RF & Microwave Design
Agilent design software provides proven RF and Microwave solutions with very accurate models and powerful simulation technologies ranging from circuit, electromagnetic (EM), and system level designs. With Agilent, you'll be equipped to pinpoint, optimize and deliver - on time.
RF and Microwave Design Challenges
- Ever increasing substrate layer counts, smaller form factors, complex packaging technologies, and closer design proximities continue to make designs ever more challenging
- Seamlessly integrated circuit and EM simulation tools that flow from schematic entry through to production and verification
- Continuous innovation of simulation technology performance to increase accuracy while dramatically reducing simulation speeds
What's New
- ClioSoft Announces the Integration of SOS Design Data Management with Advanced Design System
- Agilent to Demonstrate Latest RF Circuit, System and 3-D EM Design & Simulation Solutions at WAMICON
- Agilent Technologies Simulation Software Selected by Plextek RF Integration
- Designing Multiple-Throw Switches in a MMIC Configuration
- New W2349EP/ET ADS Electro-Thermal Simulator data sheet
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1-12 of 12
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Accurate Simulation Models Yield High Efficiency Power Amplifier Design
In this Paper, an accurate nonlinear transistor model is shown to form the basis for a systematic simulation-based design procedure for a microwave power amplifier.
Technical Overview 2005-12-01 |
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ADS for your RF Board Design Flow
Overview of ADS & Genesys for RF Board design flow.
Technical Overview 2009-02-03 |
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Automated Circuit Modeling Tool for Arbitrary Passive Microwave and RF Components
This Paper describes an automated circuit-modeling tool developed for arbitrary passive components. The tool builds compact, parameterized, analytical models based on fullwave EM simulations.
Technical Overview 2002-06-24 |
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De-Embedding Series-Connected/Transmission Configured Devices
This Technical Overview details the complete de-embedding methodology that has been successfully implemented in IC-CAP for device characterization and modeling purposes.
Technical Overview 2003-08-21 |
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Filters with Complex-Impedance Terminations
A Technical Note on Filters with Complex-Impedance Terminations details some techniques for designing filters with unequal or reactive terminations and also network matching.
Technical Overview 2005-11-14 |
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Overview on Co-Simulation of DSP, RF and Analog
This Paper presents a design environment supporting a mix of simulation engines, signals and models for DSP, RF and analog technologies.
Technical Overview 1999-01-01 |
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Overview on Constrained EM-based Modeling of Passive Components
An Overview by Tom Dhaene, Jan De Geest and Daniel De Zutter (Agilent Technologies) focusing on details of constrained EM-based modeling of passive components.
Technical Overview 2002-06-01 |
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Overview on EM Accuracy with the Speed of Analytical Models
This Paper by Mounir Adada presents the new model composer; ADS 2001 linear simulator, enables generation of EM accurate parameterized passive models with the simulation speed of analytical models.
Technical Overview 2001-12-01 |
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Overview on Microwave Coupled Line Filters Based on ADS
This Paper presents a new design methodology for microwave coupled lined filters based on Agilent ADS EDA software which combines circuit simulation and EM simulation under a single platform.
Technical Overview 2002-02-01 |
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Polygonal Basis Functions for EM Simulation of Geometrical Planar Structures
This paper presents a new polygonal vector functions that are the generalization of the rectangular and triangular rooftop functions allowing flexible meshing of complex geometrical structures.
Technical Overview 2002-06-01 |
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RF/Microwave Oscillator Phase Noise calculation - Envelope Transient Technique
A brief Technical Overview on Rigorous RF and Microwave Oscillator Phase Noise calculation using Envelope Transient Technique by E. Ngoya, J. Rousset, and D. Argollo
Technical Overview 2005-06-22 |
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SystemVue 2013 Technical Overview
SystemVue is a focused EDA environment for electronic system-level (ESL) design that enables system architects and algorithm developers to innovate the physical layer (PHY) of next-generation wireless and aerospace/defense communications systems.
Technical Overview 2013-01-30 |
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