Alternatives to Siemens Solido

Compare Siemens Solido alternatives for your business or organization using the curated list below. SourceForge ranks the best alternatives to Siemens Solido in 2025. Compare features, ratings, user reviews, pricing, and more from Siemens Solido competitors and alternatives in order to make an informed decision for your business.

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    OrCAD X

    OrCAD X

    Cadence Design Systems

    OrCAD® X is a unified PCB design software platform that offers significant improvements in ease of use, performance, automation, data management, and collaboration. Our cloud-enabled product suite contains applications for schematic, simulation, and PCB layout. OrCAD X Capture is one of the most widely used schematic design solutions for the creation and documentation of electrical circuits. PSpice® is our virtual SPICE simulation environment integrated within Capture that allows you to prototype your designs using the industry-leading, native analog, mixed-signal, and advanced analysis engines to deliver a complete circuit simulation and verification solution. Our two PCB layout environments, OrCAD X PCB Editor and OrCAD X Presto, allow designers to easily collaborate between ECAD/MCAD teams and build better PCBs faster. OrCAD X Presto is a new user-friendly option offering a simpler interface for quick-turn PCB design.
    Starting Price: $107 USD/month
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    Analog FastSPICE Platform
    Foundry-certified, the AFS Platform delivers nm SPICE accuracy, 5x faster than traditional SPICE and >2x faster than parallel SPICE simulators. Offering the fastest nm circuit verification platform for analog, RF, mixed-signal, and custom digital circuits. Now includes new eXTreme technology. For large post-layout circuits, the new AFS eXTreme technology delivers over 100M-element capacity and is 3x faster than post-layout simulators. Supports all leading digital solvers. Best-in-class usability, allowing maximum reuse of verification infrastructure. Advanced verification and debug capabilities to improve verification coverage. Improved design quality, and time-to-market. SPICE accurate, high-sigma verification. 1000x faster than brute-force simulation. Easy to use, and deploy. AFS eXTreme technology is available at no additional cost.
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    RFPro Circuit
    Go beyond traditional RF simulation to design, analyze, and verify radio frequency integrated circuits (RFICs). Achieve confidence with steady-state and nonlinear solvers for design and verification. Wireless standard libraries accelerate the validation of complex RFICs. Model components on silicon chips accurately. Optimize designs with sweeps and load-pull analysis. Simulate RF designs in the Cadence Virtuoso and Synopsys Custom Compiler environments. Increase performance using Monte Carlo and yield analysis. Assess error vector magnitude (EVM) for the latest communication standards early in the design phase. Use the latest foundry technology immediately. Monitoring system IC specifications such as EVM via RF simulation early in the RFIC design phase is a must. Simulations include effects of layout parasitics, complex modulated signals, and digital control circuitry. With Keysight RFPro Circuit, you can simulate in both the frequency and time domain.
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    PathWave RFIC Design

    PathWave RFIC Design

    Keysight Technologies

    Go beyond traditional RF simulation to design, analyze, and verify radio frequency integrated circuits (RFICs). Achieve confidence with steady-state and nonlinear solvers for design and verification. Wireless standard libraries accelerate the validation of complex RFICs. Before taping out an RFIC, verification of IC specifications via RF simulation is a must. Simulations include effects of layout parasitics, complex modulated signals, and digital control circuitry. With PathWave RFIC Design, you can simulate in both the frequency and time domain and bring your designs to and from Cadence Virtuoso. Accurately model components on silicon chips. Optimize designs with sweeps and load-pull analysis. Integrate RF designs in the Cadence Virtuoso environment. Increase performance using Monte Carlo and yield analysis. Simplify debugging with safe operating area warnings. Utilize the latest foundry technology immediately.
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    L-Edit Photonics
    Design your photonic integrated circuit in a layout-centric flow. The designer can implement their design using either a drag-and-drop or a script-driven methodology. Both of those are in the same full custom IC design layout editor that drives the physical verification and tape-out processes. L-Edit Photonics enables the fast creation of a photonic design using a drag-and-drop methodology in an IC layout editor, without having to write a single line of code. Once the design is completed, a netlist can be extracted for photonic simulation. PIC design in a complete IC layout editor, Create a layout without writing a line of code. Supports a layout-centric design flow where a schematic is not needed. Schematic flow optional with S-Edit. A simulation netlist can be created as input into a photonic simulator. Photonic simulation is supported through integration with our partners. Photonic PDKs are available from multiple foundries.
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    Oasys-RTL

