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F25L08PA-50PG Datasheet(PDF) 9 Page - Elite Semiconductor Memory Technology Inc. |
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F25L08PA-50PG Datasheet(HTML) 9 Page - Elite Semiconductor Memory Technology Inc. |
9 / 32 page ESMT F25L08PA Elite Semiconductor Memory Technology Inc. Publication Date: Jul. 2009 Revision: 1.7 9/32 Note: 1. Operation: SIN = Serial In, SOUT = Serial Out, Bus Cycle 1 = Op Code 2. X = Dummy Input Cycles (VIL or VIH); - = Non-Applicable Cycles (Cycles are not necessary); cont. = continuous 3. One bus cycle is eight clock periods. 4. Sector Earse addresses: use AMS -A12, remaining addresses can be VIL or VIH Block Earse addresses: use AMS -A16, remaining addresses can be VIL or VIH 5. To continue programming to the next sequential address location, enter the 8-bit command, followed by the data to be programmed. 6. The Read-Status-Register is continuous with ongoing clock cycles until terminated by a low to high transition on CE . 7. The Enable-Write-Status-Register (EWSR) instruction and the Write-Status-Register (WRSR) instruction must work in conjunction of each other. The WRSR instruction must be executed immediately (very next bus cycle) after the EWSR instruction to make both instructions effective. 8. The Read-Electronic-Signature is continuous with on going clock cycles until terminated by a low to high transition on CE . 9. The Jedec-Read-ID is output first byte 8CH as manufacture ID; second byte 20H as top memory type; third byte 14H as memory capacity. 10. The Write-Enable (WREN) instruction and the Write-Status-Register (WRSR) instruction must work in conjunction of each other. The WRSR instruction must be executed immediately (very next bus cycle) after the WREN instruction to make both instructions effective. Both EWSR and WREN can enable WRSR, user just need to execute one of it. A successful WRSR can reset WREN. 11. The Manufacture ID and Device ID output will repeat continuously until CE terminates the instruction. 12. Dual commands use bidirectional IO pins. DOUT and cont. are serial data out; others are serial data in. 13. Dual output data: IO0 =(D6,D4,D2,D0), (D6,D4,D2,D0) IO1 =(D7,D5,D3,D1), (D7,D5,D3,D1) DOUT0 DOUT1 |
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