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  Semiconductor
MR27V402D
262,144-Word x 16-Bit or 524,288-Word x 8-Bit One Time PROM
DESCRIPTION
1A
The MR27V402D is a 4Mbit electrically Programmable Read-Only Memory whose configuration can be electrically switched between 262,144 word x 16bit and 524,288 word x 8bit. The MR27V402D operates on a single +3V-3.3V power supply and is TTL compatible. Since the MR27V402D operates asynchronously , external clocks are not required , making this device easy-to-use. The MR27V402D 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 40-pin DIP, 40-pin SOP or 44-pin TSOP packages.
FEATURES
* 262,144 word x 16bit / 524,288 word x 8bit electrically switchable configuration * Single +3V-3.3V power supply * Access time 100ns access time (Vcc=+3V) 80ns access time (Vcc=+3.3V) * Input / Output TTL compatible * Three-state output * Packages 40-pin plastic DIP (DIP40-P-600-2.54) (Product name : MR27V402DRP) 40-pin plastic SOP (SOP40-P-525-1.27-K) (Product name : MR27V402DMP) 44-pin plastic TSOP (TSOP II 44-P-400-0.80-K) (Product name : MR27V402DTP)
November 1999
1/11
MR27V402D
PIN CONFIGURATION (TOP VIEW)
NC 1 NC 2 A17 1 A7 2 A6 3 A5 4 A4 5 A3 6 A2 7 A1 8 A0 9 CE 10 VSS 11 OE 12 D0 13 D8 14 D1 15 D9 16 D2 17 D10 18 D3 19 D11 20 40 A8 39 A9 38 A10 37 A11 36 A12 35 A13 34 A14 33 A15 32 A16 31 BYTE/Vpp 30 VSS 29 D15/A-1 28 D7 27 D14 26 D6 25 D13 24 D5 23 D12 22 D4 21 VCC A17 3 A7 4 A6 5 A5 6 A4 7 A3 8 A2 9 A1 10 A0 11 CE 12 VSS 13 OE 14 D0 15 D8 16 D1 17 D9 18 D2 19 D10 20 D3 21 D11 22
44 NC 43 NC 42 A8 41 A9 40 A10 39 A11 38 A12 37 A13 36 A14 35 A15 34 A16 33 BYTE/Vpp 32 VSS 31 D15/A-1 30 D7 29 D14 28 D6 27 D13 26 D5 25 D12 24 D4 23 VCC
40-pin DIP , SOP
44-pin TSOP (II)
PIN NAMES D15/A-1 A0-A17 D0-D14 CE OE VCC VSS BYTE/VPP NC Address input Data output Chip enable Output enable
FUNCTIONS Data output / Address input
Power supply voltage GND Mode switch / Program power supply voltage Non connection
2/11
MR27V402D
BLOCK DIAGRAM
A-1
X8/X16 Switch
CE
OE
BYTE/VPP PGM
CE
OE
Column Decoder
A0 A1 A2 A3 A4 A5 A6 A7 A8 A9 A10 A11 A12 A13 A14 A15 A16 A17
Row Decoder
Memory Matrix
Address Buffer
262,144X16-Bit or 524,288X8-Bit
Multiplexer
Output Buffer
D0 D1
D2 D3
D4 D5
D6 D7
D8
D10 D9
D12
D14 D15
D11
D13
In 8-bit output mode, these pins are three-stated and pin D15 functions as the A-1 address pin.
