Alternatives to Ansys Electronics Desktop (AEDT)

Compare Ansys Electronics Desktop (AEDT) alternatives for your business or organization using the curated list below. SourceForge ranks the best alternatives to Ansys Electronics Desktop (AEDT) in 2024. Compare features, ratings, user reviews, pricing, and more from Ansys Electronics Desktop (AEDT) competitors and alternatives in order to make an informed decision for your business.

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    OrCAD X

    OrCAD X

    Cadence Design Systems

    OrCADยฎ 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. PSpiceยฎ 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.
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    BQR

    BQR

    BQR Reliability Engineering

    ๐—”๐—œ-๐—ฝ๐—ผ๐˜„๐—ฒ๐—ฟ๐—ฒ๐—ฑ ๐—ฎ๐—ป๐—ฑ ๐—ฝ๐—ฎ๐˜๐—ฒ๐—ป๐˜๐—ฒ๐—ฑ, ๐—•๐—ค๐—ฅโ€™๐˜€ ๐˜€๐—ผ๐—น๐˜‚๐˜๐—ถ๐—ผ๐—ป๐˜€ ๐—ฒ๐—ป๐—ต๐—ฎ๐—ป๐—ฐ๐—ฒ ๐—ฝ๐—ฟ๐—ผ๐—ฑ๐˜‚๐—ฐ๐˜ ๐—ฟ๐—ฒ๐—น๐—ถ๐—ฎ๐—ฏ๐—ถ๐—น๐—ถ๐˜๐˜† ๐—ฎ๐—ป๐—ฑ ๐—ฟ๐—ฒ๐—ฑ๐˜‚๐—ฐ๐—ฒ ๐—ฐ๐—ผ๐˜€๐˜๐˜€. ๐—˜๐˜…๐—ฝ๐—น๐—ผ๐—ฟ๐—ฒ ๐—ผ๐˜‚๐—ฟ ๐˜€๐˜‚๐—ถ๐˜๐—ฒ ๐—ผ๐—ณ ๐Ÿฑ ๐—ฎ๐—ฑ๐˜ƒ๐—ฎ๐—ป๐—ฐ๐—ฒ๐—ฑ ๐—ฎ๐˜‚๐˜๐—ผ๐—บ๐—ฎ๐˜๐—ฒ๐—ฑ ๐—ฒ๐—น๐—ฒ๐—ฐ๐˜๐—ฟ๐—ผ๐—ป๐—ถ๐—ฐ ๐—ฑ๐—ฒ๐˜€๐—ถ๐—ด๐—ป ๐—ฎ๐—ป๐—ฎ๐—น๐˜†๐˜€๐—ถ๐˜€ ๐—ฎ๐—ป๐—ฑ ๐—ผ๐—ฝ๐˜๐—ถ๐—บ๐—ถ๐˜‡๐—ฎ๐˜๐—ถ๐—ผ๐—ป ๐˜๐—ผ๐—ผ๐—น๐˜€: ๐—ฆ๐˜†๐—ป๐˜๐—ต๐—ฒ๐—น๐˜†๐˜‡๐—ฒ๐—ฟ๐—ง๐— : streamlines PCB design with de-rating & MTBF prediction. ๐—–๐—ถ๐—ฟ๐—ฐ๐˜‚๐—ถ๐˜๐—›๐—ฎ๐˜„๐—ธ๐—ง๐— : verifies multi-PCB systems for errors & overstress. ๐—ณ๐—ถ๐—ซ๐˜๐—ฟ๐—ฒ๐˜€๐˜€ยฎ: predicts component lifespan with de-rating, thermal & stress analysis. ๐—–๐—”๐—ฅ๐—˜ยฎ: assesses reliability, availability, maintainability & safety. ๐—ฎ๐—ฝ๐—บ๐—ข๐—ฝ๐˜๐—ถ๐—บ๐—ถ๐˜‡๐—ฒ๐—ฟยฎ: optimizes maintenance & logistics.
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    Altium Designer
    Altium Designerยฎ offers a unified design environment backed by over 35 years of innovation and development. From schematic to PCB layout and interactive differential pair routing, to design documentation and a seamless ECAD/MCAD integration, Altium Designer empowers engineers with a single view of every aspect of the PCB design process. By accessing all design tools in one place, engineers can complete their entire design process within the same intuitive environment and deliver high-quality products quickly. With the addition of Altium 365, users can choose between accessing the program online and on-premises.
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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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    Ansys HFSS
    Multipurpose, full wave 3D electromagnetic (EM) simulation software for designing and simulating high-frequency electronic products such as antennas, components, interconnects, connectors, ICs and PCBs. Ansys HFSS is a 3D electromagnetic (EM) simulation software for designing and simulating high-frequency electronic products such as antennas, antenna arrays, RF or microwave components, high-speed interconnects, filters, connectors, IC packages and printed circuit boards. Engineers worldwide use Ansys HFSS software to design high-frequency, high-speed electronics found in communications systems, advanced driver assistance systems (ADAS), satellites, and internet-of-things (IoT) products. HFSSโ€™s unmatched capacity, coupled with indisputable accuracy, enables engineers to address RF, microwave, IC, PCB and EMI problems for most complex systems. The Ansys HFSS simulation suite consists of a comprehensive set of solvers to address diverse electromagnetic problems.
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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 Maxwellโ€™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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    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.โ€ 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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    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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    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. Ansysโ€™ complete PCB design solution enables you to simulate PCBs, ICs, and packages and accurately evaluate an entire system.
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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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    PathWave RF Synthesis

