©2002 Fairchild Semiconductor Corporation
www.fairchildsemi.com
Rev. 1.0.4
Features
• Maximum Output Current of 100mA
• Output Voltage of 5V, 6V, 8V, 9V,10V , 1 2V, 15V, 18V and
24V
• Thermal Overload Protection
• Short Circuit Current Limiting
• Output Voltage Offered in ±5% Tolerance
Description
The KA78LXXA/KA78L05AA series of fixed voltage
monolithic integrated circuit voltage regulators are suitable
for application that required supply current up to 100mA.
TO-92
1. Output 2. GND 3. Input
8-SOP
1. Output 2. GND 3. GND 4. NC
5. NC 6. GND 7. GND 8. Input
1
1
SOT-89
1
GND
2
3
2
3
8
Internal Block Diagram
V
I
3
2
GND
V
0
1
I
R
SC
REFERE NCE VOLTAGE
SHORT CIRCUIT
PROTECTION
THERMAL SHUTDOWN
CIRCUIT
+
-
Inpu
t
Outpu
t
KA78LXXA/KA78L05AA
3-Terminal 0.1A Positive Voltage Regulator
KA78LXXA/KA78L05AA
2
Absolute Maximum Ratings
Electrical Characteristics(KA78L05A)
(V
I
= 10V, I
O
= 40mA, 0°C ≤ T
J
≤ 125°C, CI = 0.33µF, CO = 0.1µF, unless otherwise specified. (Note1)
Note:
1. The max imum stead y sta te usable output cu rrent and inpu t voltage are very depende nt on the heat sink ing an d/or lead length
of the package. Th e data a bove rep resent p ulse tes t conditi ons with junction temper ature as indicated at the initiatio n of test s.
2. Power dissipat ion P
D
≤ 0.75W.
Parameter Symbol Value Unit
Input Voltage (for V
O
= 5V, 8V)
(for V
O
= 12V to 18V)
(for V
O =
24V
V
I
30
35
40
V
V
V
Operating Junction Temperature Range T
J
0 ~ +150 °C
Storage Temperature Range T
STG
-65 ~ +150 °C
Parameter Symbol Conditions Min. Typ. Max. Unit
Output Voltage V
O
TJ = 25°C4.85.05.2V
Line Regulation (Note1)
∆V
O
TJ = 25°C
7V ≤≤≤≤ V
I
≤≤≤≤ 20V - 8 150 mV
8V ≤≤≤≤ V
I
≤≤≤≤ 20V - 6 100 mV
Load Regulation (Note1)
∆V
O
TJ = 25°C
1mA ≤ I
O
≤ 100mA - 11 60 mV
1mA ≤ I
O
≤ 40mA - 5.0 30 mV
Output Voltage V
O
7V ≤ V
I
≤ 20V 1mA ≤ IO ≤ 40mA - - 5.25 V
7V ≤V
I
≤ V
MAX
(Note 2)
1mA ≤ I
O
≤ 70mA 4.75 - 5.25 V
Quiescent Current I
Q
TJ = 25°C-2.05.5mA
Quiescent Current
Change
with line ∆I
Q
8V ≤V
I
≤ 20V - - 1.5 mA
with load ∆I
Q
1mA ≤ I
O
≤ 40
mA - - 0.1 mA
Output Noise Voltage V
N
TA = 25°C, 10Hz ≤ f ≤ 100kHz - 40 - µV/Vo
Temperature Coefficient of V
O
∆V
O
/∆TIO = 5mA - -0.65 - mV/°C
Ripple Rejection RR f = 120Hz, 8V ≤ V
I
≤ 18V, T
J
= 25°C4180 - dB
Dropout Voltage V
D
TJ = 25°C-1.7-V
KA78LXXA/KA78L05AA
3
Electrical Characteristics(KA78L06A)
(Continued)
(V
I
= 12V, I
O
= 40mA, 0°C ≤ TJ ≤ 125°C, CI = 0.33µF, CO = 0.1µF, unless otherwise specified. (Note 1)
Note:
1. The ma ximum ste ady stat e usable output current and input vo ltage ar e very d epende nt on th e heat s inking a nd/or le ad leng th
of the package. The dat a above repres ent pulse test c onditions with junction tempera ture as ind icated at the initi ation of tests.
2. Power dissipat ion P
D
≤ 0.75W.
