LD471650 [POWEREX]

POW-R-BLOK Dual SCR/Diode Isolated Module (500 Amperes / Up to 1600 Volts); POW -R - BLOK双SCR /二极管隔离模块( 500安培/高达1600伏)
LD471650
型号: LD471650
厂家: POWEREX POWER SEMICONDUCTORS    POWEREX POWER SEMICONDUCTORS
描述:

POW-R-BLOK Dual SCR/Diode Isolated Module (500 Amperes / Up to 1600 Volts)
POW -R - BLOK双SCR /二极管隔离模块( 500安培/高达1600伏)

二极管
文件: 总5页 (文件大小:103K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
LD47__50  
POW-R-BLOKTM  
Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 15697 (724) 925-7272  
Dual SCR/Diode Isolated Module  
500 Amperes / Up to 1600 Volts  
Description:  
OUTLINE DRAWING  
Powerex Dual SCR/Diode Modules are  
designed for use in applications  
requiring phase control and isolated  
packaging. The modules are isolated  
for easy mounting with other  
components on a common heatsink.  
POW-R-BLOKTM has been tested and  
recognized by the Underwriters  
Laboratories.  
A
R
B
C
F
J
K
G
D
1
2
3
L
H
P - M10 THD (3 TYP.)  
Q - DIA. (4 TYP.)  
LD47__50  
Dual SCR/Diode  
POW-R-BLOKTM Module  
500 Amperes / 800-1600 Volts  
Features:  
M
TElectrically Isolated Heatsinking  
TAluminum Nitride Isolator  
T Compression Bonded Elements  
T Metal Baseplate  
T - (2 TYP.)  
T Low Thermal Impedance  
for Improved Current Capability  
T UL Recognized  
S
LD47 Outline Dimensions  
7
6
E
Dimension  
Inches  
Millimeters  
A
B
C
D
E
F
5.91  
4.88  
150.0  
124.0  
112.0  
60.0  
N
Benefits:  
TNo Additional Insulation  
Components Required  
TEasy Installation  
TNo Clamping Components  
Required  
4.41  
2
1
2.36  
6
7
2.05  
52.0  
3
1.97  
50.0  
T Reduce Engineering Time  
G
H
J
1.89  
48.0  
1.73  
44.0  
CONNECTION DIAGRAM  
1.22  
31.0  
K
L
1.10  
28.0  
Applications:  
TBridge Circuits  
1.00  
25.4  
Ordering Information  
:
TAC & DC Motor Drives  
TBattery Supplies  
Select the complete eight-digit  
M
N
P
Q
R
S
T
0.69  
17.5  
module part number from the table  
below.  
0.39  
10.0  
TPower Supplies  
M10 Metric  
0.26 Dia.  
0.24  
M10  
TLarge IGBT Circuit Front Ends  
Example: LD471650 is a 1600Volt,  
500 Ampere Dual SCR/Diode  
Isolated POW-R-BLOKTM Module.  
6.5 Dia.  
6.0  
0.12  
3.0  
.110 x .032  
2.5 x 0.8  
Current  
Voltage  
Note: Dimensions are for reference only.  
