I am text block. Click edit button to change this text. Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo.
“PWM Generator Module for Stepper Motor Driver with Forward and Reverse Function “
₹1,825.00 Original price was: ₹1,825.00.₹1,550.00Current price is: ₹1,550.00. inc. GST
- Board can be used to generate PWM signals for the stepper motor driver
- Operating Voltage: 12VDC
- Three Frequency Range
- Forward and Reverse Function.
- It has three frequency ranges selectable via onboard jumpers.
- Frequency can be measured via PUL and common cathode (GND) ports.
- The board has two sets of power input
Out of stock
The TOSHIBA 2SC5200 was used to create this PWM Stepper Motor Controller Board. This board is used to create PWM signals for the stepper motor driver, and it features onboard buttons for rotating the stepper motor in both CW and CCW directions. The motor’s speed may be adjusted using the onboard potentiometer. The onboard jumper can be used to choose the high and low frequency signals when the board creates a frequency pulse signal.
In the speed control of DC motors, pulse-width modulation (PWM) or duty-cycle variation techniques are often utilised. During a PWM period, the duty cycle is defined as the fraction of digital ‘high’ to digital ‘low,’ as well as the digital ‘high’ pulse-width. This great method of controlling the amount of power delivered to a load without dissipating any wasted power.
Note:
- Â In order to use the start or stop function, the ENA enable terminal on the controller must be connected to the driver with a common cathode or a common anode.
- The forward and reverse rotation and the start and stop of the motor can be controlled by pressing the button.
- Changing the frequency of the motor may be regulated by altering the potentiometer.
- An ordinary switch with self-locking is used to control the motor’s forward/reverse rotation and start/stop function.
- Â Incase, If you want to connect the switches that control forward and reverse, and open or stop, to the chassis panel, you can refer to the following instructions.
- Change the forward and backward buttons, as well as the start-stop button, into a lead-wire switch, as shown on the rear.

Related products
16-Channel 12-bit PWM/Servo Driver I2C interface PCA9685 for Arduino Raspberry Pi
- Adjustable frequency PWM up to about 1.6 kHz
- 12-bit resolution for each output – for servos, that means about 4us resolution at a 60Hz update rate
- Configurable push-pull or an open-drain output
- The output enable pin to quickly disable all the outputs
- Terminal block for power input
- Reverse polarity protection on the terminal block input
- Green power-good LED
- 3 pin connectors in groups of 4 so you can plug in 16 servos at once
- Chainable design
- A spot to place a big capacitor on the V+ line
- 220-ohm series resistors on all the output lines to protect them, and to make driving LEDs trivial.
- This board/chip uses an I2C 7-bit address between 0x60-0x80, selectable with jumpers.
8 CHANNEL 5V RELAY
- Relay operating voltage: 5V
- 8 channel
- High impedance controller pin
- One normally closed contact and one normally opened
- Useful for appliances control
- Power supply indicator and control indicator lamp
- Pull-down circuit to avoid malfunction
- Can control both DC and AC to 220v AC load
- Works with both 3.3 V and 5 V logic with the less current drive
- 3 terminals per SPDT relay
- Standard interface can be directly controlled by a microcontroller like Arduino, 8051, AVR, PIC, DSP, ARM, MSP430, TTL logic
- Dimension: 7*6.4*1 inch
A4988 Stepper Motor
- Operating voltage supply: 8 V to 35 V
- Continuous current per phase: 1 Amp
- Maximum current per phase: 2 Amp
- Minimum logic voltage: 3V
- Maximum logic voltage: 5.5V
- Microstep resolutions: Full, 1/2, 1/4, 1/8, and 1/16
- Logic Voltage supply: 3.3 V to 5 V
- Compatible with 3V3 and 5V microcontrollers
- Our Board comes with 0.1 Ohm Sensor resistors
- Five different step resolutions: full-step, half-step, quarter-step, eighth-step, and sixteenth-step
- The Correct current decay mode (fast decay or slow decay) is selected by chopping the control
- Over-temperature thermal shutdown, under-voltage lockout, and crossover-current protection
- Short-to-ground and shorted-load protection
- 4-layer, 2 oz copper PCB for improved heat dissipation
- Exposed solderable ground pad below the driver IC on the bottom of the PCB
DM556 Digital Stepper Motor Driver with Micro Stepping 20 to 50V 5.6A
- Good high-speed performance
- Supply voltage: +50VDC
- Output current from 0.5A to 5.6A
- Pulse input frequency up to 200 kHz
- Extremely cost-effective
- Automatic idle-current reduction
- Self-test and Auto-configuration technology TTL compatible and optically isolated input
- Micro step resolutions programmable, from full-step to 102,400 steps/rev
- Suitable for 2-phase and 4-phase motors
- Support PUL/DIR and CW/CCW modes
- Anti-Resonance provides optimum torque and nulls mid-range instability
- Extra-low motor noise offers excellent quietness
- Over-voltage, over-current protection and phase error protection
L293D Motor Driver Shield
- L293D motor driver chip & 74HC595 shift register
- Four H-bridges
- Terminal blocks and jumper to connect external power, for separate logic/motor supplies
- Up to 4 bi-directional DC motors with individual 8-bit speed selection
- Up to 2 stepper motors (unipolar or bipolar) with single coil, double coil or interleaved stepping.
