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M29F080D Datasheet(PDF) 12 Page - STMicroelectronics |
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M29F080D Datasheet(HTML) 12 Page - STMicroelectronics |
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12 / 36 page ![]() M29F080D 12/36 During Erase Suspend it is possible to Read and Program cells in blocks that are not being erased; both Read and Program operations behave as normal on these blocks. If any attempt is made to program in a protected block or in the suspended block then the Program command is ignored and the data remains unchanged. The Status Register is not read and no error condition is given. Read- ing from blocks that are being erased will output the Status Register. It is also possible to issue the Auto Select, Read CFI Query and Unlock Bypass commands during an Erase Suspend. The Read/Reset command must be issued to return the device to Read Array mode before the Resume command will be ac- cepted. Erase Resume Command. The Erase Resume command must be used to restart the Program/ Erase Controller after an Erase Suspend. The de- vice must be in Read Array mode before the Re- sume command will be accepted. An erase can be suspended and resumed more than once. Read CFI Query Command. The Read CFI Query Command is used to read data from the Common Flash Interface (CFI) Memory Area. This command is valid when the device is in the Read Array mode, or when the device is in Autoselected mode. One Bus Write cycle is required to issue the Read CFI Query Command. Once the command is is- sued subsequent Bus Read operations read from the Common Flash Interface Memory Area. The Read/Reset command must be issued to re- turn the device to the previous mode (the Read Ar- ray mode or Autoselected mode). A second Read/ Reset command would be needed if the device is to be put in the Read Array mode from Autoselect- ed mode. See Appendix B, Tables 17, 18, 19, 20, 21 and 22 for details on the information contained in the Common Flash Interface (CFI) memory area. Block Protect and Chip Unprotect Com- mands. Groups of blocks can be protected against accidental Program or Erase. The Protec- tion Groups are shown in Appendix A, Table 16. The whole chip can be unprotected to allow the data inside the blocks to be changed. Block Protect and Chip Unprotect operations are described in Appendix C. |
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