50 Seaview Blvd. Port Washington, NY 11050-4618 PH.(516)625-1313 FAX(516)625-8845 E-mail: semi@sanrex.com
DD70F/KD70F
DIODE MODULE
80±0.2
M5X10
92
20
25
12.5
12
2020
2- 6
6.5
19.5 4.0
31max
Unita
Symbol Item Ratings
DD70F40
400
480
DD70F80
800
960
DD70F120 DD70F160
1200
1300 1600
1700
Unit
VRRM
VRSM
Repetitive Peak Reverse Voltage
Non-Repetitive Peak Reverse Voltage
V
V
Symbol Item
Average Forward Current
Conditions Ratings Unit
AIFAV
Single phase, half wave, 180°conduction, Tc94
70
IF (RMS) R.M.S. Forward Current
Single phase, half wave, 180°conduction, Tc94
110 A
IFSM Surge Forward Current 1
2 cycle, 50/60HZ, peak value, non-repetitive 1800/1950 A
I2tI2t Value for one cycle of surge current 16200 A2S
VISO
Isolation Breakdown VoltageR.M.S.
A.C.1minute 2500 V
Tj Junction Temperature 40 to 125
Tstg Storage Temperature
Mounting
Torque
40 to 125
Mounting
M5
TerminalM5
Mass
Recommended Value 1.5-2.515-25
Recommended Value 1.5-2.515-25
2.728
2.728
Nm
(㎏fB
g170
Electrical Characteristics
Symbol
IRRM
Item
Repetitive Peak Reverse Current, max.
Conditions
at VDRM, single phase, half wave. Tj125
Ratings
15
1.40
0.33
Unit
mA
VFM Forward Voltage Drop, max.
Forward current 220ATj25℃,Inst. measurement
V
Rthj-cThermal Impedance, max. Junction to case /W
Power Diode Module DD70F series are designed for various rectifier circuits. DD70F
has two diode chips connected in series in 25mm (1inch) width package and the mounting
base is elctrically isolated from elements for simple heatsink construction. Wide voltage
rating up to, 1600V is avaiable for various input voltage.
Isolated mounting base
Two elements in a package for simple (single and three phase) bridge
connections
Highly reliable glass passivated chips
High surge current capability
Applications
Various rectifiers, Battery chargers, DC motor drives
UL;E76102M
Maximum Ratings Tj25unless otherwise specified
3 2 1
1
DD
KD
3
2
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SanRex 50 Seaview Blvd. Port Washington, NY 11050-4618 PH.(516)625-1313 FAX(516)625-8845 E-mail: semi@sanrex.com
DD70F/KD70F
MaximumForwardCharacteristics
ForwardVoltageDrop(V)
5
5
5
2
2
0
3
2
1
321 4 5
ForwardCurrent(A)
AverageForwardCurrentvs.
PowerDissipation
AverageForwardCurrent(A)
0
0
0
0
0
0
0
0
0
0
0 0 00 000 0 0000
PowerDissipationPav(W)
SinglePhase
ThreePhase
Max.
Peroneelement
D.C.
AverageForwardCurrentvs.
AllowableCaseTemperature
AverageForwardCurrent(A)
0
0
0
0
0
0
0
0
0
0 00 0000
0 000 00
AllowableCaseTemperatureTc(℃)
Peroneelement
D.C.
SinglePhase
ThreePhase
CycleSurgeForwardCurrentRating
(Non-Repetitive)
Time(Cycles)
2 5 2 5
0
0
0
0
0
0
1
2
SurgeForwardCurrent(A)
Peroneelement
=2start
60Hz
50Hz
TransientThermalImpedance
Timet(sec)
0.4
0.5
0.2
0.1
0.3
0
3
-2
-1
4
0
1
2
3
TransientThermalImpedanceθj-c(℃/W
Peroneelement
JunctiontoCase
Id(Av)
OutputCurrent
OutputCurrent(A)
0
0 00
0
0 00 0
B2TwoPluseBridge
connection
0
0
0
0
0
0
0
AmbientTemperature(℃)
TotalPowerDissipation(W)
AllowableCaseTemperature(℃)
Rth:1.0/W
Rth:0.8/W
Rth:0.6/W
Rth:0.4/W
Rth:0.2/W
Rth:0.1/W
B2
0
5
0
0
0
Id(AV)
OutputCurrent
OutputCurrent(A)
B6SixpulseBridge
connection
AmbientTemperature(℃)
0
0 0 00 0 0 0
0
0
0
0
0
0
0
TotalPowerDissipation(W)
AllowableCaseTemperature(℃)
Rth:0.8/W
Rth:0.6/W
Rth:0.4/W
Rth:0.2/W
Rth:0.1/W
B6
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