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AT25DF256 датащи(PDF) 17 Page - Renesas Technology Corp |
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AT25DF256 датащи(HTML) 17 Page - Renesas Technology Corp |
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17 / 47 page ![]() DS-AT25DF256-035 Rev.G Page 17 2024-01-08 © 2024 Renesas Electronics AT25DF256 Datasheet 8.4 Chip Erase The entire memory array can be erased in a single operation by using the Chip Erase command. Before a Chip Erase command can be started, the Write Enable command must have been previously issued to the device to set the WEL bit of the Status Register to a logical 1 state. Three opcodes (60h, 62h, and C7h) can be used for the Chip Erase command. There is no difference in device functionality when using the three opcodes, so they can be used interchangeably. To perform a Chip Erase, one of the three opcodes must be clocked into the device. Since the entire memory array is to be erased, no address bytes need to be clocked into the device, and any data clocked in after the opcode are ignored. When the CS pin is deasserted, the device erases the entire memory array. The erasing of the device is internally self-timed and takes place in a time of tCHPE. The complete opcode must be clocked into the device before the CS pin is deasserted, and the CS pin must be deasserted on an even byte boundary (multiples of eight bits); otherwise, no erase is performed. Also, if the memory array is in the protected state, then the Chip Erase command is not executed, and the device returns to the idle state once the CS pin has been deasserted. The WEL bit in the Status Register is reset to the logical 0 state if the CS pin is deasserted on uneven byte boundaries or if the memory is in the protected state. While the device is executing a successful erase cycle, the Status Register can be read and indicates that the device is busy. For faster throughput, it is recommended that the Status Register be polled rather than waiting the tCHPE time to determine if the device has finished erasing. At some point before the erase cycle completes, the WEL bit in the Status Register is reset to the logical 0 state. The device also incorporates an intelligent erase algorithm that can detect when a byte location fails to erase properly. If an erase error occurs, it is indicated by the EPE bit in the Status Register. Figure 13. Chip Erase SCK CS SI SO MSB 23 1 0 CCCCCCCC 67 5 4 OPCODE HIGH-IMPEDANCE |
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