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World’s Best RF & Microwave Simulation Models
Piconics MVP
 



Piconics is a world-class supplier of high-quality microelectronic coil inductors for a wide variety of applications in the space, military, telecom, test & measurement and medical electronics industries. Piconics specializes in miniature MIL-Spec grade inductors along with tight tolerance, fine awg windings such as the Broad-band Conical and Microwave Air Coil Inductors. Piconics keeps the innovative spirit alive by continuing to work with industry leaders in microelectronics to provide inductor solutions to the most challenging problems. The Engineering team at Piconics continues the philosophy of promoting and innovating high-quality microelectronic inductors for the industry's most cutting edge applications. Piconics is an ISO 9001:2008 certified company with all manufacturing taking place in Tyngsboro, MA USA.

Start your next design with the most accurate and well documented models in the industry! Our passive and active model libraries contain up-to-date, measurement-based models that are fully integrated with the latest electronic design automation (EDA) simulation tools. Our goal is to help you achieve your design goals and make part selection and design optimization decisions more quickly and with more confidence.

Modelithics high accuracy measurement-based models reliably track how component performance will change with various input parameters over a specified frequency range documented in a model information data sheet for each component. Please visit our products page for more information about available models and the unique advantages of using Modelithics model libraries.


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More Info Part Number Model Body Style Max Freq (GHz) Part Values Downloads Features
CCxxxTxxK240G5-C IND-PIC-CONE-SERS-001 SMT Conical 50 0.22-8 uH BB, SS, VS
CCxxxTxxK240G5-C IND-PIC-CONE-SERS-101 SMT Conical 50 0.22 - 8 uH BB, SS, VS
CCxxxTxxK240G5-C IND-PIC-CONE-SHNT-001 SMT Conical 65 0.22-8 uH S-Parameters BB, VS
CCxxxTxxK240G5-C IND-PIC-CONE-SHNT-101 SMT Conical 40 0.22-8 uH BB, VS

Legend

 
BB
Broadband Component
BW
Bondwire de-embedding
FL
Flicker Noise (1/F)
IM
3rd order IMD validated
LP
Load Pull
NL
Non-Linear
NP
Noise Parameter
OS
Orientation Selectable
PD
Pad De-embedding
PS
Pad Scaling
SP
S-Parameter Data Model
SS
Substrate Scalable
TS
Temperature Scalable
VS
Part Value Scalable/Selectable
XP
X-Parameter Data Model

Model Listing

Application Note

  Note # Title Date Example Files
52 A Design Flow for Rapid and Accurate Filter Prototyping 6/29/2015
51 AXIEM Co-Simulation with Modelithics Models 6/23/2015
50 Good, Better And Best: Techniques For Achieving First Pass Success In Lumped Element Pcb -Based Filter Designs 3/18/2015
48 Recommendations For Port Setup When Using ADS Momentum And Modelithics Models 1/1/2014
46 Improved Microwave Circuit Design Flow Through Passive Model Yield And Sensitivity Analysis 1/1/2014
39 Accurate Co-Simulation Of Surface-Mount Capacitors In Shunt Configurations 1/1/2014
37 Performing Em-Circuit Co-Simulation With Modelithics Models Using Sonnet Suites 1/1/2014
36 Effects Of Over-Molding On Surface Mount Capacitors And Inductors 1/1/2014
35 Proximity Effects In Closely-Spaced Surface Mount Passive Components 1/1/2014
29 Lumped Element Low-Pass Filter Design And Optimization Using Agilent Genesys Software 1/1/2014
26 Capacitor PI Network For Impedance Matching 1/1/2014
25 The Importance Of Pad Geometry In Maximizing Surface Mount Component Performance (Also Published Electronically By RF Globalnet) 1/1/2014
22 Part Value Tolerance In Surface Mount Components 1/1/2014
21 Filter Design Using 0201 Surface Mount LC'S 1/1/2014
20 Lumped Element Band-Pass Filter Design And Optimization 1/1/2014
19 Lumped Element High-Pass Filter Design And Optimization 1/1/2014
18 Lumped Element Low-Pass Filter Design And Optimization 1/1/2014
17 Lumped Element Filter Design And Optimization 1/1/2014
17 Lumped Element Filter Design And Optimization 1/1/2014
15 Reducing Part Count In Low-Pass Filter Designs 1/1/2014
14 Capacitor Tee Network Characteristics 1/1/2014



White Papers (Registration not required)

  Title Author Date Example
Understanding S-Parameter Vs. Equivalent Circuit-based Models For RLC Component Simulations In Keysight ADS And Genesys Modelithics: Scott Skidmore, Laura Levesque, And Scott Muir, Along With Jason Boh And How-siang of Keysight Technologies 12/4/2014
Understanding S-Parameter Vs Equivalent Circuit-based Models For RLC Component Simulations With NI/AWR Microwave Office Modelithics, Inc. 11/20/2014


Presentations

Title    Author Date Related Files
Modelithics Library Overview for ADS Modelithics, Inc. 2/6/2012
Modelithics Library Overview for AWR Modelithics, Inc. 2/6/2012