The Hoda AR Anti-Peep Screen Protector features a secondary strengthening process that enhances the overall strength of the glass and its edges. The glass surface has passed the SGS 9H pencil hardness test and incorporates a 2.5D curved edge craftsmanship. With the latest 30° anti-peep technology, it is ideal for business professionals, commuters, individuals using mobile payments, and those who prioritize privacy. The AR anti-reflective coating effectively reduces reflectivity while improving light transmission, ensuring that the screen displays true-to-life colors even in bright light. Utilizing a vacuum electroplating anti-fingerprint process, the screen protector provides a smooth touch, resists fingerprint adhesion, and is easy to clean, while the anti-fingerprint layer remains durable for long-term use.
FEATURES
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AR Coating for Reduced Glare: The anti-reflective (AR) coating effectively reduces reflectivity and enhances light transmission, ensuring clear screen visibility even in strong light while preserving true-to-life colors.
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30° Tilt for Ultimate Privacy Protection: Featuring the latest 30° anti-peek technology, it is ideal for business professionals, commuters, users of mobile payments, and anyone who values privacy.
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9H Hardness with 2.5D Curved Edges: The glass surface has passed the SGS 9H pencil hardness test, providing effective scratch resistance. The 2.5D curved edge process minimizes the sharpness of the glass edges for a smoother feel.
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Vacuum Plating for Long-Lasting Smudge Resistance: Utilizing vacuum plating anti-smudge technology, the screen protector offers a smooth, sleek surface that resists fingerprint adhesion, is easy to clean, and ensures the durability of the smudge-resistant layer.
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Secondary Strengthening for Enhanced Durability: The secondary strengthening process enhances the overall strength and edge resilience of the glass, effectively reducing the risk of screen damage.
Note: Due to material properties, avoid impacts, heavy pressure, or other external forces, as these may cause damage.