0.32-inch SVGA OLED-on-Silicon Microdisplay

0.32″ Micro OLED Display

A compact 800 × 600 real-RGB Micro OLED platform with up to 120 Hz operation for FPV goggles, electronic viewfinders, head-mounted displays and professional optical instruments.

0.32-inch 800 by 600 SVGA Micro OLED display module

Compact SVGA Micro OLED Image Source

The 0.32″ Micro OLED display is an active-matrix color OLED-on-Silicon module within DisplayMan’s broader Micro OLED displays portfolio. It provides an 800 × 600 real RGB resolution, while its 6.48 × 4.86 mm active area delivers high pixel density in a compact package.

Because every pixel is self-emissive, the display provides true black, high contrast and fast response without a separate LCD backlight. It is designed as the image source inside an optical system rather than as a direct-view screen.

Base Platform

SY032WEM01 is the main 2000 cd/m² reference model. A lower-brightness 400 cd/m² direction may also be reviewed for suitable applications and supply conditions.

Not a Complete Display System

The Micro OLED panel must be matched with compatible driver electronics, optics, mechanics and a host input architecture.

Display Size0.32″ diagonal
Resolution800 × 600 SVGA
Active Area6.48 × 4.86 mm
Pixel Size8.1 × 8.1 μm
Brightness2000 cd/m² reference
Contrast Ratio100,000:1 reference
Frame Rate15–120 Hz
InterfaceMIPI / RGB / I²C

0.32″ Micro OLED Display Specifications

The following values are engineering references for the SY032WEM01 platform. Final production specifications should be confirmed against the selected model and approved drawing.

Model DirectionSY032WEM01 series
Display TechnologyActive-matrix color OLED-on-Silicon / OLEDoS
Diagonal Size0.32 inch
Native Resolution800 (H) × 600 (V), real RGB
Supported Input Resolutions800 × 600, 768 × 576 and 320 × 240 reference modes
Number of Dots1.44 million subpixels: 800 × 600 × 3
Pixel Size8.1 × 8.1 μm
Active Area6.48 × 4.86 mm
Brightness2000 cd/m² reference; 400 cd/m² direction subject to model and availability review
Contrast Ratio100,000:1 reference
Uniformity>85% reference
Color Depth16.7 million colors, 24-bit RGB
Frame Rate15–120 Hz; 800 × 600 up to 120 Hz
Interfaces2-lane MIPI D-PHY, 24-bit RGB and I²C control
Reference Power ConsumptionApproximately 220 mW under specified test conditions
Operating Temperature−20°C to +70°C
Storage Temperature−40°C to +80°C
Specification Note

Brightness, power consumption and supported modes depend on operating conditions, drive settings and the exact production version. Confirm current availability before completing the optical and electronic design.

Why Choose a 0.32″ Micro OLED?

Compact

Small Active Area

The 6.48 × 4.86 mm image area supports miniature eyepieces and compact near-eye product architectures.

Image Quality

SVGA Real RGB Detail

800 × 600 native resolution provides clear menus, telemetry, targeting information and viewfinder composition.

Motion

Up to 120 Hz

A high-frame-rate direction supports smoother motion when the host, driver and complete pipeline are configured accordingly.

Contrast

Self-Emissive Pixels

True black and high contrast help small graphics and image edges remain visible after optical magnification.

Interface

Flexible Signal Options

MIPI D-PHY, RGB video and I²C control provide practical integration paths for compact embedded systems.

Environment

Wide Temperature Range

The reference operating range supports evaluation for industrial and professional optical products.

Typical Applications

FPV Goggles

Compact size, fast response and strong contrast for live camera viewing, telemetry and flight information.

Electronic Viewfinders

A small SVGA image source for cameras, inspection systems and professional imaging equipment.

Head-Mounted Displays

Suitable for compact monocular viewers and lightweight near-eye modules where small size is critical.

Thermal Imaging

High contrast supports compact thermal viewers and portable observation instruments.

Industrial Viewers

Useful for inspection, measurement and embedded optical equipment requiring a compact electronic eyepiece.

How the 0.32″ Micro OLED Fits into a System

The panel is one part of the complete image chain. System performance depends on every element around it.

Host Video Source
Interface / Driver Electronics
0.32″ Micro OLED
Eyepiece Optics
Visible Virtual Image

Electronic Integration

  • Match MIPI or RGB timing to the selected module.
  • Provide the required power rails and power sequence.
  • Control display settings through the correct I²C commands.
  • Review host input conversion, refresh rate and latency as one pipeline.

Optical Integration

  • Match the active area to the eyepiece focal length and magnification.
  • Define field of view, eye relief, exit pupil and image orientation.
  • Evaluate MTF, distortion, color and brightness after optical loss.
  • Control alignment, focus and mechanical tolerances during assembly.
Need More Than the Panel?

Use the Near-Eye Display Solution page when your project also requires display selection, driver electronics, optical matching, mechanical integration and prototype review.

When Should You Select the 0.32″ Platform?

Good Fit

Select 0.32″ When

  • Compact package size has high priority.
  • SVGA resolution is adequate for the application.
  • The design needs MIPI or RGB integration.
  • FPV, EVF or a small optical viewer is the target device.
  • High contrast and fast response matter more than very high pixel count.
Compare First

Review a Larger Platform When

  • Full HD or higher resolution is required.
  • The optical design needs a larger active area.
  • Fine text or detailed imagery remains insufficient after magnification.
  • The target field of view and optical architecture favor another display size.
  • Your driver platform cannot support the required MIPI or RGB timing.
Do Not Select by Size Alone

Display size, resolution, brightness, field of view, focal length, interface and mechanical envelope must be reviewed together.

0.32″ Micro OLED Display FAQ

What is the resolution of the 0.32″ Micro OLED?

The native resolution is 800 × 600 pixels in a real RGB configuration, providing an SVGA image in a 6.48 × 4.86 mm active area.

What is the brightness of SY032WEM01?

SY032WEM01 is referenced at 2000 cd/m². A 400 cd/m² product direction may also be reviewed, but the exact model and current availability should be confirmed before design-in.

Which interfaces does the display support?

The platform supports a 2-lane MIPI D-PHY video interface, a 24-bit RGB interface and I²C control. A compatible driver design is still required.

Can it connect directly to HDMI or USB Type-C?

Normally no. HDMI or Type-C sources require a matching driver or conversion board that outputs the correct panel interface, timing, control and power sequence.

Is the 0.32″ Micro OLED suitable for FPV goggles?

Yes. Its compact size, SVGA resolution, high contrast and fast response make it a practical image-source direction for compact FPV goggles, subject to complete latency and optical-system evaluation.

Does the panel include an eyepiece or optical lens?

No. The Micro OLED display is the image source. Eyepiece optics, focus mechanics and housing are separate unless an integrated optical module is specified.

Can DisplayMan provide a driver board or optical module?

DisplayMan can review matching driver electronics, optical engines and near-eye integration requirements according to the application, host input, field of view and mechanical space.

What information is needed for a quotation?

Please provide the application, required quantity, brightness, interface or host input, optical requirements, mechanical limits and prototype or mass-production schedule.

Qualified Micro OLED Projects

Evaluate the 0.32″ Micro OLED Around Your Real Application

Send the application, required quantity, brightness target, host input, optical requirement, available mechanical space and project schedule. DisplayMan will review whether the SY032WEM01 platform is suitable.

The Micro OLED panel, driver electronics, power sequence, optical engine, mechanical structure 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.