NCP500, NCV500
www.onsemi.com
7
230
190
250
170
210
150
270
290
310
330
350
160
−50
30
60
50
20
50
75250 100
Temperature (°C)
V
in
− V
out,
Dropout Voltage (mV)
10
40
0
−25
Temperature (°C)
Figure 2. Dropout Voltage vs. Temperature Figure 3. Dropout Voltage vs. Temperature
V
in
− V
out,
Dropout Voltage (mV)
−50
80
70
60
50
5025
0
40
30
20
10
0
−25 75 100 125
Figure 4. Dropout Voltage vs. Temperature
Temperature (°C)
Figure 5. Dropout Voltage vs. Temperature
Temperature (°C)
V
in
− V
out,
Dropout Voltage (mV)
V
in
− V
out,
Dropout Voltage (mV)
Figure 6. Dropout Voltage vs. Temperature
Temperature (°C)
Figure 7. Dropout Voltage vs. Temperature
Temperature (°C)
V
in
− V
out,
Dropout Voltage (mV)
V
in
− V
out,
Dropout Voltage (mV)
V
out(nom.)
= 3.3 V
70
125
−50
120
100
60
80
50250
40
20
0
−25 75 100 125
−50 50 75250 100−25 12
5
160
120
180
100
140
80
200
−50 50 75250 100−25 12
5
120
180
100
140
80
200
220
−50 50 75250 100−25 12
5
V
out(nom.)
= 2.8 V
V
out(nom.)
= 1.8 V
V
out(nom.)
= 3.3 V
V
out(nom.)
= 2.8 V
V
out(nom.)
= 1.8 V
50 mA Load
10 mA Load
1.0 mA Load
150 mA Load
120 mA Load
100 mA Load
150 mA Load
120 mA Load
100 mA Load
150 mA Load
120 mA Load
100 mA Load
50 mA Load
10 mA Load
1.0 mA Load
50 mA Load
10 mA Load
1.0 mA Load
NCP500, NCV500
www.onsemi.com
8
25
2.804
2.802
2.8
2.798
2.796
2.794
2.792
2.790
1.804
1.8035
1.803
1.8025
1.802
1.8015
1.801
1.8005
225
200
175
150
125
100
75
50
0
25
210
200
190
180
170
160
150
−50
3.308
3.306
50
3.304
3.302
75250 100
Temperature (°C)
V
out,
Output Voltage (V)
3.300
3.298
3.296
3.294
3.292
−25
Temperature (°C)
Figure 8. Output Voltage vs. Temperature Figure 9. Output Voltage vs. Temperature
V
out,
Output Voltage (V)
Figure 10. Output Voltage vs. Temperature
Temperature (°C)
Figure 11. Quiescent Current vs. Temperature
Temperature (°C)
I
Q,
Quiescent Current (mA)
V
out,
Output Voltage (V)
Figure 12. Quiescent Current vs. Input Voltage
Input Voltage (V)
Figure 13. Quiescent Current vs. Input Voltage
Input Voltage (V)
I
Q,
Quiescent Current (
m
A)
I
Q,
Quiescent Current (mA)
V
out(nom.)
= 1.8 V
I
out
= 0 mA
T
A
= 25°C
125 −50 50 75250 100−25 1
25
−50 50 75250 100−25 125 −50 50 75250 100−25 12
5
0
225
200
4.0
175
150
5.03.02.0 6.0
125
100
75
50
1.0
0
V
out(nom.)
= 3.3 V
I
out
= 0 mA
T
A
= 25°C
V
in
= V
out(nom.)
+0.5 V
V
out(nom.)
= 3.3 V
I
O
= 1.0 mA
0 4.0 5.03.02.0 6.
0
1.0
V
in
= V
out(nom.)
= + 0.5 V
I
O
= 0 mA
V
out(nom.)
= 3.3 V
V
out(nom.)
= 1.8 V
V
in
= V
out(nom.)
+ 0.5 V
V
out(nom.)
= 2.8 V
I
O
= 1.0 mA
V
in
= V
out(nom.)
+ 0.5 V
V
out(nom.)
= 1.8 V
I
O
= 1.0 mA
NCP500, NCV500
www.onsemi.com
9
150
125
100
75
50
25
0
175
200
225
40
20
0
60
80
100
600
400
200
0
800
1000
400
300
200
100
0
500
600
150
125
100
75
50
25
0
175
200
225
Input Voltage (V)
Ground Pin Current (
m
A)
Input Voltage (V)
Figure 14. Ground Pin Current vs. Input Voltage Figure 15. Ground Pin Current vs. Input Voltage
Ground Pin Current (mA)
Figure 16. Current Limit vs. Input Voltage
Input Voltage (V)
Figure 17. Ripple Rejection vs. Frequency
f, Frequency (kHz)
RR, Ripple Rejection (dB)
Current Limit (mA)
10 mA
Figure 18. Output Noise Density
f, Frequency (kHz)
Figure 19. Line Transient Response
Time (ms)
V
out,
Output Voltage Noise (nV/ǠHZ)
V
out(nom.)
= 1.8 V
I
out
= 50 mA
T
A
= 25°C
0 4.0 5.03.02.0 6.01.0 0 4.0 5.03.02.0 6.
0
1.0
0 4.0 5.03.02.0 6.01.0 10
0
100.1 1.0
0.01 100 1000101.00.1
100
0
−50
6040020
150
3.0
5.0
10080 120 140 16
0
4.0
200
50
V
out
= 1.8 V
V
in
= 2.8 V
I
out
= 1 mA
C
out
= 1 mF
V
out(nom.)
= 3.3 V
I
out
= 50 mA
T
A
= 25°C
60 mA
10 mA
V
out
= 1.8 V
V
in
= 2.8 V
DC
+ 0.5 V
p−p
C
out
= 1 mF
Output Voltage
Deviation (mV)
V
in,
Input Voltage (V)
V
in
= 3.8 V to 4.8 V
V
out
= 3.3 V
C
out
= 1.0 mF
I
out
= 1.0 mA
V
out(nom.)
= 3.3 V

NCP500SN26T1

Mfr. #:
Manufacturer:
ON Semiconductor
Description:
IC REG LINEAR 2.6V 150MA 5TSOP
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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