SD150N12MC [INFINEON]

STANDARD RECOVERY DIODES; 标准恢复二极管
SD150N12MC
型号: SD150N12MC
厂家: Infineon    Infineon
描述:

STANDARD RECOVERY DIODES
标准恢复二极管

二极管
文件: 总8页 (文件大小:190K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Bulletin I2077 rev. B 11/01  
SD150N/R SERIES  
Stud Version  
STANDARD RECOVERY DIODES  
Features  
Wide current range  
High voltage ratings up to 2500V  
High surge current capabilities  
Stud cathode and stud anode version  
Standard JEDEC types  
150A  
Typical Applications  
Converters  
Power supplies  
Machine tool controls  
High power drives  
Medium traction applications  
Major Ratings and Characteristics  
Parameters  
SD150N/R  
Units  
400 to 2000  
2500  
IF(AV)  
150  
125  
235  
200  
110  
314  
A
°C  
A
@ TC  
IF(RMS)  
IFSM  
@50Hz  
@ 60Hz  
@50Hz  
@ 60Hz  
3600  
3770  
4700  
4920  
110  
A
A
I2t  
65  
KA2s  
KA2s  
V
59  
101  
case style  
DO-205AC (DO-30)  
VRRM range  
TJ  
400 to 2000  
- 40 to 180  
2500  
150  
°C  
www.irf.com  
1
SD150N/R Series  
Bulletin I2077 rev. B 11/01  
ELECTRICAL SPECIFICATIONS  
Voltage Ratings  
Voltage  
Code  
VRRM , maximum repetitive  
VRSM , maximum non-  
IRRM max.  
Type number  
peak reverse voltage  
repetitive peak rev. voltage  
@ T = TJ max.  
V
V
J mA  
04  
400  
500  
08  
12  
16  
800  
1200  
1600  
900  
1300  
1700  
SD150N/R  
15  
20  
25  
2000  
2500  
2100  
2600  
Forward Conduction  
Parameter  
SD150N/R  
Units Conditions  
IF(AV) Max. average forward current  
@ Case temperature  
150  
125  
200  
110  
235  
A
°C  
A
°C  
A
180° conduction, half sine wave  
180° conduction, half sine wave  
DC @ 113°C case temperature  
IF(AV) Max. average forward current  
@ Case temperature  
IF(RMS) Max. RMS forward current  
IFSM  
Max. peak, one-cycle forward,  
non-repetitive surge current  
3600  
3770  
3000  
3170  
65  
t = 10ms  
t = 8.3ms reapplied  
t = 10ms 100% VRRM  
t = 8.3ms reapplied  
t = 10ms No voltage  
t = 8.3ms reapplied  
t = 10ms 100% VRRM  
t = 8.3ms reapplied  
No voltage  
A
Sinusoidal half wave,  
Initial TJ = TJ max.  
I2t  
Maximum I2t for fusing  
59  
KA2s  
46  
42  
I2t  
Maximum I2t for fusing  
650  
KA2s t = 0.1 to 10ms, no voltage reapplied  
VF(TO)1 Low level value of threshold  
0.93  
1.06  
1.27  
(16.7% x π x IF(AV) < I < π x IF(AV)), TJ = TJ max.  
voltage  
V
VF(TO)2 High level value of threshold  
voltage  
(I > π x IF(AV)),TJ = TJ max.  
r 1  
f
Low level value of forward  
slope resistance  
(16.7% x π x IF(AV) < I < π x IF(AV)), TJ = TJ max.  
mΩ  
r 2  
f
High level value of forward  
slope resistance  
1.04  
1.5  
(I > π x IF(AV)),TJ = TJ max.  
VFM  
Max. forward voltage drop  
V
I
= 470A, TJ = TJ max, t = 10ms sinusoidal wave  
p
pk  
2
www.irf.com  
SD150N/R Series  
Bulletin I2077 rev. B 11/01  
Thermal and Mechanical Specifications  
SD150N/R  
Parameter  
Units  
°C  
Conditions  
400to2000  
-40 to 180  
-55 to 200  
2500  
TJ  
Max. junction operating temperature range  
Max. storage temperature range  
150  
T
stg  
RthJC Max. thermal resistance, junction to case  
RthCS Max. thermal resistance,  
case to heatsink  
0.23  
0.08  
K/W  
DC operation  
Mounting surface, smooth, flat and  
greased  
T
Max. allowed mounting torque ±10%  
14  
120  
Nm  
g
Not lubricated threads  
wt  
Approximate weight  
Case style  
DO-205AC(DO-30)  
See Outline Table  
RthJC Conduction  
(The following table shows the increment of thermal resistence RthJC when devices operate at different conduction angles than DC)  
Conduction angle Sinusoidal conduction Rectangular conduction Units  
Conditions  
TJ = TJ max.  
180°  
120°  
90°  
0.041  
0.049  
0.063  
0.093  
0.156  
0.030  
0.051  
0.068  
0.096  
0.157  
K/W  
60°  
30°  
OrderingInformationTable  
Device Code  
SD 15  
0
N
25  
P
B
C
3
4
5
6
1
2
7
8
1
2
3
4
-
-
-
-
Diode  
Essential part number  
0 = Standardrecovery  
N = Stud Normal Polarity (Cathode to Stud)  
R = Stud Reverse Polarity (Anode to Stud)  
5
-
-
