

DMRXO0023WGNA 0.23" AMOLED Microdisplay 640×400 – MIPI DSI + I²C Interface
- 💹 Enjoy a 20% discount for orders over 500
- 📉 A 15% discount is available for orders ranging from 200 to 499
- 🎁 A 10% discount is available for orders ranging from 50 to 199
- 🎁 A 5% discount is available when ordering 10-49
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Factory bulk lead time: 3 weeks.




DMRXO0023WGNA 0.23" AMOLED Microdisplay 640×400 – MIPI DSI + I²C Interface
- 💹 Enjoy a 20% discount for orders over 500
- 📉 A 15% discount is available for orders ranging from 200 to 499
- 🎁 A 10% discount is available for orders ranging from 50 to 199
- 🎁 A 5% discount is available when ordering 10-49
0.23" AMOLED Microdisplay 640×400 – MIPI DSI + I²C Interface
The DMRXO0023WGNA is a 0.23-inch silicon-based AMOLED microdisplay designed for near-eye optical systems such as AR glasses, compact viewfinders, head-mounted displays, and lightweight wearable devices. With a pixel density of 3255 PPI, ultra-high brightness, low power consumption, and wide temperature operation, it is engineered for next-generation XR applications.
This microdisplay uses top-emitting AMOLED architecture, delivering deep blacks, exceptional contrast, and wide viewing angles. It is available in full-color, monochrome white, red, or green versions, making it flexible for different optical system requirements.
- Ultra-High Resolution: 3255 PPI microdisplay for optical magnification systems.
- High Brightness: Up to 10,000 cd/m² (mono red/green); 3000–6000 cd/m² for full color.
- Low Power: Typical consumption 100–145 mW depending on color mode.
- Wide Operating Temperature: -40°C to +65°C for outdoor and industrial usage.
- High Contrast: >10,000:1 due to self-emissive OLED structure.
| Technical Parameter | Specification |
|---|---|
| Display Type | AMOLED Microdisplay (Silicon-based) |
| Diagonal Size | 0.23 inch |
| Resolution | 640 × (RGB) × 400 |
| Pixel Size | 7.8 μm × 7.8 μm |
| Pixel Arrangement | RGB Irregular Hexagon |
| Display Area | 5.06 × 3.29 mm (0.23" diagonal) |
| Brightness | 3000–10000 cd/m² depending on model |
| Contrast Ratio | >10,000:1 |
| Refresh Rate | 25 Hz – 90 Hz |
| Interface | MIPI DSI (1 Lane) + I²C |
| Power Supply | 1.8V (logic), 5.0V (VCC) |
| Power Consumption | 100–145 mW (typ.) |
| Operating Temperature | -40°C to +65°C |
| Storage Temperature | -55°C to +90°C |
| Weight | 0.2 g |
| Structure Size | 54.33 × 6.02 × 1.09 mm (FPC) |
The DMRXO0023WGNA microdisplay is engineered for compact optical systems requiring exceptional clarity and reliability. DisplayModule offers engineering support for optical matching and system integration.
- Optics Matching: Assistance with lens choice, magnifier systems, and AR waveguide integration.
- Low-Power System Design: Supports power sequencing guidance and power-optimized configurations.
- Interface Support: MIPI DPHY/DSI and I²C configuration support up to 400 kbps.
- OEM Customization: Color mode options (full color/mono) and custom brightness tuning.
Ideal for waveguide or magnifying near-eye AR systems requiring high PPI and compact display engines.
Perfect for lightweight HMDs, monocular viewers, and HUD-style wearables.
High-contrast, small-size AMOLED suited for EVFs and compact imaging systems.
Used in micro-imaging devices, inspection systems, and portable diagnostic instruments.
This module provides a robust MIPI + I²C interface, integrated VCOM regulation, built-in video BIST, and support for RGB888/RGB101010 formats. It is ready for integration into advanced imaging and wearable platforms.
- Video Formats: RGB888 / RGB101010 supported via MIPI.
- Power Sequencing: Complies with controlled power-up/down sequence.
- Internal Test Patterns: Configurable BIST with color bars and pure color modes.
- VCOM Regulation: SWIRE-controlled VCOM voltage adjustment.
Technical Documentation: Includes electrical specifications, optical data, timing diagrams, pin definitions, and power sequence instructions.
Datasheet: Download DMRXO0023WGNA Datasheet (PDF)
Engineering Support: Contact us for MIPI setup, optical integration, system tuning, and low-power design optimization.