    Oasys-RTL

    Siemens

    Oasys-RTL addresses the need for higher capacity, faster runtimes, improved QoR, and physical awareness by optimizing at a higher level of abstraction and using integrated floorplanning and placement capabilities. Oasys-RTL provides better quality results by enabling physical accuracy, floorplanning, and fast optimization iterations to get to design closure on time. The power-aware synthesis capabilities include support for multi-threshold libraries, automatic clock gating, and UPF-based multi-VDD flow. During synthesis, Oasys-RTL inserts all the appropriate level shifters, isolation cells, and retention registers depending on the power intent as defined in the UPF. Oasys-RTL can create a floorplan directly from the design RTL using design dataflow and timing, power, area, and congestion constraints. It considers regions, fences, blockages, and other physical guidance using the advanced floorplan editing tools and automatically places macros, pins, and pads.
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    Siemens Aprisa
    Designing at advanced process nodes requires a new place-and-route paradigm to manage the increasing complexity. Aprisa is a detail-route-centric physical design platform for the modern SoC. Aprisa digital implementation is an RTL2GDSII solution that offers complete synthesis and place-and-route functionality for top-level hierarchical designs and block-level implementation. It's tape-out quality correlation with signoff tools, both for STA timing and DRC, reduces design closure and ensures optimal performance, power, and area (PPA). Aprisa delivers optimal PPA out-of-the-box. This helps physical designers reduce the effort at each step of the place-and-route flow and achieve faster time-to-market Unified architecture and common analysis engines ensure excellent timing and DRC correlation between implementation steps and with signoff tools, greatly reducing the number of flow iterations and ECOs.
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    Ansys Maxwell
    Ansys Maxwell is an EM field solver for electric machines, transformers, wireless charging, permanent magnet latches, actuators and other electr mechanical devices. It solves static, frequency-domain and time-varying magnetic and electric fields. Maxwell also offers specialized design interfaces for electric machines and power converters. With Maxwell, you can precisely characterize the nonlinear, transient motion of electromechanical components and their effects on the drive circuit and control system design. By leveraging Maxwell’s advanced electromagnetic field solvers and seamlessly linking them to the integrated circuit and systems simulation technology, you can understand the performance of electromechanical systems long before building a prototype in hardware. Maxwell offers a trusted simulation of low-frequency electromagnetic fields in industrial components.
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    SiLogy

    SiLogy

    SiLogy

    Our next-generation web platform empowers chip developers and verification engineers to design and debug 10x faster. Build and run thousands of tests in parallel at the push of a button with Verilator. Seamlessly share test results and waveforms with anyone in your organization, tag coworkers directly on signals, track test and regression failures. We use Verilator to compile Dockerized simulation binaries and distribute test runs across our compute cluster. Then we collect the results and log files and optionally rerun failing tests to generate waveforms. With Docker, we can ensure that test runs are consistent and reproducible. SiLogy makes chip developers more productive by enabling faster design and debug times. Before SiLogy, the state-of-the-art for debugging a failing test involved copying lines from log files, debugging from waveforms on a local machine, or rerunning a simulation that might have taken days to run.
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    Sigrity X PowerSI

    Sigrity X PowerSI

    Cadence Design Systems

    To help you tackle increasingly challenging issues related to simultaneous switching noise, signal coupling, and target voltage levels, Cadence® Sigrity X PowerSI® technology provides fast, accurate, and detailed electrical analysis of full IC packages or PCBs. It is cloud ready and can be used pre-layout to develop power- and signal-integrity guidelines, as well as post-layout to verify performance and improve a design without needing a prototype. Using Sigrity X PowerSI electromagnetic (EM) field solver technology, you can readily perform a broad range of studies to identify trace and via coupling issues, power/ground fluctuations caused by simultaneously switching outputs, and design regions that are under or over voltage targets. PowerSI technology also lets you perform extraction of frequency-dependent network parameter models and lets you visualize complex spatial relationships.
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    Tessent

    Tessent

    Siemens

    Deliver a faster time to market by reducing design complexity using high-quality DFT. Tessent silicon lifecycle management solutions include advanced debug, safety & security features, and in-life data analytics to meet the evolving challenges of today’s silicon lifecycle. Create an infrastructure that makes designs more testable. Silicon lifecycle management solutions achieve high-quality tests, identify defects and hidden yield limiters, and move beyond test into system debugging and validation. This ecosystem of tools effectively analyzes data to provide critical system insights that can then be used for in-life monitoring. Ensure the highest test quality, accelerate yield ramp, and improve safety, security, and reliability across the silicon lifecycle using best-in-class solutions for DFT, debug, and in-life monitoring plus powerful data analytics. Decrease time to yield, manage manufacturing excursions, and recover yield caused by systematic defects.
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    Sigrity X Advanced SI

