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optical lens
8 見つかった物
カルシウム・フッ化物光学 紫外線,紫外線,赤外線用
∅ 200 mm×90 mm CaF₂ Crystal | Large-Size Calcium Fluoride Optics for UV, VUV & IR Applications Premium ∅200 mm×90 mm Calcium Fluoride (CaF₂) single crystal blanks. Exceptionally high transmission from 130 nm (VUV) to 8 µm (IR). Ideal for excimer laser windows, spectrometer prisms, and lithography optics. Custom polishing & coatings available. The Main Advantages Good mechanical and chemical stability High optical transmittance and low scattering rate High hardness and
CaF2 シングルクリスタル 高級UVグレードの光学クリスタル
CaF₂ Single Crystals Premium UV-Grade Optical Crystals for Demanding Applications Single-crystal CaF₂ combines exceptional high transmittance with outstanding thermal stability. In terms of optical performance, it achieves over 80% transmission for infrared radiation, enabling efficient transmission of infrared optical signals, which makes it widely employed as a core component in devices such as infrared sensors and thermal imagers. Regarding thermal stability, even under
CaF2 結晶 光学結晶材料 高伝導性
CaF₂ crystal Optical crystal materials High transmittance CaF₂ crystals have a wide optical transmission range (good light transmission performance in the wavelength range of 0.13μm~10μm), low stress birefringence (no obvious intrinsic birefringence above 200 nm), which is a material for making various optical window prisms and lenses. Main advantages High hardness and corrosion resistance High optical transmittance and low scattering rate Good mechanical and chemical
バリウム・フッ化物 (BaF2) クリスタル 急速なスチンチラーとVUV光学材料の供給者
Barium Fluoride (BaF₂) Crystals | Fast Scintillator & VUV-Optical Material Supplier BaF2 crystal has good optical and mechanical properties, and is widely used in infrared and ultraviolet windows and lens. In addition, BaF2 crystals also have fast response scintillation properties (decay time of 0.6 ns, peak wavelengtof 220 nm of the fast component), so the BaF2 has broad application prospects in the fields of nuclear industry, nuclear radiaton monitoring and other fields
BaF2結晶 高純度 低不純度 光学部品に使用される
BaF2 crystal High purity Low impurity Used for optical components BaF2 crystal has good optical and mechanical properties, and is widely used in infrared and ultraviolet windows and lens. In addition, BaF₂ crystals also have fast response scintillation properties (decay time of 0.6 ns, peak wavelengtof 220 nm of the fast component), so the BaF2 has broad application prospects in the fields of nuclear industry, nuclear radiaton monitoring and other fields Main advantages Fast
バリウム・フッ化物 (BaF2) 直角型窓 紫外線から赤外線へのアプリケーション用 精密ブロードバンド光学窓
Barium Fluoride (BaF₂) Rectangular Windows Precision Broadband Optical Windows for UV to IR Applications Barium Fluoride (BaF₂) Rectangular Windows are commonly used optical components that transmit specific wavelength beams while protecting internal instruments—such as electronic sensors and environmental detectors—from external influences. They exhibit high hardness, resistance to mechanical and thermal shock, and excellent transmittance across ultraviolet, visible, and
フッ化バリウム (BaF₂) 結晶 |要求の厳しい用途向けのプレミアムブロードバンド光学材料
Barium Fluoride (BaF₂) Crystals | Premium Broadband Optical Material for Demanding Applications High-purity Barium Fluoride (BaF₂) single crystals. Featuring exceptional transmission from 150 nm (VUV) to 12 µm (IR), excellent radiation resistance, and good chemical stability. Ideal for UV/VUV spectroscopy, IR optics, and harsh-environment windows. Key Advantages Fast scintillation performance High transmittance and low absorptivity High refractive index and high dispersion
フッ化バリウム (BaF₂) 結晶 ∅100 mm×3 mm UV から IR アプリケーション向けの超広帯域光学結晶
Barium Fluoride (BaF₂) Crystal ∅100 mm×3 mm Ultra-Broadband Optical Crystals for UV to IR Applications Barium Fluoride (BaF₂) crystals exhibit excellent transmittance performance, making them widely used in broadband surveillance imaging detectors for applications such as thermal imaging, night vision, and integrated visible-to-infrared systems. Additionally, their low spectral dispersion characteristics make them an ideal material choice for aberration correction and color