Amperes  
(x10)  
Volts  
Type  
LD47  
(x100)  
06  
08  
10  
12  
14  
16  
50  
Revision Date: 12/04/2002  
LD47__50  
POW-R-BLOKTM  
Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 15697 (724) 925-7272  
Dual SCR/Diode Isolated Module  
500 Amperes / Up to 1600 Volts  
Absolute Maximum Ratings  
Characteristics  
Conditions  
Symbol  
Units  
Repetitive Peak Forward and Reverse Blocking  
Voltage  
VDRM & VRRM  
up to 1600  
V
Non-Repetitive Peak Blocking Voltage  
(t < 5 msec)  
VRSM  
VRRM + 100  
V
RMS Forward Current  
180° Conduction, TC=86°C  
180° Conduction, TC=86°C  
IT(RMS) /IF(RMS)  
IT(AV) /IF(AV)  
785  
500  
A
A
Average Forward Current  
Peak One Cycle Surge Current, Non-Repetitive  
60 Hz, 100% VRRM reapplied  
50 Hz, 100% VRRM reapplied  
60 Hz, 100%VRRM reapplied  
ITSM/IFSM  
ITSM/IFSM  
ITSM/IFSM  
17,000  
16,300  
12,250  
A
A
A
Peak Three Cycle Surge Current, Non-Repetitive  
Peak Ten Cycle Surge Current, Non-Repetitive  
I2t for Fusing for One Cycle  
60 Hz, 100% VRRM reapplied  
ITSM/IFSM  
10,500  
A
I2t  
A2 sec  
6
8.3 milliseconds  
10 milliseconds  
1.20 x 10  
1.33 x 10  
I2t  
6
A2 sec  
Maximum Rate-of-Rise of On-State Current,  
(Repetitive)  
Per JEDEC Standard 397 5.2.2.6  
di/dt  
200  
A/µs  
Operating Temperature  
TJ  
Tstg  
-40 to +130  
-40 to +150  
°C  
°C  
Storage Temperature  
Max. Mounting Torque, M6 Mounting Screw  
55  
6
in. – Lb.  
Nm  
Max. Mounting Torque, M10 Terminal Screw  
Module Weight, Typical  
110  
12  
in. – Lb.  
Nm  
1500  
g
3.30  
lb  
V Isolation @ 25C  
3000  
V
V
rms  
Revision Date: 12/04/2002  
LD47__50  
POW-R-BLOKTM  
Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 15697 (724) 925-7272  
Dual SCR/Diode Isolated Module  
500 Amperes / Up to 1600 Volts  
Electrical Characteristics, TJ=25°C unless otherwise specified  
Characteristics  
Symbol  
Test Conditions  
Min.  
Max.  
Units  
Repetitive Peak Forward Leakage Current  
Repetitive Peak Reverse Leakage Current  
Peak On-State Voltage  
IDRM  
IRRM  
VTM /VFM  
Up to 1600V, TJ=130°C  
Up to 1600V, TJ=130°C  
ITM /IFM =1500A  
80  
80  
1.30  
mA  
mA  
V
Threshold Voltage, Low-level  
Slope Resistance, Low-level  
V(TO)1  
rT1  
TJ = 130°C, I = 15%IT(AV) to IT(AV)  
0.81  
0.32  
V
π
m
Threshold Voltage, High-level  
Slope Resistance, High-level  
V(TO)2  
rT2  
TJ = 130°C, I = IT(AV) to ITSM  
0.90  
0.26  
V
π
m
VTM Coefficients, Full Range  
TJ = 130°C, I = 10A to 6kA  
A =  
B =  
C =  
D =  
0.8824  
-4.46E-02  
8.12E-05  
1.54E-02  
V
TM /VFM = A+ B Ln I +C I + D Sqrt I  
Minimum dV/dt  
dV/dt  
Exponential to VDRM  
Tj=130°C, Gate Open  
1000 Typ.  
V/µs  
Gate Trigger Current  
Gate Trigger Voltage  
Non-Triggering Gate Voltage  
Peak Forward Gate Current  
Peak Reverse Gate Voltage  
IGT  
VGT  
VGDM  
IGTM  
VGRM  
Tj=25°C, VD=12V  
Tj=25°C, VD=12V  
Tj=130°C, VD= ½ VDRM  
200  
3.0  
0.25  
4.0  
5
mA  
Volts  
Volts  
Amp  
Volts  
Thermal Characteristics  
Characteristics  
Symbol  
Max.  