    PathWave RF Synthesis

    Keysight Technologies

    Analyze RF and microwave circuits and systems with fast simulation and powerful optimization tools. Explore performance trade-offs with automatic circuit synthesis technology. PathWave RF Synthesis (Genesys) provides entry-level functionality suitable for all RF and microwave circuit board and subsystem designers. Identify RF design errors missed by traditional spreadsheet calculations with PathWave Circuit Design. With this entry-level design environment โ€” including circuit, system, and electromagnetic simulators โ€” you will gain confidence in your design reviews before hardware realization. Just a few mouse clicks and you can watch as your matching network is synthesized and optimized automatically. Then, transfer the design to PathWave Advanced Design System (ADS) for inclusion into a more complex design.
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    Siemens Solido
    The Solido variation-aware design, IP validation, library characterization, and simulation solutions, powered by proprietary AI-enabled technologies, are used by 1000s of designers at the top semiconductor companies worldwide. Integrated suite of AI-accelerated SPICE, Fast SPICE, and mixed-signal simulators designed to help customers dramatically accelerate critical design and verification for next-generation analog, mixed-signal, and custom IC designs. Providing the industry's fastest, most comprehensive integrated IP validation solution, providing complete, seamless IP QA from design to tape-out, across all design views and IP revisions. Comprehensive AI-powered design environment for nominal and variation-aware verification of custom IC circuitry enabling full design coverage in orders-of-magnitude fewer simulations, with the accuracy of brute-force techniques. Providing fast, accurate library characterization tools powered by machine learning.
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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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    ModelSim

    ModelSim

    Siemens

    ModelSim simulates behavioral, RTL, and gate-level code, delivering increased design quality and debug productivity with platform-independent compilation. Single kernel simulator technology enables transparent mixing of VHDL and Verilog in one design. ModelSim packs an unprecedented level of verification capabilities into a cost-effective HDL simulator and is ideally suited for the verification of small and medium-sized FPGA designs, especially designs with complex, mission-critical functionality. ModelSimโ€™s advanced code coverage capabilities provide valuable metrics for systematic verification. Plus, ModelSimโ€™s ease of use lowers the barriers to leveraging verification resources. All coverage information is stored in the highly efficient UCDB database. Coverage results can be viewed interactively, post-simulation, or after a merge of multiple simulation runs. An easy-to-use and unified environment provides FPGA designers with the advanced capabilities they need for debugging.
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    Proteus

