ETC UTC78LXX

UTC78LXX
LINEAR INTEGRATED CIRCUIT
3-TERMINAL 0.1A POSITIVE
VOLTAGE REGULATORS
DESCRIPTION
The UTC78LXX series of fixed voltage monolithic
integrated circuit voltage regulators are suitable for
applications that required supply up to 100mA.
1
FEATURE
*Maximum output current of 100mA
*Output voltage of 5V,6V,8V,9V,10V,12V,15V and 24V
*Thermal overload protection
*Short circuit current limiting
TO-92
1:Output 2:GND; 3:Input
BLOCK DIAGRAM
INPUT
3
R13
R17
T10
Z2
R9
T8
T14
T9
R14
T12
R19
R18
R12
T13
T11
R11
T5
OUTPUT
R10
1
T6
R8
R15
R5
T4
Z1
T15
R4
R6
T7
R16
R1
R2
C1
R7
T3
T1
T2
R3
GND
2
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UTC78LXX
LINEAR INTEGRATED CIRCUIT
ABSOLUTE MAXIMUM RATINGS (Operating temperature range applies unless otherwise specified))
VALUE
UNITS
Input voltage(for Vo=5,8V)
(for Vo=12,15V)
CHARACTERISTICS
VI
SYMBOL
30
V
VI
35
V
Operating Junction Temperature
Range
Storage Temperature Range
TOPR
-20~+120
°C
TSTG
-55~+150
°C
UTC78L05 ELECTRICAL CHARACTERISTICS
(VI=10V,Io=40mA,0<Tj<125°C,C1=0.33µF,Co=0.1µF,unless otherwise specified)(Note 1)
Characteristic
Output Voltage
Symbol
Vo
Load Regulation
∆Vo
Line regulation
∆Vo
Quiescent Current
Quiescent Current Change
Output Noise Voltage
Temperature coefficient of Vo
Ripple Rejection
Dropout Voltage
Iq
∆Iq
∆Iq
VN
∆Vo/∆T
RR
Vd
Test conditions
Tj=25°C
MIN
TYP
MAX
UNIT
4.8
5.0
5.2
V
V
7V≤VI≤20V,IO=1mA~40mA
4.75
5.25
7V≤VI≤VMAX,IO=1mA~70mA
4.75
5.25
Tj=25°CIO=1mA~100mA
Tj=25°CIO=1mA~40mA
7V≤VI≤20V,Tj=25°C
8V≤VI≤20V,Tj=25°C
11
5.0
8
6
2.0
8V≤VI≤20V
1mA≤VI≤40mA
10Hz≤f≤100kHz
Io=5mA
8V≤VI≤20V,f=120Hz,Tj=25°C
Tj=25°C
41
60
30
150
100
5.5
1.5
0.1
40
-0.65
80
1.7
V
(note 2)
mV
mV
mV
mV
mA
mA
mA
µV
mV/°C
dB
V
UTC78L06 ELECTRICAL CHARACTERISTICS
(VI=12V,Io=40mA,0<Tj<125°C,C1=0.33µF,Co=0.1µF,unless otherwise specified)(Note 1)
Characteristic
Output Voltage
Symbol
VO
Load Regulation
∆Vo
Line regulation
∆Vo
Quiescent Current
Quiescent Current Change
Output Noise Voltage
Temperature coefficient of Vo
Ripple Rejection
Dropout Voltage
Iq
∆Iq
∆Iq
VN
∆Vo/∆T
RR
Vd
Test conditions
MIN
TYP
MAX
Tj=25°C
5.75
6.0
6.25
V
8.5V≤VI≤20V,IO=1mA~40mA
5.7
6.3
V
8.5V≤VI≤VMAX,
5.7
6.3
