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GPTP3127_17 Datasheet, PDF (1/2 Pages) Green Power Solutions srl – PHASE CONTROLLED SCR
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http://gpsemi.it/pdf/GPTP3127.pdf
GPTP3127
PHASE CONTROLLED SCR
High reliability operation
DC power supply
AC drives
VOLTAGE UP TO
AVERAGE CURRENT
SURGE CURRENT
BLOCKING CHARACTERISTICS
Characteristic
VRRM
Repetitive peak reverse voltage
Conditions
VRSM
VDRM
IDRM
IRRM
Non-repetitive peak reverse voltage
Repetitive peak off-state voltage
Repetitive peak off-state current, max.
Repetitive peak reverse current, max.
VDRM, single phase, half wave, Tj = Tjmax
VRRM, single phase, half wave, Tj = Tjmax
ON-STATE CHARACTERISTICS
IT(AV)
IT(RMS)
ITSM
I²t
VT(TO)
rT
VTM
IH
IL
Average on-state current
R.M.S. on-state current
Surge on-state current
I² t for fusing coordination
Threshold voltage
On-state slope resistance
Peak on-state voltage, max
Holding current, max
Latching current, typ
Sine wave,180° conduction, Th = 55 °C
Sine wave,180° conduction, Th = 55 °C
Non rep. half sine wave, 50 Hz, VR = 0 V, Tj = Tjmax
Tj = Tjmax
Tj = Tjmax
On-state current IT = 2900 A , Tj = 25 °C
Tj = 25 °C
Tj = 25 °C
TRIGGERING CHARACTERISTICS
VGT
Gate trigger voltage
IGT
Gate trigger current
VGD
Non-trigger voltage
PGM
Peak gate power dissipation
PG(AV)
Average gate power dissipation
IFGM
Peak gate current
VFGM
VRGM
Peak gate voltage (forward)
Peak gate voltage (reverse)
Tj = 25 °C, VD = 5 V
Tj = 25 °C, VD = 5 V
VD = 67% VRRM, Tj = Tjmax
Pulse width 100 µs
SWITCHING CHARACTERISTICS
di/dt
Critical rate of rise of on-state current
dV/dt
Critical rate of rise of off-state voltage
tq
Turn-off time, typ
Tj = Tjmax
Tj = Tjmax
Tj = Tjmax, IT = 1000 A, di/dt = -20 A/µs
VR = 50 V, VD = 67% VDRM, dV/dt = 20 V/µs
THERMAL AND MECHANICAL CHARACTERISTICS
Rth(j-c)
Rth(c-h)
Tjmax
Tstg
F
Thermal resistance (junction to case)
Thermal resistance (case to heatsink)
Max operating junction temperature
Storage temperature
Clamping force
Mass
Double side cooled
Double side cooled
Document GPTP3127T002
2600 V
1270 A
19 kA
Value
2600 V
2700 V
2600 V
50 mA
50 mA
1270
1995
19
1805
1.15
0.31
2.0
300
700
A
A
kA
kA²s
V
mW
V
mA
mA
3.5 V
300 mA
0.25 V
150 W
2W
10 A
30 V
5V
200 A/µs
1000 V/µs
µs
0.020
0.006
125
-40 / 125
18 / 20
500
°C/W
°C/W
°C
°C
kN
g