524,288-Word x 16-Bit or 1,048,576-Word x 8-Bit
8-Word x 16-Bit or 16-Word x 8-Bit Page Mode One Time PROM
DESCRIPTION
The MR27V852D is a 8Mbit electrically Programmable Read-Only Memory with page mode. Its
configuration can be electrically switched between 524,288 word x 16bit and 1,048,576 word x 8bit.
The MR27V852D operates on a single +3.3V power supply and is TTL compatible. The MR27V852D
provides Page mode which can greatly reduce the read access time. Since the MR27V852D
operates asynchronously , external clocks are not required , making this device easy-to-use. The
MR27V852D is suitable as large-capacity fixed memory for microcomputers and data terminals. It is
manufactured using a CMOS double silicon gate technology and is offered in 42-pin DIP , 44-pin
SOP or 44-pin TSOP packages.
FEATURES
• 524,288 word x 16bit / 1,048,576 word x 8bit electrically switchable configuration
• Single +3.3V power supply
• Access time 80ns
Page mode access time 30ns
• Input / Output TTL compatible
• Three-state output
• Packages
42-pin plastic DIP (DIP42-P-600-2.54) (Product name : MR27V852DRA)
44-pin plastic SOP (SOP44-P-600-1.27-K) (Product name : MR27V852DMA)
44-pin plastic TSOP (TSOP II 44-P-400-0.80-K) (Product name : MR27V852DTP)
Input "H" level
Input "L" level
Output "H" level
Output "L" level
Program voltage
V
power supply voltage
CC
Voltage is relative to Vss
AC Characteristics
Parameter
Address set-up time
OE set-up time
Data set-up time
Address hold time
Data hold time
Output float delay from OE
voltage set-up time
V
PP
Program pulse width
Data valid from OE
Symbol
I
LI
I
PP2
I
CC
V
IH
V
IL
V
OH
V
OL
V
PP
V
CC
Symbol
T
AS
T
OES
T
DS
T
AH
T
DH
T
OHZ
T
VS
T
PW
T
OE
T
AHO
Condition
V
I=VCC
CE=V
=2.1mA
I
OL
(Vcc=4.0V
Condition
+0.5V
IL
-
-
-
-
-
-
-
-
-
-
-
Min.Max.
-
-
-
3.0
-0.5
2.4
-
3.9
±0.1V,V
Min.Max.
100
2
100
2
100ns
0
2
-
0
MR27V852D
(Ta=25°C±5°C)
Typ.
-
-
--
-
-
-
-
9.75
4.0
=9.75V±0.25V,Ta=25°C±5°C)
pp
10
50
80
VCC+0.5
0.8
-
0.45
10.09.5
4.1
Typ.
-
-
--
-
-
-
-
-
-
-
100
-
10
--
--
-
119
100
-
Unit
µA
mA
mA
V
V
VIOH=-400µA
V
V
V
Unit
ns
µs
ns
µs
ns-
µs
µs
ns
nsAddress hold from OE high
Pin Check Function
Pin Check Function is to check contact between each device-pin and each socket-lead with EPROM
programmer.
Setting up address as the following condition call the preprogrammed codes on device outputs.
(Vcc=3.3V
A0
A1
A2 A3
A4
A5 A6
A7
A8 A9
010101010VH* 0
1
1
0
0
0101 VH*
1
Other conditions
±0.3V,CE=OE=V
A11 A12
A10
1
01010110
1
,BYTE/Vpp=V
IL
A14 A15
A13
,Ta=25°C±5°C)
IH
A17
A16
A18
0101001
* :VH=8V
DATA
FF00
00FF
FFFF
±0.25V
7/10
Consecutive Programming Waveforms
A0 - A18
MR27V852D
t
AS
t
PW
CE
High
OE
t
DS
D0 - D15
t
VS
BYTE/V
PP
Consecutive Program Verify Waveforms
DinDin
t
t
AH
DH
A0 - A18
CE
OE
D0 - D15
BYTE/V
PP
t
ACC
High
t
AHO
t
OE
Dout
t
OHZ
Dout
9.75V
8/10
Program and Program Verify Cycle Waveforms
A0 - A18
MR27V852D
CE
OE
D0 - D15
BYTE/V
PP
t
OHZ
t
AS
t
PW
t
OES
t
DS
t
DH
Din
t
OE
Dout
t
AHO
t
OHZ
9.75V
PIN Capacitance
Parameter
Input
BYTE/V
PP
Output
( ) : DIP only
Symbol
C
IN1
C
IN2
C
OUT
Condition
V
=0V
I
V
=0V
O
(VCC=3.3V, Ta=25°C, f=1MHz)
Min.Max.
-
--
--
Typ.
-
8 (10)
120
10 (12)
Unit
9/10
pF
Programming / Verify Flow Chart
MR27V852D
Programming
Bad insertion
Start
NO
Pin Check
Address = First location
VCC=4.0V
VPP=9.75V
Program 10µs
NO
Last Address ?Increment Address
YES
OK
Verify
Start
Pin Check
OK
Address = First location
VCC=3.0V
V
=3.0V
PP
Verify (One Byte)
PASS
=3.6V
V
CC
VPP=3.6V
Verify (One Byte)
NO
Bad insertion
NG
NG
Increment Address
Address = First location
X=0
Verify (One Byte)
PASS
NO
Last Address ?
YES
VCC=3.0V
V
=3.0V
PP
Verify (One Byte)
PASS
PASS
Device PassedDevice Failed
NG
X=X+1
YES
X=2?
NO
Program 10µs
NG
Device Passed
Device Failed
10/10
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