IO=1mA~70mA
Tj=25°C,IO=1mA~100mA
Tj=25°C,IO=1mA~70mA
8.5V≤VI≤20V,Tj=25°C
9V≤VI≤20V,Tj=25°C
9V≤VI≤20V
1mA≤VI≤40mA
10Hz≤f≤100kHz
Io=5mA
10V≤VI≤20V,f=120Hz,
Tj=25°C
Tj=25°C
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V
49
0.75
46
(note 2)
mV
mV
mV
mV
mA
mA
mA
µV
mV/°C
dB
1.7
V
12.8
5.8
64
54
3.9
40
UNIT
80
40
175
125
6.0
1.5
0.1
2
UTC78LXX
LINEAR INTEGRATED CIRCUIT
UTC78L08 ELECTRICAL CHARACTERISTICS
(VI=14V,Io=40mA,0<Tj<125°C,C1=0.33µF,Co=0.1µF,unless otherwise specified)(Note 1)
Characteristic
Output Voltage
Symbol
VO
Load Regulation
∆Vo
Line regulation
∆Vo
Quiescent Current
Quiescent Current Change
Output Noise Voltage
Temperature coefficient of Vo
Ripple Rejection
Dropout Voltage
Iq
∆Iq
∆Iq
VN
∆Vo/∆T
RR
Vd
Test conditions
MIN
TYP
MAX
UNIT
Tj=25°C
7.7
8.0
8.3
V
10.5V≤VI≤23V,IO=1mA~40mA
7.6
8.4
V
10.5V≤VI≤VMAX,
7.6
8.4
IO=1mA~70mA
Tj=25°CIO=1mA~100mA
Tj=25°CIO=1mA~70mA
10.5V≤VI≤23V,Tj=25°C
11V≤VI≤23V,Tj=25°C
49
0.75
70
1.7
V
15
8.0
10
8
2.0
11V≤VI≤23V
1mA≤VI≤40mA
10Hz≤f≤100kHz
Io=5mA
11V≤VI≤23V,f=120Hz,
Tj=25°C
Tj=25°C
39
V
(note 2)
mV
mV
mV
mV
mA
mA
mA
µV
mV/°C
dB
80
40
175
125
5.5
1.5
0.1
UTC78L09 ELECTRICAL CHARACTERISTICS
(VI=15V,Io=40mA,0<Tj<125°C,C1=0.33µF,Co=0.1µF,unless otherwise specified)(Note 1)
Characteristic
Output Voltage
Symbol
VO
Load Regulation
∆Vo
Line regulation
∆Vo
Quiescent Current
Quiescent Current Change
Output Noise Voltage
Temperature coefficient of Vo
Ripple Rejection
Dropout Voltage
Iq
∆Iq
∆Iq
VN
∆Vo/∆T
RR
Vd
Test conditions
MIN
TYP
MAX
UNIT
Tj=25°C
8.64
9.0
9.36
V
11.5V≤VI≤24V,IO=1mA~40mA
8.55
9.45
V
11.5V≤VI≤VMAX,
8.55
9.45
IO=1mA~70mA
Tj=25°CIO=1mA~100mA
Tj=25°CIO=1mA~40mA
11.5V≤VI≤24V,Tj=25°C
13V≤VI≤24V,Tj=25°C
13V≤VI≤24V
1mA≤VI≤40mA
10Hz≤f≤100kHz
Io=5mA
12V≤VI≤23V,f=120Hz,
Tj=25°C
Tj=25°C
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49
0.75
44
1.7
V
20
10
90
100
2.0
38
V
(note 2)
mV
mV
mV
mV
mA
mA
mA
µV
mV/°C
dB
90
45
200
150
6.0
1.5
0.1
3
UTC78LXX
LINEAR INTEGRATED CIRCUIT
UTC78L10 ELECTRICAL CHARACTERISTICS
(VI=16V,Io=40mA,0<Tj<125°C,C1=0.33µF,Co=0.1µF,unless otherwise specified)(Note 1)
Characteristic
Output Voltage
Symbol
VO
Load Regulation
∆Vo
Line regulation
∆Vo
Quiescent Current
