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PDF FM25L16 Data sheet ( Hoja de datos )

Número de pieza FM25L16
Descripción 3V F-RAM Memory
Fabricantes Ramtron 
Logotipo Ramtron Logotipo



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No Preview Available ! FM25L16 Hoja de datos, Descripción, Manual

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FM25L16
16Kb FRAM Serial 3V Memory
Features
16K bit Ferroelectric Nonvolatile RAM
Organized as 2,048 x 8 bits
Unlimited Read/Write Cycles
45 Year Data Retention
NoDelay™ Writes
Advanced High-Reliability Ferroelectric Process
Very Fast Serial Peripheral Interface - SPI
Up to 18 MHz Frequency
Direct Hardware Replacement for EEPROM
SPI Mode 0 & 3 (CPOL, CPHA=0,0 & 1,1)
Description
The FM25L16 is a 16-kilobit nonvolatile memory
employing an advanced ferroelectric process. A
ferroelectric random access memory or FRAM is
nonvolatile and performs reads and writes like a
RAM. It provides reliable data retention for 45 years
while eliminating the complexities, overhead, and
system level reliability problems caused by
EEPROM and other nonvolatile memories.
Unlike serial EEPROMs, the FM25L16 performs
write operations at bus speed. No write delays are
incurred. Data is written to the memory array
immediately after each byte has been transferred to
the device. The next bus cycle may commence
without the need for data polling. The product offers
virtually unlimited write endurance, orders of
magnitude more endurance than EEPROM. FRAM
also exhibits much lower power during writes than
EEPROM.
These capabilities make the FM25L16 ideal for
nonvolatile memory applications requiring frequent
or rapid writes. Examples range from data collection,
where the number of write cycles may be critical, to
demanding industrial controls where the long write
time of EEPROM can cause data loss.
The FM25L16 provides substantial benefits to users
of serial EEPROM as a hardware drop-in
replacement. The FM25L16 uses the high-speed SPI
bus, which enhances the high-speed write capability
of FRAM technology. Device specifications are
guaranteed over an industrial temperature range of
-40°C to +85°C.
This product conforms to specifications per the terms of the Ramtron
standard warranty. The product has completed Ramtron’s internal
qualification testing and has reached production status.
Rev. 3.0
Aug. 2006
Sophisticated Write Protection Scheme
Hardware Protection
Software Protection
Low Power Consumption
Low Voltage Operation 2.7-3.6V
1 µA Standby Current
Industry Standard Configuration
Industrial Temperature -40°C to +85°C
“Green”/RoHS 8-pin SOIC Package
“Green”/RoHS 8-pin TDFN Package
TDFN Footprint Conforms to TSSOP-8
Pin Configuration
CS
SO
WP
VSS
1
2
3
4
8 VDD
7 HOLD
6 SCK
5 SI
/CS 1 Top View 8 VDD
SO 2
7 /HOLD
/WP 3
6 SCK
VSS 4
5 SI
Pin Name
/CS
/WP
/HOLD
SCK
SI
SO
VDD
VSS
Function
Chip Select
Write Protect
Hold
Serial Clock
Serial Data Input
Serial Data Output
Supply Voltage
Ground
Ordering Information
FM25L16-G
“Green”/RoHS 8-pin SOIC
FM25L16-DG “Green”/RoHS 8-pin TDFN
Ramtron International Corporation
1850 Ramtron Drive, Colorado Springs, CO 80921
(800) 545-FRAM, (719) 481-7000
www.ramtron.com
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FM25L16 pdf
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Data Transfer
All data transfers to and from the FM25L16 occur in
8-bit groups. They are synchronized to the clock
signal (SCK), and they transfer most significant bit
(MSB) first. Serial inputs are registered on the rising
edge of SCK. Outputs are driven from the falling
edge of SCK.
Command Structure
There are six commands called op-codes that can be
issued by the bus master to the FM25L16. They are
listed in the table below. These op-codes control the
functions performed by the memory. They can be
divided into three categories. First, there are
commands that have no subsequent operations. They
perform a single function such as to enable a write
operation. Second are commands followed by one
byte, either in or out. They operate on the status
register. The third group includes commands for
memory transactions followed by an address and one
or more bytes of data.
Table 1. Op-code Commands
Name Description
WREN Set Write Enable Latch
WRDI Write Disable
RDSR Read Status Register
WRSR Write Status Register
READ Read Memory Data
WRITE Write Memory Data
Op-code
0000 0110b
0000 0100b
0000 0101b
0000 0001b
0000 0011b
0000 0010b
FM25L16
WREN - Set Write Enable Latch
The FM25L16 will power up with writes disabled.
The WREN command must be issued prior to any
write operation. Sending the WREN op-code will
allow the user to issue subsequent op-codes for
write operations. These include writing the status
register and writing the memory.
Sending the WREN op-code causes the internal
Write Enable Latch to be set. A flag bit in the status
register, called WEL, indicates the state of the latch.
WEL=1 indicates that writes are permitted.
Attempting to write the WEL bit in the status
register has no effect. Completing any write
operation will automatically clear the write-enable
latch and prevent further writes without another
WREN command. Figure 5 below illustrates the
WREN command bus configuration.
WRDI - Write Disable
The WRDI command disables all write activity by
clearing the Write Enable Latch. The user can verify
that writes are disabled by reading the WEL bit in
the status register and verifying that WEL=0. Figure
6 illustrates the WRDI command bus configuration.
Figure 5. WREN Bus Configuration
Rev. 3.0
Aug. 2006
Figure 6. WRDI Bus Configuration
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FM25L16 arduino
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Serial Data Bus Timing
FM25L16
/Hold Timing
CS
SCK
HOLD
SO
Power Cycle Timing
tHS
tHH
tHS
tHH
tHZ
tLZ
Data Retention (VDD = 2.7V to 3.6V, + 85° C)
Parameter
Min
Data Retention
45
Max Units
- Years
Notes
Rev. 3.0
Aug. 2006
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