Product Overview
Product Name: DSC6111CE1A-026.7700
Manufacturer: Microchip Technology
Description
The DSC6111CE1A-026.7700 is a high-performance, precision MEMS oscillator from the esteemed Microchip Technology. This device is designed to deliver exceptional stability and accuracy for a wide range of electronic applications. It's an ideal solution for replacing traditional crystal oscillators with a more reliable, robust, and compact package.
Key Features
- Frequency: 26.7700 MHz, providing a precise clock signal for timing-sensitive applications.
- Supply Voltage: Operates on a supply voltage of 1.8V to 3.3V, making it versatile for various power environments.
- Stability: Offers excellent frequency stability, ensuring consistent performance across temperature and voltage variations.
- Package: Comes in a compact 4-SMD, No Lead package, allowing for space-saving design in modern electronics.
- Temperature Range: Capable of operating within an industrial temperature range, making it suitable for harsh environments.
- Output Type: Features a CMOS output, ensuring compatibility with most digital circuits.
Applications
The DSC6111CE1A-026.7700 is designed for use in a variety of applications where timing precision is critical. These include:
- Wireless communication systems
- Portable electronics
- IoT devices
- Industrial controls
- Networking equipment
- Consumer electronics
Quality and Reliability
Microchip Technology's commitment to quality ensures that the DSC6111CE1A-026.7700 oscillator is manufactured to the highest standards. The device is subjected to rigorous testing and is designed to meet the reliability demands of the most challenging applications.
Environmental Compliance
The oscillator is RoHS compliant, ensuring adherence to environmental regulations and a commitment to reducing hazardous substances in electronic components.
In conclusion, the DSC6111CE1A-026.7700 from Microchip Technology is a versatile, high-performance oscillator that provides reliable and precise timing solutions for a wide array of electronic applications. Its compact size, excellent stability, and broad temperature range make it an excellent choice for designers looking to optimize their systems for performance and space.