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S-1317A10-M5T1U4 Datasheet, PDF (9/31 Pages) Seiko Instruments Inc – Built-in overcurrent protection circuit
5.5 V INPUT, 100 mA CMOS VOLTAGE REGULATOR WITH 0.35 μA SUPER LOW CURRENT CONSUMPTION
Rev.1.0_00
S-1317 Series
 Standard Circuit
Input
CIN*1
VIN
VOUT
VSS
Output
CL*2
Single GND
GND
*1. CIN is a capacitor for stabilizing the input.
*2. CL is a capacitor for stabilizing the output.
Figure 7
Caution
The above connection diagram and constants will not guarantee successful operation. Perform
thorough evaluation including the temperature characteristics with an actual application to set the
constants.
 Condition of Application
Input capacitor (CIN):
Output capacitor (CL):
A ceramic capacitor with capacitance of 1.0 μF or more is recommended.
A ceramic capacitor with capacitance of 1.0 μF to 100 μF is recommended.
Caution Generally, in a voltage regulator, an oscillation may occur depending on the selection of the external
parts. Perform thorough evaluation including the temperature characteristics with an actual
application using the above capacitors to confirm no oscillation occurs.
 Selection of Input Capacitor (CIN) and Output Capacitor (CL)
The S-1317 Series requires CL between the VOUT pin and the VSS pin for phase compensation. The operation is
stabilized by a ceramic capacitor with capacitance of 1.0 μF to 100 μF. When using an OS capacitor, a tantalum
capacitor or an aluminum electrolytic capacitor, the capacitance must also be 1.0 μF to 100 μF. However, an oscillation
may occur depending on the equivalent series resistance (ESR).
Moreover, the S-1317 Series requires CIN between the VIN pin and the VSS pin for a stable operation.
Generally, an oscillaiton may occur when a voltage regulator is used under the conditon that the impedance of the power
supply is high. Note that the output voltage transient characteristics vary depending on the capacitance of CIN and CL and
the value of ESR.
Caution Perform thorough evaluation including the temperature characteristics with an actual application to
select CIN and CL.
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