WO2002071325A1 - Puce pour lecteur/scripteur sans contact ayant une fonction pour gerer l'alimentation electrique - Google Patents
Puce pour lecteur/scripteur sans contact ayant une fonction pour gerer l'alimentation electrique Download PDFInfo
- Publication number
- WO2002071325A1 WO2002071325A1 PCT/JP2002/001945 JP0201945W WO02071325A1 WO 2002071325 A1 WO2002071325 A1 WO 2002071325A1 JP 0201945 W JP0201945 W JP 0201945W WO 02071325 A1 WO02071325 A1 WO 02071325A1
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- WIPO (PCT)
- Prior art keywords
- power supply
- supply voltage
- clock
- function
- semiconductor integrated
- Prior art date
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Classifications
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06K—GRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
- G06K19/00—Record carriers for use with machines and with at least a part designed to carry digital markings
- G06K19/06—Record 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
- G06K19/067—Record 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
- G06K19/07—Record 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
- G06K19/0701—Record 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
- G06K19/0712—Record 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
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06K—GRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
- G06K19/00—Record carriers for use with machines and with at least a part designed to carry digital markings
- G06K19/06—Record 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
- G06K19/067—Record 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
- G06K19/07—Record 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
- G06K19/0701—Record 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
- G06K19/0707—Record 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
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06K—GRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
- G06K19/00—Record carriers for use with machines and with at least a part designed to carry digital markings
- G06K19/06—Record 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
- G06K19/067—Record 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
- G06K19/07—Record 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
- G06K19/0723—Record 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
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06K—GRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
- G06K7/00—Methods or arrangements for sensing record carriers, e.g. for reading patterns
- G06K7/10—Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation
- G06K7/10009—Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation sensing by radiation using wavelengths larger than 0.1 mm, e.g. radio-waves or microwaves
- G06K7/10237—Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation sensing by radiation using wavelengths larger than 0.1 mm, e.g. radio-waves or microwaves the reader and the record carrier being capable of selectively switching between reader and record carrier appearance, e.g. in near field communication [NFC] devices where the NFC device may function as an RFID reader or as an RFID tag
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J5/00—Circuit arrangements for transfer of electric power between ac networks and dc networks
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J50/00—Circuit arrangements or systems for wireless supply or distribution of electric power
- H02J50/20—Circuit arrangements or systems for wireless supply or distribution of electric power using microwaves or radio frequency waves
Definitions
- the present invention relates to a semiconductor integrated circuit device, and more particularly to a semiconductor integrated circuit device equipped with an analog front end for a data carrier and an information processing device for an external data carrier.
- FIG. 10 is a diagram showing a schematic configuration of a non-contact IC card and a reader / writer device for reading and writing the non-contact IC card.
- reference numeral 200 denotes a reader / writer (R / W) device
- reference numeral 300 denotes a contactless IC force.
- Reference numeral 201 denotes a modem
- 202 denotes a CPU
- 203 denotes an oscillator
- 204 denotes an antenna.
- 310 is an antenna, 310 is a rectifier, 310 is a diode, 3113 is a capacitor, 320 is a modulator, 322 is an impedance device, 323 is a FET diode, 330 is a diode.
- High-pass fill (HPF) 331 is a capacitor, 332 is a resistor, 340 is a legitimate, 350 is a demodulator, 360 is a sequencer, and 370 is a memory.
- the RZW device 200 and IC card 300 in FIG. 10 constitute a contactless IC card system for mutually transmitting and receiving data via each antenna.
- the contactless IC card 300 rectifies the carrier wave modulated by the transmission data from the RZW device 200 to generate a DC voltage, It is supplied as power for circuits such as CPU and memory.
- the voltage rectified by the rectifier 310 is adjusted to a predetermined voltage by the regulator 340, and is supplied to the sequencer 360.
- the signal received by the antenna 301 is demodulated by the demodulator 350, supplied to the sequencer 360, and subjected to predetermined processing. It is.
- the processed data is recorded in the memory 370.
- the data processed by the sequencer 360 is modulated by the modulator 320 and the antenna 3 0 Sent from 1.
- the signal received by the antenna 204 of the RZW device 200 is demodulated by the modem 201 and processed by the CPU 202.
- the IC chip used for the non-contact IC card is integrated into one chip in a MOS process, and a carrier wave from an external reader / writer is rectified to generate a DC voltage.
