Instrukcja obsługi QUIO QU-DR-791


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MIFARE & ISO14443A & ISO14443B STANDARD USB PC/SC RFID READER
Standard PC/SC Series
IC Card Reader
General Technical Manual
(Revision 2.63)
Quick-Ohm K pper & Co. GmbHü
February 20, 2021
Please read this manual carefully before using. If any problem, please feel free to contact us, we will
offer satisfied answer ASAP.
E & ISO14443 STANDARD USB PC/SC RFID DESKTOP READER www.quio-rfid.de
Contents
Document update records................................................................................................................................4
1
2
Introduction.............................................................................................................................................5
Driver Installation and System Identification..........................................................................................5
2.1 Contactless Reader .........................................................................................................................5
SAM Reader...................................................................................................................................5
Device Controller ...........................................................................................................................6
2.2
2.3
3
4
PC Software ............................................................................................................................................7
PICC Interface Description .....................................................................................................................8
4.1 ATRGeneration...............................................................................................................................8
ATR format for ISO 14443 Part 3 PICCs .......................................................................................8
ATR format for ISO 14443 Part 4 PICCs .......................................................................................9
4.2
4.3
5 Contactless ReaderCommands..............................................................................................................10
5.1 Operation Prepare.........................................................................................................................10
Get Data........................................................................................................................................10
ISO14443-4 CPU Card Command ...............................................................................................10
Direct RF Transaction...................................................................................................................10
MIFARE ClassicCards Commands T=CLEmulation ............................................................ 11( )
5.2
5.3
5.4
5.5
5.5.1 Load Keys ................................................................................................................................ 11
5.5.2 Authentication ..........................................................................................................................12
5.5.3 ReadBinaryBlocks....................................................................................................................13
5.5.4 UpdateBinaryBlocks ................................................................................................................13
5.5.5 ValueBlockOperation ...............................................................................................................13
5.5.6 ReadValueBlock.......................................................................................................................14
5.5.7 RestoreValueBlock...................................................................................................................14
5.6 Contactless Smart Card Operation Loop ......................................................................................15
5.6.1 ISO14443-4Card Operation......................................................................................................15
5.6.2 MIFARE 1K/4KCard Operation...............................................................................................15
5.6.3 MIFAREUltra Light Card Operation........................................................................................16
SAM Readers Commands .....................................................................................................................17
Device Controller Commands...............................................................................................................18
6
7
7.1 Switch Current Operating Smart Card..........................................................................................18
Reset SAM Card...........................................................................................................................18
Set PPSS of SAM Card ................................................................................................................19
Automatically Set SAM Baud Rate (Set PPS) .............................................................................20
Set SAM Baud Rate after Reset....................................................................................................20
7.2
7.3
7.4
7.5
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7.6
7.7
7.8
7.9
Read Default Baud Rate of SAM Card.........................................................................................21
Set Card Operation Mode.............................................................................................................22
RTC Time Initialize ......................................................................................................................23
RTC Time Read ............................................................................................................................23
7.10 RTC TimeDisplay on LCD Format Set ........................................................................................24
7.11 RTC DateDisplay on LCD Format Set .........................................................................................24
7.12 Set The Date Display Format .......................................................................................................25
7.13 Set Non-English Font Display......................................................................................................25
7.14 Read Non-English Font Display Setting.......................................................................................26
7.15 Set Display Font Pixel..................................................................................................................26
7.16 LCD Display Text on LCD...........................................................................................................27
7.17 LCD Display Character String at Any Point.................................................................................28
7.18 LCD Display Picture (Directly send picture data)........................................................................29
7.19 Delete Row on LCD .....................................................................................................................30
7.20 Delete Row on LCD .....................................................................................................................30
7.21 Set Boot Screen on LCD ..............................................................................................................30
7.22 Set Standby Screen on LCD.........................................................................................................34
7.23 LCD Backlight Control ................................................................................................................35
7.24 LCD Display a Screen Stored in FLASH.....................................................................................35
7.25 Read Data from FLASH...............................................................................................................36
7.26 Write Data to FLASH...................................................................................................................37
7.27 Get Device SNR ...........................................................................................................................37
7.28 Get Hardware and Firmware Version ...........................................................................................38
7.29 Set LED ........................................................................................................................................38
7.30 Set Buzzer.....................................................................................................................................39
7.31 Set Card Encryption Mode ...........................................................................................................40
7.32 Reader Reset to Factory Default (Repower on)............................................................................40
7.33 Reader Reboot ..............................................................................................................................40
7.34 Set Fast Boot.................................................................................................................................41
7.35 Get Setting of Fast Boot ...............................................................................................................41
7.36 Get Setting of Buzzer and LED Indicator Parameter ...................................................................41
7.37 Set Buzzer and LED Indicator Parameter.....................................................................................42
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Document update records
Date Revision
R2.30
R2.32
R2.35
R2.37
R2.38
Update information
June 14, 2016
July 1, 2016
Update device controller part and modify sample code.
Add comments
August 18, 2017
April 22, 2018
May 5, 2018
Fix spell errors.
Add chapter 7.21 and 7.22
Add chapter 5.3 and 5.5
Fix spelling errors
May 8, 2018
July 26,2018
R2.39
R2.40
Fix chapter 5.5 7.7 and 7.22
Add MR881 comments
Fix chapter 5.4
Fix spelling errors
Aug 1,2018 R2.50
R2.52
Fix command description
Add fast boot function and set method
Add Sam card instruction introduction
Fix spell errors
October 10, 2018
February 20, 2021 R2.63
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1 Introduction
This document is suitable for MR791, MR7911, MR801, MR811, MR8111 and MR881 and so
on.
The above mentioned RFID Readersare designed according to USB PC/SC standard. It uses the
Microsoft CCID driver and standard operation method, so you could refer to other standard PC/SC
documents too.
2 Driver Installation and System Identification
If your PC systemis no CCID driver, it will remind you to install the driver when the PC/SC
Reader connects with your PC via USB interface at the first time. But no worry, we can offer you the
CCID driver, you can get it from our website or we will send it to you by mail.
