WO2011091621A1 - 一种ic卡装置 - Google Patents

一种ic卡装置 Download PDF

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Publication number
WO2011091621A1
WO2011091621A1 PCT/CN2010/071394 CN2010071394W WO2011091621A1 WO 2011091621 A1 WO2011091621 A1 WO 2011091621A1 CN 2010071394 W CN2010071394 W CN 2010071394W WO 2011091621 A1 WO2011091621 A1 WO 2011091621A1
Authority
WO
WIPO (PCT)
Prior art keywords
power
card device
unit
energy storage
storage unit
Prior art date
Application number
PCT/CN2010/071394
Other languages
English (en)
French (fr)
Inventor
余运波
马平西
皇甫红军
Original Assignee
国民技术股份有限公司
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 国民技术股份有限公司 filed Critical 国民技术股份有限公司
Publication of WO2011091621A1 publication Critical patent/WO2011091621A1/zh
Priority to US13/559,730 priority Critical patent/US20120297210A1/en

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0261Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level
    • H04W52/0274Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level by switching on or off the equipment or parts thereof
    • H04W52/028Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level by switching on or off the equipment or parts thereof switching on or off only a part of the equipment circuit blocks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/14Details of telephonic subscriber devices including a card reading device
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0261Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level
    • H04W52/0296Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level switching to a backup power supply
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present invention relates to the field of communications, and in particular, to an IC card device. Background technique
  • Mobile communication terminals such as mobile phones
  • the mobile communication terminal is modified to have a short-range communication function, and in particular, the demand for functions such as electronic payment using mobile radio communication terminals such as mobile phones is becoming more and more intense.
  • a radio frequency function called a radio frequency SIM card
  • SIM Subscribescr iber Ident module
  • the mobile phone short-range solution based on the radio frequency SIM card has received extensive attention due to its advantages such as the single order and no need to change the mobile phone.
  • the radio frequency SIM card adopts UHF (Ultra tra H igh Frequency) technology.
  • UHF Ultra tra H igh Frequency
  • the overall power consumption is also larger than that of the conventional S IM card; the existing mobile phone is mainly designed to meet the power consumption requirements of the conventional SIM card, so some S IM cards A mobile phone with a small power supply design cannot meet the power supply requirements of the radio frequency SIM card, and the radio frequency SIM card does not work properly on some mobile phones.
  • the technical problem to be solved by the present invention is to provide an IC card device that satisfies its normal work. Time-consuming power requirements make it compatible with mobile communication terminals such as existing mobile phones.
  • the present invention provides an IC card device including a microprocessor, a memory, and an IS07816 interface, and further includes a power management module, wherein the power management module is configured to provide the IC card device for normal operation. The charge and the charge required for the IC card device to operate abnormally.
  • the power management module includes a charging management unit, an energy storage unit, and a power conversion unit, and the input end of the charging management unit and the IS 07816 interface power input line 7816 _ VCC Connected, the output end is connected to the input end of the energy storage unit, one input end of the power conversion unit is connected to the power input line 7816-VCC of the IS07816 interface, and the other input end and the output of the energy storage unit Connected to the end, the output end of the power conversion unit is connected to the power input line of the IC card device, wherein:
  • the charging management unit is configured to convert an input current into an electric charge and store the same in the energy storage unit;
  • the energy storage unit is configured to store a charge
  • the power conversion unit is configured to select a power input line 7816_VCC of the IS07816 interface and/or the energy storage unit to supply power to the IC card device.
  • the power management module includes a current limiting unit, a charging management unit, an energy storage unit, and a power conversion unit, and the input end of the current limiting unit and the power input line of the IS07816 interface
  • the 7816-VCC is connected, and the output end is connected to the input end of the charging management unit and the first input end of the power conversion unit.
  • the input end of the energy storage unit is connected to the output end of the charging management unit, and the output is connected.
  • the end is connected to the second input end of the power conversion unit, and the output end of the power conversion unit is connected to the power input line of the IC card device, wherein:
  • the current limiting unit is configured to limit a maximum pulse current according to a preset threshold
  • the charging management unit is configured to convert an input current into an electric charge and store the energy in the energy storage unit Medium
  • the energy storage unit is configured to store a charge
  • the power conversion unit is configured to select the current limiting unit and/or the energy storage unit to supply power to the IC card device.
  • the power management module includes a current limiting unit, a charging management unit, an energy storage unit, and a power conversion unit.
  • the input end of the current limiting unit is connected to the IS07816.
  • the power input line 7816-VCC is connected, and the output end of the power conversion unit is connected to the power input line of the IC card device, wherein:
  • the current limiting unit is configured to limit a maximum pulse current according to a preset threshold
  • the charging management unit is configured to convert an input current into an electric charge and store the same in the energy storage unit;
  • the energy storage unit is configured to store a charge
  • the power conversion unit is configured to supply power to the IC card device.
  • the device may further have the following features: the current limiting unit is composed of a filter capacitor, a switch, and a power-on reset circuit, and one end of the filter capacitor is connected to the power input line 7816-VCC of the IS07816 interface, and the other end is connected. a first end of the switch, the power-on reset circuit is connected between a power input line 7816_VCC of the ISO 7816 interface and a second end of the switch, and the third end of the switch is grounded The second end of the switch is selectively connectable to the first or third end of the switch.
  • the charging management unit is a DC-DC circuit or a charge pump charging circuit.
  • the charging management unit has a boosting circuit.
  • the energy storage unit is composed of a charging switch, a charging current limiting resistor, a charging capacitor, a discharging resistor and a discharging switch, and the charging switch and the charging limit
  • the flow resistor, the discharge resistor and the discharge switch are connected in series, and the charging capacitor is connected between the junction of the charge current limiting resistor and the discharge resistor and the ground.
  • the above device may further have the following feature, wherein the energy storage unit has a voltage detecting circuit.
  • the above device may further have the following features, and the power conversion unit is a DC-DC converter.
  • the above device may further have the following features: the power conversion unit is a double-ended input, double-ended output DC-DC converter.
  • the above device may further have the following features: the power conversion unit has a power detection circuit and/or a multi-channel power combining device.
