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Mass Producing AR Smart Glasses: A How-To Guide

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Design and Manufacture of AR Glasses: Meeting OEM Expectations and Design for Manufacturing

TriLite Revolutionizes AR Glasses Manufacturing with Laser Beam Scanning Technology

March 27, 2024

Augmented reality (AR) has been a long-standing fascination for many, but the mass adoption of AR glasses has been hindered by bulky designs and high costs. TriLite, a leading technology company, is changing the game with its innovative Laser Beam Scanning (LBS) technology that addresses the challenges of mass manufacturability.

Meeting OEMs’ Expectations

TriLite’s ‘software-first’ approach shifts complexity away from hardware into the software domain, simplifying mass production and reducing costs. By implementing advanced control algorithms for their Trixel® 3 projector, TriLite minimizes the size and complexity of the LBS optical system, making it more suitable for high-volume manufacturing.

Design for Manufacturing

TriLite collaborates with world-class partners to ensure high-quality, high-volume manufacturability. By using standard components and optimizing production flows for high volumes, TriLite streamlines the manufacturing process. Engineering samples for the Trixel® 3 projector allow for rapid prototyping and design iterations.

LBS Advantages in Manufacturing

Compared to microLED and panel-based displays, LBS technology offers higher yield and scalability for mass manufacturing. MicroLED displays face challenges with efficiency, power consumption, and manufacturing yield, while LBS systems like TriLite’s remain efficient and reliable for AR glasses production.

Conclusion

TriLite’s Trixel® 3 LBS technology not only meets consumer expectations but also OEM requirements for high-volume production. With a focus on scalability, future-proofing, and cost-efficiency, TriLite is paving the way for the widespread adoption of AR glasses.

Source: LinkedIn

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