Controller Axis Cnc

DM542 Stepper Motor Driver Controller DC 24-60V Nema 23 / 17 CNC 4.2a DM 542

DM542 Stepper Motor Driver Controller DC 24-60V Nema 23 / 17 CNC 4.2a DM 542
DM542 Stepper Motor Driver Controller DC 24-60V Nema 23 / 17 CNC 4.2a DM 542
DM542 Stepper Motor Driver Controller DC 24-60V Nema 23 / 17 CNC 4.2a DM 542
DM542 Stepper Motor Driver Controller DC 24-60V Nema 23 / 17 CNC 4.2a DM 542
DM542 Stepper Motor Driver Controller DC 24-60V Nema 23 / 17 CNC 4.2a DM 542

DM542 Stepper Motor Driver Controller DC 24-60V Nema 23 / 17 CNC 4.2a DM 542   DM542 Stepper Motor Driver Controller DC 24-60V Nema 23 / 17 CNC 4.2a DM 542
DM542 Stepper Motor Driver Controller DC 24-60V Nema 23 / 17 CNC 4.2a DM 542. Only 0 pcs in stock. 100 more stock due mid April! Input voltage: DC 24~50V input. Output current: less than 4 amperes. Output current: 1.0A~4.2A. Humidity: no condensation, no water droplets. Gas: non-flammable gas and conductive dust. PLS+: Step pulse signal input positive terminal or positive step pulse signal input positive terminal. PLS-: Step pulse signal input negative terminal or positive step pulse signal input negative terminal. DIR+: Step direction signal input positive terminal or reverse step pulse signal input positive terminal. DIR-: Step direction signal input negative terminal or reverse step pulse signal input negative terminal. ENA+: Offline enable reset signal input positive terminal.

ENA-: Offline enable reset signal input negative terminal. When the offline enable signal is valid, the drive fault is reset, any valid pulse is prohibited, the output power element of the drive is turned off, and the motor has no holding torque. The control signal of the host computer can be effective at high level or at low level. When high is effective, connect the negative ends of all control signals together as the signal ground, when low, connect the positive ends of all control signals together as the signal common end. Now take the open collector and PNP output as an example, the interface circuit diagram is as follows.

A complete stepper motor control system should contain stepper drives, DC power supplies and controllers (pulse sources). The following is a typical system wiring diagram.

Set the output phase current. In order to drive stepper motors with different torques, the user can set the output phase current (effective value) of the drive in amperes through the DIP switches SW1, SW2, and SW3 on the drive panel, the output current corresponding to each switch position, and different models of drives The corresponding output current value is different. See the table for details. +V, GND: connect the driver power supply.

+V: DC power supply is positive, the power supply voltage is DC 16~50V. The high current is 5A. GND: Negative level of DC power supply.

A+A-B+B-: Connect a two-phase hybrid stepping motor. The connection between the driver and the two-phase hybrid stepping motor adopts a four-wire system. The motor windings have parallel and series connection methods, and the parallel connection method has good high-speed performance, but the driver current is large (1.73 times the motor winding current). In series connection, the driver current is equal to the motor winding current. There should be a space of 20mm around, and it should not be placed next to other heating equipment. Avoid dust, oil mist, corrosive gas, excessive humidity and strong vibration. RUN: Green light, on during normal operation.

ERR: Red light, on when fault occurs, short circuit between motor phases, g voltage protection and under voltage protection. LED does not light up Reason: (Wrong power connection/low power supply voltage). Solution: 1 Check the power connection 2.

Increase the power supply voltage. The motor does not rotate, and there is no holding torque (reason: the motor connection is incorrect/offline enable RESET signal is valid). Solution: RESET is invalid/correct the motor connection. The motor does not rotate, but there is a holding torque (Reason: no pulse signal input).

Solution: adjust the pulse width and signal level. Wrong direction of motor rotation(Reason: wrong phase sequence of power line/wrong direction signal input). Solution: interchange any two connecting lines and change the direction setting. Motor torque is too small(Reason: the phase current setting is too small, the acceleration is fast, the motor is blocked, the driver and the motor do not match). Solution: Correctly set the phase current, reduce the acceleration value, eliminate mechanical faults, and change to a suitable driver.

All orders are packaged well using recycled packing materials when possible. Because of COVID, HGV Driver Shortage and Holiday demands on the postal service, parcels are arriving later than expected. This is done at our own discretion. We do our best to be as accurate as possible in our listings. This includes the written description, title and images used within the listing.

But we can not guarantee that they are 100% accurate as most descriptions and photos are provided to us by the manufacture of the goods. This may mean that dimensions, colour and specifications may not be 100% accurate at time of sale. This item is in the category "Business, Office & Industrial\Industrial Automation & Motion Controls\Drives & Starters\Drives & Motor Controls\Stepper Controls & Drives".

The seller is "jacksonlinestore09" and is located in this country: GB. This item can be shipped to North, South, or Latin America, all countries in Europe, all countries in continental Asia, Australia.

  • Input Voltage: 24 V
  • Country/Region of Manufacture: China
  • MPN: DM542 DM860H Stepper Motor Driver NEMA 23 TB6600
  • Brand: DM542 CNC Stepper Motor Driver NEMA 23 TB6600 DM86
  • Application: Single Axis
  • Number Of Axes: 1- 4
  • TB6600 Single Axis 4A CNC Stepper Motor: DM 542 DM860H CNC Stepper Motor Driver NEMA 23


DM542 Stepper Motor Driver Controller DC 24-60V Nema 23 / 17 CNC 4.2a DM 542   DM542 Stepper Motor Driver Controller DC 24-60V Nema 23 / 17 CNC 4.2a DM 542