    Proteus

    Labcenter Electronics Limited

    We started developing Proteus way back in the days of MS-DOS. Over 30 years of constant development later we're proud to offer one of the most productive and cost effective PCB tools on the market. Our philosophy has always been one of continuous improvement and innovation resulting in a modern software suite packed full of powerful, time-saving features to help you design PCBs faster. Purchasing Proteus is the start - not the end - of a successful business relationship. Included with the cost of the software comes a world class technical support service. After each professional purchase one of our team will introduce themselves as your technical support point of contact. This gives you an easy way to ask questions and direct access to Labcenter support. We may not be able to solve every problem immediately but we'll certainly try our best. Our customers are the reason for our success.
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    Microwave Office

    Microwave Office

    Cadence Design Systems

    Microwave Office supports the design of RF passive components such as filters, couplers, and attenuators, as well as active devices operating under small-signal (AC) conditions such as low noise and buffer amplifiers. The linear configuration provides simulation of S-parameters (Y/Z/H/ABCD), small-signal gain, linear stability, noise figure, return loss/voltage standing wave ratio (VSWR), and more, as well as real-time tuning, optimization, and yield analysis. All E-series Microwave Office portfolios include synchronous schematic / layout editors, 2D/3D viewers, comprehensive libraries of high-frequency distributed transmission models, surface-mount vendor component RF models with footprints, measurement-based simulations, and RF plotting. Microwave Office PCB enables linear and nonlinear RF circuit design with the robust APLAC HB simulator and its powerful multi-rate HB, transient-assisted HB, and time-variant simulation engine, supporting analysis of RF/microwave circuits.
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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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    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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    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 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, Cadenceยฎ Sigrity X PowerSIยฎ 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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    SOLIDWORKS PCB

    SOLIDWORKS PCB

    SOLIDWORKS

    SOLIDWORKS PCB enables the productivity you need to design Printed Circuit Boards (PCBs) quickly along with unique, collaboration between electrical and 3D mechanical design teams. It offers a clear advantage where ECAD-MCAD collaboration is critical for overall success of electronic product design. Define rigid-flex regions, layers, and stack thicknesses enabling single board rigid-flex PCB design. The rigid-flex layer stack regions can be defined with bend lines and angles and validated with 3D folding and component clearance checking to ensure layout correctness. Manage project, design files and documentation with SOLIDWORKS PCB-PDM Connector and the SOLIDWORKS PDM-based design and data management workflow. Securely store and index design data for fast retrieval, eliminate concerns over version control and data loss, and collaborate on design data from multiple locations. Unmatched ECAD-MCAD integration and collaboration with SOLIDWORKS that unifies design data.
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    Allegro X Design Platform

    Allegro X Design Platform

    Cadence Design Systems

    The Cadence Allegro X Design Platform is the ultimate solution for navigating modern electronic complexities that help support your diverse PCB design needs. As a full-stack engineering platform, it provides a scalable and highly integrated environment for multi-board electronic system design. Allegro X ensures that your global teams can effectively and concurrently collaborate to minimize project risks, lower production costs, and ensure design compliance and standards are met. Electrical engineers and PCB designers can make data-driven decisions with access to constraints and integrated analysis workflows reducing turnaround time while ensuring product reliability, manufacturing, and first pass success.
    Starting Price: Available Upon Request
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    DesignSpark PCB

    DesignSpark PCB

    DesignSpark

    Our free DesignSpark PCB is here to help your company explore more design options, leading to increased innovation. At the core of this unique software is a powerful software engine that enables you to capture schematics and design PCB boards and layouts. Our range of free-of-charge design tools and resources take your brightest ideas all the way through to final production. Whether you're looking for a design alone tool, a range of technical information, a complete design ecosystem, our complete suite can be integrated seamlessly into your existing design workflow. Be free when creating your schematic, there is no limitation on your schematic size or number of your schematic sheets. Feel free to use as many layers as you need on your next PCB design. There are no limits on the maximum number of nodes or pads and no restriction on the number of connections. The maximum size your PCB can be is 1m X 1m.
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    KiCad EDA

