Microchip Technology VMK3-1001-32K7680000
The VMK3-1001-32K7680000 is a high-performance product from Microchip Technology, a leading provider of smart, connected, and secure embedded control solutions. This product is designed to cater to the needs of advanced electronic applications requiring reliable and efficient memory and timing solutions.
At the heart of VMK3-1001-32K7680000 lies a 32.768 kHz tuning fork crystal oscillator, which serves as a precision timing source. This low-power, compact component is ideal for real-time clock (RTC) applications and is commonly used in a wide range of electronic devices, including wearables, IoT devices, automotive electronics, and portable medical equipment.
The VMK3-1001-32K7680000 boasts a tight frequency tolerance and stability over a broad temperature range, ensuring high-precision timing under varying environmental conditions. This makes it an excellent choice for applications that require a dependable time base for accurate timekeeping or for synchronization purposes.
Microchip Technology's commitment to quality is evident in the VMK3-1001-32K7680000, as it is manufactured to meet stringent industry standards. The product is encapsulated in a robust package that protects the internal components from mechanical stress and environmental factors, thus enhancing its reliability and longevity.
Key features of the VMK3-1001-32K7680000 include:
- 32.768 kHz frequency output for precise timing
- Low power consumption, suitable for battery-powered devices
- High stability and reliability over a wide temperature range
- Compact form factor for space-constrained applications
- Compliance with industry standards for easy integration
Whether you are designing consumer electronics, industrial systems, or automotive applications, the VMK3-1001-32K7680000 from Microchip Technology provides the performance and reliability you need. With this product, designers and engineers can confidently build systems that not only meet but exceed the expectations of today's technology-driven world.