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Analog · Digital · Power · Filters · Oscillators · Mixed-Signal

Multisim Projects.

90+ curated NI Multisim circuit simulation project topics for BE, BTech and MTech — op-amp amplifiers, active filters, oscillators, digital logic, power converters, rectifiers, communication circuits and mixed-signal designs with virtual oscilloscope, Bode plotter and spectrum analyzer. Complete schematic, analysis, report, PPT and viva support.

90+
Multisim Topics
12K+
Students Guided
98%
Project Success
Analog Digital Power Electronics Filters Communication Mixed-Signal Advanced

Multisim Projects using Logic Gates

NI Multisim is a widely used SPICE-based circuit simulator for analog, digital and power electronics education. Students design schematics, run transient/AC/DC analyses and measure results with virtual instruments.

This page lists 90+ high-impact topics. Tools include NI Multisim, virtual oscilloscope, Bode plotter, spectrum analyzer, multimeter and optional Ultiboard PCB. Ideal for BE, BTech, MTech ECE and EEE students in Bangalore and across India.

Simple Multisim Projects

Software and virtual instruments commonly used in Multisim student projects.

NI Multisim Oscilloscope Bode Plotter SPICE Analysis Ultiboard (PCB) Virtual Instruments

Best Multisim Project Topics & Tools (90+)

Grouped by theme. Each topic lists primary analysis tools.

# Project Topic Primary Tools / Analysis
📶  Analog Amplifiers & Op-Amp Circuits
1AnaInverting and Non-Inverting Op-Amp AmplifierMultisim, scope, gain measure
2AnaDifferential Amplifier and CMRR StudyOp-amp, scope, CMRR calc
3AnaInstrumentation Amplifier Design3-op-amp topology, gain
4AnaSumming / Subtractor AmplifierOp-amp, multi-input
5AnaIntegrator and Differentiator CircuitsTransient, waveform check
6AnaVoltage Comparator and Schmitt TriggerHysteresis, threshold
7AnaLogarithmic / Anti-Log AmplifierDiode/BJT in feedback
8AnaCurrent-to-Voltage and Voltage-to-CurrentTransimpedance concepts
9AnaBJT Common-Emitter Amplifier DesignBias, AC gain, scope
10AnaMOSFET CS Amplifier Frequency ResponseBode plotter, bandwidth
11AnaClass A / Class B Power AmplifierEfficiency, distortion
12AnaPush-Pull Amplifier with Crossover AnalysisScope, THD concepts
📉  Filters · Frequency Response
13FilPassive RC / RL Low-Pass and High-PassBode, cutoff frequency
14FilActive Low-Pass / High-Pass (Sallen-Key)Op-amp, Bode plotter
15FilBand-Pass and Band-Reject Active FiltersQ factor, center freq
16FilButterworth vs Chebyshev Filter ComparisonOrder, ripple, Bode
17FilNotch Filter for 50 Hz Hum RejectionTwin-T / active notch
18FilState-Variable Filter (LP/BP/HP outputs)Multi-output, tuning
19FilR-C Coupled Cascaded Filter StagesRoll-off, cascade
20FilAll-Pass Filter Phase Response StudyPhase vs frequency
🌀  Oscillators & Signal Generators
21OscWien Bridge OscillatorAmplitude, frequency set
22OscRC Phase-Shift Oscillator3-stage RC, startup
23OscColpitts and Hartley OscillatorsLC tank, RF range
24OscAstable Multivibrator (Op-Amp / 555)Duty cycle, frequency
25OscMonostable and Bistable MultivibratorPulse width, triggering
26OscCrystal Oscillator SimulationQuartz model, stability
27OscFunction Generator Concept (sine/square/tri)Integrator + comparator
28OscVCO (Voltage-Controlled Oscillator) DemoControl voltage vs f
🔢  Digital Logic & Sequential Circuits
29DigCombinational Logic: Adder, Mux, DecoderGates, logic analyzer
30DigFlip-Flops (SR, JK, D, T) and LatchesTiming, race conditions
31DigAsynchronous and Synchronous CountersMod-N, up/down
32DigShift Registers and Serial-Parallel ConversionSIPO / PISO
33DigSequence Detector / State MachineFSM design, simulation
34DigALU Building Blocks (Add/Sub/Logic)Bit-slice concepts
35DigMemory Interface Timing SimulationAddress/data timing
36Dig7-Segment Display Driver LogicBCD to 7-seg, mux
37DigDigital Clock / Timer with CountersCascaded counters
38DigParity Generator / CheckerXOR tree, error detect
⚡  Power Electronics
39PwrHalf-Wave and Full-Wave RectifiersDiode, scope, ripple
40PwrBridge Rectifier with Capacitor FilterRipple factor, load effect
41PwrBuck Converter (Step-Down) DesignPWM, inductor, efficiency
42PwrBoost Converter (Step-Up) DesignDuty cycle vs Vout
43PwrBuck-Boost Converter SimulationInverting / non-inv modes
44PwrSingle-Phase Inverter (Square / SPWM)MOSFET bridge, THD
45PwrThree-Phase Inverter Concepts120°/180° conduction
46PwrSCR / TRIAC Phase Control (AC Dimmer)Firing angle, RMS
47PwrChopper Circuits (Step-Down / Step-Up)Duty cycle, waveforms
48PwrSnubber Circuit Design for SwitchingRC / RCD, voltage spike
49PwrFlyback Converter Topology DemoTransformer, isolation
50PwrPower Factor Improvement ConceptsPassive PFC, waveforms
📡  Communication Circuits
51ComAM Modulator and DemodulatorMultiplier, envelope det.
52ComFM Modulator ConceptsVCO, deviation
53ComASK / FSK / PSK Modulation DemoDigital mod, spectrum
54ComMixer and Frequency ConversionSpectrum analyzer
55ComPLL (Phase-Locked Loop) Lock BehaviorPhase detector, VCO
56ComPAM / PWM / PPM Pulse ModulationSampling, pulse shapes
57ComPre-Emphasis and De-Emphasis CircuitsRC networks, Bode
58ComNoise and SNR Observation in ChannelsNoise source, SNR calc
🔋  Power Supplies · Regulators · Mixed-Signal
59MixLinear Voltage Regulator (78xx style)Line/load regulation
60MixAdjustable Regulator with Op-Amp FeedbackReference, feedback
61MixSwitching Regulator Control Loop BasicsError amp, PWM
62MixBattery Charger Control CircuitCC/CV concepts
63MixADC / DAC Interface Concepts (sim models)Resolution, settling
64MixSample-and-Hold CircuitAcquisition, droop
65MixPrecision Rectifier (Op-Amp)Super diode, AC–DC
66MixPeak Detector and Envelope FollowerDiode + C, discharge
📊  Analysis Techniques & Virtual Instruments
67AnaTransient Analysis of Switching CircuitsTime-domain, step size
68AnaAC Analysis and Bode PlotsBode plotter, margins
69AnaDC Operating Point and Bias VerificationDC analysis, meters
70AnaFourier / Spectrum Analysis of WaveformsSpectrum analyzer, THD
71AnaParameter Sweep (R, C, Gain)Sweep analysis, plots
72AnaMonte Carlo / Tolerance Analysis LiteComponent tolerance
73AnaTemperature Sweep Effects on CircuitsTemp coefficients
74AnaTransfer Function Extraction from SimulationAC data, fitting
🏠  Application-Oriented Circuits
75AppAudio Preamplifier with Tone ControlBass/treble, frequency
76AppSmoke / Gas Sensor Interface AmplifierSensor model, threshold
77AppTemperature Controller with HysteresisComparator, setpoint
78AppLight-Activated Switch (LDR + Op-Amp)Threshold, relay drive
79AppBattery Level Indicator CircuitWindow comparators
80AppOvercurrent Protection CircuitSense resistor, trip
81AppPWM Motor Speed Control Drive StagePWM, power switch
82AppUPS Switching Logic SimulationTransfer switch models
🔬  Advanced · Design · Best Practices
83AdvStability Analysis of Feedback AmplifiersPhase/gain margin, Bode
84AdvNoise Analysis in AmplifiersNoise sources, SNR
85AdvComponent Selection and Derating StudyVoltage/current ratings
86AdvSimulation vs Theoretical Calculation ComparisonError table, discussion
87AdvHierarchical Design and SubcircuitsReusable blocks
88AdvCustom SPICE Model Import and UseModel files, pins
89AdvUltiboard PCB Export Workflow OverviewNetlist, layout concepts
90AdvDesign Documentation and Measurement PlanTest procedure template
91AdvParametric Optimization of Filter ResponseSweep, target specs
92AdvEnd-to-End: Spec → Design → Simulate → ReportFull project package