    KiCad EDA

    KiCad EDA

    With the schematic editor you can create your design without limit, there are no paywalls to unlock features. An official library for schematic symbols and a built-in schematic symbol editor help you get started quickly with your designs. Make professional PCB layouts with up to 32 copper layers. KiCad now has a push and shove router which is capable of routing differential pairs and interactively tuning trace lengths. KiCad includes a 3D viewer which you can use to inspect your design in an interactive canvas. You can rotate and pan around to inspect details that are difficult to inspect on a 2D view. Multiple rendering options allow you to modify the aesthetic appearance of the board or to hide and show features for easier inspection. KiCadโ€™s schematic capture is efficient, with all the tools you can expect for such a task. The interface focuses on productivity. There are no complexity limits, as large designs can be divided into hierarchical subsheets.
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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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    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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    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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    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, Cadenceยฎ Sigrity X OptimizePIโ„ข 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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    PDN Analyzer
    Altiumโ€™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.
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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 todayโ€™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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    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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    Synopsys Saber
    Synopsys Saber is a solution of high-precision virtual prototyping tools for multi-domain power electronics design that consists of SaberEXP, SaberRD, and SaberES Designer. Saber allows an engineer to run complex simulations with varying component tolerances, generate best and worst-case results, and easily conduct โ€œwhat-ifโ€ studies. Industry-leading accuracy lowers development costs by reducing the number of prototypes required. SaberEXP is a piecewise linear (PWL) quick converging simulator for power electronics, with seamless export into SaberRD. SaberRD adds an integrated design and simulation environment for mechatronic systems, with best-in-class analysis for power electronics validation. SaberES Designer is a wiring harness tool for optimizing wiring layout, materials, and costs, and can be integrated with industry CAD systems. Utilize systematic robust design methods to meet aggressive performance and reliability goals in compressed schedules.
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    CircuitStudio
    Quickly design advanced board layouts with interactive routing and the intelligent Situsโ„ข Autorouting technology. Effortlessly collaborate with your mechanical design team with Native 3Dโ„ข PCB editing and STEP MCAD support. Accurately simulate and ship advanced electronics with integrated XSPICE analog & digital simulation. Quickly transform your ideas into reality with hierarchical schematic capturing and constraint-driven PCB layout technology. Instantly begin work on your next design project with an easy-to-use interface and customizable workflow. Take advantage of your complete design history with Altium designer and EAGLE compatibility. Never miss another deadline with real-time component pricing and availability data from hundreds of suppliers. Quickly create custom parts in a snap with included parametrics and datasheets from the Circuitstudio content library.
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    Symbiotic EDA Suite

    Symbiotic EDA Suite

    Symbiotic EDA

    Find bugs early and raise the confidence in your design by using formal checks and formal properties. Apply formal early on in the design process wherever it makes sense for your application. Use formal cover traces to further your design understanding and answer hard questions about the design under test. Apply formal safety properties to produce shorter and more insightful traces than simulation could ever generate. Employ formal proofs to ensure correctness of your design, use mutation cover to gain confidence in your simulation-based verification strategy, and speed up writing of test cases by guiding the process with formal cover traces. Unbounded and bounded verification of safety properties. Reachability-check and bounds-detection for cover properties
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    Synthelyzerโ„ข ECAD Plugin

    Synthelyzerโ„ข ECAD Plugin

    BQR Reliability Engineering

    Effortless Electrical Stress Analysis, MTBF Calculation, Component Derating, and FMECA Analysis Within Your ECAD During Board Design. Key features: โ€ข Utilizes cutting-edge AI technology for robust and efficient design solutions. โ€ขSeamless integration with leading ECAD software for streamlined workflow and real-time analysis. โ€ขIncludes automated circuit stress calculators to accelerate design processes. โ€ขPerforms detailed analysis of electrical stress derating for components. โ€ขUtilizes thermal simulation results to enhance derating accuracy. โ€ขProvides thermal resistance data and stress metrics for 3D thermal simulations. โ€ขIdentifies EOS violations with Pareto analysis and detailed reports on over-stress and over-design. โ€ขRecommends design adjustments to resolve overstress issues effectively. โ€ขImplements derating guidelines managed for optimal component performance. โ€ขAutomates FMECA analysis
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    EMWorks

