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Sprint ElectricSupply Voltage
24 V dc
Current Rating
12 A
Voltage Rating
24 V
Alkuperämaa
United Kingdom
Tuotetiedot
Sprint Electric DC Motor Controller - XLV Range
The XLV range of DC servo controllers are designed for use with permanent magnet brushed DC servo motors rated from 4 to 12 amps, offered in a compact easy to use DIN rail mounting package.
The controllers can be used in either current (torque) or speed control modes. For highly dynamic applications, a shaft-mounted DC tacho-generator is recommended for speed feedback but in less demanding applications, armature voltage feedback (Avf) can be used.
The reference signal for both current and speed control can be either bipolar (10V) or unipolar (0 – 10V). Motor speed can be controlled in both forward and reverse directions. An adjustable current limit and fast-acting current control loop protect the controller and motor from sustained overloads.
Varastotiedot eivät ole tilapäisesti saatavilla.
Tarkista myöhemmin uudelleen.
€ 648,10
kpl (ilman ALV)
€ 813,36
kpl (Sis ALV:n)
1
€ 648,10
kpl (ilman ALV)
€ 813,36
kpl (Sis ALV:n)
1
Tekninen dokumentti
Tekniset tiedot
Merkki
Sprint ElectricSupply Voltage
24 V dc
Current Rating
12 A
Voltage Rating
24 V
Alkuperämaa
United Kingdom
Tuotetiedot
Sprint Electric DC Motor Controller - XLV Range
The XLV range of DC servo controllers are designed for use with permanent magnet brushed DC servo motors rated from 4 to 12 amps, offered in a compact easy to use DIN rail mounting package.
The controllers can be used in either current (torque) or speed control modes. For highly dynamic applications, a shaft-mounted DC tacho-generator is recommended for speed feedback but in less demanding applications, armature voltage feedback (Avf) can be used.
The reference signal for both current and speed control can be either bipolar (10V) or unipolar (0 – 10V). Motor speed can be controlled in both forward and reverse directions. An adjustable current limit and fast-acting current control loop protect the controller and motor from sustained overloads.