m36p0r8070e0 STMicroelectronics, m36p0r8070e0 Datasheet - Page 9

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m36p0r8070e0

Manufacturer Part Number
m36p0r8070e0
Description
256 Mbit X16, Multiple Bank, Multilevel, Burst Flash Memory 128 Mbit Burst Psram, 1.8 V Supply, Multichip Package
Manufacturer
STMicroelectronics
Datasheet

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M36P0R8070E0
2
2.1
2.2
2.3
2.4
Signal descriptions
See
connected to this device.
Address inputs (A0-A23)
Addresses A0-A22 are common inputs for the Flash memory and PSRAM components.
Address A23 is an input for the Flash memory component only. The address inputs select
the cells in the Flash memory array to access during bus read operations. During bus write
operations they control the commands sent to the command interface of the Flash memory’s
Program/Erase Controller.
In the PSRAM the address inputs select the cells in the memory array to access during bus
read and write operations.
Data input/output (DQ0-DQ15)
The data I/O output the data stored at the selected address during a bus read operation or
input a command or the data to be programmed during a bus write operation.
For the PSRAM component, the Upper Byte Data Inputs/Outputs (DQ8-DQ15) carry the
data to or from the upper part of the selected address when Upper Byte Enable (UB
driven Low. The Lower Byte Data Inputs/Outputs (DQ0-DQ7) carry the data to or from the
lower part of the selected address when Lower Byte Enable (LB
UB
Latch Enable (L)
The Latch Enable pin is common to the Flash memory and PSRAM components.
For more details about the Latch Enable signal, please refer to the datasheets of the
respective memory components: M69KB128AA for the PSRAM and M58PR256J for the
Flash memory.
Clock (K)
The Clock input pin is common to the Flash memory and PSRAM components.
For more details about the Clock signal, please refer to the datasheets of the respective
memory components: M69KB128AA for the PSRAM and M58PR256J for the Flash
memory.
P
Figure 1: Logic diagram
and LB
P
are disabled, the data inputs/ outputs are high impedance.
and
Table 1: Signal names
for a brief overview of the signals
P
) is driven Low. When both
Signal descriptions
P
) is
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