Voltage code: Code x 100 = VRRM (See Voltage Ratings table)  
P = StudbaseDO-205AC(DO-30)1/2"20UNF-2A  
M = StudbaseDO-205AC(DO-30)M12X1.75  
B = Flag top terminal (for Cathode/ Anode Leads)  
S = Isolated lead with silicone sleeve  
6
7
8
-
(Red = Reverse Polarity; Blue = Normal Polarity)  
None = Non isolated lead  
-
C = CeramicHousing(over1600V)  
V = Glass-metal seal (only up to 1600V)  
3
www.irf.com  
SD150N/R Series  
Bulletin I2077 rev. B 11/01  
Outline Table  
CERAMIC HOUSING  
16.5 (0.65)  
MAX.  
2.6 (0.10) MAX.  
DIA. 8.5 (0.33) NOM.  
2
C.S. 16mm  
(0.015 s.i.)  
DIA. 22.5 (0.88) MAX.  
SW 27  
Conforms to JEDEC DO-205AC (DO-30)  
All dimensions in millimeters (inches)  
1/2"-20UNF-2A*  
* FOR METRIC DEVICE: M12 X 1.75  
GLASS-METAL SEAL  
16.5 (0.65)  
MAX.  
2.6 (0.10) MAX  
DIA. 8.5 (0.33) NOM.  
2
C.S. 16mm  
(0.015 s.i.)  
DIA. 23.5 (0.93) MAX.  
SW 27  
1/2"-20UNF-2A*  
* FOR METRIC DEVICE: M12 X 1.75  
4
www.irf.com  
SD150N/R Series  
Bulletin I2077 rev. B 11/01  
Outline Table  
CERAMIC HOUSING  
16.5 (0.65)  
5.6 (0.22)  
DIA. 5.54 (0.22)  
DIA. 22.5 (0.88) MAX.  
1/2"-20UNF-2A*  
*FOR METRIC DEVICE. M12 X 1.75  
DO-205AC (DO-30) Flag  
All dimensions in millimeters (inches)  
GLASS-METAL SEAL  
16.5 (0.65)  
5.6 (0.22)  
DIA. 5.54 (0.22)  
DIA. 23.5 (0.93) MAX.  
1/2"-20UNF-2A*  
*FOR METRIC DEVICE. M12 X 1.75  
5
www.irf.com  
SD150N/R Series  
Bulletin I2077 rev. B 11/01  
180  
180  
170  
160  
150  
140  
130  
120  
110  
SD 150N/R Series  
SD 150N/R Series  
R (DC) = 0.23 K/W  
thJC  
R
(DC) = 0.23 K/W  
thJC  
170  
160  
150  
140  
130  
120  
Conduction Angle  
Conduction Period  
30  
60  
60  
90  
120  
90  
180  
60  
120  
30  
180  
160  
DC  
200  
0
20  
40  
80 100 120 140 160  
0
40  
80  
120  
240  
Average Forward Current (A)  
Average Forward Current (A)  
Fig. 1 - Current Ratings Characteristics  
Fig. 2 - Current Ratings Characteristics  
220  
R
0
t
200  
.
h
4
S
K
A
/
180  
120  
W
=
0
180  
.
0
8
K
90  
60  
30  
160  
140  
120  
100  
80  
/
W
RMS Lim it  
-
D
e
l
t
a
R
1
K
8
/
W
1
.
K
/
W
Conduction Angle  
SD 150N/R Series  
60  
40  
T
= 180 C  
J
20  
0
0
20  
40  
60  
80 100 120 140  
1
6
0
40  
60  
80 100 120 140 160 180  
Average Forw ard Current (A)  
Maxim um Allowable Am bient Tem perature ( C)  
Fig. 3 - Forward Power Loss Characteristics  
300  
250  
200  
150  
100  
50  
DC  
180  
120  
90  
60  
30  
t
h
S
0
A
.
3
K
/
W
0
.
4
K
/
W
0.  
0
6
K
/
W
.
8
K
/
W
RMS Lim it  
Conduction Period  
SD150N/R Series  
1
.
4
K
/
W
T
= 180  
C
J
0
0
50  
100  
150  
200  
250 40  
60  
80 100 120 140 160 180  
Average Forw ard Current (A)  
Maximum Allow able Am bient Temperature ( C)  
Fig. 4 - Forward Power Loss Characteristics  
6
www.irf.com  
SD150N/R Series  
Bulletin I2077 rev. B 11/01  
3500  
3000  
2500  
2000  
1500  
1000  
4000  
3500  
3000  
2500  
2000  
1500  
1000  
500  
At Any Rated Load Condition And W ith  
Rated V Applied Follow ing Surge.  
Maxim um Non Repetitive Surge Current  
Versus Pulse Train Duration.  
RRM  
Initial T = 180  
C
J
Initial T = 180 C  
J
@ 60 Hz 0.0083 s  
@ 50 Hz 0.0100 s  
No Voltage Reapplied  
Rated V Reapplied  
RRM  
SD 150N/R Series  
SD150N/R Series  
1
10  
100  
0.01  
0.1  
Pulse Train Duration (s)  
1
Num ber O f Equa l Am plitude Half Cycle Current Pulses (N)  
Fig. 5 - Maximum Non-Repetitive Surge Current  
Fig. 6 - Maximum Non-Repetitive Surge Current  
10000  
SD150N/R Series  
1000  
T
T
= 25 C  
J
= 180  
C
J
100  
1
1.5  
2
2.5  
3
3.5  
Instantaneous Forw ard Voltage (V )  
Fig. 7 - Forward Voltage Drop Characteristics  
1
Steady State Value:  
= 0.23 K/W  
R
thJC  
(DC Operation)  
0.1  
SD150N/R Series  
0.01  
0.001  
0.01  
0.1  
1
10  
Square Wave Pulse Duration (s)  
Fig. 8 - Thermal Impedance ZthJC Characteristic  
7
www.irf.com  
SD150N/R Series  
Bulletin I2077 rev. B 11/01  
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. 11/01  
8
www.irf.com  

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