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MCR68-2 |MCR682MOT/ONN/a1000avaiSilicon Controlled Rectifiers
MCR68-2 |MCR682MOTN/a145avaiSilicon Controlled Rectifiers


MCR68-2 ,Silicon Controlled RectifiersMAXIMUM RATINGS (T = 25°C unless otherwise noted)JRating Symbol Value Unit(1)Peak Repetitive Off–St ..
MCR68-2 ,Silicon Controlled RectifiersELECTRICAL CHARACTERISTICS (T = 25°C unless otherwise noted.)CCharacteristic Symbol Min Typ Max Uni ..
MCR69-2 ,Silicon Controlled RectifiersMaximum ratings applied to the device are individual stress limit values (notORDERING INFORMATIONno ..
MCR69-2 ,Silicon Controlled RectifiersMAXIMUM RATINGS (T = 25°C unless otherwise noted)JRating Symbol Value UnitMARKINGPeak Repetitive Of ..
MCR69-3 ,Silicon Controlled RectifiersELECTRICAL CHARACTERISTICS (T = 25°C unless otherwise noted.)CCharacteristic Symbol Min Typ Max Uni ..
MCR703A ,Silicon Controlled RectifiersELECTRICAL CHARACTERISTICS (T = 25°C unless otherwise noted)CCharacteristic Symbol Min Typ Max Unit ..
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MCR68-2
Silicon Controlled Rectifiers
--Reverse Blocking Thyristors
Designed for overvoltage protection in crowbar circuits. Glass-Passivated Junctions for Greater Parameter Stability and
Reliability Center-Gate Geometry for Uniform Current Spreading Enabling
High Discharge Current Small Rugged, Thermowatt Package Constructed for Low Thermal
Resistance and Maximum Power Dissipation and Durability High Capacitor Discharge Current, 300 Amps Device Marking: Logo, Device Type, e.g., MCR68–2, Date Code
MAXIMUM RATINGS (TJ = 25°C unless otherwise noted)

(1) VDRM and VRRM for all types can be applied on a continuous basis. Ratings
apply for zero or negative gate voltage; however, positive gate voltage shall
not be applied concurrent with negative potential on the anode. Blocking
voltages shall not be tested with a constant current source such that the
voltage ratings of the devices are exceeded.
(2) Ratings apply for tw = 1 ms. See Figure 1 for ITM capability for various
duration of an exponentially decaying current waveform, tw is defined as
5 time constants of an exponentially decaying current pulse.
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