Microchip Technology's DSA1121BI2-033.3330TVAO is a high-performance, precision timing solution designed to meet the stringent requirements of advanced telecommunications, networking, and data communications systems. This product belongs to Microchip's extensive line of timing and synchronization devices, which are renowned for their reliability and accuracy.
Key Features
- Frequency Stability: The device offers exceptional frequency stability, ensuring consistent performance and signal integrity across a wide range of environmental conditions.
- Low Jitter: Engineered to deliver low phase noise and jitter, this product is ideal for applications requiring high signal clarity and minimal interference.
- Temperature Range: It operates effectively over an extended temperature range, making it suitable for use in diverse operating environments.
- Voltage Controlled Temperature Compensated Crystal Oscillator (VCTCXO): The DSA1121BI2-033.3330TVAO incorporates VCTCXO technology, providing excellent temperature compensation and voltage control for fine frequency tuning.
- Output Frequency: The device offers a precise output frequency of 33.3330 MHz, which is critical for synchronization in high-speed networks.
Applications
The DSA1121BI2-033.3330TVAO is designed for a variety of applications where precise timing is paramount. It is particularly well-suited for:
- Telecommunications infrastructure
- Wireless base stations
- High-speed networking equipment
- Data centers
- Industrial automation systems
Quality and Support
Microchip Technology is committed to providing customers with high-quality products and comprehensive support. The DSA1121BI2-033.3330TVAO is backed by Microchip's expert technical support and is manufactured to stringent quality standards to ensure optimal performance and reliability.
Ordering Information
For detailed specifications, sample requests, or to place an order for the DSA1121BI2-033.3330TVAO, please visit Microchip Technology's official website or contact your local Microchip sales representative.