Custom Optical X-cube Prisms Optical BK7 Quartz Beamsplitter Beam Splitter Splitting
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Detailed Product Description
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Custom Optical X-cube Prisms Optical BK7 Quartz Beamsplitter In automated optical engineering, structural rigidity and precise
waveband separation are non-negotiable parameters. Our Custom Optical X-cube Prisms are engineered specifically to eliminate cross-channel spectral
bleeding and polarization shifts in complex multi-axis assemblies.
Functioning as a high-performance Optical BK7 Quartz Beamsplitter, this cross-dichroic component integrates four pre-matched
right-angle prisms, precision-coated and optically bonded. It
manages critical beam splitting by separating complex light inputs into precise RGB outputs, or
acting as an efficient beam combiner to merge separate
monochromatic lasers into a single, uniform optical path. Technical Specifications
Industrial Applications
Performance Advantages Our precise optical alignment and cleanroom assembly procedures
provide distinct functional benefits for 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, providing 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. Company Advantages:
Certifications Exhibition Packing & Delivery Frequently Asked Questions Q1: Why should an optical designer choose an Optical BK7 Quartz
Beamsplitter over a standard plate beamsplitter? A: Plate beamsplitters inevitably introduce ghost images due to
secondary reflections from the rear surface, along with spatial
optical path offsets (refractive shift). A cubic beam splitter configuration completely bypasses these mechanical offsets,
ensuring collinear alignment. Furthermore, standard plate
components cannot execute simultaneous four-channel cross-dichroic
processing. Our Custom Optical X-cube Prisms bundle three distinct dichroic filtering planes into a single,
compact component, simplifying optical alignment and enhancing
overall mechanical stability. Q2: How does substituting N-BK7 with Fused Silica Quartz alter the
application profile of the X-cube prisms? A: N-BK7 is an exceptional, cost-effective crown glass for the
visible spectrum (400 nm - 700 nm). However, if your optical
application operates in the Ultraviolet (200 nm - 400 nm) or
Near-Infrared (>800 nm) bands, or experiences operating
temperatures exceeding 150°C, Quartz is required. Fused Silica features an extremely low coefficient of
thermal expansion (0.55 × 10⁻⁶/K), protecting the alignment of the beam splitting internal planes against thermal shock and preventing catastrophic
delamination under high-power laser loads. Q3: What measures are taken during the assembly of these X-cube
prisms to avoid angle cumulative error? A: Constructing a 4-axis cross cube requires managing cumulative
angular errors across four individual right-angle substrates. Even
an error of 1 arc minute per prism can render the combined beam splitter unusable due to image splitting (double vision). We employ
custom-built goniometers and multi-axis alignment jigs in Class 100
cleanrooms. This allows us to monitor alignment in real-time before
curing the optical adhesive, locking the cumulative angular
deviation of the final beam splitting matrix within sub-arc-minute tolerances. Q4: Are custom reflection/transmission ratios available for non-RGB
spectral configurations? A: Yes. While standard configurations are optimized for standard RGB
color management, our thin-film division designs coatings for
custom split bands. We can engineer the internal interfaces to
function as narrow-band notch splitters, dual-band separation
blocks, or neutral-density beam splitter configurations (e.g., separating an unpolarized input into
precise, equal-energy quadrants). Provide your target angle of
incidence, wavelength ranges, and desired polarization state
constraints, and our team will simulate the exact coating
performance curves for your custom application. |
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