- a carrier wave from an external reader / writer is rectified to generate a DC voltage.
- it was used as a power source for circuits such as the internal CPU and memory.
- the present invention has been made in view of the above-described problems, and in a portable terminal device having an IC force function, a power supply obtained by rectifying a carrier wave and an external power supply are switched seamlessly. In this way, it can be mounted on
- the semiconductor integrated circuit device of the present invention includes: a rectifier that rectifies a received carrier; a generator that generates a first power supply voltage based on an output of the rectifier; and a first generator that is generated by the generator.
- the first power supply voltage is selected as the required power supply voltage, and when the second power supply voltage is equal to or higher than the predetermined threshold value and the instruction to operate by the predetermined function is issued, the second power supply voltage required for the operation is set to the second power supply voltage. It is characterized by selecting the power supply voltage.
- the selecting means when the second power supply voltage is equal to or higher than a predetermined threshold, when instructed to operate by a data carrying and processing function for communicating with an external information processing device, or When it is instructed to operate by the function of communicating with the carrier and the processing medium, the second power supply voltage can be selected as the power supply voltage required for the operation.
- a functional unit for realizing a data carrying and processing function and a functional unit for realizing a function of carrying out communication with an external data carrying and processing medium can be constituted by one chip.
- a control means for controlling switching of a switch between a connection point between the rectifying means and the generating means and a ground point according to a signal instructing operation by a function of communicating with an external data carrying and processing medium. Further, the control means turns off the switch when the signal is supplied, and sets the switch as a power supply voltage required for operation by the selection means.
- Clock extracting means for extracting a first clock based on a carrier wave
- clock generating means for generating a second clock
- first clock extracted by the clock extracting means and clock generating means.
- clock selection means for selecting one of the generated second clocks as a reference clock for operation, wherein the clock selection means extracts the first clock by the clock extraction means.
- the first clock is selected as the reference clock for the operation
- the second clock is selected as the reference clock for the operation. You can do so.
- a portable terminal device includes: a rectifier that rectifies a received carrier; a generator that generates a first power supply voltage based on an output of the rectifier; and a first power supply voltage that is generated by the generator. And selecting means for selecting one of the supplied second power supply voltages as a power supply voltage required for the operation, wherein the selecting means operates when the second power supply voltage is equal to or lower than a predetermined threshold value. Select the first power supply voltage as the required power supply voltage, When the power supply voltage of (2) is equal to or higher than a predetermined threshold value and it is instructed to operate by a predetermined function, a semiconductor integrated circuit device for selecting the second power supply voltage as a power supply voltage required for operation is provided inside. It is characterized by.
- the settlement method includes: a rectifier that rectifies a received carrier wave, a generator that generates a first power supply voltage based on an output of the rectifier, and a generator that generates a settlement generated by a predetermined transaction.
- Selecting means for selecting one of the first power supply voltage generated by the second power supply voltage and the second power supply voltage to be supplied as a power supply voltage required for operation, and storage means for storing money amount information as a price for a predetermined transaction
- a payment step between the mobile terminal device and the mobile terminal device comprising: a communication step for communicating with the mobile terminal device; It is characterized by including a reading step to be read and a settlement step for making a settlement based on the amount information read by the processing of the reading step.
- the received carrier is rectified, and the first power supply voltage is generated based on the output thereof, and the generated second power supply voltage is generated.
- One of the power supply voltage of 1 and the supplied second power supply voltage is selected as the power supply voltage required for the operation.
- the second power supply voltage is equal to or lower than a predetermined threshold value
- the first power supply voltage is selected as a power supply voltage required for operation
- the second power supply voltage is equal to or higher than a predetermined threshold value and operates with a predetermined function. Is instructed, the second power supply voltage is selected as the power supply voltage required for the operation.
- the amount information stored in the portable terminal device is communicated with the portable terminal device, and the settlement is performed based on the read amount information.
- FIG. 1 is a schematic diagram illustrating a ticket gate system using a mobile phone according to Embodiment 1 of the present invention as a contactless card.
- FIG. 2 shows a case where the mobile phone according to the first embodiment of the present invention is used as a read / write device.
- FIG. 1 is a schematic diagram illustrating a settlement system to be executed.
- FIG. 3 is a diagram showing a configuration of a mobile phone having a read / write function according to the first embodiment of the present invention.
- FIG. 4 is a diagram showing a flow chart for selecting three operation modes of the mobile phone according to the first embodiment of the present invention.
