参数资料
型号: MAX66040K-000AA+
厂商: Maxim Integrated
文件页数: 17/25页
文件大小: 0K
描述: ISO CARD SECURE MEMORY
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 25
系列: iButton®
RF 型: 读/写
频率: 13.56MHz
特点: ISO14443-B
封装/外壳: 遥控钥匙
供应商设备封装: 遥控钥匙
包装: 散装
ABRIDGED DATA SHEET
ISO/IEC 14443 Type B-Compliant
Secure Memory
Network Function Commands
To transition slaves devices between states, the
ISO/IEC 14443 Type B standard defines six network
function commands, called REQB, WUPB, SLOT-
MARKER, HLTB, ATTRIB, and DESELECT. The master
issues the commands in the form of request frames and
the slaves respond by transmitting response frames.
With network function commands, command code,
parameters and response are embedded between SOF
and CRC. This section describes the format of the
response and request frames and the coding of the
data fields inside the frames as detailed as necessary
to operate the MAX66040. Not all of the fields and
cases that the standard defines are relevant for the
MAX66040. For a full description of those fields refer to
the ISO/IEC 14443-3, Section 7.
REQB/WUPB Command
The REQUEST command, Type B (REQB) and the
WAKEUP command, Type B (WUPB) are the general
tools for the master to probe the RF field for the pres-
ence of slave devices and to preselect them for action
based on the value of the application family identifier
(AFI). An ISO/IEC 14443 Type B-compliant slave
watches for these commands while in the IDLE state,
WAITING FOR SLOT-MARKER state, and READY
state. In the HALT state, the slave only acts upon
receiving a WUPB command. The REQB or WUPB
command is transmitted as a frame, as shown in
Figure 18. Besides the command code, the request
includes two parameters, AFI and PARAM. The
response to REQB/WUPB is named ATQB. See the
ATQB Response section for details.
The ISO/IEC 14443 standard defines rules for the
assignment of the AFI codes and the behavior of the
slaves when receiving a REQB/WUPB request. If the
request specifies an AFI of 00h, a slave must process
the command regardless of its actual AFI value. If the
least significant nibble of the AFI in the request is
0000b, the slave must process the command only if the
most significant nibble of the AFI sent by the master
matches the most significant nibble of the slave’s AFI.
For all other AFI values, the slave processes the com-
mand only if the AFI in the request and the slave match.
The AFI code can be programmed and locked by the
user. For details see the Memory and Control Function
Commands section.
The bit assignments of the PARAM byte are shown in
Figure 19. Bits 5 to 8 are reserved and must be trans-
mitted as 0. Bit 4, if 0, indicates that the request is a
REQB command; bit 4, if 1, defines a WUPB command.
Bits 1, 2, and 3 specify the number of slots (N) to be
used in the anticollision protocol. Table 15 shows the
codes. In the case of N = 1, the SLOT-MARKER com-
mand does not apply and all slaves with a matching AFI
transition to the READY state. With multiple slaves in the
field, this leads to a data collision, since the response
frames are transmitted simultaneously. If N is larger then
1, each slave in the field selects its own 4-bit random
MSB
LSB
SOF
COMMAND
05h
AFI
(1 BYTE)
PARAM
(1 BYTE)
CRC
(2 BYTES)
EOF
BIT 8
0
BIT 7 BIT 6
0 0
(FIXED)
BIT 5
0
BIT 4
REQB/
WUPB
BIT 3
BIT 2
N
BIT 1
Figure 18. REQB/WUPB Request Frame
Table 15. Number of Slots Codes
Figure 19. Bit Assignments for PARAM Byte
BIT 3
0
0
0
0
1
1
1
BIT 2
0
0
1
1
0
0
1
BIT 1
0
1
0
1
0
1
X
N
1
2
4
8
16
(RESERVED)
(RESERVED)
26
______________________________________________________________________________________
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