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 VDSM ITAVM ITRMS ITSM VT0 rT
= = = = = =
2800 V 5490 A 8625 A 75000 A 0.86 V 0.070 m
Doc. No. 5SYA1050-01 Sep.00
Phase Control Thyristor
5STP 45Q2800
* Patented free-floating silicon technology * Low on-state and switching losses * Designed for traction, energy and industrial applications * Optimum power handling capability * Interdigitated amplifying gate.
Blocking
Part Number VDRM VRSM1 IDRM IRRM dV/dtcrit VRRM 5STP 45Q2800 2800 V 3000 V 5STP 45Q2600 2600 V 2800 V 400 mA 400 mA 1000 V/s 5STP 45Q2200 2200 V 2400 V Conditions f = 50 Hz, tp = 10ms tp = 5 ms, single pulse VDRM VRRM @ Exp. to 0.67xVDRM Tj = 125C
Mechanical data
FM Mounting force nom. min. max. a Acceleration Device unclamped Device clamped m DS Da Weight Surface creepage distance Air strike distance 50 m/s 2.1 kg 36 mm 15 mm
2
90 kN 81 kN 108 kN
100 m/s2
ABB Semiconductors AG reserves the right to change specifications without notice.
5STP 45Q2800
On-state
ITAVM ITRMS ITSM I2t Max. average on-state current Max. RMS on-state current Max. peak non-repetitive surge current Limiting load integral 5490 A 8625 A 75000 A 79000 A 28125 kA2s 25900 kA2s VT VT0 rT IH On-state voltage Threshold voltage Slope resistance Holding current 1.29 V 0.86 V 0.070 m 40-100 mA 20-75 mA IL Latching current 100-500 mA 150-350 mA tp tp tp tp IT IT Tj Tj Tj Tj = = = = = = 10 ms 8.3 ms 10 ms 8.3 ms 6000 A 3000 - 9000 A Tj = 125C Tj = 125C Half sine wave, TC = 70C
After surge: VD = VR = 0V
= 25C = 125C = 25C = 125C
Switching
di/dtcrit Critical rate of rise of on-state current 250 A/s 500 A/s Cont. 60 sec. VD 0.67VDRM ITRM = IFG td tq Delay time Turn-off time 3.0 s 400 s VD = 0.4VDRM IFG = = Tj = 125C 3000 A f = 50 Hz 2.0 A tr = 0.5 s 2.0 A tr = 0.5 s 3000 A Tj = 125C 200 V -5 A/s
VD 0.67VDRM ITRM = dvD/dt = 20V/s VR >
Qrr
Recovery charge
min max
4200 As 6500 As
diT/dt =
Triggering
VGT IGT VGD IGD VFGM IFGM VRGM PG Gate trigger voltage Gate trigger current Gate non-trigger voltage Gate non-trigger current Peak forward gate voltage Peak forward gate current Peak reverse gate voltage Maximum gate power loss 2.6 V Tj = 25C 400 mA Tj = 25C 0.3 V 10 mA 12 V 10 A 10 V 3W VD VD = 0.4VDRM = 0.4VDRM
ABB Semiconductors AG reserves the right to change specifications without notice. 2 of 6
Doc. No. 5SYA1050-01 Sep.00
5STP 45Q2800
Thermal
Tj max Tj stg RthJC Max. junction temperature Storage temperature range Thermal resistance junction to case 125C -40...150C 10 K/kW 10 K/kW 5 K/kW RthCH Thermal resistance case to heat sink
Analytical function for transient thermal impedance:
Anode side cooled Cathode side cooled Double side cooled Single side cooled Double side cooled
2 K/kW 1 K/kW
ZthJC(t) = Ri(1 - e -t/ i )
i =1
i Ri(K/kW) i(s) 1 3.27 0.5237 2 0.736 0.1082 3 0.661 0.02 4 0.312 0.0075
Fig. 1 Transient thermal impedance junction to case. On-state characteristic model:
VT = A + B iT + C ln(iT + 1) + D IT Valid for iT = 500 - 15000 A
n
A -0.096289
B 0.000051
C 0.135731
D -0.001358
Fig 2. On-state characteristics.
Fig. 3 On state characteristics.
ABB Semiconductors AG reserves the right to change specifications without notice. 3 of 6
Doc. No. 5SYA1050-01 Sep.00
5STP 45Q2800
Tcase (C)
130 Double-sided cooling 125 120 115 110 105 100 95 90 85 80 75 70 0 1000 2000 3000 4000 5000 6000 7000 8000 DC 180 rectangular 180 sine 120 rectangular
ITAV (A)
Fig. 4
On-state power dissipation vs. mean onstate current. Turn-on losses excluded.
Fig. 5
Max. permissible case temperature vs. mean on-state current.
Fig. 6
Surge on-state current vs. pulse length. Half-sine wave.
Fig. 7
Surge on-state current vs. number of pulses. Half-sine wave, 10 ms, 50Hz.
ABB Semiconductors AG reserves the right to change specifications without notice. 4 of 6
Doc. No. 5SYA1050-01 Sep.00
5STP 45Q2800
5STP 45Q2800
Fig. 8
Gate trigger characteristics.
Fig. 9
Max. peak gate power loss.
Fig. 10
Recovery charge vs. decay rate of on-state current.
Fig. 11
Peak reverse recovery current vs. decay rate of on-state current.
Turn -off time, typical parameter relationship.
Fig. 12
tq/tq1 = f1(Tj)
Fig. 13
tq/tq1 = f2(-di/dt)
Fig. 14
tq/tq1 = f3(dv/dt)
tq = tq1 * tq/tq1 f1(Tj) * tq/tq1 f2(-di/dt) * tq/tq1 f3(dv/dt)
tq1 :at normalized values (see page 2) tq : at varying conditions
ABB Semiconductors AG reserves the right to change specifications without notice. 5 of 6
Doc. No. 5SYA1050-01 Sep.00
5STP 45Q2800
Turn-on and Turn-off losses
Fig. 15
W on = f(IT, tP), Tj = 125C. Half sinusoidal waves.
Fig. 16
W on = f(IT, di/dt), Tj = 125C. Rectangular waves.
Fig. 17
W off = f(V0,IT), Tj = 125C. Half sinusoidal waves. tP = 10 ms.
Fig. 18
W off = f(V0,di/dt), Tj = 125C. Rectangular waves.
ABB Semiconductors reserves the right to change specifications without notice.
ABB Semiconductors AG Fabrikstrasse 3 CH-5600 Lenzburg, Switzerland Telephone +41 (0)62 888 6419 Fax +41 (0)62 888 6306 Email Info@ch.abb.com Internet www.abbsem.com
Doc. No. 5SYA1050-01 Sep.00


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