* Series, Buffers, Drivers, Receivers, Transceivers

Results:
2,276
Manufacturer
Series
Voltage - Supply
Number of Bits per Element
Output Type
Package / Case
Number of Elements
Operating Temperature
Logic Type
Mounting Type
Supplier Device Package
Clock Frequency
Data Interface
Current - Output Source/Sink
Gain Bandwidth Product
Voltage - Supply, Dual (V±)
On-State Resistance (Max)
Number of Inputs
Delay Time - Propagation
Channel Type
Multiplexer/Demultiplexer Circuit
Number of Bits
Time Format
Input Capacitance
Max Propagation Delay @ V, Max CL
Independent Circuits
Circuit
Current - Supply
Current - Bias
Bus Directional
Translator Type
Qualification
Input Logic Level - High
Current - Timekeeping (Max)
Frequency - Max
Current - Output High, Low
Input Signal
FWFT Support
Trigger Type
Receiver Hysteresis
Power - Output
Duplex
Modulation or Protocol
Date Format
Access Time
Programmable Flags Support
Interrupt Output
Output
Data Rate (Max)
Protocol
Motor Type - AC, DC
Voltage - Supply, Battery
Current - Quiescent (Max)
Number of I/O
-3db Bandwidth
Differential - Input:Output
Input Logic Level - Low
Voltage - Input Offset
Voltage - Supply, Single (V+)
Type
Switch Circuit
Frequency
Number of Circuits
Interface
Number of Drivers/Receivers
Voltage - Supply Span (Max)
Retransmit Capability
Current - Input Bias
Input
Number of Channels
Voltage - VCCA
Expansion Type
Technology
Voltage - VCCB
Step Resolution
Amplifier Type
Grade
Voltage - Load
Motor Type - Stepper
Antenna Connector
Memory Size
Output Signal
Voltage - Supply Span (Min)
Output Function
Current - Output / Channel
Gain
Current - Output
Current - Supply (Max)
Output Configuration
Voltage Supply Source
PLL
Function
Data Rate
Secondary Attributes
Channels per Circuit
Supply Voltage
Noise Figure
Features
RF Type
Number of Mixers
Current - Transmitting
Input Type
Applications
Current - Quiescent (Iq)
Ratio - Input:Output
Slew Rate
Standards
Current - Modulation
Divider/Multiplier
Results remaining2,276
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ImageProduct DetailPriceAvailabilityECAD ModelSeries
SN74LVC161284DGG
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P8212
OPTOELECTRONIC DEVICE
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MG82389
MULTIBUS CONTROLLER, CMOS, CPGA1
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V350EPC-33LP
LOCAL BUS TO PCI BRIDGE FOR MULT
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SN74GTL16612ADL
REGISTERED BUS TRANSCEIVER
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74AVCM162836DGG118
BUS DRIVER, AVC SERIES
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74AVCM162836DGG112
BUS DRIVER, AVC SERIES
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CY74FCT16501ETPACT
BUS TRANSCEIVER, FCT SERIES
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SN74LVT18502PM
BOUNDARY SCAN REG BUS TRANSCVR
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SNJ54LVTH18502AHV
54LVTH18502A 3.3-V ABT SCAN TEST
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CY74FCT162501ATPAC
BUS TRANSCEIVER, FCT SERIES
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SN74ALVC16409DL
BUS EXCHANGER, ALVC/VCX/A SERIES
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74ALVC162836APA
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SN74ALVCH16835DGG
BUS DRIVER, ALVC/VCX/A SERIES
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CY74FCT162501ETPAC
BUS TRANSCEIVER, FCT SERIES
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SNJ54ABTH18502AHV
54ABTH18502A SCAN TEST DEVICES W
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74ALVCH16600APA
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74LVCR16501PV
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74FCT16501NATPA
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74ALVC16334APV
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About  Buffers, Drivers, Receivers, Transceivers

Logic buffers, drivers, receivers, and transceivers are essential components in digital circuitry that enable isolated access to logic signals from one circuit for use in another circuit. These components play crucial roles in signal transmission, signal conditioning, and data communication. Buffers, as the name suggests, act as signal amplifiers or isolators. They take an input signal and pass it to the output, either unchanged or inverted. Buffers are often used to clean up weak signals or drive loads that require higher current or voltage levels. They help ensure proper signal integrity and prevent signal degradation during transmission. In boolean logic simulators, buffers are commonly employed to increase the propagation delay of signals, allowing for accurate timing analysis. Logic receivers and transceivers, on the other hand, facilitate isolated communication between data buses. Receivers are designed to receive signals from a transmitting source and provide proper signal conditioning, such as level shifting and noise filtering, before delivering the signal to the receiving circuit. Transceivers, which combine the functionalities of both receivers and drivers, allow bidirectional communication, enabling data transmission in both directions on a shared bus. These components are particularly useful in scenarios where different circuits operate at different voltage levels or have varying signal requirements. By providing isolation and appropriate signal conditioning, logic buffers, drivers, receivers, and transceivers enable seamless and reliable communication between different circuit modules. In summary, logic buffers, drivers, receivers, and transceivers serve important roles in digital circuit design. They allow for isolated access to logic signals, clean up weak signals, drive loads, increase propagation delay, and facilitate communication between data buses. These components are vital in ensuring proper signal transmission and reliable data communication in digital electronic systems.