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Mymatrix

Design

Studios

mymatrix.design

Mumbai

VO653, 13th Floor, Embassy 247, Vikhroli West, Mumbai +91 81130 28767

Thanjavur

1/30 Kandiar Street, North Ambalapattu, Orathanadu +91 86674 49954

Our Approach
and Work Specifics

We bridge the gap between theoretical physics and physical, manufacturable reality. We oversee the fabrication of early-stage optical components and manage the critical optomechanical alignment. By conducting rigorous optical metrology and testing, we validate that the physical prototype perfectly matches the simulated design criteria before moving into mass production.

LENS SYSTEM DESIGN

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We develop custom lens architectures tailored to your exact technical specifications. From high-resolution imaging optics for medical devices and cameras to specialized lenses for sensors, we balance field of view, focal length, and aberration correction. Our team ensures that your optical system delivers crisp, distortion-free image quality and precise light capture, perfectly integrated with your hardware.

ILLUMINATION ENGINEERING

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We design advanced lighting systems that direct light exactly where it is needed with maximum efficiency. Utilizing custom reflectors, light pipes, lenses, and optical microstructures, we optimize light distribution for uniformity, specific intensity, and precise color rendering. Whether for consumer electronics, automotive lighting, or machine vision, we ensure your illumination system is both powerful and energy-efficient.

RAY TRACING & SIMULATION

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Before manufacturing any physical parts, we rigorously model your optical system in a virtual environment. Using advanced optical engineering software, we simulate complex light behavior, analyze stray light, and conduct extensive tolerance analysis. This allows us to predict real-world performance, eliminate optical flaws, and refine the design, saving you significant time and prototyping costs.

OPTICAL PROTOTYPING

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We bridge the gap between theoretical physics and physical, manufacturable reality. We oversee the fabrication of early-stage optical components and manage the critical optomechanical alignment. By conducting rigorous optical metrology and testing, we validate that the physical prototype perfectly matches the simulated design criteria before moving into mass production.