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IS25LP064A-RHLA2 数据表(PDF) 28 Page - Integrated Silicon Solution, Inc

部件名 IS25LP064A-RHLA2
功能描述  3V SERIAL FLASH MEMORY WITH 133MHZ MULTI I/O SPI & QUAD I/O QPI DTR INTERFACE
PDF  99 Pages
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制造商  ISSI [Integrated Silicon Solution, Inc]
网页  http://www.issi.com
标志 ISSI - Integrated Silicon Solution, Inc

IS25LP064A-RHLA2 数据表(HTML) 28 Page - Integrated Silicon Solution, Inc

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IS25LP064A/032A
Integrated Silicon Solution, Inc.- www.issi.com
28
Rev. A
11/06/2015
8.3 HOLD OPERATION
HOLD# is used in conjunction with CE# to select the IS25LP064A/032A. When the device is selected and a
serial sequence is underway, HOLD# can be used to pause the serial communication with the master device
without resetting the serial sequence. To pause, HOLD# is brought low while the SCK signal is low. To resume
serial communication, HOLD# is brought high while the SCK signal is low (SCK may still toggle during HOLD).
Inputs to SI will be ignored while SO is in the high impedance state, during HOLD.
Note: HOLD is not supported in DTR mode or with QE=1 or for the specific parts that do not have HOLD# pin.
Timing graph can be referenced in AC Parameters Figure 9.4
8.4 FAST READ DUAL I/O OPERATION (FRDIO, BBh)
The FRDIO allows the address bits to be input two bits at a time. This may allow for code to be executed directly
from the SPI in some applications.
The FRDIO instruction code is followed by three address bytes (A23
– A0) and dummy cycles (configurable,
default is 4 clocks), transmitted via the IO1 and IO0 lines, with each pair of bits latched-in during the rising edge
of SCK. The address MSB is input on IO1, the next bit on IO0, and this shift pattern continues to alternate
between the two lines. Depending on the usage of AX read operation mode, a mode byte may be located after
address input.
The first data byte addressed is shifted out on the IO1 and IO0 lines, with each pair of bits shifted out at a
maximum frequency fCT, during the falling edge of SCK. The MSB is output on IO1, while simultaneously the
second bit is output on IO0. Figure 8.4 illustrates the timing sequence.
The first byte addressed can be at any memory location. The address is automatically incremented by one after
each byte of data is shifted out. When the highest address is reached, the address counter will roll over to the
000000h address, allowing the entire memory to be read with a single FRDIO instruction. FRDIO instruction is
terminated by driving CE# high (VIH).
The device supports the AX read operation by applying mode bits during dummy period. Mode bits consist of 8
bits, such as M7 to M0. Four cycles after address input are reserved for Mode bits in FRDIO execution. M7 to
M4 are important for enabling this mode.
M3 to M0 become don’t care for future use. When M[7:4]=1010(Ah), it
enables the AX read operation and subsequent FRDIO execution skips command code. It saves cycles as
described in Figure 8.5. 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. SPI or QPI
mode configuration retains the prior setting. Mode bit must be applied during dummy cycles. Number of dummy
cycle in Table 6.10 includes number of mode bit cycles. If dummy cycles is configured as 4 cycles, data output
will starts right after mode bit applied.
If the FRDIO instruction is issued while an Erase, Program or Write cycle is in process (WIP=1) the instruction is
ignored and will not affect the current cycle.



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