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LP5907 Datasheet(PDF) 5 Page - Texas Instruments

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Part # LP5907
Description  250-mA Ultra-Low-Noise, Low-IQ LDO
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

LP5907 Datasheet(HTML) 5 Page - Texas Instruments

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5
LP5907
www.ti.com
SNVS798L – APRIL 2012 – REVISED SEPTEMBER 2016
Product Folder Links: LP5907
Submit Documentation Feedback
Copyright © 2012–2016, Texas Instruments Incorporated
(1)
For more information about traditional and new thermal metrics, see the Semiconductor and IC Package Thermal Metrics application
report, SPRA953.
6.4 Thermal Information
THERMAL METRIC(1)
LP5907
UNIT
DBV (SOT-23) DQN (X2SON) YKE (DSBGA)
5 PINS
4 PINS
4 PINS
RθJA
Junction-to-ambient thermal resistance
193.4
216.1
206.1
°C/W
RθJC(top)
Junction-to-case (top) thermal resistance
102.1
161.7
1.5
°C/W
RθJB
Junction-to-board thermal resistance
45.8
162.1
37.0
°C/W
ψJT
Junction-to-top characterization parameter
8.4
5.1
15.0
°C/W
ψJB
Junction-to-board characterization parameter
45.3
161.7
36.8
°C/W
RθJC(bot)
Junction-to-case (bottom) thermal resistance
n/a
123.0
n/a
°C/W
(1)
All voltages are with respect to the device GND terminal, unless otherwise stated.
(2)
Minimum and maximum limits are ensured through test, design, or statistical correlation over the junction temperature (TJ) range of
–40°C to 125°C, unless otherwise stated. Typical values represent the most likely parametric norm at TA = 25°C, and are provided for
reference purposes only.
(3)
In applications where high power dissipation and/or poor package thermal resistance is present, the maximum ambient temperature may
have to be derated. Maximum ambient temperature (TA-MAX) is dependent on the maximum operating junction temperature (TJ-MAX-OP =
125°C), the maximum power dissipation of the device in the application (PD-MAX), and the junction-to ambient thermal resistance of the
part/package in the application RθJA), as given by the following equation: TA-MAX = TJ-MAX-OP – (RθJA × PD-MAX). See Applications and
Implementation.
(4)
The device maintains a stable, regulated output voltage without a load current.
(5)
Quiescent current is defined here as the difference in current between the input voltage source and the load at VOUT.
(6)
Ground current is defined here as the total current flowing to ground as a result of all input voltages applied to the device.
(7)
Dropout voltage is the voltage difference between the input and the output at which the output voltage drops to 100 mV below its
nominal value.
(8)
Short-circuit current (ISC) for the LP5907 is equivalent to current limit. To minimize thermal effects during testing, ISC is measured with
VOUT pulled to 100 mV below its nominal voltage.
(9)
This specification is verified by design.
6.5 Electrical Characteristics
VIN = VOUT(NOM) + 1 V, VEN = 1.2 V, IOUT = 1 mA, CIN = 1 µF, COUT = 1 µF, unless otherwise stated.
(1) (2) (3)
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNIT
VIN
Input voltage
TA = 25°C
2.2
5.5
V
ΔVOUT
Output voltage tolerance
VIN = (VOUT(NOM) + 1 V) to 5.5 V,
IOUT = 1 mA to 250 mA
–2
2
%VOUT
VIN = (VOUT(NOM) + 1 V) to 5.5 V,
IOUT = 1 mA to 250 mA
(VOUT < 1.8 V, SOT-23, X2SON packages)
–3
3
Line regulation
VIN = (VOUT(NOM) + 1 V) to 5.5 V,
IOUT = 1 mA
0.02
%/V
Load regulation
IOUT = 1 mA to 250 mA
0.001
%/mA
ILOAD
Load current
See(4)
0
250
mA
Maximum output current
250
IQ
Quiescent current(5)
VEN = 1.2 V, IOUT = 0 mA
12
25
µA
VEN = 1.2 V, IOUT = 250 mA
250
425
VEN = 0.3 V (Disabled)
0.2
1
IG
Ground current(6)
VEN = 1.2 V, IOUT = 0 mA
14
µA
VDO
Dropout voltage(7)
IOUT = 100 mA
50
mV
IOUT = 250 mA (DSBGA package)
120
200
IOUT = 250 mA (SOT-23, X2SON packages)
250
ISC
Short circuit current limit
TA = 25°C
(8)
250
500
mA
PSRR
Power supply rejection ratio(9)
f = 100 Hz, IOUT = 20 mA
90
dB
f = 1 kHz, IOUT = 20 mA
82
f = 10 kHz, IOUT = 20 mA
65
f = 100 kHz, IOUT = 20 mA
60


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