Fairchild Semiconductor KA78R09 Datasheet

KA78R09
Low Dropout Voltage Regulator
www.fairchildsemi.com
Features
• 1A / 9V Output low dropout voltage regulator
• TO220 Full-Mold package (4PIN)
• Overcurrent protection, Thermal shutdown
• Overvoltage protection, Short-Circuit protection
Internal Block Diagram
1
Vin
Description
The KA78R09 is a low-dropout voltage regulator suitable for various electronic equipments. It provides constant volt­age power source with TO-220 4 lead full mold package. Dropout voltage of KA78R09 is below 0.5V in full rated current(1A). This regulator has various function such as peak current protection, thermal shut down, overvoltage pro­tection and output disable function.
TO-220F-4L
1
1. Vin 2. Vo 3. GND 4. Vids
Q1
2
Vo
THERMAL SHUTDOWN
BANDGAP REFERENCE
HIGH / LOW OUTPUT
4
Vdis
1.4V
©2001 Fairchild Semiconductor Corporation
­+
ON / OFF
OVERVOLTAGE PROTECTION
­+
SOA PROTECTION
SHORTCIRCUIT
SHORT-CIRCUIT
PROTECTION
3
GND
R1
R2
Rev. 1.0.1
KA78R09
Absolute Maximum Ratings
Parameter Symbol Value Unit Remark
Input Voltage Vin 35 V ­Disable Voltage Vdis 35 V ­Output Current Io 1.0 A ­Power Dissipation 1 Pd1 1.5 W No Heatsink Power Dissipation 2 Pd2 15 W With Heatsink Junction Temperature Tj +150 ° C ­Operating Temperature Topr -20 ~ +80 ° C -
Electrical Characteristics
(Vin =11V, Io = 0.5A, Ta = 25 °C , unless otherwise specified)
Parameter Symbol Conditions Min. Typ. Max. Unit
Output Voltage Vo - 8.78 9 9.22 V Load Regulation Rload 5mA < Io < 1A - 0.1 2.0 % Line Regulation Rline 10V < Vin < 25V - 0.5 2.5 % Ripple Rejection Ratio RR note1 45 55 - dB Dropout Voltage Vdrop Io = 1A - - 0.5 V Disable Voltage High VdisH Output Active 2.0 - - V Disable Voltage Low VdisL Output Disabled - - 0.8 V Disable Bias Current High IdisH Vdis = 2.7V - - 20 µA Disable Bias Current Low IdisL Vdis = 0.4V - - -0.4 mA Quiescent Current Iq Io = 0A - - 10 mA
Note:
1.These parameters, although guaranteed, are not 100% tested in production.
2
Typical Perfomance Characteristics
KA78R09
10 9
8
RL=
8 7 6 5
RL=9
Output voltage Vo(V)
4 3 2 1 0
5 10 15
0
20 25
Input voltage Vin (V)
Figure 1.Output Voltage vs. Input Voltage
10 9 8 7 6 5 4 3
Output voltage Vo(V)
2 1 0
0
0.5
1.51 2 2.5
Disable voltage Vdis (V)
50
40
30
20
8
i
10
Quescent current Iq(mA)
0
0
5 10 15 20 25
RL=
Input voltage Vin (V)
Figure 2.Quiescent Current vs. Input Voltage
9.06
9.04
9.02
9.00
8.98
8.96
Output voltage Vo(V)
8.94
3
8.92
-25
75
TEMPERATURE Tj(oC )
1250 25 50 100
Figure 3.Output Voltage vs. Disable Voltage
10
8
6
4
i
2
Quescent current Iq(mA)
0
75 1250 25 50 100-25
Junction temperature Tj(oC)
Figure 5.Quiescent Current vs. Temperature(Tj)
Figure 4.Output Voltage vs. Temperature(Tj)
0.6
0.5
0.4
0.3
0.2
Dropout voltage Vdrop(V)
0.1
0
Io=1A
0.75A
0.5A
0.25A 750 25 50 100-25
125
Junction temperature Tj(oC)
Figure 6.Dropout Voltage vs. Junction Temperature
3
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