The RF1628SR is a high-performance surface acoustic wave (SAW) filter from Qorvo US Inc. This filter is designed for use in wireless communication systems to provide sharp selectivity and low insertion loss. It operates at a specific frequency band and is used to reject unwanted signals and interference, ensuring reliable communication performance. The RF1628SR is housed in a small surface-mount package, making it suitable for compact wireless devices.
Applications:
- Wireless communication systems (e.g., cellular, Wi-Fi)
- Mobile phones
- Base stations
- Wireless routers
- IoT (Internet of Things) devices
- Remote Control Systems
Features:
- Low insertion loss
- High attenuation
- Sharp selectivity
- Surface-mount package
- Compact size
- Stable performance over temperature
- RoHS compliant
Benefits:
- Improved signal quality due to effective interference rejection
- Enhanced communication range
- Increased system reliability
- Simplified integration due to surface-mount package
- Reduced board space requirements
- Consistent performance over a wide temperature range
- Compliant with environmental regulations
Additional Details:
The RF1628SR SAW filter is designed using advanced manufacturing techniques to ensure high performance and reliability. The low insertion loss minimizes signal attenuation, while the high attenuation effectively rejects unwanted signals. The sharp selectivity ensures that only the desired signals are passed through the filter. The surface-mount package simplifies the assembly process and reduces manufacturing costs. The compact size makes it suitable for space-constrained applications. The RF1628SR is a critical component in wireless communication systems, enabling reliable and efficient communication performance. Qorvo provides comprehensive technical documentation and support to facilitate the design and integration of the RF1628SR into wireless devices. This filter ensures that only the necessary frequencies are transmitted/received, in order to adhere to strict communication standards across a variety of telecommunication devices.