resources Datasheet Sample Code
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Reprap Stepper Driver A4988 - ThinkRobotics.in Reprap Stepper Driver A4988 - ThinkRobotics.in
Reprap Stepper Driver A4988 ₹ 89.99 ₹ 190.00
This product is a breakout board for A4988 DMOS Micro stepping Driver with Translator and Over current Protection.This stepper motor driver lets you to operate bipolar stepper motors in full-, half-, quarter-, eighth-, and sixteenth-step modes, with an output drive capacity of up to 35 V and 2A Maximum output current is a Simple step and direction control interface five different step resolutions: full-step, half-step, quarter-step, eighth-step, and sixteenth-step Adjustable current control lets you set the maximum current output with a potentiometer, which lets you use voltages above your stepper motor¡¯s rated voltage to achieve higher step ratesIntelligent chopping control that automatically selects the correct current decay mode (fast decay or slow decay)Over-temperature thermal shutdown, under-voltage lockout, and crossover-current protection Short-to-ground and shorted-load protection. Details: Dimensions:20 x 15 x 11 mm Heatsink size:9 x 9 x 5 mm Color:Green Includes: 1x Driver Specifications Resources Datasheet Library Sample Code Tutorial
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L298N DC Stepper Motor Driving Module 5V 2A For Arduino - ThinkRobotics.in L298N DC Stepper Motor Driving Module 5V 2A For Arduino - ThinkRobotics.in
L298N DC Stepper Motor Driving Module 5V 2A ₹ 123.99 ₹ 250.00
 Details: Double H bridge unit  Chip: L298N (new ST)  Logic voltage: 5 V  Unit voltage: 5 V-35 V  Logic: 0mA-36mA  Transmission current: 2 A (Maximum single bridge) Maximum  power: 25 W  Size: 43x43x26mm  L298N as main chip, production of ST corporation. Under heat, excellent anti-interference performance. High operating power at 46 v, large current can reach 3A MAX and direct current is 2A, power at 25 w.  It can drive a stepper motor of 2 phases, a stepper motor of 4 phases or two DC motors.  Built-in 78M05 to drive power however when over 12V drive power please use the external 5 v power as power supply  Large capacity filter capacitance, reflow protection diode, more stable and reliable. Specifications Resources Datasheet Library Sample Code Tutorial  
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Pulse Modulation 13KHz PWM DC Motor Adjuster - ThinkRobotics.in Pulse Modulation 13KHz PWM DC Motor Adjuster - ThinkRobotics.in
Pulse Modulation 13KHz PWM DC Motor Adjuster ₹ 349.99 ₹ 499.00
Details: Model: CCMHC Working Voltage: DC 12V - DC 40V. Control Power:0.01 - 400W. Current: Rated 8A, Max 10A. Static Current:0.02 A ( Standby ). PWM Duty Cycle:10% -100%. PWM Frequency:13 KHz.Material: Plastic, metal. Size (L*W*H): 6cm x 5.5cm x 2.8cm/2.36"x 2.16"x1.10"(approx) 4 hole diameter: 3 mm(approx) Features: Control the speed of a DC motor with this controller. High efficiency, high torque, low heat generating. With reverse polarity protection, high current protection. Specifications Tutorial  
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ULN2003 28BYJ-48 Stepper Motor Driver Board Module - ThinkRobotics.in ULN2003 28BYJ-48 Stepper Motor Driver Board Module - ThinkRobotics.in
ULN2003 Stepper Motor Driver Board Module (5V - 12V) ₹ 75.99 ₹ 145.00
The ULN2003 is high-voltage, high-current Darlington arrays each containing seven open collector Darlington pairs with common emitters. Each channel is rated at 500 mA and can withstand peak currents of 600 mA. Suppression diodes are included for inductive load driving and the inputs are pinned opposite the outputs to simplify board layout. The versions interface to all common logic families: ULN2003 (5 V TTL, CMOS). These versatile devices are useful for driving a wide range of loads including solenoids, relay DC motors, LED display filament lamps, thermal print heads and high-power buffers. The 2003A  are supplied in a 16-pin DIP package with a copper lead frame to reduce thermal resistance.  Key Features Seven Darlingtons per package Output current 500 mA per driver (600 mA peak) Output voltage 50 V Integrated suppression diodes for inductive loads Outputs can be paralleled for higher current TTL/CMOS/PMOS/DTL compatible inputs Input pins placed opposite to output pins to simplify layout Specifications Resources Datasheet Library Sample Code Tutorial