  • the above device may further have the following features, and further includes a radio frequency circuit, wherein the radio frequency circuit is used to implement wireless short-range communication between the IC card device and an external card reader.
  • the above device may further have the following features: the IC card device is a SIM card, a UIM card or a US IM card.
  • the IC card device of the present invention can satisfy the power supply requirement when it exceeds the normal power consumption, thereby enabling compatibility with a mobile communication terminal such as an existing mobile phone.
  • the mobile phone with the IC card device of the invention can reduce the power supply requirement to the same as that of the ordinary mobile phone, thereby solving the problem that the IC card device with the RF function is incompatible on some mobile phones; further, the IC card device with the invention
  • the mobile phone can even be used for consumption or transaction through the IC card device when the mobile phone is dead, improving the user experience in the practical process.
  • FIG. 1 is a structural diagram of an embodiment of an IC card device of the present invention.
  • FIG. 2 is a structural diagram of the power management module of FIG. 1;
  • FIG. 3 is another structural diagram of the power management module of FIG. 1; 4 is another structural diagram of the power management module of FIG. 1;
  • Figure 5 is a structural view of the current limiting unit 201
  • Figure 6 is a structural view of the energy storage unit 203
  • Fig. 7 is a view showing an example of input current and output current of the IC card device of the present invention. detailed description
  • the IC card device of the present invention includes components of a general IC card such as a microprocessor, a memory, and an IS07816 interface. Unlike the conventional IC card, the IC card device of the present invention further includes a power management module, and the power management module It is used to provide the charge required for the IC card device to operate normally and the charge required for the IC card device to operate abnormally.
  • the extraordinary work described in this article mainly refers to the working state of the ordinary IC card device after adding other functional modules (such as the RF module), and the extraordinary work refers to the work load added by the existing IC card. status.
  • the IC card device of the present invention not only satisfies the power supply requirement during normal operation, but also satisfies the power supply requirement when the power consumption exceeds the normal power consumption after adding functions such as radio frequency communication, thereby realizing movement with an existing mobile phone or the like.
  • FIG. 1 is a block diagram showing an embodiment of an IC card device of the present invention.
  • the IC card device 10 includes an IS07816 interface 100, a power management module 200, a microprocessor and a memory 300, and a radio frequency module 400.
  • the IC card device shown in FIG. 1 is a radio frequency IC card, for example, a radio frequency SIM card, a radio frequency UIM card, or a radio frequency USIM card.
  • the radio frequency module 400 implements a radio frequency communication function, so that the IC card device can perform transactions such as electronic payment. .
  • the IC card device may not have the radio frequency module 400, but has other functional modules, or only the IS07816 interface 100, the power management module 200, the microprocessor, and the memory 300, without Any other functional modules.
  • the power management module 200 is the present invention.
  • the IC card device differs from the existing IC card in that the power management module 200 is used to provide the charge required for the IC card device to operate normally and the charge required for the IC card device to operate abnormally. With the power management module 200, in the case where other functional modules are added, the power supply requirement can be satisfied even if the power supply demand exceeds the power consumption required for the IC card device to operate normally.
  • FIG. 2 is a structural diagram of the power management module of Figure 1.
  • the power management module 200 can include a charging management unit 202, an energy storage unit 203, and a power conversion unit 204, wherein the charging management unit 202 is configured to convert an input current into a charge stored in the energy storage.
  • the energy storage unit 203 is configured to store electric charge; the power conversion unit 204 is configured to select the power input line 7816_VCC of the I S07816 interface 100 and/or the energy storage unit 203 to supply power to the IC card device.
  • connection relationship is that the input end of the charging management unit 202 is connected to the power input line 7816_VCC of the IS07816 interface 100, the output end of the charging management unit 202 is connected to the input end of the energy storage unit 203, and an input end of the power conversion unit 204 and the IS07816
  • the power input line 7816_VCC of the interface 100 is connected, the other input end of the power conversion unit 204 is connected to the output end of the energy storage unit 203, and the output end of the power conversion unit 204 is connected to the power input line of the IC card device.
  • the power input line refers to a power input line of the IC card device except for the power management module 200, such as the power supply input line of the microprocessor and the memory 300 shown in FIG. 1 and the power input line of the RF module 400, and the power input.
  • the line may be one or more.
  • the power input line shown in FIG. 2 has two, that is, the power input line a and the power input line b, wherein the power input line a is a power supply input line SIM_VCCD of the microprocessor and the memory 300,
  • the power supply input line b is the power supply input line SIM_VCCRF of the radio frequency module 400.
  • This embodiment is applicable to the case where the power-on pulse current of the IC card device is small. When the power-on pulse current is small, the current limiting unit 201 set forth in the following embodiments is not required.
  • FIG. 3 is another structural diagram of the power management module of FIG. 1.
  • the power management module 200 may include a current limiting unit 201, a charging management unit 202, an energy storage unit 203, and a power conversion unit 204, where the current limiting unit 201 is configured to be limited according to a preset threshold. a maximum pulse current; the charge management unit 202 is configured to convert the input current into a charge stored in the energy storage unit 203; The energy storage unit 203 is for storing electric charge; the power conversion unit 204 is for selecting the current limiting unit 201 and/or the energy storage unit 203 to supply power to the IC card device.
  • connection relationship is that the input end of the current limiting unit 201 is connected to the power input line 7816_VCC of the IS07816 interface 100, and the output end is connected to the input end of the charging management unit 202 and the first input end of the power conversion unit 204, and the energy storage unit 203 is connected.
  • the input end is connected to the output end of the charging management unit 202, the output end is connected to the second input end of the power conversion unit 204, and the output end of the power conversion unit 204 is connected to the power supply input line of the IC card device, regarding the IC card device
  • the power input line has been described in detail above and will not be described here.
  • the power management device 200 has the functions of pulse current limitation, reserve charge, and multi-input power supply.
