MINILOGIC 78LXXPRG_10

78LXXPRG
1:Output
2:GND
3:Input
3-Terminal Positive Regulators
The 78LXX series of three terminal positive regulators is available with several fixed output voltages (eg. 5V, 6V, 8V, 9V, 12V &
15V) making them useful in a wide range of applications.
Note : “G” in Part Number stands for Lead Free Part.
Absolute Maximum Ratings*
Symbol
o
TA=25 C unless otherwise noted
Parameter
Value
Units
VI
Input Voltage
30
V
PD
Power Dissipation
500
mW
TOPR
Operating Temperature Range
-25 to +125
o
TJ, TSTG
Operating & Storage Junction Temperature Range
-55 to +150
o
C
C
*These ratings are limiting values above which the serviceability of any semiconductor device may be impaired.
Electrical Characteristics
78L05 (5V Voltage Regulator)
Symbol
o
o
(VI=10V, IO=40mA, 0 C<TJ<125 C, CI=0.33uF, CO=0.1uF, unless otherwise noted)
Parameter
Test Conditions
MIN
TYP
MAX
Units
TJ = 25 C
4.80
5.00
5.20
V
7V ≤ VI ≤ 20V, 1mA ≤ IO ≤ 40mA
4.75
5.00
5.25
V
7V ≤ VI ≤ 20V, 1mA ≤ IO ≤ 70mA
4.75
o
VO
∆VO
Output Voltage
Load Regulation
5.00
5.25
V (note)
o
11
60
mV
o
5
30
mV
o
32
150
mV
o
26
100
mV
o
3.8
6.0
mA
8V < VI < 20V
1.5
mA
1mA ≤ IO ≤ 40mA
0.1
mA
TJ = 25 C, 1mA ≤ IO ≤ 100mA
TJ = 25 C, 1mA ≤ IO ≤ 40mA
∆VO
Line Regulation
TJ = 25 C, 7V ≤ VI ≤ 20V
TJ = 25 C, 8V ≤ VI ≤ 20V
Iq
Quiescent Current
∆Iq
Quiescent Current Change
TJ = 25 C
VN
Output Noise Voltage
10Hz ≤ f ≤ 100Hz
RR
Ripple Rejection
TJ = 25 oC, 8V ≤ VI ≤ 18V, f = 120Hz
Vd
Dropout Voltage
o
TJ = 25 C
41
42
uV
80
dB
1.7
V
Marking for ML78L05PRG = 78L05
Rev I. November 2010
78L06 (6V Voltage Regulator)
Symbol
o
o
(VI=11V, IO=40mA, 0 C<TJ<125 C, CI=0.33uF, CO=0.1uF, unless otherwise noted)
Parameter
Test Conditions
MIN
TYP
MAX
Units
TJ = 25 C
5.75
6.00
6.25
V
8V ≤ VI ≤ 20V, 1mA ≤ IO ≤ 40mA
5.70
6.00
6.30
V
8V ≤ VI ≤ 20V, 1mA ≤ IO ≤ 70mA
5.70
6.00
6.30
V (note)
o
16
80
mV
o
9
40
mV
o
TJ = 25 C, 8.5V ≤ VI ≤ 20V
35
175
mV
TJ = 25 oC, 9V ≤ VI ≤ 20V
29
125
mV
3.9
6.0
mA
9V < VI < 20V
1.5
mA
1mA ≤ IO ≤ 40mA
0.1
mA
o
VO
∆VO
Output Voltage
Load Regulation
TJ = 25 C, 1mA ≤ IO ≤ 100mA
TJ = 25 C, 1mA ≤ IO ≤ 40mA
∆VO
Line Regulation
Iq
Quiescent Current
∆Iq
Quiescent Current Change
VN
Output Noise Voltage
o
TJ = 25 C
10Hz ≤ f ≤ 100Hz
o
RR
Ripple Rejection
TJ = 25 C, 9V ≤ VI ≤ 19V, f = 120Hz
Vd
Dropout Voltage
TJ = 25 C
78L08 (8V Voltage Regulator)
Symbol
o
o
Parameter
∆VO
Output Voltage
Load Regulation
Line Regulation
Test Conditions
Quiescent Current
∆Iq
Quiescent Current Change
VN
Output Noise Voltage
dB
1.7
V
MIN
TYP
MAX
Units
TJ = 25 C
7.70
8.00
8.30
V
10.5V ≤ VI ≤ 23V, 1mA ≤ IO ≤ 40mA
7.60
8.00
8.40
V
10.5V ≤ VI ≤ 23V, 1mA ≤ IO ≤ 70mA
7.60
8.00
8.40
V (note)
o
18
80
mV
o
10
40
mV
o
42
175
mV
o
36
125
mV
o
4.0
6.0
mA
11V < VI < 23V
1.5
mA
1mA ≤ IO ≤ 40mA
0.1
mA
TJ = 25 C, 1mA ≤ IO ≤ 100mA
TJ = 25 C, 10.5V ≤ VI ≤ 23V
TJ = 25 C, 11V ≤ VI ≤ 23V
Iq
48
o
TJ = 25 C, 1mA ≤ IO ≤ 40mA
∆VO
uV
(VI=14V, IO=40mA, 0 C<TJ<125 C, CI=0.33uF, CO=0.1uF, unless otherwise noted)
o
VO
40
46
TJ = 25 C
10Hz ≤ f ≤ 100Hz
o
RR
Ripple Rejection
TJ = 25 C, 13V ≤ VI ≤ 23V, f = 120Hz
Vd
Dropout Voltage
TJ = 25 C
o
37
54
