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American Technical Ceramics

ATC

Modelithics Global Models™ reliably track how each component's performance will change with substrate characteristics, as illustrated in the Global Model data sheet for the component. Global Models automatically scale all substrate-sensitive parasitics with nominal part value, enabling a single model to generate accurate simulations of a complete component family. The data sheet also demonstrates the excellent measured-to-modeled agreement that can be expected using this model with the appropriate pads and substrate settings.

Global Models are available for Keysight EEsof ADS, AWR Microwave Office, and Keysight GENESYS. The models listed below can be purchased individually, as part of the Modelithics CLR Library , or as an ATC Global Model Sub-Library.


Submit Request for the Modelithics ATC Library - Complimentary (free) use available to qualified requestors.


 
Model Features
PCB Layout
Test Board Gerber File
¹ - Max. Freq. is the highest frequency the model was validated against measured data.
² - X-Parameters® is a registered trademark of Keysight Technologies
 
Model Features
PCB Layout
Test Board Gerber File
¹ - Max. Freq. is the highest frequency the model was validated against measured data.
² - X-Parameters® is a registered trademark of Keysight Technologies
 
Model Features
PCB Layout
Test Board Gerber File
¹ - Max. Freq. is the highest frequency the model was validated against measured data.
² - X-Parameters® is a registered trademark of Keysight Technologies

Modelithics App Notes

#52 -  A Design Flow for Rapid and Accurate Filter Prototyping
          Related file: AWR Example for App Note052
#51 -  AXIEM Co-Simulation with Modelithics Models
          Related file: AWR example for AN051
#50 -  Good, Better And Best: Techniques For Achieving First Pass Success In Lumped Element Pcb -Based Filter Designs
          Related file: ADS example for AN50
#48 -  Recommendations for Port Setup When Using ADS Momentum and Modelithics Models
#46 -  Improved Microwave Circuit Design Flow Through Passive Model Yield And Sensitivity Analysis
          Related file: AWR example for AN46
#39 -  Accurate Co-Simulation of Surface-Mount Capacitors in Shunt Configurations
#37 -  Performing Em-Circuit Co-Simulation With Modelithics Models Using Sonnet Suites
#36 -  Effects of Over-Molding on Surface Mount Capacitors and Inductors
#35 -  Proximity Effects in Closely-Spaced Surface Mount Passive Components
#29 -  Lumped Element Low-Pass Filter Design And Optimization Using Agilent Genesys Software
          Related file: Genesys example for AN29
#26 -  Capacitor Pi Network For Impedance Matching
#25 -  The Importance Of Pad Geometry In Maximizing Surface Mount Component Mance (Also Published Electronically By Rf Globalnet)
#22 -  Part Value Tolerance in Surface Mount Components
#21 -  Filter Design Using 0201 Surface Mount LC's
#20 -  Lumped Element Band-Pass Filter Design And Optimization
#19 -  Lumped Element High-Pass Filter Design And Optimization
#18 -  Lumped Element Low-Pass Filter Design And Optimization
#17 -  Lumped Element Filter Design And Optimization
#15 -  Reducing Part Count in Low-Pass Filter Designs
#14 -  Capacitor Tee Network Characteristics