ETC LM78M10CT

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MC78MXX (LM78MXX) (KA78MXX)
3-Terminal 0.5A Positive Voltage Regulators
Description
•
•
•
•
•
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The MC78MXX (LM78MXX) (KA78MXX) series of threeterminal positive regulators are available in the TO-220/
D-PAK package with several fixed output voltages making it
useful in a wide range of applications.
Output Current up to 0.5A
Output Voltages of 5, 6, 8, 10, 12, 15, 18, 20, 24V
Thermal Overload Protection
Short Circuit Protection
Output Transistor SOA Protection
Industrial and commercial temperature range
TO-220
D-PAK
1. Input 2. GND 3. Output
Rev. 1.0.0
©2000 Fairchild Semiconductor Corporation
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Fixed Voltage Regulator (Positive)
Features
MC78MXX (LM78MXX) (KA78MXX)
Fixed Voltage Regulator (Positive)
Internal Block Diagram
2
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MC78MXX (LM78MXX) (KA78MXX)
Absolute Maximum Ratings (Ta=+25°C, Unless otherwise specified)
Parameter
Symbol
Value
Unit
VI
VI
35
40
V
V
Thermal Resistance Junction-Cases
RθJC
5
°C/W
Thermal Resistance Junction-Air
RθJA
65
°C/W
Operating Temperature Range KA78MXXI/RI
KA78MXX/R
TOPR
-40~ + 125
0~ + 125
°C
°C
Storage Temperature Range
TSTG
-65~ + 150
°C
Input Voltage (for VO = 5V to 18V)
(for VO = 24V)
(Refer to the test circuits, TMIN ≤ TJ ≤ +125°C, IO=350mA, VI=10V, unless otherwise specified, CI = 0.33mF, CO=0.1mF)
Parameter
Output Voltage
Symbol
VO
Min.
Typ.
Max.
Units
TJ=+25°C
Conditions
4.8
5
5.2
V
IO = 5 to 350mA
VI= 7 to 20V
4.75
5
5.25
-
-
100
Line Regulation
∆VO
IO = 200mA
TJ =+25°C
VI = 8 to 25V
-
-
50
Load Regulation
∆VO
IO = 5mA to 0.5A, TJ =+25°C
-
-
100
IO = 5mA to 200mA, TJ =+25 °C
-
-
50
TJ=+25°C
-
4.0
6
mA
IO = 5mA to 350mA
-
-
0.5
mA
IO = 200mA
VI = 8 to 25V
-
-
0.8
IO = 5mA
TJ = 0 to +125°C
-
- 0.5
-
mV/°C
-
40
-
mV/VO
Quiescent Current
IQ
Quiescent Current
Change
∆IQ
Output Voltage Drift
∆V/∆T
VI= 7 to 25V
mV
mV
Output Noise Voltage
VN
f = 10Hz to 100KHz
Ripple Rejection
RR
f = 120Hz, IO = 300mA
VI = 8 to 18V
62
-
-
dB
Dropout Voltage
VD
TJ =+25°C, IO = 500mA
-
2
-
V
Short Circuit Current
ISC
TJ=+25°C, VI= 35V
-
300
-
mA
Peak Current
IPK
TJ =+25°C
-
700
-
mA
NOTE:
1. TMIN<TJ<TMAX
KA78MXX/Rl: TMIN= -40°C, TMAX = +125°C
KA78MXX/R: TMIN= 0°C, TMAX = +125°C
2. Load and line regulation are specified at constant junction temperature. Change in VO due to heating effects must be taken
into account separately. Pulse testing with low duty is used.
3
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Fixed Voltage Regulator (Positive)
KA78M05/I/R/RI Electrical Characteristics
MC78MXX (LM78MXX) (KA78MXX)
KA78M06/I/R/RI Electrical Characteristics
(Refer to the test circuits, TMIN ≤TJ ≤ +125°C, IO=350mA, VI =11V, unless otherwise specified, CI = 0.33mF, CO=0.1mF)(
Parameter
Output Voltage
Fixed Voltage Regulator (Positive)
Line Regulation
Load Regulation
Quiescent Current
Quiescent Current Change
Output Voltage Drift
Symbol
VO
∆VO
∆VO
IQ
∆IQ
∆V/∆T
Conditions
Min.
Typ.
Max.
