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SA57000-36UK

Description
IC VREG 3.6 V FIXED POSITIVE LDO REGULATOR, 0.12 V DROPOUT, PBGA5, WL-CSP-5, Fixed Positive Single Output LDO Regulator
CategoryPower/power management    The power supply circuit   
File Size159KB,15 Pages
ManufacturerNXP
Websitehttps://www.nxp.com
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SA57000-36UK Overview

IC VREG 3.6 V FIXED POSITIVE LDO REGULATOR, 0.12 V DROPOUT, PBGA5, WL-CSP-5, Fixed Positive Single Output LDO Regulator

SA57000-36UK Parametric

Parameter NameAttribute value
MakerNXP
Parts packaging codeBGA
package instructionWL-CSP-5
Contacts5
Reach Compliance Codecompliant
ECCN codeEAR99
AdjustabilityFIXED
Maximum drop-back voltage 10.12 V
Nominal dropback voltage 10.165 V
Maximum absolute input voltage6.5 V
Maximum input voltage6.5 V
Minimum input voltage3.6 V
JESD-30 codeR-PBGA-B5
length1.27 mm
Maximum grid adjustment rate0.00648%
Number of functions1
Output times1
Number of terminals5
Working temperatureTJ-Max125 °C
Maximum operating temperature85 °C
Minimum operating temperature-40 °C
Maximum output current 10.15 A
Maximum output voltage 13.672 V
Minimum output voltage 13.528 V
Nominal output voltage 13.6 V
Package body materialPLASTIC/EPOXY
encapsulated codeVFBGA
Encapsulate equivalent codeBGA5,3X3,17/10
Package shapeRECTANGULAR
Package formGRID ARRAY, VERY THIN PROFILE, FINE PITCH
Certification statusNot Qualified
Regulator typeFIXED POSITIVE SINGLE OUTPUT LDO REGULATOR
Maximum seat height0.612 mm
surface mountYES
technologyCMOS
Terminal formBALL
Terminal pitch0.5 mm
Terminal locationBOTTOM
Maximum voltage tolerance2%
width0.84 mm

