MLF1608A2R2J TDK Corporation, MLF1608A2R2J Datasheet

INDUCTOR MULTILAYER 2.2UH 1608

MLF1608A2R2J

Manufacturer Part Number
MLF1608A2R2J
Description
INDUCTOR MULTILAYER 2.2UH 1608
Manufacturer
TDK Corporation
Series
MLFr
Type
Ferrite Corer
Datasheets

Specifications of MLF1608A2R2J

Shielding
Shielded
Inductance
2.2µH
Tolerance
±5%
Current
30mA
Dc Resistance (dcr)
1 Ohm Max
Q @ Freq
35 @ 10MHz
Self Resonant Freq
120MHz
Package / Case
0603 (1608 Metric)
Mounting Type
Surface Mount
Operating Temperature
-40°C ~ 85°C
Frequency - Test
10MHz
Material - Core
Ferrite
Applications
Signal Line
Dimensions
0.800 mm W x 1.600 mm L x 0.800 mm H
Maximum Dc Current
15 mAmps
Maximum Dc Resistance
1.15 Ohms
Self Resonant Frequency
50 MHz
Q Minimum
35
Termination Style
SMD/SMT
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Saturation
-
Current - Temperature Rise
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
SMD Inductors(Coils)
For Signal Line(Multilayer, Magnetic Shielded)
MLF Series MLF1608
FEATURES
• High-reliability monolithic structure.
• Ferrite core and magnetic shielding enables the design of com-
• Excellent solderability and high heat resistance permits either
• The products contain no lead and also support lead-free
• It is a product conforming to RoHS directive.
APPLICATIONS
Digital cellular phone, tuner, personal computers, audio, or various
electronic appliances.
SPECIFICATIONS
Operating temperature range
Storage temperature range
RECOMMENDED SOLDERING CONDITION
REFLOW SOLDERING
• Conformity to RoHS Directive: This means that, in conformity with EU Directive 2002/95/EC, lead, cadmium, mercury, hexavalent chromium, and specific
• Please contact our Sales office when your application are considered the following:
• All specifications are subject to change without notice.
250 to 260˚C
230˚C
180˚C
150˚C
The device’s failure or malfunction may directly endanger human life (e.g. application for automobile/aircraft/medical/nuclear power devices, etc.)
bromine-based flame retardants, PBB and PBDE, have not been used, except for exempted applications.
pact circuits with high packing density.
flow or reflow soldering.
soldering.
Preheating
60 to 120s
Time(s)
Soldering
30 to 60s
10s max.
–40 to +85°C
–40 to +85°C
Natural
cooling
PRODUCT IDENTIFICATION
(1) Series name
(2) Dimensions L× W
(3) Material code
(4) Inductance value
(5) Inductance tolerance
(6) Packaging style
PACKAGING STYLE AND QUANTITIES
Packaging style
Taping
HANDLING AND PRECAUTIONS
• Before soldering, be sure to preheat components.
• After mounting components onto the printed circuit board, do not
• The inductance value may change due to magnetic saturation if
• Do not expose the inductors to stray magnetic fields.
• Avoid static electricity discharge during handling.
• When hand soldering, apply the soldering iron to the printed cir-
MLF 1608 A 1R0 K
(1)
The preheating temperature should be set so that the tempera-
ture difference between the solder temperature and product
temperature does not exceed 150°C.
apply stress through board bending or mishandling.
the current exceeds the rated maximum.
cuit board only. Temperature of the iron tip should not exceed
350°C. Soldering time should not exceed 3 seconds.
1608
47N
R15
1R0
K
M
T
(2)
(3) (4) (5) (6)
Product’s thickness
0.8mm
T
005-04 / 20090402 / e511_mlf1608.fm
Taping [reel]
1.6× 0.8mm
47nH[0.047µH]
0.15µH
1µH
±10%
±20%
Conformity to RoHS Directive
Quantity
4000 pieces/reel
(1/3)

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MLF1608A2R2J Summary of contents

Page 1

SMD Inductors(Coils) For Signal Line(Multilayer, Magnetic Shielded) MLF Series MLF1608 FEATURES • High-reliability monolithic structure. • Ferrite core and magnetic shielding enables the design of com- pact circuits with high packing density. • Excellent solderability and high heat resistance permits ...

Page 2

SHAPES AND DIMENSIONS/RECOMMENDED PC BOARD PATTERN 1.6±0.15 0.6 0.3±0.2 Weight: 4mg ELECTRICAL CHARACTERISTICS Test Inductance Inductance Q frequency (µH) tolerance min. typ (MHz) 0.047 ±20 0.068 ±20 0.082 ±20 ...

Page 3

TYPICAL ELECTRICAL CHARACTERISTICS INDUCTANCE CHANGE vs. DC SUPERPOSITION CHARACTERISTICS 100 22µH 8.2µH 10 1µH 1 0.1 0.068µH 0. 100 500 1000 DC current ( mA ) INDUCTANCE CHANGE vs. TEMPERATURE CHARACTERISTICS 22µH 10 0.68µH 8.2µH 5 ...

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