  • the IC card device is placed in the mobile phone as an example to illustrate the working principle of the IC card device of the present invention: 1) When the mobile phone opens the IC card device power supply circuit When the power management device 200 charges the internal energy storage unit 203 without exceeding the maximum defined current until the energy storage unit 203 is saturated; 2) when the mobile phone turns off the IC card device power supply circuit, the power management device 200 reserves the charge. Minimizing the loss of stored charge in addition to the IC card device circuit itself; 3) When the IC card device circuit needs to consume electric charge, the power management device 200 can draw charge from its internal energy storage unit 203, It is possible to draw charge from the power input at the same time.
  • FIG. 4 is another structural diagram of the power management module of FIG. 1.
  • the power management module 200 may include a current limiting unit 201, a charging management unit 202, an energy storage unit 203, and a power conversion unit 204, and an input terminal of the current limiting unit 201 and IS07816.
  • the power input line 7816_VCC of the interface 100 is connected, and the output end of the power conversion unit 204 is connected to the power input line of the IC card device, wherein the current limiting unit 201 is configured to define a maximum pulse current according to a preset threshold; the charging management unit 202 is configured to The input current is converted into a charge stored in the energy storage unit 203; the energy storage unit 203 is used to store the charge; and the power conversion unit 204 is used to supply power to the IC card device.
  • the power supply input line of the IC card device is the same as described above.
  • FIG. 5 is a structural diagram of the current limiting unit 201.
  • the current limiting unit 201 can be configured by a filter capacitor Cf, The switch S and the power-on reset circuit are composed.
  • One end of the filter capacitor Cf is connected to the power input line 7816_VCC of the IS07816 interface, and the other end is connected to the first end el of the switch S.
  • the power-on reset circuit is connected to the power input line 7816_VCC and the switch S of the IS07816 interface.
  • the maximum current limit value of the current limiting unit 201 can be set according to the specifications of the IC card device such as the SIM card, the UIM card, and the USIM card, or can be set according to actual experience, for example, the maximum current is set to 10 mA.
  • the power-on reset circuit requires a period of start-up reset time to slowly turn off the switch, avoiding the large-scale transient current generated by the filter capacitor between the power supply and ground, and avoiding the shutdown of the IS07816 interface due to large pulse current. .
  • the charge management unit 202 may be a DC-DC circuit or a charge pump charging circuit to implement a boost conversion of the IS07816 interface from 3. 3V to 5V.
  • the charge management unit 202 can be provided with a boost circuit that stores the input charge in the higher energy mode in the energy storage unit 203 to increase the capacity of the stored charge.
  • the structure of the energy storage unit 203 can be as shown in FIG. 6.
  • FIG. 6 is a structural diagram of the energy storage unit 203.
  • the energy storage unit 203 can be composed of a charging switch S1, a charging current limiting resistor R1, a charging capacitor (a discharging resistor R2, and a discharging switch S2).
  • Sl, the charging current limiting resistor R1, the discharging resistor R2 and the discharging switch S2 are connected in series, and the charging capacitor C is connected between the junction of the charging current limiting resistor R1 and the discharging resistor R2 and the ground.
  • the storage capacitor C has insufficient charge, it is disconnected.
  • Discharge switch S2 close charging switch S1, start charging; charging is completed and the circuit of RF circuit, processor, memory, etc. starts to work, when more current is needed, the charging switch S1 is disconnected, the discharging switch S2 is closed, and the power conversion unit 204 is provided Charge or current input.
  • the capacitance of the charging capacitor C in the energy storage unit 203 can be calculated by the following method:
  • Power management device 200 Input/output condition setting.
  • Input setting 7816-VCC input voltage I 7816 * V 7816 ( 10mAS) 3. 3V ); DC/DC204 conversion efficiency is ⁇ (90%);
  • the RF SIM card guarantees a minimum swipe period of t (20mS).
  • the input power of the power conversion unit 204 is:
  • the capacitive input power is: C * ( AV) 7t .
  • the output power of the power conversion unit 204 is:
  • SIMVCCD port 1 D *VD. According to the conservation of power:
  • the specific values can be tested and debugged.
  • a 60uF capacitor can be easily integrated into a radio frequency SIM card in the form of one or more capacitors, and a K-level resistor can be easily integrated into an IC card device.
  • the energy storage unit 203 can be a capacitor or a micro-rechargeable battery, so that it can be embedded in the IC card device.
  • the capacitance value of the energy storage unit 203 can be measured according to actual application requirements, for example, one transaction. The actual charge that needs to be consumed is calculated. Normally, a capacitor of OOuF and a withstand voltage of 5V can store enough charge for one transaction. When the energy storage unit 203 uses a capacitor for charge storage, both the capacitance capacity and the storage voltage value can increase the capacity of the stored charge.
  • the energy storage unit 203 may be provided with a voltage detecting circuit for detecting the input voltage of the charging management unit 202 and the voltage of the energy storage unit 203, respectively, when the input voltage exceeds the set threshold and the energy storage unit 203
  • the charging management unit 202 starts the charging function to charge the energy storage unit 203, and when the energy storage unit 203 is fully charged, stops the charging function of the charging management unit 202; when the working voltage of the chip and the component on the IC card device is insufficient
  • the energy storage unit 203 functions as a discharge to the power supply conversion unit 204.
  • the power conversion unit 204 may be a DC-DC converter.
  • the power conversion unit 204 can be provided with a power detection circuit. When the working voltage of the chip and the component on the IC card device is insufficient, the power conversion function is started, and the electric charge is taken from the energy storage unit 203 to provide the power supply circuit, thereby maintaining the operation of the IC card device.
  • the power conversion unit 204 can also be provided with a multi-channel power supply combining device, which can separately detect the voltage of each input signal, and open the input channel when one power supply input voltage is greater than the set value to supply power to the IC card device circuit.
  • the power conversion unit 204 can be a two-terminal input, double-ended output DC-DC converter.
  • the two inputs are respectively connected to the IS07816 interface and the discharge output end of the energy storage unit 203, and the two output ports are respectively connected to the power supply end of the RF circuit (ie, the aforementioned power input end) and the circuit power terminals of the processor and the memory.
  • the power conversion unit 204 can only access the IS07816 interface, and turn off the discharge output of the energy storage unit 203; when the power consumption is large or the RF power is required When the road works, it is necessary to simultaneously access the 7816 interface and the energy storage unit 203 discharge output port.
