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WM72016 PDF даташит

Спецификация WM72016 изготовлена ​​​​«Ramtron» и имеет функцию, называемую «16Kbit Secure F-RAM Memory».

Детали детали

Номер произв WM72016
Описание 16Kbit Secure F-RAM Memory
Производители Ramtron
логотип Ramtron логотип 

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WM72016 Даташит, Описание, Даташиты
www.DataSheet.co.kr
Preliminary
WM72016
16Kbit Secure F-RAM Memory with Gen-2 RFID
Access & Serial Port Direct Memory Access
DESCRIPTION
FEATURES
The WM72016 is a RFID transponder IC with
nonvolatile memory employing an advanced
ferroelectric process. A ferroelectric random access
memory, or F-RAM, is nonvolatile and performs
reads and writes like a RAM. It provides reliable data
retention for 20 years while eliminating the
complexities, overhead, and system level reliability
problems caused by EEPROM and other nonvolatile
memories.
Unlike EEPROM‟s, the WM72016 write operations
are zero power there is no power or speed premium
paid for executing writes into the WM72016 as
compared to read power and speed. Operation of the
memory is fully symmetric: it has an equivalent read
and write range.
The WM72016‟s RFID interface is compatible with
the EPC Class-1 Generation-2 UHF RFID Protocol
for Communications at 860 MHz 960 MHz,
Version 1.2.0 Specification for RFID Air Interface.
The WM72016 is a two chip configuration offered in
various forms: standard IC package or wafers. All
specifications discussed herein are applicable to the
combined chipset operation.
WM72016
RFID Tag
with F-RAM
RFID
Reader
(Class-1
Gen-2)
Figure 1. System Block Diagram
16 Kbit Ferroelectric Nonvolatile RAM
Organized as 1024 x 16 bits
Very High Read/Write Endurance (> 1014)
20-Year Data Retention
Gamma Stability Demonstrated to > 30 kGy
Symmetric Read/Write Operation
Advanced High-Reliability Ferroelectric Process
Interface and Security Features
EPC Class 1 Gen2 (ISO18000-6C) RFID
Compatible Interface (revision 1.2.0)
192-Bit Memory: 96-Bit Electronic Product
Code™ (EPC), 32-Bit Access Password, 32-Bit
KILL Password, 64-Bit TID Memory (Factory
Programmed and Locked)
Inventory, Read, Write and Erase features
Kill Command
Block Permalock Command
Access Command
UHF carrier frequencies from 860 MHz to 960
MHz ISM band, ASK demodulation
Tag-to-reader link frequencies up to 640Kbps
Reader-to-tag asymptotical transmission rates up
to 128Kbps
Supports FM0 and MMS data encoding formats
Serial Port Interface
Custom Features
Stored Address Pointer to Improve Data Write
Speed
Stored Address Pointer Lock
Block Write Command
Variable USER memory block size support
Interrupt Generation
Ultra Low Power Operation
Memory Read/Write Sensitivity: < -6 dBm (typ.)
Industry Standard Configurations
Industrial Temperature -40C to +85C
Bumped Wafers
8-pin UDFN
This is a product that has fixed target specifications but are
subject to change pending characterization results.
Rev. 1.4
May 2011
Ramtron International Corporation
1850 Ramtron Drive, Colorado Springs, CO 80921
(800) 545-FRAM, (719) 481-7000
http://www.ramtron.com
Page 1 of 32
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WM72016 Даташит, Описание, Даташиты
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WM72016 Secure F-RAM with Gen-2 RFID and Serial Port
PIN CONFIGURATION (UDFN PACKAGE)
Top View
(PCB Layout)
Ser_clk 1
8 ANT-
Ser_dat1 2
7 ANT+
Ser_dat0 3
6 Vddr
Ser_CS 4
5 Vddraw
3.0 mm × 3.0 mm body, 0.65 mm pad pitch
PIN DESCRIPTION
Pin Name
ANT+, ANT-
Ser_clk
Ser_dat1,
Ser_dat0
Ser_CS
Vddraw
Vddr
Pin Number
7, 8
1
2, 3
4
5
6
Type
Input
Input
I/O
Description
RFID Antenna. Connect to external RFID antenna terminals.
Connect ANT- to external RFID antenna terminal, also acts as
ground.
Serial interface clock
Serial interface bi-directional data
I/O
PWR
PWR
Serial interface bi-directional chip select/interrupt
Power supply input pin. DC supply (2.1V to 3.0V)
Power supply output pin. This supply is internally generated via
the RF field. The Vddr and Vddraw pins are tied together for most
applications. Contact the factory for other applications such as
battery assisted systems.
Rev. 1.4
May 2011
Page 2 of 32
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WM72016 Даташит, Описание, Даташиты
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FUNCTIONAL DESCRIPTION
WM72016 Secure F-RAM with Gen-2 RFID and Serial Port
The WM72016 is a non-volatile memory device with an industry standard UHF RFID interface that enables
processing data in and out of memory as a generic passive RFID transponder. Unlike other transponder ICs,
the WM72016 transponder IC contains high density symmetric read/write F-RAM memory that enables unique
applications of an RFID solution.
When combined with an appropriate antenna design, WM72016 will power up with energy harvested directly
from the RF field. Following an internally generated reset state, the IC configures itself according to pre-
programmed configuration settings that were stored in F-RAM non-volatile memory at wafer probe, packaged
parts test, or end unit transponder personalization at end-user depot. Configuration settings are read out of
memory and applied prior to enabling data transmission in or out of memory.
As specified in the Gen2 standard, the chip receives and processes commands transmitted by the RFID
interrogator (reader). All required and most optional commands are supported. In addition to these,
WM72016 supports a number of custom commands that take advantage of F-RAM‟s unique ultra low power
and symmetrical characteristics.
Referring to Figure 2, the transponder IC‟s consist of an RFID interface, control and authentication logic, F-
RAM memory, and power management unit. The external antenna is connected directly to the RFID interface
where the RF signal is rectified with high efficiency Schottky diode based rectifier. The rectified voltage is
multiplied up within the Schottky array and then regulated to supply power to on-chip resources.
Also included in the RFID Interface is a modulator/demodulator that detects incoming signals and modulates
the input impedance to enable backscattering of returned signals. The control and authentication logic
processes commands to enable access in and out of F-RAM memory.
RFID
Interface
Power
Management
Control and
Authentication
Logic
F-RAM Array
(16Kb)
External
MCU
(Optional)
Figure 2. Block Diagram
Rev. 1.4
May 2011
Page 3 of 32
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WM7201616Kbit Secure F-RAM MemoryRamtron
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