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 Features
* Serial Peripheral Interface (SPI) Compatible * Supports SPI Modes 0 (0,0) and 3 (1,1)
- Datasheet describes Mode 0 Operation
* 20 MHz Clock Rate * Byte Mode and 256-byte Page Mode for Program Operations * Sector Architecture: * * * * * * * * *
- Eight Sectors with 64K Bytes Each (4M) - 256 Pages per Sector Product Identification Mode Low-voltage Operation - 2.7 (VCC = 2.7V to 3.6V) Sector Write Protection - Protect 1/8, 1/4, 1/2 or Entire Array Write Protect (WP) Pin and Write Disable Instructions for both Hardware and Software Data Protection Self-timed Program Cycle (30 s/Byte Typical) Self-timed Sector Erase Cycle (1 second/Sector Typical) Single Cycle Reprogramming (Erase and Program) for Status Register High Reliability - Endurance: 10,000 Write Cycles Typical 8-lead EIAJ SOIC
SPI Serial Memory
4M (524,288 x 8)
AT25F4096 Advance Information
Description
The AT25F4096 provides 4,194,304 bits of serial reprogrammable Flash memory organized as 524,288 words of 8 bits each. The device is optimized for use in many industrial and commercial applications where low-power and low-voltage operation are essential. The AT25F4096 is available in a space-saving 8-lead EIAJ SOIC package.
Pin Configurations
Pin Name CS SCK SI SO GND VCC WP HOLD Function Chip Select Serial Data Clock Serial Data Input Serial Data Output Ground Power Supply Write Protect Suspends Serial Input
CS SO WP GND 1 2 3 4 8 7 6 5 VCC HOLD SCK SI
8-lead EIAJ SOIC
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The AT25F4096 is enabled through the Chip Select pin (CS) and accessed via a 3-wire interface consisting of Serial Data Input (SI), Serial Data Output (SO), and Serial Clock (SCK). All write cycles are completely self-timed. BLOCK WRITE protection for top 1/8, top 1/4, top 1/2 or the entire memory array is enabled by programming the status register. Separate write enable and write disable instructions are provided for additional data protection. Hardware data protection is provided via the WP pin to protect against inadvertent write attempts to the status register. The HOLD pin may be used to suspend any serial communication without resetting the serial sequence.
Absolute Maximum Ratings*
Operating Temperature.................................... -40C to +85C Storage Temperature ..................................... -65C to +150C Voltage on Any Pin with Respect to Ground .....................................-1.0V to +3.6V Maximum Operating Voltage ............................................ 3.6V DC Output Current........................................................ 5.0 mA *NOTICE: Stresses beyond those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. This is a stress rating only and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability.
Block Diagram
524,288 x 8
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AT25F4096 [Advance Information]
Pin Capacitance(1)
Applicable over recommended operating range from TA = 25C, f = 1.0 MHz, VCC = +3.6V (unless otherwise noted).
Symbol COUT CIN Note: Test Conditions Output Capacitance (SO) Input Capacitance (CS, SCK, SI, WP, HOLD) 1. This parameter is characterized and is not 100% tested. Max 8 6 Units pF pF Conditions VOUT = 0V VIN = 0V
DC Characteristics (Preliminary - Subject to Change)
Applicable over recommended operating range from: TAI = -40C to +85C, VCC = +2.7V to +3.6V, TAC = 0C to +70C, VCC = +2.7V to +3.6V (unless otherwise noted).
Symbol VCC ICC1 ICC2 ISB IIL IOL VIL(1) VIH
(1)
Parameter Supply Voltage Supply Current Supply Current Standby Current Input Leakage Output Leakage Input Low Voltage Input High Voltage Output Low Voltage Output High Voltage
Test Condition
Min 2.7
Typ
Max 3.6
Units V mA mA A A A V V V V
VCC = 3.6V at 20 MHz, SO = Open Read VCC = 3.6V at 20 MHz, SO = Open Write VCC = 2.7V, CS = VCC VIN = 0V to VCC VIN = 0V to VCC, TAC = 0C to 70C -3.0 -3.0 -0.6 VCC x 0.7 2.7V VCC 3.6V IOL = 0.15 mA IOH = -100 A VCC - 0.2
10.0 15.0 2.0
15.0 30.0 10.0 3.0 3.0 VCC x 0.3 VCC + 0.5 0.2
VOL VOH Note:
1. VIL and VIH max are reference only and are not tested.
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AC Characteristics (Preliminary - Subject to Change)
Applicable over recommended operating range from TA = -40C to +85C, VCC = +2.7V to +3.6V CL = 1 TTL Gate and 30 pF (unless otherwise noted).
