NCP7800
http://onsemi.com
7
Table 8. ELECTRICAL CHARACTERISTICS (V
in
= 23 V, I
O
= 500 mA, T
J
= 0°C to 125°C, unless otherwise noted) (Note 13)
Characteristic
Symbol
NCP7815
Unit
Min Typ Max
Output Voltage (T
J
= 25°C) V
O
14.40 15 15.60 Vdc
Output Voltage (5.0 mA I
O
1.0 A, P
D
≤15 W)
17.5 Vdc V
in
30 Vdc
V
O
14.25 15 15.75
Vdc
Line Regulation (T
J
= 25°C)
17.9 Vdc V
in
30 Vdc
20 Vdc V
in
26 Vdc
Reg
line
3.3
1.8
300
150
mV
Load Regulation (T
J
= 25°C)
5.0 mA I
O
1.5 A
Reg
load
6.9 300
mV
Quiescent Current (T
J
= 25°C) I
B
3.0 8.0 mA
Quiescent Current Change
17.5 Vdc V
in
30 Vdc
5.0 mA I
O
1.0 A
DI
B
1.0
0.5
mA
Ripple Rejection (Note 14)
18.5 Vdc V
in
28.5 Vdc, f = 120 Hz
RR 54 70 dB
Dropout Voltage (I
O
= 1.0 A, T
J
= 25°C) (Note 14) V
I
V
O
2.0 Vdc
Output Noise Voltage (T
J
= 25°C) (Note 14)
10 Hz f 100 kHz
V
n
6.8
mV/V
O
Output Resistance f = 1.0 kHz (Note 14) r
O
4.7
mW
Short Circuit Current Limit (T
J
= 25°C) (Note 14)
V
in
= 35 Vdc
I
SC
0.3 A
Peak Output Current (T
J
= 25°C) (Note 14) I
max
2.4 A
Average Temperature Coefficient of Output Voltage (Note 14) TCV
O
0.42 mV/°C
13.Performance guaranteed over the indicated operating temperature range by design and/or characterization, production tested at
T
J
= T
A
= 25°C. Low duty cycle pulse techniques are used during testing to maintain the junction temperature as close to ambient as possible.
14.Value based on design and/or characterization.
NCP7800
http://onsemi.com
8
TYPICAL CHARACTERISTICS
Figure 3. Peak Output Current as a Function
of Input/Output Differential Voltage (NCP7805)
Figure 4. Ripple Rejection as a Function of
Output Voltage
V
in
V
out
, INPUT/OUTPUT VOLTAGE DIFFERENTIAL (V)
f, FREQUENCY (kHz)
40302520151050
0
0.5
1.0
1.5
2.0
2.5
3.0
1010.10.01
30
40
50
60
70
80
Figure 5. Ripple Rejection as a Function of
Frequency (NCP7805)
Figure 6. Output Voltage as a Function of
Junction Temperature (NCP7805)
T
J
, JUNCTION TEMPERATURE (°C)
T
J
, JUNCTION TEMPERATURE (°C)
14010060 18
0
202060
4.80
4.85
4.90
4.95
5.00
5.05
5.10
10075502502550
0
1
2
3
4
5
6
I
O
, OUTPUT CURRENT (A)
RR, RIPPLE REJECTION (dB)
V
O
, OUTPUT VOLTAGE (V)
I
B
, QUIESCENT CURRENT (mA)
35
T
J
= 0°C
T
J
= 25°C
T
J
= 125°C
V
in
= 8.0 V to 18 V
I
O
= 500 mA
T
A
= 25°C
125
V
in
= 20 V
I
O
= 5.0 mA
V
in
= 10 V
V
O
= 5.0 V
I
L
= 20 mA
Figure 7. Output Impedance as a Function of
Output Voltage
Figure 8. Quiescent Current as a Function of
Temperature (NCP7805)
V
O
, OUTPUT VOLTAGE (V)
RR, RIPPLE REJECTION (dB)
PART #  V
in
NCP7805= 10 V
NCP7808= 14 V
NCP7812= 19 V
NCP7815= 23 V
f = 120 Hz
I
O
= 20 mA
DV
in
= 1.0 V(RMS)
2016141210864
50
60
70
80
90
18
2422
V
O
, OUTPUT VOLTAGE (V)
2016141210864
0.1
1
10
18 2422
Z
O
, OUTPUT IMPEDANCE (mW)
f = 120 Hz
I
O
= 500 mA
C
L
= 0 mF
NCP7800
http://onsemi.com
9
APPLICATIONS INFORMATION
Design Considerations
The NCP7800 Series of fixed voltage regulators are
designed with Thermal Overload Protection that shuts down
the circuit when subjected to an excessive power overload
condition, Internal Short Circuit Protection that limits the
