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FCH10A08 NIEC    07+     
    Sky International Technology
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    HONGWEI Electronics Co., Ltd.
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FCH10A08 5,000  NIEC    02+   
FCH10A08 NIEC  TO-220F  02+    10000 
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FCH10A08 NIEC  TO-220F  06+    10000 
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FCH10A08 Datasheet
of two (6dB) before being re-amplified by the A gain setting. This avoids the extra 3dB degradation due to the square-root effect described above, the key advantage of the active termination technique. As mentioned above, the previous explanation ignored the input noise contribution of the LNP itself. Also, the noise contribution of the feedback resistor must be included for a completely correct analysis. The curves given in Figures 6 and 7 allow the VCA2613 user to compare the achievable noise figure for active and conventional termination methods. The left-most set of data points in each graph give the results for typical sol cable termination, showing the worst noise figure but also the greatest advantage of the active feedback method.
FCH10A08 on stock

VCE=10V Gv=80dB
Function=FLAT
Ic 1 mA
0 5mP
r 0 n


Output Power Control: Depending on linearity, the following two methods are recommended to control the output power: a) Non-Iinear FM modulation: By the gate voltage (V GG). When the gate voltage is close to zero, the RF input signal is attenuated up t0 60 dB and only a small leakage current flows from the battery into the drain. Around VGG=2.5V, the output power and drain current increases substantially. Around VGG=3V (typical) to VGG=3.5V (maximum), the nominal output power becomes available. b) Linear AM modulation: By RF input power Pin. The gate voltage is used to set the drain's quiescent current for the required linearity.