Symbol fSCK tRI tFI tWH tWL tCS tCSS tCSH tSU tH tHD tCD tV tHO tLZ tHZ tDIS tEC tSR tBPC Endurance(2) Notes: Parameter SCK Clock Frequency Input Rise Time Input Fall Time SCK High Time SCK Low Time CS High Time CS Setup Time CS Hold Time Data In Setup Time Data In Hold Time Hold Setup Time Hold Hold Time Output Valid Output Hold Time Hold to Output Low Z Hold to Output High Z Output Disable Time Erase Cycle Time per Sector Status Register Write Cycle Time Byte Program Cycle Time
(1)
Min 0
Typ
Max 20 20 20
Units MHz ns ns ns ns ns ns ns ns ns ns ns
20 20 25 25 25 5 5 15 15 20 0 200 200 100 1.0 60 30 10K 50
ns ns ns ns ns s ms s Write Cycles(3)
1. The programming time for n bytes will be equal to n x tBPC. 2. This parameter is characterized at 3.0V, 25C and is not 100% tested. 3. One write cycle consists of erasing a sector, followed by programming the same sector.
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AT25F4096 [Advance Information]
Serial Interface Description
MASTER: The device that generates the serial clock. SLAVE: Because the Serial Clock pin (SCK) is always an input, the AT25F4096 always operates as a slave. TRANSMITTER/RECEIVER: The AT25F4096 has separate pins designated for data transmission (SO) and reception (SI). MSB: The Most Significant Bit (MSB) is the first bit transmitted and received. SERIAL OP-CODE: After the device is selected with CS going low, the first byte will be received. This byte contains the op-code that defines the operations to be performed. INVALID OP-CODE: If an invalid op-code is received, no data will be shifted into the AT25F4096, and the serial output pin (SO) will remain in a high impedance state until the falling edge of CS is detected again. This will reinitialize the serial communication. CHIP SELECT: The AT25F4096 is selected when the CS pin is low. When the device is not selected, data will not be accepted via the SI pin, and the serial output pin (SO) will remain in a high impedance state. HOLD: The HOLD pin is used in conjunction with the CS pin to select the AT25F4096. When the device is selected and a serial sequence is underway, HOLD can be used to pause the serial communication with the master device without resetting the serial sequence. To pause, the HOLD pin must be brought low while the SCK pin is low. To resume serial communication, the HOLD pin is brought high while the SCK pin is low (SCK may still toggle during HOLD). Inputs to the SI pin will be ignored while the SO pin is in the high impedance state. WRITE PROTECT: The 25F4096 has a write lockout feature that can be activated by asserting the write protect pin (WP). When the lockout feature is activated, locked-out sectors will be READ only. The write protect pin will allow normal read/write operations when held high. When the WP is brought low and WPEN bit is "1", all write operations to the status register are inhibited. WP going low while CS is still low will interrupt a write to the status register. If the internal status register write cycle has already been initiated, WP going low will have no effect on any write operation to the status register. The WP pin function is blocked when the WPEN bit in the status register is "0". This will allow the user to install the AT25F4096 in a system with the WP pin tied to ground and still be able to write to the status register. All WP pin functions are enabled when the WPEN bit is set to "1".