  • Fig. 7 is a view showing an example of input current and output current of the IC card device of the present invention.
  • the power management module 200 of the present invention can keep the input current within a limited range (such as 10 mA) and is relatively stable, as shown by 7816_VCC in FIG. 7; the output current is used to supply power to the RF circuit and other circuits, and the current and the circuit.
  • the working state is related, generally characterized by intermittent and sudden, and its maximum current is greater than the input current (such as 15mA), as shown by SIM_VCCRF in Figure 7.
  • the IC card device may be a SIM card, a UIM card, or a USIM card.
  • the IC card may also be a radio frequency IC card, such as a radio frequency SIM card, a radio frequency UIM card, or a radio frequency USIM card.
  • the IC card device proposed by the present invention can solve the problem that the power supply current is limited (that is, the problem that the abnormal operation cannot be supported) and the IC card device with the charge storage function, and the IC card device has the microprocessor of the ordinary IC card.
  • the memory, the IS07816 interface, etc. may also be equipped with a radio frequency module to support extended radio frequency communication functions, or with other functional modules, and a power management device for solving the problem of limited supply current.
  • the present invention has the following features:
  • the current limiting circuit device (refer to the current limiting unit 201) is used to reduce the pulse current at the time of power-on, so that the power-on current can be controlled within the maximum set value range of the external power supply, so as not to cause the external power supply to be powered off;
  • the charge current can be stored in the input current, and the charge storage circuit device (refers to the energy storage unit 203) is used to store the charge, and the charging circuit device (refer to the charge management unit 202) is charged by the input current to store the input charge.
  • the charge storage circuit device refers to the energy storage unit 203
  • the charging circuit device refer to the charge management unit 202
  • a power conversion circuit referring to the power conversion unit 204) simultaneously extracting charge from the storage circuit (ie, the energy storage unit 203) and the input current to supply power to the chip and the electronic component on the IC card for a certain period of time, thereby solving the IC The high current problem that the card requires when working abnormally for a certain period of time.
  • the power management module 200 in the IC card device can convert the limited power supply of the mobile phone into a voltage and current output that can satisfy the IC card device, thereby ensuring the IC.
  • the card device works normally; 2.
  • the phone is turned off or the battery power of the mobile phone is insufficient, the transaction can be realized by using a storage capacitor or a micro battery of a suitable capacity.
