The SI5335C-B04140-GMR has a total of 48 pins. The pin configuration is as follows:
Advantages: - High-performance clock generation with precise control - Versatile programmability for various applications - Low jitter and phase noise for improved system performance - Support for spread spectrum clocking - Easy configuration through the I2C interface
Disadvantages: - Limited number of outputs compared to some other clock generators - Relatively high power consumption in certain operating conditions
The SI5335C-B04140-GMR is a clock generator IC that utilizes advanced PLL (Phase-Locked Loop) technology to synthesize and distribute precise clock signals. It takes an external crystal oscillator as a reference input and generates multiple clock outputs with programmable frequencies and formats.
The device incorporates a highly configurable PLL architecture, allowing users to adjust the output frequencies, dividers, and phase relationships according to their specific requirements. The I2C interface enables easy configuration and control of the device's parameters.
By providing low jitter and phase noise clocks, the SI5335C-B04140-GMR ensures accurate timing for various applications, including communication systems, data centers, industrial automation, and consumer electronics.
The SI5335C-B04140-GMR finds applications in a wide range of fields, including:
Communication Systems:
Data Centers:
Industrial Automation:
Consumer Electronics:
These alternative models offer similar functionality to the SI5335C-B04140-GMR but may have
Question: What is the SI5335C-B04140-GMR?
Answer: The SI5335C-B04140-GMR is a clock generator and jitter attenuator integrated circuit (IC) commonly used in technical solutions.
Question: What are the key features of the SI5335C-B04140-GMR?
Answer: The key features of this IC include multiple outputs, low jitter performance, programmable frequency synthesis, and flexible input/output configurations.
Question: How many outputs does the SI5335C-B04140-GMR support?
Answer: This IC supports up to 10 differential clock outputs.
Question: What is the typical jitter performance of the SI5335C-B04140-GMR?
Answer: The SI5335C-B04140-GMR offers low jitter performance, typically below 0.3 ps RMS.
Question: Can the frequency synthesis be programmed on the SI5335C-B04140-GMR?
Answer: Yes, the frequency synthesis can be programmed using the device's configuration software or through an I2C interface.
Question: What is the power supply voltage range for the SI5335C-B04140-GMR?
Answer: The power supply voltage range for this IC is typically between 2.375V and 3.63V.
Question: Does the SI5335C-B04140-GMR support spread spectrum clocking?
Answer: Yes, this IC supports spread spectrum clocking for reducing electromagnetic interference (EMI).
Question: Can the SI5335C-B04140-GMR generate different output frequencies simultaneously?
Answer: Yes, the SI5335C-B04140-GMR can generate multiple output frequencies simultaneously, allowing for versatile clocking solutions.
Question: Is there any built-in redundancy or failover mechanism in the SI5335C-B04140-GMR?
Answer: No, the SI5335C-B04140-GMR does not have built-in redundancy or failover mechanisms. However, it can be used in redundant clocking architectures.
Question: What are some common applications for the SI5335C-B04140-GMR?
Answer: The SI5335C-B04140-GMR is commonly used in telecommunications, networking, data centers, industrial automation, and other technical solutions requiring precise clock generation and synchronization.