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0603AF-121 PDF预览

0603AF-121

更新时间: 2024-09-14 13:46:35
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线艺 - COILCRAFT /
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Ferrite Chip Inductors

0603AF-121 数据手册

 浏览型号0603AF-121的Datasheet PDF文件第2页 
•ꢀ LOGꢀisꢀtheꢀnaturalꢀLOGꢀ(basee)  
                                                                             
Document 558  
SPICE Model – 0603AF  
This lumped-element (SPICE) model data simulates the  
frequency-dependent behavior of Coilcraft RF inductors  
within the frequency range shown in the accompanying  
table for each individual inductor.  
R
VAR2  
C
R1  
The data represents de-embedded measurements, as  
described below.Effects due to different customer circuit  
board traces, board materials, ground planes or interac-  
tions with other components are not included and can  
have a significant effect when comparing the simulation  
to measurements of the inductors using other production  
verification instruments and fixtures.  
L
R2  
R
VAR1  
VAR  
The value of the frequency-dependent variable resistor  
RVAR1 is calculated from:  
Lumped Element Modeling Method  
Measurements were made using a 50 Ohm impedance  
analyzer.Fixture compensation was performed to remove  
fixture effects. No DC bias current was applied in any of  
the measurements.  
R
VAR1 = k1 *  
•ꢀ k1ꢀisꢀshownꢀforꢀeachꢀvalueꢀinꢀtheꢀaccompanyingꢀtable.  
•ꢀ fꢀisꢀtheꢀfrequencyꢀinꢀHz  
•ꢀ RVAR1 is the resistance in Ohms  
Measurements were also taken on a network analyzer  
over a brass ground plane with the component centered  
over an air gap with a width of 0.026 inch (0.66 mm), as  
illustrated in Figure 1.The test pads were 30 mil (50 Ohm)  
wide traces of tinned gold over 25 mil thick alumina, and  
were not included in the gap. The TRL* calibration plane  
is also illustrated in Figure 1.  
The value of the frequency-dependent variable resistor  
RVAR2 is calculated from:  
RVAR2 = k2 *  
•ꢀ k2ꢀisꢀshownꢀforꢀeachꢀvalueꢀinꢀtheꢀaccompanyingꢀtable.ꢀ  
•ꢀ fꢀisꢀtheꢀfrequencyꢀinꢀHz  
•ꢀ RVAR2 is the resistance in Ohms  
The value of the frequency-dependent inductance LVAR  
is calculated from:  
LVAR = k3 k4 * LOG (k5 * f)  
•ꢀ k3,ꢀk4,ꢀandꢀk5ꢀareꢀshownꢀinꢀtheꢀaccompanyingꢀtable.  
•ꢀ fꢀisꢀtheꢀfrequencyꢀinꢀHz  
Air gap  
Pad  
Pad  
Brass  
ground  
plane  
•ꢀ LVARꢀisꢀtheꢀinductanceꢀinꢀµH  
Calibration  
plane  
Figure 1.Test Setup  
Disclaimer  
Coilcraft makes every attempt to provide accurate mea-  
surement data and software, representative of our com-  
ponents, in a usable format.Coilcraft, however, disclaims  
all warrants relating to the use of its data and software,  
whether expressed or implied, including without limita-  
tion any implied warranties of merchantability or fitness  
for a particular purpose. Coilcraft cannot and will not be  
liable for any special, incidental, consequential, indirect  
or similar damages occurring with the use of the data  
and/or software.  
The lumped element values were determined by optimiz-  
ing the simulation model to an average of the measure-  
ments.This method results in a model that represents as  
closely as possible the typical frequency-dependent be-  
havior of the component within the model frequency range.  
The equivalent lumped element model schematic is  
shown below.Each model should only be analyzed at the  
input and output ports. Individual elements of the model  
are not determined by parameter measurement.The ele-  
ments are determined by the overall performance of the  
lumped element model compared to the measurements  
taken of the component.  
Document 558-1 Revised 07/26/11  

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