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SDH3812-4R7-R PDF预览

SDH3812-4R7-R

更新时间: 2024-11-01 06:10:59
品牌 Logo 应用领域
库柏 - COOPER 稳压器开关电感器固定电感器测试过滤器扼流圈LTE
页数 文件大小 规格书
4页 373K
描述
Switching Regulators

SDH3812-4R7-R 技术参数

是否无铅: 不含铅是否Rohs认证: 符合
生命周期:TransferredReach Compliance Code:unknown
ECCN代码:EAR99HTS代码:8504.50.80.00
风险等级:5.46Is Samacsys:N
型芯材料:FERRITE直流电阻:0.264 Ω
标称电感 (L):4.7 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:2最高工作温度:125 °C
最低工作温度:-40 °C形状/尺寸说明:RECTANGULAR PACKAGE
屏蔽:YES表面贴装:YES
端子位置:DUAL ENDED端子形状:ONE SURFACE
测试频率:0.1 MHz容差:20%
Base Number Matches:1

SDH3812-4R7-R 数据手册

 浏览型号SDH3812-4R7-R的Datasheet PDF文件第2页浏览型号SDH3812-4R7-R的Datasheet PDF文件第3页浏览型号SDH3812-4R7-R的Datasheet PDF文件第4页 
Inductor Selection for Switching Regulators  
Introduction/Basic Operation  
In switching regulator applications the inductor is used as an energy  
storage device. When the semiconductor switch is on the current in the  
inductor ramps up and energy is stored. When the switch turns off energy  
is released into the load. The amount of energy stored is calculated by the  
formula Energy = ½L.I² (Joules), where:  
•L is the inductance in Henrys  
•I is the peak value of inductor current  
The amount by which the current changes during a switching cycle is  
known as the ripple current. Ripple current is defined as Vl = L.di/dt:  
•V is the voltage across the inductor  
l
di is the ripple current  
dt is the duration for which the voltage is applied  
I load  
dI  
I inductor  
0
1
2
V out  
ESR  
Figure 1:  
Buck Inductor  
Inductor current is made up of AC and DC components (Figure 1). The AC  
component is high frequency and will flow through the output capacitor  
because it has a low HF impedance. A ripple voltage is produced due to  
the capacitor ‘equivalent series resistance’ (ESR) that will appear at the  
output of the switching regulator. This ripple voltage needs to be  
sufficiently low as not to effect the operation of the circuit the regulator is  
supplying, normally in the order of 10-500mV  
.
pk-pk  
The following parameters need to be defined or calculated to select an  
inductor:  
Maximum input voltage  
Selecting the correct ripple current impacts the size of the inductor and  
output capacitor. The capacitor needs to have a sufficiently high ripple  
current rating or it will overheat and dry out. To achieve a good  
compromise between inductor and capacitor size a ripple current value of  
10-30% of maximum inductor current should be chosen. The current in  
the inductor will be continuous for output currents greater that 5-15% of  
full load.  
Output voltage  
Switching frequency  
Maximum ripple current  
SD3814  
Duty cycle  

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