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IS25LP256D-RLLA3 Datasheet(PDF) 118 Page - Integrated Silicon Solution, Inc

Part # IS25LP256D-RLLA3
Description  SERIAL FLASH MEMORY WITH 166/133MHZ MULTI I/O SPI & QUAD I/O QPI DTR INTERFACE
PDF  174 Pages
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Manufacturer  ISSI [Integrated Silicon Solution, Inc]
Direct Link  http://www.issi.com
Logo ISSI - Integrated Silicon Solution, Inc

IS25LP256D-RLLA3 Datasheet(HTML) 118 Page - Integrated Silicon Solution, Inc

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IS25LP256D
IS25WP256D
Integrated Silicon Solution, Inc.- www.issi.com
118
Rev A6
04/15/2019
8.43 FAST READ DUAL IO DTR MODE OPERATION (FRDDTR, BDh or 4FRDDTR, BEh)
The FRDDTR/4FRDDTR instruction enables Double Transfer Rate throughput on dual I/O of the device in read
mode. The address (interleave on dual I/O pins) is latched on both rising and falling edge of SCK, and the data
(interleave on dual I/O pins) shift out on both rising and falling edge of SCK at a maximum frequency. The 4-bit
address can be latched-in at one clock, and 4-bit data can be read out at one clock, which means two bits at the
rising edge of clock, the other two bits at the falling edge of clock.
The first address byte can be at any location. The address is automatically increased to the next higher address
after each byte of data is shifted out, so the whole memory can be read out with a single FRDDTR/4FRDDTR
instruction. The address counter rolls over to 0 when the highest address is reached. Once writing
FRDDTR/4FRDDTR instruction, the following address/dummy/data out will perform as 4-bit instead of previous 1-
bit.
 BDh (EXTADD=0) is followed by a 3-byte address (A23-A0) or
 BDh (EXTADD=1) is followed by a 4-byte address (A31-A0) or
 BEh is followed by a 4-byte address (A31-A0)
The sequence of issuing FRDDTR/4FRDDTR instruction is: CE# goes low  Sending FRDDTR/4FRDDTR
instruction (1-bit per clock)  24-bit or 32-bit address interleave on IO1 & IO0 (4-bit per clock) as above  4 dummy
clocks (configurable, default is 4 clocks) on IO1 & IO0  Data out interleave on IO1 & IO0 (4-bit per clock)  End
FRDDTR/4FRDDTR operation via pulling CE# high at any time during data out (Please refer to Figures 8.86 and
8.87 for 2 x I/O Double Transfer Rate Read Mode Timing Waveform).
If AXh (where X is don’t care) is input for the mode bits during dummy cycles, the device will enter AX read operation
mode which enables subsequent FRDDTR/4FRDDTR execution skips command code. It saves cycles as
described in Figures 8.88 and 8.89. When the code is different from AXh (where X is
don’t care), the device exits
the AX read operation. After finishing the read operation, device becomes ready to receive a new command.
If the FRDDTR/4FRDDTR instruction is issued while an Erase, Program or Write cycle is in process is in progress
(WIP=1), the instruction will be rejected without any effect on the current cycle.



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