FUNCTION TABLE
MODE READ (16-Bit) READ (8-Bit) OUTPUT DISABLE STAND-BY PROGRAM PROGRAM INHIBIT PROGRAM VERIFY *: Don't Care CE L L L H L H H OE BYTE/VPP L L H * H H L 9.75V 4.0V H L H L H L 3.0V to 3.3V DOUT VCC D0 - D7 D8 - D14 DOUT Hi-Z Hi-Z * Hi-Z * DIN Hi-Z DOUT D15/A-1 L/H
3/11
MR27V402D
ABSOLUTE MAXIMUM RATINGS
Parameter Operating temperature under bias Storage temperature Input voltage Output voltage Power supply voltage Program power supply voltage Power dissipation per package Symbol Topr Tstg VI VO VCC VPP PD relative to VSS Condition Value 0 to 70 -55 to 125 -0.5 to VCC+ 0.5 -0.5 to VCC +0.5 -0.5 to 5 -0.5 to 11.5 1.0 Unit
C C
V V V V W
RECOMMENDED OPERATING CONDITIONS
(Ta=0 to 70C) Parameter VCC power supply voltage VPP power supply voltage Input "H" level Input "L" level Voltage is relative to Vss * : Vcc+1.5V (Max.) when pulse width of overshoot is less than 10nS. ** : -1.5V (Min.) when pulse width of undershoot is less than 10nS. Symbol VCC VPP VIH VIL VCC=2.7V-3.6V Condition Min. 2.7 -0.5 2.2 -0.5** Typ. Max. 3.6 VCC+0.5 VCC+0.5* 0.6 Unit V V V V
4/11
MR27V402D
ELECTRICAL CHARACTERISTICS (Read operation)
DC Characteristics 1 (VCC=3V0.3V, Ta=0 to 70C) Parameter Input leakage current Output leakage current VCC power supply current (Standby) VCC power supply current (Read) VPP power supply current Input "H" level Input "L" level Output "H" level Output "L" level Voltage is relative to Vss * : Vcc+1.5V (Max.) when pulse width of overshoot is less than 10nS. ** : -1.5V (Min.) when pulse width of undershoot is less than 10nS. Symbol ILI ILO ICCSC ICCST ICCA IPP VIH VIL VOH VOL Condition VI=0 to Vcc VO=0 to Vcc CE=VCC CE=VIH CE=VIL,OE=VIH tc=100ns VPP=VCC IOH=-400uA IOL=2.1mA Min. 2.2 -0.5** 2.4 Typ. Max. 10 10 50 1 25 10 VCC+0.5* 0.6 0.4 Unit A A A mA mA A V V V V
DC Characteristics 2 (VCC=3.3V0.3V, Ta=0 to 70C) Parameter Input leakage current Output leakage current VCC power supply current (Standby) VCC power supply current (Read) VPP power supply current Input "H" level Input "L" level Output "H" level Output "L" level Voltage is relative to Vss * : Vcc+1.5V (Max.) when pulse width of overshoot is less than 10nS. ** : -1.5V (Min.) when pulse width of undershoot is less than 10nS. Symbol ILI ILO ICCSC ICCST ICCA IPP VIH VIL VOH VOL Condition VI=0 to Vcc VO=0 to Vcc CE=VCC CE=VIH CE=VIL,OE=VIH tc=80ns VPP=VCC IOH=-400uA IOL=2.1mA Min. 2.2 -0.5** 2.4 Typ. Max. 10 10 50 1 30 10 VCC+0.5* 0.6 0.4 Unit A A A mA mA A V V V V
5/11
MR27V402D
AC Characteristics 1 (VCC=3V0.3V, Ta=0 to 70C) Parameter Address cycle time Address access time CE access time OE access time Output disable time Output hold time Symbol TC TACC TCE TOE TCHZ TOHZ TOH Condition CE=OE=VIL OE=VIL CE=VIL OE=VIL CE=VIL CE=OE=VIL Min. 100 0 0 0 Max. 100 100 50 30 25 Unit ns ns ns ns ns ns ns
Measurement conditions Input signal level Input timing reference level Output load Output timing reference level
0V/3V 0.8V/2.0V 50pF 0.8V/2.0V