- FIG. 5 is a diagram illustrating a carrier rectifier circuit and a logic circuit of the mobile phone according to the first embodiment of the present invention.
- FIG. 6 is a diagram illustrating control logic of switch S Wen according to the first embodiment of the present invention.
- FIG. 7 is a diagram for explaining the control logic of the switch SWcont according to the first embodiment of the present invention.
- FIG. 8 is a diagram illustrating a carrier rectifier circuit and a logic circuit of the mobile phone according to the second embodiment of the present invention.
- FIG. 9 is a diagram for explaining the control logic of the switch SW according to the second embodiment of the present invention.
- C FIG. 10 shows a conventional non-contact IC card and its non-contact IC card read / write.
- FIG. 2 is a diagram illustrating a schematic configuration of a reader / writer device. BEST MODE FOR CARRYING OUT THE INVENTION
- FIG. 1 is a schematic diagram illustrating a ticket gate system using the mobile phone according to the first embodiment of the present invention as a contactless force code.
- reference numeral 102 denotes a mobile phone having a card operation function
- reference numeral 104 denotes a ticket gate provided at a station or the like
- reference numeral 106 denotes a read / write function provided at the ticket gate 104.
- the reader / writer device, 108 is a closed ticket gate
- 110 is an open ticket gate.
- the ticket gate system of FIG. 1 will be briefly described.
- the user carries the mobile phone 102 and approaches the ticket gate 104.
- the reader / writer device 106 installed in the ticket gate 104 detects that the user's mobile phone 102 has approached the ticket gate 104,
- the ticket gate is passed.
- FIG. 2 is a schematic diagram illustrating a payment system using the mobile phone according to the first embodiment of the present invention as a read / write device.
- 102 is a mobile phone having a read / write function
- 120 is a contactless IC card
- 121 is a base station antenna
- 122 is a mobile communication network
- 123 is a center, etc.
- Reference numeral 124 denotes a control computer provided in the computer, and a memory for data connected to the control computer 123.
- the mobile phone 102 reads out the information on the points recorded on the contactless IC card 120 and runs out of points. Know the minutes. If the number of points recorded in the contactless IC card 120 is insufficient, the mobile phone 102 uses the base station antenna 121 and the mobile communication network 122 to control the computer. Access 1 2 3, acquire points from it, and write the acquired points to the non-contact IC card 1 20 using the read / write function.
- FIG. 3 is a diagram showing an example of an internal configuration of an IC provided inside a mobile phone 102 to which the present invention having a read / write function is applied.
- the IC 300 includes a card function unit 400, a read / write function unit 500, and a control unit 600.
- the carrier received by the antenna 130 is rectified by the rectifier 131, and is output to the power supply control circuit 138 via the series regulator 133.
- the power supply control circuit 1 3 8 uses the voltage from the series Control and supply the power supply voltage (V DD ) used by the entire IC 300 to each unit.
- the series regulator is a device that keeps the output voltage almost constant regardless of the input voltage. That is, the power supply control circuit 138 performs the above-described operation by increasing the internal impedance when the input voltage is high, and decreasing the internal impedance when the input voltage is low.
- the voltage detector 140 monitors the voltage of the external power supply (battery) connected to the power supply control circuit 138, and prohibits the use of the external power supply when the external power supply voltage falls below a predetermined voltage. Outputs a signal to the power control circuit 1 3 8.
- the signal received from the external reader / writer is input to the receiver 1339 via the rectifier 131, converted into a baseband signal inside the receiver 1319, and processed by the signal processing unit (SPU) 14 4 to be processed. Also, the signal transmitted to the external reader / writer is passed from 8 to 1 1 4 4 to the rectifier 13 1, and the load connected to the antenna 1 30 according to the transmission signal inside the rectifier 13 1 Is changed, and amplitude modulation is performed on the carrier wave generated by the external reader / writer.
- the carrier detector 134 determines whether the radio wave received by the antenna 130 contains a carrier. When the carrier wave detector 1334 determines that a carrier wave is included, the carrier wave detector 1334 outputs a carrier wave detection signal VR to the power supply control circuit 1338.
- the clock extractor 135 extracts a clock based on the radio wave input from the antenna 130, and supplies the extracted clock to the clock selector 136.
- the clock oscillator 1337 generates a clock of the frequency (for example, 13.56 MHz) used by the IC 300 using a crystal oscillator provided outside the IC chip. Supply 3 to 6.
