0.6-inch OLED-on-Silicon Display Platform

0.6″ Micro OLED Display

A versatile Micro OLED platform with Full HD, SXGA and SVGA directions, including high-brightness MIPI and lower-brightness RGB configurations for AR, HUD, EVF and professional optical systems.

0.6-inch Micro OLED display module

One 0.6″ Platform, Multiple Display Directions

The 0.6″ Micro OLED display family is a flexible OLED-on-Silicon platform within DisplayMan’s broader Micro OLED displays portfolio. It includes Full HD MIPI models for higher-resolution near-eye systems and lower-resolution RGB models for EVF, thermal and industrial viewers.

The correct configuration should be selected by resolution, brightness, interface, frame rate and optical efficiency—not by diagonal size alone.

Full HD High-Brightness Direction

The 1920 × 1080 platform includes 3000 cd/m² and a 6000-nit micro-lens direction for optical systems with greater light loss.

RGB Instrument Direction

Lower-brightness SXGA and SVGA configurations provide RGB input for EVF, thermal viewers and professional optical instruments.

Display Size0.6″ diagonal
Resolution RangeSVGA to Full HD
FHD Active Area13.2192 × 7.4358 mm
FHD Pixel Pitch6.885 × 6.885 μm
Brightness Range200–6000 cd/m²
FHD Contrast>200,000:1
FHD Frame Rate25–120 Hz
InterfacesMIPI / RGB

0.6″ Micro OLED Model Directions

These configurations share the same nominal 0.6″ size but target different optical and electronic requirements. Confirm the exact model and current supply status before design-in.

Model DirectionResolutionBrightnessInterfaceTypical Use
SY060WDM011920 × 1080 Full HD3000 cd/m²MIPIAR, HUD, high-brightness near-eye optics
SY060LDM011920 × 1080 Full HD6000 cd/m² with micro lens; 3500 cd/m² without micro lensMIPIHigh-loss AR / HUD optical engines
TAS060SXC011280 × 1024 SXGA200 cd/m²RGBEVF, thermal and industrial viewers
TAS060SVC01800 × 600 SVGA200 cd/m²RGBCompact optical instruments and viewers

SY060LDM01 Full HD High-Brightness Reference

Display TechnologyActive-matrix color OLED-on-Silicon / OLEDoS
Diagonal Size0.6 inch
Native Resolution1920 × 1080 Full HD
Active Area13.2192 × 7.4358 mm
Calculated Pixel PitchApproximately 6.885 × 6.885 μm
Brightness with Micro Lens6000 cd/m² typical
Brightness without Micro Lens3500 cd/m² reference
Luminance Uniformity>85% reference, 9-point measurement
Contrast Ratio>200,000:1
Frame Rate25–120 Hz
Display InterfaceOne-port MIPI
Supported FunctionsColor-temperature adjustment, dynamic frame rate, temperature/current protection, AOI and BIST modes
Operating TemperatureConfirm for the selected production version
Configuration Boundary

The 6000 cd/m² value applies to the micro-lens configuration of SY060LDM01. Resolution, brightness, interface and optical structure must be confirmed together.

Why Choose a 0.6″ Micro OLED?

Range

Multiple Resolutions

Full HD, SXGA and SVGA directions allow the same nominal display size to serve different optical products.

Brightness

Up to 6000 nits

The micro-lens Full HD configuration supports high-loss optical engines that require stronger panel luminance.

Motion

Up to 120 Hz

The Full HD high-brightness direction supports 25–120 Hz operation for smoother near-eye motion.

Contrast

Self-Emissive Image

True black and high contrast help imagery and overlays remain clear after optical magnification.

Interface

MIPI or RGB

Choose MIPI for Full HD high-brightness systems or RGB for lower-resolution instrument designs.

Selection

Application-Specific Models

Each model direction balances resolution, brightness, bandwidth, power and optical efficiency differently.

Typical Applications

AR Glasses & Headsets

Full HD 3000 / 6000-nit directions for near-eye optical engines with moderate to high light loss.

Near-Eye HUD

A larger Full HD image source for head-mounted information systems and professional HUD architectures.

