M25P20-VMP6G NUMONYX, M25P20-VMP6G Datasheet - Page 19

IC FLASH 2MBIT 50MHZ 8VFQFPN

M25P20-VMP6G

Manufacturer Part Number
M25P20-VMP6G
Description
IC FLASH 2MBIT 50MHZ 8VFQFPN
Manufacturer
NUMONYX
Series
Forté™r
Datasheets

Specifications of M25P20-VMP6G

Format - Memory
FLASH
Memory Type
FLASH
Memory Size
2M (256K x 8)
Speed
50MHz
Interface
SPI, 3-Wire Serial
Voltage - Supply
2.7 V ~ 3.6 V
Operating Temperature
-40°C ~ 85°C
Package / Case
8-VFQFN, 8-VFQFPN
Clock Frequency
50MHz
Supply Voltage Range
2.7V To 3.6V
Memory Case Style
VDFPN
No. Of Pins
8
Base Number
25
Frequency
50MHz
Ic Generic Number
25P20
Memory Configuration
256K X 8
Interface Type
Serial, SPI
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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M25P20
6.3
Read Identification (RDID)
The Read Identification (RDID) instruction is available in products with Process Technology
code X only.
The Read Identification (RDID) instruction allows the 8-bit manufacturer identification to be
read, followed by two bytes of device identification. The manufacturer identification is
assigned by JEDEC, and has the value 20h for Numonyx. The device identification is
assigned by the device manufacturer, and indicates the memory type in the first byte (20h),
and the memory capacity of the device in the second byte (12h).
Any Read Identification (RDID) instruction while an Erase or Program cycle is in progress, is
not decoded, and has no effect on the cycle that is in progress.
The Read Identification (RDID) instruction should not be issued while the device is in Deep
Power-down mode.
The device is first selected by driving Chip Select (S) Low. Then, the 8-bit instruction code
for the instruction is shifted in. This is followed by the 24-bit device identification, stored in
the memory, being shifted out on Serial Data Output (Q), each bit being shifted out during
the falling edge of Serial Clock (C).
The instruction sequence is shown in
The Read Identification (RDID) instruction is terminated by driving Chip Select (S) High at
any time during data output.
When Chip Select (S) is driven High, the device is put in the Stand-by Power mode. Once in
the Stand-by Power mode, the device waits to be selected, so that it can receive, decode
and execute instructions.
Table 5.
Figure 9.
S
C
D
Q
Manufacturer Identification
Read Identification (RDID) Data-Out Sequence
Read Identification (RDID) Instruction Sequence and Data-Out Sequence
0
High Impedance
20h
1
2
Instruction
3
4
5
6
7
MSB
Manufacturer Identification
8
Figure
9 10 11 12 13 14 15
Memory Type
9.
20h
Device Identification
MSB
15 14 13
16 17 18
Device Identification
Memory Capacity
3
28 29 30 31
2
12h
1
Instructions
0
AI06809b
19/50

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