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Showing results: 16 - 18 of 18 items found.

  • Ultra-High Vacuum Kelvin Probe

    KP Technology

    Our Ultra-high Vacuum Kelvin Probes give the user full access to work function and contact potential difference (CPD) measurements under vacuum. Each system comes with a high-quality, manual, or motorized translator that enables reliable and accurate tip-to-sample positioning, and the unrivalled tracking system always holds the tip separation constant during the measurement. Even under vacuum, the work function resolution is 1 - 3 meV.

  • The Nanomotor®

    Klocke Nanotechnik

    The patented Nanomotor® is a piezo driven linear motor. It is a multifunctional basic part for many positioning and manipulation devices. It has a positioning stroke of up to more than a centimeter while operating with atomic resolution. The Nanomotor thus bridges eight orders of magnitude. The Nanomotor consists of a cylindrical housing and a slider with a free axial hole inside. It combines high resolution in the sub-nanometer range with a large positioning stroke. The Nanomotor utilizes a piezo tube for fine positioning and a shock wave produced by the same piezo tube for coarse movements. The small Nanomotor is half the size of a match stick. It can lift six times its own mass. Every point of its stroke can be reached with a speed of up to 1 mm/s. The Nanomotor also works in ultrahigh vacuum or even under water. It is driven by a PC card at a supply voltage of only ±15 volts.

  • Ion Pumps & Controllers

    Agilent Technologies

    Agilent Vacuum (formerly Varian) offers a complete portfolio of VacIon ion pumps that provide various pumping speeds (from 0.4 to 1000 L/s). Agilent also supplies smart combinations titanium sublimation pumps (Ion CombiTSP) and Non-Evaporable Getter (Ion CombiNEG) pumps for clean and vibration-free environments.Agilent ion pumps and controllers can be customized in a number of configurations to satisfy your vacuum requirements. They are the best choice for those applications where stable ultrahigh or extreme-high vacuum (UHV or XHV) conditions are essential, such as: laboratories, large research facilities, medical devices, scanning electron microscopes, and surface analysis tools.

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