[PDF] CHAPTER 9 8086/8088 Hardware Specifications





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CHAPTER 9 8086/8088 Hardware Specifications

Describe the function of each 8086 and 8088 pin. 2. Understand the microprocessor's DC characteristics and indicate its fan-out to common logic families. 3 



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CHAPTER 9 8086/8088 Hardware Specifications

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Both machines are 16-bit microprocessors The 8088 has an 8-bit data bus and the 8086 has a 16-bit data bus Still used in embedded systems (cost < $1) 8086/88 Hardware and Bus Structure Abstract diagram showing data flow in/out of mP 8086/88 Hardware and Bus Structure General Characteristics Power: 8086 +5V ± 10 360mA (80C86 10mA)



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Pin Diagram of 8086 and Pin description of 8086 Figure (1) shows the Pin diagram of 8086 The 8086 can be configured to work in either of two modes: ? The minimum mode is selected by applying logic 1 to the MN/MX input It is typically used for smaller single microprocessor systems



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The Intel 8088 is a high performance microprocessor implemented in N-channel depletion load silicon gate technology (HMOS-II) and packaged in a 40-pin CERDIP package The processor has attributes of both 8-and 16-bit microprocessors It is directly compatible with 8086 software and 8080/8085 hardware and periph-erals 231456–1



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8086/8088 Microprocessor and its pin confi tifiguration REFERENCES: 1 MICROPROCESSORS AND INTERFACING PROGRAMMING AND HARDWARE SECOND EDITION D V HALL EDITION D V HALL – CHAPTER 7 CHAPTER 11CHAPTER 7 CHAPTER 11

What are the pin functions of the 8086 and 8088 microprocessors?

    •In this chapter, the pin functions of both the 8086 and 8088 microprocessors are detailed and information is provided on the following hardware topics: clock generation, bus buffering, bus latching, timing, wait states, and minimum mode operation versus maximum mode operation.

Why is it important to understand system bus timing in 8086?

    •It is essential to understand system bus timing before choosing memory or I/O devices for interfacing to 8086 or 8088 microprocessors. •This section provides insight into operation of the bus signals and the basic read/write timing of the 8086/8088. Basic Bus Operation

What are the requirements for 8086/8088 memory?

    •Memory devices chosen for connection to the 8086/8088 operating at 5 MHz must be able to access data in less than 460 ns. –because of the time delay introduced by the address decoders and buffers in the system –a 30- or 40-ns margin should exist for the operation of these circuits

What is the architecture of 8086?

    The architecture of 8086 is shown below in Fig. 11.3. It has got two separate functional units—Bus Interface Unit (BIU) and Execution Unit (EU). 8086 architecture employs parallel processing—i.e., both the units (BIU and EU) work at the same time. This is Unlike 8085 in which

CHAPTER 9

8086/8088 Hardware Specifications

CHAPTER OBJECTIVES

Upon completion of this chapter, you will be able to:

1. Describe the function of each 8086 and 8088 pin.

common logic families.

3. Use the clock generator chip (8284A) to provide the clock for the

microprocessor.

4. Connect buffers and latches to the buses.

5. Interpret the timing diagrams.

6. Describe wait states and connect the circuitry required to cause various

numbers of waits.

7. Explain the difference between minimum and maximum mode operation.

The Pin-Out

Figure 9±1 illustrates the pin-outs of the 8086 and 8088 microprocessors. As a close comparison reveals, there is virtually no difference between these two microprocessors²both are packaged in 40-pin dual in-line packages (DIPs). As mentioned in Chapter 1, the 8086 is a 16-bit microprocessor with a 16-bit data bus and the 8088 is a 16-bit microprocessor with an 8-bit data bus. (As the pin- outs show, the 8086 has pin connections AD0±AD15, and the 8088 has pin connections AD0±AD7.) Data bus width therefore the only major difference between these microprocessors. This allows the 8086 to transfer 16-bit data more efficiently. There is, however, a minor difference in one of the control signals. The 8088 has an ۽۷quotesdbs_dbs19.pdfusesText_25
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