NCP5500, NCV5500, NCP5501, NCV5501
http://onsemi.com
4
ELECTRICAL CHARACTERISTICS V
in
= 2.5 V or V
out
+ 1.0 V (whichever is higher), C
in
= 10 mF, C
out
= 4.7 mF, for typical values T
A
= 25C, for min/max values T
A
= 40C to 85C (NCP Version), T
A
= 40C to 125C (NCV Version) unless otherwise noted (Note 13).
Characteristic Symbol Test Conditions Min Typ Max Unit
OUTPUT
Output Voltage (Note 14)
5 V Regulator
3.3 V Regulator
1.5 V Regulator
ADJ Regulator
V
out
T
A
= 25C, I
out
= 50 mA
V
NOM
2.9%
V
V
V
Output Voltage (Note 8)
5 V Regulator
3.3 V Regulator
1.5 V Regulator
ADJ Regulator
V
out
1.0 mA < I
out
< 500 mA
(4.9%)
4.755
3.138
1.427
1.189
V
NOM
5.0
3.3
1.5
1.25
(+4.9%)
5.245
3.462
1.574
1.311
V
V
V
Line Regulation REG
LINE
I
out
= 50 mA
2.5 V or (V
out
+ 1.0 V) < V
in
< 16 V
1.0 0.1 1.0 %
Load Regulation REG
LOAD
1.0 mA < I
out
< 500 mA 1.0 0.35 1.0 %
Dropout Voltage (Note 9)
5.0 V Version
3.3 V Version
1.5 V Version (Note 10)
Adjustable Version (Note 11)
V
DO
I
out
= 1.0 mA, DV
out
= 2%
I
out
= 500 mA, DV
out
= 2%
I
out
= 1.0 mA, DV
out
= 2%
I
out
= 500 mA, DV
out
= 2%
I
out
= 1.0 mA, DV
out
= 2%
I
out
= 500 mA, DV
out
= 2%
I
out
= 1.0 mA, DV
out
= 2%
I
out
= 500 mA, DV
out
= 2%
5
230
5
230
5
230
90
700
90
700
1073
1073
90
700
mV
Ground Current I
GND
I
out
= 100 mA
I
out
= 500 mA
300
10
500
20
mA
mA
Disable Current in Shutdown
(NCP5500, NCV5500)
I
SD
Adjustable and 1.5 V versions
All other versions
30
40
50
50
mA
Current Limit I
out(LIM)
V
out
= 90% of V
out(nom)
500 700 900 mA
Ripple Rejection Ratio (Notes 9 & 14) RR 120 Hz
I
out
= 100 mA, 1 kHz
10 kHz
75
75
70
dB
Output Noise Voltage (Notes 12 & 14) V
n
f = 10 Hz to 100 kHz, V
in
= 2.5 V
V
out
= 1.25 V, I
out
= 1.0 mA
f = 10 Hz to 100 kHz, V
in
= 2.5 V
V
out
= 1.25 V, I
out
= 100 mA
18
35
mVrms
ENABLE (NCP5500, NCV5500 Only)
Enable Voltage
V
ENoff
V
ENon
OFF (shutdown) State
ON (enabled) State 2.0
0.4 V
Enable Pin Bias Current I
EN
V
EN
= V
in
, I
out
= 1.0 mA 1.0
mA
ADJUST
Adjust Pin Current (Note 14)
I
ADJ
V
EN
= V
in
, V
ADJ
= 1.25 V, V
out
= 1.25 V 60 nA
THERMAL SHUTDOWN
Thermal Shutdown Temperature (Note 14)
TSD
I
out
= 100 mA
150 210 C
8. Deviation from nominal. For adjustable versions, Pin ADJ connected to V
out
.
9. See Typical Characteristics section for additional information.
10.V
DO
is constrained by the minimum input voltage of 2.5 V.
11. V
out
is set by external resistor divider to 5 V.
12.V
n
for other fixed voltage versions, as well as adjustable versions set to other output voltages, can be calculated from the following formula:
V
n
= V
n(x)
* V
out
/ 1.25, where V
n(x)
is the typical value from the table above.
13.Performance guaranteed over specified operating conditions by design, guard banded test limits, and/or characterization, production tested
at T
J
= T
A
= 25C. Low duty cycle pulse techniques are used during testing to maintain the junction temperature as close to ambient as
possible.
14.Values are based on design and/or characterization.
