Under the two points mentioned above , we designed a 16 bits dsp core - md16 在以上两点的前提下,我们设计了md16的核。
This dsp core is realized in a 0 . 35um cmos technology and can work at above 80mhz 最后实现在o 35微米cmos标准单元库支持下,工作频率可以达到80mhz以上。
As a result , current day ' s design teams using dsp cores are forced to spend a large amount of time in handwriting of machine code ( usually assembly code ) 所以,当前很多设计人员就花了大量的精力和时间在写汇编代码上。
Next tms320c6000 dsp chip is introduced and some methods used to optimizing g . 729 according to the architecture of the dsp core is recommended 接着介绍了tms320c6000器件以及根据其特点对itu - t提供的源代码进行优化的一些方法。
In order to inprove the performance of md16 , one method is transforming the architecture to the multi issue architecture . so a vliw dsp core is set up 为了进一步提高md16的性能,一个可行的方式就是把单发射处理器结构转向多发射处理器结构。