SWI 0402F Series
0402
inch
Dimensions
Specifications
Chip Size
Units: mm
A
1.09
±0.10
B
0.60
±0.10
C
0.56
±0.10
D
0.20
±0.15
E
0.23
±0.10
Part Number
Inductance (nH) Tolerance Q min.
Test Frequency (Hz) I rms (mA) max. DCR (
Ω
)
max. SRF (GHz) min.
SWI0402F-1N0
□
1.0
S.J
16
0.1
V/250M
1360
0.045
12.7
SWI0402F-1N9
□
1.9
S.J
16
0.1
V/250M
1040
0.070
11.30
SWI0402F-2N0
□
2.0
S.J
16
0.1
V/250M
1040
0.070
11.10
SWI0402F-2N2
□
2.2
S.J
19
0.1
V/250M
960
0.070
10.80
SWI0402F-2N4
□
2.4
S.J
15
0.1
V/250M
790
0.068
10.50
SWI0402F-2N7
□
2.7
S.J
16
0.1
V/250M
640
0.120
10.40
SWI0402F-3N3
□
3.3
S.J
19
0.1
V/250M
840
0.066
7.00
SWI0402F-3N6
□
3.6
S.J
19
0.1
V/250M
840
0.066
6.80
SWI0402F-3N9
□
3.9
S.J
19
0.1
V/250M
840
0.066
6.00
SWI0402F-4N3
□
4.3
S.J
18
0.1
V/250M
700
0.091
6.00
SWI0402F-4N7
□
4.7
S.J
15
0.1
V/250M
640
0.130
4.77
SWI0402F-5N1
□
5.1
S.J
20
0.1
V/250M
800
0.083
4.80
SWI0402F-5N6
□
5.6
S.J
20
0.1
V/250M
760
0.083
4.80
SWI0402F-6N2
□
6.2
S.J
20
0.1
V/250M
760
0.083
4.80
SWI0402F-6N8
□
6.8
S.J
20
0.1
V/250M
680
0.083
4.80
SWI0402F-7N5
□
7.5
S.J
22
0.1
V/250M
680
0.100
4.80
SWI0402F-8N2
□
8.2
S.J
22
0.1
V/250M
680
0.100
4.40
SWI0402F-8N7
□
8.7
S.J
18
0.1
V/250M
480
0.200
4.10
SWI0402F-9N0
□
9.0
S.J
22
0.1
V/250M
680
0.100
4.16
SWI0402F-9N5
□
9.5
S.J
18
0.1
V/250M
480
0.200
4.00
SWI0402F-10N
□
10
J,K
21
0.1
V/250M
480
0.200
3.90
SWI0402F-11N
□
11
J,K
24
0.1
V/250M
640
0.120
3.68
SWI0402F-12N
□
12
J,K
24
0.1
V/250M
640
0.120
3.60
SWI0402F-13N
□
13
J,K
24
0.1
V/250M
440
0.210
3.45
SWI0402F-15N
□
15
J,K
24
0.1
V/250M
560
0.170
3.28
SWI0402F-16N
□
16
J,K
24
0.1
V/250M
560
0.220
3.10
SWI0402F-18N
□
18
J,K
25
0.1
V/250M
420
0.230
3.10
SWI0402F-19N
□
19
J,K
24
0.1
V/250M
480
0.200
3.04
SWI0402F-20N
□
20
J,K
25
0.1
V/250M
420
0.25
3.00
SWI0402F-22N
□
22
J,K
25
0.1
V/250M
400
0.30
2.80
SWI0402F-23N
□
23
J,K
22
0.1
V/250M
400
0.30
2.72
SWI0402F-24N
□
24
J,K
25
0.1
V/250M
400
0.30
2.70
SWI0402F-27N
□
27
J,K
24
0.1
V/250M
400
0.30
2.48
SWI0402F-30N
□
30
J,K
25
0.1
V/250M
400
0.35
2.35
SWI0402F-33N
□
33
J,K
24
0.1
V/250M
400
0.40
2.35
High Frequency Wirewound Chip Inductors
Halogen
Halogen-free
Pb
Pb-free
All the data listed in this catalogueare for reference only,TAI-TECH reserves the right toalter or revise the specificationswithout prior
notification.
For the latest specification,please visit our website:www.tai-tech.com.tw
High Frequency Wirewound Chip Inductors
(0402
inch)
Dimensions
Specifications
Chip Size
A
1.09
±0.10
B
0.60
±0.10
C
0.56
±0.10
D
0.20
±0.15
E
0.23
±0.10
Units: mm
Part Number
Inductance
(
nH)
Tolerance Q
min.
Test Frequency
(
Hz)
I rms
(
mA) max.
DCR
(
Ω
)
max.
SRF
(
GHz) min.
