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SYNPLE

The MEMS and nanotechnology system-level design tools applied to multiple fields and scales are epoch-making products for effective comprehensive design of devices and circuits. Combined with other IntelliSuite modules, many technical challenges in industry can be solved. ◆ A good extensibility framework, which can easily add new units; ◆ Flexible unit definition method, no need to learn a new language; ◆ No need to spend a lot of time to calculate the Jacobian determinant, and the calculation speed is significantly better than the traditional numerical method; ◆ Pre-built cell libraries containing analog, digital, hybrid digital-analog, mechanical, and MEMS components. and is constantly being updated; ◆ The mEFM (Multiple Surface Meshing) algorithm specially developed for inertial devices such as MEMS gyroscopes and accelerometers can efficiently and accurately analyze the characteristic parameters of complex comb structures, greatly improving computing efficiency; ◆ Based on the Jiles-Atherton model and the quadratic domain rotation model, considering the hysteresis effect of the changing magnetic field, a MEMS unit with magneto-mechanical coupling and magneto-piezoelectric coupling is developed;
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应用领域

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SYNPLE—System Level Analysis and Simulation

Allows you to capture your MEMS at a schematic level. Your de-sign can then be quickly iterated and optimized at different gran-ularities. Sophisticated synthesis algorithms can automatically convert your schematic into mask layout, 3D or better yet a meshed structure for full multiphysics analysis.

 

 

SYNPLE includes cutting edge schematic capture and simulation tools allowing you to take a hierarchical ap-proach to the design space. SYNPLE provides a large mul-ti-domain library of electrical, mechanical, thermal, and MEMS libraries. These elements may be combined in an effortless drag-and-drop fashion and then wired to create schematics of multi-domain systems. As a result, you can quickly survey a large design space before initiating a de-tailed analysis and verification process.

 

 

 

 

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Domain Synthesis and Simulation Hierarchical multi-domain design

 

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Schematic based design exploration

 

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3D Visualize simulation results

 

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Schematic to mask

 

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Schematic to process flow

 

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Schematic to 3D model

 

 

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Schematic to mesh

 

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QUADRATURE ERROR CONTROL

 

QUADRATURE ERROR CONTROL

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System analysis to FEA/BEA

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SYNPLE to VHDL

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Displacement time delays of the mirrors array

 

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