• Holographix LLC

    140 Locke Dr Suite A
    Marlborough, MA 01752
    United States
    978-562-4474
    508-251-2884
    20

    More Info on Holographix LLC

    Holographix is the industry leader in nano- and micro-replication. Holographix’ main focus is in the design and manufacture of custom replicated binary and blazed gratings, microlens arrays, and diffractive waveguides.

    Products

    High Quality Custom Microlens Arrays
    Custom Engineered Diffusers from Basic Patterns to More Complex Profiles
    Custom Slanted Transmission and Reflection Gratings
    Custom Blazed Transmission and Reflection Gratings
    Replicated Binary, Blazed, and Slanted Reflection Gratings
    Shared User Pr178b3919c81841cabe232770f02eb988
    Replicated Binary, Blazed, and Slanted Transmission Gratings

    Articles

    (Image credit: Holographix)
    holographixexpandedmladesigncapabilitiesjan25
    Holographix has added design services for microlens array (MLA) devices to its existing design expertise in diffractive products such as numerous types of transmissive and reflective...
    Photo 234881468 © Penchan Pumila | Dreamstime.com
    Dreamstime Xl 234881468
    Let’s recap all the business announcements in photonics from July 2022.
    1609 Lfw Pro 2
    Custom diffractive waveguides can be fabricated for specific applications in see-through optical displays.
    (Courtesy of Massachusetts General Hospital)
    A section of swine intestinal tissue is displayed at 1× (a), 4× (b), 20× (c), and 40× (d) magnification levels using a spectrally encoded confocal-microscopy technique. Dotted rectangles in each image represent the zoomed regions of interest. This technique can image a 4 × 4 cm subsurface tissue area with a transverse resolution of 2.1 µm in less than one minute.
    Minimally invasive microscopy techniques can reduce the need for excisional biopsy, particularly if the technique can image a large tissue area.
    FIGURE 1. Holographic grating is replicated using a light-cured polymer in a five-step process (top to bottom). First, a master grating is exposed in a holographic laboratory. The master is then converted into a tough, inert stamper. Liquid photopolymer is applied to a substrate, which is then pressed onto the stamper. Ultraviolet radiation cures the photopolymer, with all components remaining at ambient temperature. Finally, the grating is released from the stamper, which is then ready to form another grating. The last three steps take only seconds and can be repeated thousands of times.
    Replication techniques based on light-cured photopolymers make possible the mass-production of microstructured optics with feature sizes of much less than a micron.

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    Additional content from Holographix LLC

    (Photo credit: SPIE)
    Attendees make their way into the SPIE Photonics West 2022 exhibition hall.
    Get a first look at what will be shown on the SPIE Photonics West 2023 exhibit floor.