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LL1005-FHL5.6NJ Datasheet(PDF) 1 Page - TOKO, Inc

Part # LL1005-FHL5.6NJ
Description  Multilayer Chip Inductors
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Manufacturer  TOKO [TOKO, Inc]
Direct Link  http://www.toko.com
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LL1005-FHL5.6NJ Datasheet(HTML) 1 Page - TOKO, Inc

  LL1005-FHL5.6NJ Datasheet HTML 1Page - TOKO, Inc LL1005-FHL5.6NJ Datasheet HTML 2Page - TOKO, Inc  
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4
1.800.PIK.TOKO
1.847.297.0070
www.tokoam.com
R-LOG0703A
Meeting Your Needs
Multilayer Chip Inductors
TYPE
LL1005FHL
STANDARD PARTS SELECTION GUIDE
Unit: mm
L (mm)
W (mm)
T (mm)
A (mm)
1nH~68nH
1.0
±0.05 0.5±0.05 0.5±0.05 0.25±0.1
82nH~100nH
1.0
±0.1
0.5
±0.1
0.5
±0.1
0.25
±0.1
TYPE LL1005-FHL
Part Numbering
* Add tolerance to part number: S=
±0.3nH, J = ±5%
Testing Conditions: (1) L,Q: Agilent 4291A/B (Test fixture Agilent 16192A)
(2) SRF: Agilent 8719D, 8720D
(3) RDC: Agilent 4338A/B
The LL1005-FHL Series is a multilayer ceramic chip inductor
with an EIA standard 0402 footprint, lead-free terminations, and
expanded electrical specifications with respect to inductance,
Q, self-resonant frequency, and operating temperature range.
Features
• Inductance range: 1.0-100nH
• Miniature size: 0402 footprint (1.0mm x 0.5mm)
• Inductance specified at 100MHz and 800MHz
• Self-resonant frequency specified at
±15%
• Q: 8 ~ 50 typical (at 1800MHz)
• Temperature coefficient of inductance: +250ppm/
°C
• Temperature range: –55
°C to +125°C
• S-parameter data available upon request
• Packaged on tape and reel in 10,000 piece quantity
• Reflow solderable
• Lead-free terminations
LL 1005 - FHL 10N J
Tolerance
(S=
±0.3nH, J=±5%)
Inductance
Material
Dimensions (LxW)
Type Name
O
K
O
T
r
e
b
m
u
N
t
r
a
P
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(
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.
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D
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)
A
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.
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M
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1
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LL
.
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5
.
0
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0
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7
.
85
.
5
10
.
1
25
.
5
25
.
1
35
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2
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0
0
0
20
1
.
00
0
4
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1
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00
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0
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0
88
6
.
95
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7
15
.
2
21
.
8
25
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1
30
.
4
4%
5
1
±
0
0
0
5
13
1
.
00
0
4
S
8
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1
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20
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0
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0
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14
1
.
00
0
4
S
2
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2
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0
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1
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L2
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.
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.
0
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0
88
0
.
0
15
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7
10
.
3
26
.
9
20
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3
35
.
4
4%
5
1
±
0
0
0
3
15
1
.
00
0
4
S
7
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2
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F
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1
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L7
.
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.
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5
.
0
±0
0
88
9
.
90
.
8
10
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4
23
.
0
30
.
5
30
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9
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5
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±
0
0
6
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1
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00
0
4
S
3
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3
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0
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0
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7
.
90
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7
10
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3
25
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8
25
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3
35
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7
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5
1
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0
0
1
96
1
.
00
0
4
S
9
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3
L
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-
5
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0
88
9
.
95
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15
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4
22
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9
25
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5
30
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0
5%
5
1
±
0
0
4
78
1
.
00
0
3
S
7
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4
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5
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0
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0
89
2
.
0
10
.
8
10
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3
23
.
0
30
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3
35
.
2
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1
±
0
0
0
70
2
.
00
0
3
S
6
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5
L
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5
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L6
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.
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n
5
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0
±0
0
89
7
.
0
15
.
8
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4
27
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1
30
.
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30
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4
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5
1
±
0
0
1
62
2
.
00
0
3
J
8
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6
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-
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0
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10
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4
23
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1
35
.
4
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3
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0
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53
2
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J
2
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8
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-
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L
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±0
0
89
3
.
1
10
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0
20
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6
21
.
3
30
.
7
30
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6
4%
5
1
±
0
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2
.
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3
J
N
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1
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H
F
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5
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0
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.
1
10
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9
10
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5
20
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2
30
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3
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5
1
±
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40
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.
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0
3
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N
2
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0
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8
.
1
15
.
9
10
.
5
28
.
1
30
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4
30
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4
3%
5
1
±
0
0
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.
00
0
3
J
N
5
1
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5
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1%
0
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±0
0
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4
.
2
10
.
9
10
.
4
20
.
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30
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2
30
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0
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0
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0
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10
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2
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.
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15
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3
25
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0
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N
2
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-
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19
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1
15
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8
10
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3
23
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0
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8
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1
±
0
0
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20
7
.
00
0
3
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N
7
2
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H
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±0
0
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14
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2
10
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9
10
.
4
22
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9
25
.
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20
.
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5
1
±
0
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25
8
.
00
0
3
J
N
3
3
L
H
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-
5
0
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L
L3
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3%
0
1
±0
0
80
10
.
2
15
.
6
10
.
1
26
.
8
20
.
5
20
.
3
1%
5
1
±
0
0
1
20
0
.
10
0
2
J
N
9
3
L
H
F
-
5
0
0
1
L
L9
3J4
4%
0
1
±0
0
80
10
.
2
10
.
7
15
.
1
26
.
7
20
.
5
25
.
0
1%
5
1
±
0
0
9
10
1
.
10
0
2
J
N
7
4
L
H
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-
5
0
0
1
L
L7
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5%
0
1
±0
0
50
15
.
1
15
.
5
17
.
9
17
.
1
22
.
2
2—
%
5
1
±
0
0
5
10
3
.
10
0
2
J
N
6
5
L
H
F
-
5
0
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1
L
L6
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6%
0
1
±0
0
50
19
.
1
15
.
9
14
.
3
26
.
2
28
.
7
1—
%
5
1
±
0
0
4
10
5
.
10
0
2
J
N
8
6
L
H
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-
5
0
0
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L
L8
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7%
0
1
±0
0
50
17
.
1
19
.
7
13
.
0
28
.
0
2—
%
5
1
±
0
0
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10
7
.
10
8
1
J
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2
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L
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-
5
0
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9%
0
1
±0
0
50
11
.
3
11
.
9
18
.
1
24
.
1
2—
%
5
1
±
0
5
1
10
9
.
10
5
1
J
0
1
R
L
H
F
-
5
0
0
1
L
L0
0
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2
1%
0
1
±0
0
50
12
.
3
11
.
9
10
.
0
28
.
8
1—
%
5
1
±
0
3
0
10
2
.
20
5
1
L
W
T
A
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