Products Lab Consumables & Materials Optical Materials Optical Window Glass Substrate Wafer Sheets Zinc Sulfide ZnS Window
Optical Window Glass Substrate Wafer Sheets Zinc Sulfide ZnS Window

Optical Materials

Optical Window Glass Substrate Wafer Sheets Zinc Sulfide ZnS Window

Item Number : KTOM-ZSS

Price varies based on specs and customizations


Thickness
±0.2mm
Surface Flatness
N<1λ
Surface Quality
60/40~40/20
ISO & CE icon

Shipping:

Contact us to get shipping details Enjoy On-time Dispatch Guarantee.

View Specs

Why Choose Us

Easy ordering process, quality products, and dedicated support for your business success.

Easy Process Quality Assured Dedicated Support

Optical Zinc Sulfide

Zinc Sulfide (ZnS) is grown using chemical vapor deposition (CVD), known for its strength and hardness, making it suitable for military and harsh environments. It is commonly used in the 3-5μm and 8-12μm ranges. Additionally, MultiSpectral grade ZnS (MS) eliminates voids and defects, extending its usability to the visible region.

Detail & Parts

The extremely strong light transmittance of zinc sulfide window
The extremely strong light transmittance of zinc sulfide window
High purity zinc sulfide window
High purity zinc sulfide window
Zinc Sulfide Window Infrared Spectrum Measured Map
Zinc Sulfide Window Infrared Spectrum Measured Map

Advantages of Zinc Sulfide

  • Broad Range Compatibility: ZnS lenses are designed to be compatible with a variety of IR ranges, making them versatile for different applications. Whether used uncoated or with anti-reflective (AR) coatings, they can be tailored to specific IR wavelengths.
  • Low Chromatic Aberration: ZnS exhibits low dispersion, resulting in minimal chromatic aberration. This characteristic ensures that the lenses can accurately focus and deliver high-quality images without distortion or color fringing.
  • Rugged Optics: ZnS lenses are well-suited for infrared applications that require durable and robust optics. They can withstand harsh environments, making them reliable for use in challenging conditions.

Precautions

  • Special care should be taken when handling Zinc Selenide as it is a toxic material. Always wear rubber or plastic gloves to avoid the risk of contamination.
  • The damp reunion will affect ZnS powder dispersion performance and using effects, therefore, Zinc Sulfide ZnS powder should be sealed in vacuum packing and stored in a cool and dry room, the Zinc Sulfide ZnS powder can not be exposure to air. In addition, the Zinc Sulfide ZnS powder should be avoided under stress.

Provide customized services

Through the implementation of innovative and state-of-the-art melting processes, we have acquired extensive expertise in the development and manufacture of quality glass products, offering a wide range of optical glass products for a variety of commercial, industrial and scientific applications. The company provides various specifications of optical glass such as raw glass, cut parts and finished components, and cooperates closely with customers to customize products according to customer needs. With an unwavering commitment to quality, we ensure our customers receive the perfect solution tailored to their requirements.

For further quotations, please contact us.

Trusted by Industry Leaders

Our Cooperated Clients

FAQ

What Are The Main Types Of Glass Substrates?

The main types of glass substrates include soda-lime glass, sapphire, boroaluminosilicate glass, optical quartz glass, K9 glass, CaF2 substrate, magnesium fluoride crystal substrate, and silicon.

What Was The Role Of ZnS Screen In The Gold Foil Experiment?

The zinc sulphide screen aids in the detection of alpha-particles after scattering from gold foil in -ray scattering experiment. When alpha particles strike the zinc sulphide screen, flashes of light appear.

What Crystal Is ZnS?

The crystal structure is also known as diamond cubic and may be thought of as two interpenetrating fcc lattices, one for sulphur the other for zinc, with their origins displaced by one quarter of a body diagonal.

Why Is ZnS Important?

The most common use of ZnS is as a pigment for paints, plastics, and rubber. Lithopone, a mixture of ZnS and barium sulfate (BaSO4), is a widely used pigment for low-gloss paints. ZnS is phosphorescent, which makes it useful for several electronic and decorative applications.

What Is Soda-lime Glass Used For?

Soda-lime glass is widely used as an insulating substrate for thin and thick film deposition in various applications due to its uniform thickness and exceptionally flat surfaces.

What Is Optical Glass Used For?

Due to its exceptional level of clarity and durability, optical glass is the most commonly used material for a wide variety of optical applications, including: Lenses for analytical and medical equipment. Photographic lenses. Windows for optical systems and instruments.

What Are The Advantages Of Using Sapphire Substrates?

