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PDF M27V322-150XP1 Data sheet ( Hoja de datos )

Número de pieza M27V322-150XP1
Descripción 32 Mbit 2Mb x16 Low Voltage UV EPROM and OTP EPROM
Fabricantes STMicroelectronics 
Logotipo STMicroelectronics Logotipo



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M27V322
32 Mbit (2Mb x16) Low Voltage UV EPROM and OTP EPROM
s 3.3V ± 10% SUPPLY VOLTAGE in READ
OPERATION
s READ ACCESS TIME
– 100ns at VCC = 3.0V to 3.6V
s PIN COMPATIBLE WITH M27C322
s WORD-WIDE CONFIGURABLE
s 32 Mbit MASK ROM REPLACEMENT
s LOW POWER CONSUMPTION
– Active Current 30mA at 5MHz
– Stand-by Current 60µA
s PROGRAMMING VOLTAGE: 12V ± 0.25V
s PROGRAMMING TIME: 50µs/word
s ELECTRONIC SIGNATURE
– Manufacturer Code: 0020h
– Device Code: 0034h
DESCRIPTION
The M27V322 is a 32 Mbit EPROM offered in the
UV range (ultra violet erase) and OTP range. It is
ideally suited for microprocessor systems requir-
ing large data or program storage. It is organised
as 2 MWords of 16 bit. The pin-out is compatible
with a 32 Mbit Mask ROM.
The FDIP42W (window ceramic frit-seal package)
has a transparent lid which allows the user to ex-
pose the chip to ultraviolet light to erase the bit pat-
tern. A new pattern can then be written rapidly to
the device by following the programming proce-
dure.
For applications where the content is programmed
only one time and erasure is not required, the
M27V322 is offered in PDIP42 package.
42
1
FDIP42W (F)
42
1
PDIP42 (P)
Figure 1. Logic Diagram
VCC
21
A0-A20
16
Q0-Q15
E
GVPP
M27V322
VSS
AI03050
March 2000
1/13

1 page




M27V322-150XP1 pdf
M27V322
Table 7. Read Mode DC Characteristics (1)
(TA = –40 to 85 °C or 0 to 70 °C; VCC = 3.3V ± 10%; VPP = VCC)
Symbol
Parameter
Test Condition
Min
ILI Input Leakage Current
0V VIN VCC
ILO Output Leakage Current
0V VOUT VCC
ICC Supply Current
E = VIL, GVPP = VIL, IOUT = 0mA,
f = 5MHz
ICC1 Supply Current (Standby) TTL
E = VIH
ICC2 Supply Current (Standby) CMOS
E > VCC – 0.2V
IPP Program Current
VPP = VCC
VIL Input Low Voltage
–0.6
VIH (2) Input High Voltage
0.7VCC
VOL Output Low Voltage
IOL = 2.1mA
VOH Output High Voltage TTL
IOH = –400µA
2.4
Note: 1. VCC must be applied simultaneously with or before VPP and removed simultaneously or after VPP.
2. Maximum DC voltage on Output is VCC +0.5V.
Max
±1
±10
30
1
60
10
0.2VCC
VCC + 0.5
0.4
Unit
µA
µA
mA
mA
µA
µA
V
V
V
V
Table 8. Read Mode AC Characteristics (1)
(TA = –40 to 85 °C or 0 to 70 °C; VCC = 3.3V ± 10%; VPP = VCC)
M27V322
Symbol Alt
Parameter
Test Condition -100 (3)
-120
-150 Unit
Min Max Min Max Min Max
tAVQV tACC Address Valid to Output Valid
E = VIL, G = VIL
100
120 150 ns
tELQV tCE Chip Enable Low to Output Valid
G = VIL
100 120 150 ns
tGLQV
tOE
Output Enable Low to Output
Valid
E = VIL
50 60 60 ns
tEHQZ (2) tDF Chip Enable High to Output Hi-Z
G = VIL
0 45 0 50 0 50 ns
tGHQZ (2)
tDF
Output Enable High to Output
Hi-Z
E = VIL
0 45 0 50 0 50 ns
tAXQX
tOH
Address Transition to Output
Transition
E = VIL, G = VIL 5
5
5 ns
Note: 1. VCC must be applied simultaneously with or before VPP and removed simultaneously or after VPP
2. Sampled only, not 100% tested.
3. Speed obtained with High Speed measurement conditions.
5/13

5 Page





M27V322-150XP1 arduino
M27V322
Table 14. FDIP42W - 42 pin Ceramic Frit-seal DIP with window, Package Mechanical Data
mm inches
Symb
Typ Min Max Typ Min Max
A
5.72
0.225
A1
0.51
1.40
0.020
0.055
A2
3.91
4.57
0.154
0.180
A3
3.89
4.50
0.153
0.177
B
0.41
0.56
0.016
0.022
B1 1.45
– 0.057 –
C
0.23
0.30
0.009
0.012
D
54.41
54.86
2.142
2.160
D2 50.80
– 2.000 –
E 15.24 –
– 0.600 –
E1
14.50
14.90
0.571
0.587
e 2.54 –
– 0.100 –
eA 14.99
– 0.590 –
eB
16.18
18.03
0.637
0.710
L
3.18
4.10
0.125
0.161
S
1.52
2.49
0.060
0.098
K 8.00 –
– 0.315 –
K1 16.00
– 0.630 –
α
4° 11°
4° 11°
N 42
42
Figure 9. FDIP42W - 42 pin Ceramic Frit-seal DIP with window, Package Outline
A2 A3 A
B1
S
N
B
D2
D
1
A1 L
e1
K E1 E
K1
Note: Drawing is not to scale.
α
C
eA
eB
FDIPW-b
11/13

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