Clarity 3D Solver

Experience the Next Generation in 3D EM Simulation - Unlimited Capacity, Uncompromising Accuracy, Unmatched Performance

Why Clarity for 3D EM?

Clarity 3D Solver provides robust, full-wave EM simulation to address the complex challenges of high-frequency systems. Efficiently analyze electromagnetic and power electronics with accurate finite element methods (FEM) for true 3D modeling and simulation of critical interconnects, PCB’s, system on IC (SOIC), and IC packages.

Key Benefits

  • Realistic Modeling and Simulation
  • Efficient Analysis of Large, Complex Systems
  • Unlimited Capacity
  • Seamless Integration to Design Analysis & Implementation Tools

Key Features

See how Clarity 3D EM Solver can benefit your design flow

Adaptive Mesh Performance

The advanced adaptive meshing algorithms automatically generate accurate meshes for the design from small intricate 3D components to large, complex electronic systems with enclosures.

Adaptive Mesh Performance

The advanced adaptive meshing algorithms automatically generate accurate meshes for the design from small intricate 3D components to large, complex electronic systems with enclosures.

S-Parameter Extraction

Clarity produces highly accurate S-Parameter models for SI, PI, RF/Microwave and electromagnetic compliance (EMC) analysis by imploring finite element methods (FEM). This enables simulation results that match actual lab measurements.

S-Parameter Extraction

Clarity produces highly accurate S-Parameter models for SI, PI, RF/Microwave and electromagnetic compliance (EMC) analysis by imploring finite element methods (FEM). This enables simulation results that match actual lab measurements.

Full System 3D Modeling and Analysis

Create a single model for an EM interface by merging mechanical structures, such as cables and connectors, with the design for an accurate system representation and analysis.
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Full System 3D Modeling and Analysis

Create a single model for an EM interface by merging mechanical structures, such as cables and connectors, with the design for an accurate system representation and analysis.
Learn More:

Distributed Multiprocessing Technology

Parallelization technology partitions and parallelizes meshing and frequency sweeps across as many available computers, computer configurations, and cores, optimizing the time required for analysis. Cloud distribution enables access to multiple cores in the cloud for unbounded simulation capacity.

Distributed Multiprocessing Technology

Parallelization technology partitions and parallelizes meshing and frequency sweeps across as many available computers, computer configurations, and cores, optimizing the time required for analysis. Cloud distribution enables access to multiple cores in the cloud for unbounded simulation capacity.

Frequency Domain Analysis

Simulate and analyze results for specific absorption rate (SAR), near field distribution, far field distribution, current distribution, and more.

Frequency Domain Analysis

Simulate and analyze results for specific absorption rate (SAR), near field distribution, far field distribution, current distribution, and more.

EMI Analysis

Analyze common issues of electromagnetic interference (EMI) and electromagnetic compatibility (EMC) compliance. Perform time domain simulation and examine results for voltage, current, field distribution, and field animation.

EMI Analysis

Analyze common issues of electromagnetic interference (EMI) and electromagnetic compatibility (EMC) compliance. Perform time domain simulation and examine results for voltage, current, field distribution, and field animation.

RF Antenna Design and Analysis

With the integration of Clarity 3D Solver within the AWR Design Environment platform, users can analyze critical antenna measurements for standard and custom response plots including antenna gain, efficiency, return loss, radiation patterns, and more.

RF Antenna Design and Analysis

With the integration of Clarity 3D Solver within the AWR Design Environment platform, users can analyze critical antenna measurements for standard and custom response plots including antenna gain, efficiency, return loss, radiation patterns, and more.

RF Design Analysis and Exploration

Integration with the AWR Deign Environment and Microwave Office provides a comprehensive design and analysis solution for RF products. Support for EM optimization, parameterization, and simulation-ready 3D EM libraries (wire bonds, connectors, etc.) allows designers to rapidly define their RF designs and optimize performance with the speed and accuracy of Clarity. For RF/microwave circuit designers focused on module design and component integration, a streamlined and automated workflow allows Microwave Office users to readily access the Clarity 3D Solver for S-parameter extraction and analysis of EM fields and currents of large, complex 3D-layered structures found within MMICs, densely populated RF PCBs, and multi-function RF/microwave modules.

RF Design Analysis and Exploration

Integration with the AWR Deign Environment and Microwave Office provides a comprehensive design and analysis solution for RF products. Support for EM optimization, parameterization, and simulation-ready 3D EM libraries (wire bonds, connectors, etc.) allows designers to rapidly define their RF designs and optimize performance with the speed and accuracy of Clarity. For RF/microwave circuit designers focused on module design and component integration, a streamlined and automated workflow allows Microwave Office users to readily access the Clarity 3D Solver for S-parameter extraction and analysis of EM fields and currents of large, complex 3D-layered structures found within MMICs, densely populated RF PCBs, and multi-function RF/microwave modules.

Want to Learn More?

Reach out to schedule a demo, ask questions, get a quote or take a test drive.

Additional Resources

Clarity 3D EM Solver is Part of the Sigrity Product Family

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