1.56 High Definition ASP HMC Green Coating Optical Lens - China Suppliers and Factory for Myopia and Astigmatism Correction
Data
| Product | High Definition lens | Index | 1.553 |
| Material | Resin | Abbe Value | 34 |
| Diameter | 65/70 | Coating | HMC Green coating |
Performance

Anti-fingerprint

Waterproof

High transmittance

Wear resistance

Anti reflection

UV protection
Lens refractive index
It refers to the ratio of the propagation speed of light in vacuum to the propagation speed of light in the lens material.
It reflects the refractive power of the lens towards light.
The higher the refractive index, the stronger the refractive power of the lens towards light.
When choosing the refractive index of a lens, the following factors can be considered:
Degree:
For low myopia below 200 degrees, a refractive index of 1.50 or 1.56 can be chosen;
For myopia between 200-400 degrees, a refractive index of 1.56 or 1.60 can be chosen;
For myopia between 400-600 degrees, a refractive index of 1.60 or 1.67 is more suitable;
For high myopia at 600-1000 degrees, it is recommended to choose a refractive index of 1.67 or 1.71.
For myopia exceeding 1000 degrees, glass lenses with refractive indices of 1.71 or 1.74, or even higher, can be considered.
Frame Size:
If you choose a larger frame, in order to ensure that the edges of the lens are not too thick, you may need to choose a slightly higher refractive index.
The relationship between the refractive index of lenses and the thickness and weight of lenses:
Assuming all other parameters are the same, the higher the refractive index of the lens, the thinner the edge thickness of the lens, and the lighter the lens.
Advantages and disadvantages of different refractive indices:
High refractive index lenses can make the lenses thinner, lighter, and more comfortable to wear.
However, high refractive index lenses are usually more expensive and the dispersion phenomenon may be more pronounced.
With the advancement of material technology, this law is gradually being broken.
For example, the Abbe number of lenses with a refractive index of 1.71 is higher than that of most lenses with a refractive index of 1.56 and 1.67.
Frequently Asked Questions
What is the refractive index of a lens?
It refers to the ratio of the propagation speed of light in vacuum to the propagation speed of light in the lens material. It reflects the refractive power of the lens towards light. The higher the refractive index, the stronger the refractive power.
How does refractive index affect lens thickness and weight?
Assuming all other parameters are the same, the higher the refractive index of the lens, the thinner the edge thickness of the lens, and the lighter the overall weight of the lens.
How do I choose the right refractive index based on my myopia degree?
For low myopia below 200 degrees, choose 1.50 or 1.56. For 200-400 degrees, choose 1.56 or 1.60. For 400-600 degrees, choose 1.60 or 1.67. For high myopia at 600-1000 degrees, choose 1.67 or 1.71. For myopia exceeding 1000 degrees, glass lenses with refractive indices of 1.71, 1.74, or higher are recommended.
Does frame size affect my choice of refractive index?
Yes. If you choose a larger frame, you may need to choose a slightly higher refractive index to ensure that the edges of the lens do not look too thick.
What are the advantages and disadvantages of high refractive index lenses?
High refractive index lenses make lenses thinner, lighter, and more comfortable. However, they are typically more expensive, and dispersion may be more pronounced. Modern material technology is improving this; for example, 1.71 refractive index lenses offer a higher Abbe number than most 1.56 and 1.67 lenses.
What are the key specifications of this High Definition lens?
This High Definition lens has a refractive index of 1.553, is made of resin material, features an Abbe value of 34, a diameter of 65/70, and comes with an HMC Green coating.



