Spec No.: JELF243A_0100H-01
P1/16
CHIP COILS (CHIP INDUCTORS) LQW15AN□□□□80□ REFERENCE SPECIFICATION
1. Scope
This reference specification applies to chip coils (chip inductors) LQW15AN_80 series for general electronic equipment.
2. Part Numbering
(Ex.)
LQ
W
15
Product Structure Dimension
ID
(L × W)
A
N
1N3
C
8
0
Application
Category Inductance Tolerance Performance
Electrode
and
specification
characteristic
*B: Bulk packing is also available (taping condition: however, products without reels are put in plastic bags).
D
Packaging
D: taping
*B: bulk
3. Part Number and Rating
Operating temperature range
Storage temperature range
-55°C to +125°C
-55°C to +125°C
Inductance
Customer
Part number
Tolerance
Q
(Min.)
DC
resistance
(Ω max.)
Self-resonant
frequency
(GHz min.)
Rated
current
(mA)*1
1.3
C: ±0.2 nH
20
0.012
18.0
3150
LQW15AN1N3D80D
1.3
D: ±0.5 nH
20
0.012
18.0
3150
LQW15AN1N5C80D
1.5
C: ±0.2 nH
20
0.028
18.0
2100
LQW15AN1N5D80D
1.5
D: ±0.5 nH
20
0.028
18.0
2100
LQW15AN1N6C80D
1.6
C: ±0.2 nH
20
0.045
18.0
1450
LQW15AN1N6D80D
1.6
D: ±0.5 nH
20
0.045
18.0
1450
LQW15AN1N7C80D
1.7
C: ±0.2 nH
20
0.065
18.0
1150
LQW15AN1N7D80D
1.7
D: ±0.5 nH
20
0.065
18.0
1150
LQW15AN2N2B80D
2.2
B: ±0.1 nH
30
0.022
15.5
2530
LQW15AN2N2C80D
2.2
C: ±0.2 nH
30
0.022
15.5
2530
Murata
Part number
Nominal
value
(nH)
LQW15AN1N3C80D
LQW15AN2N2D80D
2.2
D: ±0.5 nH
30
0.022
15.5
2530
LQW15AN2N2G80D
2.2
G: ±2%
30
0.022
15.5
2530
LQW15AN2N3B80D
2.3
B: ±0.1 nH
30
0.022
15.5
2530
LQW15AN2N3C80D
2.3
C: ±0.2 nH
30
0.022
15.5
2530
LQW15AN2N3D80D
2.3
D: ±0.5 nH
30
0.022
15.5
2530
LQW15AN2N3G80D
2.3
G: ±2%
30
0.022
15.5
2530
LQW15AN2N4B80D
2.4
B: ±0.1 nH
30
0.022
15.5
2530
LQW15AN2N4C80D
2.4
C: ±0.2 nH
30
0.022
15.5
2530
LQW15AN2N4D80D
2.4
D: ±0.5 nH
30
0.022
15.5
2530
LQW15AN2N4G80D
2.4
G: ±2%
30
0.022
15.5
2530
LQW15AN2N5B80D
2.5
B: ±0.1 nH
30
0.030
15.5
2100
LQW15AN2N5C80D
2.5
C: ±0.2 nH
30
0.030
15.5
2100
LQW15AN2N5D80D
2.5
D: ±0.5 nH
30
0.030
15.5
2100
LQW15AN2N5G80D
2.5
G: ±2%
30
0.030
15.5
2100
LQW15AN2N6B80D
2.6
B: ±0.1 nH
30
0.035
14.5
1950
LQW15AN2N6C80D
2.6
C: ±0.2 nH
30
0.035
14.5
1950
LQW15AN2N6D80D
2.6
D: ±0.5 nH
30
0.035
14.5
1950
LQW15AN2N6G80D
2.6
G: ±2%
30
0.035
14.5
1950
LQW15AN2N7B80D
2.7
B: ±0.1 nH
28
0.047
14.0
1500
LQW15AN2N7C80D
2.7
C: ±0.2 nH
28
0.047
14.0
1500
LQW15AN2N7D80D
2.7
D: ±0.5 nH
28
0.047
14.0
1500
MURATA MFG CO., LTD
Spec No.: JELF243A_0100H-01
P2/16
Inductance
Customer
Part number
Tolerance
Q
(Min.)
DC
resistance
(Ω max.)
Self-resonant
frequency
(GHz min.)