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Dual H Bridge Max 20W 2A  Bridge For Arduino L298D - ThinkRobotics.in Dual H Bridge Max 20W 2A  Bridge For Arduino L298D - ThinkRobotics.in
L298D Dual H Bridge 20W 2A Motor Driver Module For Arduino ₹ 206.99 ₹ 400.00
Details: Double bridge unit H Chip L298N (new ST) logical voltage 5 V Drive voltage 5 V-35 V Logic current 0mA-36mA Drive current 2A (maximum single bridge) Storage temperature-20 to + 135 Maximum power 25 W Weight 30g Size: 43 * 43 * 27mm   Using L298N made by ST company as the control chip, the module has such features as strong driving. Capacity, low calorific value and strong anti-interference capacity. This module can use built-in 78M05 for electrical work through a part of driving power supply. but to avoid the damage From the voltage stabilizer chip, use an external 5 V logic source When using more than 12 V driving voltage. Using the large capacity filter capacitor, this module can follow the current to protect the diodes, and improve the reliability  This module is integrated with a built-in 5 V power. when the drive voltage is 7 V-35 V,  You can enable the 5 V logic power supply, after the power supply, do not enter  Voltage on the interface + 5 V power supply, but you can carry the 5 V for external use.  When ENA enable IN1 IN2 control OUT1 OUT2.  When ENB allow IN3 IN4 control OUT3 OUT4. Specifications Resources Datasheet
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DRV8825 High Current Stepper Motor Driver DRV8825 High Current Stepper Motor Driver
DRV8825 High Current Stepper Motor Driver ₹ 123.99 ₹ 149.99
This breakout board for TI’s DRV8825 microstepping bipolar stepper motor driver features adjustable current limiting, over-current and over-temperature protection, and six microstep resolutions (down to 1/32-step). It operates from 8.2 V to 45 V and can deliver up to approximately 1.5 A per phase without a heat sink or forced air flow (rated for up to 2.2 A per coil with sufficient additional cooling). The driver has a pinout and interface that are nearly identical to those of our A4988 stepper motor driver carriers, so it can be used as a higher-performance drop-in replacement for those boards in many applications. This board ships with soldered 0.1″ male header pins and heat sink.   Minimum operating voltage: 8.2 V Maximum operating voltage: 45 V Continuous current per phase: 1.5 A2 Maximum current per phase: 2.2 A3 Minimum logic voltage: 2.5 V4 Maximum logic voltage: 5.25 V4 Microstep resolutions: full, 1/2, 1/4, 1/8, 1/16, and 1/32
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PCA9685 16-Channel PWM Driver - ThinkRobotics.in PCA9685 16-Channel PWM Driver - ThinkRobotics.in
PCA9685 16-Channel PWM Driver ₹ 349.99 ₹ 499.00
The PCA9685 is a 16-channel I2C-bus controlled LED controller optimized for Red/Green/Blue/Amber (RGBA) color backlighting applications. Each LED output has individual 12-bit resolution (4096 steps) PWM controller with a fixed frequency. The controller operates at a programmable frequency from a typical 24 Hz to 1526 Hz with a duty cycle that is adjustable from 0% to 100% so the LED can be set to output a specific brightness. All outputs are set to the same PWM frequency.With the PCA9685 as the master chip, the 16-channel 12-bit PWM Servo Driver only needs 2 pins to control 16 servos, thus greatly reducing the occupant I/Os. Moreover, it can be connected to 62 driver boards at most in a cascade way, which means it will be able to control 992 servos in total. Features: Contains an I2C-controlled PWM driver with a built-in clock. It means, unlike the TLC5940 family, you do not need to continuously send it signals tying up your microcontroller; it's completely free running! 5V compliant, which means you can control it from a 3.3V microcontroller and still safely drive up to 6V outputs, which is good when you want to control white or blue LEDs with a 3.4V+ forward voltage Supports using only two pins to control 16 free-running PWM outputs – you can even chain up 62 breakouts to control up to 992 PWM outputs. 3 pin connectors in 4 groups, so you can plug in 16 servos at one time (Servo plugs are slightly wider than 0.1" so you can only stack 4 adjacent ones on 0.1"-hole female headers. 12-bit resolution for each output - for servos, that means about 4us resolution at an update rate of 60Hz. Size: 62 x 26 mm Specifications Resources Datasheet Library Sample Code Tutorial
