PollEx from Polliwog Corporation
provides the global electronics industry with unique sets of EDA software, allowing users to efficiently verify and evaluate their product designs.
PollEx provides solutions to the ever-increasing performance and complexity issues in the electronics design and manufacturing environment.
The PollEx suite of tools significantly improve the design to manufacturing cycle, eliminating unnecessary design iterations while significantly reducing time to market.
PollEx PCB Signal Integrity
Test before you make
PollEx SI (Signal Integrity)
is a fast, accurate, and easy-to-use signal integrity validation program for analyzing PCB designs. It allows users to detect and correct signal integrity problems during design stage so that costly design iterations are eliminated or significantly reduced.
Signal integrity validation capabilities are tightly integrated into PollEx PCB which is interfaced with various PCB design tools.
Complete signal integrity solutions are provided throughout the PCB design stages including the pre-design and post-layout stages.
Time-domain analysis capabilities include wave propagation delay, reflection, crosstalk, and eye diagram analyses.
Frequency-domain analysis capabilities include the calculation of scattering, admittance and impedance parameter matrices.
Fully automated built-in analysis features include layer stack-up optimization, net topology analysis and post-route signal integrity validation.
Built-in 3-D electro-dynamic finite element solver extracts S-parameters of coupled vias and generates equivalent broad-band SPICE netlists using network synthesis methods.
Built-in part and material editors allow user to easily generate I/O buffer models, package parasitic models, and material data and construct part and material libraries for repetitive uses.
PollEx PCB Thermal
Don't let your project become too hot to handle
is a fast, accurate, and easy-to-use finite element thermal validation program for analyzing PCB designs. It allows users to detect and correct thermal problems during design stage so that costly design iterations are eliminated or significantly reduced.
Thermal issues are resolved very early in the design stage, eliminating costly design changes and iterations. Automatic modeling and fast analysis allow users to quickly validate multiple design options, optimizing the PCB and system designs.
Interfaced with various PCB design tools.
Performs accurate 3-D finite element steady-state thermal analysis.
Analyzes any shape or size of PCB, any PCB construction and material.
Analyzes any type of cooling scheme, models convection, radiation, and conduction boundary conditions.
Models any locally varying thermal boundary condition, any package type and heatsink.
Provides easy and convenient ways of thermal characterization of components.
Automatically generates a large scale finite element model including the PCB, components, & the interface between the components and PCB.
Outputs temperatures at the junction and surfaces of components as well as the surfaces and mid-plane of PCB.
is a rule-based PCB verification software for manufacturing engineers.
Using PollEx PCB as its basis PollEx DFM supports PCB design data in various ECAD formats. It allows users to detect design errors which result in costly manufacturing defects.
Numerous manufacturing defect items are checked against the PCB design data, and any design errors are reported at the point of error so that they are easily identified and corrected. Consequently employing PollEx DFM results in significant reduction of manufacturing defects.
is a rule-based full 3D verification software for manufacturing engineers.
Using PollEx PCB and UPMS (Unified Part Library Management System) as its basis PollEx DFA supports PCB design data in various ECAD formats. It allows users to detect component collision as full 3D shapes.
PollEx DFA Provides
Full 3D verification solutions for PCB assembly
Detects component collision (body to body, body to lead) with intuitive graphic display
Reduce the time and cost in assembly process by detecting potential faults in early design stage
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