Product Overview: LM2776DBVT from Texas Instruments
The LM2776DBVT is a cutting-edge charge pump DC/DC converter designed and manufactured by Texas Instruments, a leader in semiconductor solutions. This device is engineered to provide a regulated output voltage from an unregulated input voltage, making it an ideal choice for battery-powered applications where efficiency and space are critical considerations.
Key Features
- Efficient Voltage Conversion: The LM2776DBVT utilizes a switched capacitor charge pump to double the input voltage, delivering a regulated output with high efficiency.
- Versatile Operating Range: This device operates over a wide input voltage range from 2.7V to 5.5V, accommodating various power sources including single-cell lithium-ion batteries.
- Low Noise Operation: With its regulated output and low ripple voltage, the LM2776DBVT ensures minimal noise, making it suitable for sensitive applications such as RF or audio circuits.
- Compact SOT-23 Package: Housed in a small 5-pin SOT-23 package, the LM2776DBVT is designed for space-constrained applications.
- Thermal and Overcurrent Protection: The device includes built-in thermal shutdown and overcurrent protection features to safeguard against potential damage from excessive heat or load conditions.
Applications
The LM2776DBVT is a versatile component that can be used in a variety of electronic devices. It is particularly well-suited for:
- Portable and handheld devices
- Mobile phones and PDAs
- Wireless headsets and earbuds
- GPS receivers
- Medical devices and healthcare products
- Energy-harvesting systems
Product Specifications
| Parameter |
Value |
| Output Voltage |
Regulated, doubled input voltage |
| Input Voltage Range |
2.7V to 5.5V |
| Package Type |
SOT-23 |
| Protection Features |
Thermal shutdown, Overcurrent protection |
With its high efficiency, low noise, and compact form factor, the LM2776DBVT from Texas Instruments is an excellent power management solution for designers looking to maximize battery life while minimizing space and noise in their applications.