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1.56 ASP High Definition Blue Cut HMC Green Coating Optical Lenses from China Suppliers & Factory

Introducing our high-quality 1.56 anti-blue light green coating HMC lenses, expertly crafted in China. These durable and lightweight lenses are made from resin material, making them an ideal choice for daily wear. With a refractive index of 1.56, these lenses effectively filter harmful blue light, minimizing eye strain for those who spend extended hours on electronic devices, Our lenses feature a green anti-reflection coating that significantly reduces light reflection, enhancing visual clarity while also adding to the aesthetic appeal. Additionally, they come with a waterproof function, allowing for easy cleaning and maintenance in everyday use, These lenses are particularly suitable for myopic patients, especially those with prescriptions below 500 degrees. As a trusted supplier and manufacturer in the optical industry, we ensure that our products meet the highest standards of quality and performance. Upgrade your vision with our premium anti-blue light lenses today!

    Product Video

    Data

    Product 1.56 Blue Cut Lens Index 1.553
    Material Resin Abbe Value 34
    Diameter 65/70 Coating HMC Green Coating

    Performance

    Anti-fingerprint

    Anti-fingerprint

    Waterproof

    Waterproof

    High transmittance

    High transmittance

    Wear resistance

    Wear resistance

    Anti reflection

    Anti reflection

    UV protection

    UV protection

    Anti blue light

    Anti blue light

    Aspherical lens & Spherical lens

    There are significant differences between Aspherical lenses and spherical lenses in multiple aspects, mainly including design principles, visual quality, wearing comfort, lens appearance, and price.

    Spherical Lenses:

    Due to their design characteristics, spherical lenses will produce significant distortion at the edges, especially when the degree is high. The lenses may appear thicker in appearance, which can cause deformation or distortion when the wearer sees objects. Wearing spherical lenses for a long time can lead to eye fatigue or discomfort.

    Aspherical Lenses:

    Significantly reduce edge distortion, allowing wearers to see objects more realistically and helping to reduce eye fatigue.

    Aspherical lenses and spherical lenses

    Blue Cut

    The Hazards of Blue Light:

    Blue light with a wavelength between 415 and 455 nanometers is short wave harmful blue light, which poses the greatest threat to the retina. It can penetrate the crystalline lens directly to the retina, causing the decline of retinal pigment epithelial cells and ultimately leading to visual impairment.

    • Which is irreversible: Anti blue light lenses use special technology to filter out some harmful blue light, thereby reducing the harm of these blue lights to the eyes.
    • Coating technology: A special film is coated on the surface of the lens, which can reflect or absorb some harmful blue light, reducing damage to the eyes.
    • Substrate absorption: Adding anti blue light factors to the substrate of the lens can absorb the blue light entering the lens, further reducing the impact of blue light on the eyes.
    anti blue light test
    • Double protection technology: Some high-end anti blue light glasses combine coating and substrate absorption technologies to achieve more comprehensive blue light protection.
    • Anti blue light lenses can filter out some blue light, reduce the intensity of blue light, reduce the stimulation of blue light to the eyes, thereby reducing fatigue and making the eyes more comfortable when watching electronic device screens.
    • Blue light can inhibit the secretion of melatonin and affect sleep quality. Wearing anti blue light glasses can reduce the intake of blue light at night, help increase the secretion level of melatonin, and thus improve sleep quality.
    • Anti blue light glasses cannot completely filter out all blue light, nor can they replace correct eye habits and scientific eye care.
    • Wearing anti blue light glasses for a long time while watching electronic products may still cause eye fatigue, so it is necessary to rest your eyes appropriately and pay attention to eye hygiene.
    hd optical lens

    Oil pollution prevention

    The anti oil function of oil resistant lenses is mainly achieved through the organic hydrophobic film layer on their surface. This film layer can reduce the contact area between water and oil and the lens, making it difficult for oil and water droplets to adhere to the surface of the lens. Make the lenses easier to clean and maintain.

    oil resistance test

    Frequently Asked Questions

    What are the benefits of 1.56 Blue Cut Lenses?
    1.56 Blue Cut Lenses effectively filter out harmful short-wave blue light (415-455nm) emitted by digital screens, reducing eye strain, preventing retinal damage, and improving sleep quality by regulating melatonin levels.
    Why should I choose Aspherical lenses over Spherical lenses?
    Aspherical lenses feature a flatter curvature design that minimizes peripheral distortion, provides a wider and more realistic field of vision, looks thinner and lighter on your frames, and reduces eye fatigue during long-term wear.
    How does the anti-oil coating benefit daily lens maintenance?
    The anti-oil (oil-resistant) function utilizes an organic hydrophobic layer that prevents water, oil, and fingerprints from sticking to the surface. This keeps the lenses clearer for longer and makes them incredibly easy to wipe clean.
    Does wearing blue cut glasses mean I can look at screens indefinitely?
    No. While blue cut lenses significantly reduce glare and blue light exposure, they do not replace healthy screen habits. It is still essential to take regular eye breaks, maintain screen distance, and practice good eye hygiene.
    What is the difference between coating and substrate absorption for blue light protection?
    Coating technology reflects or absorbs blue light via a specialized surface film, while substrate absorption embeds protective factors directly into the lens material. High-end lenses often combine both for double protection.

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