NCP571, NCV571
150 mA CMOS Low Iq Low
Output Voltage Regulator
The NCP571 series of fixed output low dropout linear regulators are
designed for handheld communication equipment and portable battery
powered applications which require low quiescent current. The
NCP571 series features an ultra−low quiescent current of 4.0
mA.
Each device contains a voltage reference unit, an error amplifier, a
PMOS power transistor, resistors for setting output voltage, current
limit, and temperature limit protection circuits.
The NCP571 has been designed to be used with low cost ceramic
capacitors and requires a minimum output capacitor of 0.1
mF.
The
device is housed in the TSOP−5 or DFN6 surface mount package.
Standard voltage versions are 0.8 V, 0.9 V, 1.0 V and 1.2 V.
Features
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6
5
1
TSOP−5
SN SUFFIX
CASE 483
1
DFN6
MN SUFFIX
CASE 506BA
•
•
•
•
•
Low Quiescent Current of 4.0
mA
Typical
Maximum Operating Voltage of 12 V
Low Output Voltage Option down to 0.8 V
High Accuracy Output Voltage of 3.0%
Industrial Temperature Range of −40°C to +85°C
(NCV571, T
A
= −40°C to +125°C)
•
NCV Prefix for Automotive and Other Applications Requiring
Unique Site and Control Change Requirements; AEC−Q100
Qualified and PPAP Capable
•
These are Pb−Free Devices
Typical Applications
MARKING DIAGRAMS
XXXAYWG
G
1
XX MG
G
•
Battery Powered Instruments
•
Hand−Held Instruments
•
Camcorders and Cameras
Vin
1
Thermal
Shutdown
Driver w/
Current
Limit
+
Enable
ON
OFF
3
5
Vout
XXX
A
Y
W
M
G
= Specific Device Code
= Assembly Location
= Year
= Work Week
= Date Code
= Pb−Free Package
(Note: Microdot may be in either location)
ORDERING INFORMATION
See detailed ordering and shipping information in the package
dimensions section on page 9 of this data sheet.
GND
2
Figure 1. Representative Block Diagram
©
Semiconductor Components Industries, LLC, 2014
1
June, 2014 − Rev. 5
Publication Order Number:
NCP571/D
NCP571, NCV571
PIN CONNECTIONS
TSOP−5 package
V
in
GND
Enable
1
2
3
(Top View)
4 NC
5 V
out
DFN6 package
V
out
1
NC 2
GND 3
(Top View)
EP
6 V
in
5 NC
4 Enable
PIN FUNCTION DESCRIPTION
DFN6
1
2
3
4
TSOP−5
5
4
2
3
Pin Name
V
out
NC
GND
Enable
Regulated output voltage.
No Internal Connection. It is recommended to connect this pin to GND potential.
Power supply ground.
This input is used to place the device into low−power standby. When this input is
pulled low, the device is disabled. If this function is not used, Enable pin should be
connected to V
in
.
No Internal Connection. It is recommended to connect this pin to GND potential.
Positive power supply input voltage.
No Internal Connection. It is recommended to connect this pin to GND potential.
Description
5
6
EP
−
1
−
NC
V
in
EP
MAXIMUM RATINGS
Rating
Input Voltage
Enable Voltage
Output Voltage
Power Dissipation
Operating Junction Temperature
Operating Ambient Temperature
Storage Temperature
ESD Capability, Human Body Model (Note 1)
ESD Capability, Machine Mode (Note 1)
ESD Capability, Charged Device Model (Note 1)
NCP571
NCV571
Symbol
V
in
V
EN
V
out
P
D
T
J
T
A
T
stg
ESD
HBM
ESD
MM
ESD
CDM
Value
0 to 12
−0.3 to V
in
+ 0.3
−0.3 to V
in
+ 0.3
Internally Limited
+150
−40 to +85
−40 to +125
−55 to +150
2000
200
1000
Unit
V
V
V
W
°C
°C
°C
V
V
V
Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the
Recommended Operating Conditions is not implied. Extended exposure to stresses above the Recommended Operating Conditions may affect
device reliability.
