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S-812C41BMC-C4VT2G Datasheet(PDF) 11 Page - Seiko Instruments Inc |
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S-812C41BMC-C4VT2G Datasheet(HTML) 11 Page - Seiko Instruments Inc |
11 / 52 page HIGH OPERATING VOLTAGE CMOS VOLTAGE REGULATOR Rev.4.0_00 S-812C Series Seiko Instruments Inc. 11 Electrical Characteristics Table 10 (Ta =25°C unless otherwise specified) Parameter Symbol Conditions Min. Typ. Max. Units Test circuits Output voltage *1 VOUT(E) VIN = VOUT(S)+2 V, IOUT = 10mA VOUT(S) × 0.98 VOUT(S) VOUT(S) × 1.02 V 1 2.0V ≤ VOUT(S) ≤ 2.9V 30 − − mA 3 3.0V ≤ VOUT(S) ≤ 3.9V 50 − − mA 3 4.0V ≤ VOUT(S) ≤ 4.9V 65 − − mA 3 Output current *2 IOUT VOUT(S)+2V ≤ VIN≤16V 5.0V ≤ VOUT(S) ≤ 6.0V 75 − − mA 3 2.0V ≤ VOUT(S) ≤ 2.4V − 0.46 0.95 V 1 2.5V ≤ VOUT(S) ≤ 2.9V − 0.32 0.68 V 1 3.0V ≤ VOUT(S) ≤ 3.4V − 0.23 0.41 V 1 3.5V ≤ VOUT(S) ≤ 3.9V − 0.19 0.35 V 1 4.0V ≤ VOUT(S) ≤ 4.4V − 0.16 0.30 V 1 4.5V ≤ VOUT(S) ≤ 4.9V − 0.14 0.27 V 1 5.0V ≤ VOUT(S) ≤ 5.4V − 0.12 0.25 V 1 Dropout voltage *3 Vdrop IOUT = 10mA 5.5V ≤ VOUT(S) ≤ 6.0V − 0.11 0.23 V 1 Line regulation 1 ∆ VOUT11 VOUT(S) + 1 V ≤ VIN ≤ 16 V, IOUT = 1mA − 5 20 mV 1 Line regulation 2 ∆ VOUT21 VOUT(S) + 1 V ≤ VIN ≤ 16 V, IOUT = 1 µA − 5 20 mV 1 2.0V ≤ VOUT(S) ≤ 2.9V, 1 µA ≤ IOUT ≤ 20mA − 6 30 mV 1 3.0V ≤ VOUT(S) ≤ 3.9V, 1 µA ≤ IOUT ≤ 30mA − 10 45 mV 1 4.0V ≤ VOUT(S) ≤ 4.9V, 1 µA ≤ IOUT ≤ 40mA − 13 65 mV 1 Load regulation ∆ VOUT31 VIN= VOUT(S) + 2 V 5.0V ≤ VOUT(S) ≤ 6.0V, 1 µA ≤ IOUT ≤ 50mA − 17 80 mV 1 Output voltage temperature coefficient *4 OUT OUT V Ta ∆ V ∆ • VIN = VOUT(S) + 1 V, IOUT = 10mA, -40 °C ≤ Ta ≤ 85°C − ±100 − ppm/ °C 1 2.0V ≤ VOUT(S) ≤ 2.7V − 0.9 1.6 µA 2 2.8V ≤ VOUT(S) ≤ 3.7V − 1.0 1.8 µA 2 3.8V ≤ VOUT(S) ≤ 5.1V − 1.2 2.1 µA 2 Current consumption ISS VIN = VOUT(S)+2V, no load 5.2V ≤ VOUT(S) ≤ 6.0V − 1.5 2.5 µA 2 Input voltage VIN − − − 16 V 1 Applied to products with Power-off Function Current consumption at power-off ISS2 VIN= VOUT(S) + 2V, VON/OFF = 0V, no load − 0.1 0.5 µA 2 Power-off pin Input voltage for high level VSH VIN= VOUT(S) + 2V, RL = 1k Ω, determined by VOUT output level 2.0 − − V 4 Power-off pin Input voltage for low level VSL VIN= VOUT(S) + 2V, RL = 1k Ω, determined by VOUT output level − − 0.4 V 4 Power-off pin Input current at high level ISH VIN= VOUT(S) + 2V, VON/OFF = 7V -0.1 − 0.1 µA 4 Power-off pin Input current at low level ISL VIN= VOUT(S) + 2V, VON/OFF = 0V -0.1 − 0.1 µA 4 Applied to products with Short-circuit Protection Short-circuit current IOS VIN = VOUT(S) + 2 V, VOUT = 0 V − 40 − mA 3 |
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