The SI5335B-B03161-GM has a total of 48 pins. The pin configuration is as follows:
Pin Number | Pin Name | Description
-----------|----------|------------
1 | VDDO | Output Power Supply
2 | VDD | Core Power Supply
3 | GND | Ground
4 | XAXB | Differential Input Pair
5 | XAXA | Differential Input Pair
6 | XBXB | Differential Input Pair
7 | XBXA | Differential Input Pair
8 | YAXB | Differential Input Pair
9 | YAXA | Differential Input Pair
10 | YBXB | Differential Input Pair
11 | YBXA | Differential Input Pair
12 | ZAXB | Differential Input Pair
13 | ZAXA | Differential Input Pair
14 | ZBXB | Differential Input Pair
15 | ZBXA | Differential Input Pair
16 | CLKIN | Reference Clock Input
17-32 | OUT0-OUT15 | Differential Clock Outputs
33-48 | OUT16-OUT31 | Single-Ended Clock Outputs
Advantages: - High-performance clock generation with precise frequency control - Flexible output configurations - Low phase noise and jitter for improved system performance
Disadvantages: - Requires external crystal or clock source for reference - Limited frequency range compared to some other clock generators
The SI5335B-B03161-GM is suitable for a wide range of applications that require high-performance clock generation, such as: - Communication systems - Data centers - Industrial automation - Test and measurement equipment - Consumer electronics
The SI5335B-B03161-GM utilizes a combination of PLL (Phase-Locked Loop) and VCXO technologies to generate precise clock signals. The input reference clock is multiplied and divided to produce the desired output frequencies.
Q: Can the SI5335B-B03161-GM generate non-integer output frequencies? A: Yes, the device supports fractional-N synthesis, allowing it to generate non-integer output frequencies.
Q: What is the maximum output frequency of the SI5335B-B03161-GM? A: The device can generate clock signals with frequencies up to 808 MHz.
Q: Does