1. This device series contains ESD protection and exceeds the following tests:
ESD Human Body Model tested per AEC−Q100−002 (EIA/JESD22−A114)
ESD Machine Model tested per AEC−Q100−003 (EIA/JESD22−A115)
ESD Charged Device Model tested per EIA/JES D22/C101, Field Induced Charge Model (Jedec Standard)
2. Latchup capability (85°C)
$100
mA DC with trigger voltage.
THERMAL CHARACTERISTICS
Rating
Junction−to−Ambient
PSIJ−Lead 2
Junction−to−Ambient
PSIJ−Lead 2
NOTE:
TSOP−5
TSOP−5
DFN6
DFN6
Symbol
R
qJA
Y
J−L2
R
qJA
Y
J−L2
Test Conditions
1 oz Copper Thickness, 100 mm
2
1 oz Copper Thickness, 100 mm
2
1 oz Copper Thickness, 100 mm
2
1 oz Copper Thickness, 100 mm
2
Typical Value
250
68
190
84
Unit
°C/W
°C/W
°C/W
°C/W
Single component mounted on an 80 x 80 x 1.5 mm FR4 PCB with stated copper head spreading area. Using the following
boundary conditions as stated in EIA/JESD 51−1, 2, 3, 7, 12.
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NCP571, NCV571
V
in
1
V
out
5
4
V
out
V
in
NC
2
C1
0.1
mF
GND
GND
EN
3
C2
0.1
mF
GND
Enable
Figure 2. Typical Application Schematic for TSOP−5 Package
ELECTRICAL CHARACTERISTICS
(V
in
= V
out(nom)
+ 1.0 V, V
EN
= V
in
, C
in
= 1.0
mF,
C
out
= 1.0
mF,
T
A
= 25°C, unless otherwise noted)
Characteristic
Output Voltage (T
A
= 25°C, I
out
= 10 mA)
0.8 V
0.9 V
1.0 V
1.2 V
Output Voltage (T
A
= −40°C to +85°C for NCP571 or T
A
= −40°C to
+125°C for NCV571, I
out
= 10 mA) (Note 5)
0.8 V
0.9 V
1.0 V
1.2 V
Line Regulation (V
in
= V
out
+ 1.0 V to 12 V, I
out
= 10 mA)
Load Regulation (I
out
= 10 mA to 150 mA, V
in
= V
out
+ 2.0 V)
Output Current (V
out
= (V
out
at I
out
= 100 mA) − 3%)
0.8 V (V
in
= 3.0 V)
0.9 V (V
in
= 3.0 V)
1.0 V (V
in
= 3.0 V)
1.2 V (V
in
= 3.0 V)
Dropout Voltage (I
out
= 10 mA, Measured at V
out
− 3.0%)
0.8 V
0.9 V
1.0 V
1.2 V
Quiescent Current
(Enable Input = 0 V)
(Enable Input = V
in
= 3 V, I
out
= 1.0 mA to 150 mA and
V
in
= Enable Input = 3 V, I
out
= 150 mA)
Output Voltage Temperature Coefficient
Enable Input Threshold Voltage
(Voltage Increasing, Output Turns On, Logic High)
(Voltage Decreasing, Output Turns Off, Logic Low)
Output Short Circuit Current (V
out
= 0 V) (Note 4)
0.8 V (V
in
= 3.0 V)
0.9 V (V
in
= 3.0 V)
1.0 V (V
in
= 3.0 V)
1.2 V (V
in
= 3.0 V)
