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S814 Datasheet, PDF (7/32 Pages) Seiko Instruments Inc – LOW DROPOUT CMOS VOLTAGE REGULATOR
Rev.3.1_00
LOW DROPOUT CMOS VOLTAGE REGULATOR
S-814 Series
 Electrical Characteristics
Item
Symbol
Table 5
Condition
(Ta=25°C unless otherwise specified)
Min.
Typ.
Max.
Units
Test
circuit
Output voltage*1
VOUT(E)
VIN=VOUT(S)+1 V, IOUT=30 mA
VOUT(S) VOUT(S) VOUT(S)
×0.98
×1.02
V
1
2.0 V≤VOUT(S)≤2.9 V 100*3 ⎯
⎯ mA
3
Output current*2
IOUT
VOUT(S)+1 V≤VIN≤10 V
3.0 V≤VOUT(S)≤3.9 V
4.0 V≤VOUT(S)≤4.9 V
110*3
135*3
⎯
⎯
⎯ mA
⎯ mA
3
3
5.0 V≤VOUT(S)≤6.0 V 180*3 ⎯
⎯ mA
3
2.0 V≤VOUT(S)≤2.4 V
⎯ 0.51 0.87 V
1
2.5 V≤VOUT(S)≤2.9 V
⎯ 0.38 0.61 V
1
3.0 V≤VOUT(S)≤3.4 V
⎯ 0.30 0.44 V
1
Dropout voltage*4 Vdrop
IOUT=60 mA
3.5 V≤VOUT(S)≤3.9 V
⎯ 0.24 0.33 V
1
4.0 V≤VOUT(S)≤4.4 V
⎯ 0.20 0.26 V
1
4.5 V≤VOUT(S)≤4.9 V
⎯ 0.18 0.22 V
1
5.0 V≤VOUT(S)≤5.4 V
⎯ 0.17 0.21 V
1
5.5 V≤VOUT(S)≤6.0 V
⎯ 0.17 0.20 V
1
Line regulation 1
∆VOUT1
∆VIN • VOUT
VOUT(S)+0.5 V≤VIN≤10 V, IOUT=30 mA
⎯ 0.05 0.2 %/V 1
Line regulation 2
∆VOUT2
∆VIN • VOUT
VOUT(S)+0.5 V≤VIN≤10 V, IOUT=10 μA
⎯ 0.05 0.2 %/V 1
Load regulation
Output voltage
temperature
cofficient*5
ΔVOUT3
VIN=VOUT(S)+1 V, 10 μA≤IOUT≤80 mA
∆VOUT VIN=VOUT(S)+1 V, IOUT=30 mA,
∆Ta • VOUT −40°C≤Ta≤+85°C
⎯
30
50 mV
1
⎯
±100
⎯
ppm/
°C
1
Current
consumption during ISS1
operation
VIN=VOUT(S)+1 V, ON/OFF pin=ON, No load
⎯
30
40
μA
2
Current
consumption during ISS2
power-off
Input voltage
VIN
ON/OFF pin input
voltage “H”
VSH
ON/OFF pin input
voltage “L”
VSL
VIN=VOUT(S)+1 V, ON/OFF pin=OFF, No load
⎯
0.1
0.5
μA
2
⎯
VIN=VOUT(S)+1 V, RL=1 kΩ,
Judged at VOUT level
VIN=VOUT(S)+1 V, RL=1 kΩ,
Judged at VOUT level
⎯
⎯
10
V
1
1.5
⎯
⎯
V
4
⎯
⎯
0.3
V
4
ON/OFF pin input
current “H”
ISH
VIN=VOUT(S)+1 V, VON/OFF=7 V
−0.1 ⎯ 0.1 μA
4
ON/OFF pin input
current “L”
ISL
VIN=VOUT(S)+1 V, VON/OFF=0 V
−0.1 ⎯ 0.1 μA
4
Short current limit IOS
VIN=VOUT(S)+1 V, VOUT pin=0 V
⎯
70
⎯ mA
3
Ripple rejection RR
VIN=VOUT(S)+1 V, f=100 Hz, ΔVrip=0.5 Vrms,
IOUT=30 mA
⎯
45
⎯ dB
5
*1. VOUT(S): Set output voltage
VOUT(E): Actual output voltage
Output voltage when fixing IOUT(=30 mA) and inputting VOUT(S)+1.0 V
*2. The output current at which the output voltage becomes 95% of VOUT(E) after gradually increasing the output
current.
*3. The output current can be at least this value.
Use load amperage not exceeding this value.
Seiko Instruments Inc.
7