- the clock selector 1336 selects one of the clock supplied from the clock extractor 1335 and the clock supplied from the clock oscillator 1337, and converts the selected clock to the IC 30 Supply to each part of 0.
- the entire operation of the card function unit 400 is controlled by the CPU 145 of the control unit 600 described later.
- the read / write function section 500 comprises a transmission amplifier 150, a reception signal detector 153, and a reception amplifier 154.
- the read / write function section 500 In transmission, the transmission signal supplied from the SPU 144 is amplified by the transmission amplifier 150 and transmitted from the antenna 151. On the other hand, at the time of reception, the signal received by the antenna 152 is detected by the reception signal detector 153, amplified by the reception amplifier 154, supplied to the SPU 144, and subjected to signal processing by the SPU 144.
- the control unit 600 includes a central control unit (CPU) 145, a signal processing unit (SPU) 144, an encryption (DES) engine 146, a bit error detector (CRC) 147, a primary memory (RAM) 141, and a read. It consists of only memory (ROM) 142, EEPROM 143 for recording data, 11 11 1 circuit 148 for asynchronous serial communication with the outside, and I 2 C interface 149 for communication with the outside.
- CPU central control unit
- SPU signal processing unit
- DES encryption
- CRC bit error detector
- the switching of the power supply is controlled so that the optimum power is supplied to these parts.
- the antenna structure used in ordinary IC cards cannot be used as it is, and it is necessary to incorporate an antenna suitable for mobile phones. Even in this case, the IC card section ( Sufficient power can be supplied by supplying power to the IC 300) from the battery.
- the IC 300 has an external card mode for communicating with an external read / write device via a force function unit 400, and a reader / writer for communicating with an external contactless IC card via a read / write function unit 500. Mode, and an internal card mode for processing internal cards placed inside.
- FIG. 4 is a diagram showing a flowchart for selecting the above-mentioned three operation modes.
- the CPU 145 determines a mode in step S1. If the CPU 145 determines in step S1 that the mode is the external card mode, in step S5 the CPU 145 performs an external power process for performing a force process with an external reader / writer device via the card function unit 400. Perform one mode. The CPU 145 uses the internal If it is determined that the mode is one mode, the command is interpreted in step S2, and if the mode is the internal card mode, the processing for the card arranged inside is performed.
- step S2 determines that the mode is the R / W mode in step S2
- the process proceeds to step S3, and the CPU 145 communicates with the external non-contact IC card via the read / write function unit 500. Run Reader / Write mode between the two.
- the output (power generated from the carrier) of the power supply control circuit 138 is supplied to the VDD terminal.
- power from the battery is also supplied to the VDD terminal via the power supply control circuit 138. Either of these two power supplies is selected by a logical combination of a P0N signal from a mobile phone (a controller not shown) and a signal VR from a carrier detector 134 .
- FIG. 5 is a diagram showing the carrier rectifier circuit and the power supply control circuit of the mobile phone according to the first embodiment of the present invention in more detail.
- the carrier wave received by the antenna 130 is rectified by the rectifier 131 and supplied to the power supply terminal V DD via the series regulator 13.
- the output of the battery 160 is connected to the power supply terminal V DD via the power supply control circuit 138 .
- the power supply control circuit 1338 is provided with a switch S Wen l 62 and a switch S W cont l 64 between input and output.
- the switch S Wen 162 is turned on and off by the control logic as shown in FIG. 6 by the power supply voltage V BT of the battery 160.
- it switches S WCONT l 6 4 depending VR signal supplied from the P 0 N and carrier detector 1 3 4 supplied from the outside, is turned on and off by the control logic shown in FIG 7.
- FIG. 6 is a diagram showing the control logic for operating the switch S Wenl 62.
- the switch S Wenl 62 changes the voltage V BT of the battery 160 to a predetermined value.
- the enable signal en (signal representing "1") is output from the power detector 140 (VDET 140) and is turned on by this signal.
- the enable signal en is not output from the power detector 140 (VDET 140), and the switch SWenl 62 remains off.
- FIG. 7 is a diagram showing control logic for operating the switch SWcontl 64.
- the switch SWcontl 6 is turned on when either the PON signal or the VR signal is high (“1”), and remains off otherwise.
- the P0N signal is a reader / writer mode signal
- a high P0N signal is output from the mobile phone when the user instructs the mobile phone to perform the read / write operation.
