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Network Monitoring

Observe and analyze network communications to detect abnormal activity.

See Also: TAPs, SNMP


Showing results: 256 - 270 of 306 items found.

  • Cyber Protection System

    Raytheon Company

    Raytheon’s Cyber Protection System enables enterprises to go beyond traditional CSOC monitoring and establish a response center capable of situational awareness, proactive defense and rapid response. Cyber test ranges: Test the cyber resilience of hardware, software, and networks. Penetration/Malware/Forensics Fly Away Kits: Provide mobile environments to perform testing and analysis at remote facilities. Lab environments: Analyze malware, perform penetration testing and conduct forensics at enterprise scale so analysts can determine the best way to manage them.

  • sbRIO-9862, Non-Enclosed, 1-Port, High-Speed, Flexible Data Rate C Series CAN Interface Module

    785963-01 - NI

    Non-Enclosed, 1-Port, High-Speed, Flexible Data Rate C Series CAN Interface Module—The sbRIO‑9862 is a high-speed Controller Area Network (CAN) Flexible Data‑rate (FD) interface for developing applications with the NI‑XNET driver. The sbRIO‑9862 excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals, such as hardware‑in‑the‑loop simulation, rapid control prototyping, bus monitoring, automation control, and more. The sbRIO‑9862 is only compatible with CompactRIO systems. Non-enclosed modules are designed for OEM applications.

  • Trace-Level UV Fluorescence SO2 Analyzer

    Model T100U - Teledyne Advanced Pollution Instrumentation

    The Model T100U Trace-level SO2 analyzer has been developed specifically to address the challenges of low level monitoring as required, for example, in the US NCore network. It uses the proven UV fluorescence principle, and is designed to allow ultra-sensitive SO2 measurements while still meeting the requirements for use as a US EPA compliance analyzer.The analyzer uses both the light and dark phases of the pulsed UV light source to continuously detect and correct for electronic noise, giving exceptionally stable and sensitive performance. A separate UV detector allows the instrument to continuously correct for variations in lamp intensity. Exceptional stability is achieved with the use of an optical shutter to compensate for PMT drift, and a reference detector to correct for changes in UV lamp intensity. A hydrocarbon "kicker" and advanced optical design combine to prevent inaccuracies due to interferents.

  • 4MP QUAD HD and 4K ULTRA HD Cameras

    FLIR Quasar™ Premium Bullet - Teledyne FLIR

    FLIR designed the Quasar Premium Bullet for vigilant situational awareness in the most demanding environments and for capturing critical evidential and forensic video. Available in 4MP QHD or 4K UHD, Quasar Premium Bullet cameras deliver superior image quality and IR-illumination for exceptional performance. They’re ideal for critical infrastructure sites, remote facilities, or any large areas requiring close monitoring. Quasar premium cameras are fully NDAA-compliant, come equipped with high-end cybersecurity safeguards, and use low bandwidth. Compatibility with the FLIR eco-system of accessories as well as the ability to operate more cameras on the same network both contribute to a lower total cost of ownership. Seamless integration with a wide range of video management systems, including United VMS provides an open, true end-to-end solution.

  • Battery Monitoring System

    iPQMS-C128 - Eagle Eye Power Solutions

    The iPQMS is the premier battery monitoring system in Eagle Eye's IBwatch-Series. It ensures backup power systems are optimally maintained in large-scale environments. The iPQMS is the main processing unit that measures up to 448 jars (or 448 cells) utilizing up to seven Relaying Units (RU). Each RU connects up to 64 jars (or 64 cells) and captures data from these batteries and sends it to the MPU in real-time. The iPQMS can be used over a private network via TCP/IP, or locally with RS-232. Networked systems can utilize SMS/Email alerts during an alarm outbreak. If you do not wish to use our Battery Management Software, Modbus protocol is available for third-party integration. Flexible expanding solutions allow multiple iPQMS units to monitor all your systems in real-time.

