LPD5030-474MEB [COILCRAFT]
General Purpose Inductor, 470uH, 20%, 2 Element, Ferrite-Core, SMD, 5050-30M, CHIP, 5050-30M, HALOGEN FREE AND ROHS COMPLIANT;型号: | LPD5030-474MEB |
厂家: | Coilcraft lnc. |
描述: | General Purpose Inductor, 470uH, 20%, 2 Element, Ferrite-Core, SMD, 5050-30M, CHIP, 5050-30M, HALOGEN FREE AND ROHS COMPLIANT 大电流电感器 测试 |
文件: | 总3页 (文件大小:175K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
Document 757-1
Coupled Inductors LPD5030 FanordFoltyhbearcAk,pSpEliPcIaCti,oZnseta
The LPD5030 coupled miniature shielded inductors are
only 3 mm high and 5 mm square. They are ideal for
use in a variety of circuits including flyback, multi-output
buck and SEPIC.
These inductors provide high inductance, high efficiency
and excellent current handling in a rugged, low cost part.
They can also be used as two single inductors connected
in series or parallel or as a common mode choke.
+
+
D
C
V
L1
L2
OUT
C
V
IN
–
SW
–
Typical Flyback Converter
+
OUT
D
V
C
AUX
L2
–
0.189 0.00ꢀ
4,80 0,0ꢁ6
Dot indicates pin 1
+
+
V
L1
1
2
4
ꢀ
OUT
V
C
D
IN
SW
0.189 0.00ꢀ
4,80 0,0ꢁ6
–
–
Typical Buck Converter with auxiliary output
XXXX
D
+
+
Dash
number
Internal
code
L1
C1
V
C
Q
L2
C
OUT
V
IN
Recommended
Land Pattern
0.114 0.004
2,90 0,10
0.1ꢀ8
ꢀ,50
–
+
–
Typical SEPIC schematic
0.090
2,ꢀ0
+
45°
typ
L2
C1
Q
0.1ꢀ4 0.090
ꢀ,40 2,ꢀ0
0.19ꢁ
5,00
0.0ꢀ0
0,ꢁ5
V
D
C
C
OUT
V
L1
IN
–
–
Typical Zeta schematic
0.060
1,52
0.060
1,50
0.1ꢀ4
ꢀ,40
1
4
3
0.19ꢁ
5,00
L1
L2
inches
mm
Dimensions are in
2
Document 757-1 Revised 06/21/13
US +1-847-639-6400 sales@coilcraft.com
UK +44-1236-730595 sales@coilcraft-europe.com
Taiwan +886-2-2264 3646 sales@coilcraft.com.tw
China +86-21-6218 8074 sales@coilcraft.com.cn
Singapore + 65-6484 8412 sales@coilcraft.com.sg
© Coilcraft Inc. 2013
This product may not be used in medical or high
risk applications without prior Coilcraft approval.
Specification subject to change without notice.
Please check web site for latest information.
Document 757-2
Coupled Inductors for SEPIC Applications – LPD5030 Series
Isat (A)6
20%
drop
Irms (A)
both one
windings7 winding8
Coupling Leakage
Inductance2 DCR max3 SRF typ4 coefficient
L typ5
10%
drop
30%
drop
Part number1
(µH)
(Ohms)
(MHz)
typ
(µH)
LPD5030-102NE_
LPD5030-152ME_
LPD5030-222ME_
LPD5030-332ME_
LPD5030-472ME_
1.0 30ꢀ
1.5 20ꢀ
2.2 20ꢀ
3.3 20ꢀ
4.7 20ꢀ
0.042
0.048
0.067
0.077
0.111
153
118
87.0
61.0
49.0
0.95
0.97
0.98
0.98
0.99
0.09
0.09
0.10
0.10
0.11
4.30
3.90
2.80
2.50
2.10
4.49
4.20
2.98
2.70
2.20
4.67
4.30
3.07
2.80
2.20
2.20
2.05
1.95
1.70
1.40
3.11
2.90
2.76
2.40
1.98
LPD5030-562ME_
LPD5030-682ME_
LPD5030-103ME_
LPD5030-153ME_
LPD5030-223ME_
5.6 20ꢀ
6.8 20ꢀ
10 20ꢀ
15 20ꢀ
22 20ꢀ
0.125
0.159
0.210
0.298
0.452
44.0
40.0
28.0
23.0
17.0
0.99
0.99
0.99
0.99
>0.99
0.11
0.12
0.13
0.15
0.17
1.80
1.40
1.20
1.00
0.89
1.80
1.48
1.20
1.17
0.98
1.89
1.48
1.20
1.17
0.98
1.35
1.20
1.05
0.85
0.70
1.91
1.70
1.48
1.20
0.99
LPD5030-333ME_
LPD5030-473ME_
LPD5030-683ME_
LPD5030-104ME_
LPD5030-154ME_
33 20ꢀ
47 20ꢀ
68 20ꢀ
100 20ꢀ
150 20ꢀ
0.565
0.806
1.13
1.79
2.43
16.0
12.0
9.00
8.44
6.72
>0.99
>0.99
>0.99
>0.99
>0.99
0.20
0.24
0.29
0.37
0.46
0.73
0.59
0.50
0.47
0.38
0.77
0.63
0.54
0.54
0.43
0.78
0.65
0.55
0.56
0.45
0.60
0.50
0.43
0.33
0.28
0.85
0.71
0.61
0.47
0.40
LPD5030-224ME_
LPD5030-334ME_
LPD5030-474ME_
LPD5030-684ME_
LPD5030-105ME_
220 20ꢀ
330 20ꢀ
470 20ꢀ
680 20ꢀ
1000 20ꢀ
3.30
5.36
7.51
10.8
16.5
5.53
4.17
3.52
2.93
2.33
>0.99
>0.99
>0.99
>0.99
>0.99
0.54
0.65
0.76
0.89
1.20
0.31
0.25
0.21
0.17
0.15
0.35
0.25
0.24
0.20
0.17
0.36
0.32
0.26
0.21
0.17
0.24
0.18
0.15
0.13
0.10
0.34
0.25
0.21
0.18
0.14
1. Please specify termination and packaging codes:
LPD5030-105MEC
Coupled Inductor Core and Winding Loss Calculator
This web-based utility allows you to enter frequency, peak-to-peak
(ripple) current, and Irms current to predict temperature rise and overall
losses, including core loss. Go to online calculator.
