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Showing results: 466 - 480 of 495 items found.

  • VHF Radio Direction Finding Antennas

    Vector-Finder Series - National RF, Inc

    The Vector-Finder Series of VHF direction finding antennas provide a compact, lightweight, active antenna, suitable for use in the field with handheld transceivers and scanning radios. The mechanical design allows the sense antennas to be folded back to provide a compact unit, easily stowed or transported in any vehicle. The system interfaces with any FM receiver or transceiver via the antenna jack and the earphone jack. Several different models are available to suit your pocketbook or unique field application, all of which operate on the phase shift technique. The VF-142Q models incorporate left-right indicators as well as an audible response from which the user can determine the true direction of the radio signal. The other types utilize the audible response generated by the equipment and heard on the user’s receiver or transceiver. All models operate from a 9-volt battery.

  • Flatness, Bow, Warp, Curvature, Glass Thickness

    1D-glass Thickness Profile Measuring Instrument GPM2 - Optik Elektronik Gerätetechnik GmbH

    Highly accurate automatic measurement of glass thickness distributions. The glass thickness profiler GPM has the function to execute a fast and precise determination of the thickness profile of flat glass samples or another transparent material with a thickness range from 30µm to 700µm (option with sensor type 1) and width to 1200mm. The measuring point distance of the profile measurement can be varied over a micro-step-controlled positioning steering between 0.1mm and 1mm. The measured value accommodation for a scanning point takes place with the help of a special hardware module for image processing algorithms within 40 ms. The entire measuring time for a sample results thus as product from the sample width which has to be measured, the measuring point distance and the measuring time per measuring point.

  • High Precision Motorized Rotation Stages

    RAK - ZOLIX

    Model: RAK High Precision Motorized Rotation Stages New construction ,new technology;the key index has up to the international level of the similar products by strictly inspection .This series products are used to laser precision processing,three dimensional scanning measurment system and so on . ◆Stepper motor drive ,finish angle adjustment automatically; ◆Worm and worm wheel has adopted durable to friction material ,high reliable accuracy of rotation . ◆High precision ,ultra steel axises of importing ,achieve high precision, high load stable motion ◆Outer circle has scale, interface , convenience for signal’s output ◆Circle grating and encoder combine with MC series controller ,achieve closed-loop control Standard stepper motor and DB9 interface, choose to controller flexibility ◆three phase stepper motor and servo-motor is planning

  • 16-CH 12/16-Bit 100 kS/s Low-Cost Multi-Function DAQ Cards

    PCI-9111 Series - ADLINK Technology Inc.

    ADLINK PCI-9111 series are 16-CH, 100 kS/s low cost multi-function DAQ card. The PCI-9111 series feature flexible configurations on analog inputs. A RC filter is implemented on each A/D input channel for user to attenuate or filter input signal. The PCI-9111 series provide analog inputs with 5 programmable input ranges for bipolar inputs. The PCI-9111 series also support automatic analog input scanning. PCI-9111DG provides 12-bit A/D resolution while PCI-9111HR provides 16-bit A/D resolution. The PCI-9111 series also feature 1-CH 12-bit analog output, 16-CH TTL digital inputs and 16-CH TTL digital outputs. ADLINK PCI-9111 series deliver cost-effective and reliable data acquisition capabilities, and is ideal for a broad variety of applications.

  • USB-6212, 16 AI (16-Bit, 400 kS/s), 2 AO (250 kS/s), Up to 32 DIO USB Multifunction I/O Device

    780107-01 - NI

    16 AI (16-Bit, 400 kS/s), 2 AO (250 kS/s), Up to 32 DIO USB Multifunction I/O Device - The USB‑6212 is a multifunction DAQ device. It offers analog input, digital input, digital output, and two 32‑bit counters. The device provides an onboard amplifier designed for fast settling times at high scanning rates. It also features signal streaming technology that gives you DMA-like bidirectional high-speed streaming of data across USB. The device is ideal for test, control, and design applications including portable data logging, field monitoring, embedded OEM, in-vehicle data acquisition, and academic. The USB‑6212 features a lightweight mechanical enclosure and is bus powered for easy portability. The included NI‑DAQmx driver and configuration utility simplify configuration and measurements.

