Increasing the performance of GPIB-controlled VXI systems

L. Golla
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引用次数: 0

Abstract

The HS488 protocol increases the maximum GPIB transfer rate up to 8 Mbytes/s. By using a hardware signaling mechanism to enable HS488 and to handle the data transfer issues, this protocol meets the requirements of speed, compatibility, and transparency with existing systems. When choosing between GPIB and MXI for external control of a VXI system, one must take several factors into account. For message-based instruments, both MXI and GPIB transfer short strings at the same rate, because the VXI Word Serial Protocol is slower than GPIB. In the past, if one used message-based instruments, MXI was the only choice because GPIB was too slow. Now, with HS488, GPIB is comparable to MXI. So, the choice between the two communication protocols becomes a cost and configuration issue. If, however, one uses register-based instruments, GPIB is not the right choice. Instead, one should use an embedded controller or MXI. Regardless, because of its substantial performance increase, HS488 extends the usability of GPIB systems into the next generation of instrumentation.<>
提高gpib控制的VXI系统的性能
HS488协议将最大GPIB传输速率提高到8mb /s。通过使用硬件信令机制来启用HS488并处理数据传输问题,该协议满足了现有系统对速度、兼容性和透明度的要求。在GPIB和MXI之间进行VXI系统的外部控制选择时,必须考虑几个因素。对于基于消息的仪器,MXI和GPIB都以相同的速率传输短字符串,因为VXI字串行协议比GPIB慢。在过去,如果使用基于消息的工具,MXI是唯一的选择,因为GPIB太慢了。现在,使用HS488, GPIB可以与MXI相媲美。因此,在这两种通信协议之间进行选择就成了一个成本和配置问题。然而,如果使用基于寄存器的仪器,GPIB不是正确的选择。相反,应该使用嵌入式控制器或MXI。无论如何,由于其显著的性能提升,HS488将GPIB系统的可用性扩展到下一代仪器中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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