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M58WR064T Datasheet(PDF) 11 Page - STMicroelectronics |
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M58WR064T Datasheet(HTML) 11 Page - STMicroelectronics |
11 / 81 page ![]() 11/81 M58WR064T, M58WR064B age). See Figure 9, AC Measurement Load Cir- cuit. The PCB trace widths should be sufficient to carry the required VPP program and erase currents. BUS OPERATIONS There are six standard bus operations that control the device. These are Bus Read, Bus Write, Ad- dress Latch, Output Disable, Standby and Reset. See Table 3, Bus Operations, for a summary. Typically glitches of less than 5ns on Chip Enable or Write Enable are ignored by the memory and do not affect Bus Write operations. Bus Read. Bus Read operations are used to out- put the contents of the Memory Array, the Elec- tronic Signature, the Status Register and the Common Flash Interface. Both Chip Enable and Output Enable must be at VIL in order to perform a read operation. The Chip Enable input should be used to enable the device. Output Enable should be used to gate data onto the output. The data read depends on the previous command written to the memory (see Command Interface section). See Figures 10 and 11, Asynchronous Read AC Waveforms, and Table 20, Asynchronous Read AC Characteristics, for details of when the output becomes valid. Bus Write. Bus Write operations write Com- mands to the memory or latch Input Data to be programmed. A bus write operation is initiated when Chip Enable and Write Enable are at VIL with Output Enable at VIH. Commands, Input Data and Addresses are latched on the rising edge of Write Enable or Chip Enable, whichever occurs first. The addresses can also be latched prior to the write operation by toggling Latch Enable. In this case the Latch Enable should be tied to VIH during the bus write operation. See Figures 14 and 15, Write AC Waveforms, and Tables 22 and 23, Write AC Characteristics, for details of the timing requirements. Address Latch. Address latch operations input valid addresses. Both Chip enable and Latch En- able must be at VIL during address latch opera- tions. The addresses are latched on the rising edge of Latch Enable. Output Disable. The outputs are high imped- ance when the Output Enable is at VIH. Standby. Standby disables most of the internal circuitry allowing a substantial reduction of the cur- rent consumption. The memory is in stand-by when Chip Enable and Reset are at VIH. The pow- er consumption is reduced to the stand-by level and the outputs are set to high impedance, inde- pendently from the Output Enable or Write Enable inputs. If Chip Enable switches to VIH during a pro- gram or erase operation, the device enters Stand- by mode when finished. Reset. During Reset mode the memory is dese- lected and the outputs are high impedance. The memory is in Reset mode when Reset is at VIL. The power consumption is reduced to the Standby level, independently from the Chip Enable, Output Enable or Write Enable inputs. If Reset is pulled to VSS during a Program or Erase, this operation is aborted and the memory content is no longer valid. Table 3. Bus Operations Note: 1. X = Don’t care. 2. L can be tied to VIH if the valid address has been previously latched. 3. Depends on G. Operation E G W L RP WAIT(4) DQ15-DQ0 Bus Read VIL VIL VIH VIL (2) VIH Data Output Bus Write VIL VIH VIL VIL (2) VIH Data Input Address Latch VIL X VIH VIL VIH Data Output or Hi-Z (3) Output Disable VIL VIH VIH X VIH Hi-Z Standby VIH XX X VIH Hi-Z Hi-Z Reset X X X X VIL Hi-Z Hi-Z |
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