T
PL
IA
N
OM
C
*R
oH
S
Features
Applications
n Available in E6 series
n Input/output of DC/DC converters
n High inductance up to 10 mH
n Power supplies for:
n Low 6.0 mm profile
• Portable communication equipment
• Camcorders
• LCD TVs
n Gull wing leads
LE
AD
F
RE
E
n RoHS compliant*
SRR0906 Series - SMD Shielded Power Inductors
Electrical Specifications
Inductance
1 KHz
Q
µH
Tol. % Ref.
SRR0906-2R7ML 2.7
SRR0906-3R5ML 3.5
SRR0906-4R7ML 4.7
SRR0906-5R6ML 5.6
SRR0906-6R8ML 6.8
SRR0906-8R2ML 8.2
SRR0906-100ML
10
SRR0906-120ML
12
SRR0906-150ML
15
SRR0906-180ML
18
SRR0906-220ML
22
SRR0906-270ML
27
SRR0906-330ML
33
SRR0906-390ML
39
SRR0906-470ML
47
SRR0906-560ML
56
SRR0906-680ML
68
SRR0906-820ML
82
SRR0906-101YL
100
SRR0906-121YL
120
SRR0906-151YL
150
SRR0906-181YL
180
SRR0906-221YL
220
SRR0906-271YL
270
SRR0906-331YL
330
SRR0906-391YL
390
SRR0906-471YL
470
SRR0906-561YL
560
SRR0906-681YL
680
SRR0906-821YL
820
SRR0906-102YL 1000
SRR0906-122YL 1200
SRR0906-152YL 1500
SRR0906-182YL 1800
SRR0906-222YL 2200
SRR0906-272YL 2700
SRR0906-332YL 3300
SRR0906-392YL 3900
SRR0906-472YL 4700
SRR0906-562YL 5600
SRR0906-682YL 6800
SRR0906-822YL 8200
SRR0906-103YL 10000
±20
±20
±20
±20
±20
±20
±20
±20
±20
±20
±20
±20
±20
±20
±20
±20
±20
±20
±15
±15
±15
±15
±15
±15
±15
±15
±15
±15
±15
±15
±15
±15
±15
±15
±15
±15
±15
±15
±15
±15
±15
±15
±15
23
23
23
23
23
23
35
35
35
35
35
35
35
35
35
35
40
40
40
40
40
40
40
40
40
40
40
60
60
85
100
100
100
100
100
100
100
100
100
100
100
100
100
Test
Frequency
(MHz)
SRF
Min.
(MHz)
Ro VE LEA
HS RS D
C ION FRE
OM S E
PL AR
IA E
NT
*
Bourns Part No.
General Specifications
7.96
7.96
7.96
7.96
7.96
7.96
2.52
2.52
2.52
2.52
2.52
2.52
2.52
2.52
2.52
2.52
2.52
2.52
0.796
0.796
0.796
0.796
0.796
0.796
0.796
0.796
0.796
0.796
0.796
0.796
0.252
0.252
0.252
0.252
0.252
0.252
0.252
0.252
0.252
0.252
0.252
0.252
0.0796
RDC
Max.
(Ω)
I rms
Max.
(A)
85.0
0.032
3.20
80.0
0.036
2.90
40.0
0.040
2.70
57.0
0.046
2.50
38.0
0.050
2.30
30.0
0.055
2.10
29.0
0.080
1.80
26.0
0.085
1.70
23.0
0.100
1.60
22.0
0.110
1.50
19.0
0.130
1.40
17.0
0.140
1.30
15.0
0.150
1.20
14.0
0.160
1.10
12.0
0.180
1.00
12.0
0.300
0.93
9.0
0.350
0.85
8.0
0.370
078
7.5
0.420
0.70
START 1
7.0
0.480
0.65
6.0
0.550
0.60
MARKING
101
5.5
0.820
0.52
(PIN 1 SIDE)
5.0
1.000
0.48
5.0 4 1.100
0.44
FINISH
4.5
1.300
0.40
4.2
1.400
0.38
4.0
1.600
0.35
9.5 ± 0.3
(.374 ± .012)
3.2
2.700
0.28
2.7
3.200
0.25
12.5 ± 0.5
2.6
3.500
0.23
(.492 ± .020)
2.3
4.000 11.0 ± 0.5
0.22
2.3
4.400 (.433 ± .020)
0.20
2.0
5.200
0.18
1.7
7.000
0.17
2.5 ± 0.3
0.7 ± 0.1
1.5 (.028 ± .004)
8.500 (.098 ± .012)
0.16
1.4
9.200
0.14
1.3
11.000
0.12
1.2
16.000
0.11
1.0
19.000
0.10
0.9
21.000
0.09
0.9
24.000
0.09
0.8
31.000
0.08
3.0
0.7
38.000
0.07
(.118)
Multiple windings possible (up to four
windings).
Recommended Layout
**K-Factor: To calculate core flux density, Bp-p
(gauss) = K x L(µH) x Δ I (peak-to-peak ripple
current, A), determine core loss from Core
Loss vs. Flux Density plot.
