SEMICONDUCT OR
TECHNICAL DATA
4 TERMINAL LOW DROP VOLTAGE REGULATOR The KIA78MR×× Series are Low Drop Voltage Regulator suitable for various electronic equipments. It provides constant voltage power source with TO-220 4 terminal lead full molded PKG. The Regulator has multi function such as over current protection, overheat protection and ON/OFF control.
KIA78MR05PI~KIA78MR15PI
BIPOLAR LINEAR INTEGRATED CIRCUIT
A
C
O E
L U
V
V T
L K
S
R
H D
FEATURES
・0.5A Output Low Drop Voltage Regulator. ・Built in ON/OFF Control Terminal. ・Built in Over Current Protection, Over Heat Protection Function.
M
DIM MILLIMETERS _ A 10.00 + 0.20 _ 15.00 + 0.20 B _ C 2.70 + 0.20 _ D 0.60 + 0.10 _ E Φ3.20 + 0.20 _ 3.50 + 0.10 F _ 15.70 + 0.20 G _ H 0.40 + 0.10 14.3+0.2/-0.1 J _ 1.45 + 0.10 K _ L 1.00 + 0.10 2.54 M _ N 4.50 + 0.20 _ O 7.5+ 0.1 _ 1.50 + 0.10 P
R S T U V 5 8 _ 1.30 + 0.1 _ 3-1.00 + 0.1 _ 1.30 + 0.1
B
J
N
G
F
P 1 2 3 4
1 2 3 4
DC INPUT (V IN ) DC OUTPUT (VO ) GND ON/OFF CONTROL
LINE UP
ITEM * KIA78MR05PI * KIA78MR06PI * KIA78MR08PI * KIA78MR09PI * KIA78MR10PI * KIA78MR12PI * KIA78MR15PI Note) * : Under development OUTPUT VOLTAGE (Typ.) 5 6 8 9 10 12 15 V UNIT
TO-220IS-4
MAXIMUM RATINGS (Ta=25℃)
CHARACTERISTIC Input Voltage ON/OFF Control Voltage Output Current Power Dissipation 1 Power Dissipation 2 Junction Temperature Operating Temperature Storage Temperature Soldering Temperature (10sec) SYMBOL VIN VC IO Pd1 Pd2 Tj Topr Tstg Tsol RATING 35 35 0.5 1.5 15 125 -20~80 -30~125 260 UNIT V V A W W ℃ ℃ ℃ ℃ Remark No heatsink with heatsink -
2002. 1. 9
Revision No : 0
1/8
KIA78MR05PI~KIA78MR15PI
ELECTRICAL CHARACTERISTICS (Unless otherwise specified, IO=0.25A, Ta=25℃, Note1.)
CHARACTERISTIC KIA78MR05 KIA78MR06 KIA78MR08 Output Voltage KIA78MR09 KIA78MR10 KIA78MR12 KIA78MR15 Load Regulation Line Regulation Ripple Rejection Drop Out Voltage Output ON state for control Voltage Output ON state for control Current Output OFF state for control Voltage Output OFF state for control Current Quiescent Current Note1) VIN of KIA78MR05=7V " KIA78MR06=8V " KIA78MR08=10V " KIA78MR09=15V " KIA78MR10=16V " KIA78MR12=18V " KIA78MR15=21V Reg Load Reg Line R・R VD VC(ON) IC(ON) VC(OFF) IC(OFF) IQ VC=0.4V IO=0 Note3) At VIN=0.95VO VC=2.7V (Note2) IO=0.5A, (Note3) VO SYMBOL CONDITIONS IO=5mA~0.5A MIN. 4.88 5.85 7.80 8.78 9.75 11.70 14.70 55 2.0 TYP. 5.0 6.0 8.0 9.0 10.0 12.0 15.0 0.1 0.5 65 MAX. 5.12 6.15 8.2 9.22 10.25 12.30 15.30 2.0 2.5 0.5 20 0.8 -0.4 10 % % dB V V μ A V mA mA V UNIT
