The SI5335A-B05974-GMR has the following pin configuration:
The SI5335A-B05974-GMR offers the following functional characteristics:
Advantages: - High-frequency performance - Low jitter - Programmable output frequencies - Integrated voltage regulators
Disadvantages: - Limited number of outputs (4)
The SI5335A-B05974-GMR is suitable for applications that require precise clock generation and multiplication, such as: - Telecommunications equipment - Networking devices - Data centers - Industrial automation systems
The SI5335A-B05974-GMR generates and multiplies clock signals based on the input frequency provided. It utilizes programmable dividers and phase-locked loops (PLLs) to achieve accurate and stable output frequencies.
The SI5335A-B05974-GMR can be used in various applications, including: 1. Ethernet switches: Provides synchronized clock signals for data transmission. 2. Wireless base stations: Generates clock signals for synchronization between different network elements. 3. Test and measurement equipment: Ensures precise timing for accurate measurements. 4. Server systems: Provides clock signals for system synchronization and data processing. 5. Audio/video equipment: Enables synchronized audio and video playback.
Some alternative models to the SI5335A-B05974-GMR include: - SI5338A-B05974-GMR - SI5341B-B05974-GMR - SI5345C-B05974-GMR - SI5366A-B05974-GMR - SI5389B-B05974-GMR
Q: What is the maximum output frequency of the SI5335A-B05974-GMR? A: The maximum output frequency is 945MHz.
Q: Can I program the output frequencies using an external microcontroller? A: Yes, the SI5335A-B05974-GMR can be programmed using the I2C interface.
Q: Does the SI5335A-B05974-GMR support multiple input clock sources? A: No, it has a single input clock (CLKIN).
Q: What is the operating temperature range of the SI5335A-B05974-GMR? A: The operating temperature range is -40°C to +85°C.
Q: How many outputs does the SI5335A-B05974-GMR have? A: It has four outputs.
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