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<title>Documentation of VHDL-AMS models</title>
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<table style="width: 548px; height: 72px;" border="0" cellpadding="8"
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<td class="Title" width="100%">VHDL-AMS Models </td>
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<td class=TableText><a href="../chapter07/section7.3.8_adc/doc/a2d.html">A2D(BHV_RF)</a></td>
<td class=TableText>A-to-D Converter for RF Applications</td>
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<td class="TableText"><a href="../chapter06/section6.5.1_a2d/doc/a2d.html">A2D(IDEAL)<br>
A2D(EXTENDED)</a></td>
<td class="TableText">A-to-D Converter</td>
</tr>
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<td class="TableText"><a href="../chapter06/section6.3.2_rc_circuit/doc/capacitor.html">CAPACITOR(V1)</a></td>
<td class="TableText">Capacitor</td>
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<td class=TableText><a href="../chapter07/section7.3.9_awgn/doc/channel.html">CHANNEL(AWGN)</a></td>
<td class=TableText>Additive White Gaussian Noise Channel</td>
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<td class="TableText"><a href="../chapter06/section6.3.4_compress/doc/compress.html">COMPRESS(V1)</a></td>
<td class="TableText">A-Law Companding</td>
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<td class=TableText><a href="../chapter07/section7.3.3_cp/doc/cp.html">CP(SIMPLE)</a></td>
<td class=TableText>Charge Pump</td>
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<td class=TableText><a href="../chapter07/section7.3.8_dac/doc/d2a.html">D2A(BHV_RF)</a></td>
<td class=TableText>D-to-A Converter for RF Applications</td>
</tr>
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<td class="TableText"><a href="../chapter06/section6.5.1_d2a/doc/d2a.html">D2A(IDEAL)</a></td>
<td class="TableText">D-to-A Converter</td>
</tr>
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<td class="TableText"><a href="../chapter06/section6.3.5_delay_block/doc/delay_block.html">DELAY_BLOCK(IDEAL)</a></td>
<td class="TableText">Delay Block</td>
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<td class="TableText"><a href="../chapter06/section6.2.4_divider/doc/divider_ent.html">DIVIDER</a></td>
<td class="TableText">DIVIDER entity Declaration</td>
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<td class="TableText"><a href="../chapter06/section6.2.4_divider/doc/divider_simple.html">DIVIDER(SIMPLE)</a></td>
<td class="TableText">DIVIDER architecture SIMPLE</td>
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<td class="TableText"><a href="../chapter05/section5.3_pll/doc/filter.html">FILTER(LP)<br>
FILTER(PZ)</a></td>
<td class="TableText">First Order Lowpass and Pole-Zero Filter</td>
</tr>
<tr>
<td class=TableText><a href="../chapter07/section7.4.2_freq/doc/freq.html">FREQ(MIXED_SIGNAL)</a></td>
<td class=TableText>Frequency Measurement Unit</td>
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<td class="TableText"><a href="../chapter06/section6.3.5_integrator/doc/integrator.html">INTEGRAL_BLOCK(IDEAL)</a></td>
<td class="TableText">Integrator Block</td>
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<td class="TableText"><a href="../chapter06/section6.3.5_line/doc/line.html">LINE(LOSSLESS)</a></td>
<td class="TableText">Lossless Line</td>
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<td class=TableText><a href="../chapter07/section7.3.1_lna/doc/lna.html">LNA(RF)</a></td>
<td class=TableText>Low-Noise Amplifier</td>
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<td class="TableText"><a href="../chapter06/section6.3.5_lowpass/doc/lowpass.html">LOWPASS(BESSEL_2)<br>
LOWPASS(BESSEL_4)<br>LOWPASS(BESSEL_2_DIGITAL)</a></td>
<td class="TableText">Bessel Lowpass Filter</td>
</tr>
<tr>
<td class=TableText><a href="../chapter07/section7.3.6_lowpass/doc/lowpass_bhv.html">LOWPASS_FILTER(BHV_RF)</a></td>
<td class=TableText>Lowpass Filter for RF Applications</td>
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<td class=TableText><a href="../chapter07/section7.3.2_mixer/doc/mixer.html">MIXER(RF)</a></td>
<td class=TableText>Mixer</td>
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<td class=TableText><a href="../chapter08/section8.4_opamp/doc/opamp.html">OPAMP(MACRO)</a></td>
<td class=TableText>Operational Amplifier</td>
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<tr>
<td class=TableText><a href="../chapter07/section7.2.1_sources/doc/p_sin.html">P_SIN(SINGLE_TONE)<br>P_SIN(TWO_TONE)<br>P_SIN(AM)<br>P_SIN(SFFM)</a></td>
<td class=TableText>Sinusoidal Source with Power Specification</td>
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<td class="TableText"><a href="../chapter05/section5.3_pll/doc/pd.html">PD(BASIC)</a></td>
