TDK Electronics · TDK Europe

Inductors - Readme and History

Power Inductor 12.95x9.4 (B82476),PSpice

History

History for SPICE-Library for PSPICE (Orcad)
for TDK Electronics AG : B82476.lib
Version 1.20
assembled on (Mon Apr 19 15:44:22 CEST 2021)
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Version 1.20
- descriptions updated
- LTspice syntax updated
- B82476A1223 updated
- B82476B1 series added
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Version 1.16
- LTspice library added
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Version 1.15
- Cadence Orcad Capture library added
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Version 1.10
- missing elements added
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Version 1.05
- Ansoft Designer Library added
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Version 1.00
- library created
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Readme

SPICE-Library for PSPICE (Orcad)
for TDK Electronics AG : B82476.lib
Version 1.20
assembled on (Mon Apr 19 15:44:22 CEST 2021)
This SPICE library contains all models for
SMT Power Inductor
Size: 12.95 x 9.4 x 5.1 (mm)
Core material: ferrite
These linear models are suited for DC, AC and Transient-
simulations. Accurate results can be expected below
the first resonant frequency. Using these models
outside its specification can lead to false results.
The models describe the behaviour of typical
elements. Please keep in mind, that real components
can vary in the range given in the datasheets.
Library listing of all parts
(sorted by part numbers) :
B82476A1102M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (1 uH +-20%)
B82476A1103M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (10 uH +-20%)
B82476A1104M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (100 uH +-20%)
B82476A1105M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (1 mH +-20%)
B82476A1152M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (1.5 uH +-20%)
B82476A1153M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (15 uH +-20%)
B82476A1154M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (150 uH +-20%)
B82476A1222M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (2.2 uH +-20%)
B82476A1223M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (22 uH +-20%)
B82476A1224M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (220 uH +-20%)
B82476A1332M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (3.3 uH +-20%)
B82476A1333M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (33 uH +-20%)
B82476A1334M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (330 uH +-20%)
B82476A1472M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (4.7 uH +-20%)
B82476A1473M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (47 uH +-20%)
B82476A1474M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (470 uH +-20%)
B82476A1682M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (6.8 uH +-20%)
B82476A1683M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (68 uH +-20%)
B82476A1684M000 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) (680 uH +-20%)
B82476B1102M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (1 uH +-20%)
B82476B1103M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (10 uH +-20%)
B82476B1104M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (100 uH +-20%)
B82476B1105M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (1 mH +-20%)
B82476B1152M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (1.5 uH +-20%)
B82476B1153M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (15 uH +-20%)
B82476B1154M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (150 uH +-20%)
B82476B1222M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (2.2 uH +-20%)
B82476B1223M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (22 uH +-20%)
B82476B1224M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (220 uH +-20%)
B82476B1332M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (3.3 uH +-20%)
B82476B1333M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (33 uH +-20%)
B82476B1334M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (330 uH +-20%)
B82476B1472M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (4.7 uH +-20%)
B82476B1473M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (47 uH +-20%)
B82476B1474M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (470 uH +-20%)
B82476B1682M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (6.8 uH +-20%)
B82476B1683M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (68 uH +-20%)
B82476B1684M100 SMT Power Inductor 12.95 x 9.4 x 5.1 (mm) rugged design (680 uH +-20%)
Installation of B82476 Model Library
===============================================================
The model library of B82476 (SMT Power Inductor (12.95 x 9.4 x 5.1 mm) Standard performance) for the
circuit design program PSpice Schematics, version 6.1 and following
and Cadence ORCAD Capture comprises the following three files:
B82476.LIB ASCII data file:
This file respresents the actual library and
contains the data required for simulation.
B82476.SLB Symbol data file:
This file contains the terminal/graphics information
required by the graphic user interface "Schematics"
B82476.OLB Symbol data file:
This file contains the terminal/graphics information
required by the graphic user interface "Orcad Capture"
To install the library you must copy the a.m. files into
a ORCAD working directory (e.g. \LIB or \UserLib)
PSpice Schematics:
The library files must then be activated under PSpice.
Proceed as follows to install the B82476 library:
1. Start PSpice
Install library file B82476.LIB as permanent library
("ADD LIBRARY*") in submenu (version 9.1)
ANALYSIS -> LIBRARY AND INCLUDE FILES ...
BROWSE.. (choose B82476.LIB)
.. ADD*
.. OK
ATTENTION: Add without asterisk ("*") is a local include
only for this actual simulation task.
2. Install symbol data file B82476.SLB for the
"Schematics" graphic interface in submenu
OPTIONS -> EDITOR CONFIGURATION -> LIBRARY SETTINGS
BROWSE.. (choose B82476.LIB) .. ADD* .. OK
ORCAD Capture:
The library files have to be included in ORCAD Capture
Proceed as follows to install the B82476 library:
1a. Use the delivered precompiled B82476.OLB
or
1b. Start ORCAD Capture
Translate the library file B82476.SLB
as ORCAD library (B82476.OLB):
FILE -> Import Design -> PSpice -> Open ...
BROWSE.. (choose B82476.SLB)
.. OK (version 10.5)
2. Adding the components to your project:
Open your project -> open a schematic
PLACE -> PART... -> Add Library...
(choose B82476.OLB)
place component with OK.
3. Install the library B82476.LIB for simulation:
PSPICE -> Edit Simulation Profile -> Configuration
Files -> Category Library
BROWSE.. (choose B82476.LIB)
ADD as Global/to Design
OK