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EMArtist

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Product Details

EMArtist is a fully integrated power integrity (PI) and signal integrity (SI) analysis tool for electronic packaging and printed circuit board (PCB) design. Through three-dimensional (3-D) modeling and finite element method (FEM) analysis, EMArtist performs 3-D, full-wave model extraction, and power and signal integrity analysis, including DC (static), AC (frequency domain), and transient (dynamic) analysis. EMArtist can import package and PCB design formats exported from various CAD tools. EMArtist discretizes the 3-D physical model and then solves Maxwell equations to extract resistive SPICE models or broadband S-parameters from the discretized geometry via FEM methods.

Product Function

  • 3D Full-Wave Network Extraction and Power/Signal Integrity Analysis

    Adaptive meshing and adaptive frequency sweep, with accuracy benchmarked against leading commercial EM modeling tools

    Support for standard PCB/PKG design formats, such as .brd, ODB++, .mcm, etc.

    Support for generic discrete component models, including S-parameters or circuit models for capacitors, inductors, resistors, ferrite beads, and more

    Batch port setup automation and support for commonly used port types

    3D Full-Wave FEM Solver

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  • Flexible multiple viewing and editing options

    Topology viewing and device editing

    2D and 3D viewing

    Layer stacking, topology connection, vias and other information viewing and editing

    Content-rich one-click report function (.html) and feature-rich waveform display

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  • Built-in S-parameter post-processing tool

    Support various post-processing operations, such as parameter merging, port de-embedding/embedding, normalization, and stability analysis

    Support conversion of S-parameters into equivalent broadband SPICE circuit models

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Product Value

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    Integrated End-to-End Simulation

    EMArtist unifies Power Integrity (PI) and Signal Integrity (SI) analysis into a single workflow, covering DC, AC, and transient simulations. This eliminates tool switching and data inconsistency issues common in traditional flows, significantly improving design and verification efficiency.

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    High-Accuracy 3D Modeling and Full-Wave Analysis

    Leveraging the Finite Element Method (FEM) and 3D full-wave model extraction, engineers can obtain highly accurate electromagnetic characteristics. This ensures that simulations of complex packages and PCBs closely reflect real-world behavior, effectively reducing trial-and-error costs.

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    Shortened Development Cycles and Reduced Cost

    By enabling comprehensive simulation and validation early in the design phase, engineers can identify potential issues in advance, reducing repeated prototyping and hardware debugging. This leads to significantly lower R&D costs and faster time-to-market.

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