SI5350C-A-GM Overview
Tray-method packaging is used for clock ICs. The 20-VFQFN Exposed Pad package includes this clock generator. As you can see, it consists of 20 terminations. This clock generator ic should receive a voltage of 2.5V. Crystal is designed for clock generator's input. It is possible to access the full performance of the electrical part by implementing 1 circuits. An up to 160MHz frequency is provided by this clock-based RF synthesizer. The Surface Mount allows this electrical component to be easily installed on the panel. There are 2.25V~3.63V different supply voltages that can be provided for this RF synthesizer. The ambient temperature should be set at -40°C~85°C, which is estimated by the test statistics. In this case, we are dealing with a frequency synthesizer that can be used with LVCMOS logic levels. Clock Generator is the type of electrical part that this component is classified as. Microprocessors are specifically designed to use this clock-generating IC, which has a 20-bit output. You can find related electrical components to the base part number SI5350. A 20 pin is available on the PLL. There is a maximum supply voltage of 3.3V that frequency generators can handle. With CAN ALSO OPERATE AT 3.3V SUPPLY, this clock generator produces better clock signals. This clock generator is a member of MultiSynth? series. The output frequency can be amplified as high as possible with its 8 signal outputs. For the time clock generator to operate properly, 25mA of supply current are required. An efficient 2-element frequency generator with low jitter performance is being offered here.
SI5350C-A-GM Features
Available in the 20-VFQFN Exposed Pad
Supply voltage of 2.5V
Operating supply voltage of 3.3V
SI5350C-A-GM Applications
There are a lot of Silicon Labs SI5350C-A-GM Clock Generators applications.
- Clock synchronization
- Space communucation
- Signal analyzer
- MRI
- FM demodulation networks for FM operations
- Media broadcast servers
- Deep space exploration
- Set-top boxes
- FSK demodulators
- Frequency shifting decodes