OKI MSM531632F

Semiconductor
MSM531632F
1,048,576-Word x 16-Bit or 2,097,152-Word x 8-Bit MASKROM
DESCRIPTION
The OKI MSM531632F is a high-speed CMOS Mask ROM that can electrically switch
between 1,048,576-word x 16-bit or 2,097,152-word x 8-bit configurations. The MSM531622E
operates on a single 5.0V power supply and is TTL compatible. The chip's asynchronous I/O
requires no external clock assuring easy operation.A power-down mode provides low power
dissipation when the chip is not selected. The CE and OE pins are provided as control
signals that permit three-stated output allowing easy memory expansion on a system bus.The
MSM531622F is suited for use as large capacity fixed memory for microcomputers and data
terminals.
FEATURES
3.0V or 3.3V single power supply
1,048,576-word x 16-bit / 2,097,152-word x 8-bit
Access Time—Current Consumption
150ns—20mA (When power supply is 3.0V±0.3V)
120ns—30mA (When power supply is 3.3V±0.3V)
Tri-state output configurations
Internal powerdown function
Package:
(DIP42-P-600)
(MSM531632E-xxRS)
42-PIN PLASTIC DIP
44-PIN PLASTIC SOP (SOP44-P-600-K) (MSM531632E-xxGS-K)
48-PIN PLASTIC TSOP (TSOP48-P-550-K) (MSM531632E-xxTS-K)
16MEPROM (42-PIN) pin compatible
1
MSM531632F
PIN CONFIGURATION
NC 1
44 NC
NC 1
48 NC
NC 2
47 NC
NC 3
46 NC
A18 1
42 A19
A18 2
43 A19
A18 4
45 A19
A17 2
41 A8
A17 3
42 A8
A17 5
44 A8
A7 3
40 A9
A7 4
41 A9
A7 6
43 A9
A6 7
42 A10
A6 4
39 A10
A6 5
40 A10
A5 5
38 A11
A5 6
37 A12
A4 7
A5 8
A4 9
41 A11
A4 6
39 A11
38 A12
A3 7
A2 8
36 A13
35 A14
A3 8
A2 9
37 A13
A3 10
36 A14
A2 11
39 A13
38 A14
A1 9
34 A15
A1 10
35 A15
A1 12
37 A15
40 A12
A0 10
33 A16
A0 11
34 A16
A0 13
36 A16
CE 11
32 BYTE
CE 12
33 BYTE
CE 14
35 BYTE
VSS 12
31 VSS
VSS 13
32 VSS
VSS 15
34 VSS
OE 13
30 D15/A-1 OE 14
31 D15/A-1 OE 16
D0 14
29 D7
D0 15
28 D14
D8 16
30 D7
29 D14
D0 17
D8 18
32 D7
D8 15
D1 16
D9 17
27 D6
26 D13
D1 17
D9 18
28 D6
D1 19
27 D13
D9 20
30 D6
29 D13
D2 18
25 D5
D2 19
26 D5
D2 21
28 D5
D10 19
24 D12
D10 20
25 D12
D10 22
27 D12
D3 20
23 D4
D3 21
24 D4
D3 23
26 D4
D11 21
22 VCC
D11 22
23 VCC
D11 24
25 VCC
42 PIN DIP
44 PIN SOP
Pin Name
D15/A-1
31 D14
48 PIN TSOP
Function
Data output / address input
A0 to A19
Address input
D0 to D15
Data output
CE
Chip enable
OE
Output enable
BYTE
VCC, VSS
Mode switch
Power supply
NC
33 D15/A-1
No Connect
2
MSM531632Fl
BLOCK DIAGRAM
VCC VSS
A-1
BYTE
Output Switching Between 8 and 16 bits
CE
CE
A0
A1
A2
A3
A4
A5
A6
A7
A8
A9
A10
A11
A12
A13
A14
A15
A16
A17
A18
A19
OE
OE
Control
Memory Cell
Matrix
1,048,576-Word x 16 or 2,097,152 x 8
X
Decoder
Address
Buffer
Multiplexer
Y
Decoder
Output Buffer
D0
D2
D1
D4
D3
D6
D5
D8
D7
D10 D12 D14
D9 D11 D13 D15
FUNCTION TABLE
CE
3
OE
BYTE
A-1/D15
D0 to D7
D8 to D15
H
X
X
X
Hi-Z
Hi-Z
L
H
X
X
Hi-Z
Hi-Z
L
L
H
Input Inhibited (D15)
D0 to D7
D8 to D15
L
L
L
L
D0 to D7
Hi-Z
L
L
L
H
D8 to D15
Hi-Z
DOUT Mode
LSB
MSB
Hi-Z
—
—
16 bit
A0
A19
8 bit
A-1
A19
MSM531632F
ELECTRICAL CHARACTERISTICS
Absolute Maximum Ratings
Parameter
Power Supply Voltage
Input Voltage
Symbol
VCC
Conditions
VI
to VSS
Output Voltage
VO
Power Dissipation
Operating Temperature
PD
Topr
Storage Temperature
Tstg
Limits
Unit
–0.3 to 7
–0.3 to VCC + 0.5
V
V
–0.3 to VCC + 0.5
V
1.0
W
Per Package Topr = 25°C
0 to 70
°C
–55 to 150
°C
Recommended Operating Conditions (V CC=3.0V)
Parameter
Power Supply Voltage
Symbol
Conditions
Limits
Unit
Min.
