The REG711EA-2.7 is a highly efficient, compact, step-up DC-DC converter from the reputable semiconductor manufacturer Texas Instruments. This versatile power management integrated circuit (IC) is designed to provide a fixed output voltage of 2.7V, making it an ideal choice for battery-powered applications and portable devices that require a consistent power source.
Key Features
- Fixed Output Voltage: The REG711EA-2.7 provides a stable 2.7V output, which is essential for sensitive electronic components that require precise voltage levels for optimal operation.
- High Efficiency: This IC offers an impressive conversion efficiency, which helps in prolonging battery life by minimizing power loss during the voltage step-up process.
- Low Input Voltage: With an ability to operate from input voltages as low as 1.0V, the REG711EA-2.7 is perfect for applications powered by single-cell batteries or other low voltage sources.
- Small Package: The compact size of the REG711EA-2.7 allows for its use in space-constrained applications, including wearable technology, portable media players, and medical devices.
- Switched-Capacitor Technology: Utilizing switched-capacitor technology, this IC provides a step-up function without the need for an inductor, simplifying the design and reducing the overall component count.
Applications
The flexibility and performance characteristics of the REG711EA-2.7 make it suitable for a wide range of applications. These include but are not limited to:
- Portable electronics
- Handheld devices
- Low-power wireless modules
- Energy harvesting systems
- Medical monitoring equipment
Technical Specifications
| Parameter |
Value |
| Output Voltage |
2.7V |
| Input Voltage Range |
1.0V to 5.5V |
| Package |
8-Pin MSOP |
| Operating Temperature Range |
-40°C to 85°C |
The REG711EA-2.7 is a testament to Texas Instruments' commitment to providing innovative and reliable power solutions. Its efficiency, versatility, and ease of use make it an excellent choice for designers looking to maximize performance in their power-sensitive applications.