Diodes Incorporated introduces the high-performance S1703B-50.0000T, a precision silicon oscillator designed to provide a stable and reliable clock signal for various electronic applications. This compact, surface-mountable component is a perfect solution for replacing traditional crystal oscillators, offering enhanced durability and reduced sensitivity to mechanical stress and temperature variations.
Key Features
- Frequency: The S1703B-50.0000T operates at a fixed frequency of 50.0000 MHz, providing a high-precision timing solution for your circuit designs.
- Supply Voltage: This device supports a supply voltage range of 2.25V to 3.63V, making it versatile for use in various systems with different power requirements.
- Stability: The oscillator boasts excellent frequency stability, ensuring consistent performance over a wide range of environmental conditions.
- Form Factor: The S1703B-50.0000T comes in a compact 4-SMD, no lead package, allowing for efficient space utilization on printed circuit boards (PCBs).
- Output Type: It features a CMOS output, providing a square wave signal that is ideal for digital circuits.
- Temperature Range: The device operates effectively over an industrial temperature range from -40°C to +85°C, ensuring reliability in harsh conditions.
- RoHS Compliant: Adhering to environmental standards, the S1703B-50.0000T is RoHS compliant, minimizing the ecological footprint of your electronic products.
Applications
The S1703B-50.0000T is suited for a wide array of applications, including but not limited to:
- Consumer Electronics
- Communication Devices
- Embedded Systems
- Industrial Control Systems
- Internet of Things (IoT) Devices
Product Advantages
Choosing the S1703B-50.0000T from Diodes Incorporated provides several advantages, including reduced design complexity, lower power consumption, and a simplified manufacturing process due to its lack of external components compared to traditional crystal oscillators. It is ideal for designers looking for a reliable, cost-effective timing solution that does not compromise on performance.