Typ.
Max.
3.3
V
VCC
—
2.7
3.0
VSS
—
—
0.0
0.0
0.0
V
3.0
6.0
V
—
2.0
–0.3
0.0
0.8
V
—
0
—
70
°C
"H" Input Voltage
VIH
"L" Input Voltage
Operating Temperature
VIL
Topr
Recommended Operating Conditions (V CC=3.3V)
Parameter
Symbol
Conditions
Limits
Min.
Typ.
Max.
Unit
VCC
—
3.0
3.3
3.6
V
VSS
—
0.0
0.0
0.0
V
"H" Input Voltage
VIH
—
3.3
6.0
V
"L" Input Voltage
VIL
Topr
—
2.0
–0.3
0.0
0.6
V
—
0
—
70
°C
Power Supply Voltage
Operating Temperature
4
MSM531632F
DC CHARACTERISTICS (V CC=3.0V±0.3V)
(Ta = 0 to 70°C)
Parameter
Symbol
Limits
Conditions
Typ.
—
Max.
—
VOH1
IOH = –100uA
VOH2
IOH = –400uA
VCC – 0.4
—
—
V
VOL1
IOL = 100uA
—
—
0.1
V
VOL2
IOI = 1.0mA
—
—
0.4
Input Leakage Current
ILI
–10
—
10
V
uA
Output Leakage Current
ILO
VI = 0 to VCC
VO = 0 to VCC
CE = VIH MIN
–10
—
10
uA
Power Supply Current
(Operating)
ICC
CE = VIL,OE = VIH,tC = 150ns
—
—
20
mA
ICCSC
CE = VCC–0.2V
—
—
10
uA
ICCST
CE = VIH MIN
—
—
50
uA
"H" Output Voltage
"L" Output Voltage
Power Supply Current
(Standby)
l DC CHARACTERISTICS (V CC=3.3V±0.3V)
Parameter
"H" Output Voltage
"L" Output Voltage
Symbol
Conditions
VOH1
V
(Ta = 0 to 70°C)
Limits
Unit
IOH = –100µA
Min.
VCC – 0.1
Typ.
—
Max.
—
VOH2
IOH = –400µA
VCC – 0.4
V
IOL = 100µA
—
—
—
—
VOL1
0.1
V
V
VOL2
IOI = 1.0mA
—
—
0.4
Input Leakage Current
ILI
VI = 0 to VCC
–10
—
10
V
µA
Output Leakage Current
ILO
VO = 0 to VCC
CE = VIH MIN
–10
—
10
µA
Power Supply Current
(Operating)
ICC
CE = VIL,OE = VIH,tC = 120ns
—
—
30
mA
ICCSC
CE = VCC–0.2V
—
—
10
ICCST
CE = VIH MIN
—
—
50
µA
µA
Power Supply Current
(Standby)
5
Unit
Min.
VCC – 0.1
MSM531632F
AC CHARACTERISTICS
Timing conditions
Parameter
Transtion Time
Conditions
VIH=3.0V, VIL=0.0V
tr=tf=5ns
Timing Reference Level
Input Voltage=1.5V
Output Voltage=0.8V&2.0V
Load Condition
CL=50pF
Input Signal Level
Read Cycle (Vcc=3.0V±0.3V)
(Ta = 0 to 70°C)
Parameter
Symbol
Conditions
tC
Address Access time
tACC
CE Access time
Rated Value
Unit
Min.
Typ.
