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Description
Dual channels, capable of working independently or in mixed mode
Multiple protection features including under voltage, over voltage, over temperature, and over current
Communication methods include PWM/Dir, PWM Bi direction, Analog/Dir, Analog Bi Direction, UART, and PPM signal
Acceleration and deceleration features, as well as soft limit left and right feature
Maximum continuous current of 12A and 30A per channel, single power operation
The Dual DC Driver for RC in Mixed Mode, ESC Brush, ESC DC & Brushed Motor Controller Combo includes two Smart H Bridges (CCS_SHB12) configured in RC mode and one Extension board. The Extension board connects two Smart H Bridges with one RC receiver to control them as RC Mixed or Independent mode.
Each Smart HBridge in the combo has the same features as a single Smart HBridge (CCS_SHBxx): an H Bridge Driver designed to control a brushed DC motor regarding velocity, direction, etc. The motor is controlled by MOSFETs with 16 kHz switching for optimal performance and noise reduction.
The driver is a Smart H Bridge Driver that supports acceleration/deceleration feature. This reduces sudden changes in velocity and protects the mechanical and electrical components in many cases, making it useful for many applications.
The driver also supports two internal Electric Current Home Sensors to limit the movement left and right. There is no need to add additional limit switches. This driver monitors the current when the motor is running. If the current of the motor is the same as the iLimit (iLimit is a current limit setting by a potentiometer on the PCB), the driver sets a Touched Flag and stops moving in that direction. To move again, the driver needs to be controlled in the reverse direction or the Touched Flag needs to be cleared.
The driver supports many protection methods such as Under voltage, Over voltage, Over temperature, and Over Current. These protection features are very important for keeping the protection system in place.
In addition, the Smart H Bridge supports most common communication methods. The user can easily choose the desired method using the Dip Switch on the PCB: PWM/Dir, PWM Bi direction, Analog/Dir, Analog Bi Direction, UART, and PPM signal (RC).