
BAOOT / FP series
Regulator ICs
BA06T / FP (unless otherwise noted, Ta = 25
°
C, V
CC
= 11V, I
O
= 500mA) (under development)
Parameter
Symbol
Min.
Typ.
Max.
Unit
Conditions
-
Measurement
circuit
Fig.1
Fig.1
Fig.2
Fig.1
Fig.1
Fig.3
5.7
-
45
-
-
-
-
1.0
-
6.0
20
55
50
±0.02
0.3
2.5
1.5
0.4
6.3
100
-
150
-
0.5
5.0
-
-
V
Reg.I
R.R.
Reg.L
Tcvo
mV
dB
mV
% /
°
C
V
IN
= 7
→
25V
e
IN
=
1V
rms
, f
=
120Hz, Io
=
100mA
V
d
I
b
I
O-P
Ios
V
mA
A
A
Tj = 25
°
C
Vcc = 25V
Fig.1
Fig.5
V
O1
Io = 5mA
→
1A
Io = 5mA, Tj = 0125
°
C
Vcc = 0.95V
Io = 0mA
Fig.4
Input stability
Ripple rejection ratio
Load regulation
Temperature coefficient of output voltage
Dropout voltage
Bias current
Peak output current
Output short-circuit current
Output voltage
BA07T / FP (unless otherwise noted, Ta = 25
°
C, V
CC
= 12V, I
O
= 500mA)
Parameter
Symbol
Min.
Typ.
Max.
Unit
Conditions
-
Measurement
circuit
Fig.1
Fig.1
Fig.2
Fig.1
Fig.1
Fig.3
6.65
-
45
-
-
-
-
1.0
-
7.0
20
55
50
±0.02
0.3
2.5
1.5
0.4
7.35
100
-
150
-
0.5
5.0
-
-
V
Reg.I
R.R.
Reg.L
Tcvo
mV
dB
mV
% /
°
C
V
IN
= 8
→
25V
e
IN
=
1V
rms
, f
=
120Hz, Io
=
100mA
V
d
I
b
I
O-P
Ios
V
mA
A
A
Tj = 25
°
C
Vcc = 25V
Fig.1
Fig.5
V
O1
Io = 5mA
→
1A
Io = 5mA, Tj = 0~125
°
C
Vcc = 0.95V
O
Io = 0mA
Fig.4
Input stability
Ripple rejection ratio
Load regulation
Temperature coefficient of output voltage
Dropout voltage
Bias current
Peak output current
Output short-circuit current
Output voltage
BA08T / FP (unless otherwise noted, Ta = 25
°
C, V
CC
= 13V, I
O
= 500mA)
Parameter
Symbol
Min.
Typ.
Max.
Unit
Conditions
-
Measurement
Circuit
Fig.1
Fig.1
Fig.2
Fig.1
Fig.1
Fig.3
7.6
-
45
-
-
-
-
1.0
-
8.0
20
55
50
±0.02
0.3
2.5
1.5
0.4
8.4
100
-
150
-
0.5
5.0
-
-
V
Reg.I
R.R.
Reg.L
Tcvo
mV
dB
mV
% /
°
C
V
IN
= 9
→
25V
e
IN
=
1V
rms
, f
=
120Hz, Io
=
100mA
V
d
I
b
I
O-P
Ios
V
mA
A
A
Tj = 25
°
C
Vcc = 25V
Fig.1
Fig.5
V
O1
Io = 5mA
→
1A
Io = 5mA, Tj = 0~125
°
C
Vcc = 0.95V
O
Io = 0mA
Fig.4
Input stability
Ripple rejection ratio
Load regulation
Temperature coefficient of output voltage
Dropout voltage
Bias current
Peak output current
Output short-circuit current
Output voltage