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MF1S5009DA4 Datasheet(PDF) 7 Page - NXP Semiconductors |
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MF1S5009DA4 Datasheet(HTML) 7 Page - NXP Semiconductors |
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7 / 32 page ![]() MF1S5009 All information provided in this document is subject to legal disclaimers. © NXP B.V. 2010. All rights reserved. Product data sheet PUBLIC Rev. 3 — 27 July 2010 189131 7 of 32 NXP Semiconductors MF1S5009 Mainstream contactless smart card IC 9. Functional description 9.1 Block description The MF1S5009 chip consists of a 1 kB EEPROM, RF interface and Digital Control Unit. Energy and data are transferred via an antenna consisting of a coil with a small number of turns which is directly connected to the MF1S5009. No further external components are necessary. Refer to the document Ref. 1 for details on antenna design. • RF interface: – Modulator/demodulator – Rectifier – Clock regenerator – Power-On Reset (POR) – Voltage regulator • Anticollision: Multiple cards in the field may be selected and managed in sequence • Authentication: Preceding any memory operation the authentication procedure ensures that access to a block is only possible via the two keys specified for each block • Control and Arithmetic Logic Unit: Values are stored in a special redundant format and can be incremented and decremented • EEPROM interface • Crypto unit: The CRYPTO1 stream cipher of the MF1S5009 is used for authentication and encryption of data exchange. • EEPROM: 1 kB is organized in 16 sectors with 4 blocks each. A block contains 16 bytes. The last block of each sector is called “trailer”, which contains two secret keys and programmable access conditions for each block in this sector. 9.2 Communication principle The commands are initiated by the reader and controlled by the Digital Control Unit of the MF1S5009 according to the access conditions valid for the corresponding sector. 9.2.1 Request standard / all After Power On Reset (POR) the card answers to a request REQA or wakeup WUPA command with the answer to request code (see Section 10.4, ATQA according to ISO/IEC 14443A). 9.2.2 Anticollision loop In the anticollision loop the identifier of a card is read. If there are several cards in the operating field of the reader, they can be distinguished by their identifier and one can be selected (select card) for further transactions. The unselected cards return to the idle state and wait for a new request command. The anticollision is done with two cascade levels as defined in ISO/IEC 14443-3, see also Ref. 6. |
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