IXYS VBE26-12NO7 Datasheet

VBE 26-12NO7
ECO-PAC
TM
Single Phase Rectifier Bridge
with Fast Recovery Epitaxial Diodes (FRED)
V
RSM
V V
1200 1200 VBE 26-12NO7
Symbol Conditions Maximum Ratings I
TC = 85°C, module 32 A
dAV
I
dAVM
I
FSM
I2t TVJ = 45°C t = 10 ms (50 Hz), sine 40 A2s
T
VJ
T
VJM
T
stg
V
ISOL
M
d
Weight typ. 19 g
V
RRM
Typ
A N
90 A
TVJ = 45°C t = 10 ms (50 Hz), sine 90 A VR = 0 t = 8.3 ms (60 Hz), sine 100 A
= T
T
VJ
VJM
VR = 0 t = 8.3 ms (60 Hz), sine 85 A
t = 10 ms (50 Hz), sine 75 A
VR = 0 t = 8.3 ms (60 Hz), sine 40 A2s TVJ = T
VJM
VR = 0 t = 8.3 ms (60 Hz), sine 30 A2s
t = 10 ms (50 Hz), sine 30 A2s
-40...+150 °C 150 °C
-40...+125 °C
50/60 Hz, RMS t = 1 min 3000 V~ I
£ 1 mA t = 1 s 3600 V~
ISOL
Mounting torque (M4) 1.5-2/14-18 Nm/lb.in.
I
V
RRM
t
rr
D
K
= 32 A = 1200 V = 40 ns
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
Symbol Conditions Characteristic Values
typ. max.
I
R
V
F
V
T0
r
T
R
thJC
R
thCH
I
RM
t
rr
VR = V VR = V
RRM RRM
TVJ = 25°C 0.1 mA TVJ = T
VJM
0.5 mA IF = 15 A TVJ = 25°C 2.73 V for power-loss calculations only 1.32 V
30 mW
per diode; DC current 1.6 K/W per diode, DC current, typ. 0.3 K/W
IF = 25 A, -diF/dt = 100 A/µs 5 9.7 A VR = 100 V, L = 0.05 mH, TVJ = 100°C IF = 1 A; -di/dt = 100 A/µs; VR = 30 V, TVJ = 25°C 40 tbd ns
a Max. allowable acceleration 50 m/s d
S
d
A
Data according to IEC 60747 refer to a single diode unless otherwise stated for resistive load at bridge output.
IXYS reserves the right to change limits, test conditions and dimensions.
creeping distance on surface 11.2 mm creepage distance in air 9.7 mm
© 2000 IXYS All rights reserved
Dimensions in mm (1 mm = 0.0394")
2
032
1 - 2
VBE 26-12NO7
40
A
35 30
I
F
25 20
TVJ=150°C TVJ=100°C TVJ= 25°C
15 10
5 0
01234
V
V
F
Fig. 1 Forward current IF versus V
2.0
1.5
K
f
1.0
0.5
I
RM
Q
r
Q
3.0
m
C
2.5
r
2.0
1.5
TVJ= 100°C VR = 600V
IF= 30A IF= 15A IF= 7.5A
I
RM
50
A
40
30
20
TVJ= 100°C VR = 600V
IF= 30A IF= 15A IF= 7.5A
1.0
0.5
0.0 100 1000
A/ms
-diF/dt
F
Fig. 2 Reverse recovery charge Q
versus -diF/dt
180
ns
160
t
rr
TVJ= 100°C VR = 600V
r
IF= 30A
140
IF= 15A IF= 7.5A
10
0
200 600 10000 400 800
-di
Fig. 3 Peak reverse current I
versus -diF/dt
120
V
V
FR
80
t
fr
40
TVJ= 100°C IF = 15A
V
F
/dt
FR
A/ms
RM
1.2
µs
t
fr
0.8
0.4
120
0.0 0 40 80 120 160
T
VJ
Fig. 4 Dynamic parameters Qr, I
versus T
VJ
°C
RM
100
200 600 10000 400 800
-di
A/ms
/dt
F
Fig. 5 Recovery time trr versus -diF/dt Fig. 6 Peak forward voltage VFR and t
10
K/W
1
Z
thJC
0.1
0.01
0.001
0.0001 0.001 0.01 0.1 1 10
VBE 26-12NO7 / VUE 35-12NO7
s
t
Fig. 7 Transient thermal resistance junction to case
NOTE: Fig. 2 to Fig. 6 shows typical values
© 2000 IXYS All rights reserved
0
0 200 400 600 800 1000
A/ms
diF/dt
versus diF/dt
Constants for Z
iR
calculation:
thJC
(K/W) ti (s)
thi
1 0.5464 0.0052 2 0.2104 0.0003 3 0.0432 0.0004 4 0.8 0.0092
0.0
fr
2 - 2
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