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Value having both magnitude and direction.


Showing results: 571 - 585 of 586 items found.

  • Trifield Meter

    100XE - Alpha Lab, Inc.

    The Trifield Meter is a gaussmeter, electric field meter, radio field strength meter in a single unit. When measuring electromagnetic fields (EMFs), the primary concern is usually magnetic fields, which can be tricky to measure. If a less sophisticated 1-axis gaussmeter is used, a reading of zero could result even where the field is strong. A 1-axis meter must be oriented correctly to measure the field (which is a vector). The 3-axis Trifield Meter solves that problem by measuring the true strength of the field regardless of which way it is oriented. Therefore, the Trifield Meter can be scanned rapidly across an area without having to stop at each point to search for the orientation that gives a maximum reading. Another section of the meter detects AC electric fields, which can exist independently of AC magnetic field. The third section detects radio/microwave, such as from a leaky microwave oven.

  • Compact Digital Receiver

    DCR822 - Lectrosonics, Inc.

    The DCR822 compact 2-channel digital receiver with analog and digital audio outputs utilizes the Lectrosonics signature digital architecture with remarkable audio quality and ultra-low latency. The receiver includes an extended operating range rivaling the best analog and Digital Hybrid Wireless® systems with continuously tunable tracking filters covering 470.100 - 614.375 MHz. The innovative Vector Diversity technology raises the bar for digital transmission integrity with two RF front ends per channel, and a unique phase-matching system. The extremely robust RF front ends of the receiver will hold up in severe RF environments and close carrier spacing, whether analog or digital. The DCR822 has a flexible output routing scheme, allowing a variety of applications including Talkback. And, a digital recorder at 24 bits, 48 kHz is included – and records up to 4 audio tracks on a front-mounted microSD card.

  • 6U VPX Board

    VP62003 - LinkedHope Intelligent Technologies Co.,Ltd.

    VP62003 is a 6U VPX board based on Intel® Xeon® D-15xx processors, with more than 7-year lifecycle. Supporting up to Intel® Xeon® D-1577 (16x 1.3GHz) processor, VP62003 is able to perform vector operation and floating point arithmetic that require high throughput. Besides, VP62003 supports Intel® Turbo Boost, with the processing speed of CPU up to 2.7GHz. The high-performance CPU and the Turbo Boost technology leave no worries for extra cost and complexity of system settings.VP62003 provides 4x Rapid I/O (SRIO) x4 for VPX Data Plane communication, 2x 8 PCIe for VPX Expansion Plane communication, 4x GbE for VPX Control Plane communication, and 2x 10Gb SFP+ in front I/O for remote data transmission and communication. Rich data exchange interfaces on VP62003 make it easy to build box-level or system-level solutions.

  • Automated Measurement Expert (AMX), VNA Plugin

    S94702A - Keysight Technologies

    The Keysight automated measurement expert (AMX) is a smart software solution for automated multiport S-parameter measurements with the PXIe vector network analyzers M937xA/M9485A or the benchtop E5080A ENA network analyzer. The S94702A AMX VNA plugin adds S-parameter measurement capabilities to the Keysight test automation platform (TAP). The combination of the TAP and the VNA plugin forms the AMX backend software, which makes the VNA setups and executes the test sequences in the PXIe controller according to the optimized test sequence files generated by the AMX test plan builder. Other instrument plugins allow you to control the DUT mode, expand the number of test ports with the PXI switches or multiport test set, and use external instruments such as a DC power supply and a digital multimeter. The AMX backend software also provides step-by-step calibration wizard for full multiport calibration using the 4-port ECal module.

  • Automatic Three Phase Transformer Ratio Meter

    ATRM PLUS - Eltel Industries

    *Fully Automatic measurement.*Wide selection of Excitation Voltages of 10V, 40V, 100V, 230V & 250V from front panel.*4V Excitation voltage provided for CT measurements*Ratio range of up to 5000; direct display of measured ratio.*No conversions required.*Automatic Jumper selecting as per the vector*Diagram of Transformer.*Automatic testing of all 3 phases in 3 phase transformers*Without manual intervention.*Displays % deviation from a nominal ratio.*External storage facility using pen drive.*Internal storage up to 10000 readings.*Touch screen 7” Color TFT display with backlighting with*Resolution of 800 X 480.*Tap changer facility.*Computer interface using RS-232 or USB.*Windows Interface software provided for data transfer.*USB printer interface.*Four terminal measurements to reduce errors due to*Winding and lead resistance.*Auto print and storage facility.Fast measurements.

