ROHM BA17824T, BA17824FP, BA17808T, BA17808FP, BA17807FP Datasheet

...
BA178!!T / FP series
Regulator ICs

Standard 78 series, 3-pin regulator

BA178!!
The BA178!!T and BA178!!FP series are 3pin fixed positive output voltage regulators. These regulators are used to provide a stabilized output voltage from a fluctuating DC input voltage. There are 11 fixed output voltages, as follows : 5V, 6V, 7V, 8V, 9V, 10V, 12V, 15V, 18V, 20V, and 24V. The maximum current capacity is 1A for each of the above voltages.
""""
Application
Constant voltage power supply
""""Features
1) Built-in overcurrent protection circuit and thermal shutdown circuit.
2) Excellent ripple regulation.
3) Available in TO220FP and TO252-3 packages, to meet wide range of applications.
4) Compatible with other manufacturers' regulators.
5) Richly diverse lineup (5V, 6V, 7V, 8V, 9V, 10V, 12V, 15V, 18V, 20V, 24V).
""""Product codes
Output voltage (V) Product name Output voltage (V) Product name
!!T / FP series
!!!!
512 615 718 820 924
10 −−
BA17805T / FP BA17806T / FP BA17807T / FP BA17808T / FP BA17809T / FP BA17810T / FP
BA17812T / FP BA17815T / FP BA17818T / FP BA17820T / FP BA17824T / FP
Regulator ICs
""""Internal circuit configuration diagram
R
4
R
10
Q
12
R
5
R
6
D
1
R
7
Q
Q
18
Q
14
R
22
BA178!!T / FP series
(1)
R
8
13
Q
5
R
R
1
Q
7
Q
Q
1
R
18
R
9
R
Q
8
Q
10
Q
6
R
15
R
2
2
16
C
1
Q
4
R
14
R
3
D
3
13
D
Q
2
9
Q
16
Q
15
Q
11
Q
3
R
R
12
21
R
17
R
20
R
19
INPUT
Q
17
R
11
(3)
OUTPUT
(2)
COMMON
""""Absolute maximum ratings (Ta=25°C) ^Common specifications for BA178!!T / FP seriesp
Parameter Symbol Limits Unit
Applied voltage V Power
dissipation
TO220FP TO252-3
IN
Pd
Operating temperature Topr ˚C Storage temperature Tstg ˚C
Reduced by 16 mW / ˚C (TO220FP) and 8 mW / ˚C (TO252-3) for each increase in Ta of 1˚C over 25˚C
(without heat sink).
35 V
2.0
1.0
40∼+85
55∼+150
W
""""Recommended operating conditions (Ta=25°C)
BA17806T / FP
Parameter Symbol Min. Typ. Max. Unit
Input voltage 8.5 21 V Output current
BA17808T / FP
Parameter Symbol Min. Typ. Max. Unit
Input voltage Output current
BA17805T / FP
Parameter Symbol Min. Typ.
V
Input voltage 7.5 25 V Output current 1A
IN
I
O
Max. Unit
BA17807T / FP
Parameter Symbol Min. Typ. Max. Unit
V
Input voltage Output current
IN
9.5 22 V
I
O
−−1A
V
IN
I
O
−−1A
V
IN
10.5 23 V
I
O
−−1A
Regulator ICs
BA178!!T / FP series
BA17809T / FP
Parameter Symbol Min. Typ. Max. Unit
V
Input voltage Output current
IN
11.5 26 V
I
O
−−1A
BA17812T / FP
Parameter Symbol Min. Typ. Max. Unit
V
Input voltage Output current
IN
15 27 V
I
O
−−1A
BA17818T / FP
Parameter Symbol Min. Typ. Max. Unit
Input voltage Output current
V
I
21 33 V
IN
O
−−1A
BA17824T / FP
Parameter Symbol Min. Typ. Max. Unit
Input voltage Output current
V
IN
27 33 V
O
I
−−1A
BA17810T / FP
Parameter Symbol Min. Typ. Max. Unit
Input voltage Output current
12.5 25 V
IN
V
I
O
−−1A
BA17815T / FP
Parameter Symbol Min. Typ. Max. Unit
V
Input voltage Output current
IN
17.5 30 V
I
O
−−1A
BA17820T / FP
Parameter Symbol Min. Typ. Max. Unit
V
Input voltage Output current
IN
23 33 V
I
O
−−1A
""""Electrical characteristics
<BA17805T / FP individual specifications> (unless otherwise noted, Ta=25°C, V
