The latest generation of Vision Systems’ EDWs provide unprecedented optical performance with haze well below the visible threshold for their “Nuance Dark” brand of SPD-Smart EDW solution. There is another very important aspect to the view out the window experienced by passengers. With SPD technology, Vision Systems’ EDWs use extremely thin, lightweight, scratch-resistant chemically strengthened glass. Because of this, their EDWs can replace the window opening’s traditional “dust pane” – the plastic window closest to the passenger. Dust panes are well known to be poor optically – after minimal use, they become scratched, hazy and have other deficiencies – and they degrade passengers’ experience looking out the window.
Media Contact Company Name: Eyrise Contact Person: Andros Sturgeon Email:Send Email Phone: +31 40 258 0503 Country: Netherlands Website:http://www.eyrise.com/
“Visitors to the NEC booth will experience dynamic, advertising-based content projected on a Vela-enabled switchable glass surface. The overall impression creates an immersive visual experience designed to entice viewers and passersby to be captivated by the display and engage with it. I encourage everyone at this year’s InfoComm to visit booth C1600 to see the Vela System marketing experience in action,” said Noam Assael, director of business development for global platforms at Avery Dennison.
Double-side polished silicon wafers with a thickness of 100 μm (University Wafer) were used as the substrates in film and pattern imaging. The silicon wafers were cleaned through multiple steps of solvent rinse, in the sequence of toluene, acetone, isopropanol, and deionized water, followed by O2 plasma (300 sccm O2 flow rate, 300 W, and 15 min) before the spinning coating process. To fabricate the PMMA films, PMMA 950 A4 solution (MicroChem) was spin-coated onto the cleaned silicon wafer at a speed of 1000 to 4000 rpm/s for 45 s. After soft baking at 180°C for 5 min, the film thickness was measured with an ellipsometer (Rudolph AutoEL IV-NIR-II). To fabricate the pattern, PMMA 950 A4 solution was spin-coated onto the silicon wafer at a speed of 4000 rpm/s for 45 s to get the electron-beam resist layer. After soft baking at 180°C for 5 min, the MIP patterns were fabricated onto the PMMA layer with electron-beam lithography using a Zeiss Supra 40 VP scanning electron microscope equipped with an electron-beam blanker and through subsequent development with methyl isobutyl ketone/isopropanol solvent mix (1:3 in volume).
Now MIT engineers have developed a heat-rejecting film that could be applied to a building’s windows to reflect up to 70 percent of the sun’s incoming heat. The film is able to remain highly transparent below 32 degrees Celsius, or 89 degrees Fahrenheit. Above this temperature, the researchers say, the film acts as an "autonomous system" to reject heat. They estimate that if every exterior-facing window in a building were covered in this film, the building’s air conditioning and energy costs could drop by 10 percent.
A competitive landscape that identifies the main competitors of the worldwide market and their Switchable Glass market share further highlighted during this analysis report. A deliberate identification of major competitors of the Switchable Glass market further as a innovative analysis of their current developments, core competencies and investments in every phase are careful within the Switchable Glass analysis report.
The Asus ZenBook 14 (and its UHD Graphics 620) represents a wide sample of existing mainstream thin-and-light designs that rely on the very common UHD 620.
Shortly after its introduction into serial production in the automotive industry, SPD-SmartGlass has become standard equipment on many different aircraft, and is also used in residential and commercial architectural applications, in trains, yachts and other marine vehicles, in display applications, and to protect light-sensitive artwork and documents in major museums around the world.
Market scope: The automotive smart glass market has multiple applications in rear and side windows, windshields, sunroof, mirrors, and head-up displays (HUD). Visiongain assesses how these five submarkets and the 15 largest national markets will evolve over the forecast period. The competitive landscape is further illustrated with examination of the 10 market leading manufacturers.
Company analysis, leading segments, trends, drivers, restraints, opportunities, CAGR and growth factors for trends have been discussed therein. The report offers a holistic approach to assist the clients with up-to-date market research for Switchable Smart Film market. This report will surely allow you to stay ahead in the competition and derive insightful data that will benefit your business in the long run. Suitable examples, figures, and charts have also been adhered for logical analysis with supportive numbers. Strategic analysis of key vendors and the part performance have also been considered as a part of primary research to have a close watch on the market.
Market DynamicsIncreasing global population and a subsequent spike in vehicle-owning households spiked up demand for comfortable ride features such as sunroofs. Stringent emission regulations, ban on tinted glasses in countries like India, limited durability of window blinds, increasing emphasis over interiors to improve the comfort, as well as aesthetics of the vehicle are some of the significant factors that are driving the market for automotive smart glass towards growth.
After initial publication, Ring spokesperson Yassi Shahmiri told The Intercept that “Ring employees never have and never did provide employees with access to livestreams of their Ring devices,” a claim contradicted by multiple sources.
Automotive Smart Glass Market 2019 is Projected to Exhibit a CAGR of 0% during the Forecast period 2023, Segmentation by Key Regions, Gross Margin, Profit, Analysis, Market Growth & Size | Privacy Protection Smart Film Related Video:
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