    Sigrity X Advanced SI

    Cadence Design Systems

    Sigrity X Advanced SI technology offers leading-edge signal integrity analysis for PCB and IC packaging designs, covering DC to over 56GHz with advanced features like automated die-to-die SI analysis, topology exploration, and simulation for high-speed interfaces. Supporting IBIS-AMI models and customizable compliance kits, it ensures your designs meet rigorous standards while leveraging frequency domain, time domain, and statistical analysis methods.
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    L-Edit MEMS
    L-Edit MEMS is the gold standard 3D MEMS design platform of choice. The digital twin of the MEMS devices begins with the design capture in L-Edit. MEMS designers benefit from a unified environment that supports MEMS device design, fabrication modeling, and links to FEM analysis tools. L-Edit MEMS is the gold standard for MEMS design. With true native curve support, it is the only tool developed specifically for MEMS and IC design. It is the foundation of the MEMS digital twin, supporting device design, 3D fabrication modeling, and simulation through partnerships. Create a 3D solid model from layout data and fabrication process description. Gives a 3D graphical representation of the MEMS fabrication process. Multi-physics simulation with popular FEM analysis tools. Export models to FEM/BEM simulators for 3D analysis. Component libraries enable design reuse.
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    Siemens Precision
    Precision offers vendor-independent FPGA synthesis. It provides best-in-class performance and area, high-reliability design capabilities, and tight links to simulation and formal equivalency checking. Precision's products are tightly integrated with Siemens' FormalPro LEC for equivalency checking and HDL Designer for design capture and design verification using ModelSim/Questa. Precision RTL, Siemens's entry-level FPGA synthesis product, offers best-in-class quality results with a vendor-independent FPGA synthesis solution. Many space and mil-aero applications require specialized FPGAs with built-in protection from SEEs. NanoXplore introduces new FPGAs targeting this market. Precision Synthesis, in close partnership with NanoXplore, is the first to offer full synthesis support for the NG-Ultra device. Precision has seamless integration with the NXmap P&R tool to complete the design flow from RTL to gates to bitstream generation.
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    Sigrity X Platform

    Sigrity X Platform

    Cadence Design Systems

    Step into the future with Sigrity X Platform – where innovation meets optimization. Unlock the key to flawless signal and power integrity in your PCB and IC package designs, and leap far beyond the current limits of signal integrity (SI)/power integrity (PI) technology. Imagine effortlessly navigating the complexities of electronic design, and not just meeting, but shattering your time-to-market targets with precision and ease. With Sigrity X, you're not just working with another tool; you're unlocking seamless in-design analysis synergy within the Allegro X PCB and IC Package platforms. Dive into a comprehensive suite of SI/PI analysis, in-design interconnect modeling, and PDN analysis tools designed to supercharge your performance, ensuring your projects not only meet but exceed deadlines and budgets. Harness the power of the Sigrity X Platform for flawless performance and reliability success in your next design.
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    Ansys Icepak
    Ansys Icepak is a CFD solver for electronics thermal management. It predicts airflow, temperature, and heat transfer in IC packages, PCBs, electronic assemblies/enclosures, and power electronics. Ansys Icepak provides powerful electronic cooling solutions that utilize the industry-leading Ansys Fluent computational fluid dynamics (CFD) solver for thermal and fluid flow analyses of integrated circuits (ICs), packages, printed circuit boards (PCBs), and electronic assemblies. The Ansys Icepak CFD solver uses the Ansys Electronics Desktop (AEDT) graphical user interface (GUI). Perform conduction, convection, and radiation conjugate heat transfer analyses, with many advanced capabilities to model laminar and turbulent flows, and species analysis including radiation and convection. Ansys’ complete PCB design solution enables you to simulate PCBs, ICs, and packages and accurately evaluate an entire system.
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    PDN Analyzer
    Altium’s PDN Analyzer tool integrates directly with Altium Designer so you can easily troubleshoot and detect issues like insufficient or excessive copper, uncontrolled voltage drops, marginal voltage at critical power pins, copper islands or peninsulas and similar issues that may be present with the power system in your PCB design. PDN refers to the power system on printed circuit boards for active circuits. This system includes all interconnections from the voltage regulator module and the metallization of pads and die on integrated circuits that are used to supply and return power current. IC supply voltage limits must be met across the entire length of the power delivery network. Accurately validating your power budget means considering minimum and maximum device limits, worst-case voltage drops, and combined return-path currents. PDN Analyzer shows you exactly where these problems arise.
    Starting Price: $163 per month
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    Ansys Electronics Desktop (AEDT)
    The use of Ansys Electronics solution suite minimizes testing costs, ensures regulatory compliance, improves reliability, and drastically reduces your product development time. All this while helping you build the best-in-class and cutting-edge products. Leverage the simulation capability from Ansys to solve the most critical aspects of your designs. With our solutions, we help you solve the most critical aspects of your product designs through simulation. If you work with antenna, RF, microwave, PCB, package, IC design, or even an electromechanical device, we provide you with the industry gold standard simulators. These solutions help you solve any electromagnetic, temperature, SI, PI, parasitic, cabling, and vibration challenges in your designs. We build on this with complete product simulation, allowing you to achieve first-pass success designing an airplane, car, cellphone, laptop, wireless charger, or any other system.
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    Ansys Exalto
    Ansys Exalto is a post-LVS RLCk extraction software solution that enables IC designers to accurately capture unknown crosstalk among different blocks in the design hierarchy by extracting lumped-element parasitics and generating an accurate model for electrical, magnetic and substrate coupling. Exalto interfaces with most LVS tools and can complement the RC extraction tool of your choice. Ansys Exalto post-LVS RLCk extraction lets IC designers accurately predict electromagnetic and substrate coupling effects for signoff on circuits that were previously "too big to analyze.” The extracted models are back-annotated to the schematic or netlist, and support all circuit simulators. The proliferation of RF and high-speed circuits in modern silicon systems has raised electromagnetic coupling to a first order effect that must be accurately modeled to reliably achieve silicon success.
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    Siemens PowerPro
    PowerPro offers the most comprehensive set of features to RTL designers to “design-for-low-power”. It offers power estimation for both RTL and Gate-level designs, early power checks to quickly find power issues during RTL development, and clock and memory gating to optimize the design for power. PowerPro offers the most comprehensive set of features to RTL designers to “design-for-low-power”. It offers power analysis for both RTL and gate-level designs, early power checks to quickly find power issues during RTL development, and clock and memory gating to optimize the design for power. PowerPro delivers highly accurate estimations that are within 10% of signoff. This technology is built on advanced engines that enable a broad spectrum of analysis capabilities. PowerPro’s automatic power optimization delivers low-power RTL automatically with integrated logic equivalence checking. PowerPro’s automatic optimization is the only proven low-power RTL generation technology in the market today.
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    TopSpice