  • Battery Monitoring System

    IPQMS-C64 - Eagle Eye Power Solutions

    The iPQMS is the premier battery monitoring system in Eagle Eye's IBwatch-Series. It ensures backup power systems are optimally maintained in large-scale environments. The iPQMS is the main processing unit that measures up to 448 jars (or 448 cells) utilizing up to seven Relaying Units (RU). Each RU connects up to 64 jars (or 64 cells) and captures data from these batteries and sends it to the MPU in real-time. The iPQMS can be used over a private network via TCP/IP, or locally with RS-232. Networked systems can utilize SMS/Email alerts during an alarm outbreak. If you do not wish to use our Battery Management Software, Modbus protocol is available for third-party integration. Flexible expanding solutions allow multiple iPQMS units to monitor all your systems in real-time.

  • Unified Satellite Phone Monitoring System

    Shoghi Communications Ltd.

    Unified Satellite Phone Monitoring System is designed to intercept Voice, SMS and Text traffic from Satellite Phones operating on Thuraya, Iridium and IsatPhone Pro Satellite networks. The system is pre-integrated & pre-configured in a compact ruggedized transportable casing for plug and play operations. It intercepts the signals from L-band uplink (from Satellite Phones to Satellites) and downlink (from Satellite to Satellite Phones) to provide the duplex calls up to 15 Kms with LOS and beyond that simplex calls. System is equipped state-of-the-art high performance Thuraya and IsatPhone Pro decryption module , Iridium proprietary protocol module to provide processed intelligible output in the form of Voice, SMS and Text along with session related information such as Called Phone Number (for session initiated by Satellite Phone),Caller ID, TMSI/IMSI/IMEI and geo-location

  • I2C Bus Monitor - USB

    Model JI-216 - Jupiter Instruments

    The JI-216 I2C Bus Monitor is a low cost, easy-to-use PC hosted instrument specificallydesigned for troubleshooting and debugging I2C networks. The JI-216''s FPGA basedarchitecture provides for the capture and display of all valid or invalid messages and I2Cbus events. Captured I2C messages are available for display in two modes: real-timestreaming, or triggered. These modes provide optimized data display for either hardwareor software development. The SDA/SCL timing display aids in tracking down and solvinghardware timing problems. JI-216''s broad bandwidth (DC 3.4Mbits/s), wide input signalrange (0 15.0V), and variable signal filtering provides flexibility in monitoring a variety ofI2C bus systems. An intuitive Windows application manages instrument setup andcontrol. Communications and unit power is provided via a USB 2.0 link.

  • USB-8502, 1-Port, High-Speed/FD, USB CAN Interface Device

    784661-01 - NI

    1- or 2-Port, High-Speed/FD, USB CAN Interface Device—The USB-8502 is a high-speed controller area network (CAN) interface for developing applications with the NI‑XNET driver. The USB‑8502 is powered over the USB bus and does not require external power. It excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals such as bus monitoring, automation control, and more. The NI‑XNET device‑driven DMA engine enables the onboard processor to move CAN frames and signals between the interface and the user program without CPU interrupts, minimizing message latency and freeing host processor time for processing complex applications. The USB‑8502 is available with a three‑pin COMBICON synchronization connector for triggering and synchronizing the internal hardware timebase with other devices.

  • USB-8502, 2-Port, High-Speed/FD, USB CAN Interface Device

    784662-01 - NI

    1- or 2-Port, High-Speed/FD, USB CAN Interface Device—The USB-8502 is a high-speed controller area network (CAN) interface for developing applications with the NI‑XNET driver. The USB‑8502 is powered over the USB bus and does not require external power. It excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals such as bus monitoring, automation control, and more. The NI‑XNET device‑driven DMA engine enables the onboard processor to move CAN frames and signals between the interface and the user program without CPU interrupts, minimizing message latency and freeing host processor time for processing complex applications. The USB‑8502 is available with a three‑pin COMBICON synchronization connector for triggering and synchronizing the internal hardware timebase with other devices.

