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 VBE 26-12NO7
ECO-PAC TM Single Phase Rectifier Bridge
with Fast Recovery Epitaxial Diodes (FRED)
IdAV = 32 A VRRM = 1200 V trr = 40 ns
VRSM V 1200
VRRM V 1200
Typ
A N
D
VBE 26-12NO7
K
Symbol IdAV x IdAVM IFSM
Conditions TC = 85C, module TVJ = 45C VR = 0 TVJ = TVJM VR = 0 t = 10 ms (50 Hz), sine t = 8.3 ms (60 Hz), sine t = 10 ms (50 Hz), sine t = 8.3 ms (60 Hz), sine t = 10 ms (50 Hz), sine t = 8.3 ms (60 Hz), sine t = 10 ms (50 Hz), sine t = 8.3 ms (60 Hz), sine
Maximum Ratings 32 90 90 100 75 85 40 40 30 30 -40...+150 150 -40...+125 A A A A A A A2s A2s A2s A2s C C C V~ V~
Features * Package with DCB ceramic base plate in low profile * Isolation voltage 3000 V~ * Planar passivated chips * Low forward voltage drop * Leads suitable for PC board soldering Applications * Supplies for DC power equipment * Input and output rectifiers for high frequency * Battery DC power supplies * Field supply for DC motors Advantages * Space and weight savings * Improved temperature and power cycling capability * Small and light weight * Low noise switching Dimensions in mm (1 mm = 0.0394")
I2t
TVJ = 45C VR = 0 TVJ = TVJM VR = 0
TVJ TVJM Tstg VISOL Md Weight Symbol IR VF VT0 rT RthJC RthCH IRM trr a dS dA 50/60 Hz, RMS IISOL 1 mA t = 1 min t=1s
3000 3600
Mounting torque (M4) typ. Conditions VR = VRRM VR = VRRM IF = 15 A TVJ = 25C TVJ = TVJM TVJ = 25C
1.5-2/14-18 Nm/lb.in. 19 g Characteristic Values
typ. max.
0.1 0.5 2.73
mA mA V
for power-loss calculations only per diode; DC current per diode, DC current, typ. IF = 25 A, -diF/dt = 100 A/s VR = 100 V, L = 0.05 mH, TVJ = 100C IF = 1 A; -di/dt = 100 A/s; VR = 30 V, TVJ = 25C Max. allowable acceleration creeping distance on surface creepage distance in air 5 40
1.32 V 30 mW 1.6 K/W 0.3 K/W 9.7 tbd A ns m/s2 mm mm
50 11.2 9.7
Data according to IEC 60747 refer to a single diode unless otherwise stated x for resistive load at bridge output.
IXYS reserves the right to change limits, test conditions and dimensions.
(c) 2000 IXYS All rights reserved
1-2
032
VBE 26-12NO7
40 A 35 IF 30 25 20 15 10 5 0 0 1 2 3 VF V 4
TVJ=150C TVJ=100C TVJ= 25C
3.0 2.5 Qr 2.0 1.5 1.0 0.5
mC VVJ= 600V R
T = 100C
50
TVJ= 100C A VR = 600V
IRM
IF= 30A IF= 15A IF= 7.5A
40
30
20
IF= 30A IF= 15A IF= 7.5A
10
0.0 100
0 A/ms 1000 -diF/dt 0 200 400 600 A/ms 1000 800 -diF/dt
Fig. 1 Forward current IF versus VF
Fig. 2 Reverse recovery charge Qr versus -diF/dt
180 ns
TVJ= 100C VR = 600V
Fig. 3 Peak reverse current IRM versus -diF/dt
120 V VFR 80
TVJ= 100C IF = 15A VFR tfr
2.0
1.2 s tfr 0.8
1.5 Kf 1.0
I RM
trr
160
IF= 30A IF= 15A IF= 7.5A
140
40 0.5
Qr
0.4
120
0.0 0 40 80 120 C 160 TVJ
100 0 200 400 600 -diF/dt 800 A/ms 1000
0 0 200 400
0.0 600 A/ms 1000 800 diF/dt
Fig. 4 Dynamic parameters Qr, IRM versus TVJ
10 K/W 1 ZthJC 0.1
Fig. 5 Recovery time trr versus -diF/dt
Fig. 6 Peak forward voltage VFR and tfr versus diF/dt Constants for ZthJC calculation: i 1 2 3 4 Rthi (K/W) 0.5464 0.2104 0.0432 0.8 ti (s) 0.0052 0.0003 0.0004 0.0092
0.01
VBE 26-12NO7 / VUE 35-12NO7
0.001 0.0001
0.001
0.01
0.1
1 t
s
10
Fig. 7 Transient thermal resistance junction to case
NOTE: Fig. 2 to Fig. 6 shows typical values
(c) 2000 IXYS All rights reserved
2-2


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