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ACR100I – Reference Manual

 

[email protected] 

Version 1.00 

www.acs.com.hk 

Page 7 of 20

 

 

 

5.0. Smart Card Interface 

The interface between the ACR100I and the inserted smart card follows the specifications of ISO 
7816-3. 

5.1.  Smart Card Power Supply VCC (C1) 

The current consumption of the inserted card must not be higher than 50 mA. 

5.2.  Programming Voltage VPP (C6) 

According to ISO 7816-3, the smart card contact C6 (VPP) supplies the programming voltage to the 
smart card. Since all common smart cards in the market are EEPROM based and do not require the 
provision of an external programming voltage, the contact C6 (VPP) has been implemented as a 
normal control signal in the ACR100I. The electrical specifications of this contact are identical to those 
of the single RST (at contact C2).  

5.3.  Card Type Selection 

The controlling computer has to always select the card type through the proper command sent to the 
ACR100I prior to activating the inserted card. This includes both the memory cards and MCU-based 
cards. For MCU-based cards, the reader allows to select the preferred protocol, T=0 or T=1, however, 
this selection is only accepted and carried out by the reader through the PPS when the card inserted 
in the reader supports both protocol types. Whenever an MCU-based card supports only one protocol 
type, T=0 or T=1, the reader automatically uses that protocol type, regardless of the protocol type 
selected by the application.  

5.4.  Interface for Microcontroller-based Cards 

For microcontroller-based smart cards, only the contacts C1 (VCC), C2 (RST), C3 (CLK), C5 (GND), 
and C7 (I/O) are used. A frequency of 4 MHz is applied to the CLK signal (C3).  

5.5.  Card Tearing Protection 

The ACR100I provides a mechanism to protect the inserted card when it is suddenly withdrawn while 
it is powered up. The power supply to the card and the signal lines between the ACR100I and are 
immediately deactivated when the card is being removed. As a rule, however, to avoid any electrical 
damage, 

a card should only be removed from the reader while it is powered down.

  

Note:  The ACR100I never switches on the power supply to the inserted card by itself. This must be 
explicitly be done by controlling the computer through the proper command sent to the reader. 

Содержание ACR100I

Страница 1: ...Subject to change without prior notice info acs com hk www acs com hk Reference Manual V1 00 ACR100I SIMFlash II CCID SIMFlash with Embedded MIFARE...

Страница 2: ...VCC C1 7 5 2 Programming Voltage VPP C6 7 5 3 Card Type Selection 7 5 4 Interface for Microcontroller based Cards 7 5 5 Card Tearing Protection 7 6 0 USB Interface 8 6 1 Communication Parameters 8 6...

Страница 3: ...rage device Users can now store personal files in a secured way with the NAND flash onboard the ACR100I Various options for partitioning the flash drive are also available Private Security Public and...

Страница 4: ...o Supports Specification 11 11 compliant GSM cards o Supports PPS Protocol and Parameters Selection o Features Short Circuit Protection Application Programming Interface o Supports PC SC o Supports CT...

Страница 5: ...memory via USB port connection The flash memory is available for the end user to use as storage In Windows Explorer the device is detected as a removable disk The ACR100I is powered from the USB port...

Страница 6: ...on 200 ms for every 2 seconds Indicates that the ACR100I is powered up and in the standby state Either the smart card has not been inserted or the smart card has not been powered up if it is inserted...

Страница 7: ...MCU based cards the reader allows to select the preferred protocol T 0 or T 1 however this selection is only accepted and carried out by the reader through the PPS when the card inserted in the reader...

Страница 8: ...ose Bulk OUT For command to be sent from host to Device data packet size is 512 bytes Bulk IN For response to be sent from Device to host data packet size is 512 bytes Pin Signal Function 1 VBUS 5 V p...

Страница 9: ...bMaxCCIDBusySlots is equal to 1 for ACR100I The supported CCID features by ACR100I are indicated in its Class Descriptor Offset Field Size Value Description 0 bLength 1 36h Size of this descriptor in...

Страница 10: ...c baud rate change according to frequency and FI DI parameters TPDU level exchange with ACR100I 44 dwMaxCCIDMessageLength 4 0000010Fh Maximum message length accepted by ACR100I is 271 bytes 48 bClassG...

Страница 11: ...owerSelect 1 Voltage that is applied to the ICC 00h Automatic Voltage Selection 01h 5 volts 02h 3 volts 7 abRFU 2 Reserved for future use The response to this message is the RDR_to_PC_DataBlock messag...

Страница 12: ...ing Time has expired 8 wLevelParameter 2 0000h RFU TPDU exchange level 10 abData Byte array Data block sent to the CCID Data is sent as is to the ICC TPDU exchange level The response to this message i...

Страница 13: ...owing values are reserved for future use 80h Structure for 2 wire protocol 81h Structure for 3 wire protocol 82h Structure for I2C protocol 8 abRFU 2 Reserved for future use 10 abProtocolDataStructure...

Страница 14: ...e 8 in ISO IEC 7816 3 1997 selecting a baud rate conversion factor 11 BmTCCKST1 1 B7 2 000100b B0 Checksum type b0 0 for LRC b0 1 for CRC B1 Convention used b1 0 for direct b1 1 for inverse Note The C...

Страница 15: ...ed in CCID Section 4 2 1 8 bError 1 Slot error register as defined in CCID Section 4 2 1 and its specifications in Section 5 2 8 9 bChainParameter 1 00h RFU TPDU exchange level 10 AbData Byte array Th...

Страница 16: ...message 6 bSeq 1 Same value as in Bulk OUT message 7 bStatus 1 Slot status register as defined in CCID Section 4 2 1 8 bError 1 Slot error register as defined in CCID Section 4 2 1 and its specificati...

Страница 17: ...ifications Command format abData field in the PC_to_RDR_XfrBlock Pseudo APDU CLA INS P1 P2 Lc FFh 09h 00h 00h 10h Response data format abData field in the RDR_to_PC_DataBlock FIRMWARE MAX_C MAX_R C_TY...

Страница 18: ...action between the Host computer and storage devices The configurations and usage of USB endpoints on ACR100I shall follow Mass Storage Class Bulk Only Transport in Section 3 Protocol Code of the USB...

Страница 19: ...0 or T 1 communication protocol 01h I2C memory card 1 2 4 8 and 16 kilobits 02h I2C memory card 32 64 128 256 512 and 1024 kilobits 03h Atmel AT88SC153 secure memory card 04h Atmel AT88SC1608 secure...

Страница 20: ...CC_CLASS_NOT_SUPPORTED F4h SLOTERROR_PROCEDURE_BYTE_CONFLICE F3h SLOTERROR_DEACTIVATED_PROTOCOL F2h SLOTERROR_BUSY_WITH_AUTO_SEQUENCE E0h SLOTERROR_CMD_SLOT_BUSY Android is a trademark of Google Inc A...

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