The DSC1001BI2-066.0000T is a high-performance silicon MEMS oscillator from Microchip Technology, renowned for its precision timing solutions. This device offers an ideal balance between the high stability of a traditional crystal oscillator and the flexibility of a programmable oscillator. It is designed to meet the rigorous demands of modern electronic systems where accuracy, reliability, and compact form factors are critical.
Key Features
- Frequency Range: This oscillator operates at a fixed frequency of 66.0000 MHz, which is suitable for various applications, including networking, telecommunications, and embedded systems.
- Supply Voltage: It supports a supply voltage of 1.8V, making it compatible with low-power applications and contributing to overall system power efficiency.
- Stability: The DSC1001BI2-066.0000T offers excellent frequency stability, ensuring precise clocking for the duration of its operation.
- Form Factor: Encased in a compact 4-SMD, no lead package, it saves valuable board space and is suitable for high-density circuit designs.
- Operating Temperature: This device is designed to operate over an industrial temperature range, maintaining performance across diverse environmental conditions.
- Output Type: It provides a CMOS output, known for its compatibility with most digital circuits and its ability to drive multiple loads.
Applications
The DSC1001BI2-066.0000T is versatile and can be used in a wide array of applications. Its performance characteristics make it an excellent choice for:
- High-speed digital electronics
- Wireless communication systems
- Portable and battery-powered devices
- Industrial control systems
- Networking hardware such as routers and switches
Quality and Reliability
Microchip Technology is committed to delivering high-quality products. The DSC1001BI2-066.0000T is manufactured with rigorous quality control processes, ensuring that it meets the stringent requirements of various industries. Customers can trust this oscillator to provide reliable service throughout its lifecycle.