Quiescent Current Change
Output Noise Voltage
Temperature coefficient of Vo
Ripple Rejection
Dropout Voltage
Iq
∆Iq
∆Iq
VN
∆Vo/∆T
RR
Vd
Test conditions
MIN
TYP
MAX
UNIT
Tj=25
9.6
10.0
10.4
V
12.5V≤VI≤23V,IO=1mA~40mA
9.5
10.5
V
12.5V≤VI≤VMAX,
9.5
10.5
IO=1mA~70mA
Tj=25°CIO=1mA~100mA
Tj=25°CIO=1mA~70mA
12.5V≤VI≤23V,Tj=25°C
14V≤VI≤23V,Tj=25°C
74
0.95
43
1.7
V
20
10
100
200
4.2
12.5V≤VI≤23V
1mA≤VI≤40mA
10Hz≤f≤100kHz
Io=5mA
15V≤VI≤23V,f=120Hz,
Tj=25°C
Tj=25°C
38
V
(note 2)
mV
mV
mV
mV
mA
mA
mA
µV
mV/°C
dB
94
47
220
170
6.5
1.5
0.1
UTC78L12 ELECTRICAL CHARACTERISTICS
(VI=19V,Io=40mA,0<Tj<125°C,C1=0.33µF,Co=0.1µF,unless otherwise specified)(Note 1)
Characteristic
Output Voltage
Symbol
VO
Load Regulation
∆Vo
Line regulation
∆Vo
Quiescent Current
Quiescent Current Change
Output Noise Voltage
Temperature coefficient of Vo
Ripple Rejection
Dropout Voltage
Iq
∆Iq
∆Iq
VN
∆Vo/∆T
RR
Vd
Test conditions
MIN
TYP
MAX
UNIT
Tj=25°C
11.5
15
15.6
V
14.5V≤VI≤27V,IO=1mA~40mA
11.4
12.6
V
14.5V≤VI≤VMAX,
11.4
12.6
IO=1mA~70mA
Tj=25°CIO=1mA~100mA
Tj=25°CIO=1mA~0mA
14.5V≤VI≤27V,Tj=25°C
16V≤VI≤27V,Tj=25°C
25
12
25
20
2.0
16V≤VI≤27V
1mA≤VI≤40mA
10Hz≤f≤100kHz
Io=5mA
15V≤VI≤25V,f=120Hz,Tj=25°C
Tj=25°C
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37
80
-1.0
65
1.7
150
75
300
250
6.0
1.5
0.1
V
(note 2)
mV
mV
mV
mV
mA
mA
mA
µV
mV/°C
dB
V
4
UTC78LXX
LINEAR INTEGRATED CIRCUIT
UTC78L15 ELECTRICAL CHARACTERISTICS
(VI=23V,Io=40mA,0<Tj<125°C,C1=0.33µF,Co=0.1µF,unless otherwise specified)(Note 1)
Characteristic
Output Voltage
Symbol
VO
Load Regulation
∆Vo
Line regulation
∆Vo
Quiescent Current
Quiescent Current Change
Output Noise Voltage
Temperature coefficient of Vo
Ripple Rejection
Dropout Voltage
Iq
∆Iq
∆Iq
VN
∆Vo/∆T
RR
Vd
Test conditions
MIN
TYP
MAX
UNIT
Tj=25°C
14.4
15
15.6
V
17.5V≤VI≤30V,IO=1mA~40mA
14.25
15.75
V
17.5V≤VI≤VMAX,
14.25
15.75
IO=1mA~70mA
Tj=25°C,IO=1mA~100mA
Tj=25°C,IO=1mA~70mA
17.5V≤VI≤30V,Tj=25°C
20V≤VI≤30V,Tj=25°C
90
-1.3
63
1.7
V
20
25
25
15
2.2
20V≤VI≤30V
1mA≤VI≤40mA
10Hz≤f≤100kHz
Io=5mA
18.5V≤VI≤28.5V,f=120Hz,
Tj=25°C
Tj=25°C
34
V
(note 2)
mV
mV
mV
mV
mA
mA
mA
µV
mV/°C
dB
150
150
150
75
6.5
1.5
0.1
UTC78L18 ELECTRICAL CHARACTERISTICS