  • the invention can significantly improve the applicability of the IC card device with large power consumption on the terminal device such as a mobile phone, and is particularly important for the popularization and promotion of the radio frequency SIM card.
  • the IC card device of the present invention can satisfy the power supply requirement when it exceeds the normal power consumption, thereby enabling compatibility with a mobile communication terminal such as an existing mobile phone.
  • the mobile phone with the IC card device of the invention can reduce the power supply requirement to the same as that of the ordinary mobile phone, thereby solving the problem that the IC card device with the RF function is incompatible on some mobile phones; further, the IC card device with the invention
  • the mobile phone can even be used for consumption or transaction through the IC card device when the mobile phone is dead, improving the user experience in the practical process.

Description

说 明 书
一种 IC卡装置
技术领域
本发明涉及通信领域, 尤其涉及一种 IC卡装置。 背景技术
移动通信终端(例如手机) 已经十分普及, 目前, 通过改造移动通信终 端使其具备近距离通信功能,特别是利用手机等移动射频通信终端来实现电 子支付等功能的需求越来越强烈。 例如, 现在已经出现了在手机中的用户识 别模块 SIM ( Subscr iber Ident i ty Module )卡上增加射频功能(称为射频 SIM卡 )或者在手机主板上增加近距离通信模块来实现手机近距离通信的方 法, 这种方法的出现使得手机成为一个可以充值、 消费、 交易及身份认证的 超级智能终端, 极大地满足了市场的迫切需求。
其中, 基于射频 SIM卡的手机近距离解决方案以其筒单、 无需更改手机 等优势得到广泛的关注, 在该方案中, 射频 SIM 卡采用 UHF ( Ul tra H igh Frequency, 超高频)等技术使得射频 SIM卡嵌入在手机内部时射频信号仍 可使得手机具备近距离通信功能。 但是, 射频 SIM卡由于增加了射频功能, 其整体功耗也较普通 S IM卡有较大幅度的增加; 现有手机在设计时主要考虑 满足传统 SIM卡的功耗需求, 因此有些 S IM卡供电设计裕量不大的手机不能 满足射频 SIM卡的供电要求, 出现了射频 SIM卡在一些手机上不能正常工作 的情况。 发明内容
本发明所要解决的技术问题是提供一种 ic卡装置, 满足其超出正常功 耗时的供电需求, 从而使得其能够与现有的手机等移动通信终端兼容。
为了解决上述技术问题, 本发明提出了一种 IC卡装置, 包括微处理器、 存储器和 IS07816接口, 还包括电源管理模块, 所述电源管理模块用于提供 所述 IC卡装置正常工作时所需的电荷以及所述 IC卡装置超常工作时所需的 电荷。
进一步地,上述装置还可具有以下特点, 所述电源管理模块包括充电管 理单元、 储能单元和供电转换单元, 所述充电管理单元的输入端与所述 I S 07816接口的电源输入线 7816 _ VCC相连,输出端与所述储能单元的输入端 相连,所述供电转换单元的一个输入端与所述 IS07816 接口的电源输入线 7816-VCC相连,另一个输入端与所述储能单元的输出端相连, 所述供电转换 单元的输出端与所述 IC卡装置的供电输入线相连,其中:
所述充电管理单元,用于将输入电流转换为电荷存储在所述储能单元 中;
所述储能单元,用于存储电荷;
所述供电转换单元,用于选择所述 IS07816接口的电源输入线 7816_VCC 和 /或所述储能单元来为所述 IC卡装置供电。
进一步地,上述装置还可具有以下特点, 所述电源管理模块包括限流单 元、 充电管理单元、 储能单元和供电转换单元, 所述限流单元的输入端与所 述 IS07816接口的电源输入线 7816-VCC相连,输出端同时与所述充电管理单 元的输入端和所述供电转换单元的第一输入端相连,所述储能单元的输入端 与所述充电管理单元的输出端相连,输出端与所述供电转换单元的第二输入 端相连,所述供电转换单元的输出端与所述 IC卡装置的供电输入线相连,其 中:
所述限流单元, 用于根据预设门限限定最大脉沖电流;
所述充电管理单元,用于将输入电流转换为电荷存储在所述储能单元 中;
所述储能单元,用于存储电荷;
所述供电转换单元, 用于选择所述限流单元和 /或所述储能单元来为所 述 IC卡装置供电。
进一步地,上述装置还可具有以下特点, 所述电源管理模块包括顺次相 连的限流单元、 充电管理单元、 储能单元和供电转换单元, 所述限流单元的 输入端与所述 IS07816接口的电源输入线 7816-VCC相连, 所述供电转换单 元的输出端与所述 IC卡装置的供电输入线相连,其中:
所述限流单元, 用于根据预设门限限定最大脉沖电流;
所述充电管理单元,用于将输入电流转换为电荷存储在所述储能单元 中;
所述储能单元,用于存储电荷;
所述供电转换单元, 用于为所述 IC卡装置供电。
进一步地,上述装置还可具有以下特点, 所述限流单元由滤波电容、 开 关和上电复位电路组成,所述滤波电容的一端接所述 IS07816接口的电源输 入线 7816 -VCC,另一端接所述开关的第一端,所述上电复位电路连接在所述 I SO 7816接口的电源输入线 7816 _ VCC和所述开关的第二端之间,所述开关的 第三端接地, 所述开关的第二端可选择地与所述开关的第一端或第三端相 连。
进一步地,上述装置还可具有以下特点, 所述充电管理单元为 DC-DC 电 路或电荷泵充电电路。
进一步地,上述装置还可具有以下特点, 所述充电管理单元中具有升压 电路。
进一步地,上述装置还可具有以下特点, 所述储能单元由充电开关、 充 电限流电阻、 充电电容、 放电电阻和放电开关组成, 所述充电开关、 充电限 流电阻、 放电电阻和放电开关依次串联, 所述充电电容连接在所述充电限流 电阻和放电电阻的接点与地之间。