3. Maximum package power dissipation limits must be observed.
Symbol
V
out
Min
− 3%
0.776
0.873
0.970
1.164
− 4%
0.768
0.864
0.960
1.152
Reg
line
Reg
load
I
o(nom)
150
150
150
150
V
in
−V
out
−
−
−
−
I
Q
−
−
T
c
V
th(en)
1.3
−
I
out(max)
160
160
160
160
260
260
260
260
600
600
600
600
−
−
−
0.3
mA
−
0.1
4.0
100
1.0
8.0
−
ppm/°C
V
730
650
550
350
850
750
650
450
uA
−
−
−
−
−
−
−
−
mV
−
−
0.8
0.9
1.0
1.2
10
40
Typ
0.8
0.9
1.0
1.2
Max
+ 3%
0.824
0.927
1.030
1.236
+ 4%
0.832
0.936
1.040
1.248
30
65
mV
mV
mA
Unit
V
V
out
V
P
D
+
T
J(max)
*
T
A
R
qJA
4. Low duty cycle pulse techniques are used during testing to maintain the junction temperature as close to ambient as possible.
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NCP571, NCV571
5. NCP571
NCV571
3.2
V
in
= 6 V
T
low
= −40°C T
high
= +85°C
T
low
= −40°C T
high
= +125°C.
3.2
GROUND CURRENT (mA)
GROUND CURRENT (mA)
3.0
3.0
2.8
V
in
= 3 V
2.8
V
in
= 6 V
2.6
V
in
= 3 V
2.4
T
A
= 25°C
V
out
= 1.2 V
0.02
0.04
0.06
0.08
0.10
0.12
0.14
0.16
OUTPUT CURRENT (A)
2.6
2.4
T
A
= 25°C
V
out
= 0.8 V
2.2
0.00
0.02
0.04
0.06
0.08
0.10
0.12
0.14
0.16
2.2
0.00
OUTPUT CURRENT (A)
Figure 3. Ground Pin Current vs. Output
Current
3.5
3.5
Figure 4. Ground Pin Current vs. Output
Current
GROUND CURRENT (mA)
3.0
V
in
= 6 V
GROUND CURRENT (mA)
3.0
2.5
V
in
= 3 V
2.5
V
in
= 6 V
V
in
= 3 V
2.0
V
out
= 0.8 V
I
out
= 30 mA
1.5
−40
−20
0
20
40
60
80
100
2.0
V
out
= 1.2 V
I
out
= 30 mA
1.5
−40
−20
0
20
40
60
80
100
AMBIENT TEMPERATURE (°C)
AMBIENT TEMPERATURE (°C)
Figure 5. Ground Pin Current vs. Temperature
Figure 6. Ground Pin Current vs. Temperature
3.5
3
GROUND CURRENT (mA)
2.5
2
1.5
1
0.5
0
0
2
4
6
8
INPUT VOLTAGE (V)
T
A
= 25°C
V
out
= 0.8 V
I
out
= 30 mA
10
12
GROUND CURRENT (mA)
3
2.5
2
1.5
1
0.5
0
0
2
4
6
8
INPUT VOLTAGE (V)
T
A
= 25°C
V
out
= 1.2 V
I
out
= 30 mA
10
12
Figure 7. Ground Pin Current vs. Input Voltage
Figure 8. Ground Pin Current vs. Input Voltage
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NCP571, NCV571
1.0
T
A
= 25°C
1.2
OUTPUT VOLTAGE (V)
OUTPUT VOLTAGE (V)
0.8
1.0
0.8
0.6
0.4
0.2
0.0
I
out
= 70 mA
I
out
= 10 mA
1.4
T
A
= 25°C
0.6
I
out
= 70 mA
0.4
I
out
= 10 mA
0.2
I
out
= 150 mA
I
out
= 150 mA
0.0
0
2
4
6
8
INPUT VOLTAGE (V)
10
12
0
2
4
6
8
INPUT VOLTAGE (V)
10
12
Figure 9. Output Voltage vs. Input Voltage
Figure 10. Output Voltage vs. Input Voltage
Figure 11. Line Transient Response
Figure 12. Line Transient Response
3 V to 4 V
Figure 13. Line Transient Response
Figure 14. Line Transient Response
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