uV
46
dB
1.7
V
Rev I. November 2010
78L09 (9V Voltage Regulator)
Symbol
o
o
(VI=15V, IO=40mA, 0 C<TJ<125 C, CI=0.33uF, CO=0.1uF, unless otherwise noted)
Parameter
Test Conditions
MIN
TYP
MAX
Units
TJ = 25 C
8.64
9.00
9.36
V
12V ≤ VI ≤ 24V, 1mA ≤ IO ≤ 40mA
8.55
9.00
9.45
V
12V ≤ VI ≤ 24V, 1mA ≤ IO ≤ 70mA
8.55
o
VO
∆VO
∆VO
Output Voltage
Load Regulation
Line Regulation
9.00
9.45
V (note)
o
19
90
mV
o
TJ = 25 C, 1mA ≤ IO ≤ 40mA
11
40
mV
TJ = 25 oC, 12V ≤ VI ≤ 24V
TJ = 25 C, 1mA ≤ IO ≤ 100mA
45
175
mV
o
40
125
mV
o
4.1
6.0
mA
12V < VI < 24V
1.5
mA
1mA ≤ IO ≤ 40mA
0.1
mA
TJ = 25 C, 13V ≤ VI ≤ 24V
Iq
Quiescent Current
∆Iq
Quiescent Current Change
TJ = 25 C
VN
Output Noise Voltage
10Hz ≤ f ≤ 100Hz
RR
Ripple Rejection
TJ = 25 C, 15V ≤ VI ≤ 25V, f = 120Hz
Vd
Dropout Voltage
58
uV
o
45
dB
o
1.7
V
TJ = 25 C
78L12 (12V Voltage Regulator) (VI=19V, IO=40mA, 0 oC<TJ<125 oC, CI=0.33uF, CO=0.1uF, unless otherwise noted)
Symbol
Parameter
Test Conditions
MIN
TYP
MAX
Units
TJ = 25 C
11.50
12.00
12.25
V
14.5V ≤ VI ≤ 27V, 1mA ≤ IO ≤ 40mA
11.40
12.00
12.60
V
14.5V ≤ VI ≤ 27V, 1mA ≤ IO ≤ 70mA
11.40
o
VO
∆VO
∆VO
Output Voltage
Load Regulation
Line Regulation
12.00
12.60
V (note)
o
22
100
mV
o
TJ = 25 C, 1mA ≤ IO ≤ 40mA
13
50
mV
TJ = 25 oC, 14.5V ≤ VI ≤ 27V
TJ = 25 C, 1mA ≤ IO ≤ 100mA
55
250
mV
o
49
200
mV
o
4.3
6.5
mA
16V < VI < 27V
1.5
mA
1mA ≤ IO ≤ 40mA
0.1
mA
TJ = 25 C, 16V ≤ VI ≤ 27V
Iq
Quiescent Current
∆Iq
Quiescent Current Change
TJ = 25 C
VN
Output Noise Voltage
10Hz ≤ f ≤ 100Hz
RR
Ripple Rejection
TJ = 25 C, 15V ≤ VI ≤ 25V, f = 120Hz
Vd
Dropout Voltage
o
o
TJ = 25 C
37
70
uV
42
dB
1.7
V
Rev I. November 2010
78L15 (15V Voltage Regulator) (VI=23V, IO=40mA, 0 oC<TJ<125 oC, CI=0.33uF, CO=0.1uF, unless otherwise noted)
Symbol
Parameter
Test Conditions
MIN
TYP
MAX
Units
TJ = 25 C
14.40
15.00
15.60
V
17.5V ≤ VI ≤ 30V, 1mA ≤ IO ≤ 40mA
14.25
15.00
15.75
V
VI = 23V, 1mA ≤ IO ≤ 70mA
14.25
o
VO
∆VO
∆VO
Output Voltage
Load Regulation
Line Regulation
15.00
15.75
V (note)
o
25
150
mV
o
TJ = 25 C, VI = 23V, 1mA ≤ IO ≤ 40mA
15
75
mV
TJ = 25 oC, 17.5V ≤ VI ≤ 30V, IO = 40mA
TJ = 25 C, VI = 23V, 1mA ≤ IO ≤ 100mA
65
300
mV
o
58
250
mV
o
4.6
6.5
mA
19V < VI < 30V, IO = 40mA
1.5
mA
VI = 23V, 1mA ≤ IO ≤ 40mA
0.1
mA
TJ = 25 C, 19V ≤ VI ≤ 30V, IO = 40mA
Iq
Quiescent Current
∆Iq
Quiescent Current Change
TJ = 25 C
VN
Output Noise Voltage
10Hz ≤ f ≤ 100Hz
RR
Ripple Rejection
TJ = 25 C, 18.5V ≤ VI ≤ 28.5V, f = 120Hz
Vd
Dropout Voltage
o
o
TJ = 25 C
34
82
uV
39
dB
1.7
V
Marking for ML78L15PRG = 78L15
Typical Application
3
VI
1
78LXX
VO
CO
0.1uF
CI
0.33uF
2
Note : Bypass capacitors are recommended for optimum stability and transient response and should be located as close as possible to the
regulator.
Rev I. November 2010
Test Circuit
Typical Characteristic
Rev I. November 2010
Typical Characteristic
DISCLAIMER:
The information presented in this document does not form part of any quotation or contract, is believed to be accurate and
reliable and may be changed without notice. No liability will be accepted by the publisher for any consequence of its use.
Rev I. November 2010