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SPI Serial Interface
MASTER: MICROCONTROLLER DATA OUT (MOSI) DATA IN (MISO) SERIAL CLOCK (SPI CK) SS0 SS1 SS2 SS3 SLAVE: AT25F4096 SI SO SCK CS SI SO SCK CS SI SO SCK CS SI SO SCK CS
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AT25F4096 [Advance Information]
Functional Description
The AT25F4096 is designed to interface directly with the synchronous serial peripheral interface (SPI) of the 6800 type series of microcontrollers. The AT25F4096 utilizes an 8-bit instruction register. The list of instructions and their operation codes are contained in Table 1. All instructions, addresses, and data are transferred with the MSB first and start with a high-to-low transition. Write is defined as program and/or erase in this specification. The following commands, PROGRAM, SECTOR ERASE, CHIP ERASE, and WRSR are write instructions for AT25F4096. Table 1. Instruction Set for the AT25F4096
Instruction Name WREN WRDI RDSR WRSR READ PROGRAM SECTOR ERASE CHIP ERASE RDID Instruction Format 0000 X110 0000 X100 0000 X101 0000 X001 0000 X011 0000 X010 0101 X010 0110 X010 0001 X101 Operation Set Write Enable Latch Reset Write Enable Latch Read Status Register Write Status Register Read Data from Memory Array Program Data Into Memory Array Erase One Sector in Memory Array Erase All Sectors in Memory Array Read Manufacturer and Product ID
WRITE ENABLE (WREN): The device will power up in the write disable state when VCC is applied. All write instructions must therefore be preceded by the WREN instruction. WRITE DISABLE (WRDI): To protect the device against inadvertent writes, the WRDI instruction disables all write commands. The WRDI instruction is independent of the status of the WP pin. READ STATUS REGISTER (RDSR): The RDSR instruction provides access to the status register. The READY/BUSY and write enable status of the device can be determined by the RDSR instruction. Similarly, the Block Write Protection bits indicate the extent of protection employed. These bits are set by using the WRSR instruction. During internal write cycles, all other commands will be ignored except the RDSR instruction. Table 2. Status Register Format
Bit 7 WPEN Bit 6 X Bit 5 X Bit 4 BP2 Bit 3 BP1 Bit 2 BP0 Bit 1 WEN Bit 0 RDY
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Table 3. Read Status Register Bit Definition
Bit Bit 0 (RDY) Bit 1 (WEN) Bit 2 (BP0) Bit 3 (BP1) Bit 4 (BP2) Definition Bit 0 = 0 (RDY) indicates the device is READY. Bit 0 = 1 indicates the write cycle is in progress. Bit 1 = 0 indicates the device is not WRITE ENABLED. Bit 1 = 1 indicates the device is WRITE ENABLED. See Table 4. See Table 4. See Table 4.
Bits 5-6 are 0s when device is not in an internal write cycle. Bit 7 (WPEN) See Table 5.
Bits 0-7 are 1s during an internal write cycle.
READ PRODUCT ID (RDID): The RDID instruction allows the user to read the manufacturer and product ID of the device. The first byte after the instruction will be the manufacturer code (1FH = ATMEL), followed by the device code 64H. WRITE STATUS REGISTER (WRSR): The WRSR instruction allows the user to select one of five levels of protection for the AT25F4096. The AT25F4096 is divided into eight sectors where the top 1/8, top quarter (1/4), top half (1/2), or all of the memory sectors can be protected (locked out) from write. Any of the locked-out sectors will therefore be READ only. The locked-out sector and the corresponding status register control bits are shown in Table 4. The four bits, BP0, BP1, BP2 and WPEN, are nonvolatile cells that have the same properties and functions as the regular memory cells (e.g., WREN, tWC, RDSR). Table 4. Block Write Protect Bits
Status Register Bits Level 0(none) 1(1/8) 2(1/4) 3(1/2) 4(all) Note: BP2 0 0 0 0 1 1. x = don't care BP1 0 0 1 1 x BP0 0 1 0 1 x AT25F4096 Array Addresses Locked Out None 070000 - 07FFFF 060000 - 07FFFF 040000 - 07FFFF 000000 - 07FFFF Locked-out Sector(s) None Sector 8 Sector 7, 8 Sector 5, 6, 7, 8 All sectors (1 - 8)
The WRSR instruction also allows the user to enable or disable the Write Protect (WP) pin through the use of the Write Protect Enable (WPEN) bit. Hardware write protection is enabled when the WP pin is low and the WPEN bit is "1". Hardware write protection is disabled when either the WP pin is high or the WPEN bit is "0." When the device is hardware write protected, writes to the Status Register, including the Block Protect bits and the WPEN bit, and the locked-out sectors in the memory array are disabled. Write is only allowed to sectors of the memory which are not locked out. The WRSR instruction is self-timed to automatically erase and program BP0, BP1, BP2 and WPEN bits. In 8
AT25F4096 [Advance Information]
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AT25F4096 [Advance Information]
order to write the status register, the device must first be write enabled via the WREN instruction. Then, the instruction and data for the four bits are entered. During the internal write cycle, all instructions will be ignored except RDSR instructions. The AT25F4096 will automatically return to write disable state at the completion of the WRSR cycle.