进一步地,上述装置还可具有以下特点, 所述储能单元中具有电压检测 电路。
进一步地,上述装置还可具有以下特点, 所述供电转换单元为 DC-DC转 换器。
进一步地,上述装置还可具有以下特点, 所述供电转换单元为双端输入、 双端输出的 DC-DC转换器。
进一步地,上述装置还可具有以下特点, 所述供电转换单元中具有电源 检测电路和 /或多路供电合并装置。
进一步地,上述装置还可具有以下特点, 还包括射频电路, 所述射频电 路用于实现所述 IC卡装置与外部读卡器间的无线近距离通信。
进一步地,上述装置还可具有以下特点, 所述 IC卡装置为 SIM卡、 UIM 卡或 US IM卡。
本发明的 IC卡装置, 能够满足其超出正常功耗时的供电需求, 从而能 够实现与现有的手机等移动通信终端的兼容。 带有本发明 IC卡装置的手机 对于供电的要求可以降低到和普通手机一样,从而解决了增加有射频功能的 IC卡装置在有些手机上不兼容的问题; 此外, 带有本发明 IC卡装置的手机 甚至还可以在手机没电的时候仍然可以通过 IC卡装置进行一次消费或交易, 改善实用过程中的用户体验。 附图说明
图 1为本发明 IC卡装置实施例的结构图;
图 2为图 1 中电源管理模块的一种结构图;
图 3为图 1 中电源管理模块的另一种结构图; 图 4为图 1 中电源管理模块的再一种结构图;
图 5为限流单元 201的一种结构图;
图 6为储能单元 203的一种结构图;
图 7为本发明 IC卡装置输入电流和输出电流的一个示例图。 具体实施方式
本发明的 IC卡装置, 包括微处理器、 存储器和 IS07816接口等普通 IC 卡所具有的部件, 与现有 IC卡不同的是, 本发明的 IC卡装置还包括电源管 理模块, 该电源管理模块用于提供 IC卡装置正常工作时所需的电荷以及 IC 卡装置超常工作时所需的电荷。 本文中所述的超常工作主要是指普通的 IC 卡装置在增加了其他功能模块(例如射频模块)后的工作状态, 既超常工作 是指工作负荷在现有 IC卡的基础上增加了的工作状态。
这样, 本发明的 IC卡装置就不但能满足正常工作时的供电需求, 而且 能够满足其在增加了射频通信等功能后超出正常功耗时的供电需求,从而能 够实现与现有的手机等移动通信终端的兼容。
以下结合附图和实施例对本发明的原理和特征进行描述, 所举实施例只 用于解释本发明, 并非用于限定本发明的范围。
图 1为本发明 IC卡装置实施例的结构图。 如图 1所示, 本实施例中, IC卡装置 10包括 IS07816接口 100、 电源管理模块 200、微处理器及存储器 300和射频模块 400。 图 1所示的 IC卡装置为一个射频 IC卡, 例如可以是 射频 SIM卡、 射频 UIM卡或者射频 USIM卡等, 其中的射频模块 400实现射 频通信功能, 使得 IC卡装置可以进行电子支付等交易。 当然, 在本发明的 其他实施例中, IC卡装置可以不具有射频模块 400 ,而具有其他的功能模块, 或者只具有 IS07816接口 100、 电源管理模块 200、 微处理器及存储器 300 , 而不具有任何其他的功能模块。 如图 1所示, 电源管理模块 200是本发明的 IC卡装置与现有 IC卡的区别之处,电源管理模块 200用于提供 IC卡装置正 常工作时所需的电荷以及 IC卡装置超常工作时所需的电荷。 有了电源管理 模块 200 ,在增加了其他功能模块的情况下, 即使供电需求超出了 IC卡装置 正常工作时所需的功耗, 也能满足供电要求。
图 2为图 1 中电源管理模块的一种结构图。 如图 2所示, 本实施例中, 电源管理模块 200可以包括充电管理单元 202、 储能单元 203和供电转换单 元 204 , 其中, 充电管理单元 202用于将输入电流转换为电荷存储在储能单 元 203中;储能单元 203用于存储电荷;供电转换单元 204用于选择 I S07816 接口 100的电源输入线 7816_VCC和 /或储能单元 203来为该 IC卡装置供电。 其连接关系为, 充电管理单元 202的输入端与 IS07816接口 100的电源输入 线 7816_VCC相连, 充电管理单元 202的输出端与储能单元 203的输入端相 连,供电转换单元 204 的一个输入端与 IS07816 接口 100 的电源输入线 7816_VCC相连,供电转换单元 204的另一个输入端与储能单元 203的输出端 相连, 供电转换单元 204的输出端与 IC卡装置的供电输入线相连,这里, IC 卡装置的供电输入线是指 IC卡装置中除电源管理模块 200外其他部件的供 电输入线, 比如图 1所示的微处理器及存储器 300的供电输入线和射频模块 400的供电输入线, 供电输入线可以为一条或多条, 图 2所示的供电输入线 有 2条, 即供电输入线 a和供电输入线 b, 其中, 供电输入线 a是微处理器 及存储器 300的供电输入线 SIM_VCCD,供电输入线 b是射频模块 400的供电 输入线 SIM_VCCRF。 本实施例适用于 IC卡装置的上电脉沖电流较小的情况。 在上电脉沖电流较小时, 不需要下面几个实施例中阐述的限流单元 201。
图 3为图 1中电源管理模块的另一种结构图。如图 3所示,本实施例中, 电源管理模块 200可以包括限流单元 201、充电管理单元 202、储能单元 203 和供电转换单元 204 , 其中, 限流单元 201用于根据预设门限限定最大脉沖 电流;充电管理单元 202用于将输入电流转换为电荷存储在储能单元 203中; 储能单元 203用于存储电荷;供电转换单元 204用于选择限流单元 201和 /或 储能单元 203来为该 IC卡装置供电。 其连接关系为, 限流单元 201的输入 端与 IS07816接口 100的电源输入线 7816_VCC相连,输出端同时与充电管理 单元 202的输入端和供电转换单元 204的第一输入端相连,储能单元 203的 输入端与充电管理单元 202的输出端相连,输出端与供电转换单元 204的第 二输入端相连, 供电转换单元 204的输出端与该 IC卡装置的供电输入线相 连, 关于 IC卡装置的供电输入线在前面已有详细描述, 此处不再赘述。
电源管理装置 200具备脉沖电流限制、储备电荷以及多输入供电的功能, 这里以 IC卡装置放置在手机中为例, 说明本发明 IC卡装置的工作原理: 1 ) 当手机打开 IC卡装置供电电路时, 电源管理装置 200以不超过最大限定的 电流对其内部的储能单元 203进行充电, 直到储能单元 203饱和; 2 ) 当手 机关闭 IC卡装置供电电路时, 电源管理装置 200储备电荷, 在除 IC卡装置 电路本身消耗之外最大限度减少存储电荷的流失; 3 ) 当 IC卡装置电路工作 需要消耗电荷时, 电源管理装置 200可以既可以从其内部的储能单元 203汲 取电荷, 也可以同时从电源输入端汲取电荷。
