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Data Communications

The transmission of information.

See Also: Communication Protocol, Near Field Communications, Modbus


Showing results: 436 - 450 of 669 items found.

  • PXIe-1486, 8 Input, 8 Output, or 4 Input/4 Output PXI FlexRIO FPD-Link™ Interface Module

    787455-01 - NI

    The PXIe-1486 combines the Texas Instruments Flat Panel Display Link™ (FPD-Link™) interface with the Xilinx FPGA for high-throughput vision and imaging applications. This module provides a high-speed digital interface for using and testing modern advanced driver assistance systems (ADAS) and autonomous drive (AD) camera sensors and electronic control units (ECUs). Additionally, the PXIe-1486 makes use of a combination of FPD-Link™ serializers and deserializers with a Xilinx FPGA to provide a high-throughput and customizable FPD-Link™ interface on PXI. The included FlexRIO driver, with LabVIEW FPGA examples, provides access and control for power-over-coax, I²C back-channel communication, and general-purpose input/output (GPIO) communication on the FPD-Link™ channels. The PXIe-1486 is ideal for applications such as in-vehicle data logging, lab-based playback, or hardware-in-the-loop (HIL). FPD-Link is a trademark of Texas Instruments.

  • PXIe-1486, 8 Input, 8 Output, or 4 Input/4 Output PXI FlexRIO FPD-Link™ Interface Module

    787454-01 - NI

    The PXIe-1486 combines the Texas Instruments Flat Panel Display Link™ (FPD-Link™) interface with the Xilinx FPGA for high-throughput vision and imaging applications. This module provides a high-speed digital interface for using and testing modern advanced driver assistance systems (ADAS) and autonomous drive (AD) camera sensors and electronic control units (ECUs). Additionally, the PXIe-1486 makes use of a combination of FPD-Link™ serializers and deserializers with a Xilinx FPGA to provide a high-throughput and customizable FPD-Link™ interface on PXI. The included FlexRIO driver, with LabVIEW FPGA examples, provides access and control for power-over-coax, I²C back-channel communication, and general-purpose input/output (GPIO) communication on the FPD-Link™ channels. The PXIe-1486 is ideal for applications such as in-vehicle data logging, lab-based playback, or hardware-in-the-loop (HIL). FPD-Link is a trademark of Texas Instruments.

  • PXIe-1486, 8 Input, 8 Output, or 4 Input/4 Output PXI FlexRIO FPD-Link™ Interface Module

    787453-01 - NI

    The PXIe-1486 combines the Texas Instruments Flat Panel Display Link™ (FPD-Link™) interface with the Xilinx FPGA for high-throughput vision and imaging applications. This module provides a … high-speed digital interface for using and testing modern advanced driver assistance systems (ADAS) and autonomous drive (AD) camera sensors and electronic control units (ECUs). Additionally, the PXIe-1486 makes use of a combination of FPD-Link™ serializers and deserializers with a Xilinx FPGA to provide a high-throughput and customizable FPD-Link™ interface on PXI. The included FlexRIO driver, with LabVIEW FPGA examples, provides access and control for power-over-coax, I²C back-channel communication, and general-purpose input/output (GPIO) communication on the FPD-Link™ channels. The PXIe-1486 is ideal for applications such as in-vehicle data logging, lab-based playback, or hardware-in-the-loop (HIL). FPD-Link is a trademark of Texas Instruments.