Units
TJ=+25°C
5.75
6
6.25
V
IO = 5 to 350mA
VI= 8 to 21V
5.7
6
6.3
VI= 8 to 25V
-
-
100
VI = 9 to 25V
-
-
50
IO = 5mA to 0.5A, TJ =+25°C
-
-
120
IO = 5mA to 200mA, TJ =+25°C
-
-
60
TJ=+25°C
-
4.0
6
mA
IO = 5mA to 350mA
-
-
0.5
mA
IO = 200mA
VI = 9 to 25V
-
-
0.8
IO = 5mA
TJ = 0 to +125°C
-
- 0.5
-
mV/°C
-
45
-
mV/VO
IO = 200mA
TJ =+25°C
mV
mV
Output Noise Voltage
VN
f = 10Hz to 100KHz
Ripple Rejection
RR
f = 120Hz, IO = 300mA
VI = 9 to 19V
59
-
-
dB
Dropout Voltage
VD
TJ =+25°C, IO = 500mA
-
2
-
V
Short Circuit Current
ISC
TJ= +25°C, VI= 35V
-
300
-
mA
Peak Current
IPK
TJ =+25°C
-
700
-
mA
NOTE:
1. TMIN:
KA78MXX/RI: TMIN = -40°C
KA78MXX/R: TMIN = 0°C
2. Load and line regulation are specified at constant, junction temperature. Change in VO due to heating effects must be taken
into account separately. Pulse testing with low duty is used.
4
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MC78MXX (LM78MXX) (KA78MXX)
KA78M08/I/R/RI ELECTRICAL CHARACTERISTICS
(Refer to the test circuits, TMIN ≤TJ≤ +125°C, IO=350mA, VI=14V, unless otherwise specified, CI =0.33mF, CO=0.1mF)
Parameter
Output Voltage
Line Regulation
Quiescent Current
Quiescent Current Change
VO
∆VO
∆VO
IQ
∆IQ
Conditions
Min.
Typ.
Max.
Units
TJ=+25 °C
7.7
8
8.3
V
IO = 5 to 350mA
VI= 10.5 to 23V
7.6
8
8.4
VI= 10.5 to 25V
-
-
100
VI = 11 to 25V
-
-
50
IO = 5mA to 0.5A, TJ =+25°C
-
-
160
IO = 5mA to 200mA, TJ =+25°C
-
-
80
TJ=+25°C
-
4.0
6
mA
IO = 5mA to 350mA
-
-
0.5
mA
IO = 200mA
VI = 10.5 to 25V
-
-
0.8
IO = 200mA
TJ =+25°C
mV
mV
Output Voltage Drift
RR
IO = 5mA
TJ = 0 to +125°C
-
- 0.5
-
mV/°C
Output Noise Voltage
VN
f = 10Hz to 100KHz
-
52
-
mV/VO
Ripple Rejection
RR
f = 120Hz, IO = 300mA
VI = 9 to 19V
56
-
-
dB
Dropout Voltage
VD
TJ =+25°C,IO = 500mA
-
2
-
V
Short Circuit Current
ISC
TJ =+25°C, VI= 35V
-
300
-
mA
Peak Current
IPK
TJ =+25°C
-
700
-
mA
NOTE:
1. TMIN:
KA78MXX/RI: TMIN = -40°C
KA78MXX/R: TMIN = 0°C
2. Load and line regulation are specified at constant, junction temperature. Change in VO due to heating effects must be taken
into account separately. Pulse testing with low duty is used.
5
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Fixed Voltage Regulator (Positive)
Load Regulation
Symbol
MC78MXX (LM78MXX) (KA78MXX)
KA78M10/I/R/RI Electrical Characteristics
(Refer to the test circuits, TMIN ≤TJ ≤ +125°C, IO=350mA, VI=17V, unless otherwise specified, CI = 0.33mF, CO=0.1mF)
Parameter
Output Voltage
Fixed Voltage Regulator (Positive)
Line Regulation
Load Regulation
Quiescent Current
Quiescent Current Change
Output Voltage Drift
Symbol
VO
∆VO
∆VO
IQ
∆IQ
∆V/∆T
Conditions
Min.
Typ.
Max.
