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PMM-MD-23221-10

  • Rated 4.5 (10 total ratings)
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The PMM-MD-23221-10 driver features a DC24V source voltage, a 2A/phase current rating, a holding torque of 0.41 N·m or more, and a weight of 0.57 kg. Part of the PM Drivers series by Sanyo Denki, it operates within a temperature range of 0 to +50°C and supports a maximum input frequency of 100 kPulse/s.

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Product Description

The PMM-MD-23221-10 is a high-precision Stepper motor driver designed for industrial automation tasks that require precise motion control. The motor is manufactured by Sanyo Denki and employs a CMOS input method to ensure the reliability of data processing.

The PMM-MD-23221-10 motor driver's pull-out torque is dependent upon the load. With a rubber coupling, it is capable of accommodating 7.4 × 10⁻⁴ kg·m² (40.46 oz·in²) and 15.3 × 10⁻⁴ kg·m² (83.65 oz·in²). The rated motor power can be selected from 1.2A/phase or 2A/phase, depending on the requirements. There are two main connectors on the driver. CN1B handles the power source and I/O signals, and CN2 connects to the stepping motor. CW Pulse (CK), CCW Pulse (U/D), the step angle selection signal, the phase origin monitor output, and the power down input are the types of signals that can be fed in. For less interference, the wiring method works with shielded twist-pair connections. There are terminals on the driver that work with wires from AWG22 to AWG28. As a result, it works well both when there is no torque and when there is full torque. This makes it flexible for different load situations. The motor includes multiple sorts of input signals, making it easier to control.

The PMM-MD-23221-10 motor driver is intended for vertical installation in order to achieve optimal results. It is secured in position by M3 screws that pass through two holes that are precisely shaped on the bottom. With a structured micro-step function that allows the users to fine-tune motion resolution, the motor driver allows high-precision motion control. The stepper motor can handle micro-steps with up to 200 × 1/8 divisions, which makes it easier to use and reduces vibrations. Because it works quickly and accurately, it can be used for automation tasks that need stepper motor movements that are stable and under control.

PMM-MD-23221-10 Technical Specifications

Source Voltage: DC24V
Maximum Input Frequency: 100kpulse/s
Insulation Resistance: 10MΩ or more with DC500V
Operational Temperature Range: 0~+50°C
Input Method: CMOS input method
Source Voltage: DC 24V
Operating Current: 2A per phase
Current Rating: 2A/phase
Start Torque: JL2 = 0.8x10-4 kg·m² (direct coupling)
Getaway Torque Jl1: 0.94x10-4 kg·m² (rubber coupling)
Lead Wire Type: UL3266 AWG24
Motor Type: 2-phase Stepping Motor, 0.9°/step
Holding Torque: N.m or more: 0.41
Weight: 0.57 kg
Frequency Range For Operability: 10~55Hz

Frequently Asked Questions about PMM-MD-23221-10


Q: Do the CN1B and CN2 connectors of PMM-MD-23221-10 improve connectivity?

A: CN1B handles power and I/O signals, while CN2 connects to the stepping motor. This structured wiring simplifies connections and improves stability.

Q: How does PMM-MD-23221-10 ensure stable torque performance?

A: The driver operates at 2A per phase with optimized pull-out torque values. It maintains reliable performance under different load conditions.

Q: Why is PMM-MD-23221-10 designed for vertical installation?

A: Vertical mounting improves thermal management and structural integrity. It ensures secure attachment without additional fitting metals.

Q: Does PMM-MD-23221-10 require shielded cables for operation?

A: Yes, twist-pair shielded cables minimize electromagnetic interference. This improves signal transmission stability and reduces operational noise.

Q: How does PMM-MD-23221-10 benefit from a phase origin monitor?

A: The phase origin monitor output ensures accurate step positioning. It enhances precision for applications requiring strict position control.

Internal Product Review

  • ‘‘The PMM-MD-23221-10 delivers precise motion control with 200 × 1~8 division micro-step function that reduces vibration. Its vertical installation design ensures structural stability without additional fitting metals. The dual connector system (CN1B and CN2) enhances connectivity for efficient power and signal transmission.’’

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