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  Datasheet File OCR Text:
 VRRM IFAVM IFRMS IFSM VF0 rF
= = = = = =
400 V 7110 A 11200 A 55000 A 0.74 V 0.026 m
Rectifier Diode
5SDD 71X0400
Doc. No. 5SYA1158-01 July 06
* Optimized for high current rectifiers * Very low on-state voltage * Very low thermal resistance
Blocking
VRRM VRSM IRRM Repetitive peak reverse voltage Maximum peak reverse voltage Repetitive peak reverse current 400 V 450 V 50 mA Half sine wave, tP = 10 ms, f = 50 Hz Half sine wave, tP = 10 ms Tj = 170 C VR = VRRM
Mechanical
FM a Mounting force min. max. Acceleration: Device unclamped Device clamped m DS Da Weight Surface creepage distance Air strike distance 50 m/s2 200 m/s2 0.14 kg 4 mm 4 mm 20 kN 24 kN
Fig. 1 Outline drawing. All dimensions are in millimeters and represent nominal values unless stated otherwise.
ABB Switzerland Ltd, Semiconductors reserves the right to change specifications without notice.
5SDD 71X0400
On-state
IFAVM IFRMS IFSM I2dt Max. average on-state current Max. RMS on-state current Max. peak non-repetitive surge current 7110 A 11200 A 55000 A 60000 A Max. surge current integral tp = tp = 10 ms Before surge 8.3 ms Tj = 170 C 10 ms After surge: Half sine wave, Tc = 85 C
15100 kA2s tp = 15000 kA2s tp =
8.3 ms VR 0V 5000 A Tj = 25 C
VF min VF max VF0 rF
Minimum on-state voltage Maximum on-state voltage Threshold voltage Slope resistance

0.97 V 1.02 V 0.74 V 0.026 m
IF =
Approximation for Tj = 170 C IF = 5 - 15 kA
Thermal characteristics
Tj Tstg Rth(j-c) Operating junction temperature range Storage temperature range Thermal resistance junction to case -40...170 C -40...170 C Rth(c-h) Thermal resistance case to heatsink 20 K/kW Anode side cooled 20 K/kW Cathode side cooled 10 K/kW Double side cooled 10 K/kW Single side cooled 5 K/kW Double side cooled FM = 20...24 kN
ZthJC [K/kW]
12 Double Side Cooled 10 Fm = 20...24 kN
Z th ( j - c )(t) =
i Ri (K/kW) i (s)
5SDD 71X0400
2
4
R i (1 - e - t / i )
3 0.87 0.0034 4 0.55 0.00013
i =1
3.30
8
1 5.28 0.07
6
4
0.039
2
FM = 20... 24 kN Double side cooled
0 10-3
10-2
10-1
t [s] 10
0
Fig. 2 Transient thermal impedance (junction-to-case) vs. time in analytical and graphical forms.
ABB Switzerland Ltd, Semiconductors reserves the right to change specifications without notice.
page 2 of 4 Doc. No. 5SYA1158-01 July 06
5SDD 71X0400
On-state characteristics
IF [A]
20000 18000 16000 14000
Surge current characteristics
IFSM [kA]
100
5SDD 71X0400
i2dt [MA2s]
22
Tj = 170C
90
Tj = 170C
20
IFSM
80 18
12000 10000 8000
min.
max. 70 16
60 6000 4000 2000 0 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4
14
5SDD 71X0400
50
i2t
12
40 10
0
10 10
1
1.6
10
2
VF [V]
t [ms]
Fig. 3
Forward current vs. forward voltage (min. and max. values).
Fig. 4 Surge current and fusing integral vs. pulse width (max. values) for non-repetitive, halfsinusoidal surge current pulses.
Current load capability
I D ( kA )
16
ID vs. ED, 1000 Hz square wave, TC = 100 C
n n n n = 50 = 100 = 500 = 1000 pulses pulses pulses pulses
15
14
13
12
11
10 1 10
Duty cycle ED (%)
100
Fig. 5
DC-output current with single-phase centre tap
ABB Switzerland Ltd, Semiconductors reserves the right to change specifications without notice.
page 3 of 4 Doc. No. 5SYA1158-01 July 06
5SDD 71X0400
5SDD 71X0400
Current load capacity, cont.
ID ( k A )
22 20 18 16 14 12 10 1 10
5SDD 71X0400
ID vs. ED, 1000 Hz square-wave, Th = 60 C
n n n n = 50 = 100 = 500 = 1000 pulses pulses pulses pulses
Duty cycle ED (%) 100
Fig. 6
DC-output current with single-phase centre tap
ID +
Fig. 7 Definition of ED for typical welding sequence
Fig. 8 Definition of ID for single-phase centre tap
ABB Switzerland Ltd, Semiconductors reserves the right to change specifications without notice.
ABB Switzerland Ltd Semiconductors Fabrikstrasse 3 CH-5600 Lenzburg, Switzerland Telephone Fax Email Internet +41 (0)58 586 1419 +41 (0)58 586 1306 abbsem@ch.abb.com www.abb.com/semiconductors
Doc. No. 5SYA1158-01 July 06


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