  • USB-6212, 16 AI (16-Bit, 400 kS/s), 2 AO (250 kS/s), Up to 32 DIO USB Multifunction I/O Device

    781003-01 - NI

    16 AI (16-Bit, 400 kS/s), 2 AO (250 kS/s), Up to 32 DIO USB Multifunction I/O Device - The USB‑6212 is a multifunction DAQ device. It offers analog input, digital input, digital output, and two 32‑bit counters. The device provides an onboard amplifier designed for fast settling times at high scanning rates. It also features signal streaming technology that gives you DMA-like bidirectional high-speed streaming of data across USB. The device is ideal for test, control, and design applications including portable data logging, field monitoring, embedded OEM, in-vehicle data acquisition, and academic. The USB‑6212 features a lightweight mechanical enclosure and is bus powered for easy portability. The included NI‑DAQmx driver and configuration utility simplify configuration and measurements.

  • USB-6212, 16 AI (16-Bit, 400 kS/s), 2 AO (250 kS/s), Up to 32 DIO USB Multifunction I/O Device

    780169-01 - NI

    16 AI (16-Bit, 400 kS/s), 2 AO (250 kS/s), Up to 32 DIO USB Multifunction I/O Device - The USB‑6212 is a multifunction DAQ device. It offers analog input, digital input, digital output, and two 32‑bit counters. The device provides an onboard amplifier designed for fast settling times at high scanning rates. It also features signal streaming technology that gives you DMA-like bidirectional high-speed streaming of data across USB. The device is ideal for test, control, and design applications including portable data logging, field monitoring, embedded OEM, in-vehicle data acquisition, and academic. The USB‑6212 features a lightweight mechanical enclosure and is bus powered for easy portability. The included NI‑DAQmx driver and configuration utility simplify configuration and measurements.

  • USB-6211, 16 AI (16-Bit, 250 kS/s), 2 AO (250 kS/s), 4 DI, 4 DO USB Multifunction I/O Device

    779676-01 - NI

    16 AI (16-Bit, 250 kS/s), 2 AO (250 kS/s), 4 DI, 4 DO USB Multifunction I/O Device - The USB‑6211 is a multifunction DAQ device. It offers analog I/O, digital input, digital output, and two 32‑bit counters. The device provides an onboard amplifier designed for fast settling times at high scanning rates. It also features signal streaming technology that gives you DMA-like bidirectional high-speed streaming of data across USB. The device is ideal for test, control, and design applications including portable data logging, field monitoring, embedded OEM, in-vehicle data acquisition, and academic. The USB‑6211 features a lightweight mechanical enclosure and is bus powered for easy portability. The included NI‑DAQmx driver and configuration utility simplify configuration and measurements.

  • USB-6210, 16 AI (16-Bit, 250 kS/s), 4 DI, 4 DO USB Multifunction I/O Device

    779675-01 - NI

    16 AI (16-Bit, 250 kS/s), 4 DI, 4 DO USB Multifunction I/O Device - The USB‑6210 is a multifunction DAQ device. It offers analog input, digital input, digital output, and two 32‑bit counters. The device provides an onboard amplifier designed for fast settling times at high scanning rates. It also features signal streaming technology that gives you DMA‑like bidirectional high-speed streaming of data across USB. The device is ideal for test, control, and design applications including portable data logging, field monitoring, embedded OEM, in-vehicle data acquisition, and academic. The USB‑6210 features a lightweight mechanical enclosure and is bus powered for easy portability. The included NI‑DAQmx driver and configuration utility simplify configuration and measurements.

  • Analytical Software for Microscopy

    SPIP - Electrogrip Company

    SPIP™ or Scanning Probe Image Processor - is an advanced software package for processing and analyzing microscopic images at nano- and microscale. It has been developed as a proprietary software by Image Metrology and is unique in the microscopy and microscale research market. With the high level of usable features, SPIP provides industrial and academic researchers with an advanced toolkit for working with microscope images, incl. extracting data from most microscopy file types, cleaning and enhancing data, analyzing measurements, visualizing and reporting analysis results. The software is used for research and innovation in a variety of industries such as pharmaceutical, cosmetics, semiconductors, hard disk manufacturing, polymer and aluminum manufacturing. Furthermore, SPIP is widely recognized as the standard microscope image analysis software for research and education at leading universities, and has been cited in more than 1200 scientific publications.