SWI0402F-1N0
□
1.0
S.J
16
0.1
V/250M
1360
0.045
12.7
SWI0402F-1N9
□
1.9
S.J
16
0.1
V/250M
1040
0.070
11.30
SWI0402F-2N0
□
2.0
S.J
16
0.1
V/250M
1040
0.070
11.10
SWI0402F-2N2
□
2.2
S.J
19
0.1
V/250M
960
0.070
10.80
SWI0402F-2N4
□
2.4
S.J
15
0.1
V/250M
790
0.068
10.50
SWI0402F-2N7
□
2.7
S.J
16
0.1
V/250M
640
0.120
10.40
SWI0402F-3N3
□
3.3
S.J
19
0.1
V/250M
840
0.066
7.00
SWI0402F-3N6
□
3.6
S.J
19
0.1
V/250M
840
0.066
6.80
SWI0402F-3N9
□
3.9
S.J
19
0.1
V/250M
840
0.066
6.00
SWI0402F-4N3
□
4.3
S.J
18
0.1
V/250M
700
0.091
6.00
SWI0402F-4N7
□
4.7
S.J
15
0.1
V/250M
640
0.130
4.77
SWI0402F-5N1
□
5.1
S.J
20
0.1
V/250M
800
0.083
4.80
SWI0402F-5N6
□
5.6
S.J
20
0.1
V/250M
760
0.083
4.80
SWI0402F-6N2
□
6.2
S.J
20
0.1
V/250M
760
0.083
4.80
SWI0402F-6N8
□
6.8
S.J
20
0.1
V/250M
680
0.083
4.80
SWI0402F-7N5
□
7.5
S.J
22
0.1
V/250M
680
0.100
4.80
SWI0402F-8N2
□
8.2
S.J
22
0.1
V/250M
680
0.100
4.40
SWI0402F-8N7
□
8.7
S.J
18
0.1
V/250M
480
0.200
4.10
SWI0402F-9N0
□
9.0
S.J
22
0.1
V/250M
680
0.100
4.16
SWI0402F-9N5
□
9.5
S.J
18
0.1
V/250M
480
0.200
4.00
SWI0402F-10N
□
10
J,K
21
0.1
V/250M
480
0.200
3.90
SWI0402F-11N
□
11
J,K
24
0.1
V/250M
640
0.120
3.68
SWI0402F-12N
□
12
J,K
24
0.1
V/250M
640
0.120
3.60
SWI0402F-13N
□
13
J,K
24
0.1
V/250M
440
0.210
3.45
SWI0402F-15N
□
15
J,K
24
0.1
V/250M
560
0.170
3.28
SWI0402F-16N
□
16
J,K
24
0.1
V/250M
560
0.220
3.10
SWI0402F-18N
□
18
J,K
25
0.1
V/250M
420
0.230
3.10
SWI0402F-19N
□
19
J,K
24
0.1
V/250M
480
0.200
3.04
SWI0402F-20N
□
20
J,K
25
0.1
V/250M
420
0.25
3.00
SWI0402F-22N
□
22
J,K
25
0.1
V/250M
400
0.30
2.80
SWI0402F-23N
□
23
J,K
22
0.1
V/250M
400
0.30
2.72
SWI0402F-24N
□
24
J,K
25
0.1
V/250M
400
0.30
2.70
SWI0402F-27N
□
27
J,K
24
0.1
V/250M
400
0.30
2.48
76
All the data listed in this catalogue are for reference only, TAI-TECH reserves t
notification.
For the latest specification, please visit our website:
High Frequency Wirewound Chip Inductors
(0402
inch)
Dimensions
Specifications
A
B
C
D
E
Units: mm
Part Number
Inductance
(
nH)
Tolerance Q
min.
Test Frequency
(
Hz)
I rm
(
mA)
SWI0402F-1N0
□
1.0
S.J
16
0.1
V/250M
136
SWI0402F-1N9
□
1.9
S.J
16
0.1
V/250M
104
SWI0402F-2N0
□
2.0
S.J
16
0.1
V/250M
104
SWI0402F-2N2
□
2.2
S.J
19
0.1
V/250M
960
SWI0402F-2N4
□
2.4
S.J
15
0.1
V/250M
790
SWI0402F-2N7
□
2.7
S.J
16
0.1
V/250M
640
SWI0402F-3N3
□
3.3
S.J
19
0.1
V/250M
840
SWI0402F-3N6
□
3.6
S.J
19
0.1
V/250M
840
SWI0402F-3N9
□
3.9
S.J
19
0.1
V/250M
840
SWI0402F-4N3
□
4.3
S.J
18
0.1
V/250M
700
SWI0402F-4N7
□
4.7
S.J
15
0.1
V/250M
640
SWI0402F-5N1
□
5.1
S.J
20
0.1
V/250M
800
SWI0402F-5N6
□
5.6
S.J
20
0.1
V/250M
760
SWI0402F-6N2
□
6.2
S.J
20
0.1
V/250M
760
SWI0402F-6N8
□
6.8
S.J
20
0.1
V/250M
680
SWI0402F-7N5
□
7.5
S.J
22
0.1
V/250M
680
SWI0402F-8N2
□
8.2
S.J
22
0.1
V/250M
680
SWI0402F-8N7
□
8.7
S.J
18
0.1
V/250M
480
SWI0402F-9N0
□
9.0
S.J
22
0.1
V/250M
680
SWI0402F-9N5
□
9.5
S.J
18
0.1
V/250M
480
SWI0402F-10N
□
10
J,K
21
0.1
V/250M
480
SWI0402F-11N
□
11
J,K
24
0.1
V/250M
640
SWI0402F-12N
□
12
J,K
24
0.1
V/250M
640
SWI0402F-13N
□
13
J,K
24
0.1
V/250M
440
SWI0402F-15N
□
15
J,K
24
0.1
V/250M
560
SWI0402F-16N
□
16
J,K
24
0.1
V/250M
560
SWI0402F-18N
□
18
J,K
25
0.1
V/250M
420
SWI0402F-19N
□
19
J,K
24
0.1
V/250M
480
SWI0402F-20N
□
20
J,K
25
0.1
V/250M
420
SWI040 F-22N
□
22
J,K
25
0.1
V/250M
400
SWI040 F-23N
□
23
J,K
22
0.1
V/250M
400
SWI040 F-24N
□
24
J,K
25
.1
V/250M
400
SWI040 F-27N
□
27
J,K
24
0.1
V/250M
400
76
76
All the data listed in this catalogue are for reference only, TAI-TECH reserves the right to alter or revise the speci cations without prior noti cation.
For the latest speci cation, please visit our website:
Remark