  • Wave Buoy

    MOTUS - Aanderaa Data Instruments AS

    The MOTUS (movement in Latin) Wave Buoy is a perfect solution for collecting environmental data in coastal areas.Collect reliable environmental data with MOTUS Wave Data Buoy.The MOTUS (movement in Latin) Buoy is a perfect solution for collecting environmental data in coastal areas for all-year deployments. The platform used for collecting data is a robust buoy which has proven to be an excellent platform for providing high accuracy and reliable meteorological and oceanographic data. The wave buoy can effectively combine various Hydrological and Meteorological parameters. Basic parameters such as wind, waves, and currents can easily be expanded to include sensor packages with different water quality sensors. Data is controlled and synchronized by the data management systems that Xylem Analytics offers, which also controls and powers real-time communication. This provides a low-power efficient system offering long-term deployment capabilities.The MOTUS Wave Buoys combine our ultra-low power and field-proven solutions from developing oceanographic and water quality sensors. We have 60 years of experience operating in the industry, providing you with an optimal platform based on the buoy, a rugged, lightweight polyethylene buoy deployed in more than 40 countries all over the world. By selecting Xylem as your partner in your projects, you are on track for the lowest overall cost of ownership and a versatile platform that can be tailored to your needs. The MOTUS Buoy is developed for both scientific and commercial use.

  • Ethernet

    Teledyne LeCroy

    Ethernet, arguably the most common communication protocol on the planet, continues to spread into new markets and incorporates new protocols; it presents today’s Ethernet engineers with host of new test and validation challenges. Specifically, the increasing adoption of lossless Ethernet standards like FCoE, RoCE, and NVMf and increases in the line-rates of Ethernet from 10GbE and soon to 100Gb/s to name a few.These new physical and logical communications standards have exposed legacy test tools as outdated and incomplete for Ethernet product developers and the ecosystem. Teledyne LeCroy is addressing these needs by leveraging our extensive experience in high-speed serial data analysis tools currently used by many of the same companies developing products for NAS, SAN, LAN, and other high-speed protocol environments.The SierraNet Family of Ethernet test platforms provides best in class traffic capture, analysis, and manipulation for testing physical link characteristics and application operations. SierraNet is designed for addressing today’s high-speed storage and communications network problems and compliments other tools offering industry leading visibility and utility.

  • Four And Two-Port Multi-Protocol RS-232/422/485 M.2 Cards

    M.2-COM-4SM Family - Acces I/O Products, Inc.

    The M.2-COM-4SM family of cards feature high performance 16C950-class UARTs. Available in 4-port and 2-port versions, each port is capable of communication speeds up to 921.6kbps in RS-232 (differential modes support speeds as high as 3Mbps) and has 128-byte deep transmit and receive FIFOs. Large FIFOs protect against data loss in multitasking operating systems, reduce CPU utilization, and improve data throughput, while reducing or eliminating inter-character or inter-packet pauses. The advanced integrated circuit with pre-scalar supports a wide variety of custom baud rates, and any rates not otherwise achievable can be supported via a custom factory-installed crystal oscillator (up to 10Mbps!).

  • Four And Two-Port Multi-Protocol RS-232/422/485 PCI Express Mini Cards

    mPCIe-COM-4SM Family - Acces I/O Products, Inc.

    The mPCIe-COM-4SM family of cards feature high performance 16C950-class UARTs. Available in 4-port and 2-port versions, each port is capable of communication speeds up to 921.6kbps in RS-232 (differential modes support speeds as high as 3Mbps) and has 128-byte deep transmit and receive FIFOs. Large FIFOs protect against data loss in multitasking operating systems, reduce CPU utilization, and improve data throughput, while reducing or eliminating inter-character or inter-packet pauses. The advanced integrated circuit with pre-scalar supports a wide variety of custom baud rates, and any rates not otherwise achievable can be supported via a custom factory-installed crystal oscillator (up to 10Mbps!).

  • PCI-8531, 1-Port, CANopen Interface Device

    781060-01 - NI

    The PCI‑8531 is a high-speed CANopen interface for developing applications with the NI‑Industrial Communications for CANopen driver. CANopen is the application layer that sits on top of the CAN physical layer often used for industrial automation … applications. CANopen was designed for motion-oriented machine control networks, such as handling systems, but now it is used in a variety of products and applications, including medical equipment, off-road vehicles, maritime electronics, public transportation, and building automation. The PCI‑8531 can transmit or receive process data objects (PDOs) and service data objects (SDOs) according to CiA‑DS 301. It also features a batch SDO editor with EDS file integration and LSS services support for slave node configuration.

