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VP1-0059-R

更新时间: 2024-01-04 05:36:24
品牌 Logo 应用领域
库柏 - COOPER 变压器电感器固定电感器过滤器扼流圈LTE
页数 文件大小 规格书
8页 439K
描述
Inductors and Transformers

VP1-0059-R 技术参数

是否Rohs认证: 符合生命周期:Transferred
Reach Compliance Code:unknownECCN代码:EAR99
HTS代码:8504.50.80.00风险等级:5.23
型芯材料:FERRITE直流电阻:0.145 Ω
标称电感 (L):3.8 µH电感器应用:FILTER CHOKE
电感器类型:GENERAL PURPOSE INDUCTOR功能数量:1
端子数量:12最高工作温度:85 °C
最低工作温度:-40 °C形状/尺寸说明:RECTANGULAR PACKAGE
屏蔽:NO表面贴装:YES
端子位置:DUAL IN-LINE端子形状:GULL WING
容差:20%Base Number Matches:1

VP1-0059-R 数据手册

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®
®
VERSA-PAC  
Inductors and Transformers  
(Surface Mount)  
HOW TO USE MULTIPLE WINDINGS  
Discrete inductors combine like resistors, when connected in series or parallel. For example, inductors in series add and  
inductors in parallel reduce in a way similar to Ohm’s Law.  
LSeries = L1 + L2 + L3...Ln  
[
]
LParallel = 1/ 1/L1 + 1/L2 + 1/L3....1/Ln  
Windings on the same magnetic core behave differently. Two windings in series result in four times the inductance of a  
single winding. This is because the inductance varies proportionately to the square of the turns.  
Paralleled VERSA-PAC windings result in no change to the net inductance because the total number of turns remains  
unchanged; only the effective wire size becomes larger. Two parallel windings result in approximately twice the current  
carrying capability of a single winding. The net inductance of a given PCM configuration is based on the number of  
BASE  
windings in series squared multiplied by the inductance of a single winding (L ).The current rating of a PCM configuration  
BASE  
is derived by multiplying the maximum current rating of one winding (I ) by the number of windings in parallel. Examples  
of simple two-winding devices are shown below:  
Series Connected (2 Windings)  
Parallel Connected (2 Windings)  
10µH  
1 Amp  
10µH  
1 Amp  
10µH  
1 Amp  
10µH  
1 Amp  
LTOTAL = LBASE x S2 IMAX = IBASE x P  
L TOTAL = LBASE x S2  
IMAX = IBASE x P  
= 1 Amp x 2  
= 2 Amps  
= 10 µH x 22  
= 40 µH  
= 1 Amp x 1  
= 1 Amp  
= 10 µH x 12  
= 10 µH  
Where:  
LBASE = Inductance of a single winding  
P = Number of windings in parallel (use 1 with all windings in series)  
S = Number of windings in series  
IBASE = Maximum current rating of one winding  

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