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HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR - Seiko Instruments

Número de pieza S-1200
Descripción HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR
Fabricantes Seiko Instruments 
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S-1200 datasheet

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S-1200 pdf
HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR
Rev.3.2_00
S-1200 Series
„ Pin Configurations
SNT-6A(H)
Top view
16
25
34
Figure 2
Table 2
Pin No.
Symbol
Pin Description
1
VOUT
Output voltage pin
2
VSS
GND pin
3
NC*1
No connection
4 ON/OFF Shutdown pin
5
VSS
GND pin
6 VIN Input voltage pin
*1. The NC pin is electrically open.
The NC pin can be connected to VIN or VSS.
SOT-23-5
Top view
54
123
Table 3
Pin No.
Symbol
Description
1 VIN Input voltage pin
2
VSS
GND pin
3 ON/OFF Shutdown pin
4
NC*1
No connection
5
VOUT
Output voltage pin
*1. The NC pin is electrically open.
The NC pin can be connected to VIN or VSS.
Figure 3
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Seiko Instruments Inc.
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S-1200 arduino
HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR
S-1200 Series
Rev.3.2_00
„ Standard Circuit
Input
CIN*1
VIN VOUT
ON/OFF
VSS
Output
CL*2
Single GND
GND
*1. CIN is a capacitor for stabilizing the input.
*2. A ceramic capacitor of 0.1 µF or more can be used for CL.
Figure 10
Caution The above connection diagram and constant will not guarantee successful operation.
Perform thorough evaluation using the actual application to set the constant.
„ Application Conditions
Input capacitor (CIN):
Output capacitor (CL):
ESR of output capacitor:
0.1 µF or more
0.1 µF or more
1.0 or less
Caution A general series regulator may oscillate, depending on the external components selected.
Check that no oscillation occurs with the application using the above capacitor.
„ Selection of Input and Output Capacitors (CIN, CL)
www.DTahtaeShSe-e1t42U0.0comSeries requires an output capacitor between the VOUT and VSS pins for phase compensation.
Operation is stabilized by a ceramic capacitor with an output capacitance of 0.1 µF or more in the entire
temperature range. However, when using an OS capacitor, tantalum capacitor, or aluminum electrolytic
capacitor, a ceramic capacitor with a capacitance of 0.1 µF or more and an ESR of 1.0 or less is required.
The value of the output overshoot or undershoot transient response varies depending on the value of the output
capacitor. The required capacitance of the input capacitor differs depending on the application.
The recommended value for an application is 0.1 µF or more for CIN and 0.1 µF or more for CL; however, when
selecting the output capacitor, perform sufficient evaluation, including evaluation of temperature characteristics,
on the actual device.
10 Seiko Instruments Inc.

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