    TopSpice

    TopSpice

    TopSpice is a true analog/digital/behavioral mixed-mode circuit simulator for the PC. It offers the most advanced SPICE simulator in its price range, compatibility, an easy to use integrated design environment from schematic capture to graphical waveform analysis, and full 64-bit operation for faster performance and larger memory space. With TopSpice you have the choice to design from schematic drawings, text netlist (SPICE) files, or both. All design and simulation functions are available from either the schematic or netlist editor front-ends. TopSpice includes a native full-featured mixed-mode mixed-signal circuit simulator capable of simulating circuits containing any arbitrary combination of analog devices, digital functions and high-level behavioral blocks. With TopSpice you can verify and optimize your design from the system to the transistor level.
    Starting Price: $595 one-time payment
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    PrimeSim HSPICE
    PrimeSim HSPICE circuit simulator is the industry's "gold standard" for accurate circuit simulation and offers foundry-certified MOS device models with state-of-the-art simulation and analysis algorithms. With over 25 years of successful design tape outs, HSPICE is the industry's most trusted and comprehensive circuit simulator. For on-chip simulation, analog designs, RF design, custom digital design, standard cell design and characterization, memory design and characterization, and device model development. For off-chip signal integrity simulation, silicon-to-package-to-board-to-backplane analysis and simulation. HSPICE is a key part of the Synopsys analog/mixed-signal (AMS) verification suite, a solution built to address the most critical issues in AMS verification. HSPICE is the industry’s “gold standard” for accurate circuit simulation and offers foundry-certified MOS device models with state-of-the-art simulation and analysis algorithms.
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    Ansys Totem
    Ansys Totem-SC is the proven, trusted industry leader for power noise and reliability signoff for analog and mixed-signal designs built on cloud-native elastic compute infrastructure. Ansys Totem-SC is the industry’s trusted gold standard voltage drop and electromigration multiphysics sign-off solution for transistor-level and mixed-signal designs. With a track record of thousands of tapeouts, Totem-SC’s cloud-based architecture gives it the speed and capacity to handle full-chip analysis. Signoff accuracy is certified by all major foundries for all finFET nodes down to 3nm. Ansys Totem-SC is a transistor-level power noise and reliability analysis platform for analog mixed-signal IP and fully custom designs. It creates IP models for SOC-level power integrity signoff with RedHawk-SC and generates compact chip models of power delivery networks for the chip and system-level. Industry-proven and foundry-certified analog and mixed-signal EM/IR solution.
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    Sigrity X OptimizePI

    Sigrity X OptimizePI

    Cadence Design Systems

    To ensure you get high performance at a system and component level, while at the same time saving between 15% and 50% in decoupling capacitor (decap) costs, Cadence® Sigrity X OptimizePI™ technology does a complete AC frequency analysis of boards and IC packages. Supporting both pre- and post-layout studies, it quickly pinpoints the best decap selections and placement locations to meet your power-delivery network (PDN) needs at the lowest possible cost. Sigrity X OptimizePI technology is built on proven Cadence hybrid electromagnetic circuit analysis technology in combination with the unique Sigrity optimization engine to help you quickly pinpoint the best possible decap selections and placement locations.
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    CircuitLogix