NCP5500, NCV5500, NCP5501, NCV5501
http://onsemi.com
5
TYPICAL CHARACTERISTICS
Figure 3. Output Voltage vs. Ambient
Temperature
T
A
, AMBIENT TEMPERATURE (C)
1208040040
4.75
4.80
4.85
4.95
5.05
5.10
5.15
5.25
V
out
, OUTPUT VOLTAGE (V)
4.90
5.00
5.20
V
in
= 13.2 V
R
L
= 1 kW
Figure 4. Output Voltage vs. Ambient
Temperature
Figure 5. Output Voltage vs. Ambient
Temperature
T
A
, AMBIENT TEMPERATURE (C)
1208040040
1.42
1.44
1.46
1.48
1.50
1.54
1.56
1.58
V
out
, OUTPUT VOLTAGE (V)
1.52
V
in
= 13.2 V
R
L
= 1 kW
Figure 6. Output Voltage vs. Ambient
Temperature
V
out(nom)
= 5 V
V
out(nom)
= 1.5 V
Figure 7. Dropout Voltage vs. Output Current
I
out
, OUTPUT CURRENT (mA)
6005004003002001000
0
100
200
300
400
500
V
DO
, DROPOUT VOLTAGE (mV)
T
A
= 40C
T
A
= 25C
T
A
= 125C
V
out(nom)
= 5 V
Figure 8. Dropout Voltage vs. Output Current
3.15
3.18
3.21
3.24
3.27
3.30
3.33
3.36
3.39
3.42
3.45
40 0 40 80 120
T
A
, AMBIENT TEMPERATURE (C)
V
out
, OUTPUT VOLTAGE (V)
V
in
= 13.2 V
R
L
= 1 kW
V
out(nom)
= 3.3 V
1.20
1.21
1.22
1.23
1.24
1.25
1.26
1.27
1.28
1.29
1.30
40 0 40 80 120
T
A
, AMBIENT TEMPERATURE (C)
V
out
, OUTPUT VOLTAGE (V)
V
out(nom)
= 1.25 V (ADJ)
V
in
= 13.2 V
R
L
= 1 kW
0
50
100
150
200
250
300
350
400
450
500
I
out
, OUTPUT CURRENT (mA)
V
DO
DROPOUT VOLTAGE (mV)
T
A
= 125C
T
A
= 25C
T
A
= 40C
V
out(nom)
= 3.3 V
6005004003002001000
NCP5500, NCV5500, NCP5501, NCV5501
http://onsemi.com
6
TYPICAL CHARACTERISTICS
Figure 9. Ground Current vs. Output Current
I
out
, OUTPUT CURRENT (mA)
7006005004003002001000
0
2
4
6
10
12
14
18
I
GND
, GROUND CURRENT (mA)
8
16
T
A
= 40C
T
A
= 25C
T
A
= 125C
V
out(nom)
= 5 V
V
in
, INPUT VOLTAGE (V)
76543210
0
1
2
3
4
5
6
I
GND
, GROUND CURRENT (mA)
R
L
= 1 kW
V
out(nom)
= 5 V
V
in
, INPUT VOLTAGE (V)
76543210
0
1
2
3
4
5
6
I
GND
, GROUND CURRENT (mA)
R
L
= 1 kW
V
out(nom)
= 1.5 V
Figure 10. Ground Current vs. Output Current
Figure 11. Ground Current vs. Input Voltage Figure 12. Ground Current vs. Input Voltage
Figure 13. Ground Current vs. Input Voltage Figure 14. Ground Current vs. Input Voltage
0 100 200 300 400 500 600 700
18
16
14
12
10
8
6
4
2
0
I
out
, OUTPUT CURRENT (mA)
I
GND
, GROUND CURRENT (mA)
V
out(nom)
= 1.25 V (ADJ)
T
A
= 40C
T
A
= 25C
T
A
= 125C
0
1
2
3
4
5
6
01234567
V
in
, INPUT VOLTAGE (V)
I
GND
, GROUND CURRENT (mA)
R
L
= 1 kW
V
out(nom)
= 3.3 V
0
1
2
3
4
5
6
01234567
I
GND
, GROUND CURRENT (mA)
V
in
, INPUT VOLTAGE (V)
V
out(nom)
= 1.25 V (ADJ)
R
L
= 1 kW

NCV5501DT50G

Mfr. #:
Manufacturer:
ON Semiconductor
Description:
LDO Voltage Regulators ANA LDO REG
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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