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ST95P04B1TR Folha de dados(PDF) 8 Page - STMicroelectronics |
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ST95P04B1TR Folha de dados(HTML) 8 Page - STMicroelectronics |
8 / 16 page Read Status Register (RDSR) The RDSR instruction provides access to the status register. The status register may be read at any time, even during a non-volatile write. As soon as the 8th bit of the status register is read out, the ST95P04 enters a wait mode (data on D are not decoded, Q is in Hi-Z) until it is deselected. The status register format is as follows: b7 b0 1 1 1 1 BP1 BP0 WEL WIP BP1, BP0: Read and Write bits WEL, WIP: Read only bits. During a non-volatile write to the memory array, all bits BP1, BP0, WEL, WIP are valid and can be read. During a non volatile write to the status register, the only bits WEL and WIP are valid and can be read. The values of BP1 and BP0 read at that time correspond to the previous contents of the status register. The Write-In-Process (WIP) read only bit indicates whether the ST95P04 is busy with a write opera- tion. When set to a ’1’ a write is in progress, when set to a ’0’ no write is in progress. The Write Enable Latch (WEL) read only bit indi- cates the status of the write enable latch. When set to a ’1’ the latch is set, when set to a ’0’ the latch is reset. The Block Protect (BP0 and BP1) bits indicate the extent of the protection employed. These bits are set by the user issuing the WRSR instruction. These bits are non-volatile. Write Status Register (WRSR) The WRSR instruction allows the user to select the size of protected memory. The ST95P04 is divided into four 1024 bit blocks. The user may read the blocks but will be unable to write within the selected blocks. The blocks and respective WRSR control bits are shown in Table 6. When the WRSR instruction and the 8 bits of the Status Register are latched-in, the internal write cycle is then triggered by the rising edge of S. This rising edge of S must appear after the 8th bit of the Status Register content (it must not appear a 17th clock pulse before the rising edge of S), otherwise the internal write sequence is not performed. Read Operation The chip is first selected by putting S low. The serial one byte read instruction is followed by a one byte address (A7-A0), each bit being latched-in during the rising edge of the clock (C). Bit 3 of the read instruction contains address A8 (most significant address bit). This bit is used to select the first or second page of the device. Then, the data stored in the memory at the selected address is shifted out on the Q output pin; each bit being shifted out during the falling edge of the clock (C). The data stored in the memory at the next address can be read in sequence by continuing to provide clock Status Register Bits Array Addresses Protected BP1 BP0 0 0 none 0 1 180h - 1FFh 1 0 100h - 1FFh 1 1 000h - 1FFh Table 6. Array Addresses Protect Instruction Description Instruction Format WREN Set Write Enable Latch 0000 X110 WRDI Reset Write Enable Latch 0000 X100 RDSR Read Status Register 0000 X101 WRSR Write Status Register 0000 X001 READ Read Data from Memory Array 0000 A011 WRITE Write Data to Memory Array 0000 A010 Table 7. Instruction Set Notes: A = 1, Upper page selected A = 0, Lower page selected X = Don’t care 8/16 ST95P04 |
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