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WO1997008929A2 - Carte a puce munie d'une puce, d'un banc de contacts, de bobines et/ou de condensateurs et d'une memoire pour echange d'energie et transmission de donnees de maniere galvanique ou non avec un lecteur et/ou un enregistreur - Google Patents

Carte a puce munie d'une puce, d'un banc de contacts, de bobines et/ou de condensateurs et d'une memoire pour echange d'energie et transmission de donnees de maniere galvanique ou non avec un lecteur et/ou un enregistreur Download PDF

Info

Publication number
WO1997008929A2
WO1997008929A2 PCT/DE1996/001587 DE9601587W WO9708929A2 WO 1997008929 A2 WO1997008929 A2 WO 1997008929A2 DE 9601587 W DE9601587 W DE 9601587W WO 9708929 A2 WO9708929 A2 WO 9708929A2
Authority
WO
WIPO (PCT)
Prior art keywords
galvanic
chip card
chip
energy
card according
Prior art date
Application number
PCT/DE1996/001587
Other languages
German (de)
English (en)
Other versions
WO1997008929A3 (fr
Inventor
Hans-Diedrich Kreft
Original Assignee
Angewandte Digital Elektronik Gmbh
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Angewandte Digital Elektronik Gmbh filed Critical Angewandte Digital Elektronik Gmbh
Priority to AU13645/97A priority Critical patent/AU1364597A/en
Publication of WO1997008929A2 publication Critical patent/WO1997008929A2/fr
Publication of WO1997008929A3 publication Critical patent/WO1997008929A3/fr

Links

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K19/00Record carriers for use with machines and with at least a part designed to carry digital markings
    • G06K19/06Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code
    • G06K19/067Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components
    • G06K19/07Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components with integrated circuit chips
    • G06K19/077Constructional details, e.g. mounting of circuits in the carrier
    • G06K19/07749Constructional details, e.g. mounting of circuits in the carrier the record carrier being capable of non-contact communication, e.g. constructional details of the antenna of a non-contact smart card
    • G06K19/07766Constructional details, e.g. mounting of circuits in the carrier the record carrier being capable of non-contact communication, e.g. constructional details of the antenna of a non-contact smart card comprising at least a second communication arrangement in addition to a first non-contact communication arrangement
    • G06K19/07769Constructional details, e.g. mounting of circuits in the carrier the record carrier being capable of non-contact communication, e.g. constructional details of the antenna of a non-contact smart card comprising at least a second communication arrangement in addition to a first non-contact communication arrangement the further communication means being a galvanic interface, e.g. hybrid or mixed smart cards having a contact and a non-contact interface
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K19/00Record carriers for use with machines and with at least a part designed to carry digital markings
    • G06K19/06Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code
    • G06K19/067Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components
    • G06K19/07Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components with integrated circuit chips
    • G06K19/0701Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components with integrated circuit chips at least one of the integrated circuit chips comprising an arrangement for power management
    • G06K19/0707Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components with integrated circuit chips at least one of the integrated circuit chips comprising an arrangement for power management the arrangement being capable of collecting energy from external energy sources, e.g. thermocouples, vibration, electromagnetic radiation
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K19/00Record carriers for use with machines and with at least a part designed to carry digital markings
    • G06K19/06Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code
    • G06K19/067Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components
    • G06K19/07Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components with integrated circuit chips
    • G06K19/0701Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components with integrated circuit chips at least one of the integrated circuit chips comprising an arrangement for power management
    • G06K19/0712Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components with integrated circuit chips at least one of the integrated circuit chips comprising an arrangement for power management the arrangement being capable of triggering distinct operating modes or functions dependent on the strength of an energy or interrogation field in the proximity of the record carrier
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K19/00Record carriers for use with machines and with at least a part designed to carry digital markings
    • G06K19/06Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code
    • G06K19/067Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components
    • G06K19/07Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components with integrated circuit chips
    • G06K19/0723Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components with integrated circuit chips the record carrier comprising an arrangement for non-contact communication, e.g. wireless communication circuits on transponder cards, non-contact smart cards or RFIDs
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K7/00Methods or arrangements for sensing record carriers, e.g. for reading patterns
    • G06K7/0008General problems related to the reading of electronic memory record carriers, independent of its reading method, e.g. power transfer

