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 CM530820
Powerex, Inc., 200 Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272
Dual SCR POW-R-BLOKTM Modules
200 Amperes/800 Volts
A J A1K2 (4 TYP.) K1 A1K2 P - M8 THD (4 TYP.) A2
K2 G2
C
K1 G1
H
M F L - DIA. (2 TYP.) B B .110 TAB K E F
D G N
E
Description: Powerex Dual SCR POW-R-BLOKTM Modules are designed for use in applications requiring phase control and isolated packaging. The modules are isolated for easy mounting with other components on common heatsinks. Features:
K2 K1 A1K2 A1K2 A2 K1 G1 G2
CM530820 Dual SCR POW-R-BLOKTM Modules 200 Amperes/800 Volts
Isolated Mounting Glass Passivated Chips Metal Baseplate
*AIK2-AIK2 Connection made by external shorting bar.
Outline Drawing
Low Thermal Impedance
Millimeters 150 68.50.2 40 39 32 30 23 20 16 7
Dimension A B C D E F G H J K L M N P
Inches 5.906 2.6970.02 1.575 1.535 1.260 1.181 0.906 0.787 0.630 0.276
Applications: Battery Supplies Bridge Circuits AC and DC Motor Control Tap Changers Lighting Control Ordering Information: Select the complete eight digit module part number you desire from the table below. Example: CM530820 is a 800 Volt, 200 Ampere Dual SCR POW-R-BLOKTM Module.
Type CM53 Voltage Volts (x100) 08 Current Rating Amperes (x10) 20
0.2560.008 Dia. Dia. 6.50.2 0.236 0.197 M8 Metric 6 5 M8
S-41
Powerex, Inc., 200 Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272 CM530820 Dual SCR POW-R-BLOKTM Modules 200 Amperes/800 Volts
Absolute Maximum Ratings
Characteristics Peak Forward Blocking Voltage Transient Peak Forward Blocking Voltage (Non-Repetitive), t < 5ms DC Forward Blocking Voltage Peak Reverse Blocking Voltage Transient Peak Reverse Blocking Voltage (Non-Repetitive), t < 5ms DC Reverse Blocking Voltage RMS On-State Current Average On-State Current, TC = 65C Peak One-Cycle Surge (Non-Repetitive) On-State Current (60Hz) Peak One-Cycle Surge (Non-Repetitive) On-State Current (50Hz) I2t (for Fusing), 8.3 milliseconds Critical Rate-of-Rise of On-State Current* Peak Gate Power Dissipation Average Gate Power Dissipation Peak Forward Gate Voltage Peak Reverse Gate Voltage Peak Forward Gate Current Storage Temperature Operating Temperature Maximum Mounting Torque M6 Mounting Screw Maximum Mounting Torque M8 Terminal Screw Module Weight (Typical) V Isolation
*Tj = 125C, IG = 1.0A, VD = 1/2 VDRM
Symbol VDRM VDSM VD(DC) VRRM VRSM VR(DC) IT(RMS) IT(AV) ITSM ITSM I2t di/dt PGM PG(AV) VGFM VGRM IGFM TSTG Tj -- -- -- VRMS
CM530820 800 960 640 800 960 640 310 200 4000 3600 67000 100 10 3.0 10 5.0 4.0 -40 to 125 -40 to 125 26 72 300 2000
Units Volts Volts Volts Volts Volts Volts Amperes Amperes Amperes Amperes A2sec Amperes/ s Watts Watts Volts Volts Amperes C C in.-lb. in.-lb. Grams Volts
S-42
Powerex, Inc., 200 Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272 CM530820 Dual SCR POW-R-BLOKTM Modules 200 Amperes/800 Volts
