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Embedded systems designers—especially in wearable tech, portable medical devices, and IoT—are constantly balancing performance with power efficiency. The display often becomes a key power sink and interface complexity point.
The SFOS130JY-7407AN PMOLED addresses these issues with flexible communication protocols and optimized power architecture.
Dual Interface Flexibility: SPI vs. I2C
The module supports both 4-wire SPI and I2C interfaces, selectable via the IM1 pin. This allows engineers to:
Reduce pin count with I2C
Achieve higher data rates with SPI
Easily integrate with common MCUs like STM32, ESP32, and nRF series
Power Consumption: By the Numbers
| Parameter | Typical Value |
|---|---|
| Operating Current (VDD) | 180µA |
| Operating Current (VPP) | 16mA |
| Sleep Mode (VDD) | 1µA |
| Sleep Mode (VPP) | 2µA |
These values make the module ideal for battery-powered applications where every microamp counts.
Critical Design Tip: Avoiding Leakage Current
The datasheet explicitly warns:
“When designing the main board, please add an electronic switch circuit; otherwise, leakage current may occur.”
This is a common oversight that can lead to premature battery drain.
Mechanical Integration
With a 1.43mm thickness and 12-pin FPC connector, the module can be integrated into slim and compact devices without mechanical compromise.
The SFOS130JY-7407AN combines interface flexibility with exceptional power efficiency—making it a top choice for modern embedded systems. Whether you're building a handheld medical device or a smart home controller, this display delivers performance without draining your power budget.
Explore the complete SFOS130JY-7407AN Datasheet.pdf for timing diagrams and initialization code examples.

