U406 Vishay, U406 Datasheet
Specifications of U406
Available stocks
Related parts for U406
U406 Summary of contents
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... U404 jV I Typ (pA) – GS1 GS2 –2 5 –2 15 – Wideband Differential Amps D High-Speed,Temp-Compensated, Single-Ended Input Amps D High-Speed Comparators D Impedance Converters is available with tape-and-reel options for TO- Top View U401, U404, U406 . . . . . . . . . . . . . . . . . . . . . . . . . . a Per Side . . . . . . . . . . . . . . . . . . . . . . . . b Total . . . . . . . . . . . . . . . . . . . . . . . . . . . U406 j Max (mV) –55 to 150_C 300 mW 500 mW www.vishay.com 8-1 ...
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... SST/U401 Series Vishay Siliconix _ Parameter Symbol Static V (BR)GSS Gate-Source Gate-Source Breakdown Voltage V (BR)G1 – G2 Gate-Source V GS(off) Cutoff Voltage Saturation I DSS b Drain Current Gate Reverse Current I GSS Gate Operating Gate Operating I G Current Drain-Source r DS(on) On-Resistance Gate-Source Voltage V GS Gate-Source V GS(F) Forward Voltage ...
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... DSS 1.6 0 0.1 pA –2.0 –2 –0.2 V –0.4 V –0.6 V –0.8 V –1 –0.2 V –0.4 V –0.6 V –0.8 V –1.0 V 0.8 1 SST/U401 Series Vishay Siliconix Gate Leakage Current 500 125_C 125_C GSS 25_C 25_C GSS – Drain-Gate Voltage (V) DG Output Characteristics –2 V ...
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... SST/U401 Series Vishay Siliconix Transfer Characteristics –1.5V GS(off –55_C A 25_C 3 2 125_C –0.4 –0.8 –1.2 V – Gate-Source Voltage (V) GS Voltage Differential with Temperature vs. Drain Current 100 125_C –55 to 25_C 0.01 0.1 I – Drain Current (mA) D Circuit Voltage Gain vs. Drain Current 150 ...
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... kHz –55_C 500 kHz 400 300 200 125_C 100 0 1 SST/U401 Series Vishay Siliconix Common-Source Reverse Feedback Capacitance vs. Gate-Source Voltage MHz –4 –8 –12 –16 V – Gate-Source Voltage (V) GS Equivalent Input Noise Voltage vs. Frequency 200 100 – Frequency (Hz) On-Resistance and Output Conductance vs ...
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... Vishay disclaims any and all liability arising out of the use or application of any product described herein or of any information provided herein to the maximum extent permitted by law. The product specifications do not expand or otherwise modify Vishay’ ...