Units  
Thermal Resistance, Junction to Case  
Per Module, both conducting  
Per Junction, both conducting  
0.0325  
0.0650  
°C/W  
°C/W  
R
ΘJ-C  
Thermal Impedance Coefficients  
Z
Z
= K (1-exp(-t/ ))  
τ 1  
K = 8.03E-04  
K = 1.03E-02  
2
= 3.39E-04  
= 3.15E-03  
ΘJ-C  
ΘJ-C  
1
1
τ 1  
τ 2  
+ K (1-exp(-t/ ))  
τ 2  
2
+ K (1-exp(-t/ ))  
τ 3  
K = 1.64E-02  
3
= 0.106  
τ 3  
3
+ K (1-exp(-t/ ))  
τ 4  
K = 3.75E-02  
4
= 2.066  
0.01  
4
τ 4  
Thermal Resistance, Case to Sink Lubricated  
Per Module  
°C/W  
R
ΘC-S  
Revision Date: 12/04/2002  
LD47__50  
POW-R-BLOKTM  
Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 15697 (724) 925-7272  
Dual SCR/Diode Isolated Module  
500 Amperes / Up to 1600 Volts  
Maximum Transient Thermal Impedance  
(Junction to Case, Per Junction)  
Maximum On-State Forward Voltage Drop  
( Tj = 130 °C )  
.07000  
5.00  
4.00  
3.00  
2.00  
1.00  
0.00  
.06000  
.05000  
.04000  
.03000  
.02000  
.01000  
.00000  
0.0001  
0.001  
0.01  
0.1  
1
10  
100  
10  
100  
1000  
10000  
100000  
Time - t - Seconds  
Instantaneous On-State Current  
-
Itm / Ifm  
-
Amperes  
Maximum On-State Power Dissipation  
(Sinusoidal Waveform)  
Maximum Allowable Case Temperature  
(Sinusoidal Waveform)  
700  
600  
500  
400  
300  
200  
100  
0
130  
125  
120  
115  
110  
105  
100  
95  
180°  
120°  
90°  
180  
360  
0
60°  
CONDUCTION ANGLE  
30°  
15°  
15°  
30°  
60°  
180  
360  
0
90  
CONDUCTION ANGLE  
90°  
180°  
120°  
85  
80  
0
100  
200  
300  
400  
500  
600  
0
100  
200  
300  
400  
500  
600  
Average On-State Current - It(av)/ If(av) - Amperes  
Average On-State Current - It(av)/ If(av)- Amperes  
Maximum On-State Power Dissipation  
(Rectangular Waveform)  
Maximum Allowable Case Temperature  
(Rectangular Waveform)  
900  
140  
130  
120  
110  
100  
90  
360°  
270°  
180°  
800  
700  
600  
500  
400  
300  
200  
100  
0
120°  
90°  
180  
360  
0
CONDUCTION ANGLE  
60°  
30°  
15°  
15°  
30°  
60°  
80  
90°  
120°  
180°  
270°  
360°C  
180  
CONDUCTION ANGLE  
360  
0
70  
60  
0
100  
200  
300  
400  
500  
600  
700  
800  
900  
0
100  
200  
300  
400  
500  
600  
700  
800  
900  
Average On-State Current - It(av) / If(av) - Amperes  
Average On-State Current - It(av) / If(av) - Amperes  
Revision Date: 12/04/2002  
LD47__50  
POW-R-BLOKTM  
Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 15697 (724) 925-7272  
Dual SCR/Diode Isolated Module  
500 Amperes / Up to 1600 Volts  
Total Power Dissipation vs Maximum Rated Output Current  
4000  
Powerex LD47--50 Pow-R-Blok 6-Pulse Bridge  
4000  
4000  
3500  
3000  
2500  
2000  
1500  
1000  
0.01  
Rth S-A (C/W)  
0.015  
3500  
3500  
3000  
2500  
2000  
1500  
1000  
500  
0.02  
3000  
0.025  
2500  
0.03  
0.04  
2000  
0.05  
1500  
0.06  
0.08  
0.10  
0.12  
0.15  
1000  
500  
0
500 0.20  
0.30  
0
0
0
200  
400  
600  
800  
1000  
1200  
1400  
10  
30  
50  
70  
90  
110  
130  
Maximum Bridge Output Current (A)  
Ambient Temperature (C)  
Six-Pulse Bridge Circuit Total Power Dissipation & Maximum Rated Output Current With Sink to Ambient  
Resistance of Heatsink as a Parameter.  
Revision Date: 12/04/2002  

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