MAX66020
ISO/IEC 14443 Type B-Compliant
1Kb Memory Fob
________________________________________________________________
Maxim Integrated Products
1
19-5540; Rev 0; 12/10
For pricing, delivery, and ordering information, please contact Maxim Direct at 1-888-629-4642,
or visit Maxim’s website at www.maxim-ic.com.
General Description
The MAX66020 combines 1024 bits of user EEPROM, a
64-bit unique identifier (UID), and a 13.56MHz RF inter-
face (ISO/IEC 14443 Type B, Parts 2-4) in a plastic key
fob. The memory is organized as 16 blocks of 8 bytes
plus two more blocks for data and control registers.
Four adjacent user EEPROM blocks form a memory
page (pages 0 to 3). Memory protection features are
write protection and EPROM emulation, which the user
can set for each individual memory page. Memory
access is accomplished through the block transmission
protocol (ISO/IEC 14443-4), where requests and
responses are exchanged through I-blocks once a
device is in the ACTIVE state. The data rate can be as
high as 847.5kbps. The reader must support a frame
size of 19 bytes. The device supports an application
family identifier (AFI) and a card identifier (CID).
ISO/IEC 14443 functions not supported are chaining,
frame-waiting time extension, and power indication.
Applications
Driver Identification (Fleet Application)
Access Control
Asset Tracking
Features
Fully Compliant ISO/IEC 14443 (Parts 2-4) Type B
Interface
13.56MHz ±7kHz Carrier Frequency
1024-Bit User EEPROM with Block Lock Feature,
Write-Cycle Counter, and Optional EPROM-
Emulation Mode
64-Bit UID
Read and Write (64-Bit Block)
Supports AFI and CID Function
10ms Maximum Programming Time
To Fob: 10% ASK Modulation at 105.9kbps,
211.9kbps, 423.75kbps, or 847.5kbps
From Fob: Load Modulation Using BPSK
Modulated Subcarrier at 105.9kbps, 211.9kbps,
423.75kbps, or 847.5kbps
200,000 Write/Erase Cycles (Minimum)
40-Year Data Retention (Minimum)
Powered Entirely Through the RF Field
Operating Temperature: -25°C to +50°C
Ordering Information
+
Denotes a lead(Pb)-free/RoHS-compliant package.
PART TEMP RANGE PIN-PACKAGE
MAX66020K-000AA+ -25°C to +50°C Key Fob
IC LOAD
SWITCHED
LOAD
MAGNETIC
COUPLING
ANTENNA
RX_IN
TX_OUT
TRANSMITTER
13.56MHz READER
MAX66020
Typical Operating Circuit
Key Fob Mechanical Drawing appears at end of data sheet.
EVALUATION KIT
AVAILABLE
MAX66020
ISO/IEC 14443 Type B-Compliant
1Kb Memory Fob
2 _______________________________________________________________________________________
ABSOLUTE MAXIMUM RATINGS
ELECTRICAL CHARACTERISTICS
(T
A
= -25°C to +50°C.) (Note 1)
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional
operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to
absolute maximum rating conditions for extended periods may affect device reliability.
Note 1: System requirement.
Note 2: Measured from the time at which the incident field is present with strength greater than or equal to H
(MIN)
to the time at
which the MAX66020’s internal power-on reset signal is deasserted and the device is ready to receive a command frame.
Not characterized or production tested; guaranteed by simulation only.
Maximum Incident Magnetic Field Strength ..........141.5dBµA/m
Operating Temperature Range ...........................-25°C to +50°C
Relative Humidity ..............................................(Water Resistant)
Storage Temperature Range ...............................-25°C to +50°C
PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS
EEPROM
Programming Time t
PROG
9 10 ms
Endurance N
CYCLE
At +25°C 200,000 Cycles
Data Retention t
RET
40 Years
RF INTERFACE
Carrier Frequency f
C
(Note 1) 13.553 13.560 13.567 MHz
Operating Magnetic Field Strength H At +25°C (Note 1) 123.5 137.5 dBμA/m
Power-Up Time t
POR
(Note 2) 1.0 ms
MAX66020
ISO/IEC 14443 Type B-Compliant
1Kb Memory Fob
_______________________________________________________________________________________ 3
Detailed Description
The MAX66020 combines 1024 bits of user EEPROM,
128 bits of user and control registers, a 64-bit UID, and
a 13.56MHz RF interface (ISO/IEC 14443 Type B, Parts
2-4) in a single key fob. The memory is organized as 18
blocks of 8 bytes each. Four adjacent user EEPROM
blocks form a memory page (pages 0 to 3). Memory
protection features include write protection and EPROM
emulation, which the user can set for each individual
memory page. The memory of the MAX66020 is
accessed through the ISO/IEC 14443-4 block transmis-
sion protocol, where requests and responses are
exchanged through I-blocks once a device is in the
ACTIVE state. The reader must support a frame size of
at least 19 bytes. The data rate can be as high as
847.5kbps. The MAX66020 supports AFI and CID.
Functions not supported are chaining, frame-waiting
time extension, and power indication. Applications of
the MAX66020 include driver identification (fleet appli-
cation), access control, and asset tracking.
Overview
Figure 1 shows the relationships between the major
control and memory sections of the MAX66020. The
device has three main data components: 64-bit UID,
four 256-bit pages of user EEPROM, and two 8-byte
blocks of user and control registers. Figure 2 shows the
hierarchical structure of the ISO/IEC 14443 Type B-
compliant access protocol. The master must first apply
network function commands to put the MAX66020 into
the ACTIVE state before the memory and control func-
tions become accessible. The protocol required for
these network function commands is described in the
Network Function Commands
section. Once the
MAX66020 is in the ACTIVE state, the master can issue
any one of the available memory and control function
commands. Upon completion of such a command, the
MAX66020 returns to the ACTIVE state and the master
can issue another memory and control function com-
mand or deselect the device, which returns it to the
HALT state. The protocol for these memory and control
function commands is described in the
Memory and
Control Function Commands
section. All data is read
and written least significant bit (LSb) first, starting with
the least significant byte (LSB).
Parasite Power
As a wireless device, the MAX66020 is not connected
to any power source. It gets the energy for operation
from the surrounding RF field, which needs to have a
minimum strength as specified in the
Electrical
Characteristics
table.
RF
FRONT-
END
VOLTAGE
REGULATOR
INTERNALSUPPLY
MEMORY AND
FUNCTION
CONTROL
ISO 14443
FRAME
FORMATTING
AND
ERROR
DETECTION
UID
REGISTER
BLOCK
USER
EEPROM
f
c
DATA
MODULATION
Figure 1. Block Diagram

MAX66020K-000AA+

Mfr. #:
Manufacturer:
Maxim Integrated
Description:
RFID Transponders ISO/IEC 14443 Type B Comp 1Kb Mem Fo
Lifecycle:
New from this manufacturer.
Delivery:
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