    EMWorks

    EMWorks

    EMWorks provides best-in-class electromagnetic simulation software for electrical and electronics design with multiphysics capabilities. The companyโ€™s products are fully and seamlessly embedded in SOLIDWORKS and Autodesk Inventorยฎ. Applications include electromechanical and power electronics, antennas, RF and microwave components, and power and signal integrity of high-speed interconnects. EMS is an electromagnetic field simulation software for designing and optimizing electromagnetic and electromechanical devices such as transformers, electric motors, actuators, and sensors inside SOLIDWORKSยฎ and Autodeskยฎ Inventorยฎ. EMWorks2D is a 2D electromagnetic simulation software for 2D planar and axis-symmetric geometries and it is completely embedded inside SOLIDWORKS. This product enables users to do quick simulations before migrating to 3D and helps in rapid product development.
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    Altium 365
    Design, share and manufacture, all in the same space without the need to install or configure anything at all. Connect to the platform directly from Altium Designer, without changing the way you design electronics. Altium 365 does not require additional licenses, and it is included in your subscription plan. Bring higher-quality products to market faster than your competitors, thanks to transparency in reviews and design sharing. Share, in real time and without having to leave your design space, the status of projects with team members, manufacturers, and even clients, who can review and comment on your designs. Anyone with Internet access can view, search, contrast and comment on your projects from a browser and without the need to purchase additional Altium Designer licenses. Make mechanical and electronic collaboration challenges a competitive advantage by working seamlessly across domains, without losing sight of purpose or time.
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    CircuitMaker
    CircuitMaker is not just a free EDA software tool from Altium, itโ€™s also a community of creative people and design content, working together to invent circuits and electronics products for a better future. For turning great ideas into real products, you need design tools that wonโ€™t limit your imagination or hold you back. CircuitMaker has all the power you need to design high quality schematics and Printed Circuit Boards, with no artificial limits on layer counts or board area. Best of all itโ€™s free. The CircuitMaker community is where you will find great reference designs, and be able to promote and rate other projects in the community. You can even set up teams for collaborative design efforts. We think you deserve better design tools, made specifically for you, to turn great ideas into reality. Thatโ€™s why weโ€™ve created CircuitMaker. Besides being a collaborative community for electronic design content, CircuitMaker is Schematic & PCB design software.
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    DipTrace

    DipTrace

    DipTrace

    PCB Layout is a high-level engineering tool for board design featuring smart manual routing of high-speed and differential signals, shape-based autorouter, advanced verification, and wide import/export capabilities. Design requirements are defined by net classes, class-to-class rules, and detailed settings by object types for each class or layer. DipTrace features design process with real-time DRC, which reports errors on the fly before actually making them. The board can be previewed in 3D and exported for mechanical CAD modeling. Design rule check with in-depth detailing, net connectivity verification, and comparing to source schematic ensure maximum quality of the final product. DipTrace is a single environment with direct circuit-to-board converting, updating from schematic, and back annotation. Nets are divided to net classes with custom settings and class-to-class rules. Through and blind/buried vias are organized to via styles.
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    Sigrity X Platform

    Sigrity X Platform

    Cadence Design Systems

    Step into the future with Sigrity X Platform โ€“ 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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    Siemens PowerPro
    PowerPro offers the most comprehensive set of features to RTL designers to โ€œdesign-for-low-powerโ€. 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 โ€œdesign-for-low-powerโ€. 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. PowerProโ€™s automatic power optimization delivers low-power RTL automatically with integrated logic equivalence checking. PowerProโ€™s automatic optimization is the only proven low-power RTL generation technology in the market today.
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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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    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.
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    Pulsonix