After installation successfully, it will show you two Smart Card Readers-- "Microsoft Usbccid
Smartcard Reader (WUDF)" in your PC Device Manager, like the following picture.
2.1 Contactless Reader
The Reader can Read/Write the Contactless Smart Card and Memory Card within the Antenna fields.
2.2 SAM Reader
Also it can operate ISO7816 SAM cards in the Reader internal SAM slots.
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2.3 Device Controller
Device controller is the way to operate miscellany. Like LCD, buzzer and etc.
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3 PC Software
First opening "PC/SC Communication Tool",then to click"Initialize" button, there are several
Readers will be shown like the following picture.
These 4 devices explain below:
QU-DR-801Contactless Reader 0: MR801 IC card reader contactless channel
QU-DR-801Device Controller 0: MR801 IC device control channel
QU-DR-801SAM1 Reader 0: MR801 IC card reader SAM1 channel
QU-DR-801SAM2 Reader 0: MR801 ICcard reader SAM2 channel
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4 PICC Interface Description
4.1 ATRGeneration
If the reader detects a PICC, an ATR will be sent to the PCSC driver for identifying the
PICC.Because these readers are standard PC/SC device, you could refer to other standard documents
too.
4.2 ATR format for ISO 14443 Part 3 PICCs
Byte No.
0
Value(Hex)
3B
Designation Description
Initial Header
Higher nibble 8 means no TA1, TB1, and TC1 only TD1 is following.
Lower nibble n is the number of historical bytes (HistByte 0 to HistByte n-1).
Higher nibble 8 means no TA2, TB2, and TC2 only TD2 is following.
Lower nibble 0 means T = 0.
1
2
3
8N
80
T0
TD1
Higher nibble 0 means no TA3, TB3, TC3, TD3 following.
Lower nibble 1 means T = 1.
01
80
TD2
T1 Category indicator byte, 80 means A status indicator may be present in an
optional COMPACT-TLV data object.
4F
0C
Application identifier Presence indicator
Length
4
to RID Tk Registered application provider identifier:(RID) # A0 00 00 03 06h
Byte for Standard
3+N
SS
C0…C1
00000000h
UU
Bytes for Card Name
RFU
TCK
RFU # 00 00 00 00h
4+N XOR of all the bytes T0 to Tk
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4.3 ATR format for ISO 14443 Part 4 PICCs
Byte Nr
0
Value(Hex)
3B
Designation Description
Initial Header
Higher nibble 8 means no TA1, TB1, and TC1 only TD1 is following.
1 8N T0 Lower nibble n is the number of historical bytes (HistByte 0 to HistByte
n-1).
Higher nibble 8 means no TA2, TB2, and TC2 only TD2 is following.
Lower nibble 0 means T = 0.
2
3
80
01
TD1
TD2
Higher nibble 0 means no TA3, TB3, TC3, TD3 following.
Lower nibble 1 means T = 1.
Historical bytes:
XX T1 ISO14443A:
4
to
The historical bytes from ATS response. Refer to the ISO14443-4
specification.
XX
xx
3+N ISO14443B:
Tk
The higher layer response from the ATTRIB response. Refer to the
ISO14443-3 specification.
XX
4+N UU TCK XOR of bytes T0 to Tk
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5 Contactless Reader Commands
5.1 Operation Prepare
Please to confirm that the card could be support by the reader before you operate the card.
Connect the reader to PC and wait the reader startup. Place the card on the reader and the reader
will prompt by LED and Buzzer. Startup the PC/SC operation software (PCSC Communication Tools)
supplied by QUIO-RFID. Select the proper channel and click “Connect” button. If connect successful,
you can operate the card by input APDU now.
5.2 Get Data
This command will retrieve the SNR or ATS of the present card.
APDU Format:
Command
GetData
CLA
FF
INS
CA
P1 P2
00
Le
0000/01
Answer:
Response Format (UID + 2 Bytes) if P1 = 00
Response
Result
Data
UID(LSB) -- UID(MSB) SW1
SW2
SW2
Get ATS of a ISO 14443 A card (ATS + 2 Bytes) if P1 = 01
Response
Result
Data
SW1ATS
Response State:
Result
Success
Error
SW1 SW2
90 00
Meaning
The operation is completed successfully.
The operation is failed.63 00
Error 6A 81 No such function
5.3 ISO14443-4 CPU Card Command
Input APDU and send will implement theoperation of the card.
5.4 Direct RF Transaction
Send data stream over RF interface to card and receive the data.
APDU format 1:
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Command CLA
FF
INS
00
P1
00
P2
00
Lc Data
Transaction LEN RF Data
LEN: the length of RF Data
RF Data: the data will send over RF interface
Response Data Out
SW1
Result Data SW2
APDU format 2:
Command CLA
FF
INS
00
P1
FF
P2
FF
Lc
LEN
CMD
CMD
TMO
FWI
Data
RF Data
Transaction
LEN: the length of Data
CMD: 0: Send commands and receive data.
1: Send only.
TMO: Timeout parameter. Operate the M1 card, FWI = 4. When CMD=1, this byte is
meaningless
RF Data: the data will send over RF interface
Answer:
Response
Result
Data Out
SW1Data SW2
5.5 MIFARE ClassicCards Commands T=CLEmulation( )
These parts describe the operation of MIFARE/Ultralight. PC sends APDU to reader. Reader
analyzes and executes the APDU and sends back the result. The APDU is not same to smart card.
5.5.1 Load Keys
This command will load the keys into the reader. The key will be of two different types; the
reader key and the card key. This command can be used for all kinds of contactless cards.
Reader Key: 16 bytes, use for encrypt application data. The encryption is 3DES. Max. 1 key.
Card Key: 16 bytes, this is the card key. It could be authenticating the memory card. Max. 32
keys.
APDU Format:
Command
Load Keys
CLA
FF
INS
82
P1 P2 Lc Data
Key Structure Key Index Key length KeyData
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Answer:
Response
Result
Data Out
SW1 SW2
5.5.3 ReadBinaryBlocks
This command is used for retrieving “data blocks” from the PICC. The data block/trailer block
must be authenticated first.
