IRKD600-20 [INFINEON]

STANDARD DIODES SUPER MAGM-A-part⑩ Power Modules; 标准二极管SUPER MAGM -A- part⑩电源模块
IRKD600-20
型号: IRKD600-20
厂家: Infineon    Infineon
描述:

STANDARD DIODES SUPER MAGM-A-part⑩ Power Modules
标准二极管SUPER MAGM -A- part⑩电源模块

电源电路 整流二极管 局域网
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Bulletin I27402 rev. B 09/06  
IRKD600.. SERIES  
SUPER MAGN-A-pakTM Power Modules  
STANDARD DIODES  
Features  
High current capability  
3000 VRMS isolating voltage with non-toxic substrate  
High surge capability  
600 A  
High voltage ratings up to 2000V  
Industrial standard package  
ULE78996approved  
RoHS Compliant  
Typical Applications  
Rectifying bridge for large motor drives  
Rectifying bridge for large UPS  
Major Ratings and Characteristics  
Parameters  
IF(AV)  
IRKD600..  
600  
Units  
A
@TC  
100  
°C  
IF(RMS)  
942  
A
@TC  
100  
°C  
IFSM  
@50Hz  
@60Hz  
@50Hz  
@60Hz  
19.0  
KA  
KA  
20.1  
2
2
I t  
1805  
1683  
KA s  
2
KA s  
2
2
I t  
18050  
KA s  
VRRM  
TSTG  
TJ  
range  
range  
range  
800 to 2000  
V
-40 to 150  
-40 to 150  
°C  
°C  
1
www.irf.com  
IRKD600.. Series  
Bulletin I27402 rev. B 09/06  
ELECTRICAL SPECIFICATIONS  
Voltage Ratings  
Voltage  
Code  
VRRM , maximum repetitive  
VRSM , maximum non-  
IRRM max.  
Typenumber  
IRKD600..  
peakreversevoltage  
V
repetitivepeakrev.voltage  
V
@ TJ max.  
mA  
08  
800  
900  
12  
16  
20  
1200  
1600  
2000  
1300  
1700  
2100  
50  
ForwardConduction  
Parameter  
IRKD600..  
Units Conditions  
IF(AV)  
Maximum average forward current  
@ Case temperature  
IF(RMS) Maximum RMS forward current  
600  
100  
942  
A
°C  
A
180° conduction, half sine wave  
180° conduction, half sine wave @ TC = 100°C  
IFSM  
Maximum peak, one-cycle forward,  
non-repetitive surge current  
19.0  
20.1  
KA  
t = 10ms No voltage  
t = 8.3ms reapplied  
t = 10ms 100% VRRM  
16.2  
17.2  
t = 8.3ms reapplied  
Sinusoidal half wave,  
I2t  
Maximum I2t for fusing  
1805  
1683  
1319  
1230  
18050  
0.70  
KA2s t = 10ms No voltage Initial TJ = TJ max.  
t = 8.3ms reapplied  
t = 10ms 100% VRRM  
t = 8.3ms reapplied  
I2t  
Maximum I2t for fusing  
KA2s t = 0.1 to 10ms, no voltage reapplied  
VF(TO)1 Low level value of threshold voltage  
VF(TO)2 High level value of threshold voltage  
V
(16.7% x π x IF(AV) < I < π x IF(AV)), TJ = TJ max.  
(I > π x IF(AV)), TJ = TJ max.  
0.77  
r
r
Low level value of forward slope resistance  
High level value of forward slope resistance  
Maximum forward voltage drop  
0.28  
0.25  
1.24  
mΩ (16.7% x π x IF(AV) < I < π x IF(AV)), TJ = TJ max.  
(I > π x IF(AV)), TJ = TJ max.  
f1  
f2  
VFM  
V
Ipk = 1800A, TJ = 25°C, tp = 10ms sine pulse  
Blocking  
Parameter  
IRKD600..  
Units Conditions  
t = 1 s  
mA TJ = TJ max., rated VRRM applied  
VINS  
IRRM  
RMS isolation voltage  
3000  
50  
V
Maximum peak reverse and off-state  
leakage current  
www.irf.com  
2
IRKD600.. Series  
Bulletin I27402 rev. B 09/06  
ThermalandMechanicalSpecifications  
Parameter  
IRKD600..  
- 40 to 150  
- 40 to 150  
0.065  
Units Conditions  
°C  
TJ  
T
Max. junction operating temperature range  
Max. storage temperature range  
stg  
RthJC Max. thermal resistance, junction to  
K/W Per junction, DC operation  
K/W  
case  
RthC-hs Max. thermal resistance, case to  
heatsink  
0.02  
A mounting compound is recommended and the  
Nm  
T
Mounting torque ± 10%SMAP to heatsink  
busbar to SMAP  
6 - 8  
12 - 15  
1500  
torque should be rechecked after a period of 3  
hours  
to allow for the spread of the  
compound  
wt  
Approximate weight  
Case style  
g
SUPERMAGN-A-pak See outline table  
ΔRthJC Conduction  
(The following table shows the increment of thermal resistance RthJC when devices operate at different conduction angles than DC)  
Conductionangle  
Sinusoidalconduction Rectangularconduction Units Conditions  
180°  
120°  
0.009  
0.011  
90°  
0.006  
0.011  
0.014  
0.021  
30°  
0.015  
0.022  
0.037  
K/W  
TJ = TJ max.  
60°  
0.038  
OrderingInformationTable  
1
~
Device Code  
IRK  
D
600  
-
20  
3
4
1
2
1
2
3
4
-
-
-
-
Module type  
+
2
Circuit configuration D = 2 diodes in series  
