Microchip Technology DSC6311JI2LA-027.0000T
The DSC6311JI2LA-027.0000T is a precision silicon MEMS oscillator from Microchip Technology, a leading provider of smart, connected, and secure embedded control solutions. This product offers a high level of performance, reliability, and stability, making it an excellent choice for a wide range of applications in various industries, including telecommunications, consumer electronics, and industrial systems.
Key Features:
- Frequency: The oscillator operates at a fixed frequency of 27.0000 MHz, which is ideal for applications requiring a stable clock source.
- Package: It comes in a compact and robust 4-SMD, no lead package, which allows for easy integration into space-constrained designs without compromising on performance.
- Supply Voltage: The device supports a supply voltage range from 1.71V to 3.63V, providing flexibility in various power environments and compatibility with a wide range of other components.
- Stability: The DSC6311 series offers excellent frequency stability, ensuring that the oscillator maintains its precision over time and under varying environmental conditions.
- Low Power Consumption: Designed for energy-efficient operation, this oscillator is suitable for battery-powered devices where power conservation is critical.
- Operating Temperature: It can operate over an industrial temperature range of -40°C to +85°C, ensuring reliable performance in harsh conditions.
Applications:
The DSC6311JI2LA-027.0000T is versatile and can be used in a variety of applications, such as:
- Wireless communication systems
- Portable electronic devices
- Internet of Things (IoT) devices
- Industrial control systems
- Automotive electronics
- Medical equipment
With its high precision and low power consumption, the DSC6311JI2LA-027.0000T from Microchip Technology is an ideal solution for designers looking for a reliable and efficient clock source. Its robust construction and ability to withstand challenging environmental conditions make it a dependable choice for your critical system timing needs.