Parameter Symbol Min. Typ. Max. Unit Conditions
Output voltage 1 V Output voltage 2 V Input stability 1 Reg.I Input stability 2 Reg.I Ripple rejection ratio R.R. 62 78 dB Load regulation 1 Reg.L Load regulation 2 Reg.L Temperature coefficient of output voltage T Output noise voltage V Minimum I/O voltage differential V Bias current I Bias current change 1 I Bias current change 2 I Peak output current I Output short-circuit current I
O1
4.8 5.0 5.2 V IO=500mA
O2
4.75 5.25 V
1
3 100 mV
2
150mV
1
15 100 mV IO=5mA1A
2
550mVIO=250750mA
CVO
−−1.0 mV/˚C
n
40 −µV f=10Hz100kHz
d
2.0 VIO=1A
b
4.5 8.0 mA IO=0mA
b1
−−0.5 mA
b2
−−0.8 mA
O-P
1.7 ATj=25˚C
OS
0.6 AVIN=25V
IN
V VIN=725V, IO=500mA VIN=812V, IO=500mA e
IN
O
=5mA, Tj=0125˚C
I
O
=5mA1A
I V
IN
=10V, IO=500mA)
IN
=7.520V, IO=5mA1A
=1Vrms, f=120Hz, IO=100mA
=825V
Measurement
circuit Fig.1
Fig.1 Fig.1 Fig.1 Fig.2 Fig.1 Fig.1 Fig.1 Fig.3 Fig.4 Fig.5 Fig.5 Fig.5 Fig.1 Fig.6
BA178!!T / FP series
Regulator ICs
<BA17806T / FP individual specifications> (unless otherwise noted, Ta=25°C, VIN=11V, IO=500mA)
Parameter Symbol Min. Typ. Max. Unit Conditions
Output voltage 1 Output voltage 2 Input stability 1 Input stability 2 Ripple rejection ratio Load regulation 1 Load regulation 2 Temperature coefficient of output voltage Output noise voltage Minimum I/O voltage differential Bias current Bias current change 1 Bias current change 2 Peak output current Output short-circuit current
V
O1
5.75 6.0 6.25 V I
V
O2
5.7 6.3 V
Reg.I
1
4 120 mV
Reg.I
2
260mV
R.R. 59 73 dB
Reg.L
1
16 120 mV I
Reg.L
2
660mVI
CVO
T
V V
I I I
I
O-P
OS
I
−−0.5 mV/˚C
n
60 −µVf=10Hz100kHz
d
2.0 VI
b
4.5 8.0 mA I
b1
−−0.5 mA
b2
−−0.8 mA
1.7 AT
0.6 AV
O
=
500mA
IN
=
8.521V, I
V V
IN
=
825V, I
V
IN
=
913V, I
e
IN
=
1Vrms, f=120Hz, I
O
=
5mA1A
O
=
250750mA
O
=
5mA, T
j
=
1A
=
0mA
=
5mA1A
=
8.525V
=
25˚C
=
25V
=
I
O
O
O
I V
IN
j
IN
O
=
5mA1A
O
=
500mA
O
=
500mA
0125˚C
O
=
100mA
Measurement
circuit
Fig.1 Fig.1 Fig.1 Fig.1 Fig.2 Fig.1 Fig.1 Fig.1 Fig.3 Fig.4 Fig.5 Fig.5 Fig.5 Fig.1 Fig.6
<BA17807T / FP individual specifications> (unless otherwise noted, Ta=25°C, VIN=13V, IO=500mA)
Parameter Symbol Min. Typ. Max.
Output voltage 1 Output voltage 2 Input stability 1 Input stability 2 Ripple rejection ratio Load regulation 1 Load regulation 2 Temperature coefficient of output voltage Output noise voltage Minimum I/O voltage differential Bias current Bias current change 1 Bias current change 2 Peak output current Output short-circuit current
V
O1
6.7 7.0 7.3
O2
V
Reg.I Reg.I
6.65 7.35
1
5 140
2
270
R.R. 57 69
Reg.L
1
17 140
Reg.L
2
670mVI
CVO
T
V V
I
b
I
b1
I
b2
I
O-P
I
OS
n
d
−−0.5
70
2.0
4.5 8.5
−−0.5
−−0.8
1.7
0.6
Unit
V
V mV mV
dB
mV
mV/˚C
µV
V mA mA mA
A
A
I
O
=
IN
V V
IN
V
IN
e
IN
I
O
=
O
=
O
=
I f=10Hz100kHz I
O
=
I
O
=
O
=
I V
IN
T
j
=
V
IN
Conditions
500mA
=
9.522V, I
=
925V, I
=
1015V, I
=
1Vrms, f=120Hz, I
O
O
=
O
=
5mA1A
500mA
=
500mA
5mA1A 250750mA 5mA, T
j
=
0125˚C
1A 0mA 5mA1A
=
9.525V
25˚C
=
25V
O
=
100mA
Measurement
circuit
Fig.1 Fig.1 Fig.1 Fig.1 Fig.2 Fig.1 Fig.1 Fig.1 Fig.3 Fig.4 Fig.5 Fig.5 Fig.5 Fig.1 Fig.6
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