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L298P For Arduino Dual Channel DC Motor Driver Shield - ThinkRobotics.in L298P For Arduino Dual Channel DC Motor Driver Shield - ThinkRobotics.in
L298P Arduino Dual Channel DC Motor Driver Shield ₹ 765.99 ₹ 960.00
Features:The Motor Shield is based on the L298 , which is a dual full-bridge driver designed to drive inductive loads such as relays, solenoids, DC and stepping motors. It lets you drive two DC motors with your board, controlling the speed and direction of each one independently. You can also measure the motor current absorption of each motor, among other features.Operating Voltage 5V to 12VMotor controller L298P, Drives 2 DC motors or 1 stepper motorMax current 2A per channel or 4A max (with external power supply)Current sensing 1.65V/AFree running stop and brake function Specifications Resources Datasheet Library Sample Code Tutorial
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L293D IC Motor Driver - ThinkRobotics.in L293D IC Motor Driver - ThinkRobotics.in
L293D IC Motor Driver ₹ 29.99 ₹ 40.00
L293D is a dual H-bridge motor driver integrated circuit (IC). Motor drivers act as current amplifiers since they take a low-current control signal and provide a higher-current signal. This higher current signal is used to drive the motors. L293D contains two inbuilt H-bridge driver circuits. In its common mode of operation, two DC motors can be driven simultaneously, both in forward and reverse direction. The motor operations of two motors can be controlled by input logic at pins 2 & 7 and 10 & 15. Input logic 00 or 11 will stop the corresponding motor. Logic 01 and 10 will rotate it in clockwise and anticlockwise directions, respectively. Enable pins 1 and 9 (corresponding to the two motors) must be high for motors to start operating. When an enable input is high, the associated driver gets enabled. As a result, the outputs become active and work in phase with their inputs. Similarly, when the enable input is low, that driver is disabled, and their outputs are off and in the high-impedance state. Specifications Resources Datasheet Library Sample Code Tutorial
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TB6612 Mosfet Stepper Motor PCA9685 PWM Servo Arduino Driver Shield - ThinkRobotics.in TB6612 Mosfet Stepper Motor PCA9685 PWM Servo Arduino Driver Shield - ThinkRobotics.in
2 Channel Motor TB6612FNG and 16 Channel (PCA9685) PWM Servo Shield for Arduino ₹ 745.00 ₹ 895.00
Instead of a L293D  driver, we now have the TB6612 MOSFET driver: with 1.2A per channel and 3A peak current capability. It also has much lower voltage drops across the motor so you get more torque out of your batteries, and there are built-in flyback diodes as well.Instead of using a latch and the for Arduino's PWM pins, we have a fully-dedicated PWM driver chip onboard. This chip handles all the motor and speed controls over I2C. Only two pins (SDA & SCL) are required to drive the multiple motors, and since it's I2C you can also connect any other I2C devices or shields to the same pins. This also makes it drop-in compatible with any for Arduino.Completely stackable design: 5 address-select pins means up to 32 stackable shields: that's 64 steppers or 128 DC motors! What on earth could you do with that many steppers? I have no idea but if you come up with something send us a photo because that would be a pretty glorious project.Tested compatible with for Arduino UNO, for Leonardo, for ADK/Mega R3, Due, Diecimila & Duemilanove. Works with Mega/ADK R2 and earlier with 2 wire jumpers. Resources Datasheet Library Sample Code Tutorial  
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MX1508 L298N DC Motor Driver Module - ThinkRobotics.in MX1508 L298N DC Motor Driver Module - ThinkRobotics.in
MX1508 DC Motor Driver Module PWM Speed Dual H-Bridge Stepper Motor (L298N mini) ₹ 54.99 ₹ 225.00
