S-1206 SII [Seiko Instruments Inc], S-1206 Datasheet - Page 10

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S-1206

Manufacturer Part Number
S-1206
Description
ULTRA LOW CURRENT CONSUMPTION AND LOW DROPOUT CMOS VOLTAGE REGULATOR
Manufacturer
SII [Seiko Instruments Inc]
Datasheet

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10
ULTRA LOW CURRENT CONSUMPTION AND LOW DROPOUT CMOS VOLTAGE REGULATOR
S-1206 Series
Technical Terms
1. Low Dropout Voltage Regulator
2. Low Equivalent Series Resistance
3. Output Voltage (V
4. Line Regulation
5. Load Regulation (∆V
6. Dropout Voltage (V
The low dropout voltage regulator is a voltage regulator whose dropout voltage is low due to its built-in low-on-
resistance transistor.
A capacitor whose equivalent series resistance (R
series resistance capacitor, such as a ceramic capacitor, for the output-side capacitor (C
The accuracy of the output voltage is ensured at ±1.0% or ±15 mV
voltage
*1. Differs depending on the product.
*2. When V
Caution If the above conditions change, the output voltage value may vary and exceed the accuracy range
Indicates the dependency of the output voltage on the input voltage. That is, the values show how much the output
voltage changes due to a change in the input voltage with the output current remaining unchanged.
Indicates the dependency of the output voltage on the output current. That is, the values show how much the output
voltage changes due to a change in the output current with the input voltage remaining unchanged.
Indicates the difference between the input voltage (V
voltage has fallen to 98% of the output voltage value (V
1.0 V, and the output voltage at that point (V
V
drop
= V
*1
IN1
, fixed output current, and fixed temperature.
of the output voltage. Refer to the “
Data)” for details.
OUT
− (V
< 1.5 V : ±15 mV, When 1.5 V ≤ V
OUT3
× 0.98)
OUT
∆V
drop
∆V
OUT2
)
IN
)
OUT1
V
)
OUT
Seiko Instruments Inc.
OUT3
× 0.98).
OUT
ESR
: ±1.0%
IN1
Electrical Characteristics” and “
) is low. The S-1206 Series enables use of a low equivalent
OUT3
), which is the input voltage (V
) after V
IN
was gradually decreased from V
*2
under the specified conditions of fixed input
IN
) at the point where the output
L
).
Characteristics (Typical
IN
Rev.1.1
= V
OUT(S)
_00
+

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