English
Language : 

LD39015XX08 Datasheet, PDF (1/16 Pages) STMicroelectronics – 150 mA low quiescent current low noise voltage regulator
LD39015XX08 - LD39015XX10
LD39015XX12 - LD39015XX33
150 mA low quiescent current
low noise voltage regulator
Features
■ Input voltage from 1.5 to 5.5 V
■ Ultra low dropout voltage (80 mV typ. at 100
mA load)
■ Very low quiescent current (18 µA typ. at no
load, 35 µA typ. at 150 mA load, 1 µA max in off
mode)
■ Very low noise without bypass capacitor
(29 µVRMS at VOUT = 0.8 V)
■ Output voltage tolerance: ± 2.0% @ 25 °C
■ 150 mA guaranteed output current
■ Wide range of output voltages available on
request: 0.8 V to 3.3 V with 100 mV step
■ Logic-controlled electronic shutdown
■ Compatible with ceramic capacitors
COUT = 1 µF
■ Internal current and thermal limit
■ Available in SOT666 and SOT23-5L packages
■ Temperature range: -40 °C to 125 °C
Description
The LD39015XX series provides 150 mA
maximum current from an input voltage ranging
SOT666
SOT23-5L
from 1.5 V to 5.5 V with a typical dropout voltage
of 80 mV. It is stable with ceramic capacitor. The
ultra-low drop voltage, low quiescent current and
low noise features make it suitable for low power
battery-powered applications. Power supply
rejection is 65 dB at low frequencies and starts to
roll off at 10 kHz. Enable logic control function
puts the LD39015XX in shut-down mode allowing
a total current consumption lower than 1 µA. The
device also includes short-circuit constant current
limiting and thermal protection. Typical
applications are mobile phones, personal digital
assistants (PDAs), cordless phones or similar
battery-powered systems.
Table 1. Device summary
SOT666
LD39015XG08R
LD39015XG10R (1)
LD39015XG12R (1)
LD39015XG15R (1)
LD39015XG18R (1)
LD39015XG25R (1)
LD39015XG33R
Order codes
SOT23-5L
LD39015M08R (1)
LD39015M10R
LD39015M12R
LD39015M15R (1)
LD39015M18R (1)
LD39015M25R (1)
LD39015M33R (1)
Output voltage
0.8 V
1.0 V
1.2 V
1.5 V
1.8 V
2.5 V
3.3 V
1. Available on request. Other voltages available on request from 0.8 V to 3.3 V in 100 mV step.
April 2008
Rev 2
1/16
www.st.com
16