AC Characteristics 2 (VCC=3.3V0.3V, Ta=0 to 70C) Parameter Address cycle time Address access time CE access time OE access time Output disable time Output hold time Symbol TC TACC TCE TOE TCHZ TOHZ TOH Condition CE=OE=VIL OE=VIL CE=VIL OE=VIL CE=VIL CE=OE=VIL Min. 80 0 0 0 Max. 80 80 40 30 25 Unit ns ns ns ns ns ns ns
Measurement conditions Input signal level Input timing reference level Output load Output timing reference level
0V/3V 0.8V/2.0V 50pF 0.8V/2.0V 2.08V
800ohms Output 50pF
6/11
MR27V402D
TIMING CHART (READ CYCLE) 16-Bit Read Mode (BYTE=VIH) tC A0 - A17 tCE CE tOH
tOE OE tACC D0 - D15 Hi-Z
tCHZ
tOHZ Valid Data Hi-Z
8-Bit Read Mode (BYTE=VIL) tC A-1 - A17 tCE CE tOH
tOE OE tACC D0 - D7 Hi-Z
tCHZ
tOHZ Valid Data Hi-Z
D8 - D14
Hi-Z
7/11
MR27V402D
ELECTRICAL CHARACTERISTICS (Programming operation)
DC Characteristics (Ta=25C5C) Parameter Input leakage current VPP power supply current (Program) VCC power supply current Input "H" level Input "L" level Output "H" level Output "L" level Program voltage VCC power supply voltage Voltage is relative to Vss Symbol ILI IPP2 ICC VIH VIL VOH VOL VPP VCC Condition VI=VCC+0.5V CE=VIL IOH=-400A IOL=2.1mA Min. 3.0 -0.5 2.4 9.5 3.9 Typ. 9.75 4.0 Max. 10 50 50 VCC+0.5 0.8 0.45 10.0 4.1 Unit A mA mA V V V V V V
AC Characteristics (Vcc=4.0V0.1V,Vpp=9.75V0.25V,Ta=25C5C) Parameter Address set-up time OE set-up time Data set-up time Address hold time Data hold time Output float delay from OE VPP voltage set-up time Program pulse width Data valid from OE Address hold from OE high Symbol TAS TOES TDS TAH TDH TOHZ TVS TPW TOE TAHO Condition Min. 100 2 100 2 100 0 2 9 0 Typ. 10 Max. 100 11 100 Unit ns s ns s ns ns s s ns ns
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=3.3V0.3V,CE=OE=VIL,BYTE/Vpp=VIH,Ta=25C5C) A0 A1 A2 A3 A4 A5 A6 A7 A8 A9 A10 A11 A12 A13 A14 A15 A16 A17 DATA 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 VH* VH* 0 1 1 0 0 1 1 0 0 1 1 0 0 1 0 1 FF00 00FF FFFF * :VH=8V0.25V 8/11
Other conditions
MR27V402D
Consecutive Programming Waveforms
A0 - A17 tAS tPW CE tAH
High
OE tDS D0 - D15 tVS BYTE/VPP tDH
Din
Din
Consecutive Program Verify Waveforms
A0 - A17
High
CE tACC OE tOE D0 - D15 tOHZ tAHO
Dout 9.75V
Dout
BYTE/VPP
9/11
MR27V402D
Program and Program Verify Cycle Waveforms
A0 - A17 tAS tPW CE tOES OE tOHZ D0 - D15 tDS tDH tOE tOHZ tAHO
Din 9.75V
Dout
BYTE/VPP
PIN Capacitance (VCC=3.3V, Ta=25C, f=1MHz) Parameter Input BYTE/VPP Output ( ) : DIP only Symbol CIN1 CIN2 COUT Condition VI=0V VO=0V Min. Typ. Max. 8 (10) 60 10 (12) Unit pF
10/11
MR27V402D
Programming / Verify Flow Chart Programming Verify Start Start NO Pin Check NO Bad insertion Pin Check OK Address = First location VCC=3.0V VPP=3.0V NG OK Address = First location Bad insertion
VCC=4.0V
VPP=9.75V
Verify (One Byte) PASS VCC=3.6V VPP=3.6V
Program 10s
NO Increment Address Last Address ? YES Address = First location Verify (One Byte) PASS Device Passed X=0 Device Failed NG
NG Verify (One Byte) PASS NO Increment Address Last Address ? YES VCC=3.0V VPP=3.0V YES X=2? NO Program 10s X=X+1
NG Verify (One Byte) PASS Device Passed Device Failed 11/11


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