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Reference Designs

A Magic Leap technician takes notes while inspecting a waveguide during the assembly process.

Developing augmented reality (AR) glasses requires hundreds of interconnected decisions. Reference designs provide established architectures that help partners evaluate concepts, understand design implications, and make more informed decisions before committing to custom hardware.

A wireframe mockup of a Magic Leap AR glasses prototype.

Foundation

Accelerating Early Decisions

A wireframe mockup of a Magic Leap AR glasses prototype.

Reference designs provide a practical starting point for AR development by combining proven architectures, technical expertise, and lessons learned from years of product development.

Exploration

Evaluating Key Priorities

During a comfort and fit test, a test subject wears a headband loaded with sensors to help Magic Leap engineers gather data.

Every AR device requires balancing competing priorities. Development experience and established architectures provide a framework for evaluating design choices before they become costly engineering challenges.

During a comfort and fit test, a test subject wears a headband loaded with sensors to help Magic Leap engineers gather data.
A Magic Leap technician handles a waveguide placement tool with a waveguide set into corresponding frames.

Direction

Refining Product Concepts

A Magic Leap technician handles a waveguide placement tool with a waveguide set into corresponding frames.

Broad ideas can be transformed into actionable development paths through greater clarity around requirements, priorities, and implementation approaches.

Acceleration

Enabling Future Development

A Magic Leap engineer holds a single waveguide frame between his fingertips to showcase the compact and thin design.

Reference designs accelerate subsequent prototyping, validation, and manufacturing activities while reducing unnecessary redesign cycles.

A Magic Leap engineer holds a single waveguide frame between his fingertips to showcase the compact and thin design.