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ADI LTC1044ACN8#PBF

Hersteller
Herst.-Teilenr.
LTC1044ACN8#PBF
LCSC-Nr.
C674211
Verp.
PDIP-8
Kundennummer
Hauptmerkm.
Inverted 5kHz PDIP-8 Voltage Regulators - DC DC Switching Regulators RoHS
DatenblattADI LTC1044ACN8#PBF
RoHS-Konformität1 Dokumente verfügbar
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Stk.E-Preis(Nur als Referenz)Gesamtbetrag
1+$ 4.1474$ 4.15
200+$ 1.6053$ 321.06
500+$ 1.5482$ 774.10
1,000+$ 1.5204$ 1520.40
Standardgehäuse50/Full Tube
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Produktspezifikationen

Alle
TypBeschreibung
KategorieIntegrated Circuits (ICs)/Power Management (PMIC)/Voltage Regulators - DC DC Switching Regulators
HerstellerADI
Verp.PDIP-8
Operating Temperature0℃~+70℃
FunctionInverted
Frequency - Switching5kHz
FeaturesAdaptive switching frequency;Cascade support
Operating Voltage1.5V~12V
Output Current-
Output Voltage-
Energy Efficiency98%
Quiescent Current200uA

Beschreibung

KI-Übersetzung

The LTC1044A is a monolithic CMOS switched-capacitor voltage converter. It plugs in for ICL7660/LTC1044 in applications where higher input voltage (up to 12V) is needed. The LTC1044A provides several conversion functions without using inductors. The input voltage can be inverted (V0UT = -VIN), doubled (V0UT = 2VIN), divided (V0UT = VIN/2) or multiplied (V0UT = ±nVIN). To optimize performance in specific applications, a boost function is available to raise the internal oscillator frequency by a factor of seven. Smaller external capacitors can be used in higher frequency operation to save board space. The internal oscillator can also be disabled to save power. The supply current drops to 1.5μA at 5V input when the OSC pin is tied to GND or V+.

Merkmale

KI-Übersetzung
  • 1.5V to 12V Operating Supply Voltage Range
  • 13V Absolute Maximum Rating
  • 200μA Maximum No Load Supply Current at 5V
  • Boost Pin (Pin 1) for Higher Switching Frequency
  • 97% Minimum Open Circuit Voltage Conversion Efficiency
  • 95% Minimum Power Conversion Efficiency
  • IS = 1.5μA with 5V Supply When OSC Pin = 0V or V+
  • High Voltage Upgrade to ICL7660/LTC1044

Anwendungen

KI-Übersetzung
  • Conversion of 10V to ±10V Supplies
  • Conversion of 5V to ±5V Supplies
  • Precise Voltage Division: V0 = VIN/2 ± 20ppm
  • Voltage Multiplication: V0 = ±nVIN
  • Supply Splitter: V0 = ±√(VIN/2)
  • Automotive Applications
  • Battery Systems with PV Wall Adapters/Chargers