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<strong><font color="#3057a9707983" size="4">Visual Software Environment For AnalogVISUAL SOFTWARE ENVIRONMENT FOR <br /></font></strong><strong><font color="#07417e" size="4"> ANALOG, DigitalDIGITAL, RF & MixedMIXED-Signal Circuit And System SimulationSIGNAL CIRCUIT & SYSTEM SIMULATION</font></strong>
'''Welcome to [[RF.Spice A/D ]] Wiki!'''
* [[Navigating the Visual Interface: Workshop & Toolbox]]
* [[List of RF.Spice A/D Toolbars, Windows & Menus]]
* [[Working with Schematic Editor]]
* [[Running Live Simulations with An Overview of Analog and Mixed-Mode Circuit AnimationSimulation]]
* [[Analyzing Circuits Using Predefined Tests]]
* [[Visualizing Simulation Data Using Graphs and Tables]]
* [[Running Parametric Sweeps and Monte Carlo Tests]]
* [[Working Performing Live Simulations with Other ApplicationsCircuit Animation or Virtual Instruments]]* [[List An Overview of RF.Spice A/D Toolbars, Windows & MenusDigital Circuit Simulation]]* [[List An Overview of RF.Spice A/D Keyboard ShortcutsCircuit Simulation]] === Creating & Managing New Devices in RF.Spice A/D ===* [[An Overview of System-Level Macromodeling Using Virtual Blocks]]
* [[Working with the Parts Database & Device Manager]]
* [[Creating New Devices and Models | Using Device Manager to Create New Devices and Models]]
* [[Creating New Symbols Using Symbol Editor]]
* [[Glossary of Generic Analog & Mixed-Mode Devices & Sources]]* [[Glossary of Generic Digital Devices]]* [[Digital Parts List ]]* [[Glossary of Standard Device Symbols Generic RF Devices & Their PinsPhysical Transmission Lines]]* [[Glossary of Black-Box Virtual Blocks]]* [[List of RF.Spice A/D Keyboard Shortcuts]]* [[RF.Spice A/D Glossary]]
=== Links =Basic Analog & Digital Tutorial Lessons ==
* [[An Overview of Analog and Mixed-Mode Basic Tutorial Lesson 1: A Simple Voltage Divider Circuit Simulation]]* [[A Summary of SPICE Simulation Parameters | List Basic Tutorial Lesson 2: Time and Frequency Domain Analysis of SPICE Simulation Parametersan RLC Filter]] * [[Glossary of Signal Sources and Waveform Generation BlocksBasic Tutorial Lesson 3: Analyzing a Basic Bipolar Junction Transistor Circuit]]* [[Glossary_of_Markers_and_Meters| Glossary of Markers and MetersBasic Tutorial Lesson 4: Analyzing CMOS Logic Circuits Using MOSFET Devices]]* [[Glossary Basic Tutorial Lesson 5: Designing Basic Amplifier Circuits Using Op-Amp Devices]] * [[Basic Tutorial Lesson 6: Exploring Simple Rectifier Circuits Using Ideal Transformers]] * [[Basic Tutorial Lesson 7: Analyzing the Frequency Response of Generic Analog & Multistage BJT Amplifiers]] * [[Basic Tutorial Lesson 8: Examining Basic Logic Gates]] * [[Basic Tutorial Lesson 9: Analyzing a Sequential Logic Circuit - The SR Latch]] * [[Basic Tutorial Lesson 10: Building a Shift Register Using D Flip-Flops]] * [[Basic Tutorial Lesson 11: Building a Binary Counter Using JK Flip-Flops]] * [[Basic Tutorial Lesson 12: Analyzing Basic Mixed-Mode DevicesCircuits with Logic Gates]] * [[Basic Tutorial Lesson 13: Creating a New Part from Your Analog Circuit]] * [[Basic Tutorial Lesson 14: Creating a Reusable Parameterized Subcircuit Device]]
=== Advanced Analog , Digital & Mixed-Signal Tutorial Lessons ===
* [[Analog Advanced Tutorial Lesson 1: A Simple Voltage Divider Exploring an Integrated CircuitVoltage Comparator]] * [[Analog Advanced Tutorial Lesson 2: Time and Frequency Domain Analysis of an RLC FilterDesigning Active Sallen-Key Filters]] * [[Analog Advanced Tutorial Lesson 3: Analyzing a Basic Bipolar Junction Transistor CircuitInvestigating Audio Power Amplifiers]] * [[Analog Advanced Tutorial Lesson 4: Analyzing CMOS Logic Designing Low & High Frequency Oscillator Circuits]] * [[Analog Advanced Tutorial Lesson 5: Creating Analyzing a New Part from Your Analog CircuitBalanced BJT Mixer]] * [[Analog Advanced Tutorial Lesson 6: Designing Basic Op-Amp CircuitsRealizing Analog Filters With Arbitrary Transfer Functions]] * [[Analog Advanced Tutorial Lesson 7: Designing Active SallenBuilding a Ripple-Key FiltersCarry Adder Using Reusable Digital Adder Devices]] * [[Analog Advanced Tutorial Lesson 8: Designing Active Higher8-Order Cascaded Op-Amp Filtersbit Hexadecimal Adders With Digital Data Buses]] * [[Analog Advanced Tutorial Lesson 9: Designing a Wien Bridge OscillatorD/A Converters]] * [[Analog Advanced Tutorial Lesson 10: Designing High Frequency BJT Colpitts Oscillatorsa Digital Ramp Generator]] * [[Analog Advanced Tutorial Lesson 11: Creating a Reusable Parameterized Subcircuit DeviceDesigning Sample-And-Hold Circuits]] * [[Analog Advanced Tutorial Lesson 12: Exploring Rectifier Circuits Using Ideal Transformersa 3-Bit A/D Converter Circuit]] * [[Analog Advanced Tutorial Lesson 13: Analyzing the Frequency Response of Multistage BJT AmplifiersExploring Digital Filters]] * [[Analog Advanced Tutorial Lesson 14: Exploring an Integrated Circuit Voltage Comparator]] * [[Analog Tutorial Lesson 15: Analyzing a Balanced BJT Mixer]] * [[Analog Tutorial Lesson 16: Investigating Audio Power AmplifiersFourier Analysis of Discrete-Time Sampled Signals]]
* [[RF Tutorial Lesson 1: AC Analysis of a Simple Transmission Line Circuit]]
* [[RF Tutorial Lesson 11: Designing a Microstrip MESFET Amplifier]]
* [[RF Tutorial Lesson 12: Time Domain Simulation of Generic RF Devices]]
* [[RF Tutorial Lesson 13: Investigating RF Transmission of Digital Data]]
* [[RF Tutorial Lesson 14: Analyzing a Communications System Using Virtual Blocks]]
* [[RF Tutorial Lesson 15: Exploring Phase-Locked Loops]]
* [[RF Tutorial Lesson 16: Building Frequency Conversion Mixers With Virtual Blocks]]
* [[RF Tutorial Lesson 17: Simulating a Frequency-Modulated Continuous-Wave (FMCW) Radar System]]
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