The MAX200CPP from Maxim Integrated is a versatile and high-performance charge pump voltage converter that is designed to provide a reliable solution for applications requiring voltage level translation or inversion. It is a perfect choice for designers looking to drive high-side switches, create negative voltage rails, or simply double a voltage input with minimal external components and board space.
Key Features
- Voltage Conversion: The MAX200CPP is capable of voltage doubling, inverting, and dividing, offering flexibility for various circuit designs.
- Efficiency: This device operates with a high conversion efficiency, minimizing power loss and heat generation within the system.
- Low Power Consumption: Its quiescent current is low, making it suitable for battery-operated devices where power efficiency is critical.
- Wide Input Voltage Range: The device can accept an input voltage range that accommodates a variety of power sources, ensuring compatibility with different system architectures.
- Minimal External Components: The charge pump requires only two external capacitors for its operation, reducing the overall component count and simplifying the circuit design.
- High Frequency Operation: It operates at a high switching frequency, which allows for smaller external capacitors and faster response times.
Applications
The MAX200CPP is ideal for a range of applications, including:
- Portable battery-powered devices
- Memory programming supplies
- Operational amplifier power supplies
- High-side switch drivers
- Telecommunications infrastructure
Technical Specifications
| Parameter |
Value |
| Input Voltage Range |
1.5V to 5.5V |
| Output Voltage Range |
-5.5V to 11V |
| Operating Temperature |
-40°C to +85°C |
| Package Type |
8-Pin DIP, SO |
The MAX200CPP from Maxim Integrated is a testament to the company's commitment to providing innovative, high-quality solutions for power management challenges. Its combination of efficiency, versatility, and ease of use makes it an excellent choice for designers looking to enhance their power supply designs.