    CircuitLogix

    Logic Design

    It gives you the flexibility to design and test electronic circuits, trying all the "what if" scenarios without ever worrying about faulty parts or bad connections. CircuitLogix supports analog, digital and mixed-signal circuits, and its proven SPICE simulation gives accurate real-world results you can trust. 3DLab is included with both versions of CircuitLogix and is a "virtual reality"-type of lab environment and is designed to closely replicate the appearance and functionality of actual devices and instruments. There are approximately 30 different devices and instruments available in 3DLab, including batteries, switches, meters, lamps, resistors, inductors, capacitors, fuses, oscilloscopes, logic analyzers and frequency counters.
    Starting Price: $145 one-time payment
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    PrimeWave Design Environment
    The Synopsys PrimeWave Design Environment is a comprehensive and flexible, AI-driven environment for simulation setup and analysis of analog, RF, mixed-signal design, custom-digital, and memory designs within the Synopsys Custom Design Family. It delivers a seamless simulation experience around all the engines of Synopsys PrimeSim simulators, with comprehensive analysis, improved productivity, and ease of use. As a key component of the Synopsys AI-Driven Analog Design solution, the Synopsys PrimeWave Design Environment can optimize complex analog designs, across multiple test-benches and hundreds of PVT corners and quickly converge on optimal design points that meet the engineer’s specifications. The PrimeWave Design Environment also offers a unified workflow-driven analysis for all PrimeSim Reliability Analysis applications consisting of guided analysis setup, intuitive visualization, and debug and root-causing capabilities to enable a reliability-aware design methodology.
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    SIMetrix/SIMPLIS

    SIMetrix/SIMPLIS

    SIMPLIS Technologies

    It combines accuracy and speed in a full-featured design environment, enabling 10-50x faster simulation than SPICE for power supply designs. All features of SIMetrix Classic and uses the same GUI environment including its hierarchical schematic editor and waveform viewer. Rapidly locates the steady state operating point of a switching system without having to simulate the startup transient conditions. SPICE transistor and diode model conversion to SIMPLIS format. Converts SPICE models by running a SPICE simulation to perform parameter extraction. The advanced digital simulation library provides a wide variety of digital functions such as counters, ADCs, DACs and much more.
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    EveryCircuit

    EveryCircuit

    EveryCircuit

    One animated circuit is worth a thousand equations and diagrams. Animations of voltages, currents, and charges are displayed right on top of the schematic, providing great insight into circuit operation. The real-time circuit simulation engine is custom-built for speed and interactivity. Easy one-click simulation, from simple resistors and logic gates to complex transistor-level oscillators and mixed-signal designs. While the simulation is running, you can flip switches, adjust potentiometers, tune LED current limiting resistors, ramp up input voltages, etc. The circuit will immediately respond to your changes, in real time. Mini-waveforms on top of schematic wires look different for digital and analog signals. Constant analog voltages are shown as numbers, digital wires are color-coded. Any pair of time-domain signals may be plotted in the XY mode. The oscilloscope scale and grid ticks are auto-updated to convenient values as the data changes.
    Starting Price: $15 one-time payment
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    Multisim
    Multisim ™ software integrates industry standard spice simulation with an interactive schematic environment to instantly visualize and analyze the behavior of electronic circuits. Its intuitive interface helps teachers reinforce circuit theory and improve theory retention throughout the engineering curriculum. By adding powerful circuit simulation and analysis to the design flow, Multisim ™ helps researchers and designers reduce iterations of printed circuit board (PCB) prototypes and save development costs. Multisim ™ for Education is circuit teaching application software for analog, digital and power electronics courses and labs. Multisim ™ provides engineers with the SPICE simulation, analysis and PCB design tools to rapidly iterate on designs and improve prototype performance.
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    MPLAB Mindi Analog Simulator

    MPLAB Mindi Analog Simulator

    Microchip Technology

    MPLAB® Mindi™ Analog Simulator reduces circuit design time and design risk by simulating analog circuits prior to hardware prototyping. The simulation tool uses a SIMetrix/SIMPLIS simulation environment, with options to use SPICE or piecewise linear modeling, that can cover a very wide set of possible simulation needs. This capable simulation interface is paired with proprietary model files from Microchip to model specific Microchip analog components in addition to generic circuit devices. This simulation tool installs and runs locally on your PC. Once downloaded, no Internet connection is required, and the simulation run time is not dependent on a remotely located server. The result is fast, accurate analog circuit simulations. Run the simulation tool directly on your own PC; once installed no Internet connection is required.
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    Ansys Path FX
    Ansys Path FX allows you to calculate timing with variation on a full SoC, without taking any shortcuts. Its unique cell modeling delivers SPICE accuracy timing for any voltage or variation condition with a single library. Path FX has a fully threaded and distributed architecture, with the ability to scale to thousands of CPUs. Ansys Path FX’s path-based timing analysis has the technology to account for all critical contributors to delay and constraints across multiple process, voltage, temperature corners and scenarios. It can also automatically identify and simulate every clock path in your design. Two of the biggest challenges facing successful chip design today are limiting the power consumption through lower supply voltages and managing the complexity of advanced silicon processes at 7nm and below.
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    Siemens mPower
    The award-winning mPower solution provides power integrity analysis for digital, analog, and 3D IC across all design flows at any scale. Analog, semi-custom, and digital power integrity analysis can be readily integrated into existing design flows while scaling to circuits and chips of any size. The mPower tool suite performs fast, scalable, efficient analog and digital power integrity analysis from the smallest blocks to the largest full-chip layouts to verify power-related design goals and performance, providing high-confidence power analysis tape out for all technologies and design types. The mPower analog power integrity analysis solution provides simulation-based, high-capacity dynamic EM/IR analysis for uncompromised power integrity verification of analog designs across all design flows, at any scale. The mPower tool leverages industry-standard inputs and optimized memory requirements to increase scalability and decrease runtimes of digital power integrity analysis.
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    MPLAB Analog Designer

