Plastic Materials: Making Lightweight Assembly of Wearable Devices Possible
With the rise of the meta-universe notion, Virtual Reality (VR), Augmented Reality (AR), and Mixed Reality (MR) continue to pervade people's views and imaginations of virtual worlds and real life. They bridge the gap between the virtual and the real, creating immersive experiences that let consumers feel involved in the gaming and entertainment arena.
If these devices are more comfortable and convenient to wear, the overall experience will improve!
How can we solve the problem of VR devices causing vertigo or discomfort while also being easy to connect and operate with other devices (such as mobile phones and computers)?
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Leave it to Kingfa's extensive selection of plastic materials for wearable gadgets to tackle the problem! Using suitable material can reduce the weight of the headset and the interactive performance of the interactive grips.
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Our Product Features:
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Material for Head-Up Display Devices
Low-density material: Vicnyl 21GB15T
The main features of this material are: solvent erosion resistance, very good combination of density, impact, toughness and rigidity, resistance to perspiration and dirt; compared with PC/ABS and PC, it can reduce weight by 25% - so it can reduce the weight of the head-up display device very well, making it lighter and more comfortable to wear.
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Highly rigid materials: PPS: PPS-G45 LC PPA: Vicnyl 65GR50NHXF
These two types of materials have low density, high efficiency, and high rigidity, and can be used to substitute metal for the device's mounting bracket, reducing the weight of the head-up display while also reducing hardware processing and overall cost.
Material for Interactive Grip
White High Transparency IR Material - JH820
It has a haze of more than 94%, an L-value of more than 90%, visible light transmittance of less than 10%, IR transmittance of more than 34%, and a high infrared transmittance, allowing it to match the signal transmission requirements between the handle and the head unit.
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High toughness conductive material: SP200-E4
It has conductivity, high toughness, can be assembled by overfilling, high rigidity and high mobility, which can improve the handling of the handle rocker and easy to assemble.
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We are optimistic about the future of XR devices and believe that advances in plastic materials will continue to empower wearable XR goods and provide a positive user experience.