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AT25PE20 数据表(PDF) 21 Page - Dialog Semiconductor |
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AT25PE20 数据表(HTML) 21 Page - Dialog Semiconductor |
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21 / 64 page ![]() 20 AT25PE20 DS-25PE20–139C–8/2018 7.3.3 Read Sector Protection Register To read the Sector Protection Register, an opcode of 32h and three dummy bytes must be clocked into the device. After the last bit of the opcode and dummy bytes have been clocked in, any additional clock pulses on the SCK pin will result in the Sector Protection Register contents being output on the SO pin. The first byte (byte location 0) corresponds to Sector 0 (0a and 0b), the second byte corresponds to Sector 1, and the last byte (byte location 7) corresponds to Sector 7. Once the last byte of the Sector Protection Register has been clocked out, any additional clock pulses will result in undefined data being output on the SO pin. The CS pin must be deasserted to terminate the Read Sector Protection Register operation and put the output into a high-impedance state. Table 7-8. Read Sector Protection Register Command Note: 1. XX = Dummy byte Figure 7-6. Read Sector Protection Register 7.3.4 About the Sector Protection Register The Sector Protection Register is subject to a limit of 10,000 erase/program cycles. Users are encouraged to carefully evaluate the number of times the Sector Protection Register will be modified during the course of the application’s life cycle. If the application requires that the Security Protection Register be modified more than the specified limit of 10,000 cycles because the application needs to temporarily unprotect individual sectors (sector protection remains enabled while the Sector Protection Register is reprogrammed), then the application will need to limit this practice. Instead, a combination of temporarily unprotecting individual sectors along with disabling sector protection completely will need to be implemented by the application to ensure that the limit of 10,000 cycles is not exceeded. Command Byte 1 Byte 2 Byte 3 Byte 4 Read Sector Protection Register 32h XXh XXh XXh 32h XX XX XX Data n Data n + 1 CS SI SO Each transition represents eight bits Data n + 7 |
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