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  • COM Express Type 6 Basic Module With 5th Gen Intel® Core™ I7 & 4th Intel® Core™ I7/i5/i3 & Celeron® Processor And Intel® QM87

    CEM880 - Axiomtek Co., Ltd.

    The CEM880 COM Express Type 6 basic module features 5th generation Intel® Core™ processor (H-processor line), one onboard 4 GB extended temperature DDR3L chip, and one 204-pin SO-DIMM DDR3L socket supporting up to 8 GB. With outstanding computing performance, low power consumption, wide temperature range, and seismic design, the rugged basic-size SoM (system on module) drives Internet of Things innovation and is ideal for graphics-intensive and rich I/O applications such as telecommunication, medical imaging, digital signage, gaming machines, military, and networking.

  • Proximity

    ams AG

    Proximity detection sensors measure reflected infrared (IR) energy to detect the presence of an object or person. The devices include an integrated LED driver and, in some devices, an integrated LED. The proximity detection devices provide four programmable LED drive currents and IR pulse repetitions. The proximity detection circuitry compensates for ambient light, allowing it to operate in environments ranging from bright sunlight to dark rooms. The wide dynamic range allows operation in short-distance detection applications behind dark glass, such as mobile phones. Proximity detection sensors can be used to replace a mechanical switch or to sense human gestures.

  • Fiber Optic Transmission Systems

    B-1020-B - ROSS ENGINEERING CORPORATION

    Ross Engineering Corporation has developed a HV compact analog fiber optic transmitting and receiving system, with optional over-voltage limiting, designed to drive instrumentation from a DC to 1MHz signal source. The system is available with optional multiple input and output ranges of ±0-1V PK, 0-5V PK to 0-10V PK. It will also operate in conjunction with Ross Engineering Corporation’s high accuracy high voltage wideband voltage dividers, which are useful from DC to over 10MHz up to 1,000,000V PK at 0.01% to 3% accuracy. Transmitters and receivers can be powered by either AC or DC.

  • Resonant Chopper Systems

    Electro-Optical Products Corp.

    An external clock signal, to provide an ultra stable modulating optical beam motion [sub] system. The system can be used as a "stand alone" unit, in the laboratory, or can be incorporated into a larger instrument/system. The chopper is ONE FIXED FREQUENCY, picked from the range of 5 Hz to 20 kHz. The chopper is a small size, light weigh, low cost and long life device. It requires low power drive electronics and does not radiate electromagnetic interference (EMI). It has high frequency stability and high amplitude stability. The chopper is IR, VIS and UV and high vacuum capable. Reference signal and position output available.

  • Software

    Guzik Technical Enterprises

    Besides the primary WITE32 Test Environment package at the heart of our spinstand-based test systems, Guzik offers a variety of software options to provide additional measurement accuracy and analysis. Control and Automation software enhances various electro-mechanical capabilities of the test system (such as servo accuracy), and the available suite of Analysis software tools provides deep insight into the drive component under evaluation. Adjacent Track Interference, 3D Pulse Profile, Media Scanning and Bit Error Rate are examples of some of the optional additions. Some software tools require the WDM5000 Waveform Digitizer to be part of the overall test system.

  • Non Contact Flange Torque Transducer

    FF425 - Datum Electronics, Ltd.

    Contactless Torque Transducers with flange couplings at either end with measuring ranges from 0-100Nm up to 30kNm as standard (bespoke sensors up to 16MNm) for a variety of in line static and rotary torque measurement applications.The Datum Electronics Series FF425 non contact flange torque sensor and FF410 torque sensors have been designed to fit easily inline with any drive train or test rig using standard DIN size couplings. With Flange couplings at either end of the torque transducer, it has many advantages over other torque measurement systems on the market.

  • Chassis - Control Relays Greater than 8x1 or Control Multiple Relays in Series Forming Larger Switches than Normally Possible Such as 16x1 to 32x1 Sections.

    CXM/256-MF - Cytec Corp.

    These Chassis are typically used to control relays greater than 8x1 or control multiple relays in series forming larger switches than normally possible such as 16x1 to 32x1 sections. Or control mixtures of 8x1"s, 4x1"s, 2x1"s and 2x2 modules in any combination or configuration for up to 256 relay drives. LEDs on the front panel show switch and power status. Add Switch Modules, display / driver modules and a Control Module to complete the system or simply buy the chassis wired out to D connectors to control your own relays. A manual control is optional.

  • Fiber Optic Measurement Systems & Sensors

    MTI Instruments

    MTI Instruments offers large measurement range and standoff distance fiber-optic measurement sensors and probes that provide ultra sensitive linear output response. Our modular (interchangeable) non-contact fiber optic sensors systems have dual channel that enables the user to make simultaneous measurements. Our fiber optic probes are designed to automatically compensate large changes in reflectivity making it possible to monitor dynamic reflectance of up to 100:1 making it ideal for measuring vibration of ultrasonic horns, modal analysis of disk drive suspension, displacement and timing of fuel injectors and lateral motion measurements.

