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PFSK130 3BSE002616R1 ABB

  • Energy Efficiency: Advanced PWM control reduces energy use by up to 25% compared to conventional drives, with a 98% efficiency rating.
  • Compact Design: 30% smaller than comparable 130 kW modules, ideal for space-constrained installations.
  • Dual Functionality: Integrates frequency conversion and signal conditioning (4–20 mA, 0–10 V) for simplified system architecture.
  • Reliability: MTBF of 80,000+ hours; built with surge protection (6 kV) and overload capacity (150% for 60 seconds).
  • Flexible Control: Supports V/f, sensorless vector, and torque control modes.
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Part number: PFSK130 3BSE002616R1
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Description

1. Product Description

TheABB PFSK130 3BSE002616R1 is a compact, high-efficiency frequency converter and signal conditioning module designed for industrial automation and motor control systems. As part of ABB’s advanced PFSK series, the PFSK130 3BSE002616R1 combines motor speed regulation, precision signal processing, and energy optimization in a single unit. With a power rating of 130 kW, it supports 3-phase induction motors in applications such as manufacturing, HVAC, and water treatment. Its modular design ensures seamless integration with PLCs and DCS systems, enabling real-time monitoring of voltage, current, and temperature while reducing energy consumption. The PFSK130 3BSE002616R1 is built for reliability in harsh environments, featuring robust protection against overvoltage and overload.

2. Product Parameters

Parameter Specification
Input Voltage 380–500 V AC, 3-phase
Output Voltage 0–500 V AC, 3-phase
Output Current 0–260 A
Power Rating 130 kW
Frequency Range 0.1–400 Hz
Protection Class IP20
Cooling Method Fan-cooled (optional forced air)
Interface Type Digital/analog I/O, Modbus RTU/ASCII
Compatibility ABB AC500 PLCs, third-party controllers
PFSK130 3BSE002616R1

PFSK130 3BSE002616R1

3. Advantages and Features

  • Energy Efficiency: Advanced PWM control reduces energy use by up to 25% compared to conventional drives, with a 98% efficiency rating.
  • Compact Design: 30% smaller than comparable 130 kW modules, ideal for space-constrained installations.
  • Dual Functionality: Integrates frequency conversion and signal conditioning (4–20 mA, 0–10 V) for simplified system architecture.
  • Reliability: MTBF of 80,000+ hours; built with surge protection (6 kV) and overload capacity (150% for 60 seconds).
  • Flexible Control: Supports V/f, sensorless vector, and torque control modes.

4. Application Areas and Case Studies

Industry Applications:
  • Manufacturing: Conveyor systems, pumps, and compressors.
  • HVAC: Fan and chiller control in commercial buildings.
  • Water/Wastewater: Pump stations and treatment plants.
Case Study:
A food processing plant in North America reduced downtime by 15% using the PFSK130 3BSE002616R1 for conveyor motor control. The module’s predictive maintenance alerts (via temperature and vibration monitoring) prevented unexpected failures, saving $80,000 annually.

5. Competitor Comparison

Compared to similar 130 kW drives:
  • Space Savings: 20% smaller footprint with integrated I/O (vs. separate modules).
  • Cost Efficiency: 10–15% lower lifecycle cost due to reduced installation and maintenance needs.
  • Performance: Faster response time (5 ms) and wider voltage tolerance (±15%) for unstable power grids.
    PFSK130 3BSE002616R1

    PFSK130 3BSE002616R1

6. Selection Recommendations

  • Power Matching: Ensure the 130 kW rating aligns with motor load (e.g., 110–130 kW motors).
  • Environment: IP20 rating suits indoor use; consider enclosure upgrades for dusty/humid environments.
  • Communication: Verify protocol compatibility (Modbus) with existing control systems.
  • Future Scalability: Choose the PFSK130 for systems requiring expansion (supports up to 10 modules in parallel).

7. Precautions

  • Installation: Maintain 10 cm clearance around the module for airflow; use shielded cables for signal inputs.
  • Safety: Disconnect power for 5 minutes before servicing; follow NEC 430 guidelines for motor circuits.
  • Maintenance: Replace cooling fans every 40,000 hours; check capacitor health annually.
  • Voltage Stability: Use a line reactor (optional) for voltage sags >10% to prevent tripping.
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