GA200HS60S1
GA200HS60S1 is Standard Speed IGBT manufactured by International Rectifier.
Features
- Generation 4 IGBT Technology
- Standard speed: optimized for hard switching operating frequencies up to 1000 Hz
- Very Low Conduction Losses
- Industry standard package
Standard Speed IGBT
VCES = 600V VCE(on) typ. = 1.13V @ VGE = 15V, IC = 200A TJ = 25°C
Benefits
- Increased operating efficiency
- Direct mounting to heatsink
- Performance optimized as output inverter stage for TIG welding machines
INT-A-PAK
Absolute Maximum Ratings Parameters
VCES IC ICM ILM VGE VISOL PD Collector-to-Emitter Voltage Continuos Collector Current Pulsed Collector Current Peak Switching Current Gate-to-Emitter Voltage RMS Isolation Voltage, Any Terminal to Case, t = 1 min Maximum Power Dissipation @ TC = 25°C @ TC = 85°C @ TC = 25°C @ T C = 110°C
Max
600 480 220 800 800 ± 20 2500 830 430
Units
.irf.
Datasheet pdf
- http://..net/
.Data Sheet.co.kr
Bulletin I27222 03/06
Electrical Characteristics @ TJ = 25°C (unless otherwise specified)
Parameters
VCES V CE(on) V GE(th) I CES I GES
Min Typ Max Units Test Conditions
V 1.13 1.08 4.5 0.025 1.21 1.18 6 1 10 ± 250 m A n A V GE = 0V, I C = 1m A V GE = 15V, I C = 200A V GE = 15V, I C = 200A, T J = 125°C I C = 0.25m A V GE = 0V, V CE = 600V V GE = 0V, V CE = 600V, T J = 125°C V GE = ± 20V
Collector-to-Emitter Breakdown Voltage 600 Collector-to-Emitter Voltage Gate Threshold Voltage Collector-to-Emiter Leakage Current Gate-to-Emitter Leakage Current 3
Switching Characteristics @ TJ = 25°C (unless otherwise specified)
Parameters
Qg Qge Qgc Eon Eoff Ets Eon Eoff Ets Cies Coes Cres Total Gate Charge Gate-Emitter Charge Gate-Collector Charge Turn-On Switching Loss Turn-Off Switching Loss Total Switching Loss Turn-On Switching Loss Turn-Off Switching Loss Total Switching Loss Input Capacitance Output Capacitance Reverse Transfer Capacitance
Min Typ
Max Units Test Conditions n C IC = 200A VCC = 400V VGE = 15V
IC = 200A, VCC = 480V, VGE = 15V Rg = 10Ω free-wheeling DIODE: 30EPH06 IC = 200A, VCC = 480V, VGE =...