50 Seaview Blvd. Port Washington, NY 11050-4618 PH.(516)625-1313 FAX(516)625-8845 E-mail: semi@sanrex.com
DD160KB
DIODE MODULE
Maximum Ratings Tj25unless otherwise specified
Symbol Item Ratings
DD160KB40
400
480
DD160KB80
800
960
Unit
VRRM
VRSM
Repetitive Peak Reverse Voltage
Non-Repetitive Peak Reverse Voltage
DD160KB120
1200
1300
DD160KB160
1600
1700 V
V
Symbol Item
Average Forward Current
Conditions Ratings Unit
AIFAV
Single phase, half wave, 180conduction, Tc=90
160
IFRMS
IFSM
R.M.S. Forward Current
Surge Forward Current
Single phase, half wave, 180conduction, Tc=90
12cycle, 60HZ, peak value, non-repetitive 250
3200 A
A
I2tI2tValue for one cycle of surge current 42600 A2S
Tj
Operating Junction Temperature
40 to 150
Tstg Storage Temperature 40 to 125
V
ISO
Isolation Breakdown VoltageR.M.S.
Mounting
Torque
A.C. 1minute 2500 V
Mounting
M6
Terminal
M5
Mass
Recommended Value 2.5-3.925-40
Recommended Value 1.5-2.515-25
4.748
2.728
Nm
(㎏fB
gTypical Value 170
93.5max
80
26max
13
3 2 1
2-φ6.5
3-M5
23 23
16.5
30max
21
Unit:㎜
Electrical Characteristics
Symbol
IRRM
Item
Repetitive Peak Reverse Current, max.
Conditions
Tj150℃,VRVRRM
Ratings
30
1.35
0.30
Unit
mA
VFM Forward Voltage Drop, max. Forward current 500A, Inst measurement V
Rthj-cThermal Impedance, max. Junction to case /W
Power Diode Module DD160KB Series are designed for various rectifier circuits.
DD160KB has two diode chips connected in series and the mounting base is electrically
isolated from elements for simple heatsink construction. Wide voltage rating up to,
1600V is available for various input voltages.
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
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SanRex
®
SanRex 50 Seaview Blvd. Port Washington, NY 11050-4618 PH.(516)625-1313 FAX(516)625-8845 E-mail: semi@sanrex.com
DD160KB
MaximumForwardCharacteristics
ForwardVoltageDrop(V)
20
200
2000
50
500
5000
10
100
1000
10000
0.6 0.8 1.0 1.2 4 1.6 1.8 2.0
ForwardCurrent(A)
Peroneelement
Tj=
Maximum
AverageForwardCurrentvs.
PowerDissipation
AverageForwardCurrent(A)
350
300
250
200
100
150
50
0
0 0 300 200 100 150 250
PowerDissipationPav(W)
ThreePhase
SinglePhase
D.C.
Peroneelement
AverageForwardCurrent(A)
AverageForwardCurrentvs.
AllowableCaseTemperature
150
120
30
60
90
50 100 200 250 300 150
AllowableCaseTemperatureTc
Peroneelement
D.C.
SinglePhase
ThreePhase
CycleSurgeForwardCurrentRating
(Non-Repetitive)
Time(Cycles)
3500
3000
2500
2000
1000
1500
500
0 521 20 50 100
10
SurgeForwardCurrent(A)
Tj=25 start
60 H z
Peroneelement
Tj = Start
0.4
0.3
0.2
0.1
0.002 005 0.01 0.02 05 10.2 0.50.001
0
TransientThermalImpedance
Timet(sec)
5
2
20
10
2 50
TransientThermalImpedanceθj-c/W)
JunctiontoCase Peroneelement
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