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SST32HF802-70-4E-LBKE Datasheet(PDF) 4 Page - Silicon Storage Technology, Inc |
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SST32HF802-70-4E-LBKE Datasheet(HTML) 4 Page - Silicon Storage Technology, Inc |
4 / 30 page 4 Data Sheet Multi-Purpose Flash (MPF) + SRAM ComboMemory SST32HF202 / SST32HF402 / SST32HF802 ©2005 Silicon Storage Technology, Inc. S71209-06-000 5/05 Flash Data# Polling (DQ7) When the SST32HF202/402/802 flash memory banks are in the internal Program operation, any attempt to read DQ7 will produce the complement of the true data. Once the Program operation is completed, DQ7 will produce true data. Note that even though DQ7 may have valid data immediately following the completion of an internal Write operation, the remaining data outputs may still be invalid: valid data on the entire data bus will appear in subsequent successive Read cycles, after an interval of 1 µs. During internal Erase operation, any attempt to read DQ7 will pro- duce a ‘0’. Once the internal Erase operation is completed, DQ7 will produce a ‘1’. The Data# Polling is valid after the rising edge of the fourth WE# (or BEF#) pulse for Program operation. For Sector- or Block-Erase, the Data# Polling is valid after the rising edge of the sixth WE# (or BEF#) pulse. See Figure 9 for Data# Polling timing diagram and Figure 19 for a flowchart. Flash Toggle Bit (DQ6) During the internal Program or Erase operation, any con- secutive attempts to read DQ6 will produce alternating ‘1’s and ‘0’s, i.e., toggling between 1 and 0. When the internal Program or Erase operation is completed, the toggling will stop. The flash memory bank is then ready for the next operation. The Toggle Bit is valid after the rising edge of the fourth WE# (or BEF#) pulse for Program operation. For Sector- or Bank-Erase, the Toggle Bit is valid after the rising edge of the sixth WE# (or BEF#) pulse. See Figure 10 for Toggle Bit timing diagram and Figure 19 for a flowchart. Flash Memory Data Protection The SST32HF202/402/802 flash memory bank provides both hardware and software features to protect nonvolatile data from inadvertent writes. Flash Hardware Data Protection Noise/Glitch Protection: A WE# or BEF# pulse of less than 5 ns will not initiate a Write cycle. VDD Power Up/Down Detection: The Write operation is inhibited when VDD is less than 1.5V. Write Inhibit Mode: Forcing OE# low, BEF# high, or WE# high will inhibit the Flash Write operation. This prevents inadvertent writes during power-up or power-down. Flash Software Data Protection (SDP) The SST32HF202/402/802 provide the JEDEC approved software data protection scheme for all flash memory bank data alteration operations, i.e., Program and Erase. Any Program operation requires the inclusion of a series of three-byte sequence. The three-byte load sequence is used to initiate the Program operation, providing optimal protection from inadvertent Write operations, e.g., during the system power-up or power-down. Any Erase operation requires the inclusion of six-byte load sequence. The SST32HF202/402/802 devices are shipped with the soft- ware data protection permanently enabled. See Table 4 for the specific software command codes. During SDP com- mand sequence, invalid SDP commands will abort the device to the Read mode, within Read cycle time (TRC). Concurrent Read and Write Operations The SST32HF202/402/802 provide the unique benefit of being able to read from or write to SRAM, while simulta- neously erasing or programming the Flash. This allows data alteration code to be executed from SRAM, while alter- ing the data in Flash. The following table lists all valid states. The device will ignore all SDP commands when an Erase or Program operation is in progress. Note that Product Identification commands use SDP; therefore, these com- mands will also be ignored while an Erase or Program operation is in progress. CONCURRENT READ/WRITE STATE TABLE Flash SRAM Program/Erase Read Program/Erase Write |
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