Core Viewpoint - Vuzix Corporation and Avegant Corp. have announced a jointly developed binocular smart glasses reference design that aims to set a new standard for affordability, performance, and wearability in augmented reality (AR) eyewear, which will be showcased at CES 2026 [1][2]. Group 1: Product Features - The reference design integrates Avegant's AG-30L3 light engine, a compact 0.7 cc full-color LCoS technology, with Vuzix's advanced waveguide optics, providing bright and crisp imagery in a lightweight form factor [3]. - The platform is designed to accelerate the development of consumer and enterprise AR smart glasses by offering a ready-to-manufacture architecture that reduces size, weight, and total system cost [3][4]. - Key innovations include a lightweight binocular form factor optimized for everyday wear, high-efficiency waveguide optics for high-contrast visuals, and a cost-optimized architecture facilitated by Quanta Computer's manufacturing capabilities [6]. Group 2: Manufacturing and Commercialization - Quanta Computer will manufacture the reference design, leveraging its expertise as a leading electronics ODM to support rapid commercialization [4]. - Evaluation units and full engineering documentation will be available to select OEM partners starting in Q1 2026, with customization and integration support provided by Quanta [4]. Group 3: Company Backgrounds - Vuzix Corporation is a prominent designer and manufacturer of AI-powered smart glasses and AR technologies, holding over 450 patents and numerous IP licenses in optics and head-mounted displays [7]. - Avegant is a venture-backed technology company focused on developing next-generation display technology for augmented reality, known for innovations in head-mounted displays and compact light engines [8]. - Quanta Computer is a Fortune Global 500 company specializing in high-performance computing solutions, reporting consolidated revenues of approximately US$44 billion in fiscal year 2024 [9].
Avegant and Vuzix Announce New Lightweight Binocular AR Reference Design