Stepper motor controllers

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IPSES

Stepper motor motor controller

The most complete range of cards for the intelligent control of stepper motors

Our motion cards are the perfect solution to manage stepper one axis or multi-axes motors with nominal current up to 3A.

The...

Stepper motor motor controller

The most complete range of cards for the intelligent control of stepper motors

Our motion cards are the perfect solution to manage stepper one axis or multi-axes motors with nominal current up to 3A.

The position commands are directly sent to the motor by personal computer through USB, serial or Ethernet interface, so to answer to the best all customers' needs.

MT-series cards are small size low power control devices which allow to control both bipolar and unipolar stepper motors (i.e. 8 and 4 lead motors, and 6 lead center tapped motors) and their respective limit/home detection sensors (with programmable polarity).

Although MT-series cards were conceived mainly to control finite rotation movements, they can also work with direct cycle motors and, for istance, they can also be used as speed control device.
SANYO DENKI EUROPE

Stepper motor driver - 24 - 36 VDC, 3 A | F series

Specifications :
Bipolar (BS1) & Unipolar (US1) models
Input voltage : 24/36 VDC (+/-10%)
Source...

Stepper motor driver - 24 - 36 VDC, 3 A | F series

Specifications :
Bipolar (BS1) & Unipolar (US1) models
Input voltage : 24/36 VDC (+/-10%)
Source current : 3A
Operating mode : pulse&direction or CW/CCW
UL/CSA/CE certified

Main Features :
Low vibration mode
Microstepping (1/1 to 1/16)
Current selection at standstill (100% to 40%)
Power down input
Phase origin monitor output
Alarm output
SMC France

Stepper motor driver - LC6D

The SMC LC6D drivers serve the purpose of controlling and driving the stepper motor of the LX electric actuator series. The position of this driver...

Stepper motor driver - LC6D

The SMC LC6D drivers serve the purpose of controlling and driving the stepper motor of the LX electric actuator series. The position of this driver is determined by pulse signals, while the speed is controlled through the use of periodic pulse frequencies. It can be used in combination with any kind of controller that has adjustable high speed pulse outputs. Contains an integrated current down function, that automatically reduces the current of the motor by half, in case the motor stops. This is a cost-effective solution that protects the motor from overheating.
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