Parameter Symbol Conditions Min. Typ. Max. Unit
Output Voltage V
O
TJ = 25°C 5.75 6.0 6.25 V
Line Regulation (Note1)
∆V
O
TJ = 25°C
8.5V ≤ V
I
≤ 20V - 64 175 mV
9V ≤ V
I
≤ 20V - 54 125 mV
Load Regulation (Note1) ∆V
O
TJ = 25°C
1mA ≤ I
O
≤ 100mA - 12.8 80 mV
1mA ≤ I
O
≤ 70mA - 5.8 40 mV
Output Voltage V
O
8.5 ≤ V
I
≤ 20V, 1mA ≤ IO ≤ 40mA 5.7 - 6.3 V
8.5 ≤ V
I
≤ V
MAX
(Note), 1mA ≤ I
O
≤ 70mA 5.7 - 6.3 V
Quiescent Current I
Q
TJ = 25°C--5.5mA
T
J
= 125°C-3.96.0mA
Quiescent Current
Change
with line ∆I
Q
9 ≤ V
I
≤ 20V - - 1.5 mA
with load ∆I
Q
1mA ≤ I
O
≤ 40mA - - 0.1 mA
Output Noise Voltage V
N
TA = 25°C, 10Hz ≤ f ≤ 100kHz - 40 - µV/Vo
Temperature Coefficient of V
O
∆V
O
/∆TIO = 5mA - 0.75 - mV/
°C
Ripple Rejection RR f = 120Hz, 10V ≤ V
I
≤ 20V, T
J
= 25°C4046-dB
Dropout Voltage V
D
TJ = 25°C-1.7-V
KA78LXXA/KA78L05AA
4
Electrical Characteristics(KA78L08A)
(Continued)
(V
I
= 14V, I
O
= 40mA, 0°C ≤ TJ ≤ 125°C, CI = 0.33µF, CO = 0.1µF, unless otherwise specified. (Note 1)
Note:
1. The max imum stead y sta te usable output cu rrent and inpu t voltage are very depende nt on the heat sink ing an d/or lead length
of the package. Th e data a bove rep resent p ulse tes t conditi ons with junction temper ature as indicated at the initiatio n of test s.
2. Power dissipat ion P
D
≤ 0.75W.
Parameter Symbol Conditions Min. Typ. Max. Unit
Output Voltage V
O
TJ = 25°C 7.7 8.0 8.3 V
Line Regulation (Note1)
∆V
O
TJ = 25°C
10.5V ≤ V
I
≤ 23V - 10 175 mV
11V ≤ V
I
≤ 23V - 8 125 mV
Load Regulation (Note1) ∆V
O
TJ = 25°C
1mA ≤ I
O
≤ 100mA - 15 80 mV
1mA ≤ I
O
≤ 40mA - 8.0 40 mV
Output Voltage V
O
10.5V ≤ V
I
≤ 23V 1mA ≤ IO ≤ 40mA 7.6 - 8.4 V
10.5V ≤ V
I
≤
V
MAX
(Note 2)
1mA ≤ I
O
≤ 70mA 7.6 - 8.4 V
Quiescent Current I
Q
TJ = 25°C-2.05.5mA
Quiescent Current
Change
with line ∆I
Q
11V ≤ V
I
≤ 23V - - 1.5 mA
with load ∆I
Q
1mA ≤ I
O
≤ 40mA - - 0.1 mA
Output Noise Voltage V
N
TA = 25°C, 10Hz ≤ f ≤100kHz - 60 - µV/Vo
Temperature Coefficient of V
O
∆V
O
/∆TIO = 5mA - -0.8 - mV/°C
Ripple Rejection RR f = 120Hz, 11V ≤ V
I
≤ 21V, T
J
= 25°C39 70 - dB
Dropout Voltage V
D
TJ = 25°C-1.7-V
KA78LXXA/KA78L05AA
5
Electrical Characteristics(KA78L09A)
(Continued)
(V
I
= 15V, I
O
= 40mA, 0°C ≤ TJ ≤ 125°C, CI = 0.33µF, CO = 0.1µF, unless otherwise specified. (Note 1)
Note:
1. The ma ximum ste ady stat e usable output current and input vo ltage ar e very d epende nt on th e heat s inking a nd/or le ad leng th
of the package. The dat a above repres ent pulse test c onditions with junction tempera ture as ind icated at the initi ation of tests.
2. Power dissipat ion P
D
≤ 0.75W.
Parameter Symbol Conditions Min. Typ. Max. Unit
Output Voltage V
O
TJ = 25°C 8.64 9.0 9.36 V
Line Regulation (Note1)
∆V
O
TJ = 25°C
11.5V ≤ V
I
≤ 24V - 90 200 mV
13V ≤ V
I
≤ 24V - 100 150 mV
Load Regulation (Note1) ∆V
O
TJ = 25°C
1mA ≤ I
O
≤ 100mA - 20 90 mV
1mA ≤ I
O
≤ 40mA - 10 45 mV
Output Voltage V
O
11.5V ≤ V
I
≤ 24V 1mA ≤ I
O
≤ 40mA 8.55 - 9.45 V
11.5V ≤ V
I
≤
V
MAX
(Note 2)
1mA ≤ I
O
≤ 70mA 8.55 - 9.45 V
Quiescent Current I
Q
TJ = 25°C-2.16.0mA
Quiescent Current
Change
with line ∆I
Q
13V ≤ V
I
≤ 24V - - 1.5 mA
with load ∆I
Q
1mA ≤ I
O
≤ 40mA - - 0.1 mA
Output Noise Voltage V
N
TA = 25°C, 10Hz ≤ f ≤ 100kHz - 70 - µV/Vo
Temperature Coefficient of V
O
∆V
O
/∆TIO = 5mA - -0.9 - mV/
°C
Ripple Rejection RR f = 120Hz, 12V ≤ V
I
≤ 22V, T
J
= 25°C38 44 - dB
Dropout Voltage V
D
TJ = 25°C-1.7-V