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M27W401-150N6 Folha de dados(PDF) 10 Page - STMicroelectronics

Nome de Peças M27W401-150N6
Descrição Electrónicos  4 Mbit (512Kb x 8) Low Voltage UV EPROM and OTP EPROM
Download  23 Pages
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Fabricante Electrônico  STMICROELECTRONICS [STMicroelectronics]
Página de início  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

M27W401-150N6 Folha de dados(HTML) 10 Page - STMicroelectronics

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Device description
M27W401
10/23
Figure 5.
Programming flowchart
2.7
Program Inhibit
Programming of multiple M27W401s in parallel with different data is also easily
accomplished. Except for E, all like inputs including G of the parallel M27W401 may be
common. A TTL low level pulse applied to a M27W401's E input, with VPP at 12.75V, will
program that M27W401. A high level E input inhibits the other M27W401s from being
programmed.
2.8
Program Verify
A verify (read) should be performed on the programmed bits to determine that they were
correctly programmed. The verify is accomplished with G at VIL, E at VIH, VPP at 12.75V and
VCC at 6.25V.
2.9
Electronic Signature
The Electronic Signature (ES) mode allows the reading out of a binary code from an
EPROM that will identify its manufacturer and type. This mode is intended for use by
programming equipment to automatically match the device to be programmed with its
corresponding programming algorithm. The ES mode is functional in the 25°C ± 5°C
ambient temperature range that is required when programming the M27W401. To activate
the ES mode, the programming equipment must force 11.5V to 12.5V on address line A9 of
the M27W401 with VPP = VCC = 5V. Two identifier bytes may then be sequenced from the
device outputs by toggling address line A0 from VIL to VIH. All other address lines must be
held at VIL during Electronic Signature mode. Byte 0 (A0 = VIL) represents the manufacturer
code and byte 1 (A0 = VIH) the device identifier code. For the STMicroelectronics
AI00760C
n = 0
Last
Addr
VERIFY
E = 100
µs Pulse
++n
= 25
++ Addr
VCC = 6.25V, VPP = 12.75V
FAIL
CHECK ALL BYTES
1st: VCC = 5V
2nd: VCC = 2.7V
YES
NO
YES
NO
YES
NO


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