Definitions

  • Chip card with chip Contact field. Coils and / or capacitors and a memory for either galvanic or non-galvanic
  • the invention relates to a chip card (smart card) which has at least one electronic chip, a contact field with contacts to be galvanically contacted within an external reading and / or writing device (terminal), coils and / or capacitors and at least one memory, either for galvanic or non-galvanic energy and data exchange with the reading and / or writing device, contains at least one chip connected to the contacts as well as to the coils and / or to the capacitors, the plastic card either via the contacts or the coils and / or the capacitors with the reading and / or writing device enters into energy and data exchange and is thereby able to work either in contact or in a contactless manner, according to the preamble of claim 1.
  • Chip cards are known which exchange energy and data in a contact-free or contact-related manner with their read / write devices.
  • the cards are used for telephone or health or access control cards.
  • An overview of such cards and their applications is compiled in three editions of the German specialist magazine electronics year 93.
  • a plastic or chip card according to the preamble of claim 1 has become known from DE-C-39 35 364, which contains further components such as contacts and coils as component groups and on which a chip connected to a contact field is arranged and the additional coils for Has voltage supply of the chip and for data exchange.
  • a diode-capacitor network is used to rectify and smooth the voltage induced in the coils, which is also used to supply the chip and is connected to a circuit which uses two logic levels to control another circuit, which in turn controls the contact field and its outputs is connected to the chip, with either the signals from the coils or from the contact field being switched through to the chip.
  • EP 0534 559 AI discloses a plastic card that has galvanic contacts in accordance with IOS standard 7816 and coils in accordance with the draft ISO standard 10536 contains.
  • the data can be read out from at least one memory of the chip or a part of the chip via the electromagnetic coupling link with low energy consumption, by activating only a part of the integrated electronic circuit, so that a contactless energy supply over a certain distance is possible.
  • the data of the same memory can be read and written via the contacts via the microprocessor contained in the electronic circuit.
  • EP 0 534 559 AI is based on the same principle for a modified task, but without describing it.
  • the invention has for its object to improve a chip card (smart card) of the type mentioned in its electrical function and handling, in particular in the contactless mode to protect sensitive data against attacks from a distance that are not authorized by the holder of the card; the card should also consume as little energy as possible in the contactless mode.
  • chip card smart card
  • the solution to the problem is that the selection of the respective operating mode can be influenced by additional logical conditions in addition to the instantaneous presence of a respective energy supply.
  • the invention advantageously provides a kit of measures which, in addition to the previously known basic benefits, opens up additional benefits from other areas, namely a great freedom of design in optimizing the card and a security potential for critical applications.
  • sensitive data can be protected from remote attacks that are not authorized by the card holder.
  • the chip card consumes less energy in the contactless operating mode than cards of the prior art.
  • That card as an information carrier according to IS 7810, which combines features according to IS 7816 and IS 10536, i.e. energy and information flow on the one hand Galvanic contacts and, on the other hand, used via non-galvanic paths (inductive, capacitive, optical, acoustic ...) are contained in DE 39 35 364 with various configurations of the operating mode position, ie influenced by a stepped actuator.
  • the power supply from the galvanic path for the selection of the operating mode can be linked to at least one logical condition, a precondition is created here for the part according to IS 7861 so that the operating mode selector does not only depend on the power supply for the function of this part makes, but requires additional measures.
  • the essence of this statement thus corresponds to that of claim 2.
  • the logical condition for the selection of the operating mode can be an information combination as an access key.
  • the card user can be expected to enter a password or a personal identification number (PIN, “secret number”) at the terminal in order to gain access to the information or processes contained or expected in the card.
  • PIN personal identification number
  • the operating mode selector can assume such a state, which can be used, without a functionless rest position in the rest position which inevitably sets in without any energy supply.
  • the middle position could be omitted if the changeover switch in one of the two remaining positions is forced.
  • a semiconductor switch especially a FET switch
  • FET field effect transistor
  • a semiconductor switch does not have to completely disconnect when in a de-energized state (like a bipolar switch), but can use the so-called self-conducting channel of the field effect transistor (FET) as a "normally closed contact” but as a (sequential micro-programmed) switchgear or as firmware in a microcontroller, the number of actuator positions is no longer dependent on the explicit disconnector.
  • claim 6 expresses a logical abstraction. Moreover, the claimed choice of the state of rest anticipates that the “awakening” according to claim 3 takes place with minimal delay.
  • the operating mode controller can achieve its intended function by applying the energy supply to the chip card part affected by this function and vice versa. It has just been decided that the desired part of the device is “armed by the appropriate selection of the idle state of the mode selector; it only has to be “ignited”. This is done by applying the power supply to this part of the installation, in particular the non-galvanic one according to IS 10536.
  • the purpose of this configuration is in particular to accelerate boarding and alighting on buses and trains in that the Card is inserted into a (high-frequency) magnetic field for the according to communication.
  • the reference to the reverse effect is intended to make it clear that the mere termination of the energy supply is sufficient to render the previously supplied part of the device ineffective.
  • the operating mode controller can assume a state that serves no further function.
  • the choice of the idle state (“idle state”) turns out here in such a way that the relevant part of the device, in particular that according to IS 7816, is not directly effective through the supply of energy. This is - to the extent that it is logically abstracted - particularly the complement to the definition in claim 6 .
  • the purpose-defined function can be set in that a logical condition in the form of an information combination is required as an access key.
  • the operating mode switch is at rest (i.e. without energy) already unfavorable for the part of the facility concerned here (in particular that according to IS 7816): simply supplying energy does not yet make this part effective.
  • the password (or similar key) coming from the user must also be compared with the password stored in the card. Only when the comparison mechanism known in the art has been overcome can the only logical bit occurring thereby make the affected part of the device effective.
  • the mode controller can return to its idle state, provided the power supply ends and no additional command (s) are required. The mere termination of the power supply is sufficient to render the previously supplied part of the device ineffective.