- 2 connections for 5V ‘hobby’ servos connected to the Arduino’s high-resolution dedicated timer
- 4 H-Bridges: L293D chipset provides 0.6A per bridge (1.2A peak) with thermal shutdown protection, internal kickback protection diodes. Can run motors on 4.5VDC to 25VDC.
- Pull-down resistors keep motors disabled during power-up
- Big terminal block connectors to easily hook up wires (18-26AWG) and power
- Arduino reset button brought up top
- Tested compatible with Arduino Mega 1280 & 2560, Diecimila, Duemilanove, and UNO
- PCB Size: 69 x 53 mm
L298P Motor Shield motor driver
- L298P based Arduino motor driver shield
- Operating Voltage 5V to 12V
- Motor controller L298P, Drives 2 DC motors or 1 stepper motor
- The logical part of the input voltage VD: 5V
- Driven part of the input voltage VS: VIN Input 6.5 ~ 12V, PWRIN 4.8 ~ 35V input
- The logical part of the work current Iss:<36mA
- Driven part of the operating current Io:<2A
- Current sensing 1.65V/A
- Free running stop and brake function
- Maximum power dissipation: 25W (T = 75 Celsius)
- Max current 2A per channel or 4A max (with external power supply)
- Control signal input level: High 2.3V
- Onboard Bluetooth interface, you can directly plug, no wiring required.
- The board with L298P motor drive chip, directly with the motherboard digital I/O port (D10, D11, D12, D13), without cumbersome wiring.
- Onboard buzzer (D4), you can set the reverse alarm ringtones.
- D2, D3, D5, D6, D7, D9 are not occupied by the digital interface.
- A 0 – A 5 six analogue interfaces.
- Forward and Backward steering are indicators
Leadshine DM542
- Good high-speed performance
- Supply voltage up to +50VDC
- Output current up to 4.2A
- Pulse frequency up to 300 KHz
- Extremely cost-effective
- Automatic idle-current reduction
- 3-state current control technology
- Self-adjustment technology
- Pure-sinusoidal current control technology
- TTL compatible and optically isolated input
- 15 selectable resolutions in decimal and binary, up to 25,600 steps/rev
- Suitable for 2-phase and 4-phase motors
- DIP switch current setting with 8 different values
- Support PUL/DIR and CW/CCW modes
- Short-voltage, over-voltage, over-current protection
TB6560 4 Axis Stepper Motor Driver
- Driver Chip: TB6560AHQ
- Operating Voltage: 10-35V
- Nominal Voltage: 24V
- Stepper motor drive current: 1.5A - 3A/phase
- With the large heat sink to ensure good heat dissipation
- Double-pole constant flow PWM actuation output
- 6N137 high-speed OptoCoupler, to ensure a high speed without stepping out.
- Compatible Stepper motors: 2/4 Phase, 4/6/8 leads stepper motors within 3.5A
- 1 - 1/16 micro step setting - higher accuracy, smoother operation
- Full closed-type optical isolation to protect the user's computer and equipment
- Professional design, two-stage signal processing, super anti-jamming
- Bipolar constant current chopper drive motor low-speed non-creeping phenomenon, noise, non-resonant region
- Four input control
-

Reviews
There are no reviews yet.