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M58PR256LE 数据表(PDF) 41 Page - STMicroelectronics |
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M58PR256LE 数据表(HTML) 41 Page - STMicroelectronics |
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41 / 119 page ![]() M58PR256LE, M58PR512LE, M58PR001LE Program operations 41/119 5 Program operations The M58PR256LE, M58PR512LE and M58PR001LE have innovative features specially developed to improve the storage flexibility and efficiency of NOR Flash memory arrays. Data and code can be stored more efficiently by using the right combination of program methods and program modes. There are two types of program methods that use commands that consist of one or more sequential bus write operations interpreted by the command interface: ● Single word program method, which uses the Program command. ● Buffered program method, which uses either the Buffer Program command or the Buffer Enhanced Factory Program command. There are two program modes: ● Control program mode ● Object program mode. The control program mode supports the two program methods, whereas the object program mode only supports the buffered program method. This new logical organization of program operations is made possible by the device architecture, and, in particular, by the new concept of program regions. 5.1 Program regions Each Flash memory block is divided into 256 program regions (see Figure 5: Program regions configured in control or object program mode). Erase operations have a block granularity, whereas program operations have a program region granularity. The user can configure each program region to be programmed either in the control program mode or in the object program mode. A given block can contain program regions configured in the control program mode and others configured in the object program mode. Special care should be taken when selecting the programming mode for the program regions because once the program regions are configured, their program mode cannot be changed until the entire block is erased. Each program region is split into 32 segments of 32 bytes and each segment is subdivided into two halves, ’A’ and ’B’. Address bit A3 determines whether a bit belongs to the ’A’ half (A3 = 0) or to the ’B’ half (A3 = 1). |
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