<td class="TableText">Phasedetector</td>
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<td class="TableText"><a href="../chapter06/section6.3.5_peakdetector/doc/peakdetector.html">PEAKDETECTOR(IDEAL)</a></td>
<td class="TableText">Peak Detector</td>
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<tr>
<td class="TableText"><a href="../chapter06/section6.4_pid/doc/pid.html">PID(IDEAL)</a></td>
<td class="TableText">Signal Flow PID Controller</td>
</tr>
<tr>
<td class=TableText><a href="../chapter07/section7.5_pll/doc/pll.html">PLL(LINEAR)</a></td>
<td class=TableText>Phase-Locked Loop</td>
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<td class=TableText><a href="../chapter07/section7.4.3_power/doc/power.html">POWER_METER(FEEDTHROUGH)<br>POWER_METER(TERMINATING)</a></td>
<td class=TableText>Power Measurement Unit</td>
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<td class=TableText><a href="../chapter07/section7.2.4_prbs/doc/prbs.html">PRBS(SHIFT_REGISTER)</a></td>
<td class=TableText>Pseudorandom Binary Source</td>
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<td class="TableText"><a href="../chapter06/section6.4_pid/doc/qpwl.html">QPWL(BASIC)</a></td>
<td class="TableText">Piece-Wise Linear Quantity Source</td>
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<td class="TableText"><a href="../chapter06/section6.3.2_rc_circuit/doc/rc.html">RC(V1)</a></td>
<td class="TableText">Simple RC Subircuit</td>
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<td class=TableText><a href="../chapter09/section9.5_wlan/doc/receiver.html">RECEIVER(DOUBLE_CONV)</a></td>
<td class=TableText>WLAN Receiver</td>
</tr>
<tr>
<td class="TableText"><a href="../chapter06/section6.3.2_rc_circuit/doc/resistor.html">RESISTOR(V1)</a></td>
<td class="TableText">Resistor</td>
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<td class="TableText"><a href="../chapter06/section6.3.5_sample_and_hold/doc/sample_and_hold.html">SAMPLE_AND_HOLD(IDEAL)</a></td>
<td class="TableText">Sample and Hold Block</td>
</tr>
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<td class=TableText><a href="../chapter09/section9.5_wlan/doc/phase_shifter.html">SHIFTER(IDEAL)</a></td>
<td class=TableText>Phase Shifter</td>
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<td class="TableText"><a href="../chapter06/section6.3.3_sources/doc/sine.html">SINE(V1)</a></td>
<td class="TableText">Independent Sinusoidal Voltage Source</td>
</tr>
<tr>
<td class=TableText><a href="../chapter09/section9.5_wlan/doc/splitter.html">SPLITTER(IDEAL)</a></td>
<td class=TableText>Splitter</td>
</tr>
<tr>
<td class="TableText"><a href="../chapter06/section6.3.2_rc_circuit/doc/step.html">STEP(V1)</a></td>
<td class="TableText">Independent Voltage Step Source</td>
</tr>
<tr>
<td class=TableText><a href="../chapter07/section7.3.7_switch/doc/switch.html">SWITCH(RAMP)</a></td>
<td class=TableText>Switch</td>
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<td class=TableText><a href="../chapter09/section9.5_wlan/doc/transmit.html">TRANSMIT(SIMPLE)</a></td>
<td class=TableText>Transmitter</td>
</tr>
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<td class="TableText"><a href="../chapter06/section6.3.5_line/doc/pulse.html">V_SOURCE(PULSE)</a></td>
<td class="TableText">Independent Voltage Pulse Source</td>
</tr>
<tr>
<td class=TableText><a href="../chapter07/section7.3.4_vco/doc/vco.html">VCO(ANALOG)</a></td>
<td class=TableText>Analog Voltage Controlled Oscillator for RF Applications</td>
</tr>
<tr>
<td class="TableText"><a href="../chapter05/section5.3_pll/doc/vco.html">VCO(BASIC)</a></td>
<td class="TableText">Analog Voltage Controlled Oscillator</td>
</tr>
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<td class=TableText><a href="../chapter07/section7.3.5_dco/doc/vcod.html">VCO(DIGITAL)</a></td>
<td class=TableText>Digital Voltage Controlled Oscillator</td>
</tr>
<tr>
<td class="TableText"><a href="../chapter06/section6.3.3_sources/doc/vcvs.html">VCVS(V1)</a></td>
<td class="TableText">Linear Voltage-Controlled Voltage Source</td>
</tr>
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<td class="TableText"><a href="../chapter06/section6.3.3_sources/doc/vcvs_r.html">VCVS_R(V1)</a></td>
<td class="TableText">Linear Voltage-Controlled Voltage Source
with RI and ROUT</td>
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<td class="TableText"><a href="../chapter05/section5.3_pll/doc/vpwl.html">VPWL(SPICE)</a></td>
<td class="TableText">SPICE Piece-Wise Linear Voltage Source</td>
</tr>
<tr>
<td class=TableText><a href="../chapter07/section7.2.3_wobble/doc/wobble.html">WOBBLE(BHV)</a></td>
<td class=TableText>Wobble Generator</td>
</tr>
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</table>
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