Rated
current
(mA)*1
2.7
G: ±2%
28
0.047
14.0
1500
LQW15AN2N8B80D
2.8
B: ±0.1 nH
27
0.047
13.5
1500
LQW15AN2N8C80D
2.8
C: ±0.2 nH
27
0.047
13.5
1500
LQW15AN2N8D80D
2.8
D: ±0.5 nH
27
0.047
13.5
1500
LQW15AN2N8G80D
2.8
G: ±2%
27
0.047
13.5
1500
LQW15AN2N9B80D
2.9
B: ±0.1 nH
25
0.047
12.5
1500
LQW15AN2N9C80D
2.9
C: ±0.2 nH
25
0.047
12.5
1500
LQW15AN2N9D80D
2.9
D: ±0.5 nH
25
0.047
12.5
1500
LQW15AN2N9G80D
2.9
G: ±2%
25
0.047
12.5
1500
LQW15AN3N0B80D
3.0
B: ±0.1 nH
20
0.063
12.5
1350
LQW15AN3N0C80D
3.0
C: ±0.2 nH
20
0.063
12.5
1350
LQW15AN3N0D80D
3.0
D: ±0.5 nH
20
0.063
12.5
1350
LQW15AN3N0G80D
3.0
G: ±2%
20
0.063
12.5
1350
LQW15AN3N3B80D
3.3
B: ±0.1 nH
30
0.030
14.0
2000
LQW15AN3N3C80D
3.3
C: ±0.2 nH
30
0.030
14.0
2000
LQW15AN3N3D80D
3.3
D: ±0.5 nH
30
0.030
14.0
2000
LQW15AN3N3G80D
3.3
G: ±2%
30
0.030
14.0
2000
LQW15AN3N4B80D
3.4
B: ±0.1 nH
30
0.030
10.0
1950
LQW15AN3N4C80D
3.4
C: ±0.2 nH
30
0.030
10.0
1950
LQW15AN3N4D80D
3.4
D: ±0.5 nH
30
0.030
10.0
1950
LQW15AN3N4G80D
3.4
G: ±2%
30
0.030
10.0
1950
LQW15AN3N5B80D
3.5
B: ±0.1 nH
30
0.030
10.0
1950
LQW15AN3N5C80D
3.5
C: ±0.2 nH
30
0.030
10.0
1950
Murata
Part number
Nominal
value
(nH)
LQW15AN2N7G80D
LQW15AN3N5D80D
3.5
D: ±0.5 nH
30
0.030
10.0
1950
LQW15AN3N5G80D
3.5
G: ±2%
30
0.030
10.0
1950
LQW15AN3N6B80D
3.6
B: ±0.1 nH
30
0.030
10.0
1950
LQW15AN3N6C80D
3.6
C: ±0.2 nH
30
0.030
10.0
1950
LQW15AN3N6D80D
3.6
D: ±0.5 nH
30
0.030
10.0
1950
LQW15AN3N6G80D
3.6
G: ±2%
30
0.030
10.0
1950
LQW15AN3N7B80D
3.7
B: ±0.1 nH
35
0.030
10.0
1950
LQW15AN3N7C80D
3.7
C: ±0.2 nH
35
0.030
10.0
1950
LQW15AN3N7D80D
3.7
D: ±0.5 nH
35
0.030
10.0
1950
LQW15AN3N7G80D
3.7
G: ±2%
35
0.030
10.0
1950
LQW15AN3N8B80D
3.8
B: ±0.1 nH
35
0.030
10.0
1950
LQW15AN3N8C80D
3.8
C: ±0.2 nH
35
0.030
10.0
1950
LQW15AN3N8D80D
3.8
D: ±0.5 nH
35
0.030
10.0
1950
LQW15AN3N8G80D
3.8
G: ±2%
35
0.030
10.0
1950
LQW15AN3N9B80D
3.9
B: ±0.1 nH
35
0.030
10.0
1950
LQW15AN3N9C80D
3.9
C: ±0.2 nH
35
0.030
10.0
1950
LQW15AN3N9D80D
3.9
D: ±0.5 nH
35
0.030
10.0
1950
LQW15AN3N9G80D
3.9
G: ±2%
35
0.030
10.0
1950
LQW15AN4N0B80D
4.0
B: ±0.1 nH
30
0.030
10.0
1950
LQW15AN4N0C80D
4.0
C: ±0.2 nH
30
0.030
10.0
1950
LQW15AN4N0D80D
4.0
D: ±0.5 nH
30
0.030
10.0
1950
LQW15AN4N0G80D
4.0
G: ±2%
30
0.030
10.0
1950
LQW15AN4N1B80D
4.1
B: ±0.1 nH
30
0.044
9.6
1800
MURATA MFG CO., LTD
Spec No.: JELF243A_0100H-01
P3/16
Inductance
Customer
Part number
Tolerance
Q
(Min.)
DC
resistance
(Ω max.)
Self-resonant
frequency
(GHz min.)
Rated
current
(mA)*1
4.1
C: ±0.2 nH
30
0.044
9.6
1800
LQW15AN4N1D80D
4.1
D: ±0.5 nH
30
0.044
9.6
1800
LQW15AN4N1G80D
4.1
G: ±2%
30
0.044
9.6
1800
LQW15AN4N2B80D
4.2
B: ±0.1 nH
30
0.044
9.6
1800
LQW15AN4N2C80D
4.2
C: ±0.2 nH
30
0.044
9.6
1800
LQW15AN4N2D80D
4.2
D: ±0.5 nH
30
0.044
9.6
1800
LQW15AN4N2G80D
4.2
G: ±2%
30
0.044
9.6
1800
LQW15AN4N3B80D
4.3
B: ±0.1 nH
32
0.044
9.6
1800
LQW15AN4N3C80D
4.3
C: ±0.2 nH
32
0.044
9.6
1800
LQW15AN4N3D80D
4.3
D: ±0.5 nH
32
0.044
9.6
1800
LQW15AN4N3G80D
4.3
G: ±2%
32
0.044
9.6
1800
LQW15AN4N4B80D
4.4
B: ±0.1 nH
34
0.052
9.6
1600
LQW15AN4N4C80D
4.4
C: ±0.2 nH
34
0.052
9.6
1600
LQW15AN4N4D80D
4.4
D: ±0.5 nH
34
0.052
9.6
1600
LQW15AN4N4G80D
4.4
G: ±2%
34
0.052
9.6
1600
LQW15AN4N5B80D
4.5
B: ±0.1 nH
34
0.060
9.6
1450
LQW15AN4N5C80D
4.5
C: ±0.2 nH
34
0.060
9.6
1450
LQW15AN4N5D80D
4.5
D: ±0.5 nH
34
0.060
9.6
1450
LQW15AN4N5G80D
4.5
G: ±2%
34
0.060
9.6
1450
LQW15AN4N6B80D
4.6
B: ±0.1 nH
32
0.060
9.6
1450
LQW15AN4N6C80D
4.6
C: ±0.2 nH
32
0.060
9.6
1450
Murata
Part number
Nominal
value
(nH)
LQW15AN4N1C80D
LQW15AN4N6D80D
4.6
D: ±0.5 nH
32
0.060
9.6
1450
LQW15AN4N6G80D
4.6
G: ±2%
32
0.060
9.6