    MPLAB Analog Designer

    Microchip Technology

    Choose an existing power solution or customize a suggested design. Schematics and component lists are included. View or modify your choice and, with one click, export the design files to MPLAB® Mindi™ Analog Simulator for verification and analysis. Do you need help calculating your signal chain noise budget? The signal chain signal-to-noise calculator tool provides a simple, intuitive and flexible full noise analysis of your signal chain. Streamlined interface requires minimal data from inputs. Integrated design generators for starting new power designs or refining old designs. Easy transition from power solution selection to design verification. Signal chain signal-to-noise calculator is fully online with no software download required.
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    eCADSTAR
    Companies today are faced with complex design challenges and tight budgets. eCADSTAR is more than a PCB layout tool with simulation, 3D MCAD integration, and wire harness support all built on the latest technology for enterprise-level performance at an affordable cost. The modern intuitive UI makes eCADSTAR a compelling solution for all designers. Leverage eCADSTAR’s design capabilities to simplify and accelerate the design process. With the digitally connected library, intuitive schematic capture, and tools to accelerate PCB layout engineers spend less time manipulating the tool and more time doing what they do best, innovate creative solutions for today’s technological challenges. One of the most time-consuming parts of the design process is the test plan. The validation process can be costly in terms of time and money without adequate upfront simulation. eCADSTAR’s capabilities in Spice simulation and SI/PI analysis delivers test cycle time reductions.
    Starting Price: $3,995 one-time payment
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    Examinator-Pro
    Examinator-Pro, a combination of EXAMINe and translATOR, is Galaxy's flagship software solution for semiconductor engineers. It transforms standard test data files into comprehensive reports and enables you to drill down into the data interactively for root-cause analysis. New features include multi-variable corner-case characterization, accelerated life testing, and fast, flexible queries on massive datasets. Supporting standard semiconductor data files such as STDF, GDF, CSV, and over 120 datalog formats, it empowers engineers to conduct device characterization, test program qualification, reliability analysis, and yield analysis studies with ease. Examinator-Pro is the industry standard for semiconductor data analysis, used by over 8,500 engineers across fabless, IDM, and ATE companies. Typically, these engineers use Examinator-Pro to conduct characterization of early samples, then qualify the product and test hardware before the production ramp using repeatability.
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    FlexLogger

    FlexLogger

    National Instruments

    FlexLogger helps you build flexible, scalable data-logging systems with NI DAQ hardware, no programming required. You can use sensor-specific configuration workflows to quickly set up, visualize, and log a mix of synchronized measurements from analog sensors, digital signals, and vehicle communication buses. You can also generate voltage, current, or digital signals to drive actuators or control set points. FlexLogger automatically saves metadata documenting your test configuration, so you can quickly trace test results and make comparisons across multiple tests. You can interactively review test results in the integrated data viewer to visually inspect your data and draw conclusions. FlexLogger automatically synchronizes mixed-signal measurements, so you can accurately analyze data from different sources to verify physical components function according to design specifications.
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    Accent PDF Password Recovery

    Accent PDF Password Recovery

    Passcovery Co. Ltd.

    Accent PDF Password Recovery is a powerful software tool designed to recover and remove passwords from Adobe PDF files quickly and efficiently. It instantly removes the Permissions password, unlocking restrictions on editing, copying, and printing, while also brute-forcing the Document Open password with optimized speed. The software supports all versions of Adobe PDF and offers multiple attack methods including brute force, extended mask, and dictionary attacks with mutation capabilities. AccentPPR uses all CPU cores and modern GPU acceleration for maximum performance on Intel, AMD, and NVIDIA hardware. It features a user-friendly interface with multilingual support and allows saving and resuming of attack sessions. Available for Windows, the software offers a free demo version and flexible licensing options for home and business users.
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    OptSim

