The SI5335D-B06915-GMR offers a comprehensive set of specification parameters, including:
The SI5335D-B06915-GMR features a 48-pin QFN package with the following pin configuration:
The key functional characteristics of the SI5335D-B06915-GMR include:
Advantages: - Wide frequency range, suitable for various applications. - Low phase noise and jitter, ensuring high-quality clock signals. - Programmable features provide flexibility in system design. - Compact and robust packaging.
Disadvantages: - Requires external components for proper operation. - Limited number of input and output channels.
The SI5335D-B06915-GMR utilizes a combination of PLL (Phase-Locked Loop) and VCO (Voltage-Controlled Oscillator) techniques to generate and multiply clock signals. The PLL locks onto the input reference clock and generates a stable output frequency based on the programmed multiplication factor. The VCO provides the necessary frequency range and stability for accurate clock generation.
The SI5335D-B06915-GMR finds applications in various fields, including:
In addition to the SI5335D-B06915-GMR, there are several alternative models available in the market that offer similar functionality. Some notable alternatives include:
These alternative models can be considered based on specific application requirements and design constraints.
Please note that the above content is a brief overview of the SI5335D-B06915-GMR and its related information. For a more comprehensive understanding, it is recommended to refer to the product datasheet and consult with the manufacturer or authorized distributors.
What is the maximum frequency supported by SI5335D-B06915-GMR?
- The maximum frequency supported by SI5335D-B06915-GMR is 350 MHz.
Can SI5335D-B06915-GMR be used for clock distribution in high-speed communication systems?
- Yes, SI5335D-B06915-GMR is suitable for clock distribution in high-speed communication systems.
What are the input voltage requirements for SI5335D-B06915-GMR?
- The input voltage range for SI5335D-B06915-GMR is 3.135V to 3.465V.
Does SI5335D-B06915-GMR support jitter attenuation?
- Yes, SI5335D-B06915-GMR features integrated jitter attenuation to improve signal quality.
Can SI5335D-B06915-GMR generate multiple output frequencies simultaneously?
- Yes, SI5335D-B06915-GMR can generate multiple output frequencies simultaneously.
What is the typical phase noise performance of SI5335D-B06915-GMR?
- The typical phase noise performance of SI5335D-B06915-GMR is -230 dBc/Hz at 100 kHz offset.
Is there a software tool available for configuring SI5335D-B06915-GMR?
- Yes, Silicon Labs provides ClockBuilder Pro software for easy configuration of SI5335D-B06915-GMR.
Can SI5335D-B06915-GMR operate in industrial temperature ranges?
- Yes, SI5335D-B06915-GMR is designed to operate in industrial temperature ranges from -40°C to 85°C.
What is the power consumption of SI5335D-B06915-GMR?
- The power consumption of SI5335D-B06915-GMR is typically 300 mW.
Are evaluation boards or development kits available for SI5335D-B06915-GMR?
- Yes, Silicon Labs offers evaluation boards and development kits for easy prototyping and testing of SI5335D-B06915-GMR.