1450
LQW15AN4N7B80D
4.7
B: ±0.1 nH
31
0.071
8.0
1200
LQW15AN4N7C80D
4.7
C: ±0.2 nH
31
0.071
8.0
1200
LQW15AN4N7D80D
4.7
D: ±0.5 nH
31
0.071
8.0
1200
LQW15AN4N7G80D
4.7
G: ±2%
31
0.071
8.0
1200
LQW15AN4N8B80D
4.8
B: ±0.1 nH
30
0.071
8.0
1200
LQW15AN4N8C80D
4.8
C: ±0.2 nH
30
0.071
8.0
1200
LQW15AN4N8D80D
4.8
D: ±0.5 nH
30
0.071
8.0
1200
LQW15AN4N8G80D
4.8
G: ±2%
30
0.071
8.0
1200
LQW15AN4N9B80D
4.9
B: ±0.1 nH
27
0.071
8.0
1200
LQW15AN4N9C80D
4.9
C: ±0.2 nH
27
0.071
8.0
1200
LQW15AN4N9D80D
4.9
D: ±0.5 nH
27
0.071
8.0
1200
LQW15AN4N9G80D
4.9
G: ±2%
27
0.071
8.0
1200
LQW15AN5N0B80D
5.0
B: ±0.1 nH
32
0.040
10.0
1770
LQW15AN5N0C80D
5.0
C: ±0.2 nH
32
0.040
10.0
1770
LQW15AN5N0D80D
5.0
D: ±0.5 nH
32
0.040
10.0
1770
LQW15AN5N0G80D
5.0
G: ±2%
32
0.040
10.0
1770
LQW15AN5N1B80D
5.1
B: ±0.1 nH
35
0.040
8.0
1770
LQW15AN5N1C80D
5.1
C: ±0.2 nH
35
0.040
8.0
1770
LQW15AN5N1D80D
5.1
D: ±0.5 nH
35
0.040
8.0
1770
LQW15AN5N1G80D
5.1
G: ±2%
35
0.040
8.0
1770
LQW15AN5N2B80D
5.2
B: ±0.1 nH
35
0.040
8.0
1770
LQW15AN5N2C80D
5.2
C: ±0.2 nH
35
0.040
8.0
1770
LQW15AN5N2D80D
5.2
D: ±0.5 nH
35
0.040
8.0
1770
MURATA MFG CO., LTD
Spec No.: JELF243A_0100H-01
P4/16
Inductance
Customer
Part number
Tolerance
Q
(Min.)
DC
resistance
(Ω max.)
Self-resonant
frequency
(GHz min.)
Rated
current
(mA)*1
5.2
G: ±2%
35
0.040
8.0
1770
LQW15AN5N3B80D
5.3
B: ±0.1 nH
35
0.040
8.0
1770
LQW15AN5N3C80D
5.3
C: ±0.2 nH
35
0.040
8.0
1770
LQW15AN5N3D80D
5.3
D: ±0.5 nH
35
0.040
8.0
1770
LQW15AN5N3G80D
5.3
G: ±2%
35
0.040
8.0
1770
LQW15AN5N4B80D
5.4
B: ±0.1 nH
35
0.040
8.0
1770
LQW15AN5N4C80D
5.4
C: ±0.2 nH
35
0.040
8.0
1770
LQW15AN5N4D80D
5.4
D: ±0.5 nH
35
0.040
8.0
1770
LQW15AN5N4G80D
5.4
G: ±2%
35
0.040
8.0
1770
LQW15AN5N5B80D
5.5
B: ±0.1 nH
35
0.040
8.0
1770
LQW15AN5N5C80D
5.5
C: ±0.2 nH
35
0.040
8.0
1770
LQW15AN5N5D80D
5.5
D: ±0.5 nH
35
0.040
8.0
1770
LQW15AN5N5G80D
5.5
G: ±2%
35
0.040
8.0
1770
LQW15AN5N6B80D
5.6
B: ±0.1 nH
35
0.040
8.0
1770
LQW15AN5N6C80D
5.6
C: ±0.2 nH
35
0.040
8.0
1770
LQW15AN5N6D80D
5.6
D: ±0.5 nH
35
0.040
8.0
1770
LQW15AN5N6G80D
5.6
G: ±2%
35
0.040
8.0
1770
LQW15AN5N7B80D
5.7
B: ±0.1 nH
30
0.040
8.0
1770
LQW15AN5N7C80D
5.7
C: ±0.2 nH
30
0.040
8.0
1770
LQW15AN5N7D80D
5.7
D: ±0.5 nH
30
0.040
8.0
1770
LQW15AN5N7G80D
5.7
G: ±2%
30
0.040
8.0
1770
LQW15AN5N8B80D
5.8
B: ±0.1 nH
30
0.040
8.0
1770
LQW15AN5N8C80D
5.8
C: ±0.2 nH
30
0.040
8.0
1770
Murata
Part number
Nominal
value
(nH)
LQW15AN5N2G80D
LQW15AN5N8D80D
5.8
D: ±0.5 nH
30
0.040
8.0
1770
LQW15AN5N8G80D
5.8
G: ±2%
30
0.040
8.0
1770
LQW15AN5N9B80D
5.9
B: ±0.1 nH
30
0.040
8.0
1770
LQW15AN5N9C80D
5.9
C: ±0.2 nH
30
0.040
8.0
1770
LQW15AN5N9D80D
5.9
D: ±0.5 nH
30
0.040
8.0
1770
LQW15AN5N9G80D
5.9
G: ±2%
30
0.040
8.0
1770
LQW15AN6N0B80D
6.0
B: ±0.1 nH
32
0.056
8.0
1600
LQW15AN6N0C80D
6.0
C: ±0.2 nH
32
0.056
8.0
1600
LQW15AN6N0D80D
6.0
D: ±0.5 nH
32
0.056
8.0
1600
LQW15AN6N0G80D
6.0
G: ±2%
32
0.056
8.0
1600
LQW15AN6N1B80D
6.1
B: ±0.1 nH
32
0.056
8.0
1600
LQW15AN6N1C80D
6.1
C: ±0.2 nH
32
0.056
8.0
1600
LQW15AN6N1D80D
6.1
D: ±0.5 nH
32
0.056
8.0
1600
LQW15AN6N1G80D
6.1
G: ±2%
32
0.056
8.0
1600
LQW15AN6N2B80D
6.2
B: ±0.1 nH
33
0.056
8.0
1600
LQW15AN6N2C80D
6.2
C: ±0.2 nH
33
0.056
8.0
1600
LQW15AN6N2D80D
6.2
D: ±0.5 nH
33
0.056
8.0
1600
LQW15AN6N2G80D
6.2
G: ±2%
33
0.056
8.0
1600
LQW15AN6N3G80D
6.3
G: ±2%
32
0.057
7.8
1600
LQW15AN6N3J80D
6.3
J: ±5%
32
0.057
7.8
1600
LQW15AN6N4G80D
6.4
G: ±2%
33
0.065
7.0
1380
LQW15AN6N4J80D
6.4
J: ±5%
33
0.065
7.0
1380
LQW15AN6N5G80D
6.5
G: ±2%
32
0.065
7.0
1380
MURATA MFG CO., LTD
Spec No.: JELF243A_0100H-01
P5/16
Inductance
Customer
Part number
Tolerance
Q
(Min.)