  • Vibrating Sample Magnetometers (VSM)

    7400-S Series - Lake Shore Cryotronics, Inc.

    Backed and supported by over 40 years of expertise in measurement technologies, Lake Shore’s fully integrated vibrating sample magnetometers (VSMs) are used to characterize the DC magnetic properties of materials as a function of magnetic field, temperature, and time. Available in three different variable gap electromagnet configurations providing fields up to 3.42 T, Lake Shore VSM systems are sensitive, low-noise floor electromagnet-based VSMs that feature a broad temperature range capability—4.2 K to 1,273 K (-269 °C to 1000 °C). These systems measure a wide range of sample types, making them ideal tools for the most demanding materials research applications as well as quality control of magnetic materials. An assortment of options, including low temperature cryostats, a high temperature oven, a single stage variable temperature assembly, vector coils, autorotation, and an MR probe expand the functionality of Lake Shore VSM systems.

  • Single Processor VPX Payload Blade

    VP62106 - LinkedHope Intelligent Technologies Co.,Ltd.

    VP62106 is a single processor VPX payload blade based on the Intel® 3rd generation CoreTM i3/i5/i7 platform. It enables the highest performance available in 6U VPX form factor with two PCI Express 3.0 x8 lanes in the VPX Data plane for workstation and compute intense applications.Two x8 PCI Express ports with up to 8GB/s throughput offer a high performance interface to mainstream peripherals and I/O boards.With a SO-DIMM socket dual channel DDR3 design running up to 1600MT/s, the VP62106 offers the ability to fit harsh environments while maintaining maximum memory throughput and supporting memory expansion using the latest SO-DIMM technology. Moreover, the 3rd generation CoreTM processors offer increased cache size and efficiency as well as instruction set improvements which make the VP62106 a high performance compute engine with outstanding floating point and vector processing performance.

  • COM Express Compact Size Type 6 Module with 11th Gen Intel® Core™ and Celeron® Processors (formerly codename: Tiger Lake-UP3)

    cExpress-TL - ADLINK Technology Inc.

    ADLINK cExpress-TL,based on the 11th Gen Intel® Core™ i7/i5/i3 and Celeron™ processor, is the first COM Express module to support PCI Express Gen 4 at 16 GT/s, effectively doubling the bandwidth of previous generations. Additionally if features support for 2.5GbE Ethernet, leveraging existing Cat5e cable infrastructure being used for 1GbE Ethernet, it supports four USB 3.2 ports with transfer rates up to 10Gb/s. The modules have a configurable power range of 15 to 28 watts, which suits them for fanless space-constrained embedded applications. Typical industries in need of such high-performance/low-power characteristics are transport, medical, industrial automation and control, edge controllers, robotics and multi-camera-based AI. cExpress-TL features the Intel® Iris® Xe, a new graphics core, and supporting AVX-512 Vector Neural Net Instructions (VNNI) can significantly improve the number of elements processed per cycle, providing AI inferencing performance that is up to 3x that of previously available from non-VNNI platforms. Intel® Iris® Xe provides 96 execution units and is able to be configured to support two 8K independent displays or four 4K independent display (HDMI/DP/eDP). Additional support includes In-Band ECC (IBECC), providing ECC level error correction on DDR4 SODIMM memories for mission critical or rugged applications.

  • COM Express Basic Size Type 6 Module with 11th Gen Intel® Core™, Intel® Xeon® and Intel® Celeron® Processors

    Express-TL - ADLINK Technology Inc.

    ADLINK’s Express-TL COM Express Type 6 Basic size module is based on the 11th Gen Intel® Core™, Xeon® W and Celeron® 6000 processor, and is the first COM Express module to support PCI Express x16 Gen4, effectively doubling the bandwidth of previous generation COM Express modules. With a combined 8 cores, 16 threads, and up to 128GB memory, the Express-TL brings uncompromised system performance and responsiveness to your solution. Featuring brand new Gen 12 Intel® UHD Graphics and Intel® AVX-512 Vector Neural Network Instructions (VNNI), the Express-TL provides AI inferencing performance as much as 3X higher compared to previous generation non-VNNI platforms. The integrated Gen 12 Intel® UHD Graphics core can be configured to support one 8K independent display or four 4K independent displays (HDMI/DP/eDP). In addition, legacy display interfaces such as LVDS and analog VGA are still supported as build options. Key features for today’s applications are support for 2.5 GbE and USB 3.2 with transfer rates of up to 10Gb/s that can transfer image data from cameras faster than previous generation products. Combined with 8 processor cores at 25W TDP, Intel® AVX-512 VNNI, Intel® OpenVINO™ toolkit and Intel® UHD Graphics, the Express-TL is well suited for AI at the edge applications (AIoT/IoT).