Note2) VIN of KIA78MR05=6~12V " KIA78MR06=7~15V " KIA78MR08=9~25V " KIA78MR09=10~25V " KIA78MR10=11~26V " KIA78MR12=13~29V " KIA78MR15=16~32V
BLOCK DIAGRAM
VIN 1 2 Vo
+
BANDGAP REFERENCE
ASO PROTECTION
4 Control
OUTPUT ON/OFF CONTROL
OVER HEAT PROTECTION
3 GND
2002. 1. 9
Revision No : 0
2/8
KIA78MR05PI~KIA78MR15PI
Fig. 1 Standard Test Circuit
V IN Vo
1 KIA78MRXXPI
2 Vc 47µF A A Io
4 3 0.33µF A Iq
V
RL
Ic
Fig. 1-2 Ripple Rejection Test Circuit
1 KIA78MRXXPI ei 3
2
4 47µF V IN 0.33µF RL V eo
f=120Hz(sine wave) ei=0.5Vrms RR=20log(ei/eo)
Fig. 2 Application Circuit for Standard
V IN Vo
1
2
Specific IC 3 4 ON/OFF signal CMOS or TTL
Co
High or Open:Output ON :Output OFF Low
2002. 1. 9
Revision No : 0
Load
3/8
KIA78MR05PI~KIA78MR15PI
Fig.3
20 POWER DISSIPATION P D (W)
PD 2
Ta - PD
RELATIVE OUTPUT VOLTAGE (%) 100 80 60 40 20 0
Fig.4
I O - VO
P D1:No heat sink p D 2:With infinite heat sink
15
10
5
P D1
0 -25
0
50
100
150
0
0.25
0.5
0.75
1.0
AMBIENT TEMPERATURE Ta ( C) Note) Oblique line portion : Overheat protection may operate in this area.
OUTPUT CURRENT I O (A)
Fig.5-1
Vo (mV) 150 100 50 0 -50 -100 -25
VIN =7V I O =0.25A
Tj -
Vo (KIA78MR05)
Vo (mV) 150 100 50
0
Fig.5-2 T j VIN =8V IO =0.25A
Vo (KIA78MR06)
OUTPUT VOLTAGE DEVIATION
OUTPUT VOLTAGE DEVIATION
-50 -100 -25
0
25
50
75
100
125
0
25
50
75
100
125
JUNCTION TEMPERATURE T j ( C)
JUNCTION TEMPERATURE T j ( C)
Fig.5-3
Vo (mV) 200 150 100 50 0 -50 -100 -150 -25 0
VIN =10V I O=0.25A
Tj -
Vo (KIA78MR08)
Vo (mV) 200 150 100 50 0 -50 -100 -150 -25
Fig.5-4 T j -
Vo (KIA78MR09)
VIN =15V I O=0.25A
OUTPUT VOLTAGE DEVIATION
25
50
75
100
125
OUTPUT VOLTAGE DEVIATION
0
25
50
75
100
125
JUNCTION TEMPERATURE T j ( C)
JUNCTION TEMPERATURE T j ( C)
2002. 1. 9
Revision No : 0
4/8
KIA78MR05PI~KIA78MR15PI
Vo (mV)
200 150 100 50 0 -50 -100 -150 -25 0 25 50 75 100 125
VIN =16V I O=0.25A
Vo (mV)
Fig.5-5
Tj -
Vo (KIA78MR10)
Fig.5-6 T j 250 200 150 100 50 0 -50 -100 -150 -200 -25 0 25
VIN =18V I O =0.25A
Vo (KIA78MR12)
OUTPUT VOLTAGE DEVIATION
OUTPUT VOLTAGE DEVIATION
50
75
100
125
JUNCTION TEMPERATURE T j ( C)
JUNCTION TEMPERATURE Tj ( C)
Vo (mV)
Fig.5-7 T j 250 200 150 100 50 0 -50 -100 -150 -200 -25 0 25
V IN =21V IO =0.25A
Vo (KIA78MR15)
8 OUTPUT VOLTAGE Vo (V) 7 6 5 4 3 2 1 0 0
Fig.6-1 VIN - Vo (KIA78MR05)
OUTPUT VOLTAGE DEVIATION
R L= RL=20Ω RL=10Ω
50
75
100
125
2
4
6
8
JUNCTION TEMPERATURE T j ( C)
