SY89824LHC belongs to the category of integrated circuits (ICs).
SY89824LHC is commonly used in electronic devices for signal processing and communication applications.
SY89824LHC is available in a small outline integrated circuit (SOIC) package.
The essence of SY89824LHC lies in its ability to process signals efficiently and accurately, enabling reliable communication in various electronic devices.
SY89824LHC is typically packaged in reels or tubes, with a quantity of 1000 units per reel/tube.
For detailed and complete pin configuration of SY89824LHC, please refer to the datasheet.
SY89824LHC offers the following functional characteristics:
SY89824LHC is suitable for a wide range of products, including but not limited to: - Networking equipment - Telecommunication devices - Data storage systems - Industrial automation devices
SY89824LHC operates based on differential signaling principles. It receives differential input signals, processes them using internal circuitry, and provides differential output signals for further processing or transmission.
SY89824LHC can be applied in various fields, such as: 1. High-speed data communication systems 2. Fiber optic networks 3. Wireless communication devices 4. Video transmission systems 5. Test and measurement equipment
Some alternative models to SY89824LHC include: - SY89825LHC - SY89826LHC - SY89827LHC - SY89828LHC - SY89829LHC
Q: What is the maximum data rate supported by SY89824LHC? A: SY89824LHC supports data rates up to 2.5 Gbps.
Q: Can SY89824LHC operate with a different supply voltage? A: No, SY89824LHC requires a 3.3V supply voltage for proper operation.
Q: Does SY89824LHC have built-in termination resistors? A: Yes, SY89824LHC has built-in termination resistors for easy integration into systems.
Q: Can I adjust the output swing of SY89824LHC? A: Yes, SY89824LHC allows for adjustable output swing to optimize signal levels.
Q: Is SY89824LHC compatible with both clock and data recovery applications? A: Yes, SY89824LHC incorporates clock and data recovery functionality for reliable signal processing.