Advanced Fabrication Technology

SUPERIOR® Optics is a company with over 24 years of experience in optical design, mechanical manufacturing and optical assembly. We have upgraded our advanced fabrication technology to meet the growing demand for precision and accuracy in the photonics industry.

Our fabrication capabilities have been expanded by investing in new devices and equipment and hiring skilled opticians. Some examples are the Optotech (r) machining station and Ametek (r) aspherical machine. We are equipped with the Zygo Verifire ™ interferometer, as well as the MTF testing station. We believe our greatest value is in our people and our technology, from manufacturing to inspection.

Advanced Fabrication Technology

Expertise and Familiarity of Production Team

Our optical and engineering team consists of 10 optical experts who have expertise and familiarity with high-end applications. Our engineers’ specialty and understanding of the optical system can ensure that your needs would be fully understood and met. We are proud of our professional customer service that offers full support throughout the products’ life cycle.

From R&D projects to production, our production team has consistently delivered excellent quality parts. Our team has become mature and vigilant over the years, avoiding potential production risks. This has resulted to significant cost savings for our customers. Our engineers spend a lot of time during the initial consultation going over each optical specification. This helps to ensure that the tolerance is suitable for the application and avoids unnecessary yield losses and tight specifications that drive up production costs.

Advanced Fabrication Technology

Rich Portfolio of Successful Client Stories

SUPERIOR® Optics’s portfolio of client success stories has grown over the last 14 years. We have created a bulletproof process to guarantee our clients’ optical goals. Our team performs a thorough review of the specs and conducts a careful examination during quotations and before production to avoid potential production problems. Our suggestions have often been successful in optimizing the optical design to reduce cost and improve manufacturing.

As an example, we simulate the aspherical formula during the RFQ to make sure that the design can be manufactured. This helps to prevent failures before production. We offer free trials on low-cost materials for the feasibility test to understand and study production challenges.

SUPERIOR® Optics continue to improve our fabrication technology, but we also maintain and are proud of our traditional methodology which involves high-speed machines and polishers. We are confident that our production staff, along with our metrology procedures, will deliver precision optics of high quality to you and your institutions.

Related Optical Design
Key Details

Project Date: 24.02.2015

Project Budget: 10.000 USD

Technologies: PHP, HTML, CSS, JS

At SUPERIOR® Optics, as A Rapid Pace of Advanced Fabrication Technology

Our optical engineers are aware of the need to create products that can be produced cost-effectively and meet or exceed your requirements. We are looking forward to working with you to create an optical design feasibility, and provide estimates for volume and prototype production.

Frequently Asked Questions

1. What are some optical considerations for camera module design?

f-number, object distance, fixed focus/autofocus, field of view (FOV), operating wavelength band, frequency range, MTF, scene dynamic range, distortion, chief ray angle (CRA), stray light requirements, and centration tolerances.

2. What are the advantages of vertical integration (VI) and design for manufacturability (DFM) in camera module manufacturing?

In camera module manufacturing, VI and DFM offer advantages such as intricate manufacturing (for complexly interrelating parts), rapid prototyping, scalability, and, most importantly, a path to continually reduced size, weight, power, and cost (SWaP-C).

3. What are the components of the optical assembly in camera module manufacturing?

Axial alignment, precise optical pathway placement, centration, electro-optics integration, optical bonding, and sonic welding techniques

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