INPUT VOLTAGE VIN (V)
Fig.6-2 VIN - Vo (KIA78MR06)
8 OUTPUT VOLTAGE Vo (V) OUTPUT VOLTAGE Vo (V) 7 6 5 4 3 2 1 0 0 5 10 15 INPUT VOLTAGE V IN (V)
R L=
Fig.6-3 VIN - V o (KIA78MR08)
10
RL=
R L=12Ω
5
R L=16Ω
0 0 5 10 15 INPUT VOLTAGE V IN (V)
2002. 1. 9
Revision No : 0
5/8
KIA78MR05PI~KIA78MR15PI
Fig.6-4 VIN - Vo (KIA78MR09)
10 OUTPUT VOLTAGE Vo (V) OUTPUT VOLTAGE Vo (V) 15
Fig.6-5 VIN - Vo (KIA78MR10)
RL=
10
RL= R L=20Ω
5
RL=36Ω RL=18Ω
5
0 0 5 10 15
0 0 5 10 15
INPUT VOLTAGE VIN (V)
INPUT VOLTAGE VIN (V)
Fig.6-6 VIN - VO (KIA78MR12)
20 OUTPUT VOLTAGE Vo (V) OUTPUT VOLTAGE Vo (V) 20
Fig.6-7 VIN - VO (KIA78MR15)
15
RL= RL=48Ω
15
RL=
10
10
R L=60Ω RL=30Ω
5
RL=24Ω
5 0
0 0 5 10 15 20 25
0
5
10
15
20
25
INPUT VOLTAGE V IN (V)
INPUT VOLTAGE VIN (V)
Fig.7-1 VIN - I BIAS (KIA78MR05)
CIRCUIT OPERATING CURRENT I BIAS (mA) 40 CIRCUIT OPERATING CURRENT I BIAS (mA) 40
Fig.7-2 VIN - I BIAS (KIA78MR06)
30
30
20
RL=10Ω
20
R L=12Ω
10
RL=20Ω R L=
10
RL=
0
0
5 INPUT VOLTAGE V IN (V)
10
0 0 5 INPUT VOLTAGE VIN (V) 10
2002. 1. 9
Revision No : 0
6/8
KIA78MR05PI~KIA78MR15PI
40
CIRCUIT OPERATING CURRENT I BIAS (mA)
CIRCUIT OPERATING CURRENT I BIAS (mA)
Fig.7-3 V IN - I BIAS (KIA78MR08)
Fig.7-4 VIN - I BIAS (KIA78MR09)
40
30
30
20
20
RL=18Ω RL=36Ω R L=
10
RL=
10
0 0 5 10 (V) 15 INPUT VOLTAGE VIN
0 0 5 10 INPUT VOLTAGE V IN (V)
15
CIRCUIT OPERATING CURRENT I BIAS (mA)
CIRCUIT OPERATING CURRENT I BIAS (mA)
Fig.7-5 VIN - I BIAS (KIA78MR10)
40
Fig.7-6 V IN - I BIAS (KIA78MR12)
40
RL= RL=48Ω
30
30
20
R L=20Ω
20
RL=24Ω
R L=24Ω RL=48Ω R L=
10
RL=
10
0 0 5 10 15
0 0 5 10 15 20 25
INPUT VOLTAGE V IN (V)
INPUT VOLTAGE VIN (V)
CIRCUIT OPERATING CURRENT I BIAS (mA)
Fig.7-7 VIN - I BIAS (KIA78MR15)
40 DROPOUT VOLTAGE VD (V)
RL= RL=60Ω
Fig.8
0.5 0.4 0.3 0.2 0.1 0
T j - VD
30
I O =0.5A
20
R L=30Ω
R L=30Ω R L=60Ω R L=
I O=0.25A
10
0 0 5 10 15 20 25
-25
0
25
50
75
100
125
INPUT VOLTAGE V IN (V)
JUNCTION TEMPERATURE T j ( C)
2002. 1. 9
Revision No : 0
7/8
KIA78MR05PI~KIA78MR15PI
Fig.9
10 8 6 4 2
Tj - I Q
80 RIPPLE REJECTION RR (dB)
Fig.10-1 f - RR
QUIESCENT CURRENT I Q (mA)
V IN =35V IO =0
70 60 50 40 30 20 10 0 0.1
IO =0.25A, ei=0.5V rms
0
-25 0 25 50 75 100 125
1
10
100
JUNCTION TEMPERATURE T j ( C)
INPUT RIPPLE FREQUENCY f (kHz)
Fig.10-2
80 RIPPLE REJECTION RR (dB) 70 60 50 40 30 0
I O - RR
f=120Hz,ei=0.5Vrms C ref =3.3µF
0.25 OUTPUT CURRENT I O (A)
0.5
2002. 1. 9
Revision No : 0
8/8
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