NCV8537MN500R2G ON Semiconductor, NCV8537MN500R2G Datasheet - Page 5

Low Dropout (LDO) Regulators LDO

NCV8537MN500R2G

Manufacturer Part Number
NCV8537MN500R2G
Description
Low Dropout (LDO) Regulators LDO
Manufacturer
ON Semiconductor
Datasheet

Specifications of NCV8537MN500R2G

Number Of Outputs
1
Input Voltage Max
16 V
Output Voltage
5 V
Output Type
Fixed
Dropout Voltage (max)
340 mV
Output Current
700 mA
Load Regulation
0.04 mV/mA
Voltage Regulation Accuracy
+/- 0.9 %
Maximum Operating Temperature
+ 125 C
Mounting Style
SMD/SMT
Minimum Operating Temperature
- 40 C
Package / Case
DFN10
Primary Input Voltage
12V
Output Voltage Fixed
5V
Dropout Voltage Vdo
340mV
No. Of Pins
10
Voltage Regulator Case Style
DFN
Operating Temperature Range
-40°C To +125°C
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
NCV8537MN500R2G
Manufacturer:
ON Semiconductor
Quantity:
2 350
2. Performance guaranteed over the operating temperature range by design and/or characterization, production tested at T
3. T
4. Maximum dropout voltage is limited by minimum input voltage V
ELECTRICAL CHARACTERISTICS − 1.8 V
Output Voltage (Accuracy)
Output Voltage (Accuracy)
Output Voltage (Accuracy)
Minimum Input Voltage
Line Regulation
Load Regulation
Dropout Voltage (See Figure 9)
Peak Output Current (See Figures 14 and 17)
Short Output Current (See Figure 14) V
Thermal Shutdown / Hysteresis
Ground Current
Output Noise
Power Good Voltage
Power Good Pin Voltage Saturation (I
Power Good Pin Leakage
Power Good Blanking Time (Note 7)
Shutdown
SD Input Current, V
Output Current In Shutdown Mode, V
Reverse Bias Protection, Current Flowing from the Output Pin to GND
duty cycle pulse techniques are used during testing to maintain the junction temperature as close to ambient as possible.
A
V
V
V
V
V
I
I
I
In Regulation
In Dropout
In Shutdown
C
C
Low Threshold
Hysteresis
High Threshold
Threshold Voltage ON
Threshold Voltage OFF
(V
load
load
load
in
in
in
in
in
nr
nr
must be greater than 0°C.
in
I
I
I
I
V
V
= 2.9 V to 5.8 V, I
= 2.9 V to 5.8 V, I
= 2.9 V to 5.8 V, I
= 2.9 V to 12 V, I
= 2.9 V, I
= 0 nF, I
= 10 nF, I
load
load
load
load
= 0 V, V
= 500 mA (Notes 3, 4)
= 300 mA (Notes 3, 4)
= 50 mA (Notes 3, 4)
in
SD
= 2.2 V, I
= 50 mA
= 0.1 mA
= 0 V
= 500 mA (Note 3)
= 300 mA (Note 3)
load
out_forced
load
load
load
= 500 mA, f = 10 Hz to 100 kHz, C
SD
= 0.1 mA to 500 mA
= 500 mA, f = 10 Hz to 100 kHz, C
= 0 V to 0.4 V or V
= 0.1 mA
load
load
load
load
= 1.8 V)
= 0.1 mA
= 0.1 mA to 500 mA, T
= 0.1 mA to 500 mA, T
= 0.1 mA to 500 mA, T
Characteristic
out
ef
in
− 1.0 mA)
= 0 V
SD
< 7 V, T
= 2.0 V to V
A
(V
A
A
A
= 25°C
out
= −40°C to +125°C
= 25°C
= 0°C to +85°C
out
= 1.8 V typical, V
out
in
= 10 mF
http://onsemi.com
= 10 mF
in
5
= 2.9 V recommended for guaranteed operation.
in
= 2.9 V, T
A
Load
Symbol
Line
= −40°C to +125°C, unless otherwise noted, Note 2)
I
V
V
I
GNDsh
I
V
I
I
efleak
OUTR
V
V
V
V
V
V
GND
OSD
inmin
I
noise
I
I
T
efdo
t
SD
pk
out
out
out
DO
sc
elft
SD
ef
J
Reg
Reg
−0.9%
−1.4%
−1.5%
1.783
1.774
1.773
Min
500
2.0
93
160/10
0.04
0.04
0.07
0.07
Typ
620
230
700
200
1.8
1.8
1.8
2.9
9.0
4.6
0.8
1.0
95
52
33
95
97
50
10
2
+0.9%
+1.4%
+1.5%
1.817
1.826
1.827
Max
J
830
900
220
500
7.5
2.5
1.0
0.4
1.0
1.0
14
99
= T
A
= 25°C. Low
mV/mA
mVrms
mVrms
mV/V
% of
Unit
V
mV
mA
mA
mA
mV
°C
mA
mA
mA
mA
mA
mA
mA
ms
V
V
V
V
V
V
out

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