APDU Format:
Command CLA
FF
INS
B0
P1
00
P2 Le
Read Blocks Block Number Len
Block Number: 1Byte.The block to be accessed
Len: 1Byte. An integer multiple of 16 bytes
Answer:
Response
Result
Data Out
SW1Data SW2
5.5.4 UpdateBinaryBlocks
This command is used for writing “data blocks” into the PICC. The data block/trailer block must
be authenticated.
Update Binary APDU Format (4 or 16 + 5 Bytes)
Command CLA
FF
INS
D6
P1
00
P2 Lc Data
DataUpdate Blocks Block Number Len
Block Number: 1Byte.The starting block to be updated.
Len: 1Byte.
16*n(n>0) bytes for MIFARE 1K/4K.
4*n(n>0) bytes for MIFARE Ultra light.
Block Data: The data will be written into the binary block/blocks.
5.5.5 ValueBlockOperation
These commands increment/decrement the value of a purse block.
APDU Format:
Command CLA
FF
INS
D7
P1
00
P2 Lc
05
Data
DataValue Operation Block Number
Block Number: 1 Byte, The value block to be manipulated.
Data: VB_OP(1Byte)+ VB_Value(4Byte)
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VB_OP:
0x00 = Store the VB_Value into the block. The block will then be converted to a value block.
0x01 = Increment the value of the value block by the VB_Value.
This command is only valid for value block.
0x02 = Decrement the value of the value block by the VB_Value.
This command is only valid for value block.
VB_Value: The value used for value manipulation. The value is a signed long integer with LSB first.
Answer:
Response
Result
Data Out
SW1 SW2
5.5.6 ReadValueBlock
This command is used for retrieving the value from the value block. This command is only valid
for value block.
APDU Format:
Command CLA
FF
INS
B1
P1
00
P2 Lc
04ReadValueBlock Block Number
Block Number:1 Byte,the value block to be accessed.
Answer:
Response
Result
Data Out
SW1Value SW2
Value: 4Bytes.The value returned from the card. The value is a signed long integer.
5.5.7 RestoreValueBlock
This command is used to copy a value from a value block to another value block.
APDU Format:
Command
Restore
CLA
FF
INS
D7
P1
00
P2 Lc
02
Data
SourceBlock 03 Target Block
Source Block: 1 Byte,the value of the source value block will be copied to the target value block.
Target Block: 1 Byte,the value block to be restored. The source and target value blocks must be
in the same sector.
Answer:
Response
Result
Data Out
SW1 SW2
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5.6 Contactless Smart Card Operation Loop
5.6.1 ISO14443-4Card Operation
Basic Operation Loop:
Step 1 PuttheCPU card into ContactlessReader antenna field
Step 2 Connect Contactless Reader
Step 3 SendAPDU command
Example:
Get 8bytes Random
Send: 0xFF 00 FB 00 08 07 DA 04 0C 0C 01 00 01
Receive: 0x90 00
5.6.2 MIFARE 1K/4KCard Operation
Basic Operation Loop:
Step 1 Put theMIFARE 1K/4K card into Contactless Reader antenna field
Step 2 Connect Contactless Reader
Step 3 SendMIFARE 1K/4K card operation commands
Example:
Loading Reader Key
Send:
Receive: 0x90 00
Loading Card Key, Number 00h
0xFF 82 00 00 06 FF FF FF FF FF FF
Receive: 0x90 00
0xFF 82 A0 00 10 00 11 22 33 44 55 66 77 88 99 AA BB CC DD EE FF
Send:
Ciphertext Load Card Key, Number 01h, The key plaintext is { FF FF FF FF FF FF }
Send: 0xFF 82 60 01 08 C0 D6 1E B0 84 F9 43 57
Receive: 0x90 00
Get Data
Send: 0xFF CA 00 00 00
Receive: 0x03 12 94 DD 90 00
Authenticate 04 Block Via Type A Key Which Is Stored In 00 Position.
0xFF 86 00 00 05 01 00 04 60 00
Receive: 0x90 00
Write Data Into 04 Block
0xFF D6 00 04 10 01 02 03 04 05 06 07 08 09 0A 0B 0C 0D 0E 0F 00
Send:
Send:
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Receive: 0x90 00
Read Data From 04/05 Block
Send: 0xFF B0 00 04 20
Receive: 0x01 02 03 04 05 06 07 08 09 0A 0B 0C 0D 0E 0F 00 FF FF FF FF FF FF FF FF FF FF FF
FF FF FF FF FF 90 00
Purse Initialization
Send:
Receive: 0x90 00
Purse Increment
FF D7 00 04 05 01 05000000
Receive: 0x90 00
Purse Decrement
FF D7 00 04 05 02 0A000000
Receive: 0x90 00
Purse Copy
0xFF D7 00 04 02 03 05
Receive: 0x90 00
Read Purse Value
0xFF B1 00 05 04
0xFF D7 00 04 05 00 00000000
Send:
Send:
Send:
Send:
Receive: 0xF6 FF FF FF 90 00
5.6.3 MIFAREUltra Light Card Operation
BasicOperation Loop:
Step 1 Put the MIFARE Ultra Lightcard into Contactless Reader antenna field
Step 2 Connect Contactless Reader
Step 3 Send MIFARE Ultra Light card operation commands
Example:
Loading Card Key, Number 05h
Send: 0xFF 82 20 05 10 49 45 4D 4B 41 45 52 42 21 4E 41 43 55 4F 59 46
Receive: 0x90 00
Get Data
Send: 0xFF CA 00 00 00
Receive: 0x04 0E 8B 8A 7C 3B 80 90 00
Mifare Ultralight C certification
Send:
Receive: 0x90 00
Write data into 4 block
0xFF 86 00 00 05 01 00 00 00 05
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Send: 0xFF D6 00 04 04 00 01 02 03
Receive: 0x90 00
Write data into 5~7 block
0xFF D6 00 05 0C 04 05 06 07 08 09 0A 0B 0C 0D 0E 0F
Receive: 0x90 00
Read data from 4~12 block
0xFF B0 00 04 20
Send:
Send:
Receive: 0x00 01 02 03 04 05 06 07 08 09 0A 0B 0C 0D 0E 0F 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 90 00
6 SAM Readers Commands
IMPORTANT: SAM(s) need to install before the reader power up. After connect to SAM readers,
users could send APDU to SAM directly.