Topics reflect electronics and circuit theory practice with NI Multisim. Contact us for schematic files, simulation settings, measurement procedures, university-format report, PPT and viva Q&A for any topic above.

NI Multisim Projects

Why Choose Us for Multisim Projects?

Bangalore-based guidance for BE, BTech and MTech students working on circuit simulation and analysis.

Analog & Filters

Op-amp designs, active filters and frequency response with Bode plotter and clear gain/phase analysis.

Power Electronics

Rectifiers, buck/boost converters, inverters and phase control with waveform and efficiency studies.

Digital Logic

Combinational and sequential circuits, counters, FSM and timing verification with logic analyzer.

Communication

AM/FM/ASK modulation, PLL and spectrum analysis with virtual instruments.

Frequently Asked Questions — Multisim Projects

Top topics include op-amp amplifiers and filters, oscillators, digital logic and counters, power converters (buck, boost, inverter), rectifiers, communication modulators and mixed-signal designs simulated in NI Multisim with virtual instruments.
NI Multisim (schematic capture and SPICE simulation), Multisim virtual instruments (oscilloscope, Bode plotter, spectrum analyzer, multimeter), Ultiboard for PCB (optional), and MATLAB/Excel for post-processing of results.
Yes. Packages include Multisim schematic files, simulation settings, measurement procedures, analysis notes, university-format report, PPT and viva Q&A.
NI Multisim is used to design and SPICE-simulate analog, digital and power electronic circuits with virtual instruments, allowing students to verify theory and measure waveforms before hardware implementation.