Electronic Viewfinders

SXGA, SVGA or Full HD directions for cameras, professional imaging and optical inspection.

Thermal Imaging

RGB SXGA and SVGA configurations for portable thermal viewers and observation equipment.

Optical R&D

A flexible platform for comparing resolution, brightness, interface and micro-lens optical performance.

How the 0.6″ Micro OLED Fits into a System

The selected panel, driver electronics and optical engine must be treated as one system. A model suitable for EVF may not be suitable for a high-loss AR architecture.

Host Video Source
Matched Driver Electronics
0.6″ Micro OLED
Optical Engine
Visible Virtual Image

Electronic Integration

  • Match MIPI or RGB timing to the exact model.
  • Confirm resolution, frame rate, color format and bandwidth.
  • Provide the correct power rails, control sequence and initialization.
  • Use compatible driver electronics for HDMI, Type-C or embedded host inputs.

Optical Integration

  • Calculate brightness at the eye after total optical loss.
  • Confirm whether the micro-lens configuration is required.
  • Define field of view, eye box, eye relief and focal length.
  • Manage heat, focus, distortion and mechanical alignment.
Need a Complete Near-Eye System?

Use the Near-Eye Display Solution page for display selection, driver electronics, optical-engine matching, mechanics and prototype evaluation.

How to Select a 0.6″ Micro OLED Configuration

High Resolution

Select Full HD MIPI When

  • 1920 × 1080 detail is required.
  • AR, HUD or another higher-loss optical engine is used.
  • The host and driver support the required MIPI bandwidth.
  • 3000 or micro-lens 6000 cd/m² brightness is needed.
  • Higher frame-rate near-eye motion is important.
Instrument

Select RGB SXGA / SVGA When

  • EVF, thermal or industrial viewing is the target.
  • 200 cd/m² is adequate for an enclosed eyepiece.
  • A parallel RGB interface fits the electronics.
  • SXGA or SVGA resolution meets the optical requirement.
  • Lower system bandwidth is preferred.
Do Not Treat 6000 nits as Universal

The maximum brightness is tied to a specific Full HD micro-lens configuration. Confirm the exact panel structure, interface and driver before optical design release.

0.6″ Micro OLED Display FAQ

Which resolutions are available in the 0.6″ platform?

The current reference directions include 1920 × 1080 Full HD, 1280 × 1024 SXGA and 800 × 600 SVGA configurations.

Which brightness options are available?

Reference directions include 200 cd/m² for RGB instrument models, 3000 cd/m² for a Full HD MIPI model, and 6000 cd/m² for the SY060LDM01 micro-lens configuration.

Does every 0.6″ model provide 6000 nits?

No. The 6000-nit value applies specifically to the micro-lens configuration of SY060LDM01. The same model is referenced at 3500 cd/m² without the micro lens.

Which interfaces are available?

The Full HD high-brightness directions use MIPI, while the lower-brightness SXGA and SVGA instrument directions use RGB.

Can the display connect directly to HDMI or USB Type-C?

Normally no. A compatible driver or conversion board must provide the exact MIPI or RGB timing, control and power sequence required by the selected model.

Which 0.6″ model is suitable for AR?

The Full HD 3000 cd/m² or micro-lens 6000 cd/m² directions are relevant starting points, but final selection depends on optical transmission, field of view, eye box, heat and brightness at the eye.

Which direction is suitable for EVF or thermal viewers?

The RGB SXGA or SVGA directions may be practical for enclosed eyepieces where 200 cd/m² is adequate, subject to resolution and optical evaluation.

What information is needed for a quotation?

Please provide the application, quantity, required resolution, brightness, interface or host input, optical specifications, mechanical limits and project schedule.

Qualified Micro OLED Projects

Evaluate the 0.6″ Micro OLED Platform Around Your Real Application

Send the application, quantity, required resolution, brightness, host input, optical specifications, mechanical limits and project schedule. DisplayMan will review the suitable 0.6-inch model direction.

The display, driver electronics, optical engine, mechanical structure, thermal design and host interface should be evaluated as one complete near-eye display system.

Send Your Display Requirement

Please share your application, display size, quantity and project background. We will review the most practical display direction.