  • USB-8506, 1-Port, USB LIN Interface Device

    784663-01 - NI

    1- or 2-Port, USB LIN Interface Device—The USB‑8506 is a Local Interconnect Network (LIN) interface for developing applications with the NI‑XNET driver. The USB‑8506 is powered over the USB bus and does not require external power. The USB‑8506 excels in applications requiring logging or manipulation of hundreds of LIN frames and signals, such as in-vehicle data logging, bus monitoring, automation control, and more. The NI‑XNET device-driven DMA engine enables the onboard processor to move LIN frames and signals between the interface and the user program without CPU interrupts, minimize message latency, and free host processor time. The USB‑8506 is available with a three‑pin COMBICON synchronization connector for triggering and synchronizing the internal hardware timebase with other devices.

  • USB-8506 , LIN Interface Device

    784664-01 - NI

    1- or 2-Port, USB LIN Interface Device—The USB‑8506 is a Local Interconnect Network (LIN) interface for developing applications with the NI‑XNET driver. The USB‑8506 is powered over the USB bus and does not require external power. The USB‑8506 excels in applications requiring logging or manipulation of hundreds of LIN frames and signals, such as in-vehicle data logging, bus monitoring, automation control, and more. The NI‑XNET device-driven DMA engine enables the onboard processor to move LIN frames and signals between the interface and the user program without CPU interrupts, minimize message latency, and free host processor time. The USB‑8506 is available with a three‑pin COMBICON synchronization connector for triggering and synchronizing the internal hardware timebase with other devices.

  • Data Management and Reporting Software

    Eco-WEB - HORIBA, Ltd.

    HORIBA’s data management and reporting software for use in Ambient Air Quality and Meteorological monitoring. The software package provides data collection, management, analysis and reporting. Measured data and related information is stored in a high-end rational SQL database. The software can be used stand-alone or run on several machines in a network operating in Microsoft Windows environment. Communication between Central & Remote Stations works with a wide variety of communication links, such as direct connections, short haul modems, telephone (including cellular) and multi-drop. Data can be transferred to and presented in Internet pages according to customers requirements.

  • Gas Filter Correlation CO Analyzer

    Model T300U - Teledyne Advanced Pollution Instrumentation

    The Model T300U Trace-level CO analyzer has been developed specifically to address the challenges of low level monitoring as required, for example, in the US NCore network. Using IR absorption with a Gas Filter Correlation Wheel, the T300U is designed to allow ultra-sensitive CO measurements while still meeting the requirements for use as a US EPA compliance analyzer.The optical bench is enclosed in a temperature controlled oven, dramatically decreasing instrument noise and drift. The objective and field mirrors in the sample cell are gold plated to maximize signal to noise performance, while a temperature-controlled Nafion dryer on the inlet minimizes water interference caused by ambient humidity changes. Periodically, the T300U seamlessly corrects its baseline by routing the sample through a heated catalytic CO scrubber. This Auto Reference function corrects zero drift and reduces the effect of interferences.

  • Launch Fiber Box

    Diamond SA

    OTDR measuring devices are used in various ways in fibre optic technology. They enable extensive characterisation of existing fibre optic cabling networks. The use of launch and receive fibres is advantageous when it comes to ensuring precise results evaluations. With bidirectional backscatter measurements with launch and receive fibres, the attenuation values of the first and last plug-in connection can be determined precisely by averaging and device dead zones can be avoided. Measuring device manufacturers recommend different lengths of launch and receives fibres to avoid “phantom reflections”. These launch and receive fibres are also subject to measuring equipment monitoring and should regularly undergo revision in accordance with the OTDR measuring devices. A good measurement result depends on the state and quality of the measuring equipment used. Diamond offers various types of launch and receive fibres, one with standard telecommunications connectors and the other with an outdoor connector for harsh environments.

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