U430-E3 Vishay, U430-E3 Datasheet
U430-E3
Specifications of U430-E3
Related parts for U430-E3
U430-E3 Summary of contents
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... D Insignificant Signal Loss/Error Voltage D Low Noise D High System Sensitivity D High CMRR Minimum Error with Large Input Signals The U430/431 are matched JFET pairs assembled in a TO-78 package. These devices offer good power gain even at frequencies beyond 250 MHz. Gate-Drain, Gate-Source Voltage ...
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... – GS2 I DSS1 DSS2 g fs1 mA kHz fs2 GS(off GS(off – CMRR Limits U430 U431 b Typ Min Max Min Max Unit –35 –25 –25 –1 –4 –2 – –5 –150 –150 –10 –150 –150 –15 –10 0 100 250 250 4 2 0.95 ...
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... Document Number: 70249 S-04031—Rev. E, 04-Jun- 100 0.1 pA –4 –5 300 240 180 120 –4 – kHz –1.6 –2 U430/431 Vishay Siliconix Gate Leakage Current T = 125_C A 200 125_C GSS 200 25_C A I GSS – Drain-Gate Voltage (V) DG Common-Source Forward Transconductance vs. Drain Current – ...
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... U430/431 Vishay Siliconix Output Characteristics –1.5 V GS(off – Drain-Source Voltage (V) DS Output Characteristics –1.5 V GS(off 0.2 0.4 0.6 V – Drain-Source Voltage (V) DS Transfer Characteristics –1.5 V GS(off –55_C 18 A 25_C 12 125_C –0.4 –0.8 –1.2 V – Gate-Source Voltage (V) GS www.vishay.com 8 –0.2 V –0.4 V –0.6 V – ...
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... Common–Gate 0.1 100 200 f – Frequency (MHz) Document Number: 70249 S-04031—Rev. E, 04-Jun-01 _ 100 – 100 10 –16 –20 100 10 0.1 500 1000 U430/431 Vishay Siliconix Circuit Voltage Gain vs. Drain Current Assume –1.5 V GS(off) – 0 – Drain Current (mA) D Common-Source Reverse Feedback Capacitance vs ...
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... U430/431 Vishay Siliconix Reverse Admittance vs. Frequency Common–Gate 1 –b rg 0.1 –g rg 0.01 100 200 f – Frequency (MHz) Equivalent Input Noise Voltage vs. Frequency 100 – Frequency (Hz) www.vishay.com 8-6 _ 100 0.1 500 1000 150 120 100 k Output Admittance vs. Frequency Common–Gate 100 200 500 f – ...
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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’ ...