Andantex USA, Inc.Magnetic Particle Torque LimiterLC 500
Description
Overview
Magnetic Particle Torque Limiter
The design is based on a magnetic field created by a permanent magnet.
The variation of the torque leads to the position of an external ring, acting as a variable magnetic field short circuit.
Adjustable slipping torque, independent of the slipping speed
Through shaft design
Features
Weight:
13.00 kg
Power:
500 W
LC 150
Min. slipping torque:
5.00 Nm
Max. slipping torque:
15.00 Nm
LC 300
Min. slipping torque:
15.00 Nm
Max. slipping torque:
40.00 Nm
LC 500
Min. slipping torque:
25.00 Nm
Max. slipping torque:
65.00 Nm
LC 700
Min. slipping torque:
30.00 Nm
Max. slipping torque:
85.00 Nm
Andantex USA, Inc.
Done
Datasheet
Description
Overview
Magnetic Particle Torque Limiter
The design is based on a magnetic field created by a permanent magnet.
The variation of the torque leads to the position of an external ring, acting as a variable magnetic field short circuit.
Adjustable slipping torque, independent of the slipping speed
Through shaft design
Features
Weight:
13.00 kg
Power:
500 W
LC 150
Min. slipping torque:
5.00 Nm
Max. slipping torque:
15.00 Nm
LC 300
Min. slipping torque:
15.00 Nm
Max. slipping torque:
40.00 Nm
LC 500
Min. slipping torque:
25.00 Nm
Max. slipping torque:
65.00 Nm
LC 700
Min. slipping torque:
30.00 Nm
Max. slipping torque:
85.00 Nm
Overview
Magnetic Particle Torque Limiter
The design is based on a magnetic field created by a permanent magnet.
The variation of the torque leads to the position of an external ring, acting as a variable magnetic field short circuit.
Adjustable slipping torque, independent of the slipping speed
Through shaft design
Features
Weight:
13.00 kg
Power:
500 W
LC 150
Min. slipping torque:
5.00 Nm
Max. slipping torque:
15.00 Nm
LC 300
Min. slipping torque:
15.00 Nm
Max. slipping torque:
40.00 Nm
LC 500
Min. slipping torque:
25.00 Nm
Max. slipping torque:
65.00 Nm
LC 700
Min. slipping torque:
30.00 Nm
Max. slipping torque:
85.00 Nm
Overview
Magnetic Particle Torque Limiter
The design is based on a magnetic field created by a permanent magnet.
The variation of the torque leads to the position of an external ring, acting as a variable magnetic field short circuit.
Adjustable slipping torque, independent of the slipping speed