For the MR881 card reader, the operation of SAM card requires the DEVICE Controller to be
connected, and the default automatically selects the SAM1 card.
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7 Device Controller Commands
This part of APDU is about the operation of “DEVICE” controller.
The “DEVICE”controller is included these components: LCD, RTC, FLASH MEMORY, LED, and
BUZZER.
7.1 Switch Current Operating Smart Card
This function is aim to switch SAM card.
Note: Format 1 is only supported by MR88x, and Format 2 is supported by MR88x, MR79xx.
APDU Format 1:
Command Class
FF
INS
00
P1 P2
00
Lc
01
Data
SwitchCard FA CurSmartCard
APDU Format 2:
Command
SwitchCard
Class
FF
INS
00
P1
61
P2
00
Lc
01
Data
CurSmartCard
CurSmartCard:
0x00 - StandardCPUCard
0x01 - SAM1Card
0x02 - SAM2Card
0x03 - SAM3Card
0x04 - SAM4Card
Answer:
Response
Result
Data Out
SW1 SW2
7.2 Reset SAM Card
Reset SAM card manually.
Note: Format 1 is only supported by MR88x, and Format 2 is supported by MR88x, MR79xx.
APDU Format 1:
Command
RstCard
Class
FF
INS
00
P1
60
P2
00
Lc
01
Data
SAMNo
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APDU Format 2:
Command
RstCard
Class
FF
INS
00
P1
60
P2
00
Lc
03
Data
Parameter
Parameter: SAMNO(1Byte) + RSTBOUND(1Byte) + SAMPPS(1Byte)
SAMNO:
0x00 - StandardCPUCard
0x01 - SAM1Card
0x02 - SAM2Card
0x03 - SAM3Card
0x04 - SAM4Card
RSTBOUNDReset Baud Rate
SAMPPSCommunication Baud Rate
0x00 - 9600
0x01 - 19200
0x02 - 38400
0x03 - 55800
0x04 - 57600
0x05 - 115200
0x06 - 230400
Answer:
Response
Result
Data Out
SW1
ATR SW2
7.3 Set PPSS of SAM Card
Note: This command only supported by MR801/MR811/MR8111/MR881.
This is the PPS command of ISO7816. It is need to be the 1
st APDU of the SAM card after reset.
APDU Format:
Command Class
FF
INS
00
P1
60
P2
10
Lc
02
Data
SetSamBaud SAMn+Baudrate
SAMn:
0x00 - StandardCPUCard
0x01 - SAM1Card
0x02 - SAM2Card
0x03 - SAM3Card
0x04 - SAM4Card
Baudrate:
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0x00 - 9600(Default)
0x01 - 19200
0x02 - 38400
0x03 - 55800
0x04 - 57600
0x05 - 115200
0x06 - 230400
Answer:
Response
Result
Data Out
SW1 SW2
7.4 Automatically Set SAM Baud Rate (Set PPS)
Note: This command only supported by MR801/MR811/MR8111/MR881.
This function is aim to according to SAM Reset Information (ATR) parameters in the automatic set of
SAM baudrate.Default is not enable. This parameter is set to save when power is off.
APDU Format:
Command Class
FF
INS
00
P1
60
P2
14
Lc
01
Data
AutoSetBaud Status
Status:
0x00: disenable
0x01: enable
Answer:
Response
Result
Data Out
SW1 SW2
7.5 Set SAM Baud Rate after Reset
Note: This command only supported by MR801/MR811/MR8111/MR881.
This function is aim to set SAM Baud Rate after Reset. The SAM card slots which can be supported
by each Reader are different. (MR800 has 2 SAM slots). Usually, the default SAM Baud Rate after
Reset is 9600bps. Before sending GetData APDU to Reset SAM card, if you want to modify the SAM
Baud Rate after Reset, you can use this APDU command to set the new Baud Rate Value. (Note: this
SAM card must support the Baud Rate to be set). This parameter is set to save when power is off.
APDU Format:
Command Class INS P1 P2 Lc Data
SetRstSamBaud FF 00 60 11 02 SAMn Baudrate
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SAMn:
0x00 - StandardCPUCard
0x01 - SAM1Card
0x02 - SAM2Card
0x03 - SAM3Card
0x04 - SAM4Card
Baudrate:
0x00 - 9600(Default)
0x01 - 19200
0x02 - 38400
0x03 - 55800
0x04 - 57600
0x05 - 115200
0x06 – 230400
Answer:
Response
Result
Data Out
SW1 SW2
7.6 Read Default Baud Rate of SAM Card
Note: This command only supported by MR801/MR811/MR8111/MR881.
APDU Format:
Command Class
FF
INS
00
P1
60
P2
12
Lc
01
Data
ReadRstBaud SAMn
SAMn:
0x00 - StandardCPUCard
0x01 - SAM1Card
0x02 - SAM2Card
0x03 - SAM3Card
0x04 - SAM4Card
Answer:
Response
Result
Data Out
RstBaud SW1 SW2
RstBaud:
0x00 - 9600(Default)
0x01 - 19200
0x02 - 38400
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0x03 - 55800
0x04 - 57600
0x05 - 115200
0x06 – 230400
Example:
Reset SAM1
Send: 0xFF 00 60 00 01 01
Receive: 0x3B 6C 00 02 43 21 86 38 07 54 42 00 16 0E 62 3B 90 00
Set PPS 38400
Send:
Receive: 0x90 00
Get Random
0x00 84 00 00 08
0xFF 00 60 10 02 01 02
Send:
Receive: 0xF9 B5 69 7A CC 39 D0 DE 90 00
Set SAM2 Reset Baud Rate 38400
Send:
Receive: 0x90 00
Read Default Baud Rate Of SAM2
0xFF 00 60 12 01 02
Receive: 02 90 00
Reset SAM2
0xFF 00 60 00 01 02
0xFF 00 60 11 02 02 02
Send:
Send:
Receive: 0x3B 69 00 00 44 01 9F 92 D9 29 47 25 20 90 00
Get Random
Send: 0x00 84 00 00 08
Receive: 0x15 1E A3 53 C4 BC 73 34 90 00
7.7 Set Card Operation Mode
Some ISO14443-4 card combined with a MIFARE 1 card. The SAK will indicate it is a
ISO14443-4 card. This command is use for set the reader to operate the card by mothed of MIFARE 1.
