---
product_id: 148590691
title: "DROK DC Motor Driver, L298 Dual H Bridge Motor Controller, 6.5V-27V, 7A, 160W, Red"
brand: "drok"
price: "FREE"
currency: GBP
in_stock: true
reviews_count: 5
url: https://www.desertcart.co.uk/products/148590691-drok-dc-motor-driver-l298-dual-h-bridge-motor-controller
store_origin: GB
region: United Kingdom
---

# 6.5V-27V wide voltage range 7A rated output current per port Dual H-Bridge for 2 motors DROK DC Motor Driver, L298 Dual H Bridge Motor Controller, 6.5V-27V, 7A, 160W, Red

**Brand:** drok
**Price:** FREE
**Availability:** ✅ In Stock

## Summary

> 🚀 Drive Innovation Forward with Power and Precision!

## Quick Answers

- **What is this?** DROK DC Motor Driver, L298 Dual H Bridge Motor Controller, 6.5V-27V, 7A, 160W, Red by drok
- **How much does it cost?** FREE with free shipping
- **Is it available?** Yes, in stock and ready to ship
- **Where can I buy it?** [www.desertcart.co.uk](https://www.desertcart.co.uk/products/148590691-drok-dc-motor-driver-l298-dual-h-bridge-motor-controller)

## Best For

- drok enthusiasts

## Why This Product

- Trusted drok brand quality
- Free international shipping included
- Worldwide delivery with tracking
- 15-day hassle-free returns

## Key Features

- • **Compact Yet Robust Design:** Small 55x55x16mm footprint with secure mounting options—engineered for seamless integration into your next innovation.
- • **Built-In Under Voltage Protection:** Safeguards your investment by preventing damage from sudden current spikes or low voltage conditions.
- • **Precision Speed at Your Fingertips:** PWM speed control with up to 10kHz frequency lets you fine-tune motor speed from 0 to 100% effortlessly.
- • **Dual Motor Control, Double the Impact:** Simultaneously drive two DC motors with independent forward/reverse rotation for dynamic, complex applications.
- • **Power Your Projects with Versatile Voltage:** Supports a broad 6.5V to 27V input range, perfect for 12V or 24V systems—flexibility that keeps you ahead.

## Overview

The DROK DC Motor Driver L298 Dual H Bridge is a compact, high-performance motor controller designed for professional-grade projects. It supports a wide input voltage range of 6.5V to 27V, delivers a robust 7A output current per motor port, and can handle up to 160W total power. Featuring dual H-bridge architecture, it independently controls two DC motors with forward and reverse rotation capabilities. PWM input enables precise speed regulation up to 10kHz, while built-in under voltage protection ensures durability and reliability. Ideal for millennial professionals seeking efficient, versatile motor control solutions in compact form.

## Description

Parameters: 1. Power supply voltage 6.5V-27V, the power cannot be reversed or over 27V, or may burn the module, it is recommended connecting in series 15A fuse in the power input. 2. Dual motor interface, each rated output current 7A, peak current 50A, the motor interface cannot short-circuit, it is recommended connecting in series 15A fuse. 3. The enable signal and forward and reverse control signal control voltage 3-6.5V. 4. Enable signal terminal (ENA) input PWM can regulate speed, PWM frequency range 0-10KHZ, PWM minimum pulse width 10us. 5. Product dimension: 55x55x16mm 6. Installation hole diameter: 3mm, noted to prevent short circuit when install the reverse side, you can add insulation pad or copper column to raise the circuit board Parameters matched: Motors with rated voltage 24V, identification of rated power 115W or below, and motors with identification of rated current 7A can full work for a long time. Note: 1. Drive power cannot be reversed, it is recommended connecting in series 15A fuse in the power interface, the voltage should be between 6.5 - 27V. If over voltage, it may burn the drive module if power on. 2. It is recommended that the rated output current of the power supply be more than 2 times, in case the power supply voltage cannot reach the required input voltage of the motor when it is started, which may cause pause of the drive module for under voltage protection. 3. Motor interface cannot be short-circuit, or may burn the drive module, it is recommended connecting in series 10A fuse in the motor interface. Package Including: 1x DC Motor Driver Board