DC
resistance
(Ω max.)
Self-resonant
frequency
(GHz min.)
Rated
current
(mA)*1
6.5
J: ±5%
32
0.065
7.0
1380
6.6
G: ±2%
30
0.078
7.0
1280
Murata
Part number
Nominal
value
(nH)
LQW15AN6N5J80D
LQW15AN6N6G80D
LQW15AN6N6J80D
6.6
J: ±5%
30
0.078
7.0
1280
LQW15AN6N7G80D
6.7
G: ±2%
30
0.078
7.0
1280
LQW15AN6N7J80D
6.7
J: ±5%
30
0.078
7.0
1280
LQW15AN6N8G80D
6.8
G: ±2%
30
0.068
7.0
1450
LQW15AN6N8J80D
6.8
J: ±5%
30
0.068
7.0
1450
LQW15AN6N9G80D
6.9
G: ±2%
32
0.069
8.5
1420
LQW15AN6N9J80D
6.9
J: ±5%
32
0.069
8.5
1420
LQW15AN7N0G80D
7.0
G: ±2%
33
0.069
8.0
1420
LQW15AN7N0J80D
7.0
J: ±5%
33
0.069
8.0
1420
LQW15AN7N1G80D
7.1
G: ±2%
32
0.069
7.0
1420
LQW15AN7N1J80D
7.1
J: ±5%
32
0.069
7.0
1420
LQW15AN7N2G80D
7.2
G: ±2%
32
0.050
7.0
1700
LQW15AN7N2J80D
7.2
J: ±5%
32
0.050
7.0
1700
LQW15AN7N3G80D
7.3
G: ±2%
32
0.050
7.0
1700
LQW15AN7N3J80D
7.3
J: ±5%
32
0.050
7.0
1700
LQW15AN7N4G80D
7.4
G: ±2%
30
0.050
7.0
1700
LQW15AN7N4J80D
7.4
J: ±5%
30
0.050
7.0
1700
LQW15AN7N5G80D
7.5
G: ±2%
35
0.050
7.0
1700
LQW15AN7N5J80D
7.5
J: ±5%
35
0.050
7.0
1700
LQW15AN7N6G80D
7.6
G: ±2%
30
0.050
7.0
1700
LQW15AN7N6J80D
7.6
J: ±5%
30
0.050
7.0
1700
LQW15AN7N7G80D
7.7
G: ±2%
30
0.050
7.0
1700
LQW15AN7N7J80D
7.7
J: ±5%
30
0.050
7.0
1700
LQW15AN7N8G80D
7.8
G: ±2%
30
0.050
7.0
1700
LQW15AN7N8J80D
7.8
J: ±5%
30
0.050
7.0
1700
LQW15AN7N9G80D
7.9
G: ±2%
30
0.050
7.0
1700
LQW15AN7N9J80D
7.9
J: ±5%
30
0.050
7.0
1700
LQW15AN8N0G80D
8.0
G: ±2%
30
0.050
7.0
1700
LQW15AN8N0J80D
8.0
J: ±5%
30
0.050
7.0
1700
LQW15AN8N1G80D
8.1
G: ±2%
32
0.069
6.5
1500
LQW15AN8N1J80D
8.1
J: ±5%
32
0.069
6.5
1500
LQW15AN8N2G80D
8.2
G: ±2%
32
0.069
6.5
1500
LQW15AN8N2J80D
8.2
J: ±5%
32
0.069
6.5
1500
LQW15AN8N3G80D
8.3
G: ±2%
32
0.069
6.5
1500
LQW15AN8N3J80D
8.3
J: ±5%
32
0.069
6.5
1500
LQW15AN8N4G80D
8.4
G: ±2%
32
0.069
6.5
1500
LQW15AN8N4J80D
8.4
J: ±5%
32
0.069
6.5
1500
LQW15AN8N5G80D
8.5
G: ±2%
32
0.069
6.5
1500
LQW15AN8N5J80D
8.5
J: ±5%
32
0.069
6.5
1500
LQW15AN8N6G80D
8.6
G: ±2%
31
0.070
6.5
1420
LQW15AN8N6J80D
8.6
J: ±5%
31
0.070
6.5
1420
LQW15AN8N7G80D
8.7
G: ±2%
31
0.070
6.5
1420
LQW15AN8N7J80D
8.7
J: ±5%
31
0.070
6.5
1420
LQW15AN8N8G80D
8.8
G: ±2%
31
0.070
6.5
1420
MURATA MFG CO., LTD
Spec No.: JELF243A_0100H-01
P6/16
Inductance
Customer
Part number
Tolerance
Q
(Min.)
DC
resistance
(Ω max.)
Self-resonant
frequency
(GHz min.)