Details: Dual H-bridge motor driver, can drive two DC motors or a 4-wire two-phase stepper motor. The module supply voltage 2V-10V. Signal input voltage 1.8-7V. Single Operating current 1.5A, peak current up to 2.5A, low standby current (less than 0.1uA). Built-in common conduction circuit, when the input pin is left floating, the motor does not malfunction. Built-in thermal protection circuit with hysteresis effects (TSD), without worrying about motor stall. Product Size: 24.7 * 21 * 5mm (length, width, height), ultra-small size. The mounting hole diameter: 2 mm. Motor drive module is ideal for use in battery-powered smart car, toy cars, robots. Supply voltage 2V ~ 10V, can drive two DC motors or a 4-wire 2-phase stepper motors ,can achieve forward rotation or reverse rotation, it is possible to adjust the rotation speed. Each can provide continuous current of 1.5A, peak current up to 2.5A, thermal protection and can be automatically restored.Use of imported original chip, built-in low on-resistance MOS switch, minimal heat, no heat sink, small size, low power consumption, is ideal for battery powered. (L298N internal transistor switch, low efficiency, high fever, need to add heat sink, bulky, L298N very easy to burn). Dual 1.5A * 2, the peak current to be 2.5A, built-in thermal protection circuit, do not be afraid motor stall burned, automatic recovery after the temperature dropped. Small size, light weight, 0 standby current, is the ideal choice for your car model. Specifications Resources Library Sample Code Tutorial  
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BTS7960B Stepper Motor Driver H-Bridge - ThinkRobotics.in BTS7960B Stepper Motor Driver H-Bridge - ThinkRobotics.in
BTS7960B Motor Driver H-Bridge ₹ 739.99 ₹ 900.00
  Details: Double BTS7960 large current (43 A) H bridge driver; 5V isolate with MCU, and effectively protect MCU; 5V power indicator on board; Just need four lines from MCU to driver module (GND. 5V. PWM1. PWM2); Reverse the motor forward, two PWM input frequency up to 25kHZ; Two heat flow passing through an error signal output; Isolated chip 5V power supply (can be shared with the MCU 5V), can also use the on-board 5V supply; Supply voltage 5.5V to 27V This driver uses Infineon chips BTS7960 composed of high-power drive full H-bridge driver module with thermal over-current protection. Double BTS7960 H-bridge driver circuit, with a strong drive and braking, effectively isolating the microcontroller and motor driver! High-current 43A Specifications Resources Datasheet Tutorial
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TB6612FNG - Dual Motor Driver Carrier - ThinkRobotics.in TB6612FNG - Dual Motor Driver Carrier - ThinkRobotics.in
TB6612FNG Wemos D1 Mini I2C Dual Motor Driver Shield ₹ 199.99 ₹ 399.00
The TB6612FNG (308k pdf) is a great dual motor driver that is perfect for interfacing two small DC motors such as our micro metal gearmotors to a microcontroller, and it can also be used to control a single bipolar stepper motor. The MOSFET-based H-bridges are much more efficient than the BJT-based H-bridges used in older drivers such as the L298N and Sanyo’s LB1836M, which allows more current to be delivered to the motors and less to be drawn from the logic supply (the LB1836 still has the TB6612 beat for really low-voltage applications). Our little breakout board gives you direct access to all of the features of the TB6612FNG and adds power supply capacitors and reverse battery protection on the motor supply (note: there is no reverse protection on the Vcc connection). In a typical application, power connections are made on one side of the board and control connections are made on the other. All of the control inputs are internally pulled low. Each of the two motor channels has two direction control pins and a speed control pin that accepts a PWM input with a frequency of up to 100 kHz. The STBY pin must be driven high to take the driver out of standby mode.  The distance between the header rows on the PCB is 0.1" smaller than a standard 0.6" DIP package, but the pin spacing allows it to conveniently fit in 0.1" breadboards and perfboards. For a more advanced motor controller based on this driver, please consider the qik 2s9v1 dual serial motor controller. For a robot controller based on this driver, please consider the Baby Orangutan, Orangutan SV-328, Orangutan SVP-1284, and 3pi robot, which connect the TB6612 to a user-programmable AVR microcontroller.  Features  Dual-H-bridge motor driver: can drive two DC motors or one bipolar stepper motor Recommended motor voltage (VMOT): 4.5 V to 13.5 V (can operate down to 2.5 V with derated performance) Logic voltage (VCC): 2.7 V to 5.5 V Output current maximum: 3 A per channel Output current continuous: 1 A per channel (can be paralleled to deliver 2 A continuous) Maximum PWM frequency: 100 kHz Built-in thermal shutdown circuit Filtering capacitors on both supply lines Reverse-power protection on the motor supply Specifications Resources Datasheet Library Sample Code Tutorial

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