Termination:E = RoHS compliant, halogen free silver-palladium-
platinum-glass frit.
Special order:
T = RoHS tin-silver-copper (95.5/4/0.5) or
S = non-RoHS tin-lead (63/37).
Core material Ferrite
Core and winding loss Go to online calculator
Weight 210 – 225 mg
Packaging: C = 7″ machine-ready reel. EIA-481 embossed plastic
tape (750 parts per full reel).
B = Less than full reel. In tape, but not machine ready.
To have a leader and trailer added ($25 charge), use
code letter D instead.
D = 13″ machine-ready reel. EIA-481 embossed plastic
tape. Factory order only, not stocked (2500 parts per
full reel).
Terminations RoHS compliant, halogen free silver-palladium-platinum
glass frit. Other terminations available at additional cost.
Ambient temperature –40°C to +85°C with Irms current, +85°C to
+125°C with derated current
Storage temperature Component: –40°C to +125°C.
Tape and reel packaging: –40°C to +80°C
Winding to winding isolation 100 V
Resistance to soldering heat Max three 40 second reflows at
+260°C, parts cooled to room temperature between cycles
Moisture Sensitivity Level (MSL) 1 (unlimited floor life at <30°C /
85ꢀ relative humidity)
Mean Time Between Failures (MTBF) 26,315,789 hours
Packaging 750/7″ reel; 2500/13″ reel Plastic tape: 12 mm wide,
0.32 mm thick, 8 mm pocket spacing, 3.1 mm pocket depth
Recommended pick and place nozzle OD: 5 mm; ID: ≤ 2.5 mm
PCB washing Only pure water or alcohol recommended
2. Inductance shown for each winding, measured at 100 kHz, 0.1 Vrms,
0 Adc on an Agilent/HP 4284A LCR meter or equivalent.When leads
are connected in parallel, inductance is the same value.When leads
are connected in series, inductance is four times the value.
3. DCR is for each winding.When leads are connected in parallel, DCR
is half the value.When leads are connected in series, DCR is twice the
value.
4. SRF measured using an Agilent/HP 4191A or equivalent.When leads
are connected in parallel, SRF is the same value.
5. Leakage Inductance is for L1 and is measured with L2 shorted.
6. DC current, at which the inductance drops the specified amount from
its value without current. It is the sum of the current flowing in both
windings.
7. Equal current when applied to each winding simultaneously that
causes a 40°C temperature rise from 25°C ambient. See temperature
rise calculation.
8. Maximum current when applied to one winding that causes a 40°C
temperature rise from 25°C ambient. See temperature rise calculation.
9. Electrical specifications at 25°C.
Refer to Doc 639 “Selecting Coupled Inductors for SEPIC Applications.”
Refer to Doc 362 “Soldering Surface Mount Components” before soldering.
Document 757-2 Revised 06/21/13
US +1-847-639-6400 sales@coilcraft.com
UK +44-1236-730595 sales@coilcraft-europe.com
© Coilcraft Inc. 2013
This product may not be used in medical or high
risk applications without prior Coilcraft approval.
Specification subject to change without notice.
Please check web site for latest information.
Taiwan +886-2-2264 3646 sales@coilcraft.com.tw
China +86-21-6218 8074 sales@coilcraft.com.cn
Singapore + 65-6484 8412 sales@coilcraft.com.sg
Document 757-3
Coupled Inductors for SEPIC Applications – LPD5030 Series
Typical L vs Current
Typical L vs Frequency
10000
10000
1000 µH
1000
1000
1000 µH
330 µH
330 µH
100 µH
33 µH
100 µH
100
100
10
33 µH
10 µH
3.3 µH
10
10 µH
3.3 µH
1
1
0.01
0.1
1
10
0.1
1
10
100
Current (A)
Frequency (MHz)
Typical Current Derating
120
110
100
90
80
70
60
50
40
30
20
Isat
Irms
10
0
-40 -20
0
20
40
60
80
100 120 140
Ambient temperature (°C)
Document 757-3 Revised 06/21/13
US +1-847-639-6400 sales@coilcraft.com
UK +44-1236-730595 sales@coilcraft-europe.com
© Coilcraft Inc. 2013
This product may not be used in medical or high
risk applications without prior Coilcraft approval.
Specification subject to change without notice.
Please check web site for latest information.
Taiwan +886-2-2264 3646 sales@coilcraft.com.tw
China +86-21-6218 8074 sales@coilcraft.com.cn
Singapore + 65-6484 8412 sales@coilcraft.com.sg
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