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HA178L00 Series
REJ03D0683-0400 Rev.4.00 Jan 16, 2009
Page 5 of 10
Electrical Characteristics
HA178L05
(VIN = 10 V, IOUT = 40 mA, 0°C ≤ Tj ≤ 125°C, CIN = 0.33 μF, COUT = 0.1 μF)
HA178L05P
HA178L05
HA178L05PA
HA178L05A
HA178L05UA
Item
Symbol
Min
Typ
Max
Min
Typ
Max
Unit
Test Conditions
Output voltage
VOUT
4.68
5.0
5.32
4.8
5.0
5.2
V
Tj = 25°C
—
55
200
—
55
150
7 V
≤ V
IN ≤ 20 V
Line regulation
ΔV
OLINE
—
45
150
—
45
100
mV
Tj = 25°C
8 V
≤ V
IN ≤ 20 V
—
16
—
16
—
1.0 mA
≤ I
OUT ≤ 150 mA
—
11
60
—
11
60
1.0 mA
≤ I
OUT ≤ 100 mA
Load regulation
ΔV
OLOAD
—
5.0
30
—
5.0
30
mV
Tj = 25°C
1.0 mA
≤ I
OUT ≤ 40 mA
4.6
—
5.4
4.75
—
5.25
7 V
≤ V
IN ≤ 20 V,
1.0 mA
≤ I
OUT ≤ 40 mA
Output voltage
VOUT
4.6
—
5.4
4.75
—
5.25
V
VIN = 10 V, 1.0 mA ≤ IOUT ≤ 70 mA
Quiescent current
IQ
—
3.0
6.0
—
3.0
6.0
mA
Tj= 25°C
—
1.5
—
1.5
8.0 V
≤ V
IN ≤ 20 V, Tj = 25°C
Quiescent current
change
ΔI
Q
—
0.2
—
0.1
mA
1.0 mA
≤ I
OUT ≤ 40 mA, Tj = 25°C
Ripple rejection
ratio
RREJ
—
58
—
58
—
dB
f = 120 Hz, 8.0 V
≤ V
IN < 18 V,
Tj = 25°C
Temperature
coefficient of output
voltage
ΔV
OUT/ΔTj
—
+0.1
—
+0.1
—
mV/°C
IOUT = 5 mA
Dropout voltage
VDROP
—
1.7
—
1.7
—
V
Tj = 25°C
HA178L08
(VIN = 14 V, IOUT = 40 mA, 0°C ≤ Tj ≤ 125°C, CIN = 0.33 μF, COUT = 0.1 μF)
HA178L08P
HA178L08
HA178L08PA
HA178L08A
HA178L08UA
Item
Symbol
Min
Typ
Max
Min
Typ
Max
Unit
Test Conditions
Output voltage
VOUT
7.48
8.0
8.52
7.7
8.0
8.3
V
Tj = 25°C
—
20
200
—
20
175
10.5 V
≤ V
IN ≤ 23 V
Line regulation
ΔV
OLINE
—
12
150
—
12
125
mV
Tj = 25°C
11 V
≤ V
IN ≤ 23 V
—
22
—
22
—
1.0 mA
≤ I
OUT ≤ 150 mA
—
15
80
—
15
80
1.0 mA
≤ I
OUT ≤ 100 mA
Load regulation
ΔV
OLOAD
—
7.0
40
—
7.0
40
mV
Tj = 25°C
1.0 mA
≤ I
OUT ≤ 40 mA
7.36
—
8.64
7.6
—
8.4
10.5 V
≤ V
IN ≤ 23 V,
1.0 mA
≤ I
OUT ≤ 40 mA
Output voltage
VOUT
7.36
—
8.64
7.6
—
8.4
V
VIN = 14 V, 1.0 mA ≤ IOUT ≤ 70 mA
Quiescent current
IQ
—
3.0
6.5
—
3.0
6.5
mA
Tj= 25°C
—
1.5
—
1.5
11 V
≤ V
IN ≤ 23 V, Tj = 25°C
Quiescent current
change
ΔI
Q
—
0.2
—
0.1
mA
1.0 mA
≤ I
OUT ≤ 40 mA, Tj = 25°C
Ripple rejection
ratio
RREJ
—
55
—
55
—
dB
f = 120 Hz, 12 V
≤ V
IN < 23 V,
Tj = 25°C
Temperature
coefficient of output
voltage
ΔV
OUT/ΔTj
—
–0.1
—
–0.1
—
mV/°C
IOUT = 5 mA
Dropout voltage
VDROP
—
1.7
—
1.7
—
V
Tj = 25°C