M25P80-VMW6TG NUMONYX, M25P80-VMW6TG Datasheet - Page 14

IC FLASH 8MBIT 75MHZ 8SOIC

M25P80-VMW6TG

Manufacturer Part Number
M25P80-VMW6TG
Description
IC FLASH 8MBIT 75MHZ 8SOIC
Manufacturer
NUMONYX
Series
Forté™r
Datasheet

Specifications of M25P80-VMW6TG

Format - Memory
FLASH
Memory Type
FLASH
Memory Size
8M (1M x 8)
Speed
75MHz
Interface
SPI, 3-Wire Serial
Voltage - Supply
2.7 V ~ 3.6 V
Operating Temperature
-40°C ~ 85°C
Package / Case
8-SOIC (5.3mm Width), 8-SOP, 8-SOEIAJ
Package
8SO W
Cell Type
NOR
Density
8 Mb
Architecture
Sectored
Block Organization
Symmetrical
Typical Operating Supply Voltage
3.3 V
Sector Size
64KByte x 16
Timing Type
Synchronous
Interface Type
Serial-SPI
Access Time (max)
8ns
Boot Type
Not Required
Address Bus
1b
Operating Supply Voltage (typ)
3.3V
Operating Temp Range
-40C to 85C
Package Type
SOIC W
Program/erase Volt (typ)
2.7 to 3.6V
Sync/async
Synchronous
Operating Temperature Classification
Industrial
Operating Supply Voltage (min)
2.7V
Operating Supply Voltage (max)
3.6V
Word Size
8b
Number Of Words
1M
Supply Current
8mA
Mounting
Surface Mount
Pin Count
8
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
M25P80-VMW6TG
M25P80-VMW6TGTR

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4.7
14/57
Table 2.
1. The device is ready to accept a Bulk Erase instruction only if all Block Protect bits (BP2, BP1, BP0) are 0.
Hold condition
The Hold (HOLD) signal is used to pause any serial communications with the device without
resetting the clocking sequence. However, taking this signal Low does not terminate any
Write Status Register, Program or Erase cycle that is currently in progress.
To enter the Hold condition, the device must be selected, with Chip Select (S) Low. The Hold
condition starts on the falling edge of the Hold (HOLD) signal, provided that this coincides
with Serial Clock (C) being Low (as shown in
rising edge of the Hold (HOLD) signal, provided that this coincides with Serial Clock (C)
being Low.
If the falling edge does not coincide with Serial Clock (C) being Low, the Hold condition
starts after Serial Clock (C) next goes Low. Similarly, if the rising edge does not coincide
with Serial Clock (C) being Low, the Hold condition ends after Serial Clock (C) next goes
Low. (This is shown in
During the Hold condition, the Serial Data Output (Q) is high impedance, and Serial Data
Input (D) and Serial Clock (C) are Don’t Care.
Normally, the device is kept selected, with Chip Select (S) driven Low, for the whole duration
of the Hold condition. This is to ensure that the state of the internal logic remains unchanged
from the moment of entering the Hold condition.
If Chip Select (S) goes High while the device is in the Hold condition, this has the effect of
resetting the internal logic of the device. To restart communication with the device, it is
necessary to drive Hold (HOLD) High, and then to drive Chip Select (S) Low. This prevents
the device from going back to the Hold condition.
BP2
Status Register
bit
1
1
1
1
content
BP1
bit
0
0
1
1
Protected area sizes
BP0
bit
0
1
0
1
Upper half (eight sectors: 8 to 15)
All sectors (sixteen sectors: 0 to 15)
All sectors (sixteen sectors: 0 to 15)
All sectors (sixteen sectors: 0 to 15)
Figure 5: Hold condition
Protected area
Figure
Memory content
activation).
5). The Hold condition ends on the
Lower half (eight sectors: 0 to 7)
none
none
none
Unprotected area

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