ABB 5SHY-55L4500 high‑power asymmetric Integrated Gate‑Commutated Thyristor (IGCT) module
Description
Product Introduction
Model Interpretation
5S: ABB high‑power semiconductor series
HY: Asymmetric IGCT (unidirectional switching)
55: 5500 A class current rating
L: Low‑loss optimized version
4500: 4500 V repetitive peak blocking voltage
Technical Parameters
Repetitive peak blocking voltage (VDRM): 4500 V
Permanent DC link voltage (VDC): 2800 V
Max continuous on‑state current (ITGQM): 5000 A
Peak surge current (ITSM): 33 kA
Typical on‑state voltage drop (VT0): 1.22 V
On‑state resistance (rT): 0.28 mΩ
Max switching frequency: up to 1000 Hz (medium‑frequency optimized)
Operating junction temperature: −40 °C to +125 °C
Storage temperature: −40 °C to +85 °C
Cooling: deionized water‑cooled baseplate
AC insulation (main terminals): 12 kV
Mounting force: 36–44 kN
Weight: approx. 4.2 kg
Interface and Communication Configuration
Integrated gate drive with fiber‑optic control interface for high EMI immunity
Main power terminals: large copper busbars for low‑resistance, high‑current connections
Water‑cooled baseplate for efficient heat dissipation
Built‑in temperature and current sensors for real‑time monitoring and fault diagnostics
Status feedback via fiber optics for system control and protection
Gate unit supply: AC square wave or DC input
Core Functions
Provides stable 4500 V / 5000 A high‑power switching for medium‑voltage conversion systems
Ultra‑low conduction and switching losses improve system energy efficiency
Snubberless fast turn‑off capability simplifies peripheral circuit design
Rugged press‑pack structure ensures long‑term stability under harsh industrial conditions
Optimized for medium frequencies (<1 kHz), ideal for high‑power dynamic applications
High cosmic radiation withstand rating for grid‑critical installations
Application Scenarios
Medium‑voltage variable frequency drives (e.g., ABB ACS6000 series)
Static Var Compensators (SVC) and STATCOM for grid power quality regulation
Wind turbine converters and high‑power photovoltaic inverters
HVDC Light transmission systems
Heavy industries: power generation, metallurgy, mining, oil and gas
Operation and Maintenance Instructions
Mount the module on a water‑cooled heat sink with clamping force 36–44 kN
Connect main terminals with professional high‑current busbars; use dedicated fiber‑optic cables for gate signals
Maintain cooling system with qualified deionized water at stable flow and pressure
Conduct quarterly inspections of appearance, electrical connections, and cooling performance
Before disassembly/replacement: fully de‑energize and discharge residual voltage
Handle with anti‑static protection to avoid ESD damage
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