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ABB 5SGY3545L0020

Advanced Power Conversion Efficiency: The 5SGY3545L0020 leverages ABB’s XTCemitter™ technology to reduce switching losses by up to 30% compared to previous generations, achieving over 98% efficiency in HVDC converters. The integrated silicon carbide (SiC) diodes minimize reverse recovery charge (Qrr), enabling faster commutation and lower voltage overshoot, the module is critical for maintaining grid stability in wind and solar farms. For example, in a 10 MW offshore wind converter, its low losses translate to annual energy savings of ~100 MWh, significantly reducing operational costs.

 

Rugged Mechanical Design for Harsh Environments: The PFCP design eliminates soldered joints, making the 5SGY3545L0020 resistant to thermal fatigue and vibration—key advantages for offshore platforms, mining equipment, and high-speed rail applications. The hermetically sealed DCB substrate protects against moisture and corrosive gases, while the self-aligned press-fit pins ensure consistent electrical contact during installation. This robust construction supports a service life of over 100,000 hours in continuous operation, reducing maintenance frequency by up to 50% compared to traditional bolt-down modules.

 

Scalable and Future-Proof Integration: The 5SGY3545L0020 supports parallel operation for higher current demands or series stacking for increased voltage capability, making it suitable for scalable projects like cross-continental HVDC grids or industrial megadrives. Its compatibility with ABB’s MACH 4 control platform and IEC 61850 communication protocols enables seamless integration into digital substations and Industry 4.0 ecosystems. Built-in diagnostics monitor junction temperature, bond wire integrity, and switching cycles, enabling predictive maintenance via ABB’s Ability™ analytics to prevent unplanned downtime.
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Description

Product Overview

The ABB 5SGY3545L0020 is a high-performance Insulated Gate Bipolar Transistor (IGBT) module designed for demanding medium-to-high-voltage power conversion applications. As a flagship product in ABB’s PrimePhase™ IGBT series, the 5SGY3545L0020 combines advanced semiconductor technology with rugged mechanical design to deliver exceptional efficiency, reliability, and power density. Engineered for use in voltage source converters (VSCs), high-voltage direct current (HVDC) systems, and industrial motor drives, this module serves as a critical component in renewable energy integration, smart grids, and heavy-industrial automation.

 

Featuring a 4.5 kV voltage rating and 3,500 A continuous current capability, the 5SGY3545L0020 is optimized for applications requiring high power handling and fast switching speeds. Its dual-channel configuration and Direct Copper Bonding (DCB) substrate ensure low thermal resistance (0.002 K/W) and efficient heat dissipation, enabling sustained operation at junction temperatures up to +150°C. The module’s Press-Fit Compact Package (PFCP) eliminates soldered connections, enhancing vibration resistance and simplifying maintenance in harsh industrial environments. As part of ABB’s commitment to digital transformation, the 5SGY3545L0020 integrates with predictive maintenance platforms, allowing real-time monitoring of performance parameters to optimize lifecycle management.

Technical Specifications

Parameter Name Parameter Value
Product Model 5SGY3545L0020
Manufacturer ABB
Product Type High-Voltage IGBT Module (VSC-HVDC)
Voltage Rating (Vces) 4.5 kV DC
Current Rating (Ic) 3,500 A (continuous at 80°C)
Switching Frequency Up to 20 kHz
Thermal Resistance 0.002 K/W (junction-to-coolant)
Package Type Press-Fit Compact Package (PFCP)
Cooling Method Liquid-cooled (direct/indirect)
Operating Temperature -40°C to +150°C (junction)
Dimensions (W×H×D) 220 mm × 150 mm × 50 mm
Certification IEC 60747-9, RoHS, UL 1558
Surge Current Capability 10 kA (10 ms)
5SHY5055L0002 3BHE019719R0101 GVC736BE101

5SHY5055L0002 3BHE019719R0101 GVC736BE101

Main Features and Advantages

Advanced Power Conversion Efficiency: The 5SGY3545L0020 leverages ABB’s XTCemitter™ technology to reduce switching losses by up to 30% compared to previous generations, achieving over 98% efficiency in HVDC converters. The integrated silicon carbide (SiC) diodes minimize reverse recovery charge (Qrr), enabling faster commutation and lower voltage overshoot, the module is critical for maintaining grid stability in wind and solar farms. For example, in a 10 MW offshore wind converter, its low losses translate to annual energy savings of ~100 MWh, significantly reducing operational costs.