Rated
current
(mA)*1
8.8
J: ±5%
31
0.070
6.5
1420
8.9
G: ±2%
31
0.070
6.5
1420
Murata
Part number
Nominal
value
(nH)
LQW15AN8N8J80D
LQW15AN8N9G80D
LQW15AN8N9J80D
8.9
J: ±5%
31
0.070
6.5
1420
LQW15AN9N0G80D
9.0
G: ±2%
30
0.070
6.5
1420
LQW15AN9N0J80D
9.0
J: ±5%
30
0.070
6.5
1420
LQW15AN9N1G80D
9.1
G: ±2%
32
0.080
6.5
1400
LQW15AN9N1J80D
9.1
J: ±5%
32
0.080
6.5
1400
LQW15AN9N2G80D
9.2
G: ±2%
32
0.081
6.0
1400
LQW15AN9N2J80D
9.2
J: ±5%
32
0.081
6.0
1400
LQW15AN9N3G80D
9.3
G: ±2%
34
0.081
6.0
1400
LQW15AN9N3J80D
9.3
J: ±5%
34
0.081
6.0
1400
LQW15AN9N4G80D
9.4
G: ±2%
33
0.081
6.0
1400
LQW15AN9N4J80D
9.4
J: ±5%
33
0.081
6.0
1400
LQW15AN9N5G80D
9.5
G: ±2%
32
0.081
6.0
1400
LQW15AN9N5J80D
9.5
J: ±5%
32
0.081
6.0
1400
LQW15AN9N6G80D
9.6
G: ±2%
33
0.081
6.0
1400
LQW15AN9N6J80D
9.6
J: ±5%
33
0.081
6.0
1400
LQW15AN9N7G80D
9.7
G: ±2%
33
0.081
6.0
1400
LQW15AN9N7J80D
9.7
J: ±5%
33
0.081
6.0
1400
LQW15AN9N8G80D
9.8
G: ±2%
34
0.081
6.0
1400
LQW15AN9N8J80D
9.8
J: ±5%
34
0.081
6.0
1400
LQW15AN9N9G80D
9.9
G: ±2%
32
0.081
6.0
1400
LQW15AN9N9J80D
9.9
J: ±5%
32
0.081
6.0
1400
LQW15AN10NG80D
10
G: ±2%
31
0.081
6.0
1400
LQW15AN10NJ80D
10
J: ±5%
31
0.081
6.0
1400
LQW15AN11NG80D
11
G: ±2%
32
0.083
6.2
1400
LQW15AN11NJ80D
11
J: ±5%
32
0.083
6.2
1400
LQW15AN12NG80D
12
G: ±2%
30
0.093
5.2
1240
LQW15AN12NJ80D
12
J: ±5%
30
0.093
5.2
1240
LQW15AN13NG80D
13
G: ±2%
30
0.093
5.2
1240
LQW15AN13NJ80D
13
J: ±5%
30
0.093
5.2
1240
LQW15AN14NG80D
14
G: ±2%
31
0.111
5.2
1150
LQW15AN14NJ80D
14
J: ±5%
31
0.111
5.2
1150
LQW15AN15NG80D
15
G: ±2%
31
0.114
5.5
1150
LQW15AN15NJ80D
15
J: ±5%
31
0.114
5.5
1150
LQW15AN16NG80D
16
G: ±2%
31
0.126
5.0
1000
LQW15AN16NJ80D
16
J: ±5%
31
0.126
5.0
1000
LQW15AN17NG80D
17
G: ±2%
30
0.126
5.0
1000
LQW15AN17NJ80D
17
J: ±5%
30
0.126
5.0
1000
LQW15AN18NG80D
18
G: ±2%
30
0.130
5.2
1050
LQW15AN18NJ80D
18
J: ±5%
30
0.130
5.2
1050
LQW15AN19NG80D
19
G: ±2%
30
0.156
5.0
920
LQW15AN19NJ80D
19
J: ±5%
30
0.156
5.0
920
LQW15AN20NG80D
20
G: ±2%
30
0.186
4.5
800
LQW15AN20NJ80D
20
J: ±5%
30
0.186
4.5
800
LQW15AN21NG80D
21
G: ±2%
30
0.202
4.5
780
MURATA MFG CO., LTD
Spec No.: JELF243A_0100H-01
P7/16
Inductance
Customer
Part number
Tolerance
Q
(Min.)
DC
resistance
(Ω max.)
Self-resonant
frequency
(GHz min.)
Rated
current
(mA)*1
21
J: ±5%
30
0.202
4.5
780
LQW15AN22NG80D
22
G: ±2%
30
0.202
4.5
780
Murata
Part number
Nominal
value
(nH)
LQW15AN21NJ80D
LQW15AN22NJ80D
22
J: ±5%
30
0.202
4.5
780
LQW15AN23NG80D
23
G: ±2%
29
0.201
4.5
760
LQW15AN23NJ80D
23
J: ±5%
29
0.201
4.5
760
LQW15AN24NG80D
24
G: ±2%
31
0.212
4.0
770
LQW15AN24NJ80D
24
J: ±5%
31
0.212
4.0
770
LQW15AN25NG80D
25
G: ±2%
31
0.221
4.1
750
LQW15AN25NJ80D
25
J: ±5%
31
0.221
4.1
750
LQW15AN26NG80D
26
G: ±2%
29
0.282
4.1
720
LQW15AN26NJ80D
26
J: ±5%
29
0.282
4.1
720
LQW15AN27NG80D
27
G: ±2%
30
0.288
4.0
680
LQW15AN27NJ80D
27
J: ±5%
30
0.288
4.0
680
LQW15AN30NG80D
30
G: ±2%
30
0.309
3.8
660
LQW15AN30NJ80D
30
J: ±5%
30
0.309
3.8
660
LQW15AN33NG80D
33
G: ±2%
30
0.336
3.6
620
LQW15AN33NJ80D
33
J: ±5%
30
0.336
3.6
620
LQW15AN36NG80D
36
G: ±2%
30
0.431
3.5
540
LQW15AN36NJ80D
36
J: ±5%
30
0.431
3.5
540
LQW15AN39NG80D
39
G: ±2%
28
0.456
3.4
530
LQW15AN39NJ80D
39
J: ±5%
28
0.456
3.4
530
LQW15AN43NG80D
43
G: ±2%
30
0.516
3.4
515
LQW15AN43NJ80D
43
J: ±5%
30
0.516
3.4
515
LQW15AN47NG80D
47
G: ±2%
25
0.648
3.2
440
LQW15AN47NJ80D
47
J: ±5%
25
0.648
3.2
440
LQW15AN51NG80D
51
G: ±2%
25
0.696
2.9
415
LQW15AN51NJ80D
51
J: ±5%
25
0.696
2.9
415
LQW15AN53NG80D
53
G: ±2%
25
0.696
2.9
415
LQW15AN53NJ80D
53
J: ±5%
25
0.696
2.9
415
LQW15AN56NG80D
56
G: ±2%
25
0.996
2.9
340
LQW15AN56NJ80D
56
J: ±5%
25
0.996
2.9
340
LQW15AN68NG80D
68
G: ±2%
25
1.128
2.5
320
LQW15AN68NJ80D
68
J: ±5%
25
1.128
2.5
320
LQW15AN75NG80D
75
G: ±2%
25
1.224
2.4
320
LQW15AN75NJ80D
75
J: ±5%
25
1.224
2.4
320
*1 As shown in the diagram below, derating is applied to the rated current based on the operating temperature.
