The FDW2520C is a crucial component in the field of electronic devices, specifically within the category of surface acoustic wave (SAW) filters. This entry will provide a comprehensive overview of the FDW2520C, including its basic information, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
The FDW2520C typically features four pins arranged in a specific configuration to facilitate its integration into electronic circuits. The detailed pin configuration includes the input, output, ground, and power supply pins, each serving a distinct purpose in the filter's operation.
The FDW2520C operates based on the principles of surface acoustic wave technology, where incoming signals are filtered based on their frequency characteristics. This process involves the propagation of acoustic waves across the surface of a piezoelectric substrate, effectively isolating the desired frequency components.
The FDW2520C finds extensive application in various electronic devices, including: - Wireless communication systems - Satellite communication equipment - Radar systems - Mobile devices - IoT (Internet of Things) devices
Several alternative models to the FDW2520C exist within the SAW filter category, offering varying specifications and performance characteristics. Some notable alternatives include: - FDW3220B: Center frequency of 3220 MHz - FDW2018A: Compact 2.0mm x 1.8mm size - FDW2800D: Wide bandwidth variant for specific applications
In conclusion, the FDW2520C serves as a vital component in electronic systems, providing precise frequency filtering and low insertion loss within a compact form factor. Its application spans across diverse electronic devices, making it an essential element in modern technology.
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Question: What is the maximum operating temperature for FDW2520C?
Answer: The maximum operating temperature for FDW2520C is 85°C.
Question: What is the typical frequency range for FDW2520C?
Answer: The typical frequency range for FDW2520C is 1MHz to 10MHz.
Question: Can FDW2520C be used in automotive applications?
Answer: Yes, FDW2520C is suitable for automotive applications.
Question: What is the input voltage range for FDW2520C?
Answer: The input voltage range for FDW2520C is typically 2.7V to 5.5V.
Question: Does FDW2520C have built-in overcurrent protection?
Answer: Yes, FDW2520C features built-in overcurrent protection.
Question: Is FDW2520C RoHS compliant?
Answer: Yes, FDW2520C is RoHS compliant.
Question: What is the typical output current capability of FDW2520C?
Answer: The typical output current capability of FDW2520C is 2A.
Question: Can FDW2520C be used in battery-powered applications?
Answer: Yes, FDW2520C is suitable for use in battery-powered applications.
Question: Does FDW2520C require external compensation components?
Answer: No, FDW2520C does not require external compensation components.
Question: What package type is FDW2520C available in?
Answer: FDW2520C is available in a compact DFN package for easy integration into designs.