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Showing results: 196 - 204 of 204 items found.

  • PXIe-8623, 4-Port, 100/1000BASE-T PXI Automotive Ethernet Interface Module

    787992-01 - NI

    PXIe, 4-Port, 100/1000BASE-T PXI Automotive Ethernet Interface Module - The PXIe-8623 is a 100/1000BASE-T unshielded twisted pair (UTP) PXI Automotive Ethernet Interface Module that helps you develop applications with the NI‑XNET driver. With the PXIe-8623, you can develop applications that require Ethernet to test and validate automotive electronic control units (ECUs). The PXIe-8623 provides up to four independent endpoints or up to two network terminal access points (TAPs). It features onboard hardware timestamping and can act as up to four separate 802.1AS masters or slaves, making synchronization with an external network as well as the rest of a PXI system possible. Additionally, the PXIe-8623 features LEDs on the front panel to help you monitor the network link and activity.

  • PXIe-8523, 4-Port, 100/1000BASE-T1 PXI Automotive Ethernet Interface Module

    787311-01 - NI

    PXIe, 4-Port, 100/1000BASE-T1 PXI Automotive Ethernet Interface Module - The PXIe-8523 is a 100/1000BASE-T1 unshielded twisted pair (UTP) PXI Automotive Ethernet Interface Module for developing applications with the NI‑XNET driver. With this hardware, you can develop applications … that require Automotive Ethernet to test and validate automotive electronic control units (ECUs). The PXIe-8523 provides up to four independent endpoints or up to two network terminal access points (TAPs). It features onboard hardware timestamping and can act as up to four separate 802.1AS masters or slaves, so it can synchronize with an external network as well as the rest of a PXI system. The PXIe-8523 also provides LEDs on the front panel to help you monitor the network link and activity.

  • Burner Control Flame Sensors

    SPECTRA BC11 IR and BC11 UV - Ametek Power Instruments

    The SPECTRA™ BC (burner control) sensors are extremely robust, compact, solid-state optical flame sensors that offer a host of features and provide maximum performance and reliability. SPECTRA flame sensors feature IR or UV detectors making them suitable for a wide variety of fuels, including coal, oil and gas. These units are 100% solid-state which enable the SPECTRA BC11 to be among the most compact industrial flame sensors available. There are no tubes or shutters to fail. Installation is simplified as the loop powered design only requires a single twisted pair cable for wiring connections. The 4-20 mA analog output provides direct connection to burner management systems eliminating the need for separate signal conditioners. High-temperature electronics enables the sensor to function at elevated operating temperatures.

  • TCS Comfort

    Maschinenbau Haldenwang GmbH & Co. KG.

    Trip distance / tachograph meter integrated into the brake tester (only in conjunction with PC)Electronic control unit TCS shockproof (workshop-oriented) aluminum housing with connection D-Sub 25p / D-Sub 9pEntire operation via integrated time and data display, and your existing PC (OS: Windows).Complete measurement and programming of the tachograph types 1311, 1314, 1318, 8400, FTCO 1319 MTCO 1324, TVI 2400, SE 5000, EFAs, SmarTach, DTCO 1381 incl. Integrated dial measurementLCD 4 rows, 16 digits; backlit with an integrated smart card readerMobile and / or stationary usable instrument; used stationary as integrated into the brake tester and the computer; optionally a road measurement is possible.Expression of complete test reportData storage for customer and vehicle datamultilingualism

  • Multi-Channel, Programmable Current Source

    CS-48-100 - Hypres, Inc.

    The Model CS-48-100 is a multi-channel, programmable current source. Developed for both semiconductor and digital superconductor electronics, it is computer-controlled and features 48 low noise current source outputs. Each source output has the capability to both set and read back currents and can be set to a zero current high Z mute state. Each of the 48 sources are optically coupled for control and are sourced from their own secondary winding for complete galvanic isolation. The device consumes a maximum of only 80 W and handles a maximum load current of 4.8 A total over all outputs. Operating over a range of 0-100 mA on each channel, the device features accuracy of +/-25 ?A. The mute state can be set thru a rear panel interlock or from the front panel button for maximum circuit protection. The unit can be mounted in a standard-sized rack.

  • 256-Element Active Antenna Innovator’s Kit

    AWA-0142 - Anokiwave Inc.

    The AWA-0142 is an active array for 5G wireless applications developed using planar antenna technology resulting in a very low profile, lightweight unit. The surface mount assembled antenna board is based on Anokiwave’s AWMF-0135 Silicon Quad Core IC and demonstrates the performance achievable using low power silicon integration and efficient antenna layout and design. Using the AWMF-0135, the antenna provides +60dBmi (1000 W) of EIRP. The electronic 2D beam steering is achieved using analog RF beam forming, with independent phase and gain control in both Tx and Rx operating modes. The AWA-0142 antenna leads the way in showing how 5G coverage can be rolled out by network operators using the mmW bands, with low power footprint and high energy efficiency, while meeting key operating specifications for data rate, latency, coverage, and reliability.

  • 5G 256-Element Active Antenna Innovator’s Kit

    AWA-0134 - Anokiwave Inc.

    The AWA-0134 is an active array for 5G wireless applications developed using planar antenna technology resulting in a very low profile, lightweight unit. The surface mount assembled antenna board is based on Anokiwave’s AWMF-0108 Silicon Quad Core IC and demonstrates the performance achievable using low power silicon integration and efficient antenna layout and design. Using the AWMF-0108, the antenna provides +60dBmi (1000 W) of EIRP. The electronic 2D beam steering is achieved using analog RF beam forming, with independent phase and gain control in both Tx and Rx operating modes. The AWA-0134 antenna leads the way in showing how 5G coverage can be rolled out by network operators using the mmW bands, with low power footprint and high energy efficiency, while meeting key operating specifications for data rate, latency, coverage, and reliability.

  • Conductive Footwear Tester

    SLTM-1 - Walter G. Legge Company Inc.

    SLTM-1 Conductive Footwear Tester checks conductive footwear automatically. The SLTM-1 Conductive Footwear Tester automatically and accurately measures the exact amount of resistance in conductive footwear and body grounding devices, ensuring a static control environment. It is ideal for dangerous, potentially explosive areas or areas in the electronic industry where static can destroy sensitive components. Stand on the foot plates and the unit’s direct-reading dial with graduated, color-coded scale indicates the exact amount of resistance. Shipped complete and ready to operate. Has 8 feet of 18-3 type SJ power cord that plugs into any grounded 120-volt AC power source. This unit measures 17 x 12 inches and weighs less than 6 1/2 lbs. All conductive footwear and body grounding devices, such as LEGSTATS, must be worn in pairs. SLTM-1 passes conductive footwear with resistance less than 2.5 MEG Ohm.

  • 5G Active Antenna Innovator’s Kit

    AWMF-0129 - Anokiwave Inc.

    The AWMF-0129 is an active array for 5G wireless applications developed using planar antenna technology resulting in a very low profile, lightweight unit. The surface mount assembled antenna board is based on Anokiwave’s AWMF-0108 Silicon Quad Core IC and demonstrates the performance achievable using low power silicon integration and efficient antenna layout and design. Using the AWMF-0108, the antenna provides +50dBmi output power while consuming just 12W DC power in the RF circuits and has achieved Gb/s data rates in OTA trials. The electronic 2D beam steering is achieved using analog RF beam forming, with independent phase and gain control in both Tx and Rx operating modes. The AWMF-0129 antenna leads the way in showing how 5G coverage can be rolled out by network operators using the mmW bands, with low power footprint and high energy efficiency, while meeting key operating specifications for data rate, latency, coverage, and reliability.

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