MURATA MFG CO., LTD
Spec No.: JELF243A_0100H-01
P8/16
4. Testing Conditions
Unless otherwise specified
Temperature: ordinary temperature (15°C to 35°C)
Humidity: ordinary humidity [25% to 85% (RH)]
In case of doubt
Temperature: 20°C±2°C
Humidity: 60% to 70% (RH)
Atmospheric pressure: 86 kPa to 106 kPa
5. Appearance and Dimensions
Unit mass (typical value): 0.0009 g
6. Marking
No marking.
MURATA MFG CO., LTD
Spec No.: JELF243A_0100H-01
P9/16
7. Electrical Performance
No.
Item
7.1
Inductance
Specification
Meet chapter 3 ratings.
Test method
Measuring equipment: Keysight E4991A or the
equivalent
Measuring frequency:
Inductance
100 MHz
Q
7.2
Q
250 MHz 1.3 nH to 43 nH
200 MHz 47 nH to 75 nH
Measuring conditions:
Measurement signal level: Approx. 0 dBm
Measurement terminal distance: 0.5 mm
Electrical length: 10.0 mm
Weight: Approx. 1 N to 3 N
Measuring fixture: Keysight 16197A
Position the chip coil under test as shown in the
measuring example below and connect it to the
electrode by applying weight.
Measurement example:
Meet chapter 3 ratings.
Measuring method: see "Electrical performance:
Measuring method for inductance/Q" in the chapter
"16. Appendix".
7.3
DC resistance
Meet chapter 3 ratings.
Measuring equipment: digital multimeter
7.4
Self-resonant
frequency
Meet chapter 3 ratings.
Measuring equipment: Keysight N5230 or the
equivalent
7.5
Rated current
Product temperature rise: 40°C max.
Apply the rated current specified in chapter 3.
8. Mechanical Performance
No.
8.1
Item
Shear test
Specification
Test method
No significant mechanical damage or no Test substrate: glass-epoxy substrate
sign of electrode peeling off shall be
Force application direction:
observed.
Applying force: 5 N
Holding time: 5 s±1 s
MURATA MFG CO., LTD
Spec No.: JELF243A_0100H-01
No.
P10/16
Item
Specification
Test method
8.2
Bending test
No significant mechanical damage or no Test substrate: glass-epoxy substrate (100 mm × 40
sign of electrode peeling off shall be
mm × 0.8 mm)
observed.
Pressurizing speed: 1 mm/s
Deflection: 2 mm
Holding time: 5 s
8.3
Vibration
Appearance shall have no significant
mechanical damage.
8.4
Solderability
90% or more of the outer electrode shall Flux: immersed in ethanol solution [including an
be covered with new solder seamlessly. activator with a chlorine conversion value of 0.06(wt)%]
with a rosin content of 25(wt)% for 5 s to 10 s.
Solder: Sn-3.0Ag-0.5Cu solder
Pre-heating: 150°C±10°C/60 s to 90 s
Solder temperature: 240°C±5°C
Immersion time: 3 s±1 s
8.5
Resistance to
soldering heat
Appearance: No significant mechanical
damage shall be observed.
Inductance change rate: within ±5%
Oscillation frequency: 10 Hz to 55 Hz to 10 Hz, for
approx. 1 min
Total amplitude: 1.5 mm
Test time: 3 directions perpendicular to each other, 2 h
for each direction (6 h in total)
Flux: immersed in ethanol solution [including an
activator with a chlorine conversion value of 0.06(wt)%]
with a rosin content of 25(wt)% for 5 s to 10 s.
Solder: Sn-3.0Ag-0.5Cu solder
Pre-heating: 150°C±10°C/60 s to 90 s
Solder temperature: 270°C±5°C
Immersion time: 10 s±1 s
Post-treatment: left at a room condition for 24 h±2 h
9. Environmental Performance
The product is soldered on a substrate for test.
No.
Item
Specification
Test method
9.1
Heat resistance
Appearance: No significant mechanical
damage shall be observed.
Inductance change rate: within ±5%
Q change rate: within ±20%
Temperature: 125°C±2°C
Test time: 1000 h (+48 h, -0 h)
Post-treatment: left at a room condition for 24 h±2 h
9.2
Cold resistance
Appearance: No significant mechanical
damage shall be observed.
Inductance change rate: within ±5%
Q change rate: within ±20%
Temperature: -55°C±2°C
Test time: 1000 h (+48 h, -0 h)
Post-treatment: left at a room condition for 24 h±2 h
9.3
Humidity
Appearance: No significant mechanical
damage shall be observed.
Inductance change rate: within ±5%
Q change rate: within ±20%
Temperature: 70°C±2°C
Humidity: 90% (RH) to 95% (RH)
Test time: 1000 h (+48 h, -0 h)
Post-treatment: left at a room condition for 24 h±2 h
9.4
Temperature cycle Appearance: No significant mechanical
damage shall be observed.
Inductance change rate: within ±5%
Q change rate: within ±20%
Single cycle conditions:
Step 1: -55°C±2°C/30 min±3 min
Step 2: ordinary temperature/10 min to 15 min
Step 3: +125°C±2°C/30 min±3 min
Step 4: ordinary temperature/10 min to 15 min
Number of testing: 10 cycles
Post-treatment: left at a room condition for 24 h±2 h
MURATA MFG CO., LTD
Spec No.: JELF243A_0100H-01
P11/16
10. Specification of Packaging
10.1 Appearance and dimensions of tape (8 mm width/paper tape)
A
0.75±0.03
B
1.180±0.03
t
0.80 max.