2.2
(.087)
*RoHS Directive 2002/95/EC Jan. 27, 2003 including
annex and RoHS Recast 2011/65/EU June 8, 2011.
Specifications are subject to change without notice.
The device characteristics and parameters in this data
sheet can and do vary in different applications and
actual device performance may vary over time.
Users should verify actual device performance in their
specific applications.
10.3
(.406)
I sat
Typ.
(A)
**KFactor
5.80
173
5.20
148
4.30
130
4.20
115
3.40
104
3.20
94
2.70
80
2.60
74
2.40
65
2.00
61
1.90
52
1.80
47
1.60
43
1.40
42
1.30
36
1.20
34
1.00
31
0.90
28
0.90 8
25
0.75
23
0.70
20
10.0 ± 0.5
0.70(.394 ± .020)
19
0.60
16
0.55 5
15
0.51
13
0.50
12
0.40
11
0.35
11
6.0 ± 0.3
0.33
9
(.236 ± .012)
0.30
9
0.26
8
0.24
7
0.22
6
2.5 ± 0.3
0.20(.098 ± .012)
6
0.18
5
0.17
5
0.15
4
0.13
4
0.11
4
0.11
3
0.10
3
0.09
3
2.5 ± 0.3
0.08
(.098 ± .012) 2
Materials
Core................................ Ferrite DR & RI
Wire.............................Enameled copper
Base................................................. LCP
8
START 1
Terminal.....................................Cu/Ni/Sn
Adhesive............................... Epoxy resin
10.5
RatedMARKING
Current
101
(.413)
(PIN 1 SIDE)
................Ind.
drop of 10 % typ. at Isat
Temp.FINISH
Rise.......40
°C max. at rated
Irms
4
5
Packaging..................... 600 pcs. per reel
Product
9.5 ± 0.3 Dimensions
(.374 ± .012)
6.0 ± 0.3
8
(.236 ± .012)
START 1
12.5 ± 0.5
(.492 ± .020)
101
11.0 ± 0.5
(.433 ± .020)
MARKING
(PIN 1 SIDE)
FINISH 4
2.5 ± 0.3
5
(.098 ± .012)
2.5 ± 0.3
0.7 ± 0.1
(.028 ± .004) (.098 ± .012)
6.0 ± 0.3
(.236 ± .012)
12.5 ± 0.5
(.492 ± .020)
3.0
(.118)
11.0 ± 0.5
(.433 ± .020)
2.5 ± 0.3
(.098 ± .012)
2.5 ± 0.3
(.098 ± .012)
2.5 ± 0.3
0.7 ± 0.1
(.028 ± .004) (.098 ± .012)
10.3
(.406)
2.2
(.087)
2.2
(.087)
2.5
(.098)
1.0
(.039)
3.0
(.118)
14.7
(.578)
2.5 ± 0.3
(.098 ± .012)
MM
DIMENSIONS:
(INCHES)
2.2
Schematic
(.087)
10.3
(.406)
1
14.7
(.578)
10.0 ± 0.5
(.394 ± .020)
9.5 ± 0.3
(.374 ± .012)
2.2
(.087)
2.5
(.098)
1.0
(.039)
Test Voltage........................................1 V
Reflow Soldering... 230 °C, 50 sec. max.
Operating Temperature
.................................-40 °C to +125 °C
(Temperature rise included)
Storage Temperature... -40 °C to +125 °C
Resistance to Soldering Heat
.................................. 260 °C for 5 sec.
Moisture Sensitivity Level......................1
ESD Classification (HBM)................. N/A
2.2
(.087)
4
1.0
(.039)
14.7
(.578)
2.5
(.098)
SRR0906 Series - SMD Shielded Power Inductors
Core Loss vs. Flux Density
10000
Core Loss (mW)
1000
1 MHz
800 KHz
500 KHz
400 KHz
300 KHz
200 KHz
100 KHz
100
10
1
0.10
0.01
10
100
1000
Flux Density Bp-p (gauss)
Packaging Specifications
2.0 ± 0.5
(.079 ± .020)
330
(12.99)
DIA.
30.4
(1.20)
13.0 ± 0.5
(.512 ± .020)
DIA.
21.0 ± 0.8
(.827 ± .031)
50.0
(1.969)
13.0 ± 0.5
DIA.
(.512 ± .020)
26
(1.02)
4
(.157)
END
START
24
(.945)
6.85
(.27)
MM
DIMENSIONS:
(INCHES)
16
(.63)
NO COMPONENT
200
(7.874)
COMPONENTS
9600
(378.2)
NO COMPONENT
400
(15.748)
USER DIRECTION OF FEED
QTY: 600 PCS. PER REEL
REV. 03/18
Specifications are subject to change without notice.
The device characteristics and parameters in this data sheet can and do vary in different applications and actual device performance may vary over time.
Users should verify actual device performance in their specific applications.
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