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AM29PL320DT60RWPI 数据表(PDF) 21 Page - SPANSION |
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AM29PL320DT60RWPI 数据表(HTML) 21 Page - SPANSION |
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21 / 50 page ![]() October 2, 2003 Am29PL320D 19 Figure 1. SecSi Sector Protect Verify Write Protect (WP#) The Write Protect function provides a hardware method of protecting certain boot sectors without using VID. If the system asserts VIL on the WP# input, the device disables program and erase functions in Sector 0 (for bottom boot) or Sector 18 (for top boot) independently of whether those sectors were protected or unpro- tected using the method described in “Sector Protec- tion/Unprotection”. If the system asserts VIH on the WP# input, the device reverts to whether Sector 0 or 18 was last set to be protected or unprotected. That is, sector protection or unprotection for that sector depends on whether they were last protected or unprotected using the method described in “Sector Protection/Unprotection”. Note that the WP# input must not be left floating or un- connected; inconsistent behavior of the device may re- sult. Hardware Data Protection The command sequence requirement of unlock cycles for programming or erasing provides data protection against inadvertent writes (refer to Table 13 for com- mand definitions). In addition, the following hardware data protection measures prevent accidental erasure or programming, which might otherwise be caused by spurious system level signals during VCC power-up and power-down transitions, or from system noise. Low VCC Write Inhibit When VCC is less than VLKO, the device does not ac- cept any write cycles. This protects data during VCC power-up and power-down. The command register and all internal program/erase circuits are disabled, and the device resets. Subsequent writes are ignored until VCC is greater than VLKO. The system must pro- vide the proper signals to the control inputs to prevent unintentional writes when VCC is greater than VLKO. Write Pulse “Glitch” Protection Noise pulses of less than 5 ns (typical) on OE#, CE# or WE# do not initiate a write cycle. Logical Inhibit Write cycles are inhibited by holding any one of OE# = VIL, CE# = VIH or WE# = VIH. To initiate a write cycle, CE# and WE# must be a logical zero while OE# is a logical one. Power-Up Write Inhibit If WE# = CE# = VIL and OE# = VIH during power up, the device does not accept commands on the rising edge of WE#. The internal state machine is automati- cally reset to reading array data on power-up. COMMAND DEFINITIONS Writing specific address and data commands or se- quences into the command register initiates device operations. Table 13 defines the valid register com- mand sequences. Note that writing incorrect address and data values or writing them in the improper se- quence may place the device in an unknown state. A reset command is required to return the device to nor- mal operation. All addresses are latched on the falling edge of WE# or CE#, whichever happens later. All data is latched on the rising edge of WE# or CE#, whichever happens first. Refer to the appropriate timing diagrams in the “AC Characteristics” section. Reading Array Data The device is automatically set to reading array data after device power-up. No commands are required to retrieve data. The device is also ready to read array data after completing an Embedded Program or Em- bedded Erase algorithm. After the device accepts an Erase Suspend command, the device enters the Erase Suspend mode. The sys- tem can read array data using the standard read timings, except that if it reads at an address within erase-suspended sectors, the device outputs status data. After completing a programming operation in the Write 60h to any address Write 40h to SecSi Sector address with A6 = 0, A1 = 1, A0 = 0 START RESET# = VIH or VID Wait 1 µs Read from SecSi Sector address with A6 = 0, A1 = 1, A0 = 0 If data = 00h, SecSi Sector is unprotected. If data = 01h, SecSi Sector is protected. Remove VIH or VID from RESET# Write reset command SecSi Sector Protect Verify complete |
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