图 4为图 1中电源管理模块的再一种结构图。如图 4所示,本实施例中, 电源管理模块 200可以包括顺次相连的限流单元 201、 充电管理单元 202、 储能单元 203和供电转换单元 204 , 限流单元 201的输入端与 IS07816接口 100的电源输入线 7816_VCC相连, 供电转换单元 204的输出端与 IC卡装置 的供电输入线相连,其中, 限流单元 201用于根据预设门限限定最大脉沖电 流; 充电管理单元 202用于将输入电流转换为电荷存储在储能单元 203中; 储能单元 203用于存储电荷;供电转换单元 204用于为该 IC卡装置供电。 IC 卡装置的供电输入线与前面所述相同。
在本发明的各实施例中, 限流单元 201的结构可以如图 5所示。 图 5为 限流单元 201的一种结构图,由图 5所示,限流单元 201可以由滤波电容 Cf、 开关 S和上电复位电路组成,滤波电容 Cf 的一端接 IS07816接口的电源输入 线 7816_VCC,另一端接开关 S的第一端 el,上电复位电路连接在 IS07816接 口的电源输入线 7816_VCC和开关 S的第二端 e2之间, 开关 S的第三端 e3 接地,开关 S的第二端 e2可选择地与开关 S的第一端 el或第三端 e3相连。 限流单元 201的最大限流值可以根据 SIM卡、 UIM卡以及 USIM卡等 IC卡装 置的规范进行设置,也可以根据实际经验进行设置,如最大电流设置为 10mA。 上电时, 上电复位电路需要一段启动复位时间后才緩慢关闭开关, 避免电源 与地之间的滤波电容产生较大的瞬态电流,避免 IS07816接口由于大脉沖电 流而产生关断供电电流现象。
在本发明的各实施例中, 充电管理单元 202可以为 DC-DC电路或电荷泵 充电电路, 实现 IS07816接口从 3. 3V到 5V的升压转换。 充电管理单元 202 可以带有升压电路, 将输入的电荷以较高电压方式存储在储能单元 203中, 以增大存储电荷的容量。
在本发明的各实施例中, 储能单元 203的结构可以如图 6所示。 图 6为 储能单元 203的一种结构图,由图 6所示,储能单元 203可以由充电开关 Sl、 充电限流电阻 Rl、 充电电容(、 放电电阻 R2和放电开关 S2组成, 充电开关 Sl、 充电限流电阻 Rl、 放电电阻 R2和放电开关 S2依次串联, 充电电容 C 连接在充电限流电阻 R1和放电电阻 R2的接点与地之间。 当储能电容 C电荷 不足时, 断开放电开关 S2 , 闭合充电开关 S1 , 开始充电; 充电完成且射频 电路、处理器、存储器等电路开始工作,需要较多电流时, 断开充电开关 S1 , 闭合放电开关 S2 , 为供电转换单元 204提供电荷或电流输入。
以一个含有射频通信功能的射频 SIM卡为例,储能单元 203中充电电容 C的容值可以采用以下方法进行计算:
1 ) 电源管理装置 200输入输出条件设定。
输入设定: 7816-VCC输入电压 I7816 * V7816 ( 10mAS)3. 3V ); DC/DC204转换效率为 η ( 90% );
202转换效率为 γ (90%), 其输出为 Vc ( 5V );
射频 SIM卡保证成功刷卡周期最小为 t (20mS)。
输出设定: 微处理器、 存储器工作所需: SIM_VCCD: IDS)VD (5mAS)3.3V );
射频电路工作所需: SIM—VCCRF: IRFS)VRF ( 15mAS)2V)。 计算: C是多少? (C在射频 SIM卡工作周期内电容泄放电从 Vc ( 5V) 到 l/2*Vc ( 5/2V ), 保证供电转换单元 204正常工作)
2) 针对输入功率、 输出功率以及转换效率, 利用功率守恒定 律计算。
供电转换单元 204输入功率为:
DC/DC输入功率为: A816 = * 78i6; 电容输入功率为: C * ( AV) 7t 。
供电转换单元 204输出功率为:
S IMVCCRF端口: P RF = I RF *VRF
SIMVCCD端口: 1 D *VD 。 根据功率守恒:
输入功率 * η =输出功率
. 即: 0Ρ7816 +ί:*(Δν)2〃)*;7 = /^+ 公式 1 从而得出 C:
C _ + PD -尸 7816 * ) *
" 公式 2
代入数值:
C=60uF
充电管理单元 202给 C 充电, 根据其充电回路的时间常数 d = Wl*C, 选择 Rl为 K级,则充电时间为 mS级; 203放电时间保证 20mS内放电 5/2 V, 及其时间常数 r2 = R2*C , 推算 R2约为: 1K。 具体数值可试验调试得出。 在具体工程实施中, 60uF的电容可以采用一个或多个电容的形式容易集 成在射频 SIM卡上, 而 K级电阻也容易集成在 IC卡装置中。
储能单元 203可以为一个电容, 也可以为一种微型可充电电池, 使得其 能够嵌入到 IC卡装置中, 储能单元 203电容值的大小可以根据实际应用需 求测量得出, 例如以一次交易实际需要消耗的电荷来计算获得, 通常情况下 l OOuF、耐压值为 5V的电容即可存储足够一次交易使用的电荷。储能单元 203 采用电容进行电荷存储时,提高电容容量和存储电压值均可以扩大存储电荷 的容量。
在本发明的各实施例中, 储能单元 203可以带有电压检测电路, 分别检 测充电管理单元 202的输入电压和储能单元 203的电压, 当输入电压超过设 定门限且储能单元 203的电压不足时, 充电管理单元 202启动充电功能对储 能单元 203进行充电, 储能单元 203充电充满时, 停止充电管理单元 202的 充电功能; 当 IC卡装置上芯片以及元器件的工作电压不足且储能单元 203 充满时, 储能单元 203对供电转换单元 204发挥放电功能。
在本发明的各实施例中, 供电转换单元 204可以为 DC-DC转换器。 供电 转换单元 204可以带有电源检测电路, 当 IC卡装置上芯片以及元器件的工 作电压不足时启动供电转换功能,从储能单元 203中汲取电荷以提供供电电 路, 维持 IC卡装置工作所需要的电压; 供电转换单元 204还可以带有多路 供电合并装置, 该装置能够分别检测每一路输入信号的电压, 当一路电源输 入电压大于设定值则打开输入通道, 为 IC卡装置电路供电。
供电转换单元 204可以是一个双端输入、 双端输出的 DC-DC转换器。 两 个输入分别接 IS07816接口和储能单元 203的放电输出端, 两个输出端口分 别连接射频电路电源端(即前述的供电输入端 )和处理器、 存储器等电路电 源端。 当所需功耗较小或射频电路不工作时, 供电转换单元 204可以只接 入 IS07816接口, 关断储能单元 203放电输出端; 当所需功耗较大或射频电 路工作时, 需要同时接入 7816接口与储能单元 203放电输出端口。
图 7为本发明 IC卡装置输入电流和输出电流的一个示例图。 采用本发 明电源管理模块 200可以使得输入电流保持在限定范围内 (如 10mA ) , 且较 为持续稳定, 如图 7 中的 7816_VCC所示; 其输出电流为射频电路及其他电 路供电, 其电流和电路工作状态相关, 一般具备呈现间歇性和突发性特点, 其最大电流大于输入电流(如 15mA ), 如图 7中的 SIM_VCCRF所示。
在本发明的各实施例中, IC卡装置可以为 SIM卡、 UIM卡或 USIM卡等, 这些 IC卡也可以是射频 IC卡, 比如射频 SIM卡、 射频 UIM卡或射频 USIM 卡等。
