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⚙️ Dual-channel power, precision control—drive your innovation forward!
The Cytron Dual Channel 10A DC Motor Driver MDD10A is a robust, solid-state controller designed for driving two brushed DC motors with up to 10A continuous current per channel. Supporting motor voltages from 5V to 30V and PWM frequencies up to 20KHz, it offers efficient, bi-directional motor control with no mechanical relay wear and no heat sink required, making it ideal for professional-grade robotics and automation projects.
| Asin | B07CW34YRB |
| Best Sellers Rank | #202,234 in Tools & Home Improvement (See Top 100 in Tools & Home Improvement) #112 in Electrical Motor Controls |
| Brand Name | Makermotor |
| Customer Reviews | 4.7 4.7 out of 5 stars (30) 4.7 out of 5 stars |
| Item Weight | 4 ounces |
| Manufacturer | Cytron |
| Material Type | Copper |
| Part Number | MDD10A |
| Voltage | 30 volts |
User
Cytron Power
Bought three in total. All work as advertised and are flawless. Love the board quality. Powers the motors very well…too well!Will buy more Cytron products in the future
User
Good quality, really happy with this driver
Got this for a mini Mars-style recon rover I’m making. Buying cheapo no name parts is always a gamble but Cytron seems to be more of an established brand than the usual bargain bin things you can find. The driver is easy enough to use, and has a really cool testing feature for both backward and forward operation. You can tell the solder joints and screw terminals were made with good materials. I am driving 2x24V motors at 3 amps each with lots of braking, switching, and acceleration involved and this little board has held up wonderfully. Definitely worth the extra to get something like this for your project.
User
ROV project: Worked great for brushed bilge pump motor.
Used two of these boards for an ROV project that are wired to four bilge pump (brushed) motors as thrusters. Controlled via GPIO pins on a Raspberry Pi. Aquired four more for larger ROV project.
User
Unit fried after a minute of use.
In my installation, it is possible that the motor wiring was generating some EMI (noise) back to the input signals because it was working ok for a bit, then when I switched direction, it created this tremendous "chatter" and then ceased to work. I know H-bridge drivers like this are supposed to have built in delay functions that prevent the bridge from short circuiting when changing direction, but I wonder if the direction is changed rapidly, if this delay circuit gets "confused" and short circuits anyway. Or maybe the diode that absorb the motor inductive energy during that delay period can only handle a certain number of direction switches per second before overheating and frying. Anyway, I bought 3 of these units, and 2 of them fried within a minute of use. I'm keeping the 3rd unit to use in an application that won't have rapid direction changes, and also smaller motors. I'm hoping it doesn't fry also.
User
Loud
Has a loud electric whine , functions fine
Trustpilot
2 months ago
5 days ago