  • the logical abstraction of this embodiment of the mode selector is the bistable switch.
  • the purpose-defined function may require the creation of an information combination as an access key.
  • secrecy is more important than speed.
  • the user must have the card within range of the terminal in order to be able to have a password compared before going on, for example particularly protect worthy, can access information on the map.
  • the termination of the functionality does not require an explicit claim here, because it corresponds to the effect of claim 10 without further action.
  • the setup part of the card can be made permanently inaccessible when certain circumstances so require.
  • Simple phone cards are single-use items because of certain constraints of the security concept.
  • This mode of action does not have to be excluded in the claimed mode of action. For any reason, one can load the card with information, in particular after the production process, seal the galvanically accessible part of the device (i.e. according to IS 7816) and deliver the card. If the electrical seal (in particular disconnection or short-circuiting) is not penetrating enough, mechanical sealing (on the contact field) can be placed (gluing, welding, laminating; screen printing, punching).
  • the card claimed here is not used galvanically after sealing, but not galvanically.
  • the various system states of the circuit blocks can be selectively effective or shut down. This allows sensitive data to be protected from remote attacks in contact-free mode of operation that are not authorized by the card holder. Furthermore, as little energy as possible is consumed in the contactless operating mode, the full functionality being produced in the operating mode according to IS 7816 because no energy has to be saved. Such cards cannot be changed in their memories unnoticed by distance since they have to be inserted into a terminal. When a card is inserted into a specific environment, some function blocks are put into operation and others are shut down or remain shut down. By inserting the card into a reader, reliable working conditions of the card are to be created.
  • the figure presents a solution according to the invention in a block diagram.
  • the card has on the right side in the picture such a contact field 3 (corresponding to DE-C-39 35 364, part 3) of contacts, as is customary according to IS 7816.
  • a magnetic antenna 4 (corresponding to DE-C-39 35 364, part 4 or 5) is shown as it is the subject of the IS 10536 standard or IS 14443.
  • Another magnetic antenna 5 (according to DE-C-39 35 364, part 5 or 4) can be operated as an option according to IS 1056.
  • Another option is an electrical antenna 6, also according to IS 10536, which is provided in pairs for reasons of symmetry.
  • the signals at the antennas 4, 5, 6 can be converted by function blocks 1 (corresponding to DE-C-39 35 364, part 2.1.4) in such a way that they conform to the IS standard at the, possibly also only virtual, interface 7 Meet 7816; the interface 8 opposite meets the standard IS 7816 anyway.
  • the result of the conversion in the AC / DC converter 1, in particular a rectifier with buffer and limiter, is a direct voltage (according to DE-C-39 35 364, Ul) on line 9 and a, in part bidirectional, data / Control bus 10 (according to DE-C-39 35 364, K1 ... K5).
  • these lines correspond to the line 11 of the DC voltage Vcc according to IS 7816 (corresponding to DE-C-39 35 364, U2) and in turn a bus 12 (corresponding to DE-C-39 35 364, II .. .15).
  • the buses 10 and 12 do not have to consist of five lines: the standard 7816 also allows more or less.
  • the option with the antenna 4 in particular can also occur twice, as a result of which the interface 7 can also occur twice. All other combinations of options should be able to be represented at one interface (s) 7, which is why a single interface 7 is sufficient for the description of the inventive concept.
  • control units 17, 18, which can in particular be microprogrammed switching units and / or microcomputers or other data processing functions.
  • the memories 15, 16 and control units 17, 18 consume auxiliary energy in order to be effective. As already mentioned, it can make sense to save energy when operating the card from the left side in the image, while it is not necessary from the right side in the image.
  • the card now has a further control unit 19 in the sense of an operating mode selector which regulates the access of the control units 17, 18 together with their memories 15, 16 depending on the introduction of the card mentioned above into a communication-capable environment (terminal).
  • the concept of the control-related actuator in “mode controller” 19 (English MODE MANAGER) is intended to associate that physical influence is exerted on the route by means of the logical manipulated variable.
  • the mode controller 19 not only switches logic states but also energy. In its most general form it is Operating mode controller is an abstract structure, the specific shape of which is determined by the current technical requirements.
  • the mode controller 19 uses the lines 20, 21 to supply the blocks 15, 16, 17, 18.
  • the line 22 supplies the modulator / demodulator (MODEM) 2. This line is not part of the interface 7 according to IS 7816.
  • the mode controller 19 not only supplies the blocks 15, 17 via the line 21, but also the lines 15 via the line 22 Signal pre / post processing instructed by auxiliary power 2.
  • the data link 23 is still located between the control units 17 and 18, so that the entire device can also move data back and / or forth in the respective operating mode in accordance with the regulations.
  • data from the contact field 3 can be written into the memory 16 via the line 12 and the control unit 18, in particular with a time delay from the memory 16 through the control unit 18 and the data connection 23 and the control unit 17 move to block 15 and again in particular time-shifted from block 15 through control unit 17 via connecting line 10, MODEM 2 and AC / DC converter 1 to magnetic antenna 4.
  • the tapping of buses 10 and 12 is now essential to the invention for the purpose of influencing operating mode selector 19.
  • An arbitrary example is to serve here: the cardholder enters a password at 3, this is checked in 19.
  • the mode selector 19 supplies energy via 21, 17 and 15. Then the 18 can transport data from 3 to 23 and 17 to 15. In this operating mode, it makes no sense to supply the 22 via the 2. This is the reason for the individual existence of line 22. However, it should not be ruled out that the potential of line 22 may be identical to that of line 9 if the implementer considers this to be correct.
  • the card is inserted into a high-frequency magnetic field, whereby 1 over 9 wakes up the mode selector 19 and supplies it via 22 the 2.
  • the cardholder now enters a password at 4. This is routed via 13, 2 and 10 to 19 and checked in 19.
  • 19 supplies 21 to 17 and 15 with energy.
  • the cardholder can now use the data in 15. In order to save energy in this operating mode, the 19 will not supply the 18 and 16.
  • the invention is now not satisfied with the fact that all these possible and numerous operating modes fall back into the idle state due to failure of the energy source at either 7 or 9 or 11.
  • This is claimed in a category of possible configurations.
  • Another category also claims that the operating mode once set can be retained even after the power failure until the operating mode can be changed after renewed energy supply and input of information about 3 or 4.
  • the operating mode selector 19 becomes so versatile that the implementer has a considerable choice of design options for the card for its respective purpose.
  • the invention can be used with great advantage in chip cards (smart cards) which operate either with contacts or without contacts.
  • the card is advantageously largely error-proof and "bug-proof". In contact-free mode, sensitive data is protected from remote attacks that are not authorized by the card holder.

