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SD53-6R8-R Datasheet(PDF) 1 Page - Cooper Bussmann, Inc.

No. de pieza SD53-6R8-R
Descripción Electrónicos  Low Profile, Shielded Inductors
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Fabricante Electrónico  COOPER [Cooper Bussmann, Inc.]
Página de inicio  http://www.cooperbussmann.com
Logo COOPER - Cooper Bussmann, Inc.

SD53-6R8-R Datasheet(HTML) 1 Page - Cooper Bussmann, Inc.

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Description
• 125°C maximum total temperature operation
• Octagonal shape utilizes board space
• 5.2mm x 5.2mm x 3.0mm surface mount package
• Shielded drum core reduces EMI
• Ferrite core material
• Inductance range from 1.1uH to 100uH
• Current range from 4.08 Amps to 0.44 Amps
Applications
• High Power LED driver
• White LED and OLED displays
• DSL modems, digital cameras
• Buck, Boost Inductor
• Cellular phones, Smart phones
• MP3 players, Digital radio player
• PDA, Palmtop, and wireless handhelds
• Battery power, TFT - LCD Bias supply
Environmental Data
• Storage temperature range: -40°C to +125°C
• Operating temperature range: -40°C to +125°C
(range is application specific)
• Solder reflow temperature: +260°C max. for 10 seconds
maximum
Packaging
• Supplied in tape and reel packaging, 2600 per reel
SD53 Series
Low Profile, Shielded Inductors
Part Number
Rated
OCL (1)
Part
Irms (2)
Isat (3)
DCR
DCR
K-factor
Inductance
µH ± 20%
Marking
Amperes
Amperes
Ω @20°C
Ω @20°C
(4)
(µH)
(Typical)
(Maximum)
SD53-1R1-R
1.10
1.10
A
3.25
4.80
0.017
0.020
48
SD53-2R0-R
2.00
2.00
B
2.64
3.30
0.023
0.027
35
SD53-3R3-R
3.30
3.30
C
2.26
2.60
0.029
0.034
28
SD53-4R7-R
4.70
4.70
D
2.01
2.10
0.039
0.045
21
SD53-6R8-R
6.80
6.80
E
1.65
1.85
0.059
0.068
20
SD53-100-R
10.0
10.0
F
1.41
1.40
0.077
0.090
15
SD53-150-R
15.0
15.0
G
1.10
1.10
0.122
0.142
12
SD53-220-R
22.0
22.0
H
0.81
0.94
0.179
0.208
10
SD53-330-R
33.0
33.0
I
0.75
0.76
0.221
0.257
8
SD53-470-R
47.0
47.0
J
0.64
0.64
0.303
0.352
7
SD53-680-R
68.0
68.0
K
0.52
0.58
0.452
0.525
6
SD53-101-R
100
100
L
0.44
0.45
0.689
0.801
5
(1) Open Circuit Inductance Test Parameters: 100kHz, 0.1V, 0.0Adc.
(2) Irms: DC current for an approximate
∆T of 40°C without core loss. Derating is
necessary for AC currents. PCB layout, trace thickness and width, air-flow, and
proximity of other heat generating components will affect the temperature rise. It
is recommended that the temperature of the part not exceed 125°C under worst
case operating conditions verified in the end application.
(3) Isat Amperes peak for approximately 30% rolloff (@25°C)
(4) K-factor: Used to determine B p-p for core loss (see graph).
B p-p = K*L*
∆I, B p-p(mT), K: (K factor from table), L: (Inductance in uH),
∆I (Peak to peak ripple current in Amps).
(5) Part Number Definition: SD53-xxx-R
SD53 = Product code and size; -xxx = Inductance value in uH;
R = decimal point; If no R is present, third character = # of zeros.
-R suffix = RoHS compliant
RoHS
2002/95/EC
Dimensions are in millimeters.
Note A. Part Marking:
4 Digit Marking: Line 1: (1st digit: Indicates inductance value per Part Marking Designator in chart above); (2nd digit: Bi-weekly production date code);
(3rd digit: Last digit of the year produced), (4th digit: Manufacturing code). Line 2: 53 (Indicates the product size code)
Mechanical Diagrams


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