Currentrating  
Voltage code: Code x 100 = VRRM (See Voltage Ratings Table)  
-
3
www.irf.com  
3
IRKD600.. Series  
Bulletin I27402 rev. B 09/06  
OutlineTable  
All dimensions in millimeters (inches)  
150  
150  
140  
130  
120  
110  
100  
90  
IRKD600.. Series  
IRKD600.. Series  
R
(DC) = 0.065 K/W  
R
(DC) = 0.065 K/ W  
thJC  
thJC  
140  
130  
120  
110  
100  
90  
Conduction Angle  
Conduction Period  
60°  
60°  
30°  
90°  
30°  
90°  
120°  
180°  
120°  
DC  
180°  
80  
80  
0
100 200 300 400 500 600 700  
0
200  
400  
600  
800  
1000  
Average Forward Current (A)  
Average Forward Current (A)  
Fig. 1 - Current Ratings Characteristics  
Fig. 2 - Current Ratings Characteristics  
www.irf.com  
4
IRKD600.. Series  
Bulletin I27402 rev. B 09/06  
1000  
900  
800  
700  
600  
500  
400  
300  
200  
100  
0
700  
600  
500  
400  
300  
200  
100  
0
DC  
180°  
120°  
90°  
60°  
30°  
180°  
120°  
90°  
60°  
30°  
RMS Lim it  
RM S Lim it  
Conduction Period  
Conduction Angle  
IRKD600.. Series  
Per Junc tio n  
T = 150°C  
IRKD600.. Series  
Per Junction  
T = 150°C  
J
J
0
200  
400  
600  
800  
1000  
0
100 200 300 400 500 600  
Average Forward Current (A)  
Average Forward Current (A)  
Fig. 3 - Forward Power Loss Characteristics  
Fig. 4 - Forward Power Loss Characteristics  
20000  
18000  
16000  
14000  
12000  
10000  
8000  
18000  
16000  
14000  
12000  
10000  
8000  
Maximum Non Repetitive Surge Current  
VersusPulse Train Duration.  
At Any Rated Load Condition And With  
Rated V  
Applied Following Surge.  
RRM  
Initial T = 150°C  
J
No Voltage Reapplied  
Initial T = 150°C  
J
@60 Hz 0.0083 s  
@50 Hz 0.0100 s  
Rated V  
Reapplied  
RRM  
IRKD600.. Series  
Per Junc tio n  
6000  
IRKD600.. Series  
Per Junction  
6000  
4000  
4000  
1
10  
100  
0.01  
0.1  
Pulse Train Duration (s)  
Fig. 6 - Maximum Non-Repetitive Surge Current  
1
Number Of Equal Amplitude Half Cycle Current Pulses(N)  
Fig. 5 - Maximum Non-Repetitive Surge Current  
1000  
DC  
800  
0
.
1
2
K
/
W
180°  
(Sine)  
600  
400  
0
.
5
K
/
W
IRKD600.. Series  
Per Junc t ion  
200  
T = 150°C  
J
0
0
200  
400  
600  
800  
10  
Maximum Allowable Ambient Temperature (°C)  
Fig. 7 - Forward Power Loss Characteristics  
0
00 25  
50  
75  
100 125 150  
Total RMSOutput Current (A)  
www.irf.com  
5
IRKD600.. Series  
Bulletin I27402 rev. B 09/06  
3000  
2500  
2000  
1500  
1000  
500  
R
t
h
S
0
A
.
0
180°  
(Sine)  
180°  
3
=
K
0
/
.
0
W
1
K
/
W
0
.
(Rect)  
0
5
-
K
D
e
/
W
l
t
a
R
0
.
0
8
K
/
W
0
.
1
2
K
/
W
2 x IRKD600.. Series  
Sing le Pha se Brid g e  
Connected  
0
.
2
K
/
W
T = 150°C  
J
0
0
200 400 600 800 1000 1200 25  
50  
75  
100 125 150  
Total Output Current (A)  
Maximum Allowable Ambient Temperature (°C)  
Fig. 8 - Forward Power Loss Characteristics  
4500  
4000  
3500  
3000  
2500  
2000  
1500  
1000  
500  
0
.
0
2
120°  
(Rect)  
K
/
W
3 x IRKD600.. Series  
0
.
1
2
K
/
W
Three Phase Bridge  
Connected  
T = 150°C  
J
0
0
300 600 900 1200 1500 1800 25  
50  
75  
100 125 150  
Maximum Allowable Ambient Temperature (°C)  
Total Output Current (A)  
Fig. 9 - Forward Power Loss Characteristics  
10000  
1000  
100  
0.1  
IRKD600.. Series  
Per Junc tio n  
0.01  
T = 25 °C  
J
T = 15 0° C  
J
Steady State Value:  
= 0.065 K/W  
R
thJC  
IRKD600.. Series  
Per Junc tion  
(DC Operation)  
0.001  
0.001  
0.01  
0.1  
1
10  
100  
0.5  
1
1.5  
2
2.5  
3
3.5  
Sq u a re W a v e Pu lse D u r a t io n ( s)  
InstantaneousForward Voltage (V)  
Fig. 10 - Forward Voltage Drop Characteristics  
Fig. 11 - Thermal Impedance ZthJC Characteristic  
www.irf.com  
6
IRKD600.. Series  
Bulletin I27402 rev. B 09/06  
Data and specifications subject to change without notice.  
This product has been designed and qualified for Industrial Level.  
Qualification Standards can be found on IR's Web site.  
IR WORLD HEADQUARTERS: 233 Kansas St., El Segundo, California 90245, USA Tel: (310) 252-7105  
TAC Fax: (310) 252-7309  
Visit us at www.irf.com for sales contact information. 09/06  
www.irf.com  
7

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