Landscapes

  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Computer Hardware Design (AREA)
  • Theoretical Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Artificial Intelligence (AREA)
  • Computer Vision & Pattern Recognition (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Storage Device Security (AREA)
  • Credit Cards Or The Like (AREA)
  • Power Sources (AREA)

Abstract

L'invention concerne une carte à puce qui comprend une puce électronique, un banc de contacts à contact galvanique, des bobines et/ou des condensateurs, ainsi qu'au moins une mémoire, servant à l'échange d'énergie et à la transmission de données de manière galvanique ou non galvanique avec un lecteur et/ou un enregistreur. Au moins une puce est connectée aussi bien aux contacts qu'aux bobines et/ou aux condensateurs. La carte plastique est en contact avec le lecteur et/ou l'enregistreur en vue de l'échange d'énergie et la transmission de données, par l'intermédiaire des contacts ou des bobines et/ou des condensateurs, et peut par conséquent fonctionner avec ou sans contact. Le choix du mode de fonctionnement peut être influencé par des conditions complémentaires d'ordre logique, en plus de la présence momentanée d'une alimentation en énergie. L'alimentation en énergie de la voie non galvanique est liée de préférence à au moins une condition d'ordre logique pour le choix du mode de fonctionnement.
PCT/DE1996/001587 1995-08-27 1996-08-27 Carte a puce munie d'une puce, d'un banc de contacts, de bobines et/ou de condensateurs et d'une memoire pour echange d'energie et transmission de donnees de maniere galvanique ou non avec un lecteur et/ou un enregistreur WO1997008929A2 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AU13645/97A AU1364597A (en) 1995-08-27 1996-08-27 Smart card with a chip, contact field, coils and/or capacitors and a storage element for galvanic or non-galvanic energy and data exchange with a read and/or write device

