LQW18AN82NJ00D Murata, LQW18AN82NJ00D Datasheet - Page 2

Power Inductors 82 NH 5%

LQW18AN82NJ00D

Manufacturer Part Number
LQW18AN82NJ00D
Description
Power Inductors 82 NH 5%
Manufacturer
Murata
Type
High Frequency Chipr
Datasheet

Specifications of LQW18AN82NJ00D

Inductance
82 nH
Tolerance
5 %
Maximum Dc Current
250 mAmps
Maximum Dc Resistance
0.6 Ohms
Self Resonant Frequency
2000 MHz
Q Minimum
34
Dimensions
0.800 mm W x 1.600 mm L x 0.800 mm H
Termination Style
SMD/SMT
Package / Case
0603 (1608 metric)
Technology
Wirewound
Impedance
Not RequiredOhm
Tolerance (+ Or -)
5%
Dc Resistance
600mOhm
Case Size (inches)
0603in
Operating Temp Range
-55C to 125C
Q
34
Test Frequency
100MHz
Dc Current
250mA
Product Diameter (mm)
Not Requiredmm
Product Height (mm)
1mm
Product Depth (mm)
1mm
Product Length (mm)
1.8mm
Military Standard
Not Required
Failure Rate
Not Required
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LQW18AN82NJ00D
Manufacturer:
MURATA
Quantity:
240 000
Part Number:
LQW18AN82NJ00D
Manufacturer:
MURATA/村田
Quantity:
20 000
! Note:
1. This datasheet is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our
2. This datasheet has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product
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Operating Temperature Range: -55°C to +125°C
Only for reflow soldering.
o
products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
specifications or transact the approval sheet for product specifications before ordering.
Continued from the preceding page.
This data sheet is applied for CHIP INDUCTORS (CHIP COILS) used for General Electronics equipment for your design.
Part Number
Inductance
12nH±2%
12nH±5%
13nH±2%
13nH±5%
15nH±2%
15nH±5%
16nH±2%
16nH±5%
18nH±2%
18nH±5%
20nH±2%
20nH±5%
22nH±2%
22nH±5%
24nH±2%
24nH±5%
27nH±2%
27nH±5%
30nH±2%
30nH±5%
33nH±2%
33nH±5%
36nH±2%
36nH±5%
39nH±2%
39nH±5%
43nH±2%
43nH±5%
47nH±2%
47nH±5%
51nH±2%
51nH±5%
56nH±2%
56nH±5%
62nH±2%
62nH±5%
68nH±2%
68nH±5%
72nH±2%
72nH±5%
75nH±2%
Test Frequency Rated Current
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
100MHz
600mA
600mA
600mA
600mA
600mA
600mA
550mA
550mA
550mA
550mA
550mA
550mA
500mA
500mA
500mA
500mA
440mA
440mA
420mA
420mA
420mA
420mA
400mA
400mA
400mA
400mA
380mA
380mA
380mA
380mA
370mA
370mA
360mA
360mA
280mA
280mA
340mA
340mA
270mA
270mA
270mA
http://www.murata.com/
Inductors (Coils) > Chip Inductor (Chip Coil) > for High Frequency Horizontal Wire Wound
Data Sheet
Max. of DC resistance Q (min.) Test Frequency
0.13ohm
0.13ohm
0.13ohm
0.13ohm
0.13ohm
0.13ohm
0.16ohm
0.16ohm
0.16ohm
0.16ohm
0.16ohm
0.16ohm
0.17ohm
0.17ohm
0.21ohm
0.21ohm
0.21ohm
0.21ohm
0.23ohm
0.23ohm
0.23ohm
0.23ohm
0.26ohm
0.26ohm
0.26ohm
0.26ohm
0.29ohm
0.29ohm
0.29ohm
0.29ohm
0.33ohm
0.33ohm
0.35ohm
0.35ohm
0.51ohm
0.51ohm
0.38ohm
0.38ohm
0.56ohm
0.56ohm
0.56ohm
35
35
35
35
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
38
38
38
38
38
38
38
38
38
38
34
34
34
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
250MHz
200MHz
200MHz
200MHz
200MHz
200MHz
200MHz
200MHz
200MHz
200MHz
200MHz
200MHz
200MHz
150MHz
150MHz
150MHz
Continued on the following page.
Self Resonance Frequency (min.)
6000MHz
6000MHz
6000MHz
6000MHz
6000MHz
6000MHz
5500MHz
5500MHz
5500MHz
5500MHz
4900MHz
4900MHz
4600MHz
4600MHz
3800MHz
3800MHz
3700MHz
3700MHz
3300MHz
3300MHz
3200MHz
3200MHz
2900MHz
2900MHz
2800MHz
2800MHz
2700MHz
2700MHz
2600MHz
2600MHz
2500MHz
2500MHz
2400MHz
2400MHz
2300MHz
2300MHz
2200MHz
2200MHz
2100MHz
2100MHz
2050MHz
2010.9.9
2

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