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M38B53M4-059FP Datasheet(PDF) 159 Page - Mitsubishi Electric Semiconductor |
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M38B53M4-059FP Datasheet(HTML) 159 Page - Mitsubishi Electric Semiconductor |
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159 / 355 page ![]() 38B5 Group User’s Manual APPLICATION 2-71 2.3 Serial I/O q Control in the slave unit After setting the relevant registers as shown in Figure 2.3.47, the slave unit becomes the state where a synchronous clock can be received at any time, and the serial I/O2 receive interrupt request bit is set to “1” each time an 8-bit synchronous clock is received. In the serial I/O2 receive interrupt processing routine, the data to be transmitted next is written to the transmit buffer register after the received data is read out. However, if no serial I/O2 receive interrupt occurs for a certain time (heading adjustment time or more), the following processing will be performed. 1. The first 1-byte data of the transmission data in the block is written into the transmit buffer register. 2. The data to be received next is processed as the first 1 byte of the received data in the block. Figure 2.3.49 shows a control procedure of the slave unit using the serial I/O2 receive interrupt and any timer interrupt (for heading adjustment). Fig. 2.3.49 Control procedure of slave unit Write a transmission data Read a reception data N Within a block transfer term? Y Y A received byte counter ≥ 8? N RTI Write dummy data (FF 16) A received byte counter +1 Heading adjustment counter Initial value (Note 3) Serial I/O2 receive interrupt processing routine Timer interrupt processing routine Heading adjustment counter – 1 N Heading adjustment counter = 0? Y RTI Write the first transmission data (first byte) in a block A received byte counter 0 Confirmation of the received byte counter to judge the block transfer term In this example, set the value which is equal to the heading adjustment time divided by the timer interrupt cycle as the initial value of the heading adjustment counter. For example: When the heading adjustment time is 8 ms and the timer interrupt cycle is 1 ms, set 8 as the initial value. 3: q CLT (Note 1) CLD (Note 2) Push register to stack Pushing the register used in the interrupt processing routine into the stack q CLT (Note 1) CLD (Note 2) Push register to stack Pushing the register used in the interrupt processing routine into the stack. q Pop registers Popping registers which is pushed to stack q Pop registers Popping registers which is pushed to stack q Notes 1: When using the Index X mode flag (T). 2: When using the Decimal mode flag (D). |
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