ML Optic | Top Medical Optical Imaging Solutions Company 2022
Healthcare Tech Outlook

ML Optic

Johnson HE, Product Director,  ML OpticJohnson HE, Product Director, ML Optic
Is the image you’re seeing via your AR/VR display acceptable with respect to the overall field of view as well as smaller areas of focus? Are you able to view the images successfully even if you suffer from near or far-sightedness or astigmatism?

Many AR/VR near-eye display systems suffer with respect to how they are perceived by different users, and how that perception affects the user experience. MLOptic’s AR/VR test equipment suite solves these problems by properly assessing image quality from design verification through delivery and every step along the product development cycle.

Vision is the most important way for human body to perceive the outside world. Everyone receives and processes visual information uniquely, just like saying, “there are no two identical leaves in the world”. This particularity is not only manifested in the external characteristics of the size and spacing of the pupils of the glasses and the angle at which the signal is received, but also the sensitivity to the spectrum (color), the sensitivity to the brightness of the static large screen angle, as well as the special needs for farsightedness, nearsightedness or astigmatism; It also includes the characteristics of image display, the unique characteristics of human processing systems such as dynamic vision, binocular vision, and focus switching. In short, a qualified AR display system needs to be a combination of N dimensions such as space/angle/spectrum/time/binocular, considering the differentiated needs of customers of different ages/regions.

Giver consideration to all the factors mentioned above, our test equipment can measure relative illumination, accuracy of color rendition and brightness over the entire field of view, the perceived image sharpness with respect to relative eye position, the comparison of AR images with real-world images, as well as other pertinent parameters.

Out-going product quality can be measured and monitored automatically at the final stages on the factory floor, ensuring customer satisfaction.

To achieve these targeted capabilities and level of test expertise, the MLOptic’s team makes use of every aspect of accumulated knowledge and technical advantage over the past 20 years:

1. Optical fabrication: Experience with high-end polishing, coating, and precision lens assembly which allows us to accurately simulate the optical performance of human eye.

2. Instrumentation: Production experience with high-precision optical instruments including interferometers, focusing telescopes, spectrophotometers, and colorimeters which allows us to meet the quality requirements of aerospace, automatic driving, and other discriminating applications.


MLOptic means advanced products, testing, and worldwide service, to satisfy your vision and that of your customers


3. Test Equipment: Experience with the design and testing of automated production in-line equipment in the life science and semiconductor industries, as well as system design, development of software algorithms, and automated control systems, ensures that our in-line test stations are high-throughput, dependable, and modular.

4. AR/VR Inspection: Cooperating with leading companies in the industry has allowed us to provide mature solutions for AR/VR applied psychology research equipment, eye tracking calibration equipment, waveguide sheet dimensions and defect inspection, grating quality inspection, and other AR/VR equipment giving us a unique and comprehensive understanding of the needs of AR/VR inspection and detection.

The ML service team is spread around world including Asia, Europe, Australia, and America, providing global, 24-hour online service and support.

MLOptic means advanced products, testing, and world-wide service, to satisfy your vision and that of your customers!

Top 10 Medical Optical Imaging Solutions Companies - 2022

Company
ML Optic

Management
Johnson HE, Product Director, ML Optic

Description