  • Three-Phase Transformer Demagnetizer

    DEM60C - IBEKO Power AB

    After a DC current test, such as winding resistance measurement, the magnetic core of a power or instrument transformer may be magnetized (remnant magnetism). It can cause various problems such as wrong diagnostics, inaccurate measurements on a transformer, inrush current at the start-up of a power transformer, or incorrect operation of protective relays due to magnetized CT cores. The best way to eliminate this source of potential problems is to use demagnetizer on the power or instrument transformer.The DEM60C is a fully automatic test instrument which performs three-phase transformer demagnetization. Transformer magnetic core demagnetization requires the application of AC current with magnitude decreasing to zero. DEM60C provides this AC current by internally changing the polarity of a controlled DC current. During the demagnetization process, the instrument supplies the current at decreasing magnitude for each step, following a proprietary algorithm. It can demagnetize single-phase and three-phase power transformers.The instrument can be connected to all three phases of a power transformer to be demagnetized, on either the primary or the secondary side. If a user selects specific vector diagrams for different types of transformers, DEM60C will run a specific demagnetization procedure for each transformer type (i.e., single phase, delta, wye/star, zig-zag.) without switching the test leads.DEM60C enables safe and efficient power transformer demagnetization. The instrument automatically regulates the injection of current and discharging energy from the inductance. During and after the operation, an intrinsically safe discharge circuit with an indicator rapidly dissipates the stored magnetic energy. The discharging circuit is independent of the power supply, which improves its reliability in case of loss of power.Test currents of up to 60 A DC enable efficient demagnetization of even the largest power transformers. Using a DV Win software, it is possible to control DEM60C externally.

  • Transformer Turns Ratio Testers

    IBEKO Power AB

    Transformer turns ratio testers from TRT series are DV Power instruments mainly designed for the measurement of power transformer turns ratio. Also, they measure transformer excitation current and phase shift. Special tests, such as automatic vector group detection and magnetic balance, can be performed on three-phase transformers and three-phase autotransformers.All models, except TRT03 series, have a built-in true three-phase power source, which is necessary for testing turns ratio of transformers with special configurations, such as phase-shifting, rectifier, arc-furnace, traction transformers, etc.DV Power turns ratio testers can output various test voltages for different applications. From the extremely low test voltage of 1 V AC that enables turns ratio verification of the majority of current transformers, up to the highest test voltage of 500 V AC that provides the most accurate turns ratio testing of power transformers used in power generation and transmission. By using the external booster, test voltage increases up to 5 kV AC in order to successfully test capacitive voltage transformers.All DV Power turns ratio testers have a built-in tap changer control unit. Because of that, it is possible to control the on-load tap changer (OLTC) directly from the device. In order to make the most out of this feature, the instrument and included DV-Win software can be programmed to do everything automatically – running turns ratio tests, changing OLTC tap positions, and saving results. This option significantly facilitates and shortens the turns ratio testing time.TRT turns ratio testers use the same set of cables as three-phase winding ohmmeter & tap changer analyzers from the TWA series. Consequently, it enables one-time cable setup for performing eight tests:turns ratioexcitation currentphase anglemagnetic balancevector group detectionwinding resistanceon-load tap changer DVtestand demagnetization.

