S-1711C3030-I6T1G Seiko Instruments, S-1711C3030-I6T1G Datasheet - Page 25

Low Dropout (LDO) Regulators DUAL Linear LDO reg Hi70uA Iq 150mA Iout

S-1711C3030-I6T1G

Manufacturer Part Number
S-1711C3030-I6T1G
Description
Low Dropout (LDO) Regulators DUAL Linear LDO reg Hi70uA Iq 150mA Iout
Manufacturer
Seiko Instruments
Datasheet

Specifications of S-1711C3030-I6T1G

Polarity
Positive
Input Voltage Max
7 V
Output Voltage
3 V
Output Type
Fixed
Dropout Voltage (max)
3 V at 150 mA
Output Current
150 mA
Load Regulation
20 mV
Voltage Regulation Accuracy
1 %
Maximum Power Dissipation
400 mW
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Package / Case
SNT-6A
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Rev.3.0
4. Discharge shunt function (S-1711 Series A/ B/ E/ F types)
5. Pull-down/pull-up resistor (S-1711 Series A/ C/ E/ G types)
The S-1711 Series A/ B/ E/ F types have built-in discharge shunt circuits to discharge the output capacitance.
When the ON/OFF pin is set to shutdown level, turns the output transistor off, and turns the discharge shunt function
on so that the output capacitor discharges. These types allow for the VOUT pin reach V
compared with the S-1711 Series C/ D/ G/ H types that does not have discharge shunt circuits.
In the S-1711 Series A/ C/ E/ G types, the ON/OFF pin is internally pulled up to VIN or pulled down to VSS, so the
VOUT pin is in the VSS level when in the floating status.
Note with caution that the power consumption of the IC is higher by that to be input to pull-up resistance or pull-down
resistance the power off pin when the S-1711 Series A/ C types operated with the ON/OFF pin connected to VIN and
the S-1711 Series E/ G types with the ON/OFF pin connected to VSS.
_00
*1. Parasitic diode
SUPER-SMALL PACKAGE 2-CIRCUIT HIGH RIPPLE-REJECTION LOW DROPOUT CMOS VOLTAGE REGULATOR
ON/OFF
VSS
VIN
ON/OFF Pin
: Power off
Output transistor : OFF
ON/OFF circuit
*1
Seiko Instruments Inc.
Figure 26
Discharge shunt function
Current flow
: ON
S-1711 Series
*1
VOUT
SS
S-1711 Series
capacitance
level rapidly when
Output
(C
L
GND
)
25

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