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MCR218-2G

Littelfuse
Part Number MCR218-2G
Manufacturer Littelfuse
Description Silicon Controlled Rectifiers
Published Jun 24, 2017
Detailed Description Thyristors Surface Mount – 50V - 400V > MCR218-2G, MCR218-4G, MCR218-6G MCR218-2G, MCR218-4G, MCR218-6G Pb Descriptio...
Datasheet PDF File MCR218-2G PDF File

MCR218-2G
MCR218-2G


Overview
Thyristors Surface Mount – 50V - 400V > MCR218-2G, MCR218-4G, MCR218-6G MCR218-2G, MCR218-4G, MCR218-6G Pb Description Designed primarily for half-wave ac control applications, such as motor controls, heating controls and power supplies; or wherever half-wave silicon gate-controlled, solid-state devices are needed.
Features • Glass-Passivated Junctions • Blocking Voltage to 400 Volts • TO-220 Construction − Low Thermal Resistance, High Heat Dissipation and Durability Pin Out Functional Diagram CASE 221A STYLE 4 1 2 Additional Information Datasheet Resources Samples © 2019 Littelfuse, Inc.
Specifications are subject to change without notice.
Revised: 07/15/19 Thyristors Surface Mount – 50V - 400V > MCR218-2G, MCR218-4G, MCR218-6G Maximum Ratings (TJ = 25°C unless otherwise noted) Rating Symbol Value Unit Peak Repetitive Off−State Voltage (Note 1) (− 40 to 125°C, Sine Wave, 50 to 60 Hz, Gate Open) On-State RMS Current (180º Conduction Angles; TC = 85ºC) Peak Discharge Current (Note 2) Average On-State Current (180º Conduction Angles; TC = 85ºC) Peak Non-Repetitive Surge Current (1/2 Cycle, Sine Wave 60 Hz, TJ = 125°C) Circuit Fusing Consideration (t = 8.
3 ms) Forward Peak Gate Current (Pulse Width ≤ 1.
0 µsec, TC= 80°C) Forward Peak Gate Current (Pulse Width ≤ 1.
0 µsec, TC= 85°C) Forward Average Gate Power (t = 8.
3 ms, TC = 85ºC) Operating Junction Temperature Range Storage Temperature Range Mounting Torque MCR68-2 VDRM, VRRM ITM (RMS) ITM IT(AV) ITSM I2t IGM IGM PG(AV) TJ Tstg − 50 12 300 8.
0 100 40 2.
0 20 0.
5 -40 to +125 -40 to +150 8.
0 V A A A A A²sec A W W °C °C in.
lb.
Maximum ratings are those values beyond which device damage can occur.
Maximum ratings applied to the device are individual stress limit values (not normal operating conditions) and are not valid simultaneously.
If these limits are exceeded, device functional operation is not implied, damage may occur and reliability may be affected.
1.
VDRM and VRRM for all types can be app...



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