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DIODE MODULE. NK3D60 Datasheet

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DIODE MODULE. NK3D60 Datasheet






NK3D60 MODULE. Datasheet pdf. Equivalent




NK3D60 MODULE. Datasheet pdf. Equivalent





Part

NK3D60

Description

THREE PHASE DIODE MODULE



Feature


SEMICONDUCTOR NK3D60..(R) Series RRooHH SS THREE PHASE DIODE MODULE Features 1. NK3D60..(R) series Diode modules are designed for 3 phase rectification 2. Voltage rating up to 1600V 3. High surg e capability Half Bridge 30 21 9 6.5 Ordering code NK3D 60 06 (R) (1) ( 2) (3) (4) (1) For Three Phase Diode modules (2) Maximum average forward cu rrent , A (3) Vol.
Manufacture

nELL

Datasheet
Download NK3D60 Datasheet


nELL NK3D60

NK3D60; tage code , V ( code x 10 = / VRRM ) (4) Blank - for common cathode to base pla te R- for common anode to base plate 9 3.5 80 3 screws M5 3 21 26.5max 12.5 Base Plate NK3D NK3D..(R) Base Plate Electrical Characteristics Parameter IF(AV) Average forward current IF(RMS ) R.M.S. Forward current VRRM Repetit ive peak reverse voltage IRRM Repetit ive peak reverse c.


nELL NK3D60

urrent IFSM Peak one-cycle surge ( non -repetitive forward current ) I 2 t Max. Permissible surge energy VFM Pea k forward voltage drop VFO Forward co nduction threshold voltage r f Forward conduction slope resistance Tstg Sto rage temperature range Rth(J-C) Therma l resistance Wt Approximate weight Bu sbar to module ( M 5 ) T Module to heat sink ( M 6 ) 16.5.


nELL NK3D60

23 23 2- 6.5 All dimensions in mill imeters(inches) Condition 180 half sin e wave , 50 Hz Single side cooled , Tc= 115 C Single side cooled , Tc=115 C tp= 10 ms VRMS = VRRM x 1.1 VR = VRRM Max. Value 60 94 200 to 1600 8 10 ms durat ion VR = 0.6 VRRM IFM = 180A 1200 7 1. 6 0.8 4.78 -40 to 150 Single side co oled 0.7 170 A mounting compound is r ecommened. Torque .

Part

NK3D60

Description

THREE PHASE DIODE MODULE



Feature


SEMICONDUCTOR NK3D60..(R) Series RRooHH SS THREE PHASE DIODE MODULE Features 1. NK3D60..(R) series Diode modules are designed for 3 phase rectification 2. Voltage rating up to 1600V 3. High surg e capability Half Bridge 30 21 9 6.5 Ordering code NK3D 60 06 (R) (1) ( 2) (3) (4) (1) For Three Phase Diode modules (2) Maximum average forward cu rrent , A (3) Vol.
Manufacture

nELL

Datasheet
Download NK3D60 Datasheet




 NK3D60
SEMICONDUCTOR
NK3D60..(R) Series RRooHHSS
THREE PHASE DIODE MODULE
Features
1. NK3D60..(R) series Diode modules are
designed for 3 phase rectification
2. Voltage rating up to 1600V
3. High surge capability
Half Bridge
Ordering code
NK3D 60
06 (R)
(1) (2)
(3) (4)
(1) For Three Phase Diode modules
(2) Maximum average forward current , A
(3) Voltage code , V ( code x 10 = / VRRM )
(4) Blank - for common cathode to base plate
R- for common anode to base plate
93.5
80
3 screws M5
3 21
Base Plate
NK3D
NK3D..(R)
Base Plate
Electrical Characteristics
Parameter
IF(AV)
Average forward current
IF(RMS) R.M.S. Forward current
VRRM
Repetitive peak reverse voltage
IRRM
Repetitive peak reverse current
IFSM
Peak one-cycle surge
( non-repetitive forward current )
I
2
t
Max. Permissible surge energy
VFM
Peak forward voltage drop
VFO
Forward conduction threshold voltage
r f Forward conduction slope resistance
Tstg
Storage temperature range
Rth(J-C) Thermal resistance
Wt Approximate weight
Busbar to module ( M 5 )
T
Module to heatsink ( M 6 )
16.5
23
23
2- 6.5
All dimensions in millimeters(inches)
Condition
180 half sine wave , 50 Hz
Single side cooled , Tc=115 C
Single side cooled , Tc=115 C
tp=10 ms VRMS = VRRM x 1.1
VR = VRRM
Max. Value
60
94
200 to 1600
8
10 ms duration
VR = 0.6 VRRM
IFM = 180A
1200
7
1.6
0.8
4.78
-40 to 150
Single side cooled
0.7
170
A mounting compound is recommened.
Torque should be rechecked after a
period of 3 hours.
2.7
2.7
Unit
A
A
V
mA
A
KA2 S
V
V
mΩ
C
C/ W
g
NM
NM




 NK3D60
SEMICONDUCTOR
NK3D60..(R) Series RRooHHSS
Fig.1
Peak forward voltage Vs. Peak forward current
3
2.5
Tj=150 C
2
1.5
1
0.5
10
100 1000
Instantaneous forward current , A
Fig.2
Max.junction to c٠٥a٠s.e thermal impedance Vs. Time
0.5
0.4
0.3
0.2
0.1
0
0.001
0.01
0.1
Time , S
1
10
Fig.3
Max.power dissipation Vs. Mean forward current
120
0 180
90
Conduction Angle
1 phase
3 phase
6 phase
60
30
0
0 20 40 60 80
Mean forward current , A
Fig.4
Max.case temperature Vs. Mean forward current
160
140 0 180
120
Conduction Angle
100
80
60
40
20 6 phase 3 phase1 phase
0
0 30 60 90 120 150
Mean forward current , A
Fig.5
Max.power dissipation Vs. Mean forward current
90
360 DC
1 phase
60 Conduction Angle
3 phase
6 phase
30
0
0 20 40 60 80
Mean forward current , A
Fig.6
Max.case temperature Vs. Mean forward current
160
360
120
Conduction Angle
80
40
0
0
6 phase 3 phase1 phase DC
70 140 210 280
Mean forward current , A
350







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