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M58PR256LE 数据表(PDF) 30 Page - STMicroelectronics |
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M58PR256LE 数据表(HTML) 30 Page - STMicroelectronics |
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30 / 119 page ![]() Command interface M58PR256LE, M58PR512LE, M58PR001LE 30/119 4.11 Program/Erase Resume command The Program/Erase Resume command restarts the program or erase operation suspended by the Program/Erase Suspend command. One bus write cycle is required to issue the command. The command can be issued to any address. The Program/Erase Resume command does not change the read mode of the banks. If the suspended bank was in Read Status Register, Read Electronic Signature or Read CFI Query mode, the bank remains in that mode and outputs the corresponding data. If a Program command is issued during a block erase suspend, then the erase cannot be resumed until the program operation is complete. See Appendix C, Figure 22: Program suspend and resume flowchart and pseudocode and Figure 24: Erase suspend and resume flowchart and pseudocode for flowcharts for using the Program/Erase Resume command. 4.12 Protection Register Program command The Protection Register Program command programs the user OTP area of the Protection Register and the two Protection Register Locks. The device features 16 OTP areas of 128 bits and one OTP area of 64 bits, as shown in Figure 4: Protection Register memory map. The areas are programmed one word at a time. When shipped, all bits in the area are set to ‘1’. Only the user can program the bits to ‘0’. Two bus write cycles are required to issue the Protection Register Program command. ● The first bus cycle sets up the Protection Register Program command. ● The second latches the address and data to be programmed to the Protection Register and starts the Program/Erase Controller. Read operations to the bank being programmed output the Status Register content after the program operation has started. Attempting to program a previously-protected Protection Register results in a Status Register error. The Protection Register Program cannot be suspended. Dual operations between the EFA and the Protection Register memory space are not allowed (see Table 21: Dual operation limitations for details). The two Protection Register locks are used to protect the OTP areas from further modification. The protection of the OTP areas is not reversible. Refer to Figure 4: Protection Register memory map for details on the lock bits. See Appendix C, Figure 27: Protection Register program flowchart and pseudocode for a flowchart for using the Protection Register Program command. |
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