Review: Je mets l'accent sur la puissance de sortie car celle proposée par exemple par les modules L298 limitent la sortie à 2A alors que là avec 7A on fait face à la plupart des applications. Pilotage indépendant de 2 moteurs dans les 2 sens avec entrées PWM pour la variation de vitesse. Je l'emploie avec un Arduino UNO. Le variation de vitesse va de 0 à 100% (je dis bien 100% plus de découpage mais tension maximale). Pour la sécurité en cas de coupure d'alimentation alors que les moteurs sont à pleine vitesse le fabriquant conseille l'utilisation d'un relais pour protéger le dispositif de l'effet dynamo des moteurs qui induirait des tensions inverses sur les transistors à effet de champs (puisque plus alimenté par la coupure d'alimentation), moi j'ai mis un pont redresseur sur le moteur (entrées alternatives sur les bornes du moteur, la sortie plus vers le plus de l'alimentation et la sortie moins vers ... le moins (vous l'aurez deviné). La tension inverse reçue par les transistors est au maximum de 0,6V ce qu'ils supportent sans problème.
Review: The chip didn't come in a box so the I/O pins got bent during the shipping. Aside from that, instructions are clear and got it to work within half an hour. I'm so happy with my purchase that I'm buying another one.

## Features

- DROK DC motor driver input voltage range is DC 6.5V-27V, can be input DC 12V or 24V, rated output current of each port is 7A, total output power is 160W.
- STRONG DRIVE: the motor controller board adopts dual H bridge, can drive two DC motors at the same time.
- FORWARD and REVSERSELY ROTATE: the IN1, IN2/IN3, IN4 port can control forward or reverse motor rotation.
- PWM SPEED CONTROL: enable signal terminal (ENA) input PWM can regulate speed, PWM frequency range 0-10KHZ.
- UNDER VOLTAGE PROTECTION: the motor driver module is with under voltage protection to prevent instantaneous large current from damaging the module.

## Technical Specifications

| Specification | Value |
|---------------|-------|
| ASIN | B06XGD5SCB |
| Best Sellers Rank | 238,373 in Business, Industry & Science ( See Top 100 in Business, Industry & Science ) 1,260 in Motor Speed Controllers |
| Brand | DROK |
| Colour | Red |
| Customer Reviews | 4.4 4.4 out of 5 stars (185) |
| Item Dimensions L x W x H | 5.5L x 5.5W x 1.6H centimetres |
| Manufacturer | DROK |
| Material | Metal |
| UPC | 701822755689 |
| Voltage | 12 Volts |

## Product Details

- **Brand:** DROK
- **Colour:** Red
- **Material:** Metal
- **Product dimensions:** 5.5L x 5.5W x 1.6H centimetres
- **Voltage:** 12 Volts

## Images

![DROK DC Motor Driver, L298 Dual H Bridge Motor Controller, 6.5V-27V, 7A, 160W, Red - Image 1](https://m.media-amazon.com/images/I/71R7MC8WHsL.jpg)
![DROK DC Motor Driver, L298 Dual H Bridge Motor Controller, 6.5V-27V, 7A, 160W, Red - Image 2](https://m.media-amazon.com/images/I/71mdTEIyb-L.jpg)
![DROK DC Motor Driver, L298 Dual H Bridge Motor Controller, 6.5V-27V, 7A, 160W, Red - Image 3](https://m.media-amazon.com/images/I/71hTAG5XEnL.jpg)
![DROK DC Motor Driver, L298 Dual H Bridge Motor Controller, 6.5V-27V, 7A, 160W, Red - Image 4](https://m.media-amazon.com/images/I/81xcM3GiBoL.jpg)
![DROK DC Motor Driver, L298 Dual H Bridge Motor Controller, 6.5V-27V, 7A, 160W, Red - Image 5](https://m.media-amazon.com/images/I/61VIH9+wVgL.jpg)

## Available Options

This product comes in different **Style Name** options.

## Questions & Answers

**Q: Can this be used to slowly increase the voltage in a power wheels type car? Wanting to increase voltage over time from 12-24v?**
A: You can increase the average voltage overtime. Basically you need a 24V supply. And then you can pwm from 50% to 100% of whatever the range is.

**Q: The manufacturer says it needs, requires, must have a heat sink.  so why did anyone manufacture it without a component that it absolutely needs???**
A: I have used this board with and without heatsinks to drive NEMA 23 stepper motors at 1.5-2A, and haven't any significant heating in either case.