- a high VR signal is output as the VR signal when the carrier is detected in the received radio wave by the carrier detector 134. That is, a high VR signal indicates that the mobile phone (IC300) operates in the card mode, and a high PON signal indicates that the mobile phone operates in the reader / writer mode.
- the CPU 145 recognizes whether the mobile phone is operating in the card mode or the reader / writer mode based on the VR signal or the PN signal.
- the control logic 163 exclusively selects one of the card mode and the reader / writer mode. This exclusive selection allows the operation that goes high earlier in time to be preferentially selected. Of course, it may be exclusively selected by another method.
- the output of the switch SWcontl 64 is connected to the output of the series 133.
- voltage V BT from note 160 is provided as V DD .
- the series Regulae 133 is equivalently structured such that the internal impedance is controlled by the difference between the output voltage and a certain reference voltage, and the card generated by the series Regulae 133 (Rectifier 131)
- the internal impedance of the series regulator becomes very large, and the voltage of the battery 160 becomes higher than the input of the series regulator. It prevents backflow to the side.
- the circuits in FIGS. 3 and 5 can be realized by a MOS process, and all the circuits in FIGS. 3 and 5 can be arranged in a single-chip MOS LSI.
- FIG. 8 is a diagram showing a mobile phone having a card function and a reader / writer function according to Embodiment 2 of the present invention.
- FIG. 8 is a modified circuit of FIG. 5, which is different from the first embodiment in that a power supply control circuit 170 and a protector 180 are provided.
- the VDET 140 monitors the output voltage of the battery 160, and when the output voltage (battery voltage VBT) is lower than a predetermined value, outputs the “0” level VB signal to the AND circuit of the power control circuit 170. When the battery voltage V BT is higher than a predetermined value, a “1” level VB signal is output to the AND circuit 17 1.
- the power supply control circuit 170 includes a VB signal supplied from the VDET 140 , a P0N signal indicating that the operation is performed in the reader / writer mode , and a carrier wave in the received radio wave. When it is detected, it controls the switch SW173 based on the signal VR supplied from the carrier detector 134.
- FIG. 9 is a diagram illustrating a control logic of the switch SW173 by the power supply control circuit 170.
- VB signal corresponds to the output voltage of VDET140,) Tteri "0" when the voltage V BT is the mouth one next, the battery voltage V BT becomes "1" when the Hachii.
- switch SW1 73 is between the battery voltage V BT is mouth one (while it is less than a predetermined value) are turned off, the battery voltage V BT becomes high (it becomes equal to or higher than a predetermined value ) And is turned on when either the PN signal or the VR signal is high.
- the card mode, reader / writer mode, and exclusive logic are the same as in FIG. That is, when either the PN signal or the VR signal is high, the switch SW173 is turned on.
- PROTEC 180 is a circuit composed of MOS circuits arranged on an IC chip.
- the protector 180 is connected between the output of the rectifier 131 and the connection point of the series regulator 133 and ground, and is controlled by the reader / writer mode signal P0N .
- the resistance of the protector 180 is controlled to be very small (the internal switch is On), the excessive voltage generated by the rectifier 131 based on the carrier wave is output to the ground, while when the reader / writer mode signal P0N is applied, the internal resistance of the protector 180 becomes infinite. If it is large (the internal switch is turned off), supply of the leakage current to the internal resistor of the protection circuit 180 by the series regulator 133 is prevented.
- the protector 180 is provided, and in the read / write mode (when the reader / writer mode signal P0N is applied), the protector 180 is turned off to enable normal operation (particularly, CMOS This can prevent current loss due to the leakage current of the series regulator that occurs at the time of realization. As a result, it is possible to provide a mobile phone that realizes low cost and high reliability of a product by using the MOS process to integrate both the IC card and the reader / writer into one chip.
- IC card and “card function” are used for convenience to refer to a medium having a data carrying and processing function and a data carrying and processing function, and do not indicate a card shape.
- the case where the semiconductor integrated circuit is built in the mobile phone is illustrated.
- a mobile information terminal Personal Digital Assistants
- a clock which is a small information device
- the present invention can be applied irrespective of the form, such as a user, and the presence or absence of a wired / wireless communication function.
- the semiconductor integrated circuit may be built in the portable terminal device in a detachable or non-detachable form, or may be an IC card incorporating an IC, or an external storage medium such as a memory card. May be detachably attached to a mobile phone device, a portable information terminal, a computer, or the like.
