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Improve MEMS Design Productivity

Software for Micro-Electro-Mechanical Systems (MEMS)

Coventor supplies the MEMS industry with MEMS Design automation software. Whether it’s for research on new devices, process technology development, preparing for prototype runs or full production, Coventor has software tools to expedite and facilitate the design process.

Our latest product is MEMS+ the MEMS Product Design Platform.

    mems+ logo

    MEMS+IC DESIGN (MEMS+)
    MEMS products require a tight integration between the MEMS device and the accompanying circuit, wheter it's an ASIC, Custom-IC, or other circuit. The advanced tools and features in MEMS+ automate the tasks for generating MEMS models for IC Design software, optimizing mems + ic's together, simplifying design entry in 3-D, enabling companies to reduce their MEMS product turn around time and avoid many human related errors.
    mems variable capacitor programmed in MEMS+ innovator

    MEMS ANALYSIS (CoventorWare)
    MEMS devices are designed to take advantage of many mutli-physical phenomena. CoventorWare is a comprehensive suite of software tools for MEMS design and product development that lets you simulate the physcial coupled fields of MEMS devices. With CoventorWare, MEMS developers can quickly and easily design new devices, adapt designs to different requirements and study the impact on yield.
    dual mass gyroscope programmed in CoventorWare Architect3D

    MEMS Process Modeling (SEMulator3D)
    MEMS process technology is 3-D in nature and are used in areas outside of MEMS as well such as 3D-ICs. The SEMulator3D product enables MEMS designers and process engineers to visualize the effects of design and process modifications in 3-D before fabricating an actual device. It provides a rapid return on investment by running virtual prototype wafer runs and saving wafere starts.
    dlp mirror modeled in SEMulator3D

    Electro-Magnetic Modeling (EM3DS)

    EM3DS is the tool of choice for Electro-Magnetic analysis of any planar structure that has some non-planar features. For example, a dielectric resonator with a microstrip circuit: this is a classic case in which several planar programs could not solve the problem, where time-domain, general-purpose programs could be faced with issues resulting from the high quality factor of the resonator, and similar frequency-domain programs are generally slower.

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