SA57000-36UK Preview

INTEGRATED CIRCUITS
SA57000-XX
CapFREE™ 150 mA, low-noise, low dropout
regulator with thermal protection
Product data
Supersedes data of 2003 Apr 30
2003 Jul 30
Philips
Semiconductors
Philips Semiconductors
Product data
CapFREE™ 150 mA, low-noise, low dropout regulator
with thermal protection
SA57000-XX
GENERAL DESCRIPTION
The CapFREE™ SA57000 is the first in a new family of unique low
dropout regulators. It needs no external capacitors, offers a low
output noise voltage of 30
µV
RMS
, and an ultra-low dropout voltage
of 55 mV @ 50 mA output current. To accommodate high density
layouts, it is packaged in the small footprint 5 leaded SOT23-5 (SO5)
and a 5-bump Wafer Level Chip-Scale package (WL-CSP5). It is ideal
for all portable and cellular phone applications.
Additional features include power and thermal shutdown, output
current limitation, power OK status, thermal warning, and external
logic-controlled on-off via the PWRON pin.
WL-CSP5
SOT23-5
FEATURES
CapFREE: No output capacitor needed, stable for all capacitive
loads, regardless of ESR
5 leaded SOT23-5 (SO5) and Wafer Level Chip-Scale (WL-CSP5)
packages
Low 30
µV
RMS
noise without noise bypass capacitor
Preset output voltages to 2.5 V, 2.8 V, 2.9 V, 3.0 V, 3.1 V, 3.3 V
and 3.6 V; other voltages available upon request. 2% output
voltage accuracy
Typical dropout voltage 55 mV @ 50 mA output current
85
µA
typical ground current
Shut-down (standby) current < 1
µA
Thermal-overload and short-circuit protection
PWROK pin: both power status and thermal warning indicator
PWRON pin offers logic-controlled shutdown
Maximum line regulation: 0.1%/V
Maximum load regulation: 0.02%/mA.
APPLICATIONS
150 mA maximum output current with current limitation
Cordless and mobile phones
Industrial and medical equipment
Other battery-powered equipment.
SIMPLIFIED SYSTEM DIAGRAM
SA57000
PWRON
3
PWRON
OVER 144
°C
(POWER/THERMAL SHUTDOWN)
PWRON
TEMPERATURE
SENSOR
OVER 127
°C
(POWER/THERMAL WARNING)
LOGIC
CONTROL
4
PWROK
PWRON
BAND
GAP
LOW-PASS
FILTER
OUTPUT
AMP.
5
V
OUT
GND
2
PWRON
BIAS
NETWORK
V
IN
1
SA00557
Figure 1. Simplified system diagram.
CapFREE is a trademark of Philips Electronics North America Corporation.
2003 Jul 30
2
Philips Semiconductors
Product data
CapFREE™ 150 mA, low-noise, low dropout regulator
with thermal protection
SA57000-XX
ORDERING INFORMATION
PACKAGE
TYPE NUMBER
SA57000-XXD
SA57000-XXUK
NAME
SOT23-5,
SO5
WL-CSP5
DESCRIPTION
plastic small outline package; 5 leads (see dimensional drawing)
wafer level, chip-scale package; 5 bumps (see dimensional drawing)
VERSION
SOT680-1
TEMPERATURE
RANGE
–40 to +85
°C
–40 to +85
°C
NOTE:
The device has seven voltage output options, indicated by the
XX
on the Type Number.
XX
25
28
29
30
31
33
36
VOLTAGE (Typical)
2.5 V
2.8 V
2.9 V
3.0 V
3.1 V
3.3 V
3.6 V
Marking code
Each device is marked with a four letter code. The first three letters
designate the product. The fourth, represented by an ‘x’, designates
the date tracking code.
Part
SA57000-25UK, SA57000-25D
SA57000-28UK, SA57000-28D
SA57000-29UK, SA57000-29D
SA57000-30UK, SA57000-30D
SA57000-31UK, SA57000-31D
SA57000-33UK, SA57000-33D
SA57000-36UK, SA57000-36D
Marking
ABKx
ABLx
ABXx
ABMx
ABYx
ABNx
ABPx
PIN CONFIGURATION
V
IN
1
5
V
OUT
GND
2
PWRON
3
SA57000-XXD
4
PWROK
TOP VIEW
V
OUT
A3
SA57000-XXUK
B2
C3
PWROK
GND
V
IN
A1
C1
PWRON
TOP VIEW
(BALLS ARE ON THE BOTTOM)
