偏光素子
偏光素子は、光の電場の向きを制御し、コンピュテーショナルイメージングや天体観測の両方に対してパワフルに対応します。偏光状態を操作・測定するのに偏光板や波長板などの部品を用いることで、こうしたシステムはコントラストを高め、グレアを軽減し、明るさや波長だけではアクセスできない情報を明らかにすることができます。マシンビジョンでは特徴の検出や材料分析の向上を可能にし、天文学では光が塵、磁場、そして惑星大気とどのように相互作用するかを科学者が研究し、天体環境をより深く理解するのに役立ちます。
光学接着剤
Optical Adhesives are specialized materials used to bond and integrate optical components while maintaining high transmission and minimal distortion. Designed with controlled refractive indices, these adhesives reduce reflection losses and improve optical coupling between elements. In XR systems, optical adhesives are critical for assembling compact, high-performance devices, enabling stable alignment and efficient light transmission in applications such as sensor modules, display stacks, and waveguide integration.
特殊ウインドウ
Low-Profile Optical Windows are designed to provide protection and high optical transmission in applications where size, weight, and thickness are critical constraints. Manufactured from durable materials such as chemically strengthened glass, these thin windows maintain optical performance while minimizing system footprint. In XR applications, low-profile windows are commonly used to protect cameras, sensors, and display elements, enabling compact, lightweight designs without compromising image quality or signal integrity.
光拡散板
Light Shaping & Diffusers are used to control and distribute illumination within optical systems, enabling uniform light output and minimizing intensity variations. By scattering and homogenizing light from sources such as LEDs and lasers, these components improve system performance and measurement accuracy. In XR applications, diffusers play a critical role in eye tracking, depth sensing, and display illumination, where consistent and controlled light distribution is essential.
M12 マウントレンズ (Sマウントレンズ)
Compact / Board-Level Lenses are designed to deliver high-quality imaging performance in extremely small form factors, making them ideal for space-constrained optical systems. Commonly available in formats such as M12 (S-Mount), these lenses support a wide range of sensor sizes and resolutions while maintaining low distortion and efficient light collection. Their compact design makes them well-suited for XR applications, including eye tracking, SLAM, and embedded vision, where size, weight, and integration flexibility are critical.
テストターゲット
Optical Test & Measurement Targets are precision-engineered tools used to evaluate, calibrate, and optimize the performance of imaging and optical systems. Designed with highly accurate patterns and materials, these targets enable quantitative analysis of resolution, distortion, contrast, and color accuracy. In XR applications, they play a critical role in validating camera systems, aligning optical components, and ensuring consistent visual performance across sensing and display technologies.
検査 & 検出
Testing & Detection solutions are used to evaluate, calibrate, and optimize the performance of optical and imaging systems. These technologies enable precise measurement of parameters such as intensity, spectral response, and image quality, supporting accurate system validation and integration. In XR applications, testing and detection tools are critical for characterizing camera performance, tuning illumination systems, and ensuring consistent visual quality in advanced sensing and display architectures.
回折光学素子 (DOE)
回折光学素子 (DOE) は、透過したレーザー光の位相を変化・制御させる微細構造のパターンを持って製造されます。回折光学素子は、その微細構造を変えることで、アプリケーション要件に適合するビーム強度分布やビーム形状のほぼ全てを作り出すことができます。この光学素子は、プラスチック、合成石英、ゲルマニウム、サファイア、セレン化亜鉛 (ZnSe) をはじめとするさまざまな基板から製造され、UV、可視 および 赤外 (IR) レーザーとの使用を可能にします。回折光学素子は、特定レーザー波長用に一般的にデザインされ、その性能は波長に依存します。
700 – 1650nm 干渉フィルター (ソフトコートタイプ)
Infrared (NIR/SWIR) Filters are designed to selectively transmit or block specific wavelengths in the near-infrared and shortwave infrared spectrum, enabling precise control of light in imaging and sensing systems. By isolating desired spectral bands, these filters improve signal-to-noise ratio, reduce ambient light interference, and enhance detection accuracy. They are widely used in XR applications such as eye tracking, depth sensing, and biometric imaging, where reliable performance under varying lighting conditions is essential.
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