MLO
TM
High Current Inductors
The Multilayer Organic High Current Inductor is a low profile organic
based inductor that can support mobile communications, satellite
applications, GPS, matching networks, and collision avoidance. Based on
AVX’s patented multilayer organic technology (US patent 6,987,307), the
0402 size Multilayer Organic High Current Inductor allows for much higher
current handling over similar multilayer ceramic chip inductors, a 50%
average increase in current handling over comparable thin film products
with similar Q, and current handling approaching that of wire wound
ceramic chip inductors. MLO
TM
High Current Inductors incorporate very
low loss organic materials which allow for high Q and high stability over
frequency. They are surface mountable and are expansion matched to
FR4 printed wiring boards. MLO
TM
High Current Inductors utilize fine line
high density interconnect technology thereby allowing for tight tolerance
control and high repeatability. Reliability testing is performed to JEDEC
and mil standards. Finishes are available in RoHS compliant Sn.
APPLICATIONS
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Mobile communications
Satellite Applications
GPS
Collision Avoidance
Wireless LAN’s
FEATURES
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High Q
High SRF
High Frequency
High Current Handling
Low DC Resistance
Surface Mountable
0402 Case Size
RoHS Compliant Finishes
Available in Tape and Reel
SURFACE MOUNT
ADVANTAGES
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Inherent Low Profile
Excellent Solderability
Low Parasitics
Better Heat Dissipation
Expansion Matched to PCB
HOW TO ORDER
HLC
Type
HLC = High Current
02
Size
02 = 0402
XXX
Inductance
Expressed in nH
(2 significant digits + number of zeros)
for values <10nH,
letter R denotes decimal point.
Example:
22nH = 220
4.7nH = 4R7
X
Tolerance
B = ±0.1nH
C = ±0.2nH
D = ±0.5nH
G = ±2%
H = ±3%.
J = ±5%
T
Termination
Sn100
TR
Packaging
Tape & Reel
DIMENSIONS
R
T
QUALITY INSPECTION
Finished parts are 100% tested for electrical parameters and
visual characteristics.
TERMINATION
L
W
mm (inches)
RoHS compliant Sn finish.
OPERATING TEMPERATURE
-55ºC to +125ºC
R
0.125±0.050
(0.005±0.002)
L
1.00±0.10
(0.040±0.004)
W
0.58±0.075
(0.023±0.003)
T
0.35±0.10
(0.014±0.004)
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