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SLA3001M PDF预览

SLA3001M

更新时间: 2024-01-20 17:21:33
品牌 Logo 应用领域
急速微 - ALLEGRO 稳压器电源电路
页数 文件大小 规格书
10页 163K
描述
LOW-VOLTAGE, HIGH-CURRENT 1.8 V LINEAR REGULATOR

SLA3001M 技术参数

生命周期:Obsolete包装说明:,
Reach Compliance Code:compliant风险等级:5.6
Base Number Matches:1

SLA3001M 数据手册

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SI-3018LSA  
LOW-VOLTAGE, HIGH-CURRENT  
1.8 V LINEAR REGULATOR  
APPLICATIONS INFORMATION  
Thermal protection and heat sinking. Thermal protection  
circuitry turns off the device should the junction temperature rise  
above 135°C. This is intended only to protect the device from  
failures due to excessive junction temperatures and should not  
imply that high-temperature operation is permitted. Ambient  
temperature is affected by air circulation and proximity to other  
heat-producing components. Normal operation is resumed when  
the junction temperature is reduced. Output terminals 7 and 8  
are the lead frame and substrate of the pass transistor and  
provide a low thermal-resistance path for heat sinking.  
down resistor. If this terminal is not connected (open-circuit  
fault), the device output is turned off.  
Overcurrent protection. The SI-3018LSA includes an  
overcurrent protection circuit, which limits the output current at  
start up. It thus cannot be used with  
1) a constant-current load,  
2) a power supply with positive and negative to a common load  
(center-tap type power supply),  
3) a series power supply, or  
4) a diode or resistor in series with the device ground to raise  
the output voltage.  
In general, the maximum ambient temperature has the most  
effect on determining the heat sinking that is needed to maintain  
a safe normal operating junction temperature. The maximum  
heat sinking thermal resistance (RθJA) can be calculated as  
Input voltage. Including ripple voltage and transients, the  
minimum input voltage should be greater than the sum of the  
output voltage and the maximum rated dropout voltage; the  
maximum input voltage must be less than the absolute maximum  
rated input voltage (16 V).  
RθJA = (135 – TA) / IO (VI – 1.8)  
where TA is the maximum ambient temperature in °C,  
IO is the maximum output (load) current in amperes, and  
VI is the maximum input voltage in volts.  
In most applications, the input voltage (terminal 1, VI) and  
the supply voltage (terminal 3, VS) are connected together.  
The following graph gives the required copper foil area  
(soldered to leads 7 and 8) to provide the required thermal  
resistance. Note that more is always better and both sides of the  
printed wiring board can be used.  
Output capacitor. A 22 µF tantalum electrolytic capacitor is  
recommended between the output and ground. Very-low ESR  
capacitors should not be used.  
ENABLE input. The ENABLE input includes an internal pull-  
Input capacitor. A 0.1 µF to 10 µF tantalum capacitor is  
recommended between the input and ground to prevent oscilla-  
tion.  
2000  
GLASS-EPOXY  
PRINTED WIRING BOARD  
1000  
500  
300  
200  
100  
90  
100  
110  
120  
130  
°
JUNCTION-TO-AMBIENT THERMAL RESISTANCE in C/W  
Dwg. GK-031  
TM  
115 Northeast Cutoff, Box 15036  
6
Worcester, Massachusetts 01615-0036 (508) 853-5000  

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