(in mm)
10.2 Taping specifications
Packing quantity
(Standard quantity)
10000 pcs/reel
Packing method
The products are placed in embossed cavities of a base tape and sealed by a cover tape.
Feed hole position
The feed holes on the base tape are on the right side when the cover tape is pulled toward the user.
Joint
The base tape and the cover tape are seamless.
Number of missing
products
Number of missing products within 0.025% of the number per reel or 1 pc., whichever is greater, and
are not continuous. The specified quantity per reel is kept.
10.3 Break down force of tape
Break down force of cover tape
5 N min.
10.4 Peeling off force of cover tape
Speed of peeling off
Peeling off force
165°to 180゜
300 mm/min
0.1 N to 0.6 N (The lower limit is for typical value.)
F
Cover tape
Base tape
10.5 Dimensions of leader section, trailer section and reel
A vacant section is provided in the leader (start) section and trailer (end) section of the tape for the product. The leader
section is further provided with an area consisting only of the cover tape (or top tape). (See the diagram below.)
MURATA MFG CO., LTD
Spec No.: JELF243A_0100H-01
P12/16
10.6 Marking for reel
Customer part number, Murata part number, inspection number (*1), RoHS marking (*2), quantity, etc.
*1 Expression of inspection No.: (1) Factory code
□□
○○○○
(2) Date
First digit: year/last digit of year
(1)
(2)
(3)
Second digit: month/Jan. to Sep.→1 to 9, Oct. to Dec.→O, N, D
Third, Fourth digit: day
(3) Serial No.
*2 Expression of RoHS marking: (1) RoHS regulation conformity
ROHSY
()
(2) Murata classification number
(1)
(2)
10.7 Marking on outer box (corrugated box)
Customer name, purchasing order number, customer part number, Murata part number, RoHS marking (*2), quantity, etc.
10.8 Specification of outer box
Label
H
D
W
11.
Dimensions of outer box
(mm)
W
D
H
186
186
93
Standard reel quantity
in outer box (reel)
5
* Above outer box size is typical. It depends on a
quantity of an order.
Caution
11.1 Restricted applications
Please contact us before using our products for the applications listed below which require especially high reliability for the
prevention of defects which might directly cause damage to the third party's life, body or property.
(1) Aircraft equipment
(2) Aerospace equipment
(3) Undersea
(4) Power plant control
equipment
equipment
(5) Medical equipment
(6) Transportation equipment (vehicles, (7) Traffic signal
(8) Disaster/crime prevention
trains, ships, etc.)
equipment
equipment
(9) Data-processing
(10) Applications of similar complexity and/or reliability
equipment
requirements to the applications listed in the above
11.2 Precautions on rating
Avoid using in exceeded the rated temperature range, rated voltage, or rated current.
Usage when the ratings are exceeded could lead to wire breakage, burning, or other serious fault.
11.3 Inrush current
If an inrush current (or pulse current or rush current) that significantly exceeds the rated current is applied to the product,
overheating could occur, resulting in wire breakage, burning, or other serious fault.
11.4 Corrosive gas
Please refrain from use since contact with environments with corrosive gases (sulfur gas [hydrogen sulfide, sulfur dioxide,
etc.], chlorine, ammonia, etc.) or oils (cutting oil, silicone oil, etc.) that have come into contact with the previously stated
corrosive gas environment will result in deterioration of product quality or an open from deterioration due to corrosion of
product electrode, etc. We will not bear any responsibility for use under these environments.
MURATA MFG CO., LTD
Spec No.: JELF243A_0100H-01
P13/16
12. Precautions for Use
This product is for use only with reflow soldering. It is designed to be mounted by soldering. If you want to use other
mounting method, for example, using a conductive adhesive, please consult us beforehand.
Also, if repeatedly subjected to temperature cycles or other thermal stress, due to the difference in the coefficient of thermal
expansion with the mounting substrate, the solder (solder fillet part) in the mounting part may crack.
The occurrence of cracks due to thermal stress is affected by the size of the land where mounted, the solder volume, and
the heat dissipation of the mounting substrate. Carefully design it when a large change in ambient temperature is assumed.
12.1 Land dimensions
The following diagram shows the recommended land dimensions for reflow soldering.
The land dimensions are designed in consideration of electrical characteristics and mountability. Use of other land
dimensions may preclude achievement of performance. In some cases, it may result in poor solderability, including positional
shift. If you use other land pattern, consider it adequately.
a
0.6
b
1.42
c
0.66
(in mm)
12.2 Flux and solder used
Flux
• Use a rosin-based flux that includes an activator with a chlorine conversion value of 0.06(wt)% to 0.1(wt)%.
• Do not use a highly acidic flux with a halide content exceeding 0.2(wt)% (chlorine conversion value).
• Do not use a water-soluble flux.
Solder
• Use Sn-3.0Ag-0.5Cu solder.
• Standard thickness of solder paste: 50 μm to 100 μm
If you want to use a flux other than the above, please consult our technical department.
12.3 Soldering conditions (reflow)
• Pre-heating should be in such a way that the temperature difference between solder and product surface is limited to
150°C max.
Cooling into solvent after soldering also should be in such a way that the temperature difference is limited to 100°C max.
Insufficient pre-heating may cause cracks on the product, resulting in the deterioration of product quality.
• Standard soldering profile and the limit soldering profile is as follows.
The excessive limit soldering conditions may cause leaching of the electrode and/or resulting in the deterioration of product
quality.
Temp.
(℃)
260℃
245℃±3℃
220℃
230℃
Limit Profile
180
150
Standard Profile
30s~60s
60s max.
90s±30s
Time. (s)
Standard profile
Limit profile
Pre-heating
150°C to 180°C/90 s±30 s
150°C to 180°C/90 s±30 s
Heating
Above 220°C/30 s to 60 s
Above 230°C/60 s max.
245°C±3°C
260°C/10 s
2 times
2 times
Peak temperature
Number of reflow cycles
MURATA MFG CO., LTD
Spec No.: JELF243A_0100H-01
P14/16
12.4 Reworking with soldering iron
Do not perform reworking with a soldering iron on this product.
12.5 Solder volume
Solder shall be used not to increase the volume too much.