Electrical and Thermal Characteristics, Tj = 25C unless otherwise specified
Characteristics Blocking State Maximums Forward Leakage Current, Peak Reverse Leakage Current, Peak Conducting State Maximums Peak On-State Voltage Switching Minimums Critical Rate-of-Rise of Off-State Voltage Thermal Maximums Thermal Resistance, Junction-to-Case Thermal Resistance, Case-to-Sink (Lubricated) Gate Parameters Maximums Gate Current-to-Trigger Gate Voltage-to-Trigger Non-Triggering Gate Voltage Symbol IDRM IRRM VTM dv/dt R (J-C) R (C-S) IGT VGT VGDM Test Conditions Tj = 125C, VDRM = Rated Tj = 125C, VRRM = Rated ITM =600A Tj = 125C, VD = 2/3 VDRM Per Module Per Module VD = 6V, RL = 2 VD = 6V, RL = 2 Tj = 125C, VD = 1/2 VDRM CM530820 30 30 1.3 500 0.2 0.05 100 3.0 0.25 Units mA mA Volts Volts/ s C/Watt C/Watt mA Volts Volts
S-43
Powerex, Inc., 200 Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272 CM530820 Dual SCR POW-R-BLOKTM Modules 200 Amperes/800 Volts
MAXIMUM ON-STATE CHARACTERISTICS
INSTANTANEOUS ON-STATE VOLTAGE, VTM, (VOLTS)
MAXIMUM ALLOWABLE PEAK SURGE (NON-REPETITIVE) CURRENT
MAXIMUM ALLOWABLE CASE TEMPERATURE (SINUSOIDAL WAVEFORM)
MAXIMUM ALLOWABLE CASE TEMPERATURE, TC, (oC)
2.5
MAXIMUM PEAK SURGE (NON-REPETITIVE) CURRENT, ITSM, (AMPERES)
4000
Tj = 125oC
130 120 110 100 90 80 70 60 50 0 50 100 150 200
AVERAGE ON-STATE CURRENT, IT(AV), (AMPERES) 360o RESISTIVE, INDUCTIVE LOAD PER SINGLE ELEMENT
2.0
3000
1.5
2000
1.0
1000
= 30o
60o
90o 120o
180o
0.5 101 102 103 104
INSTANTANEOUS ON-STATE CURRENT, ITM, (AMPERES)
0 100 101
CYCLES AT 60 HZ
102
MAXIMUM ON-STATE POWER DISSIPATION (SINUSOIDAL WAVEFORM)
MAXIMUM POWER DISSIPATION, PAV(MAX), (WATTS)
MAXIMUM ALLOWABLE CASE TEMPERATURE (RECTANGULAR WAVEFORM)
MAXIMUM ALLOWABLE CASE TEMPERATURE, TC, (oC) MAXIMUM POWER DISSIPATION, PAV(MAX), (WATTS)
MAXIMUM AVERAGE ON-STATE POWER DISSIPATION (RECTANGULAR WAVEFORM)
400
130 120
360o
400
300
180o 120o 90o 60o = 30o
110 100 90 80
120o
RESISTIVE, INDUCTIVE LOAD PER SINGLE ELEMENT
300
270o 180o 120o 90o
200
200
= 30o
60o
100
360o RESISTIVE, INDUCTIVE LOAD PER SINGLE ELEMENT
70 60 50 0 100 200
= 30o 60o 90o
180o 270o
100
360o RESISTIVE, INDUCTIVE LOAD PER SINGLE ELEMENT
0 0 50
0 0 100
100
150
200
300
400
200
300
400
AVERAGE ON-STATE CURRENT, IT(AV), (AMPERES)
AVERAGE ON-STATE CURRENT, IT(AV), (AMPERES)
AVERAGE ON-STATE CURRENT, IT(AV), (AMPERES)
TRANSIENT THERMAL IMPEDANCE, Z (J-C)(t), (oC/WATT)
TRANSIENT THERMAL IMPEDANCE CHARACTERISTICS (JUNCTION-TO-CASE) 100 101
TRIGGERING CHARACTERISTICS
0.25
INSTANTANEOUS GATE VOLTAGE, VG, (VOLTS)
102
0.20
101
VGFM = 10V VGT = 3.0V Tj = 25oC IGT = 100mA VGDM = 0.25V
PGM = 10W
0.15
0.10
PG(AV) = 3.0W
100
0.05
IGFM = 4.0A
0 10-3
10-2
10-1
100
10-1 101
102
103
104
TIME, t, (SECONDS)
INSTANTANEOUS GATE CURRENT, IG, (mA)
S-44


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