  • Datalogger

    OBDII - Danlaw, Inc.

    Automotive standards are demanding. For more than three decades, we’ve engineered, manufactured, and tested embedded software, electronics, and vehicle network communications for the world’s largest automotive manufacturers and suppliers. We’ve designed and built DataLogger to exceed these standards. We’ve tested it thoroughly with billions of miles of vehicle data collected from one of the largest cross-sections of vehicles in the world. So when we say you’re getting the best device on the market, you can hold us to that.

  • SD, SDIO, eMMC Protocol Analyzer and Exerciser

    PGY-SSM - Prodigy Technovations Pvt. Ltd.

    SD Protocol Analyzer, SDIO Protocol Analyzer and eMMC Protocol Analyzer (PGY-SSM) are the Protocol Analyzers with multiple features to capture and debug communication between host and design under test. SD, SDIO and eMMC Protocol Analyzer supports SD, SDIO and eMMC for data rates up to 200MHz (HS400) DDR mode. SD, SDIO and eMMC Protocol Analyzer is industry’s first eMMC protocol analyzer that supports version 4.41, 4.51, 5.0 and 5.1 specifications.

  • SparkFun LTE GNSS Breakout

    SARA-R5 - SparkFun Electronics

    The SparkFun SARA-R5 LTE GNSS Breakout is a robust development tool for u-blox's impressive SARA-R510M8S module. The SARA-R510M8S combines u-blox's UBX-R5 cellular chipset with their M8 GNSS receiver chipset to provide a 5G-Ready wireless IoT device complete with positioning data all on a single chip. As an asset tracker, the LTE GNSS Breakout offers Secure Cloud LTE-M communication for multi-regional use and has an integrated u-blox M8 GNSS receiver for accurate positioning information.

  • 1310/1490/1550 Nm DFB-LD For Fiberoptic Communications

    Renesas Electronics Corp.

    RV2X6376A Series of directly modulated laser (DML) diodes deliver 25 Gbps x four wavelengths as the light source in 100 Gbps optical transceivers that enable high-speed communications inside 4.9G and 5G LTE base stations, and between data center routers and servers. The RV2X6376A Series are the industry’s first industrial-temperature (-40°C to 95°C) DML diodes that support full 25 Gbps speed (per individual laser) without cooling.

  • Handheld Cable Fault Locator

    TM800H - T&M Tools Limited Co

    TM800H Handheld Cable Fault Locator adopts TDR (Time Domain Reflection), new signal process and data collection technology. It can locate the distance of cable break and mix faults accurately. TM800H can be widely used in the communication installation, maintenance and general wiring. It can troubleshoot not only the local Telco-cable, but also Network cable. Its high sampling rate makes the measurement dead zone as narrow as 1 meter. This makes it a straightforward, user-friendly test solution.

  • In-Line Spectroscopic Ellipsometer for Web Coater and Roll to Roll Systems

    UVISEL - HORIBA, Ltd.

    The UVISEL Spectroscopic Phase Modulated Ellipsometer is a turn-key thin film metrology instrument for in-line measurement of thin film thickness and optical properties. It features rapid measurement capability with data acquired every 50 ms for powerful control of thin film uniformity across the entire web.The design of the UVISEL ellipsometric heads allows simple integration into roll-to-roll systems, while the software provides advanced communication capabilities suited to roll-to-roll production.

  • Modular Redundant Power Supply Systems

    Acopian Technical Company

    Extremely high overall reliability results from connecting two power sources so that one will continue to provide power to their load even if the other becomes inoperative. Redundancy may be restored by replacing or repairing the inoperative source while the system remains in operation. A redundant power system should be used whenever the highest attainable reliability is essential, as in communications, computer systems (data storage in particular), process controls, utility and municipal systems, and security/safety systems.

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