  • Turns Ratio Testers

    TRT Standard Series - IBEKO Power AB

    When it comes to choosing a transformer turns ratio tester, TRT Standard series offers some of the most advanced instruments with LCD display out in the market. Each model measures transformer excitation current and phase shift performs automatic vector group detection and magnetic balance on three-phase transformers and three-phase autotransformers. Furthermore, they have a built-in true three-phase power source. Because of that, TRT Standard instruments can test transformers with special configurations, such as phase-shifting, rectifier, arc-furnace, traction transformers, etc.The instruments can output test voltages from 1 V AC to 250 V AC, depending on the chosen model. High test voltage of 250 V AC provides more accurate turns ratio testing compared to other turns ratio testers on the market and extremely low test voltage of 1 V AC enables turns ratio verification of current transformers.TRT Standard series consists of:TRT03 Models (TRT03A, TRT03B, TRT03C) – single-phase voltage up to 100 VTRT3x Models (TRT30A, TRT30B, TRT30C, TRT33A, TRT33B, TRT33C) – single and true three-phase voltage up to 100 VTRT63 Models (TRT63A, TRT63B, TRT63C) – single and true three-phase voltage up to 250 VMore about models differences can be found under the downloads tab, in brochures and comparison sheets.A user can create test templates using the DV Win software and store them in the PC’s memory for later use when in the field.TRT Standard series models have a built-in tap changer control unit. Consequently, it enables remote control of an on-load tap changer (OLTC) directly from the tester. In order to make the most out of this feature, the DV-Win software can be programmed to do everything automatically – running turns ratio tests, changing OLTC tap positions and saving results. This option, especially in combination with test templates, significantly facilitates and shortens the turns ratio testing time.

  • Turns Ratio Testers

    TRT Advanced Series - IBEKO Power AB

    TRT Advanced series is the newest DV Power solution for transformer turns ratio measurement. Besides its main application, each turns ratio tester from this series also measures transformer excitation current and phase shift. Furthermore, all models perform automatic vector group detection and magnetic balance on three-phase transformers and three-phase autotransformers. They have a built-in true three-phase power source. For that reason, they can test transformers with special configurations, such as phase-shifting, rectifier, arc-furnace, traction transformers, etc.The instruments can output test voltages from 1 V AC to 500 V AC, depending on the model. With the highest test voltage 500 V AC, TRT500 provides the most accurate turns ratio testing of power transformers used in power generation and transmission. The output test voltage of TRT500 can be boosted to 5 kV AC using the external CVT20 extension transformer. This application is specially designed for testing turns ratio of capacitive voltage transformers. The other three models, TRT400, TRT250, and TRT100 can output up to 400 V, 250 V, and 170 V respectively. The low test voltage of 1 V AC enables turns ratio verification of current transformers.TRT500 is equipped with a large 10.1” graphical touch screen display. Other models, (TRT400, TRT250, TRT100) have 7” graphical touch screen display. Besides making the interface much more user-friendly compared to older turns ratio testers, it also brings certain options that were previously available only with DV-Win software. The most important are test templates and automatic test mode. Users can simply create test templates, store them in the instrument’s memory, and load when in the field with just a few clicks.This turns ratio test set, as well as all other DV Power turns ratio testers, has a built-in tap changer control unit. It enables remote control of an on-load tap changer (OLTC) directly from the instrument. In order to make the most out of this feature, the instrument can be programmed to do everything automatically – running turns ratio tests, changing OLTC tap positions, and saving results. This option, especially in combination with test templates, significantly facilitates and shortens the turns ratio testing time. Automatic test mode minimizes human errors, which makes the measurement more reliable.

  • OpenVPX CPU Blade with 4th Generation Intel® Core™ Processor

    MIC-6311 - Advantech Co. Ltd.