Note: When the WPEN bit is hardware write protected, it cannot be changed back to "0", as long as the WP pin is held low.
Table 5. WPEN Operation
WPEN 0 0 1 1 X X WP X X Low Low High High WEN 0 1 0 1 0 1 ProtectedBlocks Protected Protected Protected Protected Protected Protected UnprotectedBlocks Protected Writable Protected Writable Protected Writable Status Register Protected Writable Protected Protected Protected Writable
READ (READ): Reading the AT25F4096 via the SO (Serial Output) pin requires the following sequence. After the CS line is pulled low to select a device, the READ instruction is transmitted via the SI line followed by the byte address to be read (Refer to Table 6). Upon completion, any data on the SI line will be ignored. The data (D7-D0) at the specified address is then shifted out onto the SO line. If only one byte is to be read, the CS line should be driven high after the data comes out. The READ instruction can be continued since the byte address is automatically incremented and data will continue to be shifted out of the AT25F4096 until the highest address is reached, the address counter will roll over to the lowest address allowing the entire memory to be read in one continuous READ instruction. PROGRAM (PROGRAM): In order to program the AT25F4096, two separate instructions must be executed. First, the device must be write enabled via the WREN instruction. Then the PROGRAM instruction can be executed. Also, the address of the memory location(s) to be programmed must be outside the protected address field location selected by the Block Write Protection Level. During an internal self-timed programming cycle, all commands will be ignored except the RDSR instruction. The PROGRAM instruction requires the following sequence. After the CS line is pulled low to select the device, the PROGRAM instruction is transmitted via the SI line followed by the byte address and the data (D7-D0) to be programmed (Refer to Table 6). Programming will start after the CS pin is brought high. The low-to-high transition of the CS pin must occur during the SCK low time immediately after clocking in the D0 (LSB) data bit. The READY/BUSY status of the device can be determined by initiating a RDSR instruction. If Bit 0 = 1, the program cycle is still in progress. If Bit 0 = 0, the program cycle has ended. Only the RDSR instruction is enabled during the program cycle. A single PROGRAM instruction programs 1 to 256 consecutive bytes within a page if it is not write protected. The starting byte could be anywhere within the page. When the end of the page is reached, the address will wrap around to the beginning of the same page. If the data to be programmed are less than a full page, the data of all other bytes on the same page will remain unchanged. If more than 256 bytes of data are provided, the address counter will roll over on the same page and the previous data provided will be replaced. The same byte cannot be reprogrammed without erasing the whole sector 9
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first. The AT25F4096 will automatically return to the write disable state at the completion of the PROGRAM cycle.
Note: If the device is not write enabled (WREN), the device will ignore the Write instruction and will return to the standby state, when CS is brought high. A new CS falling edge is required to re-initiate the serial communication.
Table 6. Address Key
Address AN Dont' Care Bits AT25F4096 A18 - A0 A23 - A19
SECTOR ERASE (SECTOR ERASE): Before a byte can be reprogrammed, the sector which contains the byte must be erased. In order to erase the AT25F4096, two separate instructions must be executed. First, the device must be write enabled via the WREN instruction. Then the SECTOR ERASE instruction can be executed. Table 7. Sector Addresses
Sector Address 000000 to 00FFFF 010000 to 01FFFF 020000 to 02FFFF 030000 to 03FFFF 040000 to 04FFFF 050000 to 05FFFF 060000 to 06FFFF 070000 to 07FFFF AT25F4096 Sector Sector 1 Sector 2 Sector 3 Sector 4 Sector 5 Sector 6 Sector 7 Sector 8
The SECTOR ERASE instruction erases every byte in the selected sector if the sector is not locked out. Sector address is automatically determined if any address within the sector is selected. The SECTOR ERASE instruction is internally controlled; it will automatically be timed to completion. During this time, all commands will be ignored, except RDSR instruction. The AT25F4096 will automatically return to the write disable state at the completion of the SECTOR ERASE cycle. CHIP ERASE (CHIP ERASE): As an alternative to the SECTOR ERASE, the CHIP ERASE instruction will erase every byte in all sectors that are not locked out. First, the device must be write enabled via the WREN instruction. Then the CHIP ERASE instruction can be executed. The CHIP ERASE instruction is internally controlled; it will automatically be timed to completion. The CHIP ERASE cycle time typically is 8 seconds. During the internal erase cycle, all instructions will be ignored except RDSR. The AT25F4096 will automatically return to the write disable state at the completion of the CHIP ERASE cycle.
