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AM29LV640MB110PCF 数据表(PDF) 30 Page - Advanced Micro Devices |
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AM29LV640MB110PCF 数据表(HTML) 30 Page - Advanced Micro Devices |
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30 / 66 page ![]() 28 Am29LV640MT/B 26190C8 February 1, 2007 D A TA SH EE T which the system can read data from an y non-erase-suspended sector. After completing a pro- gramming operation in the Erase Suspend mode, the system can once again read array data with the same exception. See Erase Suspend/Erase Resume Com- mands on page 35 for more information. The system must issue the reset command to return the device to the read (or erase-suspend-read) mode if DQ5 goes high during an active program or erase op- eration, or if the device is in the autoselect mode. See the next section, Reset Command, for more informa- tion. See also Requirements for Reading Array Data on page 11 in Device Bus Operations for more informa- tion. See the table, Read-Only Operations on page 45 for the read parameters, and Figure 14 for the timing diagram. Reset Command Writing the reset command resets the device to the read or erase-suspend-read mode. Address bits are don’t cares for this command. The reset command can be written between the se- quence cycles in an erase command sequence before erasing begins. This resets the device to the read mode. Once erasure begins, however, the device ig- nores reset commands until the operation is complete. The reset command can be written between the sequence cycles in a program command sequence before programming begins. This resets the device to the read mode. If the program command sequence is written while the device is in the Erase Suspend mode, writing the reset command returns the device to the erase-suspend-read mode. Once programming be- gins, however, the device ignores reset commands until the operation is complete. The reset command can be written between the se- quence cycles in an autoselect command sequence. Once in the autoselect mode, the reset command must be written to return to the read mode. If the de- vice entered the autoselect mode while in the Erase Suspend mode, writing the reset command returns the device to the erase-suspend-read mode. If DQ5 goes high during a program or erase operation, writing the reset command returns the device to the read mode (or erase-suspend-read mode if the device was in Erase Suspend). Note that if DQ1 goes high during a Write Buffer Pro- gramming operation, the system must write the Write-to-Buffer-Abort Reset command sequence to reset the device for the next operation. Autoselect Command Sequence The autoselect command sequence allows the host system to read several identifier codes at specific ad- dresses: Note: The device ID is read over three cycles. SA = Sector Address Tables 12 and 13 show the address and data require- ments. This method is an alternative to that shown in Table 4, which is intended for PROM programmers and requires V ID on address pin A9. The autoselect command sequence can be written to an address that is either in the read or erase-suspend-read mode. The autoselect command cannot be written while the de- vice is actively programming or erasing. The autoselect command sequence is initiated by first writing two unlock cycles. This is followed by a third write cycle that contains the autoselect command. The device then enters the autoselect mode. The system can read at any address any number of times without initiating another autoselect command sequence. The system must write the reset command to return to the read mode (or erase-suspend-read mode if the de- vice was previously in Erase Suspend). Enter Secured Silicon Sector/Exit Secured Silicon Sector Command Sequence The Secured Silicon Sector region provides a secured data area containing an 8-word/16-byte random Elec- tronic Serial Number (ESN). The system can access the Secured Silicon Sector region by issuing the three-cycle Enter Secured Silicon Sector command sequence. The device continues to access the Se- cured Silicon Sector region until the system issues the four-cycle Exit Secured Silicon Sector command se- quence. The Exit Secured Silicon Sector command sequence returns the device to normal operation. Ta- bles 12 and 13 show the address and data require- ments for both command sequences. See also Secured Silicon Sector Flash Memory Region for further infor- mation. Identifier Code A7:A0 (x16) A6:A-1 (x8) Manufacturer ID 00h 00h Device ID, Cycle 1 01h 02h Device ID, Cycle 2 0Eh 1Ch Device ID, Cycle 3 0Fh 1Eh Secured Silicon Sector Factory Protect 03h 06h Sector Protect Verify (SA)02h (SA)04h |
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