The SI5335D-B06991-GMR has a total of 24 pins. The pin configuration is as follows:
Advantages: - Provides precise and programmable clock signals - Supports multiple output types for flexibility - Low jitter ensures accurate timing in sensitive applications - Wide operating temperature range allows usage in various environments
Disadvantages: - Requires knowledge of I2C interface for configuration - Limited to a maximum frequency of 350 MHz
The SI5335D-B06991-GMR is a clock generator and multiplier that uses an internal crystal oscillator or an external reference clock as its input. It generates multiple clock outputs with precise frequency control. The device utilizes a phase-locked loop (PLL) to multiply the input frequency and generate the desired output frequencies. The PLL parameters can be programmed through the I2C interface, allowing customization of the output frequencies and other features.
The SI5335D-B06991-GMR is commonly used in various applications that require precise clock signals. Some of the typical application fields include:
These alternative models offer similar functionality and can be considered based on specific requirements and application needs.
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Sure! Here are 10 common questions and answers related to the application of SI5335D-B06991-GMR in technical solutions:
Question: What is the SI5335D-B06991-GMR?
Answer: The SI5335D-B06991-GMR is a clock generator and jitter attenuator IC (integrated circuit) manufactured by Silicon Labs.
Question: What is the purpose of using the SI5335D-B06991-GMR in technical solutions?
Answer: The SI5335D-B06991-GMR is used to generate high-quality clock signals with low jitter for various applications, such as data communication systems, networking equipment, industrial automation, and more.
Question: What is the maximum frequency supported by the SI5335D-B06991-GMR?
Answer: The SI5335D-B06991-GMR supports a maximum output frequency of 350 MHz.
Question: How many clock outputs does the SI5335D-B06991-GMR have?
Answer: The SI5335D-B06991-GMR has a total of 12 clock outputs, which can be individually programmed and configured.
Question: Can the output voltage levels be adjusted on the SI5335D-B06991-GMR?
Answer: Yes, the output voltage levels can be adjusted through programming registers to match the requirements of the specific application.
Question: Does the SI5335D-B06991-GMR support spread spectrum clocking (SSC)?
Answer: Yes, the SI5335D-B06991-GMR supports SSC, which helps reduce electromagnetic interference (EMI) in sensitive applications.
Question: Is the SI5335D-B06991-GMR compatible with different supply voltages?
Answer: Yes, the SI5335D-B06991-GMR operates with a supply voltage range of 2.375V to 3.63V, making it compatible with various power supply configurations.
Question: Can the SI5335D-B06991-GMR be programmed and configured through an I2C interface?
Answer: Yes, the SI5335D-B06991-GMR can be programmed and configured using an I2C interface, allowing for easy integration into system designs.
Question: Does the SI5335D-B06991-GMR provide any built-in clock monitoring or diagnostic features?
Answer: Yes, the SI5335D-B06991-GMR offers various built-in monitoring features, such as frequency detection, loss-of-signal detection, and temperature sensing.
Question: Is there any evaluation board or reference design available for the SI5335D-B06991-GMR?
Answer: Yes, Silicon Labs provides an evaluation board and reference design for the SI5335D-B06991-GMR, which can help developers quickly prototype and test their applications.
Please note that these answers are general and may vary depending on the specific requirements and implementation of the SI5335D-B06991-GMR in different technical solutions.