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Dawang Precision
Dawang Precision, with 26 years of professional OEM&ODM CNC machining expertise and multi-system certifications including ISO 9001, ISO 13485, and IATF 16949, specializes in manufacturing Custom CNC Machining Optical/Thermal Imaging Scanner Mount for global industrial and medical equipment manufacturers. This high-stability aluminum bracket is purpose-built for infrared and optical systems, delivering exceptional alignment precision, minimal thermal distortion, and reliable vibration-free performance for critical imaging applications.
Produced via advanced 5-axis CNC machining, our CNC machining thermal imaging mount achieves tight tolerances down to ±0.005mm, ensuring consistent optical accuracy for demanding instrument requirements. We support full customization from your CAD drawings, samples, or design specifications, with optimized surface finishes and mounting features tailored to your unique system integration needs.
High-Precision Aluminum Bracket for Medical & Industrial Imaging Systems
Dawang Precision specializes in custom CNC machining mounts for optical and thermal imaging scanners. This aluminum component delivers exceptional precision alignment, minimal thermal distortion, and lightweight rigidity—ideal for medical infrared imaging devices, industrial inspection systems, and precision optical instruments requiring stable, vibration-free performance.
Produced with advanced 5-axis CNC machining to ±0.005mm tolerances, each mount is fully customizable with low-reflection finishes and precise mounting features.
Parameter | Specification | Notes |
|---|---|---|
Material | Aluminum Alloy 7075-T6 / 6061-T6 | Anodized finish standard |
Manufacturing Method | 5-Axis CNC Milling | Drilling, tapping included |
Dimensions | Custom (approx. 200-300mm length) | Based on sample |
Tolerance | ±0.01mm | High-precision assembly |
Surface Finish | Matte anodizing / bead blasting | Corrosion-resistant |
Weight | Optimized lightweight (20-40% reduction) | Reinforced thin-wall design |
Features | Mounting holes, slots, quick-release | Modular compatibility |
Our Custom CNC optical mount is manufactured with industry-leading 5-axis CNC milling, delivering ±0.005mm tolerance for high-precision assembly. Precision-machined holes and slots enable seamless sensor alignment and adjustment, eliminating imaging deviation, reducing production line calibration time, and ensuring long-term stable performance in variable operating environments.
Crafted from premium 7075-T6/6061-T6 aluminum alloy, our Aluminum imaging device bracket features an optimized thin-wall design for 20-40% weight reduction without sacrificing structural rigidity. The standard matte anti-glare anodized finish provides low reflection, scratch resistance, and corrosion protection, ideal for both medical sterile environments and harsh industrial inspection settings.
Every 5-axis CNC scanner arm and imaging mount is fully customizable to your geometry, mounting, and finish requirements, with modular compatibility for quick-release and system upgrades. We offer rapid prototyping in 5-10 days, fast mass production turnaround, and free design optimization recommendations to cut your production costs and lead times.
Our Optical scanner bracket and precision imaging mounts are trusted by leading manufacturers across high-demand sectors:
Ideal for Medical thermal scanner component applications, including infrared thermal imagers, diagnostic imaging systems, and medical optical instruments requiring sterile, stable, high-precision mounting solutions.
Perfect for industrial optical scanners, automated inspection equipment, and precision measurement systems, delivering consistent alignment for reliable defect detection and quality control.
Widely used in drone camera gimbals, aerial photography stabilizers, robotic arms, and automation equipment, providing lightweight rigidity and vibration damping for clear, stable imaging in dynamic conditions.
Suitable for laser systems, laboratory optical equipment, and Precision infrared imaging arm applications demanding ultra-tight tolerances and long-term dimensional stability.