 

Rugged Mechanical Design for Harsh Environments: The PFCP design eliminates soldered joints, making the 5SGY3545L0020 resistant to thermal fatigue and vibration—key advantages for offshore platforms, mining equipment, and high-speed rail applications. The hermetically sealed DCB substrate protects against moisture and corrosive gases, while the self-aligned press-fit pins ensure consistent electrical contact during installation. This robust construction supports a service life of over 100,000 hours in continuous operation, reducing maintenance frequency by up to 50% compared to traditional bolt-down modules.

 

Scalable and Future-Proof Integration: The 5SGY3545L0020 supports parallel operation for higher current demands or series stacking for increased voltage capability, making it suitable for scalable projects like cross-continental HVDC grids or industrial megadrives. Its compatibility with ABB’s MACH 4 control platform and IEC 61850 communication protocols enables seamless integration into digital substations and Industry 4.0 ecosystems. Built-in diagnostics monitor junction temperature, bond wire integrity, and switching cycles, enabling predictive maintenance via ABB’s Ability™ analytics to prevent unplanned downtime.

Application Field

The 5SGY3545L0020 is a versatile solution for high-power systems across multiple industries:

 

  • Renewable Energy: Powers full-power converters in wind turbines (up to 15 MW) and solar inverters, converting variable AC to HVDC for efficient long-distance transmission. Its fast switching capabilities support dynamic reactive power control, stabilizing voltage during grid faults in hybrid microgrids.
  • Industrial Drives: Controls large motors in steel mills, cement plants, and marine propulsion systems, offering soft starting and regenerative braking to reduce mechanical stress. In a mining conveyor system, its surge current protection safeguards against overloads, extending motor lifespan by 20%.
  • HVDC Transmission: Forms the core of ABB’s HVDC Light systems, enabling low-loss power transfer over 1,000+ km. Its modular design allows easy integration into VSC-HVDC projects, such as intercontinental grid links or offshore wind connections.
  • Smart Grid Infrastructure: Supports static var compensators (SVCs) and flexible AC transmission systems (FACTS) to improve power quality, reduce harmonic distortion, and enhance grid resilience in urban distribution networks.
    5SHY5055L0002 3BHE019719R0101 GVC736BE101

    5SHY5055L0002 3BHE019719R0101 GVC736BE101

Related Products

  • 5SGY3545L0004: Lower-current variant (2,250 A) for smaller converters or backup systems.
  • 5SHY35L4510: 6.5 kV IGBT module with SiC diodes for ultra-high-voltage applications.
  • 3BHE039203R0101: Dedicated liquid-cooling system optimized for thermal management with the 5SGY3545L0020.
  • GVC736CE101: Isolated gate driver module for precise switching control and fault protection.
  • PM5000 Series: Power management units for grid-connected converter systems, enabling integrated control with the 5SGY3545L0020.

Installation and Maintenance

Pre-installation preparation: Mount the 5SGY3545L0020 on a liquid-cooled cold plate using ABB’s torque-controlled press-fit tool (5–8 kN pressure). Ensure the coolant flow rate (≥5 L/min) and conductivity (<5 µS/cm) meet specifications to optimize thermal performance. Connect gate driver cables with shielded twisted-pair wiring to minimize EMI, and configure dead time and clamping voltage via ABB’s DriveComposer Pro software. Validate system compatibility with the module’s voltage and current ratings before power-up.

 

Maintenance recommendations: Inspect cooling channels quarterly for blockages and test coolant purity annually to prevent thermal degradation. Use ABB’s Power Module Diagnostics (PMD) to monitor junction temperature trends and detect early signs of wear, such as increased thermal resistance. Replace gate driver batteries every 5 years and perform a full functionality test (e.g., short-circuit simulation) every 2 years to validate fault-handling capability. In dusty environments, clean the module’s vents biannually with compressed air to maintain optimal airflow.

Product Guarantee

ABB stands behind the 5SGY3545L0020 with a 5-year warranty, reflecting confidence in its durability and performance under extreme conditions. ABB’s global service network provides 24/7 technical support, including remote diagnostics and on-site maintenance by certified technicians, ensuring minimal downtime for critical applications. The module’s compliance with international standards (IEC, UL) and rigorous testing (e.g., 10,000-cycle switching tests) guarantees long-term reliability. For customers prioritizing sustainability, the 5SGY3545L0020 is RoHS-compliant and designed for end-of-life recycling, aligning with ABB’s commitment to circular economy principles. By combining cutting-edge technology with unmatched service support, ABB ensures the 5SGY3545L0020 remains a trusted choice for high-power automation and grid infrastructure worldwide.
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