APDU Format:
Command
Set Mode
CLA
FF
INS
00
P1
FF
P2
10
Lc
01
Data
SETTING
SETTING:
0x00: Operate the card use ISO14443-4 mothed
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0x01: Operate the card use MIFARE 1 mothed
Note: remove card is needed after this command.
Answer:
Response
Result
Data Out
SW1 SW2
Example:
Get Random
0xFF 00 FF 10 01 01Send:
Receive: 0x90 00
7.8 RTC Time Initialize
Initialize theInternal Clock of the Reader.
APDU Format:
Command
InitialRTC
Class
FF
INS
00
P1 P2
00
Le
08
Data
TimeFB
Time:
Year (High Byte) + Year(Low Byte) + Month + Date + Hour + Minute + Second + Week
Example:
2010 - 4 - 12 12:01:00 Monday : Time in hex = 0x07 DA 04 0C 0C 01 00 01
Answer:
Response
Result
Data Out
SW1 SW2
7.9 RTC Time Read
Read time from RTC of reader.
APDU Format:
Command
ReadRTC
Class
FF
INS
00
P1 P2
01
Lc
08FB
Answer:
Response
Result
Data Out
SW1Time SW2
Time:
Year (High Byte) + Year(Low Byte) + Month + Date + Hour + Minute + Second + Week
Example:
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2010 - 4 - 12 12:01:00 Monday : Time in hex = 0x07 DA 04 0C 0C 01 00 01
Set and Read Time
Send: 0xFF 00 FB 00 08 07 DA 04 0C 0C 01 00 01
Receive: 0x90 00
Send: 0xFF 00 FB 01 08
Receive: 0x07 DA 04 0C 0C 03 15 01 90 00
7.10 RTC TimeDisplay on LCD Format Set
Set the time display format on LCD.
APDU Format:
Command
DisTime
Class
FF
INS
00
P1 P2
02
Lc
03
Data
DataFB
Data: EnableFag(1Byte) + Line(1Byte) + Column(1Byte)
EnableFag:Date display enable (0-Disable, 1-Enable)
Line:The start display line (0~7 or 0~12) (LCD resolution:128*64 or 240*128)
Column:The start display column (0~127 or 0~239)( Same as above)
Answer:
Response
Result
Data Out
SW1 SW2
Example:
Time Display OFF
Send: 0xFF 00 FB 02 03 00 00 00
Receive: 0x90 00
Time Display ON
Send: 0xFF 00 FB 02 03 01 03 05
Receive: 0x90 00
7.11 RTC DateDisplay on LCD Format Set
Set the date display format on LCD.
APDU Format:
Command
DisDate
Class
FF
INS
00
P1 P2
03
Lc
03
Data
DataFB
Data: EnableFag(1Byte) + Line(1Byte) + Column(1Byte)
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EnableFag:Date display enable (0-Disable, 1-Enable)
Line:The start display line (0~7 or 0~12) (LCD resolution:128*64 or 240*128)
Column:The start display column (0~127 or 0~239)( Same as above)
Answer:
Response
Result
Data Out
SW1 SW2
Example:
Date Display OFF
Send: 0xFF 00 FB 03 03 00 00 00
Receive: 0x90 00
Date Display ON
Send: 0xFF 00 FB 03 03 01 03 05
Receive: 0x90 00
7.12 Set The Date Display Format
MR88x special instruction.
APDU Format:
Command Class
FF
INS
00
P1 P2
04
Lc
01
Data
DateFormat FB USdateformat
Usdateformat:
0x00 : YYYY-MM-DD(Default)
0x01 : MM-DD-YYYY
Answer:
Response
Result
Data Out
SW1 SW2
7.13 Set Non-English Font Display
Switch none-English font display method. (Any Language could be support, contact us please)
APDU Format:
Command Class
FF
INS
00
P1 P2
00
Lc
01
Data
Display Font FC FontType
FontType:
0x01: Simplify Chinese
0x02: Traditional Chinese
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0x03: Russian
Answer:
Response
Result
Data Out
SW1 SW2
Example:
Send: 0xFF 00 FC 00 01 01
Receive: 0x90 00
7.14 Read Non-English Font Display Setting
Read the setting of none-English font display.
APDU Format:
Command
Read Font
Answer:
Class
FF
INS
00
P1 P2
01
Le
01FC
Response
Result
Data Out
SW1CharacterSet SW2
Example:
Send: 0xFF 00 FC 00 01 02
Receive: 0x90 00
Send: 0xFF 00 FC 01 01
Receive: 0x02 90 00
7.15 Set Display Font Pixel
MR88x special instruction.
MR881 support 16, 24 and 32 pixel display fonts. This instruction could switch the display font pixel.
APDU Format:
Command Class
FF
INS
00
P1 P2 Lc
01
Data
SetFontPixel FC 0A FontPiexl
FontPiexl:
0x00 = 16pixel
0x01 = 24pixel
0x02 = 32pixel (system default, not save after repower)
Answer:
Response
Result
Data Out
SW1 SW2
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Remark: Russian support 32 pixel only.
Example:
Send: FF 00 FC 0A 01 00
90 00
Receive:
7.16 LCD Display Text on LCD
Display Text on LCD.
