
LOW DROPOUT CMOS VOLTAGE REGULATOR
Rev.3.0_00 S-814 Series
Seiko Instruments Inc. 7
Electrical Characteristics
Table 5 (Ta=25°C unless otherwi se specified)
Item Symbol Conditions Min. Typ. Max. Units
Test
circuit
Output voltage*1 V
OUT(E) VIN=VOUT(S)+1 V, IOUT=30 mA VOUT(S)
×0.98 VOUT(S)
VOUT(S)
×1.02 V 1
2.0 V≤VOUT(S)≤2.9 V 100*3 ⎯ ⎯ mA 3
3.0 V≤VOUT(S)≤3.9 V 110*3 ⎯ ⎯ mA 3
4.0 V≤VOUT(S)≤4.9 V 135*3 ⎯ ⎯ mA 3
Output current*2 I
OUT VOUT(S)+1 V≤VIN≤10 V
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
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
Dropout voltage*4 V
drop IOUT=60 mA
5.5 V≤VOUT(S)≤6.0 V ⎯ 0.17 0.20 V 1
Line regulation 1 OUTIN
1OUT
VV
VΔ
•VOUT(S)+0.5 V≤VIN≤10 V, IOUT=30 mA ⎯ 0.05 0.2 %/V 1
Line regulation 2 OUTIN
2OUT
VV
VΔ
•VOUT(S)+0.5 V≤VIN≤10 V, IOUT=10 μA ⎯ 0.05 0.2 %/V 1
Load regulation ΔVOUT3 V
IN=VOUT(S)+1 V, 10 μA≤IOUT≤80 mA ⎯ 30 50 mV 1
Output voltage
temperature
cofficient*5 OUT
OUT
VTa
VΔ
•VIN=VOUT(S)+1 V, IOUT=30 mA,
−40°C≤Ta≤85°C ⎯ ±100 ⎯ ppm/
°C 1
Current
consumption during
operation ISS1 VIN=VOUT(S)+1 V, ON/OFF pin=ON, No load ⎯ 30 40 μA 2
Current
consumption during
shutdown ISS2 VIN=VOUT(S)+1 V, ON/OFF pin=OFF, No load ⎯ 0.1 0.5 μA 2
Input voltage VIN ⎯ ⎯ ⎯ 10 V 1
ON/OFF pin input
voltage “H” VSH VIN=VOUT(S)+1 V, RL=1 kΩ,
Judged at VOUT level 1.5 ⎯ ⎯ V 4
ON/OFF pin input
voltage “L” VSL VIN=VOUT(S)+1 V, RL=1 kΩ,
Judged at VOUT level ⎯ ⎯ 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. V
OUT(E): Effective output voltage
i.e., The output voltage when fixing IOUT(=30 mA) and inputting VOUT(S)+1.0 V.
V
OUT(S): Specified output voltage
*2. Output amperage when output voltage goes below 95 % of VOUT(E) after gradually increasin g output current.
*3. The output current can be at least this value.
Use load amperage not exceeding this value.