没有标准方案可将2 x16 DDR3芯片连接到x32配置的分析仪。
我已经看过它,使用2个插入器或SoftTouch适配器。
可能还有其他方案可行。
因为没有标准方案,所以没有标准配置文件。
根据您告诉我的内容,您可能在每个2 DDR3芯片上都有一个内插器(W3631A或W3636A)。
在16位配置中,此插入器将地址,命令和数据总线带到2个分析器卡。
如果您按照标准连接,地址和命令转到一个卡,16位数据从Pod A转到第二个卡。由于双采样模式,数据总线使用32个通道。
这使得第二张卡上有32个频道可用。
您可以通过将第二个E5845A的Pod A连接到第二个卡的Pod 3来扩展此配置。
然后,您可以将Pod 1和2的通道映射复制到pod 3和4.一旦完成,您可以保存该配置并使用它来完成测量任务。
您可能必须调整EyeScan的“读取”和“写入”选项卡上的信号分组,但同样可以将其保存到配置文件中以备将来使用。
人
以上来自于谷歌翻译
以下为原文
There is no standard scheme for connecting 2 x16 DDR3 chips to an analyzer in a x32 configuration. I have seen it done, using 2 interposers, or SoftTouch adapters. There may be other schemes which will work, as well. Because there's no standard scheme, there's no standard configuration file.
Based on what you have told me, you may have an interposer (either W3631A or W3636A) on each of your 2 DDR3 chips. In a 16 bit configuration this interposer brings the Address, Command, and Data buses to the 2 analyzer cards. If you follow the standard connection, Address and Command go to one card, and the 16 bits of Data goes to the second card, from Pod A. The Data bus uses 32 channels, due to dual-sample mode.
This leaves 32 channels available on the second card. You could extend this configuration by connecting Pod A of the second E5845A to Pod 3 of the second card. Then you could duplicate the channel mapping of Pods 1 and 2 into pods 3 and 4. Once that's done, you could save that configuration and use it to accomplish your measurement task.
You might have to adjust the signal groupings on the Read and Write tabs of EyeScan, but, again, that could be saved into the configuration file for future use.
Al