JS28F512P33BFD Micron Technology Inc, JS28F512P33BFD Datasheet - Page 17

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JS28F512P33BFD

Manufacturer Part Number
JS28F512P33BFD
Description
Manufacturer
Micron Technology Inc
Datasheet

Specifications of JS28F512P33BFD

Cell Type
NOR
Density
512Mb
Access Time (max)
105/17ns
Interface Type
Parallel/Serial
Boot Type
Bottom
Address Bus
25b
Operating Supply Voltage (typ)
2.5/3.3V
Operating Temp Range
-40C to 85C
Package Type
TSOP
Program/erase Volt (typ)
8.5 to 9.5V
Sync/async
Async/Sync
Operating Temperature Classification
Industrial
Operating Supply Voltage (min)
2.3V
Operating Supply Voltage (max)
3.6V
Word Size
16b
Number Of Words
32M
Supply Current
31mA
Mounting
Surface Mount
Pin Count
56
Lead Free Status / RoHS Status
Supplier Unconfirmed

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P33-65nm
Note:
5.3
5.4
Note:
Datasheet
19
In asynchronous page mode, sixteen data words are “sensed” simultaneously from the
flash memory array and loaded into an internal page buffer. The buffer word
corresponding to the initial address on the address bus is driven onto DQ[15:0] after
the initial access delay. The lowest four address bits determine which word of the
16-word page is output from the data buffer at any given time.
Refer to
for more detailed information.
If only asynchronous reads are to be performed, CLK should be tied to a valid V
WAIT signal can be floated and ADV# must be tied to ground.
Read - Synchronous Mode (Easy BGA)
To perform a synchronous burst read on array or non-array, an initial address is driven
onto the address bus, and CE# is asserted. WE# and RST# must already have been
deasserted. ADV# is asserted, and then deasserted to latch the address. Alternately,
ADV# can remain asserted throughout the burst access, in which case the address is
latched on the next valid CLK edge while ADV# is asserted. Once OE# is asserted, the
the first word is driven onto DQ[15:0] on the next valid CLK edge after initial access
latency delay (see
Subsequent data is output on valid CLK edges following a minimum delay t
Table 25, “AC Read Specifications -” on page
However, for a synchronous non-array read, the same word of data will be output on
successive clock edges until the burst length requirements are satisfied.
The WAIT signal indicates data valid when the device is operating in synchronous mode
(RCR.15=0). The WAIT signal is only “deasserted” when data is valid on the bus. When
the device is operating in synchronous non-array read mode, such as read status, read
ID, or read query, the WAIT signal is also “deasserted” when data is valid on the bus.
WAIT behavior during synchronous non-array reads at the end of word line works
correctly only on the first data access.
Refer to the following waveforms for more detailed information:
“Synchronous Single-Word Array or Non-array Read Timing for Easy BGA” on page
and
on page
BGA” on page
Write
To perform a write operation, both CE# and WE# are asserted while RST# and OE# are
deasserted. During a write operation, address and data are latched on the rising edge
of WE# or CE#, whichever occurs first.
shows the bus cycle sequence for each of the supported device commands, while
Table 6, “Command Codes and Definitions” on page 21
Table 26, “AC Write Specifications” on page 57
When the device is operating in write operations, WAIT is set to a deasserted state as
determined by RCR.10.
Write operations with invalid VCC and/or VPP voltages can produce spurious results and
should not be attempted.
Figure 22, “Continuous Burst Read, showing an Output Delay Timing for Easy BGA”
Figure 20, “Asynchronous Page-Mode Read Timing for Easy BGA” on page 55
56, and
57.
Figure 23, “Synchronous Burst-Mode Four-Word Read Timing for Easy
Section 11.2.2, “Latency Count (RCR[14:11])” on page
Table 7, “Command Bus Cycles” on page 23
53).
for signal-timing details.
describes each command. See
Figure 21,
Order Number:208043-05
38).
CHQV
IH
Apr 2010
(see
level,
56,

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