파트넘버.co.kr M2716 데이터시트 PDF


M2716 반도체 회로 부품 판매점

NMOS 16K 2K x 8 UV EPROM



STMicroelectronics 로고
STMicroelectronics
M2716 데이터시트, 핀배열, 회로
M2716
NMOS 16K (2K x 8) UV EPROM
2048 x 8 ORGANIZATION
525mW Max ACTIVE POWER, 132mW Max
STANDBY POWER
ACCESS TIME:
– M2716-1 is 350ns
– M2716 is 450ns
SINGLE 5V SUPPLY VOLTAGE
STATIC-NO CLOCKS REQUIRED
INPUTS and OUTPUTS TTL COMPATIBLE
DURING BOTH READ and PROGRAM
MODES
THREE-STATE OUTPUT with TIED-OR-
CAPABILITY
EXTENDED TEMPERATURE RANGE
PROGRAMMING VOLTAGE: 25V
24
1
FDIP24W (F)
Figure 1. Logic Diagram
DESCRIPTION
The M2716 is a 16,384 bit UV erasable and elec-
trically programmable memory EPROM, ideally
suited for applications where fast turn around and
pattern experimentation are important require-
ments.
The M2716 is housed in a 24 pin Window Ceramic
Frit-Seal Dual-in-Line package. The transparent lid
allows the user to expose the chip to ultraviolet light
to erase the bit pattern. A new pattern can then be
written to the device by following the programming
procedure.
Table 1. Signal Names
A0 - A10
Q0 - Q7
EP
G
VPP
VCC
VSS
Address Inputs
Data Outputs
Chip Enable / Program
Output Enable
Program Supply
Supply Voltage
Ground
VCC VPP
11
A0-A10
8
Q0-Q7
EP M2716
G
VSS
AI00784B
July 1994
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M2716 데이터시트, 핀배열, 회로
M2716
Table 2. Absolute Maximum Ratings
Symbol
Parameter
Value
Unit
TA Ambient Operating Temperature
grade 1
grade 6
0 to 70
–40 to 85
°C
TBIAS
Temperature Under Bias
grade 1
grade 6
–10 to 80
–50 to 95
°C
TSTG
Storage Temperature
–65 to 125
°C
VCC Supply Voltage
–0.3 to 6
V
VIO Input or Output Voltages
–0.3 to 6
V
VPP Program Supply
–0.3 to 26.5
V
PD Power Dissipation
1.5 W
Note: Except for the rating "Operating Temperature Range", stresses above those listed in the Table "Absolute Maximum Ratings" may cause
permanent damage to the device. These are stress ratings only and operation of the device at these or any other conditions above those
indicated in the Operating sections of this specification is not implied. Exposure to Absolute Maximum Rating conditions for extended periods
may affect device reliability. Refer also to the SGS-THOMSON SURE Program and other relevant quality documents.
Figure 2. DIP Pin Connections
A7
A6
A5
A4
A3
A2
A1
A0
Q0
Q1
Q2
VSS
1
2
3
4
5
6
7
8
9
10
11
12
M2716
24 VCC
23 A8
22 A9
21 VPP
20 G
19 A10
18 EP
17 Q7
16 Q6
15 Q5
14 Q4
13 Q3
AI00785
DEVICE OPERATION
The M2716 has 3 modes of operation in the normal
system environment. These are shown in Table 3.
Read Mode. The M2716 read operation requires
that G = VIL, EP = VIL and that addresses A0-A10
have been stabilized. Valid data will appear on the
output pins after time tAVQV, tGLQV or tELQV (see
Switching Time Waveforms) depending on which is
limiting.
Deselect Mode. The M2716 is deselected by mak-
ing G = VIH. This mode is independent of EP and
the condition of the addresses. The outputs are
Hi-Z when G = VIH. This allows tied-OR of 2 or more
M2716’s for memory expansion.
Standby Mode (Power Down). The M2716 may
be powered down to the standby mode by making
EP = VIH. This is independent of G and automat-
ically puts the outputs in the Hi-Z state. The power
is reduced to 25% (132 mW max) of the normal
operating power. VCC and VPP must be maintained
at 5V. Access time at power up remains either tAVQV
or tELQV (see Switching Time Waveforms).
Programming
The M2716 is shipped from SGS-THOMSON com-
pletely erased. All bits will be at “1" level (output
high) in this initial state and after any full erasure.
Table 3 shows the 3 programming modes.
Program Mode. The M2716 is programmed by
introducing “0"s into the desired locations. This is
done 8 bits (a byte) at a time. Any individual address,
sequential addresses, or addresses chosen at ran-
dom may be programmed. Any or all of the 8 bits
associated with an address location may be pro-
grammed with a single program pulse applied to the
EP pin. All input voltage levels including the program
pulse on chip enable are TTL compatible.
The programming sequence is: with VPP = 25V, VCC
= 5V, G = VIH and EP = VIL, an address is selected
and the desired data word is applied to the output
pins (VIL = “0" and VIH = ”1" for both address and
data). After the address and data signals are stable
the program pin is pulsed from VIL to VIH with a
2/9




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