详细介绍: CPU-5V/64-110-2/C13通过对整体系统搭建,完成仪器与总线间的数据传输。以AH 与L 功能配合接收GPIB 总线的数据为例分析实验结果。AH 与L 功能接收数据实验结果波形
仪器通过INDATA[7. . 0]数据端口向地址寄存器ADR 内写入该仪器在GPIB 总线上的地址11H。在第4 个时钟下降沿器件收到ATN 信号,表明AH 功能从AIDS 状态进入ANRS 状态; 第5 个时钟下降沿仍然有ATN 信号,表明AH 功能从ANRS 状态进入ACRS 状态,同时发出RFD 信号,告诉控制者已经准备好接收GPIB 接口命令; 在6个时钟下降沿,检测到总线传输的DAV 信号,表明AH 功能从ACRS 状态进入ACDS 状态。随后,系统控制者通过DIO 线发送地址命令31H,通过多线消息译码器输出MLA 信号,在第7 个时钟下降沿,L 功能在MLA&ACDS 的作用下从LIDS 进入LADS状态,表明仪器已经受命于听者,接收接口消息结束后,CPU-5V/64-110-2/C13便会产生一个T 信号; 在第8 个时钟下降沿,GPIB 控制器检测到T 信号,表明AH 功能进入AWNS 状态,并发出DAC 信号,告诉控制者接口命令接受完毕; 在第9 个时钟下降沿,系统控制者撤销DAV 信号和ATN 信号,表明AH 功能进入ANRS 状态,CPU-5V/64-110-2/C13至此一个三线挂钩的过程已经完成。在ATN 为0 的作用下,L 功能进入LACS 状态,此时仪器正式进入听者状态。其他传输过程与听者接收数据过程类似,在此不再赘述。
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CPU-5V/64-110-2/C13
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