- a semiconductor integrated circuit that can seamlessly switch between an external power supply and a carrier rectified power supply can be realized.
- a device equipped with both analog front-ends for information processing devices such as a reader and a Z-series reader.
- the mobile terminal device equipped with the semiconductor integrated circuit according to the present invention can operate not only as a remote IC card but also as a reader / writer for the remote IC card.
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- Microelectronics & Electronic Packaging (AREA)
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- Computer Networks & Wireless Communication (AREA)
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- General Health & Medical Sciences (AREA)
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Description
Claims
Priority Applications (5)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP20020701689 EP1280099B1 (en) | 2001-03-02 | 2002-03-04 | Chip for noncontact reader/writer having function for managing power supply |
US10/258,651 US7554383B2 (en) | 2001-03-02 | 2002-03-04 | Chip for non-contact reader/writer having power-supply management function |
DE2002624137 DE60224137T2 (de) | 2001-03-02 | 2002-03-04 | Integrierte Halbleiterschaltungsvorrichtung sowie diese umfassendes tragbares Endgerät und Verfahren zum Betreiben dieses Endgeräts |
HK04104392A HK1061595A1 (en) | 2001-03-02 | 2004-06-16 | Chip for noncontact reader/writer having function for managing power supply |
US12/470,035 US7821322B2 (en) | 2001-03-02 | 2009-05-21 | Chip for non-contact reader/writer having power-supply management function |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2001-59284 | 2001-03-02 | ||
JP2001059284 | 2001-03-02 |
Related Child Applications (2)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US10258651 A-371-Of-International | 2002-03-04 | ||
US12/470,035 Continuation US7821322B2 (en) | 2001-03-02 | 2009-05-21 | Chip for non-contact reader/writer having power-supply management function |
Publications (1)
Publication Number | Publication Date |
---|---|
WO2002071325A1 true WO2002071325A1 (fr) | 2002-09-12 |
Family
ID=18918867
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/JP2002/001945 WO2002071325A1 (fr) | 2001-03-02 | 2002-03-04 | Puce pour lecteur/scripteur sans contact ayant une fonction pour gerer l'alimentation electrique |
Country Status (6)
Country | Link |
---|---|
US (2) | US7554383B2 (ja) |
EP (1) | EP1280099B1 (ja) |
CN (1) | CN1292382C (ja) |
DE (1) | DE60224137T2 (ja) |
HK (1) | HK1061595A1 (ja) |
WO (1) | WO2002071325A1 (ja) |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2008114594A1 (ja) * | 2007-03-22 | 2008-09-25 | Nec Corporation | 通信管理装置及び通信管理方法並びに通信管理プログラム |
US8384519B2 (en) * | 2003-07-22 | 2013-02-26 | Nokia Corporation | Reader device for radio frequency identification transponder with transponder functionality |
US9084116B2 (en) | 2004-03-19 | 2015-07-14 | Nokia Technologies Oy | Detector logic and radio identification device and method for enhancing terminal operations |
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US9306637B2 (en) | 2003-07-22 | 2016-04-05 | Nokia Technologies Oy | Reader device for radio frequency identification transponder with transponder functionality |
US9084116B2 (en) | 2004-03-19 | 2015-07-14 | Nokia Technologies Oy | Detector logic and radio identification device and method for enhancing terminal operations |
US9619682B2 (en) | 2004-03-19 | 2017-04-11 | Nokia Technologies Oy | Detector logic and radio identification device and method for enhancing terminal operations |
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US10546164B2 (en) | 2004-03-19 | 2020-01-28 | Nokia Technologies Oy | Detector logic and radio identification device and method for enhancing terminal operations |
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Also Published As
Publication number | Publication date |
---|---|
DE60224137T2 (de) | 2008-12-18 |
CN1462412A (zh) | 2003-12-17 |
US20030141989A1 (en) | 2003-07-31 |
US7821322B2 (en) | 2010-10-26 |
EP1280099A1 (en) | 2003-01-29 |
EP1280099A4 (en) | 2004-12-15 |
US20090237144A1 (en) | 2009-09-24 |
HK1061595A1 (en) | 2004-09-24 |
EP1280099B1 (en) | 2007-12-19 |
US7554383B2 (en) | 2009-06-30 |
CN1292382C (zh) | 2006-12-27 |
DE60224137D1 (de) | 2008-01-31 |
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