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29PL256N 데이터시트(PDF) 21 Page - SPANSION |
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29PL256N 데이터시트(HTML) 21 Page - SPANSION |
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21 / 74 page ![]() June 6, 2007 S29PL-N_00_A5 S29PL-N MirrorBit ™ Flash Family 21 Da ta Shee t (Prelim i nar y ) 7.1.1 Dual Chip Enable Device Description and Operation (PL129N Only) The dual CE# product (PL129N) offers a reduced number of address pins to accommodate processors with a limited addressable range. This product operates as two separate devices in a single package and requires the processor to address half of the memory space with one chip enable and the remaining memory space with a second chip enable. For more details on the addressing features of the Dual CE# device refer to Table 6.3 on page 19 for the PL129N Sector and Memory Address Map. Dual chip enable products must be setup appropriately for each operation. To place the device into the active state either CE1# or CE2# must be set to VIL. To place the device in standby mode, both CE1# and CE2# must be set to VIH. Table 7.2 describes the required state of each control pin for any particular operation. Legend L = Logic Low = VIL H = Logic High = VIH VID = 11.5–12.5 V VHH = 8.5– 9.5V X = Don’t Care SA = Sector Address AIN = Address In DIN = Data In DOUT = Data Out Notes 1. The sector and sector unprotect functions may also be implemented by programming equipment. 2. WP#/ACC must be high when writing to the upper two and lower two sectors. 7.2 Asynchronous Read The internal state machine is set for reading array data upon device power-up, or after a hardware reset. This ensures that no spurious alteration of the memory content occurs during the power transition. No command is necessary in this mode to obtain array data. Standard microprocessor read cycles that assert valid addresses on the device address inputs produce valid data on the device data outputs. Each bank remains enabled for read access until the command register contents are altered. 7.2.1 Non-Page Random Read Address access time (tACC) is equal to the delay from stable addresses to valid output data. The chip enable access time (tCE) is the delay from the stable addresses and stable CE# to valid data at the output inputs. The output enable access time is the delay from the falling edge of the OE# to valid data at the output (assuming the addresses have been stable for at least tACC –tOE time). Table 7.2 Dual Chip Enable Device Operation Operation CE1# CE2# OE# WE# RESET# WP#/ACC Addresses (A21–A0) DQ15–DQ0 Read LH LH H X AIN DOUT HL Write LH HL H X (Note 2) AIN DIN HL Standby H H X X H X X High-Z Output Disable L L H H H X X High-Z Reset X X X X L X X High-Z Temporary Sector Unprotect (High Voltage) X XXX VID XAIN DIN |
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