High Purity Quartz Sand (Optical Grade Silica Raw Material)
The product shown is a white crystalline granular material, identified as high purity quartz sand (optical grade silica raw material). It features uniform particle distribution, bright white color, and high chemical purity. As a fundamental raw material in the optoelectronic industry, it is widely used for producing fused silica glass, optical fiber preforms, quartz glass components, optical lenses, and semiconductor-grade quartz products. Its low impurity content ensures excellent optical transparency, high thermal stability, and low thermal expansion in the finished optical components.
Request a Quote
Download Datasheet
Chat
Overview
The product shown is a white crystalline granular material, identified as high purity quartz sand (optical grade silica raw material). It features uniform particle distribution, bright white color, and high chemical purity. As a fundamental raw material in the optoelectronic industry, it is widely used for producing fused silica glass, optical fiber preforms, quartz glass components, optical lenses, and semiconductor-grade quartz products. Its low impurity content ensures excellent optical transparency, high thermal stability, and low thermal expansion in the finished optical components.
Specifications
| Parameter | Value |
|---|---|
| Appearance | White crystalline granules |
| Color | White |
| Form | Granular / Crystalline powder |
| Main Composition | SiO2 |
| Background | Black (high-contrast product display) |
Applications
1. Manufacturing of optical fiber preforms and optical fiber drawing 2. Production of fused silica and quartz glass for optical lenses, prisms and windows 3. Semiconductor industry for quartz crucibles, tubes and wafer carriers 4. Raw material for optical coating and precision optical components 5. Photovoltaic industry for high-purity quartz crucibles used in silicon crystal growth 6. Laboratory and scientific research requiring high-purity silica materials
Key Features
1. High chemical purity with extremely low impurity content 2. Uniform white crystalline granular appearance with good particle consistency 3. Excellent high-temperature resistance and thermal stability 4. Low thermal expansion coefficient suitable for precision optical components 5. Good chemical stability and corrosion resistance 6. Suitable as raw material for optical fiber, quartz glass and semiconductor applications
Datasheet
Product Datasheet
PDF
Supplier Information
<p>Jiaxing Jingkong Electronics Co., Ltd. is located at No. 480, Jiangxian Road, Yuxin Town, Jiaxing City, Zhejiang Province, with a factory area of 11,000 square meters and 70 employees. It is a small technology enterprise focusing on the R&D, production and sales of quartz crystal oscillator sensors. JJK attaches great importance to accumulation, especially in the piezoelectric quartz crystal industry with over 30 years of practical experience. The company prioritizes employee stability in management and has built a highly stable operating team. By the end of 2022, JJK's direct user base had exceeded 800. JJK's unremitting goal is to provide customers with the most reliable crystal oscillator slices. The manufacturing process pursues high reliability even if it means technological overkill, without compromising reliability to reduce costs. To further meet customer needs, JJK continuously develops related new products, offering various cost-effective coating materials and crystal control accessories.</p>
Contact Us
Loading...
GetExperimental Plan
Name
Phone
+86
Organization
Use Case

Global Photonics Products
Database Platform
Database Platform
With 16 years of experience, we provide high-quality products and services to universities, research institutes, and industry.
50+ Detailed Categories · 3,000+ Global Brands · 100,000+ Photonics Products
1 Million+
In-depth analysis of professional academic resources in photonics
300,000
ProductsDatasheets Available Free
We will keep your personal information strictly confidential.
Product Quote
+86
* Select the quoting party:
By submitting, you agree to the User Service Agreement and Privacy Policy