    Pulsonix

    Pulsonix

    Automatically heal damaged copper areas during interactive editing. User-defined design selections can be easily refined. Interactively move components and enclosures in the 3D environment with real-time clash detection of violations. When your technology requirements are such; benefit from advanced technology features such as flexi-rigid design, embedded components, and chip-on-board to provide you with the functionality you require. Use our standard or create your own extensive BOM, pick and place, PCB acceptance reports, and netlists in a number of different formats with ease from Pulsonix. Unique to Pulsonix, construction lines provide user-definable lines within your design from which to guide your design items. Using construction lines you can create complex board outlines or align irregular shapes and design items. Define rules for automatically creating naming conventions for new and existing styles.
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    Calibre Design Solutions
    Calibre Design Solutions is the industry leader for IC verification, delivering a complete IC verification and DFM optimization EDA platform that speeds designs from creation to manufacturing, addressing all sign-off requirements. Calibre Design Solutions delivers the most accurate, most trusted, and best-performing IC sign-off verification and DFM optimization in the EDA industry. The platform provides foundries, IDMs, and fabless companies with comprehensive, innovative verification technology for all nodes and processes. Calibre reliability verification performs checks against electrical and physical design rules and optimizes layouts to reduce the risk of early or catastrophic IC failures. The Calibre shift-left strategy provides pioneering tools and techniques that reduce signoff iterations and time to tape out while ensuring quality results. Cloud computing offers 24/7/365 access to highly scalable clusters of high-performance hardware specifically tuned for EDA tasks.
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    EasyEDA

    EasyEDA

    EasyEDA

    More than 1 million real-time updated components have been created, letting you focus on the design, and you can create or import your own common libraries. Benefit from Chinaโ€™s leading electronic components distributor - LCSC , EasyEDA supports direct links to more than 200,000 real-time, in-stock components at LCSC . Designers can refer to stocks, prices, and order at any time during design. It has the same features as the online version, and has more design areas, we have made a lot of improvements, recommended. Easy to use. If you have used other PCB tools then you can use it even more quickly. Light weight, less resource hungry, smoother experience, speed up your design. No activation, just register and login to use, no licensing required. Local backup automatically with document recovery at any time. Your files will also be saved on the cloud server, giving you double backup for you data security.
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    BQR CARE

    BQR CARE

    BQR Reliability Engineering

    Stop costly redesigns and delays caused by identifying design flaws late in the development process | Overcome challenges of managing and integrating vast amounts of data | Ensure reliability and performance of complex electronic systems | Reduce time-consuming RAMS analyses impacting project timelines | Integrate RAMS analysis tools seamlessly with existing CAD software | Gain clear, actionable insights for informed decision-making.
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    Cadence Clarity 3D Solver
    The Cadence Clarity 3D Solver is a 3D electromagnetic simulation software tool for designing critical interconnects for PCBs, IC packages, and systems on IC designs. The Clarity 3D Solver helps designers tackle the most complex electromagnetic challenges when designing systems for 5G, automotive, high-performance computing, and machine learning applications with gold-standard accuracy. Cadenceโ€™s industry-leading distributed multiprocessing technology in the Clarity 3D Solver delivers the virtually unlimited capacity and 10X speed required to efficiently and effectively address larger and more complex structures. It creates highly accurate S-parameter models for use in high-speed signal integrity, power integrity, high-frequency RF/microwave applications, and electromagnetic compliance analysis, enabling simulation results that match lab measurements, even at 112Gbps+ data transfer speeds.
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    XFdtd

    XFdtd

    Remcom

    XFdtd is a full-wave 3D electromagnetic (EM) simulation software created by Remcom. This innovative and full-featured electromagnetic simulation solver provides high-performance computing options and simplifies the analysis of the most complex EM problems. XFdtd offers a wide range of applications that include microwave device design, antenna design and placement, radar and scattering, biomedical applications, automotive radar, waveguides, military and defense contracts, RFID, EMC/EMI, and more.
    Starting Price: $14750.00/one-time/user
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    CST Studio Suite

    CST Studio Suite

    Dassault Systรจmes

    CST Studio Suite is a high-performance 3D EM analysis software package for designing, analyzing, and optimizing electromagnetic components and systems. Electromagnetic field solvers for applications across the EM spectrum are contained within a single user interface in CST Studio Suite. The solvers can be coupled to perform hybrid simulations, giving engineers the flexibility to analyze whole systems made up of multiple components in an efficient and straightforward way. Co-design with other SIMULIA products allows EM simulation to be integrated into the design flow and drives the development process from the earliest stages. Common subjects of EM analysis include the performance and efficiency of antennas and filters, electromagnetic compatibility and interference, exposure of the human body to EM fields, electro-mechanical effects in motors and generators, and thermal effects in high-power devices.