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MX29LV320MH 데이터 시트보기 (PDF) - Macronix International

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MX29LV320MH Datasheet PDF : 66 Pages
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MX29LV320M H/L
Table 1. BUS OPERATION (1)
Q8~Q15
Operation
CE# OE# WE# RE- WP# ACC
Address
Q0~Q7 Word Byte
SET#
Mode Mode
Read
L LHH
X
X
AIN
DOUT
DOUT Q8-Q14=
High Z
Q15=A-1
Write (Program/Erase) L H L H (Note 3) X
AIN
(Note 4) (Note 4 Q8-Q14=
High Z
Q15=A-1
Accelerated Program L H L H (Note 3) VHH
AIN
(Note 4) (Note 4) Q8-Q14=
High Z
Q15=A-1
Standby
VCC± X X VCC± X
H
X
High-Z High-Z High-Z
0.3V
0.3V
Output Disable
L HHH
X
X
X
High-Z High-Z High-Z
Reset
XXX L
X
X
X
High-Z High-Z High-Z
Sector Group Protect
L
H
L
VID
H
X Sector Addresses, (Note 4) X
X
(Note 2)
A6=L,A3=L, A2=L,
A1=H,A0=L
Chip unprotect
(Note 2)
L
H
L
VID
H
X Sector Addresses, (Note 4) X
X
A6=H, A3=L, A2=L,
A1=H, A0=L
Temporary Sector
Group Unprotect
X
X
X
VID
H
X
AIN
(Note 4) (Note 4) High-Z
Legend:
L=Logic LOW=VIL, H=Logic High=VIH, VID=12.0±0.5V, VHH=12.0±0.5V, X=Don't Care, AIN=Address IN, DIN=Data IN,
DOUT=Data OUT
Notes:
1. Address are A20:A0 in word mode; A20:A-1 in byte mode. Sector addresses are A20:A15 in both modes.
2. The sector group protect and chip unprotect functions may also be implemented via programming equipment. See
the "Sector Group Protection and Chip Unprotect" section.
3. If WP#=VIL, the first sectors remain protected. If WP#=VIH, the highest or lowest sector protection depends on
whether they were last protected or unprotect using the method described in "Sector/ Sector Block Protection and
Unprotect".
4. DIN or DOUT as required by command sequence, Data# polling or sector protect algorithm (see Figure 15).
P/N:PM1136
REV. 1.1, AUG. 11, 2005
8

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