SRM2AV400LLBT
8
Rev.1.16
● Reading data
(1) Reading data from byte
Data is able to be read when the address is set while holding CS1 = "Low",CS2= "High", OE ="Low",
and WE = "High".
Since I/O pins are in "Hi-Z" state when OE = "High", the data bus line can be used for any other objective, then
access time is apparently able to be cut down.
● Writing data
(1)Writing data into byte
There are the following three ways of writing data into the memory.
i) Hold CS2 = "High", WE = "Low", set address and give "Low" pulse to CS1.
ii) Hold CS1 = "Low", WE = "Low", set address and give "High" pulse to CS2.
iii) Hold CS1 = "Low", CS2 = "High", set address and give "Low" pulse to WE.
Anyway, data on I/Opins are latched up into the memory cell during CS1 = "Low" , CS2 ="High" , and WE = "Low".
As DATA I/O pins are in "Hi-Z" when CS1= "High", CS2 = "Low", or OE= "High", the contention on the data bus
can be avoided. But while I/O pins are in the output state, the data that is opposite to the output data should not
be given.
● Standby mode
When CS1 is "High" or CS2 is "Low" the chip is in the standby mode (only retaining data operation). In this case
data I/O pins are Hi-Z, and all inputs of addresses, WE, OE, and data are inhibited. When
CS1 = CS2 ≥ VDD - 0.2V or CS2 ≤ 0.2V, there is almost no current flow except through the high resistance parts
of the memory.
● Data retention at low voltage
In case of the data retention in the stadby mode, the power supply can be gone down till the specified voltage.
But it is impossible to write or read in this mode.
■ FUNCTIONS
● Truth Table
CS1 OE X
X
H
L
H
WE I/O1 to 8 I
DD
MODE
High-Z
High-Z
High-Z
Data In
Data Out
X : High or Low
CS2
X
L
H
H
H
H
X
L
L
L
X
X
H
X
L
Not Selected
Not Selected
Output disable
Byte Write
Byte Read
I
DDS,
I
DDS1
I
DDS,
I
DDS1
I
DDA,
I
DDA1
I
DDA,
I
DDA1
I
DDA,
I
DDA1
Data retention timing (CS2 Control)
V
DD
CS2
tCDR tR
V
DDR
≥ 1.2V
CS2 ≤ 0.2V
2.2V2.2V
Data hold time
0.3 0.3
VIH VIH
Data retention timing (CS1 Control)
VDD
CS1
t
CDR
t
R
VDDR ≥ 1.2V
CS1 ≥VDD – 0.2V
2.2V2.2V
Data hold time
VIL VIL
0.8xVDD 0.8xVDD