Sapphire substrates offer unparalleled chemical, optical, and physical properties. They are highly resistant to thermal shocks, high temperatures, sand erosion, and water, making them ideal for demanding applications.

What Is The Composition Of Optical Glass?

About 95% of all glasses are of the "soda-lime" type, containing silicon dioxide (silica), Na2O (soda), and CaO (lime). Crown glass is a soda-lime-silica composite.

Why Is Boroaluminosilicate Glass Suitable For Laboratory Glassware And Cooking Utensils?

Boroaluminosilicate glass is highly resistant to thermal expansion, making it suitable for applications that require resistance to temperature changes, such as laboratory glassware and cooking utensils.

What Are The Most Common Optical Glasses?

The most common optical glasses for the IR spectrum are calcium fluoride, fused silica, germanium, magnesium fluoride, potassium bromide, sapphire, silicon, sodium chloride, zinc selenide, and zinc sulfide.

What Are The Applications Of Optical Quartz Glass Sheets?

Optical quartz glass sheets are used for precise light manipulation in various fields including telecommunications, astronomy, and optical technology due to their exceptional clarity and tailored refractive properties.

What Makes K9 Glass Special?

K9 glass, also known as K9 crystal, is a type of optical borosilicate crown glass renowned for its exceptional optical properties, making it suitable for various optical applications.

What Is A CaF2 Window Used For?

A CaF2 window is an optical window made of crystalline calcium fluoride. These windows are versatile, environmentally stable, and resistant to laser damage, making them suitable for a wide range of optical applications.

What Are The Properties Of Magnesium Fluoride Crystal Substrates?

Magnesium fluoride (MgF2) is a tetragonal crystal that exhibits anisotropy, making it imperative to treat it as a single crystal when engaging in precision imaging and signal transmission.

What Is Silicon Used For In The Near-infrared Range?

Silicon (Si) is widely regarded as one of the most durable mineral and optical materials for applications in the near-infrared (NIR) range, approximately 1 μm to 6 μm.

What Are Glass Vibration Beads Used For In Laboratories?

Glass vibration beads, commonly used in laboratory settings, are transparent glass balls designed to prevent zeolite formation, making them useful in various experimental setups.
View more faqs for this product

Product Datasheet

Optical Window Glass Substrate Wafer Sheets Zinc Sulfide ZnS Window

Category Catalog

Optical Materials


REQUEST A QUOTE

Our professional team will reply to you within one business day. Please feel free to contact us!

Related Products

Zinc Selenide ZnSe Optical Window Glass Substrate Wafer and Lens

Zinc Selenide ZnSe Optical Window Glass Substrate Wafer and Lens

Zinc selenide is formed by synthesizing zinc vapor with H2Se gas, resulting in sheet-like deposits on graphite susceptors.

View Details
Optical Window Glass Substrate Wafer Quartz Plate JGS1 JGS2 JGS3

Optical Window Glass Substrate Wafer Quartz Plate JGS1 JGS2 JGS3

The quartz plate is a transparent, durable, and versatile component widely used in various industries. Made from high-purity quartz crystal, it exhibits excellent thermal and chemical resistance.

View Details
Side Window Optical Electrolytic Electrochemical Cell

Side Window Optical Electrolytic Electrochemical Cell

Experience reliable and efficient electrochemical experiments with a side window optical electrolytic cell. Boasting corrosion resistance and complete specifications, this cell is customizable and built to last.

View Details
Optical Window Glass Substrate Wafer CaF2 Substrate Window Lens

Optical Window Glass Substrate Wafer CaF2 Substrate Window Lens

A CaF2 window is an optical window made of crystalline calcium fluoride. These windows are versatile, environmentally stable and resistant to laser damage, and they exhibit a high, stable transmission from 200 nm to about 7 μm.

View Details
MgF2 Magnesium Fluoride Crystal Substrate Window for Optical Applications

MgF2 Magnesium Fluoride Crystal Substrate Window for Optical Applications

Magnesium fluoride (MgF2) is a tetragonal crystal that exhibits anisotropy, making it imperative to treat it as a single crystal when engaging in precision imaging and signal transmission.

View Details
Optical Window Glass Substrate Wafer Barium Fluoride BaF2 Substrate Window

Optical Window Glass Substrate Wafer Barium Fluoride BaF2 Substrate Window

BaF2 is the fastest scintillator, sought-after for its exceptional properties. Its windows and plates are valuable for VUV and infrared spectroscopy.

