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TeSys LR97D

Electronic relays to protect motors up to 38 A (18 kW / 400 V) and related machine components

Part of TeSys

TeSys LR97D electronic overcurrent relays provide protection against locked rotor, seizure or mechanical shocks. Unlike the thermal overload relays, these relays do not have a thermal memory. They have definite time characteristics with adjustable current threshold and time delay.

TeSys LR97D
  • Features

    TeSys LR97D overload relays from 0.3 A to 38 A can be directly mounted beneath TeSys D contractors (up to LC1D38, width 45 mm) to prevent over-currents caused by overloads or mechanical jamming.

    • Screw clamp or lug connections
    • External 24 to 230 V AC power supply
    • Manual or automatic reset
    • Protection functions:
      - Overcurrents due to overload or mechanical jamming: starting and steady state operation overtorque monitoring
      - Can be used for torque surge protection
      - Specific protection for locked rotors
      - Specific protection for phase failure
    • Current threshold adjustment using 2 separate time settings (starting and trip in steady state operation)
    • Selection of 3-phase or single-phase operation
    • Diagnostics via 2 LED indicators (starting, overtorque, rotor locked and phase failure)
    • Auxiliary contact: 1 C/O


    Benefits

    Machine protection combined with motor starter

    TeSys LR97D electronic overcurrent relays (or overtorque protection relays) assure optimal protection for motors and other mechanical devices, such as gear boxes.

    • Compact (45 mm wide) for easy integration into motor starter functions
    • Reduces production loss and associated downtime
    • Simple setting and signaling features

    Applications

    TeSys LR97D relays do not have thermal memory and can be used as specific motor protection in the case of severe duty applications, such as machines with long starting times and frequent starting. The solution is suitable for a variety of motor control applications in industry, infrastructures and buildings, including:

    • Machines with high resistive torque
    • High inertia machines
    • Machines with high risk of jamming during steady state operation

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