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Electronic connection between microprocessor systems, and microcomputer subsystems which operate in the 'minimum mode' and microprocessors which operate in the 'maximum mode'

机译:微处理器系统与以“最小模式”运行的微型计算机子系统和以“最大模式”运行的微处理器之间的电子连接

摘要

The connection (3) makes it possible that microprocessors (7) of the 8088 and 8086 type, which are connected in the "maximum mode", can now also be used in microprocessor systems (10) which are connected in the "minimum mode" so that the numeric processor (8) of the 8087 type can also be used in such systems. The carrier (9) is mounted with its terminals (2) in the socket (1) or the holder of the system. The microprocessor (7), which is connected in the "maximum mode" can communicate with the system interface (1) of the microprocessor system through the connection (3). Due to the fact that the microprocessor (7) itself operates in the "maximum mode" but the connection (3) emulates the "minimum mode", the numeric processor (8) can be integrated in the overall system (10). The connection (3) consists of two essential parts, namely the stop request logic (4) and the logic for the status signals (5). The logic is very fast so that no wait cycles are necessary at all. As a result, the basic speed of the system is preserved if the numeric processor (8) is not used. The stop request logic (4) consists of a circuit which is constructed of flip flops (11), gates (12) and resistors (13). The stop request logic generates the request (RQ) signal from the signals HOLD and CLK which come from the microprocessor system (10). From the ... Original abstract incomplete. IMAGE
机译:连接(3)使得以“最大模式”连接的8088和8086类型的微处理器(7)现在也可以用于以“最小模式”连接的微处理器系统(10)。因此8087型的数字处理器(8)也可以在这种系统中使用。托架(9)的端子(2)安装在系统的插座(1)或支架中。以“最大模式”连接的微处理器(7)可以通过连接(3)与微处理器系统的系统接口(1)通信。由于微处理器(7)本身以“最大模式”运行,但是连接(3)模拟“最小模式”,因此数字处理器(8)可以集成在整个系统(10)中。连接(3)由两个基本部分组成,即停止请求逻辑(4)和状态信号逻辑(5)。逻辑非常快,因此根本不需要等待周期。结果,如果不使用数字处理器(8),则系统的基本速度得以保留。停止请求逻辑(4)包括由触发器(11),门(12)和电阻器(13)构成的电路。停止请求逻辑根据来自微处理器系统(10)的信号HOLD和CLK产生请求(RQ)信号。从...原始的摘要不完整。 <图像>

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