A JFET has a drain current of 5mA. If IDSS = 10mA and VGS ( off )= -6 v. find The Value Of
( 1 ) VGS
( 2 ) VP

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Respuesta :

[tex] \underline {\huge \boxed{ \sf \color{skyblue}Answer : }}[/tex]

Given :

[tex] \tt \large {\color{purple} ↬ } \: \: \: \: \: I_{D} = 5mA[/tex]

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[tex] \tt \large {\color{purple} ↬ } \: \: \: \: \: I_{DSS} = 10mA[/tex]

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[tex] \tt \large {\color{purple} ↬ } \: \: \: \: \: V_{GS(off)} = -6V[/tex]

[tex] \: \: [/tex]

[tex] \tt \large {\color{purple} ↬ } \: \: \: \: \: V_{GS} = {?}[/tex]

[tex] \: \: \: [/tex]

Let's Slove :

  • [tex] \tt \large I_{D} = I_{(DSS)} (1 - \frac {V_{GS}}{V_{GS(off)}} )^{2} [/tex]

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  • [tex] \tt \large \: V_{GS} = (1 - \frac{ \sqrt{I_D} }{ \sqrt{I_{DSS}} } ) \times V_{GS(off)}[/tex]

[tex] \: \: \: [/tex]

  • [tex] \tt \large \: V_{GS} = (1 - \frac{ \sqrt{5m} }{ \sqrt{10m} } ) \times { - 6}[/tex]

[tex] \: \: [/tex]

  • [tex] \underline \color{red} {\tt \large \boxed {\tt V_{GS} = 1.75 ✓}}[/tex]
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