**Q: How do i use digital high & low with no pmw, i left ena disconnected no luck. help!**
A: Connect to the PWM pin and drive it high for max speed. Low for no rotation

**Q: Can you recommend a pwm motor controller board for 12v x 10amp motor with an input signal from 0 to 55 mv with 100% duty cycle at 25 mv?**
A: 0-55mV? Thats not even considered a signal by most any controller for PWM.

## Customer Reviews

### ⭐⭐⭐⭐⭐ Review
*by C***L on 19 September 2020*

Je mets l'accent sur la puissance de sortie car celle proposée par exemple par les modules L298 limitent la sortie à 2A alors que là avec 7A on fait face à la plupart des applications. Pilotage indépendant de 2 moteurs dans les 2 sens avec entrées PWM pour la variation de vitesse. Je l'emploie avec un Arduino UNO. Le variation de vitesse va de 0 à 100% (je dis bien 100% plus de découpage mais tension maximale). Pour la sécurité en cas de coupure d'alimentation alors que les moteurs sont à pleine vitesse le fabriquant conseille l'utilisation d'un relais pour protéger le dispositif de l'effet dynamo des moteurs qui induirait des tensions inverses sur les transistors à effet de champs (puisque plus alimenté par la coupure d'alimentation), moi j'ai mis un pont redresseur sur le moteur (entrées alternatives sur les bornes du moteur, la sortie plus vers le plus de l'alimentation et la sortie moins vers ... le moins (vous l'aurez deviné). La tension inverse reçue par les transistors est au maximum de 0,6V ce qu'ils supportent sans problème.

### ⭐⭐⭐⭐⭐ Review
*by J***L on 25 February 2023*

The chip didn't come in a box so the I/O pins got bent during the shipping. Aside from that, instructions are clear and got it to work within half an hour. I'm so happy with my purchase that I'm buying another one.

### ⭐⭐⭐⭐⭐ Review
*by G***N on 16 August 2018*

This unit is perfect for my application with a couple of 2-3 amp DC motors and worth far more than the cost. I require frequent direction changes and large starting current spikes, but the board stays cool and doesn't need heat sinks. The connectors have screw terminals and removable snap lock connectors which are excellent. The documentation looks great on glossy paper but needs some clarification. Here's a few tips and a Arduino test setup: 1) This double H-bridge can run two motors independently of each other. 2) Each motor can run forward, reverse, brake, full speed forward, and full speed reverse. 3) Categories of inputs (you provide these) to the board are: a) Main power (up to 15 amps) that is used to drive both motors. Read the instructions around voltages, current, peak current, fuses, etc... b) Control logic for Motor A c) Control logic for Motor B d) 5v power you provide into the board for it's logic processing, etc.. with very little current draw. 4) For the main power input, you need a capable power supply. I'm using a 10amp battery charger. 5) You must feed 5v into the board. The board has 5v (and ground) pins for each motor, but you only need to provide 5v and ground on one set of pins. 6) Each motor needs three 5v logic inputs. For motor #1 they are labeled IN1, IN2, and ENA1. 7) The two pins labeled IN1 and IN2 are fed from any two GPIO(Arduino) pins with HIGH or LOW to control the mode of the motor such as forward, reverse and brake. See the control logic table in the instructions. 8) The pin labeled ENA1 REQUIRES!!! a PWM output from Arudino. You MUST NOT apply a steady voltage from something like a potentiometer or DAC output. 9) Here's a basic test setup for Arduino UNO if you need it: Connect 5v and ground to H-bridge, Connect main power Connect motor(s), you just need motor A for this test Connect Ardunio pin2 -> H-bridge pin IN1 Connect Ardunio pin3 -> H-bridge pin ENA Connect Ardunio pin4 -> H-bridge pin IN2 Create a test sketch as follows: void setup() { pinMode(2, OUTPUT); pinMode(3, OUTPUT); pinMode(4, OUTPUT); } void loop() { digitalWrite(2, LOW); //forward digitalWrite(4, HIGH); //forward analogWrite(3, 178); //pin 3 is PWM, 178/255 = (about) 70% speed. Max is 255. delay(1500); digitalWrite(2, HIGH); //reverse digitalWrite(4, LOW); //reverse analogWrite(3, 76); //pin 3 is PWM, 76/255 = (about) 30% speed. Max is 255. delay(3000); } Hope this helps get you started.

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*Product available on Desertcart United Kingdom*
*Store origin: GB*
*Last updated: 2026-05-30*