Transceiver
TOSHIBA CMOS Digital Integrated Circuit Silicon MonolithicLow-Voltage 16-Bit Bus Transceiver/Register with 3.6-V Tolerant Inputs and Outputs
The TC74VCXR162652FT is a high-performance CMOS 16-bit bus transceiver/register. Designed for use in 1.8-V, 2.5-V or 3.3-V systems, it achieves high-speed operation while maintaining the CMOS low power dissipation. It is also designed with overvoltage tolerant inputs and outputs up to 3.6 V. This device is bus transceiver with 3-state outputs, D-type flip-flops, and control circuitry arranged for multiplexed transmission of data directly from the internal registers. The 26-? series resistor h
74VCX2245 Low Voltage Bidirectional Transceiver with 3.6V Tolerant Inputs and Outputs and 26? Series Resistors in B Outputs
The VCX2245 contains eight non-inverting bidirectional buffers with 3-STATE outputs and is intended for bus oriented applications. The T/R input determines the direction of data flow. The OE input disables both the A and B ports by placing them in a high impedance state.
TFDU7100 Infrared Transceiver Module (FIR, 4 Mbit/s) for IrDA® combined with Remote Control Receiver (36 kHz to 38 kHz Carrier)
The TFDU7100 IrDA compliant transceiver is a multimedia module that supports IrDA data transfer up to 4 Mbit/s (FIR) and bidirectional Remote Control operating over a range of more than 18 m. Integrated within the transceiver are two PIN photodiodes, an infrared emitter (IRED) and two low-power control IC. It is ideal for applications requiring both Remote Control and IrDA communication.
2.5V 10/100BasTX/FX MII Physical Layer Transceiver Rev. 2.3
Operating at 2.5 volts to meet low voltage and low power requirements, the KS8721B/BT is a 10BaseT/100BaseTX/ FX Physical Layer Transceiver, which provides an MII to transmit and receive data. It contains the 10BaseT Physical Medium Attachment (PMA), Physical Medium Dependent (PMD), and Physical Coding Sub-layer (PCS) functions. Moreover, the KS8721B/BT has on-chip 10BaseT output filtering, which eliminates the need for external filters and allows a single set of line magnetics to be used to mee
Octal dual supply translating transceiver; 3-state
The 74LVC4245A is a high-performance, low-power,low-voltage, Si-gate CMOS device, superior to most advanced CMOS compatible TTL families. The 74LVC4245A is an octal dual supply translating transceiver featuring non-inverting 3-state bus compatible outputs in both send and receive directions. It is designed to interface between a 3 V and 5 V bus in a mixed 3 V and 5 V supply environment.The 74LVC4245A features an output enable input (pin OE) for easy cascading and a send/receive input (pin DIR) f
ATR2808 2.9/5.8 GHz WDCET/ISM Single-chip Transceiver
The ATR2808 is an RF IC for low-power applications in the 5.8GHz ISM band. The QFN 48-packaged IC is a complete transceiver including image rejection mixer, IF amplifier, FM demodulator, baseband filter, RSSI, TX preamplifier, power-rampling generator for power amplifiers, integrated synthesizer, fully integrated VCO and gaussian data filter for TX.
74ACT1284 IEEE 1284 Transceiver
The 74ACT1284 contains four non-inverting bidirectional buffers and three non-inverting buffers with open Drain outputs and high drive capability on the B Ports. It is intended to provide a standard signaling method for a bi-direction parallel peripheral in an Extended Capabilities Port mode (ECP).
UNDERSTANDING THE SuperJETTM TRANSCEIVER SYSTEM INTERFACE
The SuperJET system interface discussed in this docu-ment is based on IDTÂs 8 channel SuperJET transceiver (82P2288). These interface options are also applicable to the quad (82P2284), dual (82P2282) and single (82P2281)transceiver products. The SuperJET family of devices pro-vides a wide variety of different modes on the system inter-face so that it can easily and gluelessly work with microprocessors, FPGAs, Time Slot Interchange Devices,Mappers, and other devices.
Multipoint-LVDS (M-LVDS) Transceivers
The DS91C176 and DS91D176 are high-speed M-LVDS differential transceivers designed for multipoint applications with multiple drivers or receivers. Multipoint LVDS (M-LVDS) is a new bus interface standard (TIA/EIA-899) based on LVDS but including several enhancements to improve multipoint performance. M-LVDS devices have superior drive capability and can support up to 32 loads. Along with increased drive, M-LVDS devices are required to have a controlled edge rate to minimize reflections and EMI.