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 MITSUBISHI DIODE MODULES
RM20TPM-24,-2H
HIGH VOLTAGE MEDIUM POWER GENERAL USE
INSULATED TYPE
RM20TPM-24,-2H
q q
IO VRRM
q q
DC output current ....................... 40A Repetitive peak reverse voltage ..... 1200/1600V 3 phase bridge Insulated Type
APPLICATION AC motor controllers, DC motor controllers, Battery DC power supplies, DC power supplies for control panels, and other general DC power equipment
OUTLINE DRAWING & CIRCUIT DIAGRAM Dimensions in mm
13.5
15
15 8 2-4.5
14.5
28 57 70
10 5-M4
LABEL
6
22
26
18 20 40
Mar.2002
MITSUBISHI DIODE MODULES
RM20TPM-24,-2H
HIGH VOLTAGE MEDIUM POWER GENERAL USE
INSULATED TYPE
ABSOLUTE MAXIMUM RATINGS
Symbol VRRM VRSM Ea Parameter Repetitive peak reverse voltage Non-repetitive peak reverse voltage Recommended AC input voltage Voltage class 24 1200 1350 370 2H 1600 1700 440 Unit V V V
Symbol IO IFSM I2t f Tj Tstg Viso
Parameter DC output current Surge (non-repetitive) forward current I2t for fusing Maximum operating frequency Junction temperature Storage temperature Isolation voltage Charged part to case Main terminal screw M4
Conditions Three-phase full wave rectifying circuit, TC=115C One half cycle at 60Hz, peak value Value for one cycle of surge current
Ratings 40 400 6.7x102 1000 -40~150 -40~125 2500 0.98~1.47 10~15 0.98~1.47 10~15 100
Unit A A A2s Hz C C V N*m kg*cm N*m kg*cm g
--
Mounting torque Mounting screw M4
--
Weight
Typical value
ELECTRICAL CHARACTERISTICS
Limits Symbol IRRM VFM Rth (j-c) Rth (c-f) -- Parameter Repetitive reverse current Forward voltage Thermal resistance Contact thermal resistance Insulation resistance Test conditions Tj=125C, VRRM applied Tj=25C, IFM=40A, instantaneous meas. Junction to case Case to fin, conductive grease applied Measured with a 500V megohmmeter between main terminal and case Min. -- -- -- -- 10 Typ. -- -- -- -- -- Max. 10 1.25 0.35 0.09 -- Unit mA V C/ W C/ W M
Mar.2002
MITSUBISHI DIODE MODULES
RM20TPM-24,-2H
HIGH VOLTAGE MEDIUM POWER GENERAL USE
INSULATED TYPE
PERFORMANCE CURVES
MAXIMUM FORWARD CHARACTERISTIC
3 2
ALLOWABLE SURGE (NON-REPETITIVE) FORWARD CURRENT
500
FORWARD CURRENT (A)
10 2 7 5 3 2 10 1 7 5 3 2 10 0 7 5 0.6
SURGE (NON-REPETITIVE) FORWARD CURRENT (A)
Tj=25C
400
300
200
100 0
0.8
1.0
1.2
1.4
1.6
1.8
2.0
1
23
5 7 10
20 30
50 70100
FORWARD VOLTAGE (V)
CONDUCTION TIME (CYCLES AT 60Hz) MAXIMUM POWER DISSIPATION
100
TRANSIENT THERMAL IMPEDANCE (C/W)
MAXIMUM TRANSIENT THERMAL IMPEDANCE (JUNCTION TO CASE) 10 0 2 3 5 710 1 2 3 5 7 0.40
0.35
POWER DISSIPATION (W)
0.30 0.25 0.20 0.15 0.10 0.05 0 10 -3 2 3 5 7 10 -2 2 3 5 7 10 -1 2 3 5 7 10 0
80
60
40
20
0
0
10
20
30
40
50
TIME (s)
DC OUTPUT CURRENT (A)
ALLOWABLE CASE TEMPERATURE VS. DC OUTPUT CURRENT
140
CASE TEMPERATURE (C)
130 120 110 100 90 80 70 60 0 10 20 30 40 50
DC OUTPUT CURRENT (A)
Mar.2002


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