HLQ022R2BTTR

1
MLO
TM
Hi-Q Inductors
APPLICATIONS
• Mobile communications
• Satellite Applications
• GPS
• Collision Avoidance
• Wireless LAN’s
FEATURES
• High Q
• High SRF
• High Frequency
• Low DC Resistance
• Surface Mountable
• 0402 Case Size
• RoHS Compliant Finishes
• Available in Tape and Reel
SURFACE MOUNT
ADVANTAGES
• Inherent Low Profile
• Excellent Solderability
• Low Parasitics
• Better Heat Dissipation
• Expansion Matched to PCB
DIMENSIONS
QUALITY INSPECTION
Finished parts are 100% tested for electrical parameters and
visual characteristics.
TERMINATION
RoHS compliant Sn finish.
OPERATING TEMPERATURE
-55ºC to +125ºC
mm (inches)
LWTR
1.00±0.10 0.58±0.075 0.35±0.10 0.125±0.050
(0.040±0.004) (0.023±0.003) (0.014±0.004) (0.005±0.002)
W
L
R
T
HLQ
Type
HLQ = High Q
02
Size
02 = 0402
X
Tolerance
B = ±0.1nH
C = ±0.2nH
H = ±3%
T
Termination
Sn100
TR
Packaging
Tape & Reel
HOW TO ORDER
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
The Multilayer Organic Hi-Q Inductor is a low profile organic based
inductor that can support mobile communications, satellite applications,
GPS, matching networks, and collision avoidance. The MLO
TM
Hi-Q
Inductor series of components are based on AVX’s patented multilayer
organic technology (US patent 6,987,307 and 7,439,840). MLO
TM
Hi-Q
Inductors incorporate very low loss organic materials and low profile
copper which allow for high Q and high stability over frequency. MLO
TM
Hi-
Q Inductors are surface mountable and are expansion matched to FR4
printed wiring boards. MLO
TM
Hi-Q 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.
2
MLO
TM
Hi-Q Inductors
0402 ELECTRICAL SPECIFICATIONS
Available
L (nH) Inductance Tolerance Q min SRF min Rdc max Idc max
450MHz B = ±0.1nH, C = ±0.2nH 450MHz (GHz) (mΩ) (mA)
H = ±3%
0.8 ±0.1nH, ±0.2nH 17 7 100 350
0.9 ±0.1nH, ±0.2nH 17 7 100 350
1 ±0.1nH, ±0.2nH 17 7 100 330
1.1 ±0.1nH, ±0.2nH 17 7 100 330
1.2 ±0.1nH, ±0.2nH 17 7 110 330
1.3 ±0.1nH, ±0.2nH 17 7 130 330
1.5 ±0.1nH, ±0.2nH 17 7 150 330
1.6 ±0.1nH, ±0.2nH 17 7 150 300
1.8 ±0.1nH, ±0.2nH 17 7 160 300
2 ±0.1nH, ±0.2nH 17 7 180 245
2.2 ±0.1nH, ±0.2nH 17 7 200 245
2.4 ±0.1nH, ±0.2nH 17 7 200 245
2.7 ±0.1nH, ±0.2nH 17 7 250 245
3 ±0.1nH, ±0.2nH 17 7 300 225
3.3 ±0.1nH, ±0.2nH 17 7 340 225
3.6 ±0.1nH, ±0.2nH 17 7 350 200
3.9 ±0.1nH, ±0.2nH 17 7 400 200
4.7 ±0.1nH, ±0.2nH 17 7 480 195
5.6 ±0.1nH, ±0.2nH 17 7 500 170
6.8 ±3% 17 7 600 160
8.2 ±3% 17 6 800 130
10 ±3% 17 5 1000 120
12 ±3% 17 4 1100 110
15 ±3% 17 4 1200 110
18 ±3% 17 3 1500 110
22 ±3% 17 3 1900 95
27 ±3% 17 3 2100 95
30 ±3% 17 2 2200 85
32 ±3% 17 2 2200 85
Specifications based on performance of component assembled properly on printed circuit board with 50Ω nominal impedance.
Idc max: Maximum 15ºC rise in component temperature over ambient.

HLQ022R2BTTR

Mfr. #:
Manufacturer:
N/A
Description:
Fixed Inductors 2.2nH
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union