Microchip Technology's DSC6332HA3AB-002.4576 - Precision Low-Power Oscillator
The DSC6332HA3AB-002.4576 is a state-of-the-art silicon MEMS oscillator from Microchip Technology, renowned for its precision and low-power consumption. This advanced component offers a stable and reliable clocking solution, designed to meet the stringent demands of modern electronic applications.
Key Features:
- Frequency: The oscillator operates at a fixed frequency of 2.4576 MHz, providing a precise clock signal for timing-sensitive applications.
- Supply Voltage: It supports a supply voltage range of 1.71V to 3.63V, making it versatile for various low-power applications.
- Stability: The device boasts excellent frequency stability, ensuring consistent performance over a wide range of environmental conditions.
- Form Factor: Housed in a compact 6-pin SMD package, the DSC6332HA3AB-002.4576 is ideal for space-constrained applications.
- Power Consumption: With its low-power design, this oscillator minimizes energy usage, extending battery life in portable devices.
- Output Type: The device provides a CMOS-compatible output, ensuring easy integration with a wide range of digital circuits.
- Temperature Range: It operates over an industrial temperature range, making it suitable for harsh environments.
Applications:
The DSC6332HA3AB-002.4576 is ideal for a variety of applications, including but not limited to:
- Portable electronics where power efficiency is critical
- Industrial and automotive systems requiring robust performance
- Communication infrastructure where signal integrity is paramount
- Internet of Things (IoT) devices that demand long-term reliability
About Microchip Technology:
Microchip Technology is a leading provider of smart, connected, and secure embedded control solutions. Their easy-to-use development tools and comprehensive product portfolio enable customers to create optimal designs which reduce risk while lowering total system cost and time to market. The DSC6332HA3AB-002.4576 is yet another example of their commitment to excellence in engineering and manufacturing.