  • Process EDXRF Spectrometer

    NEX LS - Applied Rigaku Technologies, Inc

    Featuring advanced third generation EDXRF technology, the Rigaku NEX LS represents the next evolution of scanning multi-element process coatings analyzers for web or coil applications. To deliver superior analytical performance and reliability, the EDXRF measuring head assembly was derived from the established Rigaku NEX Series high-resolution benchtop instrumentation. With this proven technology, the Rigaku NEX LS delivers rapid, non-destructive, multi-element analyses — for coat weight, coating thickness and/or composition — for elements from aluminum (Al) through uranium (U). The measuring head is mounted on a rigid beam and is equipped with a linear traversing mechanism positioned over a roller so that the head-to-surface distance is constant. Common applications include silicone release coaters, converters, denesting Si for vacuum-formed plastics, RoHS compliance, conversion coatings, metalized plastic, top coatings on metal coil and fire retardants on fabric.

  • High-Dynamics PIMag Linear Stage

    V-522 • V-524 • V-528 - Physik Instrumente GmbH & Co. KG

    Reference-class linear stage. Linear positioning stages with magnetic direct drives largely dispense with mechanical components in the drivetrain and the drive force acts directly on the motion platform. Together with precision bearings, a high travel accuracy and longer lifetime is achieved. The linear positioning stages are particularly suitable for scanning applications. PIMag® Voice Coil. Voice coil drives consist of 2 essential components: A permanent magnet and a coil, which is located in the air gap of the magnetic field. When current flows through the coil, it moves in the magnetic field of the permanent magnet. The direction of motion depends on the polarity. Thanks to their low weight and friction-free drive principle, voice coil drives are particularly suitable for applications, which require high dynamics and high velocities at limited travel ranges. High scan frequencies and precision positioning are also possible with these drives, because they are free of the effects of hysteresis.

  • Bruker’s Innovative Mass Spectrometry Solutions

    Bruker Corporation

    Discover new ways to apply mass spectrometry to today’s most pressing analytical challenges. Innovations such as Trapped Ion Mobility (TIMS), smartbeam and scanning lasers for MALDI-MS Imaging that deliver true pixel fidelity, and eXtreme Resolution FTMS (XR) technology capable to reveal Isotopic Fine Structure (IFS) signatures are pushing scientific exploration to new heights. Our mass spectrometry solutions enable scientists to make breakthrough discoveries and gain deeper insights.Our industry leading software solutions such as SCiLs Lab for MS Imaging, FDA cleared microorganism reference library for the MALDI Biotyper, Biopharma Compass 2.0, and Toxtyper are examples our solutions doing the work for you.  Bruker's product lines include the following technologies: FTMS, rapifleX MALDI-TOF/TOF, MALDI Biotyper Systems, timsTOF UHR-QTOF, Toxtyper, Triple Quadrupole, HDX Solution, TargetScreener HR

  • Fourier Transform Optical Spectrum Analyzer, 600 - 1700 nm

    OSA202C - Thorlabs, Inc.

    Thorlabs' Optical Spectrum Analyzers (OSAs) perform highly accurate spectral measurements. Compatible with fiber-coupled and free-space light sources, these compact benchtop instruments suit a wide variety of applications, such as analyzing the spectrum of a telecom signal, resolving the Fabry-Perot modes of a gain chip, and identifying gas absorption lines. Many commonly available OSAs use grating-based monochromators, which have slow acquisition times due to the need to mechanically scan the grating and average out noise at each wavelength. Thorlabs' OSAs acquire the spectrum via a Fourier transform using a scanning Michelson interferometer in a push/pull configuration. This approach dramatically improves the acquisition time, enables a high-precision wavelength meter mode with 7 significant figures and ±1 part-per-million accuracy, and allows the included software to provide robust statistical analysis of the acquired spectra, as explained in the Design tab.

  • Fourier Transform Optical Spectrum Analyzer, 350 - 1100 nm

    OSA201C - Thorlabs, Inc.

    Thorlabs' Optical Spectrum Analyzers (OSAs) perform highly accurate spectral measurements. Compatible with fiber-coupled and free-space light sources, these compact benchtop instruments suit a wide variety of applications, such as analyzing the spectrum of a telecom signal, resolving the Fabry-Perot modes of a gain chip, and identifying gas absorption lines. Many commonly available OSAs use grating-based monochromators, which have slow acquisition times due to the need to mechanically scan the grating and average out noise at each wavelength. Thorlabs' OSAs acquire the spectrum via a Fourier transform using a scanning Michelson interferometer in a push/pull configuration. This approach dramatically improves the acquisition time, enables a high-precision wavelength meter mode with 7 significant figures and ±1 part-per-million accuracy, and allows the included software to provide robust statistical analysis of the acquired spectra, as explained in the Design tab.

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