Product Information

MCMA160P1800YA-MI

MCMA160P1800YA-MI electronic component of Littelfuse

Datasheet
SCR Modules BIPOLAR THYRISTOR

Manufacturer: Littelfuse
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (USD)

1: USD 95.0418 ea
Line Total: USD 95.04

0 - Global Stock
MOQ: 1  Multiples: 1
Pack Size: 1
Availability Price Quantity
0 - WHS 1


Ships to you between Tue. 28 May to Thu. 30 May

MOQ : 1
Multiples : 1

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MCMA160P1800YA-MI
Littelfuse

1 : USD 82.6505
12 : USD 76.6935
30 : USD 75.486
102 : USD 74.6005

     
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MCMA160P1800YA-MI V = 2x1800 V RRM Thyristor Module I = 160 A TAV V = 1.09 V T Phase leg Part number MCMA160P1800YA-MI Backside: isolated 3 1 2 6 7 5 4 Features / Advantages: Applications: Package: Y4 Thyristor for line frequency Line rectifying 50/60 Hz Isolation Voltage: V~ 3600 Planar passivated chip Softstart AC motor control Industry standard outline Long-term stability DC Motor control RoHS compliant Direct Copper Bonded Al2O3-ceramic Power converter Soldering pins for PCB mounting AC power control Base plate: DCB ceramic Lighting and temperature control Reduced weight Advanced power cycling Disclaimer Notice Information furnished is believed to be accurate and reliable. However, users should independently evaluate the suitability of and test each product selected for their own applications. Littelfuse products are not designed for, and may not be used in, all applications. Read complete Disclaimer Notice at www.littelfuse.com/disclaimer-electronics. IXYS reserves the right to change limits, conditions and dimensions. Data according to IEC 60747and per semiconductor unless otherwise specified 20190924a 2019 IXYS all rights reservedMCMA160P1800YA-MI Ratings Thyristor Symbol Definition Conditions min. typ. max. Unit T = 25C 1900 V V max. non-repetitive reverse/forward blocking voltage RSM/DSM VJ T = 25C 1800 V V max. repetitive reverse/forward blocking voltage RRM/DRM VJ I reverse current, drain current V = 1 8 0 0 V T = 25C 200 A R/D R/D VJ V = 1 8 0 0 V T = 1 4 0 C 10 mA R/D VJ forward voltage drop V I = 1 6 0 A T = 25C 1.14 V T T VJ I = 3 2 0 A 1.35 V T T = C 1.09 V I = 1 6 0 A 125 T VJ I = 3 2 0 A 1.35 V T average forward current T = 8 5 C T = 1 4 0 C 160 A I TAV C VJ RMS forward current I 180 sine 250 A T(RMS) V T = 1 4 0 C 0.82 V threshold voltage T0 VJ for power loss calculation only slope resistance r 1.63 m T 0.21 K/W R thermal resistance junction to case thJC thermal resistance case to heatsink R 0.11 K/W thCH P total power dissipation T = 25C 550 W tot C max. forward surge current t = 10 ms (50 Hz), sine T = 45C 4.75 kA I TSM VJ t = 8,3 ms (60 Hz), sine V = 0 V 5.13 kA R t = 10 ms (50 Hz), sine T = 1 4 0 C kA 4.04 VJ t = 8,3 ms (60 Hz), sine V = 0 V 4.36 kA R value for fusing It t = 10 ms (50 Hz), sine T = 45C 112.8 kAs VJ t = 8,3 ms (60 Hz), sine V = 0 V 109.5 kAs R t = 10 ms (50 Hz), sine T = 1 4 0 C 81.6 kAs VJ t = 8,3 ms (60 Hz), sine V = 0 V 79.1 kAs R junction capacitance V = 4 0 0 V f = 1 MHz T = 25C 211 pF C J R VJ P max. gate power dissipation t = 30 s T = 1 4 0 C 120 W GM P C t = 500 s 60 W P 8 W P average gate power dissipation GAV critical rate of rise of current T = 140C f = 50 Hz repetitive, I = 480 A 150 (di/dt) A/s cr VJ T 0.5 t = 2 0 0 s di /dt = A/s P G I = 0.5A V = V non-repet., I = 160 A 260 A/s G DRM T critical rate of rise of voltage V = V T = 140C 1000 V/s (dv/dt) VJ cr DRM R = method 1 (linear voltage rise) GK gate trigger voltage V V = 6 V T = 25C 2.5 V GT D VJ T = -40C 2.6 V VJ gate trigger current V = 6 V T = 25C 150 mA I VJ GT D T = -40C 200 mA VJ gate non-trigger voltage V V = V T = 140C 0.2 V GD D DRM VJ gate non-trigger current I 10 mA GD latching current t = 30 s T = 25C 300 mA I VJ L p I = 0.5A di /dt = 0.5 A/s G G holding current I V = 6 V R = T = 25C 200 mA H D GK VJ gate controlled delay time t V = V T = 25C 2 s VJ gd D DRM I = 0.5A di /dt = 0.5 A/s G G turn-off time V = 100 V I = 160A V = V T =125 C 150 s t q R T DRM VJ di/dt = 10 A/s dv/dt = 20 V/s t = 200 s p IXYS reserves the right to change limits, conditions and dimensions. Data according to IEC 60747and per semiconductor unless otherwise specified 20190924a 2019 IXYS all rights reserved

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