ncv8603 ON Semiconductor, ncv8603 Datasheet - Page 3

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ncv8603

Manufacturer Part Number
ncv8603
Description
300 Ma High Performance Cmos Ldo Regulator With Enable And Enhanced Esd Protection
Manufacturer
ON Semiconductor
Datasheet

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Part Number:
ncv8603SN33T1G
Manufacturer:
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Quantity:
1 350
Regulator Output
General
Chip Enable
Timing
ELECTRICAL CHARACTERISTICS
min/max values T
8. Performance guaranteed over the indicated operating temperature range by design and/or characterization, production tested at T
9. Values based on design and/or characterization.
Output Voltage
Power Supply Ripple Rejection (Note 9)
Line Regulation
Load Regulation
Output Noise Voltage (Note 9)
Output Short Circuit Current
Dropout Voltage
Output Current Limit (Note 9)
Disable Current
Ground Current
Thermal Shutdown Temperature (Note 9)
Thermal Shutdown Hysteresis (Note 9)
ENABLE Input Threshold Voltage
Enable Input Bias Current (Note 9)
Output Turn On Time (Note 9)
= 25°C. Low duty cycle pulse techniques are used during testing to maintain the junction temperature as close to ambient as possible.
Voltage Increasing, Logic High
Voltage Decreasing, Logic Low
Characteristic
A
= −40°C to 125°C, unless otherwise specified.) (Note 8)
V
IN
(V
Figure 2. Typical Application Circuit
I out(max)
in
Reg load
Symbol
Reg line
C
V
PSRR
= V
I
V out
V
I
T
T
th(EN)
IN
GND
I
t
V n
I sc
DIS
EN
EN
DO
SD
SH
out
+ 0.5 V (fixed version), C
http://onsemi.com
I out = 1.0 mA to 300 mA
V
I out = 1.0 mA to 150 mA
V in = V out + 1 V + 0.5 V
f = 120 Hz
f = 1.0 kHz
f = 10 kHz
V in = 1.750 V to 6.0 V,
I out = 1.0 mA
I out = 1.0 mA to 300 mA
f = 10 Hz to 100 kHz
Measured at: V out – 2.0%
I out = 300 mA
ENABLE = 0 V, Vin = 6 V
−40°C ≤ T
ENABLE = 0.9 V,
I out = 1.0 mA to 300 mA
ENABLE = 0 V to V in
1
2
3
in
= (V
3
out
Test Conditions
A
+ 0.5 V) to 6.0 V
≤ 85°C
5
4
in
= C
p−p
out
C
=1.0 mF, for typical values T
OUT
V
OUT
(−3%)
3.201
Min
350
300
0.9
0.01
Typ
650
157
650
145
175
3.3
1.0
2.0
3.0
62
55
38
50
10
15
A
= 25°C, for
(+3%)
3.399
Max
900
230
180
100
1.0
0.4
10
45
25
mV
Unit
J
mV
mV
mA
mV
mA
dB
nA
mA
mA
°C
°C
ms
V
V
= T
rms
A

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