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STGB7NB60HD Fast Delivery,Good Price
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STGB7NB60HDSTN/a800avaiN-CHANNEL 7A


STGB7NB60HD ,N-CHANNEL 7ASTGB7NB60HD®N-CHANNEL 7A - 600V DPAK PowerMESH™ IGBTTYPE V V ICES CE(sat) CSTGB7NB60HD 600 V < 2. ..
STGB7NC60HD ,N-CHANNEL 7AAPPLICATIONS

STGB7NB60HD
N-CHANNEL 7A
STGB7NB60HD
N-CHANNEL 7A - 600V DPAK
PowerMESH IGBT HIGH INPUT IMPEDANCE
(VOLTAGE DRIVEN) LOW ON-VOLTAGE DROP (Vcesat) LOW GATE CHARGE HIGH CURRENT CAPABILITY VERY HIGH FREQUENCY OPERATION OFF LOSSES INCLUDE TAIL CURRENT CO-PACKAGED WITH TURBOSWITCH
ANTIPARALLEL DIODE SURFACE-MOUNTING D2 PAK (TO-263)
POWER PACKAGE IN TAPE & REEL
(SUFFIX "T4")
DESCRIPTION

Using the latest high voltage technology based
on a patented strip layout, STMicroelectronics
has designed an advanced family of IGBTs, the
PowerMESH IGBTs, with outstanding
perfomances. The suffix "H" identifies a family
optimized to achieve very low switching times for
high frequency applications (<120kHz).
APPLICATIONS
HIGH FREQUENCY MOTOR CONTROLS SMPS AND PFC IN BOTH HARD SWITCH
AND RESONANT TOPOLOGIES
ABSOLUTE MAXIMUM RATINGS

(•) Pulse width limited by safe operating area
June 1999
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THERMAL DATA
ELECTRICAL CHARACTERISTICS (Tj = 25
o C unless otherwise specified)
OFF
ON (∗)
DYNAMIC
SWITCHING ON
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ELECTRICAL CHARACTERISTICS (continued)
SWITCHING OFF
COLLECTOR-EMITTER DIODE

(•) Pulse width limited by max. junction temperature
(�) Include recovery losses on the STTA506 freewheeling diode
(∗) Pulsed: Pulse duration = 300 μs, duty cycle 1.5 %
(**)Losses Include Also The Tail (Jedec Standardization)
Thermal Impedance
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Output Characteristics
Transconductance
Collector-Emitter On Voltage vs Collector Current
Transfer Characteristics
Collector-Emitter On Voltage vs Temperature
Gate Threshold vs Temperature
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Normalized Breakdown Voltage vs Temperature
Gate Charge vs Gate-Emitter Voltage
Total Switching Losses vs Temperature
Capacitance Variations
Total Switching Losses vs Gate Resistance
Total Switching Losses vs Collector Current
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Switching Off Safe Operating Area Diode Forward Voltage
Fig. 1: Gate Charge test Circuit
Fig. 3: Switching Waveforms
Fig. 2: Test Circuit For Inductive Load Switching
STGB7NB60HD

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