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While conventional electronics are very capable of these functions, flexible electronics are intended to expand the mechanical features to adhere to novel form factors through hybrid strategies, or as standalone solutions where the application does not require high computation power, intended to be highly robust to deformation, low cost, thin, or disposable. These next-generation flexible electronics open up a wide range of exciting new applications such as flexible lighting and display technologies for consumer electronics, architecture, and textiles, wearables with sensors that help monitor our health and habits, implantable electronics for improved medical imaging and diagnostics, as well as extending the functionality of robots and unmanned aircraft through lightweight and conformable energy harvesting devices and sensors. This new progress is now enabling devices which can conform to complex and dynamic surfaces, such as those found in biological systems and bioinspired soft robotics. Likewise, biocompatibility and biodegradability has been achieved through polymers that do not cause adverse effect to the body and can be broken down into smaller constituent pieces after utilization ( Bettinger and Bao, 2010 Irimia-Vladu et al., 2010 Liu H. This interest has also extended to not only flexibility but also properties like stretchability and healability which can be achieved by utilizing elastomeric substrates with strong molecular interactions ( Oh et al., 2016 Kang et al., 2018). It has IP68-certified water and dust resistance, a triple rear camera system (50MP Ultra Aperture XMAGE Camera with OIS, 13MP ultra-wide angle, 64MP telephoto with OIS) backed by its self-made XMAGE mobile camera tech, a 4,700mAh battery with 66W wired and 50W wireless fast-charging, an in-display fingerprint sensor, and 120Hz refresh rate for its display.Presently there is great interest in new materials and fabrication techniques which allow for high-performance scalable electronic devices to be manufactured directly onto flexible substrates. The phone otherwise touts flagship-class features and specifications. components) also tells us it’s not likely to carry Google Play Store or any Google Mobile Services, as with recent Huawei mobile handsets. PURE SILVER AIRCRAFT INKLET ANDROIDGoing through the trouble of running a forked version of Android (and altering certain U.S. ![]() ZDNet said that EMUI 13 is based on an open-source version of Android (version unknown), instead of HarmonyOS 3.0. PURE SILVER AIRCRAFT INKLET PROIt also lacks satellite connectivity in the global model, a feature that’s available to China-specific Mate 50 Pro handsets.īased on its official spec sheet, the global variant runs on EMUI 13. For example, it will carry a 4G version of Qualcomm Snapdragon 8+ Gen 1 instead of the usual 5G variant, and it uses a China-made Kunlun Glass instead of the U.S.-developed Corning Gorilla Glass to protect its 6.74-inch OLED panel. ![]() The international version of Mate 50 Pro will also have altered parts to adhere to existing U.S. Mate 50 Pro in Silver or Black (8GB RAM, 256GB storage) will start at €1,299 (~S$1,794.46), with a Leather Orange variant (8GB RAM, 512GB storage) going at €1,399 (~S$1,932.61). ![]() In a nutshell, only the Huawei Mate 50 Pro will be available, while the rest of the lineup sees “no plans” for international availability. PURE SILVER AIRCRAFT INKLET SERIESThe company has a few details about its roadmap and tweaks for the international sale of Huawei Mate 50 series devices. The Huawei Mate 50 Pro smartphone is now gunning for the international market after making its China-only run.Īccording to GSMArena, Huawei held a media briefing for select international publications ahead of its 28 September 2022 global launch. ![]()
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