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE1995131275 DE19531275C2 (de) 1995-08-27 1995-08-27 Chipkarte
DE19531275.9 1995-08-27

Publications (2)

Publication Number Publication Date
WO1997008929A2 true WO1997008929A2 (fr) 1997-03-13
WO1997008929A3 WO1997008929A3 (fr) 1997-06-26

Family

ID=7770350

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/DE1996/001587 WO1997008929A2 (fr) 1995-08-27 1996-08-27 Carte a puce munie d'une puce, d'un banc de contacts, de bobines et/ou de condensateurs et d'une memoire pour echange d'energie et transmission de donnees de maniere galvanique ou non avec un lecteur et/ou un enregistreur

Country Status (3)

Country Link
AU (1) AU1364597A (fr)
DE (1) DE19531275C2 (fr)
WO (1) WO1997008929A2 (fr)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2001099039A1 (fr) * 2000-06-23 2001-12-27 Elva Sa Procede pour selectionner un mode de fonctionnement d'une carte a puce, et carte pour la mise en oeuvre du procede
EP1513098A2 (fr) 2003-09-03 2005-03-09 STMicroelectronics, Inc. Procédé et appareil pour une carte à puce de type USB et sans contact
US6883103B2 (en) * 2000-05-31 2005-04-19 Koninklijke Philips Electronics N.V. Data carrier for the adaptation of a consumption time interval to the power consumption of the data carrier

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2339044B (en) * 1998-03-02 2003-06-04 Lexar Media Inc Flash memory card with enhanced operating mode detection and user-friendly interfacing system
US6182162B1 (en) * 1998-03-02 2001-01-30 Lexar Media, Inc. Externally coupled compact flash memory card that configures itself one of a plurality of appropriate operating protocol modes of a host computer
DE10360346A1 (de) * 2003-12-22 2005-07-14 Giesecke & Devrient Gmbh Tragbarer Datenträger
DE102006002514A1 (de) * 2006-01-16 2007-07-19 Atmel Germany Gmbh Verfahren zur drahtlosen Datenübertragung und Transponder
US7994921B2 (en) 2006-01-16 2011-08-09 Atmel Corporation Method for wireless data transmission and a transponder
DE102006038877B4 (de) * 2006-08-18 2018-01-25 Giesecke+Devrient Mobile Security Gmbh Manipulationsgesicherte Einheit, Verfahren für eine manipulationsgesicherte Einheit sowie Speichermedium

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS63198567U (fr) * 1987-06-12 1988-12-21
DE3935364C1 (fr) * 1989-10-24 1990-08-23 Angewandte Digital Elektronik Gmbh, 2051 Brunstorf, De
DE4310334A1 (de) * 1993-03-31 1994-10-06 Walter Holzer Kontaktierte Chipkarte
DE4337202A1 (de) * 1993-10-30 1995-05-04 Licentia Gmbh Beweglicher Datenträger

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6883103B2 (en) * 2000-05-31 2005-04-19 Koninklijke Philips Electronics N.V. Data carrier for the adaptation of a consumption time interval to the power consumption of the data carrier
WO2001099039A1 (fr) * 2000-06-23 2001-12-27 Elva Sa Procede pour selectionner un mode de fonctionnement d'une carte a puce, et carte pour la mise en oeuvre du procede
FR2810766A1 (fr) * 2000-06-23 2001-12-28 Elva Sa Procede pour selectionner un mode de fonctionnement d'une carte a puce, et carte pour la mise en oeuvre du procede
EP1513098A2 (fr) 2003-09-03 2005-03-09 STMicroelectronics, Inc. Procédé et appareil pour une carte à puce de type USB et sans contact
EP1513098A3 (fr) * 2003-09-03 2008-08-06 STMicroelectronics, Inc. Procédé et appareil pour une carte à puce de type USB et sans contact
US7690570B2 (en) 2003-09-03 2010-04-06 Stmicroelectronics, Inc. Method and apparatus for a USB and contactless smart card device

Also Published As

Publication number Publication date
DE19531275A1 (de) 1997-05-07
WO1997008929A3 (fr) 1997-06-26
DE19531275C2 (de) 1998-04-09
AU1364597A (en) 1997-03-27

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