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SST25VF080B データシート(PDF) 13 Page - Microchip Technology |
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SST25VF080B データシート(HTML) 13 Page - Microchip Technology |
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13 / 33 page ![]() 2005-2020 Microchip Technology Inc. DS20005045D-page 13 SST25VF080B 4.4.9 CHIP ERASE The Chip Erase instruction clears all bits in the device to FFH. A Chip Erase instruction will be ignored if any of the memory area is protected. Prior to any Write operation, the Write Enable (WREN) instruction must be executed. CE# must remain active-low for the duration of the Chip Erase instruction sequence. The Chip Erase instruction is initiated by executing an 8-bit com- mand, 60H or C7H. CE# must be driven high before the instruction is executed. The user may poll the BUSY bit in the Software STATUS Register or wait TCE for the completion of the internal self-timed Chip Erase cycle. See Figure 4-13 for the Chip Erase sequence. FIGURE 4-13: CHIP ERASE SEQUENCE 4.4.10 READ STATUS REGISTER (RDSR) The Read STATUS Register (RDSR) instruction allows reading of the STATUS Register. The STATUS Register may be read at any time even during a write (program/ erase) operation. When a write operation is in prog- ress, the BUSY bit may be checked before sending any new commands to assure that the new commands are properly received by the device. CE# must be driven low before the RDSR instruction is entered and remain low until the status data is read. Read STATUS Regis- ter is continuous with ongoing clock cycles until it is ter- minated by a low-to-high transition of the CE#. See Figure 4-14 for the RDSR instruction sequence. FIGURE 4-14: READ STATUS REGISTER ( RDSR) SEQUENCE 4.4.11 WRITE ENABLE (WREN) SEQUENCE The Write Enable (WREN) instruction sets the Write- Enable Latch bit in the STATUS Register to ‘1’ allowing Write operations to occur. The WREN instruction must be executed prior to any write (program/erase) opera- tion. The WREN instruction may also be used to allow execution of the Write STATUS Register (WRSR) instruction; however, the Write Enable Latch bit in the STATUS Register will be cleared upon the rising edge CE# of the WRSR instruction. CE# must be driven high before the WREN instruction is executed. FIGURE 4-15: WRITE ENABLE ( WREN) SEQUENCE CE# SO SI SCK 0 1 234 5 6 7 60 or C7 MS H I MODE 0 MODE 3 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 MODE 3 SCK SI SO CE# Bit 7 Bit 6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0 05 MODE 0 High-Impedance Register Out MSb MS CE# SO SI SCK 0 1 234 5 6 7 06 MS H I MODE 0 MODE 3 |
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