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MC33341DR2MOTN/a49750avaiPower Supply Battery Charger Regulation Control Circuit
MC33341PONN/a10avaiPOWER SUPPLY BATTERY CHARGER REGULATION CONTROL CIRCUIT


MC33341DR2 ,Power Supply Battery Charger Regulation Control CircuitOrder this document by MC33341/D * *POWER SUPPLY* ** ** *BATTERY CHARGERThe MC33341 is a monolithic ..
MC33341DR2G , Power Supply Battery Charger Regulation Control Circuit
MC33341P ,POWER SUPPLY BATTERY CHARGER REGULATION CONTROL CIRCUITfeatures the unique ability toperform source high–side, load high–side, source low–side and loadSEM ..
MC33342 ,Battery Fast Charge ControllerELECTRICAL CHARACTERISTICS (V = 6.0 V, for typical values T = 25°C, for min/max values T is the op ..
MC33342DG , Battery Fast Charge Controllers
MC33342DR2 , Battery Fast Charge Controllers
MC74HC4051DW ,Analog Multiplexers/Demultiplexers**SEMICONDUCTOR TECHNICAL DATA ** *High–Performance Silicon–Gate CMOS*The MC54/74HC4051, MC74HC405 ..
MC74HC4051DWR2 ,8-Channel Analog Multiplexer/DemultiplexerLOGIC DIAGRAMMC54/74HC4053 SelectEnable C B A ON ChannelsTriple Single–Pole, Double–Position Plus C ..
MC74HC4051F ,8-Channel Analog Multiplexer/DemultiplexerMaximum Ratings are those values beyond which damage to the device may occur.Functional operation s ..
MC74HC4051F ,8-Channel Analog Multiplexer/DemultiplexerLOGIC DIAGRAMMC54/74HC4053 SelectEnable C B A ON ChannelsTriple Single–Pole, Double–Position Plus C ..
MC74HC4051FL1 ,8-Channel Analog Multiplexer/DemultiplexerLOGIC DIAGRAMMC54/74HC4053 SelectEnable C B A ON ChannelsTriple Single–Pole, Double–Position Plus C ..
MC74HC4051FL2 ,8-Channel Analog Multiplexer/DemultiplexerLOGIC DIAGRAM Control InputsMC54/74HC4051SelectSingle–Pole, 8–Position Plus Common OffEnable C B A ..


MC33341DR2-MC33341P
Power Supply Battery Charger Regulation Control Circuit
ORDERING INFORMATION
Order this document by MC33341/D
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The MC33341 is a monolithic regulation control circuit that is specifically
designed to close the voltage and current feedback loops in power supply
and battery charger applications. This device features the unique ability to
perform source high–side, load high–side, source low–side and load
low–side current sensing, each with either an internally fixed or externally
adjustable threshold. The various current sensing modes are accomplished
by a means of selectively using the internal differential amplifier, inverting
amplifier, or a direct input path. Positive voltage sensing is performed by an
internal voltage amplifier. The voltage amplifier threshold is internally fixed
and can be externally adjusted in all low–side current sensing applications.
An active high drive output is provided to directly interface with economical
optoisolators for isolated output power systems. This device is available in
8–lead dual–in–line and surface mount packages. Differential Amplifier for High–Side Source and Load Current Sensing Inverting Amplifier for Source Return Low–Side Current Sensing Non–Inverting Input Path for Load Low–Side Current Sensing Fixed or Adjustable Current Threshold in All Current Sensing Modes Positive Voltage Sensing in All Current Sensing Modes Fixed Voltage Threshold in All Current Sensing Modes Adjustable Voltage Threshold in All Low–Side Current Sensing Modes Output Driver Directly Interfaces with Economical Optoisolators Operating Voltage Range of 2.3 V to 16 V
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