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PDF 25L4005 Data sheet ( Hoja de datos )

Número de pieza 25L4005
Descripción MX25L4005
Fabricantes Macronix International 
Logotipo Macronix International Logotipo



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MX25L4005
FEATURES
GENERAL
• Serial Peripheral Interface (SPI) compatible -- Mode 0
and Mode 3
• 4,194,304 x 1 bit structure
• 128 Equal Sectors with 4K byte each
www.DataSheet4U-.cAonmy Sector can be erased individually
• 8 Equal Blocks with 64K byte each
- Any Block can be erased individually
• Single Power Supply Operation
- 2.7 to 3.6 volt for read, erase, and program operations
• Latch-up protected to 100mA from -1V to Vcc +1V
• Low Vcc write inhibit is from 1.5V to 2.5V
PERFORMANCE
• High Performance
- Fast access time: 70MHz serial clock (15pF + 1TTL
Load) and 66MHz serial clock (30pF + 1TTL Load)
- Fast program time: 1.4ms(typ.) and 5ms(max.)/page
(256-byte per page)
- Fast erase time: 60ms(typ.) and 120ms(max.)/sector
(4K-byte per sector) ; 1s(typ.) and 2s(max.)/block (64K-
byte per block)
• Low Power Consumption
- Low active read current: 12mA(max.) at 70MHz,
8mA(max.) at 66MHz and 4mA(max.) at 33MHz
- Low active programming current: 15mA (max.)
- Low active erase current: 15mA (max.)
- Low standby current: 10uA (max.)
- Deep power-down mode 1uA (typical)
• Minimum 100,000 erase/program cycles
4M-BIT [x 1] CMOS SERIAL FLASH
SOFTWARE FEATURES
• Input Data Format
- 1-byte Command code
• Block Lock protection
- The BP0~BP2 status bit defines the size of the area
to be software protected against Program and Erase
instructions.
• Auto Erase and Auto Program Algorithm
- Automatically erases and verifies data at selected
sector
- Automatically programs and verifies data at selected
page by an internal algorithm that automatically times
the program pulse widths (Any page to be programed
should have page in the erased state first)
Status Register Feature
Electronic Identification
- JEDEC 2-byte Device ID
- RES command, 1-byte Device ID
HARDWARE FEATURES
SCLK Input
- Serial clock input
• SI Input
- Serial Data Input
• SO Output
- Serial Data Output
• WP# pin
- Hardware write protection
• HOLD# pin
- pause the chip without diselecting the chip
• PACKAGE
- 8-pin SOP (150mil)
- 8-pin SOP (200mil)
- 8-land SON (6x5mm)
- All Pb-free devices are RoHS Compliant
P/N: PM1236
REV. 1.1, SEP. 30, 2005
1

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25L4005 pdf
Table 1. Protected Area Sizes
Status bit
BP2 BP1 BP0
000
001
010
011
100
www.DataSheet4U.com1 0 1
110
111
Protect level
0 (none)
1 (1 block)
2 (2 blocks)
3 (4 blocks)
4 (8 blocks)
5 (All)
6 (All)
7 (All)
MX25L4005
4Mb
None
Block 7
Block 6-7
Block 4-7
All
All
All
All
P/N: PM1236
REV. 1.1, SEP. 30, 2005
5

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25L4005 arduino
MX25L4005
(4) Read Status Register (RDSR)
The RDSR instruction is for reading Status Register Bits. The Read Status Register can be read at any time (even in
program/erase/write status register condition) and continuously. It is recommended to check the Write in Progress (WIP)
bit before sending a new instruction when a program, erase, or write status register operation is in progress.
The sequence of issuing RDSR instruction is: CS# goes low-> sending RDSR instruction code-> Status Register data out
on SO (see Figure. 14)
The definition of the status register bits is as below:
www.DataSheetW4UI.Pcobmit. The Write in Progress (WIP) bit, a volatile bit, indicates whether the device is busy in program/erase/write status
register progress. When WIP bit sets to 1, which means the device is busy in program/erase/write status register progress.
When WIP bit sets to 0, which means the device is not in progress of program/erase/write status register cycle.
WEL bit. The Write Enable Latch (WEL) bit, a volatile bit, indicates whether the device is set to internal write enable latch.
When WEL bit sets to 1, which means the internal write enable latch is set, the device can accept program/erase/write
status register instruction. When WEL bit sets to 0, which means no internal write enable latch; the device will not accept
program/erase/write status register instruction.
BP2, BP1, BP0 bits. The Block Protect (BP2, BP1, BP0) bits, non-volatile bits, indicate the protected area(as defined
in table 1) of the device to against the program/erase instruction without hardware protection mode being set. To write the
Block Protect (BP2, BP1, BP0) bits requires the Write Status Register (WRSR) instruction to be executed. Those bits
define the protected area of the memory to against Page Program (PP), Sector Erase (SE), Block Erase (BE) and Chip
Erase(CE) instructions (only if all Block Protect bits set to 0, the CE instruction can be executed)
SRWD bit. The Status Register Write Disable (SRWD) bit, non-volatile bit, is operated together with Write Protection (WP#)
pin for providing hardware protection mode. The hardware protection mode requires SRWD sets to 1 and WP# pin signal
is low stage. In the hardware protection mode, the Write Status Register (WRSR) instruction is no longer accepted for
execution and the SRWD bit and Block Protect bits (BP2, BP1, BP0) are read only.
bit 7
SRWD
Status
Register Write
Protect
1= status
register write
disable
bit 6
0
bit 5 bit 4 bit 3 bit 2
bit 1
bit 0
BP2 BP1 BP0
WEL
WIP
0 the level of the level of the level of (write enable (write in progress
protected protected protected
latch)
bit)
block
block
block
(note 1) (note 1) (note 1) 1=write enable 1=write operation
0=not write 0=not in write
enable
operation
Note: 1. see the table "Protected Area Sizes"
P/N: PM1236
REV. 1.1, SEP. 30, 2005
11

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