由前述可知, 本发明提出的 IC卡装置能够解决供电电流受限(即指不 能支持超常工作)问题且带有电荷存储功能的 IC卡装置, 该 IC卡装置具备 普通 IC卡所有的微处理器、存储器、 IS07816接口等, 还可以带有射频模块 以支持扩展射频通信功能, 或带有其他功能模块, 此外还包括一个电源管理 装置, 用于解决供电电流受限问题, 本发明有如下特点:
1 )采用电流限制电路装置(指限流单元 201 )减小上电时的脉沖电流, 使得上电电流能够控制在外接供电电源最大设定值范围内, 不至于导致外接 电源断电保护;
2 ) 能够对输入的电流进行电荷存储, 采用储能电路装置 (指储能单元 203 )进行电荷的存储, 采用充电电路装置(指充电管理单元 202 )利用输入 电流进行充电, 将输入电荷存储在储能电路装置中;
3 ) 能够利用存储的电荷对电路进行一定时间供电;
4 )采用供电转换电路(指供电转换单元 204 )同时从储能电路(即储能 单元 203 )中和输入电流中提取电荷对 IC卡上芯片及电子元器件进行一定时 间内供电, 从而解决 IC卡一定时间内超常工作时所需要的大电流问题。
这里以将本发明的 IC卡装置放置于手机中为例, 说明其同现有技术相 比较所具有的有益效果: 1.在手机对 S IM卡供电不足时, IC卡装置中的电源 管理模块 200能够将手机的有限供电转换为可满足 IC卡装置的电压和电流 输出, 从而保证 IC卡装置的正常工作; 2. 在手机关机或者手机电池电力不 足的情况下, 采用合适容量的储能电容或者微型电池也可以实现交易。 采用 本发明能够显著提高功耗较大的 IC卡装置在手机等终端设备上的适用性, 尤其对于射频 SIM卡的普及和推广有重要意义。
本发明的 IC卡装置, 能够满足其超出正常功耗时的供电需求, 从而能 够实现与现有的手机等移动通信终端的兼容。 带有本发明 IC卡装置的手机 对于供电的要求可以降低到和普通手机一样,从而解决了增加有射频功能的 IC卡装置在有些手机上不兼容的问题; 此外, 带有本发明 IC卡装置的手机 甚至还可以在手机没电的时候仍然可以通过 IC卡装置进行一次消费或交易, 改善实用过程中的用户体验。
以上所述仅为本发明的较佳实施例, 并不用以限制本发明, 凡在本发明 的精神和原则之内, 所作的任何修改、 等同替换、 改进等, 均应包含在本发 明的保护范围之内。

Claims

权 利 要 求 书
1. 一种 IC卡装置, 包括微处理器、 存储器和 IS07816接口, 其特征在 于, 还包括电源管理模块, 所述电源管理模块用于提供所述 IC卡装置正常 工作时所需的电荷以及所述 IC卡装置超常工作时所需的电荷。
2. 根据权利要求 1所述的 IC卡装置, 其特征在于, 所述电源管理模块 包括充电管理单元、 储能单元和供电转换单元, 所述充电管理单元的输入端 与所述 IS07816接口的电源输入线 7816_VCC相连,输出端与所述储能单元的 输入端相连,所述供电转换单元的一个输入端与所述 IS07816接口的电源输 入线 7816_VCC相连,另一个输入端与所述储能单元的输出端相连, 所述供电 转换单元的输出端与所述 IC卡装置的供电输入线相连,其中:
所述充电管理单元,用于将输入电流转换为电荷存储在所述储能单元 中;
所述储能单元,用于存储电荷;
所述供电转换单元,用于选择所述 IS07816接口的电源输入线 7816_VCC 和 /或所述储能单元来为所述 IC卡装置供电。
3. 根据权利要求 1所述的 IC卡装置, 其特征在于, 所述电源管理模块 包括限流单元、 充电管理单元、 储能单元和供电转换单元, 所述限流单元的 输入端与所述 I S07816接口的电源输入线 7816 _ VCC相连,输出端同时与所述 充电管理单元的输入端和所述供电转换单元的第一输入端相连,所述储能单 元的输入端与所述充电管理单元的输出端相连,输出端与所述供电转换单元 的第二输入端相连, 所述供电转换单元的输出端与所述 IC卡装置的供电输 入线相连,其中:
所述限流单元, 用于根据预设门限限定最大脉沖电流;
所述充电管理单元,用于将输入电流转换为电荷存储在所述储能单元 中;
所述储能单元,用于存储电荷;
所述供电转换单元, 用于选择所述限流单元和 /或所述储能单元来为所 述 IC卡装置供电。
4. 根据权利要求 1所述的 IC卡装置, 其特征在于, 所述电源管理模块 包括顺次相连的限流单元、 充电管理单元、 储能单元和供电转换单元, 所述 限流单元的输入端与所述 I S07816接口的电源输入线 7816 _VCC相连, 所述 供电转换单元的输出端与所述 IC卡装置的供电输入线相连,其中:
所述限流单元, 用于根据预设门限限定最大脉沖电流;
所述充电管理单元,用于将输入电流转换为电荷存储在所述储能单元 中;
所述储能单元,用于存储电荷;
所述供电转换单元, 用于为所述 IC卡装置供电。
5. 根据权利要求 3或 4所述的 IC卡装置, 其特征在于, 所述限流单元 由滤波电容、开关和上电复位电路组成,所述滤波电容的一端接所述 IS07816 接口的电源输入线 7816 -VCC,另一端接所述开关的第一端,所述上电复位电 路连接在所述 IS07816接口的电源输入线 7816-VCC和所述开关的第二端之 间, 所述开关的第三端接地, 所述开关的第二端可选择地与所述开关的第一 端或第三端相连。
6. 根据权利要求 2至 4任一项所述的 IC卡装置, 其特征在于, 所述充 电管理单元为 DC-DC 电路或电荷泵充电电路。
7. 根据权利要求 6所述的 IC卡装置, 其特征在于, 所述充电管理单元 中具有升压电路。
8. 根据权利要求 2至 4任一项所述的 IC卡装置, 其特征在于, 所述储 能单元由充电开关、 充电限流电阻、 充电电容、 放电电阻和放电开关组成, 所述充电开关、 充电限流电阻、 放电电阻和放电开关依次串联, 所述充电电 容连接在所述充电限流电阻和放电电阻的接点与地之间。
9. 根据权利要求 2至 4任一项所述的 IC卡装置, 其特征在于, 所述储 能单元中具有电压检测电路。
10.根据权利要求 2至 4任一项所述的 IC卡装置, 其特征在于, 所述供 电转换单元为 DC-DC转换器。
11.根据权利要求 10所述的 IC卡装置, 其特征在于, 所述供电转换单 元为双端输入、 双端输出的 DC-DC转换器。
12.根据权利要求 2至 4任一项所述的 IC卡装置, 其特征在于, 所述供 电转换单元中具有电源检测电路和 /或多路供电合并装置。
13.根据权利要求 1至 4任一项所述的 IC卡装置, 其特征在于, 还包括 射频电路, 所述射频电路用于实现所述 IC卡装置与外部读卡器间的无线近 巨离通信。
14.根据权利要求 1所述的 IC卡装置, 其特征在于, 所述 IC卡装置为 SIM卡、 UIM卡或 USIM卡。
PCT/CN2010/071394 2010-01-27 2010-03-29 一种ic卡装置 WO2011091621A1 (zh)

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