Close Menu
geekfence.comgeekfence.com
    What's Hot

    Irish SMEs report strong trading

    August 8, 2026

    Deep Learning with R, 2nd Edition

    August 8, 2026

    Deploying Semantic Views on Snowflake

    August 8, 2026
    Facebook X (Twitter) Instagram
    • About Us
    • Contact Us
    Facebook Instagram
    geekfence.comgeekfence.com
    • Home
    • UK Tech News
    • AI
    • Big Data
    • Cyber Security
      • Cloud Computing
      • iOS Development
    • IoT
    • Mobile
    • Software
      • Software Development
      • Software Engineering
    • Technology
      • Green Technology
      • Nanotechnology
    • Telecom
    geekfence.comgeekfence.com
    Home»Nanotechnology»Overload Protection for Precision Tasks
    Nanotechnology

    Overload Protection for Precision Tasks

    AdminBy AdminAugust 5, 2026No Comments2 Mins Read2 Views
    Facebook Twitter Pinterest LinkedIn Telegram Tumblr Email
    Overload Protection for Precision Tasks
    Share
    Facebook Twitter LinkedIn Pinterest Email


    Any-orientation mounting and six-axis motion support flexible integration into optical and photonics systems. 

    Overload Protection for Precision Tasks
    PI’s compact H-811.I2HS hexapod delivers precise 6-DOF motion with patented overload protection simplifying setup and shop floor operation in OEM applications. Image Credit: PI (Physik Instrumente) LP

    PI (Physik Instrumente), a leading manufacturer of high precision air bearings, motion control and nanopositioning systems, offers a new overload protection for its compact H-811 hexapod. The patented protection is designed to safeguard its precision mechanics during installation, integration, and operation. This protection is especially valuable in demanding applications where accidental forces or improper handling could otherwise degrade on damage sensitive high-precision components.

    The H-811.I2HS can be mounted in any orientation, giving system designers greater flexibility when integrating it into optical, photonics, microscopy, metrology, and automation systems. Its parallel-kinematic design provides precise motion in X, Y, Z, pitch, yaw, and roll while maintaining a compact footprint. A user programmable pivot point as well as powerful simulation and alignment software are part of the hexapod / controller system. An optical power meter, as well as a 6-axis manual controller that plug into the C-877 hexapod motion controller are available options.Higher-Load Hexapods / Vacuum Hexapods

    Despite its small dimensions, the H-811.I2HS can handle loads to 5 kg (11lbs) and achieve velocities of 20 mm/sec (0.8 in/sec). A special variant of the H-811 miniature hexapod is offered for vacuum environments. PI also provides a line of higher load hexapods, from the compact H-815 with absolute encoders and integrated brakes to the H-855, designed to handle loads up to 1100 lbs. A variety of highly dynamic motion hexapods are also available from PI.

    OEM Applications

    By combining six-axis positioning, flexible mounting, and built-in mechanical protection, the H-811 supports reliable operation in space-constrained applications where precision, reliability, durability, and ease of integration are critical.

    Applications and Industries Served

    Silicon Photonics, Integrated Optics, Aerospace, Astronomy, Microscopy, Micro-Assembly, Imaging, Robotics

    Hexapod 6-Axis Precision Positioning Systems – Features, Advantages Performance | PI Motion Control

    Hexapod 6-Axis Precision Positioning Systems – Features, Advantages Performance. Video Credit: PI (Physik Instrumente) LP

    Source:

    PI (Physik Instrumente) LP



    Source link

    Share. Facebook Twitter Pinterest LinkedIn Tumblr Email

    Related Posts

    Spectral biophysical cytometry with nanosensors reveals remodelling of immune cells in atherosclerosis

    August 7, 2026

    Kristian Dominek Barajas – ‘I’m able to take a really complicated problem and give it my best guess’ – Physics World

    August 6, 2026

    Scientists just 3D printed one of the hardest metals on Earth

    August 4, 2026

    Coherent room-temperature dipole synchronization in plasmonic nanocavities

    August 2, 2026

    Understanding core-shell nanoparticle growth – Physics World

    August 1, 2026

    Nano-Printed Scaffolds Bring Direct Molecular Access to Quantum Photonics

    July 31, 2026
    Top Posts

    Understanding U-Net Architecture in Deep Learning

    November 25, 202572 Views

    The Next Paradigm in Efficient Inference Scaling – The Berkeley Artificial Intelligence Research Blog

    May 16, 202640 Views

    Hard-braking events as indicators of road segment crash risk

    January 14, 202634 Views
    Don't Miss

    Irish SMEs report strong trading

    August 8, 2026

    Almost half (46%) of Irish SMEs say business activity is stronger than it was this…

    Deep Learning with R, 2nd Edition

    August 8, 2026

    Deploying Semantic Views on Snowflake

    August 8, 2026

    Taiwan Investigates Chinese Firms for Poaching Tech Talent

    August 8, 2026
    Stay In Touch
    • Facebook
    • Instagram
    About Us

    At GeekFence, we are a team of tech-enthusiasts, industry watchers and content creators who believe that technology isn’t just about gadgets—it’s about how innovation transforms our lives, work and society. We’ve come together to build a place where readers, thinkers and industry insiders can converge to explore what’s next in tech.

    Our Picks

    Irish SMEs report strong trading

    August 8, 2026

    Deep Learning with R, 2nd Edition

    August 8, 2026

    Subscribe to Updates

    Please enable JavaScript in your browser to complete this form.
    Loading
    • About Us
    • Contact Us
    • Disclaimer
    • Privacy Policy
    • Terms and Conditions
    © 2026 Geekfence.All Rigt Reserved.

    Type above and press Enter to search. Press Esc to cancel.