An increased solder volume increases mechanical stress on the product. Exceeding solder volume may cause the failure of
mechanical or electrical performance.
12.6 Product's location
The following shall be considered when designing and laying out PCBs.
(1) PCB shall be designed so that products are not subject to mechanical stress due to warping the board.
[Products direction]
Products shall be located in the sideways direction (length: a < b) to the mechanical stress.
a
b
〈 Poor example〉
〈 Good example〉
(2) Components location on PCB separation
It is effective to implement the following measures, to reduce stress in separating the board.
It is best to implement all of the following three measures; however, implement as many measures as possible to reduce
stress.
Contents of measures
Stress level
(1) Turn the mounting direction of the component parallel to the
board separation surface.
A > D*1
(2) Add slits in the board separation part.
A>B
(3) Keep the mounting position of the component away from the
board separation surface.
A>C
*1 A > D is valid when stress is added vertically to the perforation as with hand separation.
If a cutting disc is used, stress will be diagonal to the PCB, therefore A > D is invalid.
(3) Mounting components near screw holes
When a component is mounted near a screw hole, it may be affected by the board deflection that occurs during the
tightening of the screw.
Mount the component in a position as far away from the screw holes as possible.
MURATA MFG CO., LTD
Spec No.: JELF243A_0100H-01
P15/16
12.7 Handling of substrate
After mounting products on a substrate, do not apply any stress to the product caused by bending or twisting to the substrate
when cropping the substrate, inserting and removing a connector from the substrate or tightening screw to the substrate.
Excessive mechanical stress may cause cracking in the product.
Bending
Twisting
12.8 Cleaning
The product shall be cleaned under the following conditions.
(1) The cleaning temperature shall be 60°C max. If isopropyl alcohol (IPA) is used, the cleaning temperature shall be 40°C
max.
(2) Perform ultrasonic cleaning under the following conditions. Exercise caution to prevent resonance phenomenon in
mounted products and the PCB.
Item
Requirement
Power
Time
20 W/L max.
5 min max.
Frequency
28 kHz to 40 kHz
(3) Cleaner
Alcohol-based cleaner: IPA
Aqueous agent: PINE ALPHA ST-100S
(4) There shall be no residual flux or residual cleaner. When using aqueous agent, rinse the product with deionized water
adequately and completely dry it so that no cleaner is left.
* For other cleaning, consult our technical department.
12.9 Storage and transportation
Storage period
Use the product within 12 months after delivery.
If you do not use the product for more than 12 months, check solderability before using it.
Storage conditions
• The products shall be stored in a room not subject to rapid changes in temperature and humidity.
The recommended temperature range is -10°C to +40°C. The recommended relative humidity
range is 15% to 85%.
Keeping the product in corrosive gases, such as sulfur, chlorine gas or acid, oxidizes the
electrode, resulting in poor solderability or corrosion of the coil wire of the product.
• Do not keep products in bulk packaging. Doing so may cause collision between the products or
between the products and other products, resulting in core chipping or wire breakage.
• Do not place the products directly on the floor; they should be placed on a palette so that they are
not affected by humidity or dust.
• Avoid keeping the products in a place exposed to direct sunlight, heat or vibration.
Transportation
Excessive vibration and impact reduces the reliability of the products. Exercise caution when
handling the products.
12.10 Resin coating
The inductance value may change due to high cure-stress of resin to be used for coating/molding products.
A wire breakage issue may occur by mechanical stress caused by the resin, amount/cured shape of resin, or operating
condition etc. Some resin contains some impurities or chloride possible to generate chlorine by hydrolysis under some
operating condition may cause corrosion of wire of coil, leading to wire breakage.
So, please pay your careful attention when you select resin in case of coating/molding the products with the resin.
Prior to use the coating resin, please make sure no reliability issue is observed by evaluating products mounted on your
board.
12.11 Handling of product
• Sharp material such as a pair of tweezers or other material such as bristles of cleaning brush, shall not be touched to the
winding portion to prevent the breaking of wire.
• Mechanical shock should not be applied to the products mounted on the board to prevent the breaking of the core.
MURATA MFG CO., LTD
Spec No.: JELF243A_0100H-01
P16/16
12.12 Handling with mounting equipment
• With some types of mounting equipment, a support pin pushes up the product from the bottom of the base (paper) tape
when the product is sucked with the pick-up nozzle.
When using this type of equipment, detach the support pin to prevent the breaking of wire on the product.
• In some cases, the laser recognition function of the mounting equipment may not recognize this product correctly.
Please contact us when using laser recognition. (There is no problem with the permeation and reflection type.)
13.
Note
(1) Please make sure that your product has been evaluated in view of your specifications with our product being mounted to
your product.
(2) You are requested not to use our product deviating from the reference specifications.
(3) The contents of this reference specification are subject to change without advance notice. Please approve our product
specifications or transact the approval sheet for product specifications before ordering.
14. Appendix
Electrical performance: Measuring method for inductance/Q (Q measurement is applicable only when the Q value is
included in the rating table.)
Perform measurement using the method described below. (Perform correction for the error deriving from the measuring
terminal.)
(1) Residual elements and stray elements of the measuring terminal can be expressed by the F parameter for the 2-pole
terminal as shown in the figure below.
(2) The product's impedance value (Zx) and measured impedance value (Zm) can be expressed as shown below, by using
the respective current and voltage for input/output.
Zm=
V1
I1
Zx=
V2
I2
(3) Thus, the relationship between the product's impedance value (Zx) and measured impedance value (Zm) is as follows.
Zx=α
Zm-β
1-ZmΓ
Here,
α = D/A = 1
β = B/D = Zsm - (1 - Yom Zsm) Zss
Γ = C/A = Yom
Zsm: measured impedance of short chip
Zss: residual impedance of short chip (0.556 nH)
Yom: measured admittance when measuring terminal is open
(4) Calculate inductance Lx and Qx using the equations shown below.
Im (Zx)
Lx: inductance of chip coil
Lx=
2πf
Qx: Q of chip coil
Im (Zx)
Qx=
f: measuring frequency
Re (Zx)
MURATA MFG CO., LTD