NCV612SQ18T1

NCP612, NCV612
http://onsemi.com
4
ELECTRICAL CHARACTERISTICS (continued)
(V
in
= V
out(nom.)
+ 1.0 V, V
enable
= V
in
, C
in
= 1.0 F, C
out
= 1.0 F, T
J
= 25°C, unless otherwise noted.)
Characteristic UnitMaxTypMinSymbol
Dropout Voltage (T
A
= −40°C to 85°C, I
out
= 100 mA,
Measured at V
out(nom)
−3.0%)
1.5 V
1.8 V
2.5 V
2.7 V
2.8 V
3.0 V
3.1 V
3.3 V
3.7 V
5.0 V
V
in
−V
out
530
420
270
270
250
230
210
200
180
160
680
560
380
380
380
380
380
380
380
300
mV
Ground Current
(Enable Input = V
in
, I
out
= 1.0 mA to I
o(nom.)
)
I
GND
40 90
A
Quiescent Current (T
A
= −40°C to 85°C)
(Enable Input = 0 V)
(Enable Input = V
in
, I
out
= 1.0 mA to I
o(nom.)
)
I
Q
0.03
40
1.0
90
A
Output Short Circuit Current (V
out
= 0 V)
1.5 V−3.9 V (V
in
= V
out(nom.)
+ 2.0 V)
4.0 V−5.0 V (V
in
= 6.0 V)
I
out(max)
150
150
300
300
600
600
mA
Output Voltage Noise (f = 100 Hz to 100 kHz)
I
out
= 30 mA, C
out
= 1 F
V
n
100
Vrms
Enable Input Threshold Voltage
(Voltage Increasing, Output Turns On, Logic High)
(Voltage Decreasing, Output Turns Off, Logic Low)
V
th(en)
0.95
0.3
V
Output Voltage Temperature Coefficient T
C
"100 ppm/°C
3. Maximum package power dissipation limits must be observed.
PD +
T
J(max)
*T
A
R
JA
4. Low duty cycle pulse techniques are used during testing to maintain the junction temperature as close to ambient as possible.
NCP612, NCV612
http://onsemi.com
5
TYPICAL CHARACTERISTICS
200
−50 −25 0 25 50 75 100
150
100
50
0
125
TEMPERATURE (°C)
Figure 2. Dropout Voltage vs. Temperature
V
in
− V
out
, DROPOUT VOLTAGE (mV)
250
300
3.010
−60 −40 −20 0 20 40 60
3.005
3.000
2.990
2.985
10
0
TEMPERATURE (°C)
Figure 3. Output Voltage vs. Temperature
V
out
, OUTPUT VOLTAGE (V)
3.015
3.020
80
2.995
−60 −40 −20 0 20 40 60
48
44
42
100
TEMPERATURE (°C)
Figure 4. Quiescent Current vs. Temperature
I
q
, QUIESCENT CURRENT (A)
80
46
40
40
01 23456
30
20
10
0
7
V
in
INPUT VOLTAGE (V)
Figure 5. Quiescent Current vs. Input Voltage
50
60
I
q
, QUIESCENT CURRENT (A)
40
01 23456
30
20
10
0
7
V
in
INPUT VOLTAGE (V)
Figure 6. Ground Pin Current vs. Input Voltage
50
60
I
gnd
, GROUND CURRENT (A)
40
100 1000 10000 100000 100000
0
30
20
10
0
FREQUENCY (Hz)
Figure 7. Ripple Rejection vs. Frequency
50
60
RIPPLE REJECTION (dB)
70
I
o
= 80 mA
NCP612SQ30
I
o
= 40 mA
I
o
= 10 mA
V
in
= 6.0 V
V
in
= 4.0 V
I
out
= 0 mA
V
in
= 4.0 V
V
out
= 3.0 V
V
out
= 3.0 V
C
in
= 1.0 F
C
out
= 1.0 F
T
A
= 25°C
V
out
= 3.0 V
C
in
= 1.0 F
C
out
= 1.0 F
I
out
= 30 mA
T
A
= 25°C
V
in
= 4.0 V
C
out
= 1.0 F
I
out
= 30 mA
NCP612, NCV612
http://onsemi.com
6
TYPICAL CHARACTERISTICS
4
10 1000 10000 100000 1000000
3
2
1
0
FREQUENCY (Hz)
Figure 8. Output Noise Density
5
6
OUTPUT VOLTAGE NOISE (V/ǰHz)
7
100
Figure 9. Line Transient Response
−100
0 50 200 250 300
TIME (s)
0
100
200
3
4
5
6
100 150
OUTPUT VOLTAGE
DEVIATION (mV)
V
in
= 4.0 V
C
out
= 1.0 F
I
out
= 30 mA
400 450 500350
7
V
in
, INPUT
VOLTAGE (V)
C
out
= 1.0 F
I
out
= 10 mA
Figure 10. Load Transient Response
−100
0 200 300
TIME (s)
0
100
200
0
100
OUTPUT VOLTAGE
DEVIATION (mV)
400 500
I
o
, OUTPUT
CURRENT (mA)
I
out
= 1 mA to 60 mA
V
in
= 4.0 V
C
in
= 1.0 F
C
out
= 1.0 F
−200
600 700 800
60 mA
Figure 11. Turn−on Response
0 0.2 0.8 1.0 1.2
TIME (ms)
0
1
2
3
4
0
2
0.4 0.6
OUTPUT VOLTAGE
(V)
1.6 1.8 2.01.4
4
V
in
, INPUT
VOLTAGE (V)
6
I
out
= 10 mA
V
in
= 4.0 V
C
in
= 1.0 F
C
out
= 1.0 F
2.5
0 1.0 2.0 3.0 4.0 5.0 6.0
2.0
1.5
0.5
0
V
in
, INPUT VOLTAGE (V)
V
out
, OUTPUT VOLTAGE (V)
3.0
3.5
1.0
Figure 12. Output Voltage vs. Input Voltage

NCV612SQ18T1

Mfr. #:
Manufacturer:
ON Semiconductor
Description:
IC REG LINEAR 1.8V 100MA SC88A
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union