One Chinese font - 2Byte; One English font - 1Byte; One Russian font - 1Byte.
APDU Format:
Command Class
FF
INS
00
P1 P2
02
Lc Data
DataDisplayText FC nByte
Data: Configure(1Byte) + (1Byte) + Row Column(1Byte) + (nBytes)DisplayData
Configure:
Bit
B0
Value Instructions
0
1
Positive Display
Negative Display
Before showing new information on the screen, no any
delete the old ones
00
01
10
Before showing new information on the screen, only to
clear the row of the showed screen
B2~B1
Before showing new information on the screen, delete
the all old ones
0
1
BackLight off
BackLight on
RFU
B3
B7~b4 RFU
Row:
Value Instructions
0~7
0~7
LCD resolution 128*64(1Row = 16 dot High)
LCD resolution 240*128 32 pixel font (1Row = 32 dot High)
LCD resolution 240*128 24 pixel font (1Row = 24 dot High)
LCD resolution 240*128 16 pixel font (1Row = 16 dot High)
0~0x09
0~0x0F
Column: (0~7 or 0~12) (LCD resolution:128*64 or 240*128)
Display Data: One Chinese font - 2Byte, One ASCII or Russian font – 1Byte.
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Answer:
Response
Result
Data Out
SW1 SW2
Example:
Showing "QUIO-RFID" on the top left corner of LCD displayer with "Positive Display", "Before
showing new information on the screen, no any delete the old ones" and"BackLight off" .
Send: 0xFF 00 FC 02 09 00 00 00 BD F0 C4 BE D3 EA
Receive: 0x90 00
7.17 LCD Display Character String at Any Point
MR88x special instruction.
This function is aim to set the specified number of characterson LCD at ANY POINT.
APDU Format:
Command Class
FF
INS
00
P1 P2
09
Lc Data
DataDisplayText FC nByte
Data: Configure(1Byte) + (1Byte) + Row Column(1Byte) + (nBytes)DisplayData
Configure:
Bit
B0
B1
B2
Value
0
Instructions
Positive Display
Negative Display
RFU
1
RFU
0keep screen
1 clear screen
BackLight off
BackLight on
0
B3
1
01
10
11
RFU
display character with 16 pixel font
display character with 24 pixel font
display character with 32 pixel font
RFU
B5~B4
B7~b6
Row: 0 ~ 127 dot
Column: 0 ~ 239 dot
Display Data: One Chinese font - 2Byte, One ASCII or Russian font – 1Byte.
Answer:
Response
Result
Data Out
SW1 SW2
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Example:
Showing "QUIO-RFID" on the top left corner of LCD displayer with "Positive Display", "Before
showing new information on the screen, no any delete the old ones" and"BackLight off" .
Send: 0xFF 00 FC 02 09 00 00 00 BD F0 C4 BE D3 EA
Receive: 0x90 00
7.18 LCD Display Picture (Directly send picture data)
This function is aim to display the specified size picture. If the showing picture is large, it needs
several times to be displayed.
APDU Format:
Command
DisPicture
Class
FF
INS
00
P1 P2
03
Lc Data
Data
FC nByte
Data: Configure(1Byte) + (1Byte) + Row Column(1Byte) + (1Byte)PictureWidth +
PictureHigh(1Byte) + DisplayData(nBytes)
Configure:
Bit Value Instructions
0
1
Positive Display
Negative Display
B0
Before showing new information on the screen, no any
delete the old ones
00
01
10
Before showing new information on the screen, only to
clear the row of the showed screen
B2~B1
Before showing new information on the screen, delete
the all old ones
0
1
BackLight off
BackLight on
RFU
B3
B7~b4 RFU
Row 1Row = 8 dot High : 0~7 or 0~15(LCD resolution:128*64 or 240*128)
Column:0 ~ 127 or 0~239 (Same as above)
PictureWidth: 1~128 or 0~240, Width of the picture(Same as above)
PictureHigh: 1~8 or 0~16, Picture height(Same as above)
DisplayData: Picture data to be displayed (Bytes = Width*Height)
Answer:
Response
Result
Data Out
SW1 SW2
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APDU Format:
Command
PowerOnPIC
Class
FF
INS
00
P1 P2
05
Lc
08
Data
DataFC
Date: Enable(1Byte) + SaveAddr(2Byte) + (1Byte) + (1Byte) + (1Byte) +Width High StartLine
StartColumn(1Byte) + Time(1Byte)
Enable: 0-Enable Boot Screen, 1-Disable Boot Screen
SaveAddr: Save the Boot Screen in the Flash; Address LSB first
Width:Width of the image (1~128 or 1~240)( LCD resolution:128*64 or 240*128)
High:Image height (1~8 or 1~16) (Same as above)
StartLine:Displaystart line (0~7 or 1~15) (Same as above)
StartColumn:Display start column (0~127 or 1~239) (Same as above)
Time:To set the time of the Boot Screen (Unit: S)
Answer:
Response
Result
Data Out
SW1 SW2
Note:
If the Boot Screen OFF, the following parameters are meaningless.
The Boot Screen stored in external FLASH of the reader. Thefonts stored totallyin the
1303(0~1302) Blocks with MR801, 10360(0 ~ 10359) blocks with MR881, the user can not erase or
set the above Blocks. Forusers' use the block number is 1303 ~ 8191 of MR801, forusers' use the
block number is 10360~ 16383 of MR881, each block size is 512 bytes.
Before the Boot Screen Enable, the Screen picture data need be written into the Flash
"SaveAddr" via "FlashWrite APDU" command. If the picture is larger than 512 bytes, the extra bytes
will be written into the following block.
