Abstract:
An information processing device having an activation verification function comprises: a module recording portion which stores plural system programs, a security chip having the function of checking the validity of the system programs and a verification portion which inspects the activation states of the system programs. The security chip executes validity checking processing using verification data provided by the system programs. If the security chip cannot confirm the validity of the system programs, the verification portion acquires activation-state information about activated system programs from the activated system programs. If pre-stored verification-information initial values for valid system programs and the acquired activation-state information match with each other, the verification portion determines that the current activation states of the system programs are valid, and the subsequent activation processing for the system programs is advanced.
Abstract:
An information processing unit is an unit which has an information division recording function in which a file is divided and stored. The information processing unit includes a first storage section for storing a first partial file of a file divided, a second storage section for storing a second partial file, a state detection section for checking an operating state of the information processing unit and detecting that the operating state has changed in a specific manner, and a control section for performing a lock processing in accordance with the state detected to the second partial file stored on the second storage section when the state detected by the state detection section is determined as a risky state in which unauthorized access can be performed.
Abstract:
A mobile information processing device (200) obtains specific information of a user in response to an operation by the user, authenticates the user based on the specific information, establishes the first wireless communication mode, and then transmits authentication information to an information processing terminal. The information processing terminal (100) receives the authentication information from the mobile information processing device in the first wireless communication mode (A), verifies the received authentication information, generates an identification based on the resultant verification, transmits, in the first wireless communication mode, the identification to the mobile information processing device, then changes from the first wireless communication mode into the second wireless communication mode (B), and iteratively performs polling of the mobile information processing device. The mobile information processing device receives the identification from the information processing terminal in the first wireless communication mode, then changes from the first wireless communication mode to the second wireless communication mode, and transmits, in response to the polling from the information processing terminal, a reply containing the identification back to the information processing terminal in the second wireless communication mode. Thus the presence of the mobile information processing device is managed.
Abstract:
In an information access system, an active-type contactless information storage device senses a carrier of an RF signal at a first frequency in time periods for carrier sensing occurring in a predetermined carrier sensing cycle period, and then in response to detection of a carrier of an RF signal at the first frequency, further receives the information request signal, while it also transmits the tag information signal at a second frequency carrying information in time periods for tag information transmission occurring in a predetermined tag information transmitting cycle period. A reader/writer device cyclically transmits an information request signal carrying values of the predetermined carrier sensing cycle period and the predetermined tag information transmitting cycle period, at a first frequency during a predetermined period of time for information request transmission, and in response to reception of a tag information signal at the second frequency, reproduces and compares received tag information with a list of tag information. In response to reception of the information request signal, the active-type contactless information storage device reproduces and sets the values of the two predetermined cycle periods into its respective timers. Thus the active-type contactless information storage device reduces its power consumption.
Abstract:
An information processing device and method include storing encrypted content, storing a key for decrypting the encrypted content stored, decrypting the encrypted content stored using the key, storing a deletion table storing information indicating whether or not the key stored is to be deleted when a transition from an operating state to one of other states is made, the information corresponding to the other states, and checking the information in the deletion table corresponding to the one of the other states and deleting the key when the information indicates that the key is to be deleted.
Abstract:
A contactless information storage device for use in an information access system includes a receiver unit and a transmitter unit. The receiver unit is operable to sense a carrier at a first frequency in a slave mode and be continuously ready to receive an RF signal at a second frequency different from the first frequency in a master mode. In the slave mode, the transmitter unit transmits a response signal at the second frequency in response to reception of an information request signal. In the master mode, the transmitter unit cyclically transmits an information request signal at the first frequency in a transmission period and goes into an inactive state in a sleep period. In the slave mode, the transmitter unit and the receiver unit are caused to go into the master mode, when the receiver unit receives no information request signal in a time period longer than given periods.
Abstract:
An active-type information storage device includes a memory, a battery, a timer, a receiver unit, a transmitter unit, and a control unit, a sensor unit, a remaining power detector unit, and a power management unit. The power management unit determines an operation mode in accordance with a remaining power of the battery. In accordance with the operation mode, the control unit causes the receiver unit or the sensor unit to operate at a particular timing. In an intermittent sleep time period, the control unit causes the transmitter unit, the receiver unit, and the sensor unit to be in an inactive state. In a period after the sleep time period, the control unit causes the sensor unit to operate in the operation mode, and causes the memory to store the detected data from the sensor unit that is determined in accordance with the operation mode.
Abstract:
An information access system includes a reader/writer device and an information storage device. In the information storage device, a receiver unit senses a carrier of an RF signal at a first frequency for detection, in a first time period occurring at time intervals, and receives an information request signal in response to detection of a carrier of an RF signal at the first frequency, and senses a carrier of an RF signal at a second frequency in response to reception of the information request signal. In the storage device, a control causes the receiver unit to sense a carrier of an RF signal at the first frequency for detection, in a second time period after a sleep time period which is shorter than the time interval, in response to non-detection by the receiver unit of a carrier of an RF signal at the first frequency in the first time period.
Abstract:
The radio communication system includes a radio communication apparatus having: a communication part which transmits a request signal requesting a response to a radio tag; and a radio tag which transmits a response signal in response to a reception of the request signal from the radio communication apparatus. The radio communication apparatus has an intermittent control part which makes the communication part transmit the request signal at an interval of a given stop time during a given operation time.
Abstract:
A method, to facilitate communication by a machine, includes: receiving data transmitted from a reading/writing apparatus; detecting a data request signal; transmitting, to the reading/writing apparatus, a response signal responsive to the data request signal; acquiring, from a sensor, detected data indicative of at least one of a physical quantity and a physical state; storing the acquired detected data into a memory and setting thereafter a flag to a first state; transmitting the acquired detected data if the data request signal is detected and setting thereafter the flag to a second state; invoking an alarm if the flag is in the first state and a power switch is in an OFF state; and controlling the power switch to disconnect power from the power supply to the information apparatus if the flag is in the second state and the power switch is in the OFF state.