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Analog / Mixed Signal Examples
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Behavioral Models of ADCs' _: C& b8 X& A
\ams\sampling\; sampling_101;
+ H2 X4 C6 W1 y Sigma-Delta ADC 1st order modulator $ cd \ams\adc\; dspsdadc2; 9 s3 L( V7 O( F: w: O) `( O
Sigma-Delta ADC 2nd order modulator $ cd \ams\adc\; dspsdadc3;
2 j( h, X0 s4 ~4 p Sigma-Delta ADC 2nd order modulator discrete time (switched capacitor prototype) $ cd \ams\adc\; dspsdadc4; ' N E# `3 A( p$ P' r. _+ [. Z3 d! W
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Behavioral RF
9 ~0 A, |7 n) s; I* z% t" q0 U1 A6 E Measurement of Lowpass Filter Freq Response $ cd feed_fwd_2;
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VCO with phase noise $ cd . ^9 T8 m, v- X, v; a( [+ Y- Z6 v
Pll with freq domain instruments $ cd \ams\pll;
, e) V% x: f) g j; } Pll fractional with analog compensation $ cd \ams\pll;
& X3 ]( t* [# H% ~& n( M Pll fractional with digital compensation $ cd \ams\pll;
/ K. H! l$ O8 o0 \" a' S8 \ Pll optimization (Nonlinear Control Design) $ cd \ams\pll;
* {' J/ L. E' O7 R; G( S Carrier and Symbol Timing Recovery (NCO->ADC) $ cd \ams\pll; carrier_timing;
5 e) h4 \% y1 {: \" Z+ v" K Carrier and Symbol Timing Recovery (Fractional Delay) $ cd \ams\pll; timing_recovery_1; |
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