—
150
—
—
ns
—
—
—
150
ns
tCE
—
—
—
150
ns
OE Access time
tOE
—
—
—
80
ns
CE Output Disable time
tCHZ
—
0
—
70
ns
OE Output Disable time
tOHZ
—
0
—
60
ns
Output Hold time
tOH
—
0
—
—
ns
Cycle time
Max.
Read Cycle (Vcc=3.3V±0.3V)
(Ta = 0 to 70°C)
Parameter
Symbol
Conditions
Value
Min.
Typ.
Max.
Unit
tC
—
120
—
—
ns
Address Access time
tACC
—
—
—
120
ns
CE Access time
tCE
—
—
—
120
ns
OE Access time
tOE
—
—
—
70
ns
CE Output Disable time
tCHZ
—
0
—
60
ns
OE Output Disable time
tOHZ
—
0
—
50
ns
Output Hold time
tOH
—
0
—
—
ns
Cycle time
6
MSM531632F
Read Cycle (Note 1)
tC
Address
tACC
tOH
OE
tOHZ
(Note 3)
tOE
DOUT
Read Cycle (Note 2)
tC
CE
tCHZ
tCE
(Note 3)
OE
tOE
DOUT
Note )
1. CE is low level.
2. Address is fixed before or at the same time when CE level falls.
3. tCHZ & tOHZ indicate the time until floating. They are not determined by the output level.
l I/O CAPACITANCE
Parameter
Symbol
Conditions
Rated Value
Input Capacitance
CI
VI=0V
Min.
—
Output Capacitance
CO
VO=0V
—
7
Unit
Typ.
—
Max.
8
pF
—
10
pF
Semiconductor
NOTICE
The information contained herein can change without notice owing to product and/or technical improvements. Before using the product, please make sure that the information being referred to is up-todate.
The outline of action and examples for application circuits described herein have been chosen as an
explanation for the standard action and performance of the product. When planning to use the product,
please ensure that the external conditions are reflected in the actual circuit, assembly, and program
designs.
When designing your product, please use our product below the specified maximum ratings and within
the specified operating ranges including, but not limited to, operating voltage, power dissipation, and
operating temperature.
Oki assumes no responsibility or liability whatsoever for any failure or unusual or unexpected operation resulting from misuse, neglect, improper installation, repair, alteration or accident, improper handling, or unusual physical or electrical stress including, but not limited to, exposure to parameters beyond the specified maximum ratings or operation outside the specified operating range.
Neither indemnity against nor license of a third party’s industrial and intellectual property right, etc. is
granted by us in connection with the use of the product and/or the information and drawings contained
herein. No responsibility is assumed by us for any infringement of a third party’s right which may result
from the use thereof.
The products listed in this document are intended for use in general electronics equipment for commercial applications (e.g., office automation, communication equipment, measurement equipment, consumer
electronics, etc.). These products are not authorized for use in any system orapplication that requires
special or enhanced quality and reliability characteristics nor in any system or application where the
failure of such system or application may result in the loss or damage of property, or death or injury to
humans. Such applications include, but are not limited to, traffic and automotive equipment, safety devices, aerospace equipment, nuclear power control, medical equipment, and life-support systems.
Certain products in this document may need government approval before they can be exported to particular countries. The purchaser assumes the responsibility of determining the legality of export of these
products and will take appropriate and necessary steps at their own expense for these.
No part of the contents cotained herein may be reprinted or reproduced without our prior permission.
All brand, company and product names are the trademarks or registered trademarks of their respective
owners.
Copyright 1998 Oki Electric Industry Co., Ltd.
ADDRESSES & SEMICONDUCTOR WEB SITES
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Ltd.,
Device Business Group,
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Minato-ku, Tokyo 108, Japan,
Tel.: +81-(0)3-5445-6327,
Fax.: +81-(0)3-5445-6328,
http://www.oki.co.jp/OKI/DBG/english/index.htm
(NOTE: URL is case sensitive)
OKI Semiconductor Group
Group,
785 North Mary Avenue,
Sunnyvale, CA 94086, U.S.A.,
Tel.: +1-408-720-1900,
Fax.: +1-408-720-1918,
http://www.okisemi.com/
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GmbH,
Head Office Europe,
Hellersbergstrasse 2,
D-41460 Neuss, Germany,
Tel: +49-2131-15960,
Fax: +49-2131-103539,
http://www.oki-europe.de/
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Ltd.,
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China Hong Kong City,
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Kowloon, Hong Kong,
Tel.: +852-2-736-2336,
Fax.: +852-2-736-2395
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Ltd.,
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Ltd.,
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