The image dimension = Width*High
Example:
Set a Boot Screen picture, the picture is 128*64. (The picture data need be written into the
FLASH)
Send:
FF 00 FD 01 84 05 17 00 00
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 00 00 00 00 01 07 3F 3F 3F
1F 07 01 00 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
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Receive: 90 00
Send:
FF 00 FD 01 84 05 17 00 80
00 00 00 00 00 00 00 00 00 00 7C 7F 7F7F 3F 3F
3F 3F 1F 1F1F 0F 0F 07 07 03 7F FF FF FF FF FF
FF FFFF 7D 03 07 07 0F 0F 1F 1F1F 3F 3F 3F 3F
7F 7F7F 78 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 00 01 03 03 0D 39 71 31 0D 07 07
03 03 01 00 00 04 04 04 04 05 07 7F 27 05 04 04
0C 0C 00 00 30 37 37 37 35 34 3F 3F 37 35 34 37
37 30 00 00 00 00 00 00 00 00 00 00 00 00 00 00
Receive: 90 00
Send:
FF 00 FD 01 84 05 17 01 00
00 00 00 00 00 00 00 00 00 00 00 C0 F0 FC FF FF
FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF
BF 7F FF FF FF FF FF FF FF FF FF FF FF FF FF FF
FC F0 80 00 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 83 A2 32 3A 2E 26 FE FE 26 3E 3A
62 22 02 00 04 0C 18 30 60 C0 00 FF 00 C0 60 30
18 18 08 00 00 FF FE 20 B8 90 FE FE 20 BA 03 FF
FC 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
Receive: 90 00
Send:
FF 00 FD 01 84 05 17 01 80
00 00 00 06 0F 0F 1F 1F 3F 3F 7F 7F7F7F7F BF
FF EF FF FF FF FF FF FF FF FF FF FF FF FF FF FF
FF FF FF FF FF FF FF FF FF FF FF F6 FF FF FF 7F
7F 7F 7F 7F 3F 3F 1F 1F 0F 0F 07 00 00 00 00 00
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
Receive: 90 00
Send:
FF 00 FD 01 84 05 18 00 00
00 00 00 00 00 00 80 80 C0 C0 E0 E0E0 E3 EF DF
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FF 7F FF FF FF FF FF FF FF FF FF FF FF FF FF FF
FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF EF
E3 E0 E0 E0 C0 C0 80 80 00 00 00 00 00 00 00 00
00 00 00 00 00 00 08 0E 06 01 05 05 05 1F 1D 05
05 05 01 00 00 02 0E 0C 09 0B 08 08 08 08 08 0B
0F 0C 00 00 00 00 0F 0F 09 0F 0F 00 0F 09 09 0F
0F 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
Receive: 90 00
Send:
FF 00 FD 01 84 05 18 00 80
00 00 00 00 00 00 00 00 00 00 03 1F FF FF FF FF
FF FF FF FF FF FF FF FE FE FC FF FF FF FF FF FF
FF EF FF FB FC FE FE FF FF FF FF FF FF FF FF FF
FF FF 1F 01 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 C0 C0 FF FF 87 36 5C 6C 27 7F 7D
05 C4 8C 00 00 04 06 06 F6 D6 96 96 96 96 96 96
BF B8 00 00 44 64 EF EF 5C F7 EF E0 EF B4 DC 6F
6F 6C 28 00 00 00 00 00 00 00 00 00 00 00 00 00
Receive: 90 00
Send:
FF 00 FD 01 84 05 18 01 00
00 00 00 00 00 00 00 00 00 00 E0 E0E0E0E0 C0
C0 C0 80 80 80 00 00 00 00 00 F0 FC FE FF FF FF
FF FE F8 E0 00 00 00 00 00 80 80 80 C0 C0C0 E0
E0 E0 E0 E0 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 80 80 40 40 C0 80 80 00 00
80 C0 40 00 00 00 00 00 00 00 00 00 80 80 C0 C0
80 00 00 00 00 00 C0 C0 80 C0 80 00 C0 80 80 C0
80 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
Receive: 90 00
Send:
FF 00 FD 01 84 05 18 01 80
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 00 00 00 00 00 00 C0 C0C0
80 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
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00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
Receive: 90 00
Send: FF 00 FC 05 08 01 17 05 80 08 00 00 05
Receive: 90 00
7.22 Set Standby Screen on LCD
This function is aim to set the standby screen. If no setting, after finished the User's interface
display, it won't return to the standby screen. All pictureswill be stored in FLASH.
APDU Format:
Command
IdlePIC
Class
FF
INS
00
P1 P2
06
Lc
08
Data
DataFC
Date: Configure (1Byte) + (2Byte) + SaveAddr Width(1Byte) + (1Byte) + High StartLine(1Byte) +
StartColumn(1Byte) + Time(1Byte)
Configure:
Bit Value Instructions
Enable Standby Screen0
1
B0
Disable Standby Screen
Before showing new information on the screen, no any
delete the old ones
00
01
10
Before showing new information on the screen, only to
clear the row of the showed screen
B2~B1
Before showing new information on the screen, delete
the all old ones
0
1
BackLight off
BackLight on
RFU
B3
B7~b4 RFU
SaveAddr: Save the Boot Screen in the Flash; Address LSB first
Width:Width of the image (1~128 or 1~240)( LCD resolution:128*64 or 240*128)
High:Image height (1~8 or 1~16) (Same as above)
StartLine:Displaystart line (0~7 or 1~15) (Same as above)
StartColumn:Display start column (0~127 or 1~239) (Same as above)
Time:Set operation interval time, if no further operation, then the LCD screen enter into the
standby screen (Unit: S).
Answer:
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Response
Result
Data Out
SW1 SW2
Note:
If the standby Screen OFF, the following parameters are meaningless.
The standby Screen stored in external FLASH of the reader. Thefonts stored totallyin the
1303(0~1302) Blocks with MR801, 10360(0 ~ 10359) blocks with MR881, the user can not erase or
set the above Blocks. Forusers' use the block number is 1303 ~ 8191 of MR801, forusers' use the
block number is 10360~ 16383 of MR881, each block size is 512 bytes.
Before the StandbyScreen Enable, the Screen picture data need be written into the Flash
SaveAddr via "FlashWrite APDU" command. If the picture is larger than 512 bytes, the extra bytes
will be written into the following block.