SA00556
Figure 2. Pin configurations.
PIN DESCRIPTION
PIN
1
2
3
4
BALL
A1
B2
C1
C3
SYMBOL
V
IN
GND
PWRON
PWROK
DESCRIPTION
Regulator input. V
OUT(nom)
+ 0.5 V to 6.5 V. No bypass capacitor required.
Ground.
Power-on input. Active-HIGH. A logic LOW powers down the regulator. The shutdown quiescent current is
typically 50 nA. Connect to V
IN
for manual operation.
Power OK indicator, including thermal warning. Connect a 10 kΩ resistor between PWROK and V
OUT
.
Active-LOW open-drain output indicates an out-of-regulation condition when power falls typically 6% below
VOUT(nom), or thermal warning (trips at 127
°C ±
2
°C).
Regulator output. Sources up to 150 mA. No bypass capacitors required.
5
A3
V
OUT
2003 Jul 30
3
Philips Semiconductors
Product data
CapFREE™ 150 mA, low-noise, low dropout regulator
with thermal protection
SA57000-XX
MAXIMUM RATINGS
SYMBOL
V
IN
V
PWRON
V
OUT
T
amb
T
j
T
stg
P
R
th(j-a)
PARAMETER
V
IN
to GND voltage
PWRON to GND voltage
OUT to GND voltage
Operating ambient temperature
Junction temperature
Storage temperature
Power dissipation (Derating factor above 25
°C)
Thermal resistance from junction to ambient
T
amb
= 25
°C
CONDITIONS
MIN.
–0.3
–0.3
–0.3
–40
–65
MAX.
6.5
6.5
V
IN
+ 0.3
+85
+125
+160
637
140
UNIT
V
DC
V
DC
V
DC
°C
°C
°C
mW
°C/W
2003 Jul 30
4
Philips Semiconductors
Product data
CapFREE™ 150 mA, low-noise, low dropout regulator
with thermal protection
SA57000-XX
CHARACTERISTICS
V
IN
= V
OUT(nom)
+ 0.5 V. (Note 1.)
SYMBOL
V
IN
PARAMETER
input voltage
output voltage accuracy
2
I
OUT
= 1 mA
T
amb
= +25
°C
–40
°C ≤
T
amb
+85
°C
CONDITIONS
MIN.
V
OUT(nom)
–2.0
160
I
OUT
= 1 mA to 150 mA
I
OUT
= 1 mA
I
OUT
= 50 mA
I
OUT
= 150 mA
∆V
LNR
∆V
LDR
e
n
Shutdown
V
IH
V
IL
I
PWRON
PWRON input threshold
(HIGH ON-state)
PWRON input threshold
(HIGH ON-state)
PWRON input bias current
V
IN
V
OUT(nom)
6.5 V
V
IN
V
OUT(nom)
6.5 V
V
PWRON
= V
IN
T
amb
= +25
°C
T
amb
= +85
°C
V
OUT
= 0 V
T
amb
= +25
°C
T
amb
= +85
°C
I
OUT
= 1 mA, C
OUT
= 100 nF
T
amb
= +25
°C
T
amb
= –40 to +85
°C
0.7
×
V
IN
0.3
×
V
IN
V
V
line regulation
load regulation
output voltage noise
V
IN
= (V
OUT
+ 0.1 V) to 5.5 V; I
OUT
= 20 mA
I
OUT
= 1 mA to 150 mA
f = 10 Hz to 100 kHz, C
OUT
= 10
µF
TYP.
±1
300
85
1
55
165
0.01
30
MAX.
6.5
2.0
150
120
0.1
0.02
UNIT
V
%
%
mA
µA
mV
mV
mV
%/V
%/mA
µV
RMS
I
LIM
I
Q
current limit
ground pin current
dropout voltage
3
0.01
0.05
0.05
0.2
25
35
1
1
1
100
200
µA
µA
µA
µA
µs
µs
I
Q(SHDN)
shutdown supply current
t
PWRON
power-on start-up time
4
Thermal protection (Note 2)
T
SHDN
∆T
SHDN
thermal shut-down temperature
thermal shut-down hysteresis
144
13
°C
°C
PWROK output (power and temperature OK) (Note 2)
PWROK trip temperature
PWROK trip temperature
hysteresis
PWROK trip as percentage of
V
OUT(nom)
PWROK hysteresis as
percentage of V
OUT(nom)
PWROK output (when tripped)
I
SINK
= 0.5 mA
–3.5
127
12
–6
2
0.1
–8
0.4
°C
°C
%
%
V
NOTES:
1. Limits are production tested at T
amb
= +25
°C.
All devices are 100% production tested at 25
°C.
Limits over the operating tempreature are
guaranteed by design.
2. Accuracy
±2 °C
over temperature range guaranteed by design and characterization.
3. The dropout voltage is defined as V
IN
– V
OUT,
where V
OUT
is 100 mV below the value of V
OUT
for V
IN
= V
OUT
+ 0.5 V.
4. Time needed for V
OUT
to reach 95% of V
OUT(nom)
.
2003 Jul 30
5

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