  • Three Phase Power Analyzer

    Model TFT780 - Gopal Electronics

    Three Phase Power Analyzer PA700TFT is multi-range power Analyzer with basic 0.05% R+R accuracy. 8 range of voltage, 8 range of current and total 64 range of power and power factor gives more accurate result at low power factor. It has waveform mode to check the waveform of voltage and current. As well it has B/H curve mode where user can check live b/h curve of the transformer under test. The gap less four-quadrant power measurement technique gives better accuracy at distorted waveforms or AC drive (VFD) operated power supply.

  • PXIe-8861, 2.8 GHz Quad-Core PXI Controller

    787567-01 - NI

    PXIe, 2.8 GHz Quad-Core PXI Controller - The PXIe‑8861 is an Intel Xeon 4‑Core embedded controller for PXI Express systems. You use it for processor-intensive RF, modular instrumentation, and data acquisition applications. The PXIe‑8861 includes two 10/100/1000BASE‑TX (Gigabit) Ethernet ports, two USB 3.0 ports, four USB 2.0 ports, as well as an integrated hard drive, serial port, two Thunderbolt™ 3 ports, and other peripheral I/O. Thunderbolt and the Thunderbolt logo are trademarks of Intel Corporation or its subsidiaries in the U.S. and/or other countries.

  • PXIe-8861, 2.8 GHz Quad-Core PXI Controller

    785831-33 - NI

    PXIe, 2.8 GHz Quad-Core PXI Controller - The PXIe‑8861 is an Intel Xeon 4‑Core embedded controller for PXI Express systems. You use it for processor-intensive RF, modular instrumentation, and data acquisition applications. The PXIe‑8861 includes two 10/100/1000BASE‑TX (Gigabit) Ethernet ports, two USB 3.0 ports, four USB 2.0 ports, as well as an integrated hard drive, serial port, two Thunderbolt™ 3 ports, and other peripheral I/O. Thunderbolt and the Thunderbolt logo are trademarks of Intel Corporation or its subsidiaries in the U.S. and/or other countries.

  • PXIe-8861, 2.8 GHz Quad-Core PXI Controller

    785831-01 - NI

    PXIe, 2.8 GHz Quad-Core PXI Controller - The PXIe‑8861 is an Intel Xeon 4‑Core embedded controller for PXI Express systems. You use it for processor-intensive RF, modular instrumentation, and data acquisition applications. The PXIe‑8861 includes two 10/100/1000BASE‑TX (Gigabit) Ethernet ports, two USB 3.0 ports, four USB 2.0 ports, as well as an integrated hard drive, serial port, two Thunderbolt™ 3 ports, and other peripheral I/O. Thunderbolt and the Thunderbolt logo are trademarks of Intel Corporation or its subsidiaries in the U.S. and/or other countries.

  • Random Access Monochromator

    DeltaRAM X - HORIBA, Ltd.

    The patented DeltaRAM™ X microscope Illuminator is the ideal fluorescence illuminator for quantitative intracellular ion research. It utilizes a galvanometer-based Random Access Monochromator (RAM) that can switch between any wavelength in 2 milliseconds. The DeltaRAM™ X is a complete, self-contained, illuminator that includes a power supply, high intensity xenon light source, DeltaRAM™ X monochromator, TTL shutter and flexible liquid light guide. The wavelength position is a simple analog voltage control. All you need to add is a microscope adapter for your fluorescence microscope and a USB or PCI DAC interface depending on the software you will be using to drive the illuminator.

  • Precision Linear Actuators

    ECT-Series - Thomson

    Thomson's ECT Series of Precision Linear Actuators are our highest performing line of electric cylinder systems. Designed for the most demanding applications, the ECT Series is ideal when powerful performance over a long life cycle is required. With a full complement of drive controls, accessories, options, and mounting types, these systems are adaptable to just about any application environment. As a better choice over hydraulic or pneumatic equivalents, the ECT Series are simpler to install, maintain, and control. This family comes in two different sizes mating our traditional Movotrak T90 and T130 actuators with both AC servo and 3 AC induction motor configurations.

  • 0.5-2.4GHz Instantaneous Frequency Measurement Unit

    DR063-M2 - Teledyne Defence & Space

    Teledyne Defence & Space’s Instantaneous Frequency Measurement (IFM) module, also known as a Digital Frequency Discriminator (DFD), offers high speed frequency measurement across the full operating bandwidth.The IFM measures the frequency of RF signal present at its input and presents a result at its output as digital data. The RF input signal is conditioned by an RF amplifier that provides sufficient drive for the frequency resolving circuits. The raw video from the resolvers is digitised and processed into the required output format. There is additional timing and control circuitry which initiates the measurement process and provides handshake data to the host system processor.

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