Units
TJ= +25°C
9.6
10
10.4
V
IO = 5 to 350mA
VI= 12.5 to 25V
9.5
10
10.5
VI= 12.5 to 25V
-
-
100
VI = 13 to 25V
-
-
50
IO = 5mA to 0.5A, TJ =+25°C
-
-
200
IO = 5mA to 200mA, TJ =+25°C
-
-
100
TJ=+25°C
-
4.1
6
mA
IO = 5mA to 350mA
-
-
0.5
mA
IO = 200mA
VI = 12.5 to 25V
-
-
0.8
IO = 5mA
TJ = 0 to +125°C
-
- 0.5
-
mV/°C
-
65
-
mV/VO
IO = 200mA
TJ =+25°C
mV
mV
Output Noise Voltage
VN
f = 10Hz to 100KHz
Ripple Rejection
RR
f = 120Hz, IO = 300mA
VI = 13 to 23V
55
-
-
dB
Dropout Voltage
VD
TJ =+25°C, IO = 500mA
-
2
-
V
Short Circuit Current
ISC
TJ= +25°C, VI= 35V
-
300
-
mA
Peak Current
IPK
TJ =+25°C
-
700
-
mA
NOTE:
1. TMIN:
KA78MXX/RI: TMIN = -40°C
KA78MXX/R: TMIN = 0°C
2. Load and line regulation are specified at constant, junction temperature. Change in VO due to heating effects must be taken
into account separately. Pulse testing with low duty is used.
6
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MC78MXX (LM78MXX) (KA78MXX)
KA78M12/I/R/RI Electrical Characteristics
(Refer to the test circuits, TMIN ≤TJ ≤125°C, IO=350mA, VI =19V, unless otherwise specified, CI =0.33mF, CO =0.1mF)
Parameter
Output Voltage
Symbol
VO
∆VO
Load Regulation
∆V
Quiescent Current
Quiescent Current Change
Output Voltage Drift
O
IQ
∆IQ
∆V/∆T
Min.
Typ.
Max.
Units
TJ=+25°C
11.5
12
12.5
V
IO = 5 to 350mA
VI= 14.5 to 27V
11.5
12
12.6
VI= 14.5 to 30V
-
-
100
VI = 16 to 30V
-
-
50
IO = 5mA to 0.5A, TJ =+25°C
-
-
240
IO = 5mA to 200mA, TJ =+25°C
-
-
120
TJ=+25°C
-
4.1
IO = 5mA to 350mA
-
IO = 200mA
VI = 14.5 to 30V
-
-
0.8
IO = 5mA
TJ = 0 to +125°C
-
- 0.5
-
mV/°C
-
75
-
mV/VO
-
dB
-
V
IO = 200mA
TJ =+25°C
mV
mV
6
mA
0.5
mA
Output Noise Voltage
VN
f = 10Hz to 100KHz
Ripple Rejection
RR
f = 120Hz, IO = 300mA
VI = 15 to 25V
55
Dropout Voltage
VD
TJ =+25°C, IO = 500mA
-
Short Circuit Current
ISC
TJ= +25°C, VI= 35V
-
300
-
mA
Peak Current
IPK
TJ = +25°C
-
700
-
mA
2
NOTE:
1. TMIN:
KA78MXX/RI: TMIN = -40°C
KA78MXX/R: TMIN = 0°C
2. Load and line regulation are specified at constant, junction temperature. Change in VO due to heating effects must be taken
into account separately. Pulse testing with low duty is used.
7
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Fixed Voltage Regulator (Positive)
Line Regulation
Conditions
MC78MXX (LM78MXX) (KA78MXX)
KA78M15/I/R/RI ELECTRICAL CHARACTERISTICS
(Refer to the test circuits, TMIN ≤TJ ≤ +125°C, IO=350mA, VI =23V, unless otherwise specified, CI = 0.33mF, CO=0.1mF)
Parameter
Output Voltage
Fixed Voltage Regulator (Positive)
Line Regulation
Load Regulation
Quiescent Current
Quiescent Current Change
Output Voltage Drift
Symbol
VO
∆VO
∆VO
IQ
∆IQ
∆V/∆T
Conditions
Min.
Typ.
Max.
Units
TJ=+25°C
14.4
15
15.6
V
IO = 5 to 350mA
VI= 17.5 to 30V
14.25
15
15.75
VI= 17.5 to 30V
-
-
100
VI = 20 to 30V
-
-
50
IO = 5mA to 0.5A, TJ =+25°C
-
-
300
IO = 5mA to 200mA, TJ =+25°C
-
-
150
TJ=+25°C
-
4.1
6
mA
IO = 5mA to 350mA
-
-
0.5
mA
IO = 200mA
VI = 17.5 to 30V
-
-
0.8
IO = 5mA
TJ = 0 to +125°C
-
-1
-
mV/°C
-
100
-
mV/VO
IO = 200mA
TJ =+25°C
mV
mV
Output Noise Voltage
VN
f = 10Hz to 100KHz
Ripple Rejection
RR
f = 120Hz, IO = 300mA
VI = 18.5 to 28.5V
54
Dropout Voltage
VD
TJ =+25°C, IO = 500mA
-
Short Circuit Current
ISC
TJ= +25°C, VI= 35V
-
300
-
mA
Peak Current
IPK
TJ = + 25°C
-
700
-
mA
dB
2
-
V
NOTE:
1. TMIN:
KA78MXX/RI: TMIN = -40°C
KA78MXX/R: TMIN = 0°C
2. Load and line regulation are specified at constant, junction temperature. Change in VO due to heating effects must be taken
into account separately. Pulse testing with low duty is used.
