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RGP30M

Micro Commercial Components

3.0 Amp Glass Passivated Junction Fast Recovery Rectifiers 50 to 1000 Volts


RGP30M
RGP30M

PDF File RGP30M PDF File


Description
MCC Features   omponents 21201 Itasca Street Chatsworth    !"# $ %    !"# RGP30A THRU RGP30M 3.
0 Amp Glass Passivated Junction Fast Recovery Rectifiers 50 to 1000 Volts DO-201AD • • • • • High temperature metallurgically bonded construction Glass passivated cavity-free junction O 3.
0 amperes operation at T A=55 C and with no thermal runaway.
Typical IR less than 0.
2uA Fast switching for high efficiency Maximum Ratings • • • Operating Temperature: -55OC to +150 OC Storage Temperature: -55OC to +150 OC Typical Thermal Resistance: 25OC/W Junction to Ambient Maximum Recurrent Peak Reverse Voltage 50V 100V 200V 400V 600V 800V 1000V IF(AV) IFSM Maximum DC Blocking Voltage 50V 100V 200V 400V 600V 800V 1000V TA = 55OC 8.
3ms, half sine MCC Part Number RGP30A RGP30B RGP30D RGP30G RGP30J RGP30K RGP30M Maximum RMS Voltage 35V 70V 140V 280V 420V 560V 700V 3.
0 A 125A D A Cathode Mark B D Electrical Characteristics @ 25OC Unless Otherwise Specified Maximum Average Forward Current Peak Forward Surge Current Maximum Instantaneous Forward Voltage Maximum DC Reverse Current At Rated DC Blocking Voltage Maximum Reverse Recovery Time RGP30A-30G RGP30J RGP30K-30M Typical Junction Capacitance C DIMENSIONS VF 1.
3V IFM = 3.
0A; IR 5.
0uA 100uA TA=25OC TA=150 OC DIM A B C D INCHES MIN ----.
048 1.
000 MAX .
370 .
250 .
052 --- MM MIN ----1.
20 25.
40 MAX 9.
50 6.
40 1.
30 --- NOTE Trr CJ 150nS 250nS 500nS 60pF TJ =25OC IF=0.
5A IR=1.
0A IRR=0.
25A Measured at 1.
0MHz, VR=4.
0V www.
mccsemi.
com RGP30A thru RGP30M Figure 1 Typical Forward Characteristics 20 10 6 4 2 Amps 1 .
6 .
4 .
2 .
1 .
06 .
04 .
02 .
01 .
4 .
6 .
8 1.
0 1.
2 1.
4 0 0 .
5 Amps 1.
0 3.
0 MCC Figure 2 Forward Derating Curve 2.
5 25OC 2.
0 1.
5 Single Phase, Half Wave 60Hz Resistive or Inductive Load 50 75 100 125 150 175 O C Average Forward Rectified Current - Amperes versus Ambient Temperature - OC Volts Instantaneous Forward Current - Amperes versus Instantaneous Forward V...



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