(VI=27V,Io=40mA,0<Tj<125°C,C1=0.33µF,Co=0.1µF,unless otherwise specified)(Note 1)
Characteristic
Output Voltage
Symbol
VO
Load Regulation
∆Vo
Line regulation
∆Vo
Quiescent Current
Quiescent Current Change
Output Noise Voltage
Temperature coefficient of Vo
Ripple Rejection
Dropout Voltage
Iq
∆Iq
∆Iq
VN
∆Vo/∆T
RR
Vd
Test conditions
MIN
TYP
MAX
UNIT
Tj=25°C
17.3
18
18.7
V
21V≤VI≤33V,IO=1mA~40mA
17.1
18.9
V
21V≤VI≤VMAX,
17.1
18.9
IO=1mA~70mA
Tj=25°CIO=1mA~100mA
Tj=25°CIO=1mA~40mA
21V≤VI≤33V,Tj=25°C
22V≤VI≤33V,Tj=25°C
21V≤VI≤33V
1mA≤VI≤40mA
10Hz≤f≤100kHz
Io=5mA
23V≤VI≤33V,f=120Hz,
Tj=25°C
Tj=250°C
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150
-1.8
48
1.7
V
30
15
145
135
2.0
34
V
(note 2)
mV
mV
mV
mV
mA
mA
mA
µV
mV/°C
dB
170
85
300
250
6.0
1.5
0.1
5
UTC78LXX
LINEAR INTEGRATED CIRCUIT
UTC78L24 ELECTRICAL CHARACTERISTICS
(VI=33V,Io=40mA,0<Tj<125°C,C1=0.33µF,Co=0.1µF,unless otherwise specified)(Note 1)
Characteristic
Symbol
Output Voltage
VO
Load Regulation
∆Vo
Line regulation
∆Vo
Quiescent Current
Quiescent Current Change
Output Noise Voltage
Temperature coefficient of Vo
Ripple Rejection
Dropout Voltage
Iq
∆Iq
∆Iq
VN
∆Vo/∆T
RR
Vd
Test conditions
MIN
TYP
MAX
UNIT
Tj=25°C
23
24
25
V
27V≤VI≤38V,IO=1mA~40mA
22.8
25.2
V
27V≤VI≤VMAX,
22.8
25.2
IO=1mA~70mA
Tj=25°CIO=1mA~100mA
Tj=25°CIO=1mA~0mA
27V≤VI≤38V,Tj=25°C
28V≤VI≤38V,Tj=25°C
40
20
160
150
2.2
27V≤VI≤38V
1mA≤VI≤40mA
10Hz≤f≤100kHz
Io=5mA
27V≤VI≤38V,f=120Hz,Tj=25°C
Tj=25°C
34
200
-2.0
45
1.7
200
100
300
250
6.0
1.5
0.1
V
(note 2)
mV
mV
mV
mV
mA
mA
mA
µV
mV/°C
dB
V
Note 1: The Maximum steady state usable output current and input voltage are very dependent on the heating
sinking and/or lead temperature length of the package.The date above respresent pulse test conditions with
junction temperatures as indicated at the initiation of test.
Note 2:Power dissipation<0.75W
TYPICAL APPLICATION
Vi
3
UTC78LXX
Vo
1
2
C1
0.33µF
C0
0.1µF
Note 1: To specify an output voltage,substitue voltage value for "XX".
Note 2: Bypass capacitors are recommended for optimum stability and transient response and should be located
as close as possible to the regulators.
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