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AN2540 Datasheet(PDF) 5 Page - STMicroelectronics |
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AN2540 Datasheet(HTML) 5 Page - STMicroelectronics |
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5 / 25 page ![]() AN2540 - Application note Embedded Flash memory vs. EEPROM: main differences 5/25 1 Embedded Flash memory vs. EEPROM: main differences Before describing the proposed concept for EEPROM emulation, it is important to remember the main differences between the embedded Flash memory of a microcontroller and serial external EEPROMs. These differences are the same for any microcontroller (that is they are not specific to STR91xFxx products). They are summarized in Table 1. 1.1 Difference in write access time As the Flash memory has a shorter write access time, critical parameters can be stored faster into the emulated EEPROM than into an external serial EEPROM. The use of the Flash memory therefore improves the system robustness. 1.2 Difference in writing method One of the major differences between external and emulated EEPROM for embedded applications is the writing method. ● Standalone external EEPROM: once started by the CPU, the writing of a word cannot be interrupted by a CPU reset. Only a power supply failure can interrupt the writing process, so properly sizing the decoupling capacitors can secure the write process to a standalone EEPROM. ● Emulated EEPROM from an embedded Flash memory: once started by the CPU, the writing can be interrupted by a power failure and by a CPU reset. This difference should be analyzed by system designers to understand the possible impact(s) in their applications, and to determine a proper method to handle them. Table 1. Differences between Embedded Flash memory and EEPROM Feature External EEPROM Emulated EEPROM using on-chip Flash memory Write time A few ms – random byte: 5 to 10 ms – page: equivalent to a hundred µs per word (5 to 10 ms per page) A few µs (e.g.: 20 µs per 16-bit word) Erase time N/A seconds (e.g.: 1.5 s) Write method Once started, is not CPU-dependent, needs only proper supply. Once started, is CPU-dependent: a CPU reset will stop the write process even if the supply stays within specifications. Read access Serial: a hundred µs random word: 92 µs page: 22.5 µs/byte Parallel: a hundred ns very few CPU cycles per 16-bit word. |
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