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AT25F4096 [Advance Information]
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AT25F4096 [Advance Information]
Timing Diagrams (for SPI Mode 0 (0, 0))
Synchronous Data Timing
VIH CS VIL t CSS VIH SCK VIL t SU VIH SI VIL tV VOH SO VOL HI-Z t HO t DIS HI-Z VALID IN tH t WH t WL t CSH t CS
WREN Timing
WRDI Timing
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RDSR Timing
CS
0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15
SCK
SI
INSTRUCTION
SO
HIGH IMPEDANCE
DATA OUT
7 6 5 4 3 2 1 0
MSB
WRSR Timing
READ Timing
CS
0 SCK
1
2
3
4
5
6
7
8
9 10 11 28 29 30 31 32 33 34 35 36 37 38 39
3-BYTE ADDRESS SI INSTRUCTION 23 22 21 ... 3 2 1 0
SO
HIGH IMPEDANCE
7
6
5
4
3
2
1
0
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AT25F4096 [Advance Information]
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AT25F4096 [Advance Information]
PROGRAM Timing
CS
2075
2076
2077
2078
0 SCK
1
2
3
4
5
6
7
8
9
10 11 28 29 30 31 32 33 34
2079
256th BYTE DATA-IN 0
1st BYTE DATA-IN 3-BYTE ADDRESS SI INSTRUCTION 23 22 21 3 2 1 0 7 6 5 4 3 2 1
SO
HIGH IMPEDANCE
HOLD Timing
CS
tCD tCD
SCK
tHD
HOLD
tHZ
tHD
SO
tLZ
SECTOR ERASE Timing
X
X = Don't Care bit
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CHIP ERASE Timing
X
X = Don't Care bit
RDID Timing
CS
01 23 4 5 6 78 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23
SCK
SI
0
0
0
1X
1
0
1
SO
HIGH IMPEDANCE
MANUFACTURER 7 CODE (ATMEL)
6
DATA OUT 5432 DEVICE CODE
1
0
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AT25F4096 [Advance Information]
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AT25F4096 [Advance Information]
Ordering Information
Ordering Code AT25F4096W-10SU-2.7 Package 8S2 Operation Range Lead-Free/Halogen-Free/ Industrial Temperature (-40C to 85C)
Package Type 8S2 8-lead, 0.200" Wide, Plastic Gull Wing Small Outline Package (EIAJ SOIC) Options -2.7 Low Voltage (2.7V to 3.6V)
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Package Information
8S2 - EIAJ SOIC
C
1
E
E1
N
L
Top View
End View
e A
SYMBOL
b
COMMON DIMENSIONS (Unit of Measure = mm) MIN NOM MAX NOTE
A1
A A1 b C
1.70 0.05 0.35 0.15 5.13 5.18 7.70 0.51 0 1.27 BSC
2.16 0.25 0.48 0.35 5.35 5.40 8.26 0.85 8 4 2, 3 5 5
D
D E1 E L
Side View
e
Notes: 1. 2. 3. 4. 5.
This drawing is for general information only; refer to EIAJ Drawing EDR-7320 for additional information. Mismatch of the upper and lower dies and resin burrs are not included. It is recommended that upper and lower cavities be equal. If they are different, the larger dimension shall be regarded. Determines the true geometric position. Values b and C apply to pb/Sn solder plated terminal. The standard thickness of the solder layer shall be 0.010 +0.010/-0.005 mm.
10/7/03 2325 Orchard Parkway San Jose, CA 95131 TITLE 8S2, 8-lead, 0.209" Body, Plastic Small Outline Package (EIAJ) DRAWING NO.
R
8S2
REV. C
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AT25F4096 [Advance Information]
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Printed on recycled paper.
2454C-SEEPR-8/04


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