Transparent Optical Glass Cube Prism Splitter Cmy Crystal Dichroic Custom X-cube Prism
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Transparent Optical Glass Cube Prism Splitter CMY Crystal Dichroic
Custom X-cube Prism In high-fidelity spectral separation and subtractive color mixing applications, optical efficiency depends entirely on the purity of the substrate and the precision of the edge-pass coatings. Our Transparent Optical Glass Cube Prism Splitter represents a benchmark in optical clarity, designed primarily for complex CMY Crystal Dichroic configurations. Unlike standard RGB combining blocks, this Custom X-cube Prism is engineered with specialized thin-film coatings on its internal diagonal matrices to manipulate Cyan, Magenta, and Yellow wavelengths. This allows for advanced beam splitting where a continuous white light spectrum can be selectively filtered, or where multiple incoming bands are precisely combined with minimal insertion loss and near-zero polarization-dependent loss (PDL). Metrology & Performance Specifications The parameters listed below define our precise manufacturing thresholds and are verified using advanced spectrophotometers and plane-laser interferometers.
Key Advantages Integrating our Custom X-cube Prism into an optical assembly provides distinct structural and functional advantages:
Primary Industrial Applications
Company Profile Shanghai Advance Optical-Electronics Technology Co., Ltd. is a technology-based production enterprise, officially established in September 2009. The plant site is located in Qingpu Industrial Park, Shanghai, only half an hour's drive from Shanghai Hongqiao International Airport. The company gathers several excellent technicians in the optical industry and has comprehensive supporting capabilities such as optical mechanical and electrical design, processing and sales services. We wholeheartedly provide each customer with high-quality and convenient products and services. Business Scope: optical mechanical and electrical module development, precision optical element processing, camera lens design and processing, optical design and optical path optimization solutions, technical consultation and after-sales service. Application Fields: machine vision, artificial intelligence, biomedical, smart city, high-end monitoring, testing instruments, equipment, laser etching, special lighting, scientific research institutions, etc. Company Advantages
Frequently Asked Questions Q1: What is the primary difference between a CMY Crystal Dichroic
prism and a standard RGB X-cube prism? A: The difference lies entirely in the spectral profile of the internal thin-film coatings. A standard RGB Custom X-cube Prism splits or combines light based on the additive primary colors (Red, Green, Blue) via bandpass reflection. A CMY Crystal Dichroic configuration works via subtractive color principles, where the coating planes are engineered as precise notch filters or edge filters to reflect Cyan, Magenta, or Yellow bands while transmitting the remainder of the visible spectrum. This makes the Cube Prism Splitter uniquely suited for high-density light tuning and specialized analytical instruments. Q2: How does the "Crystal" grade classification affect the
performance of the Transparent Optical Glass? A: Standard optical glass can contain microscopic bubbles, striae, and trace iron impurities that cause slight green or yellow tinting, which absorbs light energy and induces thermal stress. Our crystal-grade Transparent Optical Glass undergoes a proprietary vacuum-refinement process to completely eliminate micro-cavities and metallic impurities. This results in flat spectral transmission across the visible range, ensuring that your Cube Prism Splitter does not introduce color distortion or energy loss even when processing high-intensity white light sources. Q3: Can these Custom X-cube Prism blocks be modified for
specialized angles of incidence (AOI)? A: Yes. While standard X-cube prisms operate at a nominal 45° internal angle of incidence for incoming light parallel to the entrance face, our engineering team can customize the internal coating designs to accommodate divergent or convergent beam profiles. If your optical system utilizes a non-collimated light path, we can adjust the multi-layer dielectric thickness profiles across the internal splitting planes to prevent spectral shifting and minimize aberrations across the entire clear aperture. Q4: What surface treatments are applied to the external faces of
the Cube Prism Splitter? A: To maximize total light throughput and eliminate unwanted secondary reflections (ghosting), all external entrance and exit faces of the Transparent Optical Glass Cube Prism Splitter are coated with a multi-layer Broad-Band Anti-Reflection (BBAR) coating. This coating reduces single-surface reflection loss from roughly 4% down to less than 0.25% across the 400 nm−700 nm visible band, ensuring maximum contrast and efficiency for your Custom Beam Splitter system. |
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