    Advantech’s MIC-6311 is a single processor VPX blade based on the 4th generation Intel® Core™ i3/i5/i7 platform. It enables the highest performance available in 6U VPX form factor with two SRIOx4 ports in the VPX data plane and two PCI Express x8 gen. 3 lanes in the VPX expansion plane for workstation and compute intense applications. The two Serial RapidIO ports offer the possibility to interface the MIC-6311 to digital front ends such as DSP and FPGA cards via a high speed, low latency deterministic interconnect. In addition, PCI Express ports with up to 8GB/s throughput offer a high performance interface to mainstream peripherals and IO cards. With a SO-DIMM socket and additional soldered, onboard DRAM with ECC in a dual channel design running up to 1600MT/s, the MIC-6311 offers the ability to fit harsh environments while maintaining maximum memory throughput and supporting memory expansion using the latest SO DIMM technology. Moreover, the 4th generation Intel® Core™ processors offer increased cache size and efficiency as well as instruction set improvements which make the MIC-6311 a high performance compute engine with outstanding floating point and vector processing performance. Tailored for rugged environments, MIC-6311 has been designed to support ruggedized convection cooled heat sinks. Additionally, it implements an onboard soldered, industrial SSD for maximum reliability. By using the latest powerful PCH (Lynx Point) from Intel®, with its advanced SATA controller advanced storage options are supported such as a 2.5" SATA III HDD/SSD socket offering high storage capacity with up to 6Gbps transfer speed. A CFast socket provides an alternative for implementing a cost efficient, pluggable SSD. An onboard XMC/PMC site with PCIe x8 gen.3 connectivity can host high speed offload or I/O mezzanines. Two USB 3.0 ports in front panel can connect to the external devices with up to 5Gbps data rate. Network and remote connectivity can be achieved via a RS232 console (RJ45) and two GbE RJ45 ports, powered by Intel®’s latest Gigabit Ethernet Controiller, the i350. The processor’s integrated enhanced graphics engine Iris offers up to 2x the graphic performance compared to previous generation solutions. Triple independent display support can be implemented by using the MIC-6311’s VGA front panel port and two Display port / HDMI interfaces on rear transition modules. Audio port support via the backplane interface enhances media support. Three SATA ports (SATAIII) and four USB ports (2x USB 3.0, 2x USB 3.0) are also connected to backplane to fulfill the demand for extra IO ports or storage. Two GbE/ SERDES ports support system level IP connectivity and two UART interfaces can be leveraged to interface to legacy devices and consoles.

  • OpenVPX CPU Blade with 4th/ 5th Generation Intel® Core™ Processor

    MIC-6313 - Advantech Co. Ltd.

    The MIC-6313 is Advantech’s next generation single processor 6U VPX blade, based on the 4th/ 5th Generation Intel® Core™ and Intel® Xeon® Processor E3 Lv4 embedded platform. To enable the highest performance available in the 6U VPX form factor for workstation and compute intense applications, the four Serial RapidIO ports in the VPX data plane offer high speed up to 5Gb/s, low latency, scalable, error recoverable deterministic interconnectivity to digital front ends such as DSP and FPGA cards. In addition, two PCI Express ports x8 lanes in the VPX expansion plane, with up to PCI Express gen. 2 (5Gb/s) throughput offer a high performance interface to mainstream peripherals and I/O cards. With a SO-DIMM socket and additional soldered, onboard DRAM with ECC in a dual channel design running up to 1600MT/s, the MIC-6313 can be integrated into various harsh environments while maintaining maximum memory throughput, and supports memory expansion by using the latest SO-DIMM technology simultaneously. In addition, the 4th/ 5th generation Intel® Core™ and Xeon® E3 Lv4 embedded processors offer increased cache size and efficiency, as well as instruction set improvements, which make the MIC-6313 a high performance compute engine with outstanding floating point and vector processing performance. Tailored for harsh environments, the MIC-6313 has a native ruggedized convection cooled heat sink adaptable to various chassis environments; with the alternative optional air cooled heat sink, additional I/O is provided on the front panel. An onboard soldered, industrial SSD is included for maximum reliability, and a CFast/ SSD socket is also available for a costefficient, modular storage. By using Intel®’s powerful PCH (Lynx Point) with its advanced SATA controller, the MIC-6313 offers high storage capacity at up to 6Gbps transfer speed. An onboard XMC site with PCIe x8 gen.3 connectivity can host high speed offload or I/O mezzanines. Two USB 3.0 ports on the front panel can connect to external devices with up to 5Gbps data rate. Network and remote connectivity can be achieved via a RS-232 console (RJ-45) and two GbE RJ-45 ports, powered by Intel®’s latest Gigabit Ethernet controller. The next generation graphics engine Intel® Iris Pro offers up to 2x the graphic performance compared to previous generation solutions. Triple independent display support can be implemented by using the MIC-6313’s DVI front panel port and two DVI interfaces on rear transition modules. Audio is powered by a ALC892 controller via the backplane interface, and provides media support. Four SATA ports (SATAIII) and four USB ports (2x USB 3.0, 2x USB 3.0) are also connected to the backplane to fulfill the demand for extra IO ports or storage. Four GbE ports (two SERDES selectable) support system level IP connectivity, and four UART interfaces (RS232/422/485 selectable) can be leveraged to interface to legacy devices and consoles.

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