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AT89LP51 데이터시트(PDF) 22 Page - ATMEL Corporation |
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AT89LP51 데이터시트(HTML) 22 Page - ATMEL Corporation |
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22 / 113 page ![]() 22 3709B–MICRO–12/10 AT89LP51/52 - Preliminary 3.4 In-Application Programming (IAP) The AT89LP51/52 supports In-Application Programming (IAP), allowing the program memory to be modified during execution. IAP can be used to modify the user application on the fly or to use program memory for nonvolatile data storage. The same page structure write protocol for FDATA also applies to IAP (See Section 3.3.2.1 “Write Protocol” on page 14). The CPU is always placed in idle while modifying the program memory. When the write completes, the CPU will continue executing with the instruction after the MOVX @DPTR,A instruction that started the write. To enable access to the program memory, the IAP bit (MEMCON.7) must be set to one and the IAP User Fuse must be enabled. The IAP User Fuse can disable all IAP operations. When this fuse is disabled, the IAP bit will be forced to 0. While IAP is enabled, all MOVX @DPTR instruc- tions will access the CODE space instead of EDATA/FDATA/XDATA. IAP also allows reprogramming of the User Signature Array when SIGEN = 1. The IAP access settings are sum- marized in Table 3-4 and Table 3-5. Note: When In-Application programming is not required, it is recommended that the IAP User Fuse be disabled. Table 3-4. IAP Access Settings for AT89LP52 IAP SIGEN DMEN MOVX @DPTR MOVC @DPTR 0 0 0 XDATA (0000–FFFFH) CODE (0000–1FFFH) XCODE (2000–FFFFH) 001 FDATA (0000–00FFH) XDATA (0100–FFFFH) CODE (0000–1FFFH) XCODE (2000–FFFFH) 0 1 0 XDATA (0000–FFFFH) SIG (0000–01FFH) 011 FDATA (0000–00FFH) XDATA (0100–FFFFH) SIG (0000–01FFH) 10 X CODE (0000–1FFFH) XDATA (2000–FFFFH) CODE (0000–1FFFH) XCODE (2000–FFFFH) 11 X SIG (0000–01FFH) XDATA (2000–FFFFH) SIG (0000–01FFH) Table 3-5. IAP Access Settings for AT89LP51 IAP SIGEN DMEN MOVX @DPTR MOVC @DPTR 0 0 0 XDATA (0000–FFFFH) CODE (0000–0FFFH) XCODE (1000–FFFFH) 001 FDATA (0000–00FFH) XDATA (0100–FFFFH) CODE (0000–0FFFH) XCODE (1000–FFFFH) 0 1 0 XDATA (0000–FFFFH) SIG (0000–01FFH) 011 FDATA (0000–00FFH) XDATA (0100–FFFFH) SIG (0000–01FFH) 10 X CODE (0000–0FFFH) XDATA (1000–FFFFH) CODE (0000–0FFFH) XCODE (1000–FFFFH) 11 X SIG (0000–01FFH) XDATA (1000–FFFFH) SIG (0000–01FFH) |
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