    OptSim

    Synopsys

    Synopsys OptSim is an award-winning photonic integrated circuit (PIC) and fiber-optic system simulator that enables engineers to design and optimize photonic circuits and systems. It offers state-of-the-art time- and frequency-domain split-step algorithms, providing a native photonic-domain environment for accurate simulations. OptSim can function as a standalone solution with its own graphical user interface or integrate into the OptoCompiler Photonic IC design platform. When integrated with OptoCompiler, OptSim supports electro-optic co-simulation with Synopsys PrimeSim HSPICE and PrimeSim SPICE electrical circuit simulators, and seamlessly integrates with the PrimeWave Design Environment for advanced simulation, analyses, and visualization, including parametric scans, Monte Carlo, and corner analyses. The software includes extensive libraries of photonic and electronic components and analysis tools, and supports numerous foundry process design kits (PDKs).
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    CircuitLab

    CircuitLab

    CircuitLab

    Easy-wire mode lets you connect elements with fewer clicks and less frustration. Unit-aware expression evaluation lets you plot arbitrary signals of interest, such as differential signals or power dissipation. In-browser simulation and plotting lets you design and analyze faster, making sure your circuit works before ever picking up a soldering iron. Advanced simulation capabilities include frequency-domain (small signal) simulation, stepping circuit parameters through a range, arbitrary Laplace transfer function blocks, and more. Work with multiple signals easily with configurable plotting windows, vertical and horizontal markers, and calculations on signals. Draw generic rectangular symbols for IC or system-level wiring diagrams with just a few clicks.
    Starting Price: $24 per year
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    Perforce IPLM
    Perforce IPLM (formerly Methodics) Platform For Full Traceability. Collaborate on worldwide semiconductor design with a new, modern platform. Semiconductor and chip design teams know that the development process can be long and costly. There is little room for error, and if an error happens, you have to go back to the beginning. But when you can share and reuse IP — and design it once and reuse multiple variants — you can accelerate time-to-market and drive greater revenue for your business. Perforce IPLM makes it possible. Perforce IPLM is a comprehensive IP lifecycle management (IPLM) platform. It enables companies of all sizes to have complete control over the design and integration of both internal and external design elements. This includes libraries, new analog and digital design, and standalone IP. Perforce IPLM maximizes internal and external design traceability and reuse by tightly coupling IP creators with IP consumers.
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    PathWave Advanced Design System (ADS)
    PathWave ADS offers integrated design guidance via templates to help you get started faster. Extensive component libraries make it easy to find the part you want. Automatic sync with layout allows you to visualize the physical layout while making schematic designs. Data helps teams visualize whether their designs meet specifications. The data display and analytics capabilities in PathWave ADS produce graphs, charts, and diagrams to give you design confidence. Quickly accelerate your design with wizards, design guides, and templates. The complete design flow includes schematic, layout, circuit, electro-thermal, and electromagnetic simulations. Signal and power integrity are becoming more important as frequency and speed increase in printed circuit boards (PCBs). Losses associated with transmission line effects can cause failures in electronic devices. Modeling traces, vias, and interconnects are necessary to simulate the board accurately.
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    Ansys PowerArtist
    Ansys PowerArtist is the comprehensive RTL design-for-power platform of choice of leading low-power semiconductor companies for early power analysis and reduction. PowerArtist includes physically-aware RTL power accuracy, interactive power debug, analysis-driven power reduction, unique metrics for tracking power efficiency and vector coverage, rapid power profiling of real workloads, and seamless enablement of RTL-to-physical power grid integrity. PowerArtist’s unique physically-aware modeling delivers predictable RTL power accuracy with fast turnaround enabling leading semiconductor companies to make early decisions reliably. Analyzing power after synthesis is too late. Design teams rely on PowerArtist to slice and dice power, identify power-inefficient RTL code and every wasted toggle in the design, and rapidly profile millions of cycles.
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    NL5 Circuit Simulator
    There are plenty of circuit simulators available on the market. Just read their ads: high performance, extremely fast, industry-standard (i.e. SPICE), easy to use, highly intuitive. If you want to see if a tool is worth using, try it yourself. That's what many NL5 users already did. I hope they will share their encouraging stories soon. A few words about what should you expect from NL5. It is not one more SPICE (and not even close), nor is it a SPICE replacement. For some tasks NL5 is far superior, for others simply good, and some tasks are not for NL5 at all.
    Starting Price: $500 one-time payment
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    Ansys Fluent
    Ansys Fluent is the industry-leading fluid simulation software known for its advanced physics modeling capabilities and industry leading accuracy. Ansys Fluent gives you more time to innovate and optimize product performance. Trust your simulation results with a software that has been extensively validated across a wide range of applications. With Ansys Fluent, you can create advanced physics models and analyze a variety of fluids phenomena—all in a customizable and intuitive space. Accelerate your design cycle with this powerful fluid simulation software. Ansys Fluent contains the best-in class physics models and can accurately and efficiently solve large , complex models. Ansys Fluent unlocks new potentials for CFD analysis. A fluid simulation software with fast pre-processing and faster solve times to help you be the fastest to break into the market. Fluent’s industry leading features enable limitless innovation, while never making a compromise on accuracy.
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    Fieldscale

