0.71" FHD Micro-OLED Immersive HeadsetIntegration

Matching and sample validation of acompact immersive display solutionFrom display and optical conditions throughterminal sample validation.

01 |  Why This Project

This project aims to validate a compact immersive display solution with high display performance, optical clarity, and excellent system compatibility for VR, MR, and other immersive headsets.

Key challenges the project addresses:
  • Balancing compact structure with high optical performance
  • Maintaining high resolution and excellent optical clarity
  • Minimizing chromatic aberration and distortion
  • Ensuring high overall system brightness
  • Verifying VR optical compatibility and full-screen image quality
  • Coordinating display, optics, structure, and thermal design
Display → Optical Assembly → Eyepiece (Compressed Optical System)
02 |  Solution Requirements

To define the performance goals for this compact immersive display solution, the following key metrics were specified in terms of resolution, optical parameters, interface, size, brightness, and thermal performance.

Display0.71" Micro-OLED
Resolution1920 × 1080
Optical TypePancake
Field of View±30° approx. 60°
Eye Relief16.2 mm
Magnification15.4×
F-number3.2
Exit Pupil DiameterΦ5 mm
Exit Pupil Distance18 mm
Optical Total Length26.9 mm
Distortion≤1%
Transmittance>90%
Interface & ConnectorTo be confirmed per project
03 |  Why DP-012 + OP-002 Was Selected

DP-012 and OP-002, together with the 0.71" display, form a highly compact optical chain. The 1920×1080 resolution ensures clear and legible text and UI, delivering an excellent AI/FOG experience for the immersive headset.

DP-012
0.71" FHD
Micro-OLED Display
Interface & Driver Board
 
OP-002
Pancake Optics
Immersive Headset
Optical Architecture
  • The compact display enables a slimmer headset profile
  • High optical transmittance ensures clear image output
  • Interface and driver board adapt to system integration and signal paths
  • System-level matching and validation cover optics and structure
04 |  From Display Bring-Up to Headset Sample

A systematic validation workflow ensures image quality from first light through headset-level sample verification.

1
Display bring-up
and output verification
2
Interface & driver
board verification
3
Pancake optics matching
and verification
4
System integration
and sample validation
Stage 1 – Bring up the display and verify output performance.
Stage 2 – Validate the interface and driver board for signal stability, power, and control compatibility.
Stage 3 – Tune and verify the Pancake optics for image quality, distortion, exit pupil, edge-to-edge clarity, and overall performance.
Stage 4 – Integrate system modules including display, optics, structure, and thermal design, and verify headset-level sample performance. Iterate as needed to optimize the overall solution.
05 |  What Was Confirmed After Validation

Through systematic validation, the Micro-OLED, Pancake optics, interface, and driver board were confirmed to form a compact immersive display solution that meets project requirements in imaging, user experience, functionality, and thermal performance.

Display (0.71" Micro-OLED) Optics (Pancake) Interface & Driver Board (Adapted) Structure & Thermal (Adapted) A verified headset display solution
Key validated outcomes:
  • Optimized performance for VR/MR immersive headsets
  • Stable integration of display, optical, and driver modules
  • Verified Pancake optical performance and image quality
  • Image quality, brightness, and distortion all meet requirements
  • System-level validation confirms overall performance with balanced structure and thermal design