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We can support 900MHz, we have revised the table as below and the new datasheet will be available in ti.com very soon.
Div |
Min |
Max |
Max VCO |
1 |
7500 |
15000 |
15 GHz |
2 |
3750 |
7500 |
|
4 |
1875 |
3750 |
|
6 |
1250 |
2500 |
|
8 |
937.5 |
1437.50 |
11.5 GHz |
12 |
625 |
958.33 |
|
16 |
468.75 |
718.75 |
|
24 |
312.5 |
479.17 |
|
32 |
234.375 |
359.38 |
|
48 |
156.25 |
239.58 |
|
64 |
117.1875 |
179.69 |
|
128 |
58.59375 |
89.84 |
|
192 |
39.0625 |
59.90 |
|
256 |
29.29688 |
44.92 |
|
384 |
19.53125 |
29.95 |
|
512 |
14.64844 |
22.46 |
|
768 |
9.765625 |
14.97 |
我个人的理解是,不仅仅是这款时钟芯片,对于任何一款时钟芯片来说,即使给出了输出频率的范围,但是我们实际在进行选型时,除了根据自己的输入输出频率是否满足,还需要考虑VCO的范围,分频系数的设定,包含整数或小数等等,从而决定是否满足实际应用,不会想当然的就认为给出了一个输出频率范围,就草率的决定这款是否符合。
选一个锁相环器件,我首先看他频段有多宽,相位噪声如何,跳频时间怎样,第二部那就要看整数还是小数模式,小数分频位数够不够用,跳频时间怎样,最后再看怎样配合R分频前的乘法器,VCO输出的分频比,产生我想要的频率!如果象LMX2594噪声优异,跳频时间快,频段又宽的集成VCO锁相环,如果中间有不连续的频点,那么我使用它的欲望就会有所折扣!