我刚回答了自己的问题。
我爱的时候会发生这样的事:笑笑:
文档 - pg。
45个UG386,S-6 GTP - 谈论用一个振荡器计时多个GTP。
振荡器原点通过使用DRP接口进行更改,并可与相邻的GTP磁贴共享。
这有点像北/南排列,所以我将能够从PCIe时钟为“北”牌(4 GTP)和从我的另一个时钟的“南”牌(也是4 GTP)计时。
如果有任何大师有什么要补充的话,我很乐意看到它,社区也会如此,但是现在我将这个标记解决了。
在原帖中查看解决方案
以上来自于谷歌翻译
以下为原文
I just answered my own question. I love when that happens :smileyhappy:
Documentation - pg. 45 of UG386, S-6 GTPs - talks about clocking multiple GTPs with one oscillator. The oscillator origin is changed by using the DRP interface, and can be shared with a neighboring GTP tile. That's kind of like a north/south arrangement, so I'll be able to clock both "north" tiles (4 GTPs) from the PCIe clock, and "south" tiles (also 4 GTPs) from my other clock. If any gurus have something to add I'd love to see it and so would the community, but for now I'm marking this one as solved.
View solution in original post
我刚回答了自己的问题。
我爱的时候会发生这样的事:笑笑:
文档 - pg。
45个UG386,S-6 GTP - 谈论用一个振荡器计时多个GTP。
振荡器原点通过使用DRP接口进行更改,并可与相邻的GTP磁贴共享。
这有点像北/南排列,所以我将能够从PCIe时钟为“北”牌(4 GTP)和从我的另一个时钟的“南”牌(也是4 GTP)计时。
如果有任何大师有什么要补充的话,我很乐意看到它,社区也会如此,但是现在我将这个标记解决了。
在原帖中查看解决方案
以上来自于谷歌翻译
以下为原文
I just answered my own question. I love when that happens :smileyhappy:
Documentation - pg. 45 of UG386, S-6 GTPs - talks about clocking multiple GTPs with one oscillator. The oscillator origin is changed by using the DRP interface, and can be shared with a neighboring GTP tile. That's kind of like a north/south arrangement, so I'll be able to clock both "north" tiles (4 GTPs) from the PCIe clock, and "south" tiles (also 4 GTPs) from my other clock. If any gurus have something to add I'd love to see it and so would the community, but for now I'm marking this one as solved.
View solution in original post
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