8
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MC78MXX (LM78MXX) (KA78MXX)
KA78M18/I/R/RI Electrical Characteristics
(Refer to the test circuits, TMIN ≤TJ ≤ +125°C, IO=350mA, VI =26V, unless otherwise specified, CI = 0.33mF, CO=0.1mF)
Parameter
Output Voltage
Line Regulation
Quiescent Current
Quiescent Current Change
Output Voltage Drift
VO
∆VO
∆VΟ
IQ
∆IQ
∆V/∆T
Conditions
Min.
Typ.
Max.
Units
TJ=+25°C
17.3
18
18.7
V
IO = 5 to 350mA
VI= 20.5 to 33V
17.1
18
18.9
IO = 200mA VI= 21 to 33V
-
-
100
TJ =+25°C
-
-
50
IO = 5mA to 0.5A, TJ =+25°C
-
-
360
IO = 5mA to 200mA, TJ =+25°C
-
-
180
TJ =+25°C
-
4.2
6
mA
IO = 5mA to 350mA
-
-
0.5
mA
IO = 200mA
VI = 21 to 33V
-
-
0.8
IO =5mA
TJ =0 to 125°C
-
-1.1
-
mV/°C
100
-
µV/VO
-
dB
VI = 24 to 33V
mV
mV
Output Noise Voltage
VN
f=10Hz to 100KHz
Ripple Rejection
RR
f=120Hz, IO=300mA
Dropout Voltage
VD
TJ =+25°C, IO=500mA
-
2
-
V
Short Circuit Current
ISC
TJ =+25°C, VI=35V
-
300
-
mA
Peak Current
IPK
TJ =+25°C
-
700
-
mA
53
NOTE:
1. TMIN:
KA78MXX/R: TMIN = -40°C
KA78MXX/R: TMIN = 0°C
2. Load and line regulation are specified at constant, junction temperature. Change in VO due to heating effects must be taken
into account separately. Pulse testing with low duty is used.
9
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Fixed Voltage Regulator (Positive)
Load Regulation
Symbol
MC78MXX (LM78MXX) (KA78MXX)
KA78M20/I/R/RI Electrical Characteristics
(Refer to the test circuits, TMIN ≤TJ≤ +125°C, IO=350mA, VI =29V, unless otherwise specified, CI = 0.33mF, CO=0.1mF)
Parameter
Output Voltage
Symbol
VO
Conditions
Min.
Typ.
Max.
Units
19.2
20
20.8
V
19
20
21
IO = 200mA VI= 23 to 35V
TJ =+25°C VI = 24 to 35V
-
-
100
-
-
50
IO = 5mA to 0.5A, TJ =+25°C
-
-
400
IO = 5mA to 200mA, TJ =+25°C
-
-
200
TJ=+25°C
-
4.2
6
mA
IO = 5mA to 350mA
-
-
0.5
mA
IO = 200mA
VI = 23 to 35V
-
-
0.8
IO = 5mA
TJ = 0 to +125°C
-
-1.1
-
mV/°C
-
110
-
mV/VO
TJ= +25°C
IO = 5 to 350mA
VI= 23 to 35V
Fixed Voltage Regulator (Positive)
Line Regulation
Load Regulation
Quiescent Current
Quiescent Current Change
Output Voltage Drift
∆VO
∆VO
IQ
∆IQ
∆V/∆T
mV
mV
Output Noise Voltage
VN
f = 10Hz to 100KHz
Ripple Rejection
RR
f = 120Hz, IO = 300mA
VI = 24 to 34V
53
-
-
dB
Dropout Voltage
VD
TJ =+25°C, IO = 500mA
-
2
-
V
Short Circuit Current
ISC
TJ = +25°C, VI= 35V
-
300
-
mA
Peak Current
IPK
TJ = +25°C
-
700
-
mA
NOTE:
1. TMIN:
KA78MXX/RI: TMIN = -40°C
KA78MXX/R: TMIN = 0°C
2. Load and line regulation are specified at constant, junction temperature. Change in VO due to heating effects must be taken
into account separately. Pulse testing with low duty is used.
