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AT45DB021E Datasheet(PDF) 30 Page - Dialog Semiconductor |
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AT45DB021E Datasheet(HTML) 30 Page - Dialog Semiconductor |
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30 / 74 page ![]() 29 AT45DB021E DS-AT45DB021E—8789J—03/2021 in the Status Register indicates that the device is busy. If the device is powered-down during the program cycle, then the contents of the 64-byte user programmable portion of the Security Register cannot be guaranteed. If the full 64 bytes of data are not clocked in before the CS pin is deasserted, then the values of the byte locations not clocked in cannot be guaranteed. Example: If only the first two bytes are clocked in instead of the complete 64 bytes, then the remaining 62 bytes of the user programmable portion of the Security Register cannot be guaranteed. Furthermore, if more than 64 bytes of data is clocked into the device, the data wraps back around to the beginning of the register. For example, if 65 bytes of data are clocked in, then the 65th byte is stored at byte location 0 of the Security Register. Warning: The user programmable portion of the Security Register can only be programmed one time. Therefore, it is not possible, for example, to only program the first two bytes of the register and then program the remaining 62 bytes at a later time. The Program Security Register command uses the internal buffer for processing. Therefore, the contents of the Buffer are altered from their previous state when this command is issued. Figure 9-4. Program Security Register Timing 9.2.2 Reading the Security Register To read the Security Register, an opcode of 77h and three dummy bytes must be clocked into the device. After the last dummy bit has been clocked in, the contents of the Security Register can be clocked out on the SO pin. After the last byte of the Security Register has been read, additional pulses on the SCK pin result in undefined data being output on the SO pin. Deasserting the CS pin terminates the Read Security Register operation and put the SO pin into a high-impedance state. Figure 9-5. Read Security Register Timing Data n 9Bh 00h 00h 00h Data n + 1 Data n + 63 CS SI Each transition represents eight bits 77h XX XX XX Data n Data n + 1 CS Data n + x SI SO Each transition represents eight bits |
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