    Fieldscale

    Fieldscale

    36% decrease in power consumption of the end product, with an optimized sensor design. Acceleration in their R&D efforts by being able to test hundreds of different sensor components and design variations simultaneously. Ability to identify design flaws in a matter of hours instead of weeks, and thus reducing the time-to-market for new products. Its cutting-edge algorithms are integrated within a simple, intuitive user environment to support the effortless design of great touch screen products. Fieldscale solvers expand the boundaries of electric simulation as we know them today, enabling very complex simulations. With thousands or even millions of analyses and different scenarios and get the results the same day. Fieldscale finally enables the possibility for you to realize optimal design easier and faster than your competitors.
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    AWR Design Environment Platform

    AWR Design Environment Platform

    Cadence Design Systems

    The Cadence AWR Design Environment Platform accelerates RF/microwave product development cycles with design automation that enhances engineering productivity and reduces turnaround time. This seamlessly integrated platform empowers engineers with advanced high-frequency circuit and system simulation coupled with in-design electromagnetic (EM)/thermal analyses for manufacturing-ready high-frequency IP, offering unmatched efficiency and precision. Designed to enhance engineering productivity, the user interface is powerful and intuitive. It offers smart, customizable design flows that cater to the specific needs of today's high-frequency semiconductor and PCB technologies. A unified design capture system facilitates a front-to-back physical design flow. Electrical and layout design entries are dynamically linked, ensuring that components placed in an electrical schematic automatically generate a synchronized physical layout.
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    Autodesk EAGLE
    EAGLE is electronic design automation (EDA) software that lets printed circuit board (PCB) designers seamlessly connect schematic diagrams, component placement, PCB routing, and comprehensive library content. Bring your design to life with a wide range of PCB layout tools in EAGLE. Drag and drop reusable design blocks between your projects, complete with synchronized schematic and PCB circuitry. Validate your schematic design with a complete set of electronic rule checks, so your schematic can stay on track. All changes stay automatically in sync between your schematic and layout, so you can focus on the creative process. Control your design flow and avoid unexpected surprises with fully customizable PCB design rules and constraints. Worry-free libraries are ready for your next design. Find and place parts dynamically linked to our growing catalog.
    Starting Price: $60 per month
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    PathWave System Design

    PathWave System Design

    Keysight Technologies

    Go beyond math-based modeling with a complete RF-aware design workflow, plus decades of Keysight measurement science in RF instrumentation, ready for any system architect. PathWave System Design offers the most advanced prototyping and design platform for complex RF systems with faster simulation speed, near-circuit fidelity, libraries for radar, electronic warfare, satellite, 5G, and WiFi, plus enterprise integration with numerous partners. Statistical models for propagation and channels can only take your system designs so far. Dynamic kinematic modeling for radar, electronic warfare, satellite, 5G, and automotive are all possible with connections to tools such as STK by AGI, an Ansys Company. Designers of advanced cellular systems need trusted reference libraries that are based on Keysight measurement science. Researchers exploring the next generation of communications signals need a flexible platform for physical layer development and testing.
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    CIVA

    CIVA

    EXTENDE

    CIVA is a comprehensive simulation and analysis software designed specifically for Non-Destructive Testing (NDT) applications, offering advanced tools for Ultrasonic Testing (UT), Eddy Current Testing (ECT), and Radiographic Testing (RT). It provides powerful modeling capabilities to simulate inspection processes, enabling users to predict and analyze the performance of NDT methods in a virtual environment before conducting real-world inspections. CIVA helps optimize inspection techniques, reduce costs, and improve reliability by simulating defect detection, characterizing material properties, and visualizing inspection scenarios in detail. Its user-friendly interface and robust computational algorithms make it an essential tool for industries such as aerospace, energy, and manufacturing, where safety and precision are paramount. With CIVA, engineers can evaluate inspection parameters, enhance defect detection reliability, and ensure compliance with industry standards.
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    Ansys SIwave
    A specialized tool for power integrity, signal integrity, and EMI analysis of IC packages and PCBs. Solves power delivery systems and high-speed channels in electronic devices. SIwave helps you model, simulate, and validate high-speed channels and complete power delivery systems typical in modern high-performance electronics. It accurately extracts multi-gigabit SERDES and memory buses, providing product sign-off compliance for various designs. SIwave’s full wave extraction of complete power distribution networks (PDN) enables you to verify noise margins and ensure impedance profiles are met through automatic decoupling analysis in low-voltage designs. SIwave helps you model, simulate, and validate high-speed channels and complete power delivery systems typical in modern high-performance electronics. It accurately extracts multi-gigabit SERDES and memory buses, providing product sign-off compliance for various designs.