欢迎访问ic37.com |
会员登录 免费注册
发布采购

EUP7967A-28VIR1 参数 Datasheet PDF下载

EUP7967A-28VIR1图片预览
型号: EUP7967A-28VIR1
PDF下载: 下载PDF文件 查看货源
内容描述: 300mA低压噪声低压降线性稳压器 [300mA Low-Noise Low-Dropout Linear Regulator]
分类和应用: 稳压器
文件页数/大小: 9 页 / 202 K
品牌: EUTECH [ EUTECH MICROELECTRONICS INC ]
 浏览型号EUP7967A-28VIR1的Datasheet PDF文件第1页浏览型号EUP7967A-28VIR1的Datasheet PDF文件第2页浏览型号EUP7967A-28VIR1的Datasheet PDF文件第3页浏览型号EUP7967A-28VIR1的Datasheet PDF文件第4页浏览型号EUP7967A-28VIR1的Datasheet PDF文件第5页浏览型号EUP7967A-28VIR1的Datasheet PDF文件第6页浏览型号EUP7967A-28VIR1的Datasheet PDF文件第8页浏览型号EUP7967A-28VIR1的Datasheet PDF文件第9页  
EUP7967A  
Application Information  
External Capacitors  
Noise Bypass Capacitor  
An external 10nF bypass capacitor at BP pin conjunction  
with an internal resistor creates lowpass filter. Increasing  
the capacitance will decrease the output noise. This cap is  
connected directly to a high impedance node in the  
bandgap reference circuit. Any significant loading on this  
node will cause a change on the regulated output voltage.  
For this reason, DC leakage current through this pin must  
be kept as low as possible for best output voltage  
accuracy. The types of capacitors best suited for the noise  
bypass capacitor are ceramic and film.  
Unlike many other LDO’s , addition of a noise reduction  
capacitor does not effect the load transient response of  
the device. However, it does affect start-up time. The  
smaller the capacitance value, the quicker the start-up  
time.  
Like any low-dropout regulator, the EUP7967A requires  
external capacitors for regulator stability. The EUP7967A  
is specifically designed for portable applications  
requiring minimum board space and smallest components.  
These capacitors must be correctly selected for good  
performance.  
Input Capacitor  
A minimum input capacitance of 1µF is required between  
the EUP7967A input pin and ground (the amount of the  
capacitance may be increased without limit).This  
capacitor must be located a distance of not more than  
1cm from the input pin and returned to a clean analog  
ground.  
Any good quality ceramic, tantalum, or film capacitor  
may be used at the input. If a tantalum capacitor is used  
at the input, it must be guaranteed by the manufacturer to  
have asurge current rating sufficient for the application.  
Power Dissipation and Junction Temperature  
Specified regulator operation is assured to a junction  
temperature of 125°C; the maximum junction  
temperature should be restricted to 125°C under normal  
operating conditions. This restriction limits the power  
dissipation the regulator can handle in any given  
application. To ensure the junction temperature is within  
acceptable limits, calculate the maximum allowable  
dissipation, PD(max), and the actual dissipation, PD, which  
must be less than or equal to PD(max)  
No-Load Stability  
The EUP7967A will remain stable and in regulation with  
no external load. This is specially important in CMOS  
RAM keep-alive applications.  
Output Capacitance  
The maximum-power-dissipation limit is determined  
using the following equation:  
The EUP7967A is specifically designed to employ  
ceramic output capacitors as low as 2.2µF. Ceramic  
capacitors below 10µF offer significant cost and space  
savings, along with high frequency noise filtering. Higher  
values and other types and of capacitor may be used, but  
their equivalent series resistance (ESR) should be  
maintained below 0.5. Ceramic capacitor of the value  
required by the EUP7967A are available in the following  
dielectric types: Z5U, Y5V, X5R, and X7R. The Z5U and  
Y5V types exhibit a 50% or more drop in capacitance  
value as their temperature increase from 25°C, an  
important consideration. The X5R generally maintain  
their capacitance value within ± 20%. The X7R type are  
desirable for their tighter tolerance of 10% over  
temperature.  
T max T  
J
=
A
P
D(max)  
R
θJA  
Where:  
TJMAX is the maximum allowable junction temperature.  
R
θJA is the thermal resistance junction-to-ambient for the  
package  
TA is the ambient temperature.  
The regulator dissipation is calculated using:  
P
=
(
V V  
)
×I  
D
I
O
O
Power dissipation resulting from quiescent current is  
negligible. Excessive power dissipation triggers the  
thermal protection circuit.  
Shutdown  
The EUP7967A goes into sleep mode when the  
SHDN  
pin is in a logic low condition. During this condition, the  
pass transistor, error amplifier, and bandgap are turned  
off, reducing the supply current to 60nA typical. The  
pin may be directly tied to VIN to keep the part  
SHDN  
on.  
DS7967A Ver 1.4 Sep. 2007  
7