The image dimension = Width*High
As to how to operate, please refer to the SDK for "Set Boot Screen on LCD", but notice the
storage address in FLASH.
7.23 LCD Backlight Control
APDU Format:
Command Class
FF
INS
00
P1 P2
07
Lc
02
Data
LCDBackLight FC Mode + Time
Mode:
00 - OFF
01 - ON
02 - Specified time on (Time data is valid)
Time: Only in "Mode=2"are valid (Unit:S)
Answer:
Response
Result
Data Out
SW1 SW2
Example:
LCD BackLight is on and last 15s
Send: 0xFF 00 FC 07 02 02 0F
Receive: 0x90 00
7.24 LCD Display a Screen Stored in FLASH
APDU Format:
Command Class
FF
INS
00
P1 P2
08
Lc
09
Data
DataDisplayPIC FC
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Data: Configure (1Byte) + (2Byte) + (1Byte) + (1Byte) + DisAddr Width High StartLine(1Byte) +
StartColumn(1Byte)
Configure:
Bit
B0
Value
RFU
Instructions
RFU
Before showing new information on the screen, no any
delete the old ones
00
01
10
Before showing new information on the screen, only to
clear the row of the showed screen
B2~B1
Before showing new information on the screen, delete
the all old ones
0
1
BackLight off
BackLight on
RFU
B3
B7~B4 RFU
DisAddr:the savedAddress in the Flash; LSB first.
Width:Width of the image (1~128 or 1~240)( LCD resolution:128*64 or 240*128)
High:Image height (1~8 or 1~16) (Same as above)
StartLine:Displaystart line (0~7 or 1~15) (Same as above)
StartColumn:Display start column (0~127 or 1~239) (Same as above)
Answer:
Response
Result
Data Out
SW1 SW2
Example:
Display the Screen Picture from Address1303 in FLASH
Send: 0xFF 00 FC 08 09 0C 17 05 80 08 00 00
Receive: 0x90 00
7.25 Read Data from FLASH
The Flash on MR801/MR811 is AT45DB321 (MR881 isAT45DB641).From address0 to address1302,
these are used to store the fonts (MR881 is address0 to address10359), so please don't read or write
them.For users' use the block number is 1303 ~ 8191 of MR801/MR811, for users' use the block
number is 10360~ 16383 of MR881, each block size is 512 bytes.
APDU Format:
Command
ReadFlash
Class
FF
INS
00
P1 P2
00
Lc
06
Data
Data
FD
Data: BlockAddr (2Byte) + (2Byte) + (2Byte)ByteAddr Len
BlockAddr: Block Address (MSB first)
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ByteAddr: The start byte address in Block (MSB first)
Len :The length of Byte to be read (MSB first),Len256
Answer:
Response
Result
Data Out
SW1
Flash Data SW2
Example:
Read 2bytes from Block2 in Flash, the start address is 0002
Send: 0xFF 00 FD 00 06 00 02 00 02 00 02
Receive: 0x18 08 90 00
7.26 Write Data to FLASH
The Flash on MR801/MR811 is AT45DB321 (MR881 isAT45DB641).From address0 to address1302,
these are used to store the fonts (MR881 is address0 to address10359), so please don't read or write
them. For users' use the block number is 1303 ~ 8191 of MR801/MR811, for users' use the block
number is 10360~ 16383 of MR881, each block size is 512 bytes.
APDU Format:
Command
WriteFlash
Class
FF
INS
00
P1 P2
01
Lc Data
DataFD 04+n
Data: BlockAddr (2Byte) + (2Byte) + ByteAddr nData (nBytes)
BlockAddr: Block Address (MSB first)
ByteAddr: The start byte address in Block (MSB first)
nData:Data to be written
Answer:
Response
Result
Data Out
SW1 SW2
Example:
Write 1bytes into Block0616 in Flash, the start address is 0002
Send: 0xFF 00 FD 01 05 06 16 00 02 01
Receive: 0x90 00
7.27 Get Device SNR
APDU Format:
Command
GetSNR
Class
FF
INS
00
P1
FF
P2
00
Le
0A
Answer:
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Response
Result
Data Out
SW1Product SNR SW2
Example:
Send: 0xFF 00 FF 00 0A
Receive: 0x01 05 07 09 09 04 03 08 06 09 90 00
7.28 Get Hardware and Firmware Version
APDU Format:
Command
GetVer
Class
FF
INS
00
P1
FF
P2
01
Le
04
Answer:
Response
Result
Data Out
HandwareVer 2Byte + Software Ver( ) ( )2Byte SW1 SW2
Example:
Send: 0xFF 00 FF 01 04
Receive: 0x01 00 02 02 90 00
7.29 Set LED
APDU Format:
Command
LEDCtr
Class
FF
INS
00
P1
FF
P2
02
Lc
05
Data
Data
Data:LEDstate(1Byte)+ (1Byte)+ (1Byte)+ (1Byte)+ (1Byte)StateMask T1 T2 Number
LEDState:
BIT0 = Red light final state (1 - ON, 0 - OFF)
BIT1 = Green light final state (1 - ON, 0 - OFF)
BIT2 = Blue light final state (1 - ON, 0 - OFF)
BIT3 = Yellow light final state (1 - ON, 0 - OFF)
BIT4 = Red light flashing in the initial state (1 - ON, 0 - OFF)
BIT5 = Green light flashing in the initial state (1 - ON, 0 - OFF)
BIT6 = Blue light flashing in the initial state (1 - ON, 0 - OFF)
BIT7 = Yellow light flashing in the initial state (1 - ON, 0 - OFF)
StateMask:
BIT0 = Red state update mask (1 - Update, 0- Maintenance)
BIT1 = Green state update mask (1 - Update, 0- Maintenance)
BIT2 = Blue state update mask (1 - Update, 0- Maintenance)
Copyright © 2003-2021 uick-Ohm K pper & Co. GmbH. All rights reserved. 38/42Q ü


Specyfikacje produktu

Marka: QUIO
Kategoria: Niesklasyfikowane
Model: QU-DR-791

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