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A4988 Stepper Motor
₹175.00 Original price was: ₹175.00.₹160.00Current price is: ₹160.00. inc. GST
- 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
A4988 Module designed as a compact-sized, low-cost breakout board for Allegro’s A4988 Stepper Motor Driver. It offers numerous features such as adjustable current limiting, over-temperature, and over-current protection. It supports five different stepping resolutions and provides a wide operating voltage range from 8 volts to 35 volts. The A4988 is one of the prominent complete micro-stepping motor drivers with an inbuilt converter for ease of operation. These are designed specifically 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 ±2 A. The A4988 Motor Driver has the ability to operate in Slow or Mixed decay modes by the presence of a fixed off-time current regulator
The inbuilt converter/translator performs the key to the easy implementation of the A4988. By simply inputting one pulse to the STEP input, drives the motor one micro-step. This motor driver does not consist of any phase sequence tables, high-frequency control lines, or complex interface to program. The A4988 motor driver is a perfect solution for applications where a complex microprocessor is unavailable or is overburdened. During stepping operation, the A4988 automatically selects the current decay mode, Slow or Mixed with the help of the chopping control.
Whereas in the Mixed decay mode, the initial device is set to a fast decay for a proportion of the fixed off-time, then shifts to a slow decay for the remainder of the off-time. As a result, the Mixed decay current control cause reduced audible motor noise, increased step accuracy, and reduced power dissipation. Moreover, it provides internal synchronous rectification control circuitry, thereby improving the pulse width modulation (PWM) power consumption during operation. Finally, the Internal circuit protection offers thermal shutdown with hysteresis, under-voltage lockout (UVLO), and crossover current protection. Don’t need special power-up sequencing.

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- 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
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A3967 STEPPER MOTOR DRIVER
- A3967 precision micro-stepping driver
- Power supply: 7v to 30v
- Logic voltage: 5v to 3.3v
- Higher the voltage higher the torque at high speed
- Adjustable current control from 150Ma/ phase to 750ma phase
- Automatic current decay mode detection/selection
- Fast, slow, and mixed current decay modes
- Internal UVLO and thermal shutdown circuitry
- Crossover current protection
- Micro stepping resolution to full, half, quarter, and eighth steps by broken out MS1 and MS2 pins.
- Compatible with Arduino, GRBL G-Code interpreter for driving3-axis CNC machines
- Salington sink drivers used
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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
L298N MOTOR DRIVER
- Driver model: L298N 2A
- Driver chip: Double H bridge L298N
- Motor supply voltage: 46V(maximum)
- Motor supply current: 2A(maximum)
- Logic voltage: 5v
- Driver voltage: 5V-35V
- Driver current: 2A
- Logical current: 0-36mA
- Maximum power: 25W
- Current sensor for each motor
- LED indication for power status
- Heat sink for better performance
- Operating temperature: -25 degrees to 135 degrees Celsius
- Can be interfaced with simple manual switches, TTL logic gates, relays, etc.
- Dimension: 55*60*30mm
- Weight: 33gm
Leadshine DM320C
- Supply voltage up to +30 VDC
- Output current programmable, from 0.3A to 2.0A
- Pulse input frequency up to 70 kHz
- TTL compatible and optically isolated input
- Automatic idle-current reduction
- Suitable for 2-phase and 4-phase motors
- Support PUL/DIR and CW/CCW modes
- Over-voltage, over-current, phase-error protection
- Anti-Resonance provides optimum torque and nulls mid-range instability
- Self-test and Auto-configuration technology offers optimum responses with different motors
- Microstep resolutions programmable, from full-step to 102,400 steps/rev
- Support PUL/DIR and CW/CCW modes
- Over-voltage, over-current, phase-error protection
- Its unique features make the DM320C an ideal solution for applications that require low-speed smoothness
Leadshine DMA860E Stepper Motor Driver
- Model: DMA860E.
- Control Mode: Step & Direction.
- Max Input Frequency: 200 kHz.
- Input Voltage Range: 18 - 80 VAC / 24 - 110 VDC.
- Suggested Power Supply Voltage Range: 36-90 VDC /24-60 VAC.
- Number of DIP Switch Resolution Configurations: 16.
- 16 selectable micro-step resolutions of 400-51,200 via DIP switches.
- 8 selectable output current settings of 2.4 – 7.2A via DIP switches.
- Logic Current Range: 7-16mA (10mA typical).
- Logic Voltage Range: 4-5 VDC for pulse active high (default), or 0-0.5V for pulse active low.
- Pulse enabled at: Rising edge.
- Idle Current Percentage: 50 %.
- Number of Digital Inputs: 3.
- Step Width: 2,500 ns.
- Minimal Direction Setup Time: 5,000 ns.
- Isolation Resistance: 500M Ohm..
- Ambient Temperature: 0-50°C.
- Humidity: 40–95% RH.
- Operating Temperature: 0-70°C.
- Vibration: 5.9 m/s2 Max.
- Motor auto-identification and parameter auto-configuration for optimal torque from wide-range motors.
- Step & direction (PUL/DIR) and CW/CCW (via internal jumper set) control. Step & direction by default Multi-Stepping for smooth motor movement.
- Opto Isolation for input control signals.
- Soft-start with no “jump” when powered on.
- Protections for over-voltage and over-current.
- Dimension: 5.94 X 3.82 X 2.24 Inches.
- Weight: 1.13 lbs.
Minebea 16PU-M202 Bipolar Stepper Motor
- Step angle 3.75 degree
- Phase current: 0.6 ampere
- Step Angle: 3.75 Degree +/- 5%
- Drive Sequence: Bipolar
- Rated Current per Winding: 0.6 A
- Winding Resistance: 5E5
- Holding Torque Nm (Kg-cm): 0.064 (0.65)
- Rotor Inertia (Kg-cm2): 0.015
- Rated Voltage: Max 40V DC, 12V Typical
- Flange Size: 56.5 mm
- Shaft (with coupling spur gear): 5mm
- Connecting Wire Length: 30 cm
- Holding Torque: 0.074 nm

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