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M95128-RMB6P/A 数据表(PDF) 22 Page - STMicroelectronics |
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M95128-RMB6P/A 数据表(HTML) 22 Page - STMicroelectronics |
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22 / 44 page ![]() Instructions M95128, M95128-W, M95128-R 22/44 5.6 Write to Memory Array (WRITE) As shown in Figure 10, to send this instruction to the device, Chip Select (S) is first driven Low. The bits of the instruction byte, address byte, and at least one data byte are then shifted in, on Serial Data Input (D). The instruction is terminated by driving Chip Select (S) High at a byte boundary of the input data. The self-timed Write cycle, triggered by the rising edge of Chip Select (S), continues for a period tWC (as specified in Table 16 to Table 19.), at the end of which the Write in Progress (WIP) bit is reset to 0. In the case of Figure 10, Chip Select (S) is driven high after the eighth bit of the data byte has been latched in, indicating that the instruction is being used to write a single byte. If, though, Chip Select (S) continues to be driven Low, as shown in Figure 11., the next byte of input data is shifted in, so that more than a single byte, starting from the given address towards the end of the same page, can be written in a single internal Write cycle. Each time a new data byte is shifted in, the least significant bits of the internal address counter are incremented. If the number of data bytes sent to the device exceeds the page boundary, the internal address counter rolls over to the beginning of the page, and the previous data there are overwritten with the incoming data. (The page size of these devices is 64 bytes). The instruction is not accepted, and is not executed, under the following conditions: ● if the Write Enable Latch (WEL) bit has not been set to 1 (by executing a Write Enable instruction just before) ● if a Write cycle is already in progress ● if the device has not been deselected, by Chip Select (S) being driven High, at a byte boundary (after the eighth bit, b0, of the last data byte that has been latched in) ● if the addressed page is in the region protected by the Block Protect (BP1 and BP0) bits. Figure 10. Byte Write (WRITE) sequence 1. The most significant address bits (b15, b14) are Don’t Care. C D AI01795D S Q 15 2 1 3456789 10 20 21 22 23 24 25 26 27 14 13 3210 28 29 30 High Impedance Instruction 16-Bit Address 0 765432 0 1 Data Byte 31 |
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