maximum current the circuit will pass, and Output Transistor
SafeArea Compensation that reduces the output short circuit
current as the voltage across the pass transistor is increased.
In many low current applications, compensation
capacitors are not required. However, it is recommended
that the regulator input be bypassed with a capacitor if the
regulator is connected to the power supply filter with long
wire lengths, or if the output load capacitance is large. An
input bypass capacitor should be selected to provide good
highfrequency characteristics to insure stable operation
under all load conditions. A 0.33 mF or larger tantalum,
mylar, or other capacitor having low internal impedance at
high frequencies should be chosen. The bypass capacitor
should be mounted with the shortest possible leads directly
across the regulators input terminals. Normally good
construction techniques should be used to minimize ground
loops and lead resistance drops since the regulator has no
external sense lead.
I
O
+
5.0V
R
) I
B
Figure 9. Current Regulator Figure 10. Adjustable Output Regulator
Figure 11. Current Boost Regulator Figure 12. Short Circuit Protection
The NCP7800 regulators can also be used as a current source when
connected as above. In order to minimize dissipation the NCP7805 is
chosen in this application. Resistor R determines the current as follows:
For example, a 1.0 A current source would require R to be a 5.0 W,
10 W resistor and the output voltage compliance would be the input
voltage less 7.0 V.
I
B
^ 3.2 mA over line and load changes.
Input
0.33 mF
R
I
O
NCP7805
Constant
Current to
Grounded
Load
The addition of an operational amplifier allows adjustment to higher or
intermediate values while retaining regulation characteristics. The
minimum voltage obtainable with this arrangement is 2.0 V greater than the
regulator voltage.
Input
NCP7805
Output
0.33 mF
10 k
MC34072V
1.0 k
V
O
= 7.0 V to 20 V
V
IN
V
O
+ 2.0 V
0.1 mF
The NCP7800 series can be current boosted with a PNP transistor. The
MJ2955 provides current to 5.0 A. Resistor R in conjunction with the V
BE
of the PNP determines when the pass transistor begins conducting; this
circuit is not short circuit proof. Input/output differential voltage minimum is
increased by V
BE
of the pass transistor.
XX = 2 digits of type number indicating voltage.
NCP78XX
Input
Output
R
1.0 mF
MJ2955 or Equiv.
1.0 mF
The circuit of Figure 11 can be modified to provide supply protection
against short circuits by adding a short circuit sense resistor, R
SC
, and an
additional PNP transistor. The current sensing PNP must be able to handle
the short circuit current of the three-terminal regulator. Therefore, a
four-ampere plastic power transistor is specified.
XX = 2 digits of type number indicating voltage.
1.0 mF
NCP78XX
MJ2955
or Equiv.
Output
R
SC
R
2N6049
or Equiv.
10 mF
R
Source
0.33 mF
Input
R
Source
0.33 mF
10 mF
-
+

NCP7805TG

Mfr. #:
Manufacturer:
ON Semiconductor
Description:
Linear Voltage Regulators 1A LDO
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union

Products related to this Datasheet