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M25P16 数据表(PDF) 16 Page - STMicroelectronics |
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M25P16 数据表(HTML) 16 Page - STMicroelectronics |
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16 / 39 page ![]() M25P16 16/39 Read Status Register (RDSR) The Read Status Register (RDSR) instruction al- lows the Status Register to be read. The Status Register may be read at any time, even while a Program, Erase or Write Status Register cycle is in progress. When one of these cycles is in progress, it is recommended to check the Write In Progress (WIP) bit before sending a new instruction to the device. It is also possible to read the Status Reg- ister continuously, as shown in Figure 12.. Table 6. Status Register Format The status and control bits of the Status Register are as follows: WIP bit. The Write In Progress (WIP) bit indicates whether the memory is busy with a Write Status Register, Program or Erase cycle. When set to 1, such a cycle is in progress, when reset to 0 no such cycle is in progress. WEL bit. The Write Enable Latch (WEL) bit indi- cates the status of the internal Write Enable Latch. When set to 1 the internal Write Enable Latch is set, when set to 0 the internal Write Enable Latch is reset and no Write Status Register, Program or Erase instruction is accepted. BP2, BP1, BP0 bits. The Block Protect (BP2, BP1, BP0) bits are non-volatile. They define the size of the area to be software protected against Program and Erase instructions. These bits are written with the Write Status Register (WRSR) in- struction. When one or both of the Block Protect (BP2, BP1, BP0) bits is set to 1, the relevant mem- ory area (as defined in Table 2.) becomes protect- ed against Page Program (PP) and Sector Erase (SE) instructions. The Block Protect (BP2, BP1, BP0) bits can be written provided that the Hard- ware Protected mode has not been set. The Bulk Erase (BE) instruction is executed if, and only if, both Block Protect (BP2, BP1, BP0) bits are 0. SRWD bit. The Status Register Write Disable (SRWD) bit is operated in conjunction with the Write Protect (W) signal. The Status Register Write Disable (SRWD) bit and Write Protect (W) signal allow the device to be put in the Hardware Protected mode (when the Status Register Write Disable (SRWD) bit is set to 1, and Write Protect (W) is driven Low). In this mode, the non-volatile bits of the Status Register (SRWD, BP2, BP1, BP0) become read-only bits and the Write Status Register (WRSR) instruction is no longer accepted for execution. Figure 12. Read Status Register (RDSR) Instruction Sequence and Data-Out Sequence b7 b0 SRWD 0 0 BP2 BP1 BP0 WEL WIP Status Register Write Protect Block Protect Bits Write Enable Latch Bit Write In Progress Bit C D S 2 1 3456789 10 11 12 13 14 15 Instruction 0 AI02031E Q 7 6543210 Status Register Out High Impedance MSB 7 6543210 Status Register Out MSB 7 |
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