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MGR1606

MCC
Part Number MGR1606
Manufacturer MCC
Description (MGR1601 - MGR1607) Glass Passivated Silicon Rectifiers
Published Aug 10, 2007
Detailed Description www.DataSheet4U.com MCC Micro Commercial Components TM   omponents 20736 Marilla Street Chatsworth ...
Datasheet PDF File MGR1606 PDF File

MGR1606
MGR1606


Overview
www.
DataSheet4U.
com MCC Micro Commercial Components TM   omponents 20736 Marilla Street Chatsworth    !"# $ %    !"# MGR1601 THRU MGR1607 16 Amp Glass Passivated Silicon Rectifiers 50 to 1000 Volts Features • • • • Low forward voltage drop High current capability High reliability High surge current capability Maximum Ratings • • • Operating Temperature: -55℃ to +150℃ Storage Temperature: -55℃ to +150℃ Typical Thermal Resistance: 2.
0℃/W Junction to Ambient Maximum Recurrent Peak Reverse Voltage 50V 100V 200V 400V 600V 800V 1000V Maximum DC Blocking Voltage 50V 100V 200V 400V 600V 800V 1000V C K TO-220AC B L M D A PIN 1 2 MCC Part Number MGR1601 MGR1602 MGR1603 MGR1604 MGR1605 MGR1606 MGR1607 Maximum RMS Voltage 35V 70V 140V 280V 420V 560V 700V E F G I H J N Electrical Characteristics @ 25℃ Unless Otherwise Specified Maximum Average Forward Current Peak Forward Surge Current Maximum Instantaneous Forward Voltage Maximum DC Reverse Current At Rated DC Blocking Voltage Typical Junction Capacitance IF(AV) IFSM 16 A 250A TC = 100℃ 8.
3ms, half sine  PIN 1 PIN 2 CASE  MM  14.
22 9.
65 2.
54 5.
84 9.
65 -----12.
70 4.
83 0.
51 0.
30 3.
53 3.
56 1.
14 2.
03  15.
88 10.
67 3.
43 6.
86 10.
67 6.
35 14.
73 5.
33 1.
14 0.
64 4.
09 4.
83 1.
40 2.
92   VF 1.
1V IF=16A TA=25℃ TA = 25℃ TA = 125℃ Measured at 1.
0MHz, VR=4.
0V IR 10µA 250µA 100pF CJ  A B C D E F G H I J K L M N INCHES   .
560 .
625 .
380 .
420 .
100 .
135 .
230 .
270 .
380 .
420 -----.
250 .
500 .
580 .
190 .
210 .
020 .
045 .
012 .
025 .
139 .
161 .
140 .
190 .
045 .
055 .
080 .
115 www.
mccsemi.
com Revision: 4 2004/10/07 MGR1601 thru MGR1607 MCC Micro Commercial Components 300 TM 18 FIG.
1- MAXIMUM FORWARD CURRENT DERATING CURVE PEAK FORWARD SURGE CURRENT.
(A) FIG.
2- MAXIMUM NON-REPETITIVE FORWARD SURGE CURRENT AVERAGE FORWARD CURRENT.
(A) 16 250 200 8.
3ms Single Half Sine Wave JEDEC Method 14 Single Phase Half Wave 60Hz Resistive or Inductive Load 150 100...



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