Bezeichnung :
description :
Größe / size 0402
A1,0 ± 0,10 mm
B0,5 ± 0,10 mm
C0,50 ± 0,10 mm
D0,23 ± 0,1 mm
E0,5 ± 0,1 mm
F0,6 ± 0,1 mm
G0,6 ± 0,1 mm
Eigenschaften /
p
ro
p
ertie
s
Wert / value Einheit / unit tol.
Induktivität /
inductance
Güte Q /
Q factor
DC-Widerstand /
DC-resistance
Nennstrom /
rated current
Eigenres.-Frequenz /
self-res.-frequency
33%
+20°C
Keramik / ceramic
AWe Version 1 04-10-11
Name Änderung / modification Datum / date
Kunde / customer
Freigabe erteilt / general release:
C Lötpad / soldering spec. B Elektrische Eigenschaften / electrical properties:
E Testbedingungen / test conditions:
Umgebungstemp. / ambient temperature: -40°C ~ + 100°C
Luftfeuchtigkeit / humidity:
Umgebungstemperatur / temperature:
G Eigenschaften / general specifications:
Lagerbedingungen / storage conditions: -10°C ~ + 40°C
30 ~ 70% RH
F Werkstoffe & Zulassungen / material & approvals
Kontaktmaterial / contact plating: Ag/ Ni/ Sn
http://www.we-online.com
Spezifikation für Freigabe / specification for release
DATUM / DATE : 2004-10-11
max.
mA
Datum / date
..........................................................................
.
Unterschrift / signature
Kontrolliert / approved
Testbedingungen /
test condition
s
W
ürth Elektronik eiSos GmbH & Co.KG
D-74638 Waldenburg · Max-Eyth-Strasse 1 - 3 · Germany · Telefon (+49) (0) 7942 - 945 - 0 · Telefax (+49) (0) 7942 - 945 - 400
Geprüft / checked
4600SRF MHz
Betriebstemp. / operating temperature: -40°C ~ + 120°C
Basismaterial / base material:
Kunde / customer :
744784082
Multilayer-Keramik-SMD-Induktivität WE-MK
Multilayer-Ceramic-SMD-Inductor WE-MK
Artikelnummer / part number :
A Mechanische Abmessungen / dimensions:
0,40
± 5%
8,2
nH
HP 8722 D für/for SRF
Q8
IDC
D Prüfgeräte / test equipment:
HP 4291 B für/for L und/and Q
HP 4338 B für/for RDC
HP 4284 A für/for IDC
250
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.
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.
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.
Würth Elektronik
100 MHz
T = 20 K
100 MHz
typ.
RDC
min.
L
max.
C
B
D
A
G
F
E
F
This electronic component is designed and developed with the intention for use in general electronics equipments. Before incorporating the components into any equipments in the
field such as aerospace, aviation, nuclear control, submarine, transportation,
(
automotive control, train control, ship control
)
, transportation si
g
nal, disaster prevention, medical, public
information network etc. where higher safety and reliability are especially required or if there is possibility of direct damage or injury to human body. In addition, even electronic
component in general electronic equipments, when used in electrical circuits that require high safety, reliability functions or performance, the sufficient reliability evaluation-check for
t
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RoHS compliant
LF
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