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M28C256-25WKA6T Datasheet(PDF) 5 Page - STMicroelectronics |
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M28C256-25WKA6T Datasheet(HTML) 5 Page - STMicroelectronics |
5 / 21 page Status Register The devices provide several Write operation status flags that can be used to minimize the application write time. These signals are available on the I/O port bits during programming cycle only. Data Polling bit (DQ7). During the internal write cycle, any attempt to read the last byte written will produce on DQ7 the complementary value of the previously latched bit. Once the write cycle is fin- ished the true logic value appears on DQ7 in the read cycle. Toggle bit (DQ6). The devices offer another way for determining when the internal write cycle is completed. During the internal Erase/Write cycle, DQ6 will toggle from ”0” to ”1” and ”1” to ”0” (the first read value is ”0”) on subsequent attempts to read any byte of the memory. When the internal cycle is completed the toggling will stop and the data read on DQ7-DQ0 is the addressed memory byte. The device is now accessible for a new Read or Write operation. Page Load Timer Status bit (DQ5). Duringa Page Write instruction, the devices expect to receive the stream of data with a minimum period of time between each data byte. This period of time (tWHWH) is defined by the on-chip Page Load timer which running/overflow status is available on DQ5. DQ5 Low indicates that the timer is running, DQ5 High indicates the time-out after which the internal write cycle will start. Software Data Protection The devices offer a software controlled write pro- tection facility that allows the user to inhibit all write modes to the device. This can be useful in protect- ing the memory from inadvertent write cycles that may occur due to uncontrolledbus conditions. The devices are shipped as standardin the ”unpro- tected” state meaning that the memory contents can be changed as required by the user. After the Software Data Protection enable algorithm is is- sued, the device enters the ”Protect Mode” of operation where no further write commands have any effect on the memory contents. The devices remain in this mode until a valid Software Data Protection (SDP) disable sequence is received whereby the device reverts to its ”un- protected” state. The Software Data Protection is fully non-volatile and is not changed by power on/off sequences. To enable the Software Data Protection (SDP) the device requires the user to write (with a Page Write addressing three specific data bytes to three specific memory locations,each location in a different page) as per Figure 6. Simi- larly to disable the Software Data Protection the user has to write specific data bytes into six differ- ent locations as per Figure 5 (with a Page Write adressing different bytes in different pages). This complexseries ensures that the userwill never enable or disable the Software Data Protection accidentally. To write into the devices when SDP is set, the sequence shown in Figure 6 must be used. This sequence provides an unlock key to enable the write action, and at the same time SDP continues to be set. An extension to this is where SDP is required to be set, and data is to be written. Using the same sequence as above, the data can be written and SDP is set at the same time, giving both these actions in the same Write cycle (tWC). DQ7 DQ6 DQ5 DQ4 DQ3 DQ2 DQ1 DQ0 DP TB PLTS X X X X X DP = Data Polling TB = Toggle Bit PLTS = Page Load Timer Status Figure 4. Status Bit Assignment 5/21 M28256 |
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