10
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MC78MXX (LM78MXX) (KA78MXX)
KA78M24/I/R/RI Electrical Characteristics
(Refer to the test circuits, TMIN ≤TJ ≤ +125°C, IO=350mA, VI=33V, unless otherwise specified, CI = 0.33mF, CO=0.1mF)
Parameter
Output Voltage
Symbol
VO
Conditions
Min.
Typ.
Max.
Units
23
24
25
V
22.8
24
25.2
IO = 200mA VI= 27 to 38V
TJ =+25°C VI = 28 to 38V
-
-
100
-
-
50
IO = 5mA to 0.5A, TJ =+25°C
-
-
480
IO = 5mA to 200mA, TJ =+25°C
-
-
240
TJ=+25°C
-
4.2
6
mA
IO = 5mA to 350mA
-
-
0.5
mA
IO = 200mA
VI = 27 to 38V
-
-
0.8
IO = 5mA
TJ = 0 to +125°C
-
- 1.2
-
mV/°C
-
170
-
mV/VO
TJ=+25°C
IO = 5 to 350mA
VI= 27 to 38V
Line Regulation
Quiescent Current
Quiescent Current Change
Output Voltage Drift
∆VO
IQ
∆IQ
∆V/∆T
mV
mV
Output Noise Voltage
VN
f = 10Hz to 100KHz
Ripple Rejection
RR
f = 120Hz, IO = 300mA
VI = 28 to 38V
50
-
-
dB
Dropout Voltage
VD
TJ =+25°C, IO = 500mA
-
2
-
V
Short Circuit Current
ISC
TJ= +25 °C, VI= 35V
-
300
-
mA
Peak Current
IPK
TJ =+25°C
-
700
-
mA
NOTE:
1. TMIN:
KA78MXX/RI: TMIN = -40°C
KA78MXX/R: TMIN = 0°C
2. Load and line regulation are specified at constant, junction temperature. Change in VO due to heating effects must be taken
into account separately. Pulse testing with low duty is used.
11
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Fixed Voltage Regulator (Positive)
Load Regulation
∆VO
MC78MXX (LM78MXX) (KA78MXX)
Typical Applications
Fixed Voltage Regulator (Positive)
Figure 1. Fixed Output Regulator
Figure 2. Constant Current Regulator
Notes:
1. To specify an output voltage, substitute voltage value for "XX"
2. Although no output capacitor is needed for stability, it does improve transient response.
3. Required if regulator is located an appreciable distance from power Supply filter
Figure 3. Circuit for Increasing Output Voltage
12
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MC78MXX (LM78MXX) (KA78MXX)
Fixed Voltage Regulator (Positive)
Figure 4. Adjustable Output Regulator (7 to 30V)
Figure 5. 0.5 to 10V Regulator
13
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MC78MXX (LM78MXX) (KA78MXX)
Ordering Information
Device
Package
MC78MXXCT (LM78XXCT) (KA78MXX)
TO-220
KA78MXXI
MC78MXXCDT (KA78MXXR)
Fixed Voltage Regulator (Positive)
KA78MXXRI
14
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Operating Temperature
0 ~ + 125°C
-40 ~ +125°C
D-PAK
0 ~ + 125°C
-40 ~ + 125°C
MC78MXX (LM78MXX) (KA78MXX)
Package Dimensions
Fixed Voltage Regulator (Positive)
15
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MC78MXX (LM78MXX) (KA78MXX)
Fixed Voltage Regulator (Positive)
Package Dimensions (Continued)
16
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MC78MXX (LM78MXX) (KA78MXX)
Fixed Voltage Regulator (Positive)
17
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Fixed Voltage Regulator (Positive)
MC78MXX (LM78MXX) (KA78MXX)
LIFE SUPPORT POLICY
FAIRCHILD’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES
OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF FAIRCHILD SEMICONDUCTOR
CORPORATION. As used herein:
1. Life support devices or systems are devices or systems
which, (a) are intended for surgical implant into the body,
or (b) support or sustain life, and (c) whose failure to
perform when properly used in accordance with
instructions for use provided in the labeling, can be
reasonably expected to result in a significant injury of the
user.
2. A critical component in any component of a life support
device or system whose failure to perform can be
reasonably expected to cause the failure of the life support
device or system, or to affect its safety or effectiveness.
www.fairchildsemi.com
1/18/00 0.0m 001
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 1999 Fairchild Semiconductor Corporation
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