View Details
Optical Window Glass Substrate Wafer Single Double Sided Coated K9 Quartz Sheet

Optical Window Glass Substrate Wafer Single Double Sided Coated K9 Quartz Sheet

K9 glass, also known as K9 crystal, is a type of optical borosilicate crown glass renowned for its exceptional optical properties.

View Details
Infrared Transmission Coating Sapphire Sheet Substrate Window

Infrared Transmission Coating Sapphire Sheet Substrate Window

Crafted from sapphire, the substrate boasts unparalleled chemical, optical, and physical properties. Its remarkable resistance to thermal shocks, high temperatures, sand erosion, and water sets it apart.

View Details
KF Ultra-High Vacuum Observation Window Stainless Steel Flange Sapphire Glass Sight Glass

KF Ultra-High Vacuum Observation Window Stainless Steel Flange Sapphire Glass Sight Glass

Discover the KF Ultra-High Vacuum Observation Window, featuring sapphire glass and stainless steel flange for clear, reliable observation in ultra-high vacuum environments. Ideal for semiconductor, vacuum coating, and scientific research applications

View Details
CVD Diamond Optical Windows for Lab Applications

CVD Diamond Optical Windows for Lab Applications

Diamond optical windows: exceptional broad band infrared transparency, excellent thermal conductivity & low scattering in infrared, for high-power IR laser & microwave windows applications.

View Details
CF Ultra-High Vacuum Observation Window Stainless Steel Flange Sapphire Glass Sight Glass

CF Ultra-High Vacuum Observation Window Stainless Steel Flange Sapphire Glass Sight Glass

Discover CF ultra-high vacuum observation windows with sapphire glass and stainless steel flanges. Ideal for semiconductor manufacturing, vacuum coating, and more. Clear observation, precise control.

View Details
High Temperature Resistant Optical Quartz Glass Sheet

High Temperature Resistant Optical Quartz Glass Sheet

Discover the power of optical glass sheets for precise light manipulation in telecommunications, astronomy, and beyond. Unlock advancements in optical technology with exceptional clarity and tailored refractive properties.

View Details
KF Ultra-High Vacuum Observation Window 304 Stainless Steel Flange High Borosilicate Glass Sight Glass

KF Ultra-High Vacuum Observation Window 304 Stainless Steel Flange High Borosilicate Glass Sight Glass

Discover KF Ultra-High Vacuum Observation Window: 304 Stainless Steel Flange & High Borosilicate Glass Sight Glass, Ideal for precise observation in ultra-high vacuum environments.

View Details
CF Ultra-High Vacuum Observation Window Window Flange High Borosilicate Glass Sight Glass

CF Ultra-High Vacuum Observation Window Window Flange High Borosilicate Glass Sight Glass

Discover CF ultra-high vacuum observation window flanges with high borosilicate glass, perfect for semiconductor manufacturing, vacuum coating, and optical instruments. Clear observation, durable design, easy installation.

View Details
Infrared High Resistance Single Crystal Silicon Lens

Infrared High Resistance Single Crystal Silicon Lens

Silicon (Si) is widely regarded as one of the most durable mineral and optical materials for applications in the near-infrared (NIR) range, approximately 1 μm to 6 μm.

View Details
Float Soda-Lime Optical Glass for Laboratory Use

Float Soda-Lime Optical Glass for Laboratory Use

Soda-lime glass, widely favored as an insulating substrate for thin/thick film deposition, is created by floating molten glass on molten tin. This method ensures uniform thickness and exceptionally flat surfaces.

View Details
Shortpass Filters for Optical Applications

Shortpass Filters for Optical Applications

Shortpass filters are specifically designed to transmit light with wavelengths shorter than the cutoff wavelength, while blocking longer wavelengths.

View Details
High Purity Zinc Foil for Battery Lab Applications

High Purity Zinc Foil for Battery Lab Applications

There are very few harmful impurities in the chemical composition of zinc foil, and the surface of the product is straight and smooth; it has good comprehensive properties, processability, electroplating colorability, oxidation resistance and corrosion resistance, etc.

View Details
Copper Sulfate Reference Electrode for Laboratory Use

Copper Sulfate Reference Electrode for Laboratory Use

Looking for a Copper Sulfate Reference Electrode? Our complete models are made of high-quality materials, ensuring durability and safety. Customization options available.

View Details
400-700nm Wavelength Anti Reflective AR Coating Glass

400-700nm Wavelength Anti Reflective AR Coating Glass

AR coatings are applied on optical surfaces to reduce reflection. They can be a single layer or multiple layers that are designed to minimize reflected light through destructive interference.

View Details