Abstract:
There is disclosed a technology in which a packet to be sent to a mobile terminal (an MN), distributed from a correspondent node (a CN), can surely reach the MN even in a situation in which the MN is moving. According to the technology, identification information of a plurality of access routers (ARs) 300 potentially currently connected to the MN is added to an IP packet to be transmitted from a CN 500 to an MN 200. When the AR receives this IP packet, the AR judges whether or not the MN is connected thereunder. If the MN exists under the AR, the IP packet is transmitted to the MN. On the other hand, if any MN does not exist under the AR, the IP packet is transferred to another AR based on the identification information added to the IP packet. As a result, the IP packet is successively transferred between the plurality of ARs so that the IP packet can be passed to the MN under the AR currently connected to the MN.
Abstract:
A radio communication device for data communication with another terminal through wireless medium, includes: a communicator which transmits/receives data by predetermined data communication units; a communication meter which measures a data communication unit which is actually communicated for a predetermined period in the communicator; and a controller which finds an average unit length of the data communication for the period on the basis of a measure result in the communication meter so as to obtain communication load information based on the average unit length.
Abstract:
The recording apparatus (300A) of the present invention includes a drive apparatus (320). The drive apparatus (320) includes a head section (334) for performing a recording operation or a reproduction operation for an information recording medium (100) and a drive control section (331) for controlling the head section (334). The drive control section (331) receives an update instruction including a third address indicating at least a part of the locations of the information recording medium (100) at which the first address information is recorded and the second address information. In accordance with the update instruction, the drive control section (331) controls the head section (334) to record the second address information in the information recording medium (100), generates disc management information including correlation information (336) which correlates the first address information with the second address information, and controls the head section (334) to record the disc management information in the information recording medium (100). The drive control section (331) controls the head section (334) to record the second information in the information recording medium (100) in accordance with the second address.
Abstract:
A ferroelectric memory provided in a memory system stores in advance set data for data write time to memory cells. The set data include two types of data that differ between in a power-on state and in a power-off instruction time. When power is turned on, the set data that are stored in the ferroelectric memory are stored and retained in a latch circuit by a control circuit. Based on the set data retained in the latch circuit, data writing is performed in the ferroelectric memory respectively in the power-on state and in the power-off instruction time. Thus, operations of the ferroelectric memory can be controlled with desired operation timings according to operating conditions for each memory system. Excessive stress application to the ferroelectric memory during the power-on state is prevented and endurance deterioration is suppressed, while data retention characteristics after power-off are improved.
Abstract:
A capacitor includes a first electrode, a second electrode, a separator placed between the first and second electrodes, and an electrolyte. The first electrode includes a first collector made of metal foil, a first electrode layer containing carbon formed on the surface of the first collector, and a first protector covering the cross section of the first collector. The second electrode includes a second collector made of metal foil, a second electrode layer containing carbon formed on the surface of the second collector, and a second protector covering the cross section of the second collector.
Abstract:
A surface mount current fuse of the present invention includes a first base which has a recess and is smaller in width at the other end than at one end in the longitudinal direction, and a second base which has the same shape as the first base. The first base and the second base are combined to form a box-shaped body by joining the lower surface of the second base to the upper surface of the upper surface of the first base in such a manner that one end of the first base and the other end of the second base are in contact with each other. The recess of the first base and the recess of the second base form a space portion in which to dispose an element portion. The borderline between the first base and the second base passes through the center point on a side surface of the body. As a result, the surface mount current fuse has high production efficiency.
Abstract:
Regarding electronic component mounting in which an electronic component having plural solder bumps for external connection on its lower surface is mounted on a board, in an electronic component mounting operation of previously measuring the height position of solder paste on the board on which the solder paste has been printed, and mounting the electronic component on the board on which the solder paste has been printed by a loading head, whether the transfer of the solder paste to the solder bumps is necessary or not is judged on the basis of the measurement result of the height of the solder paste. In case that it is judged that the transfer is necessary, the transfer of the solder paste is executed, and thereafter the electronic component is mounted on the board. Hereby, it is possible to prevent the poor joint in case that a thin-sized semiconductor package which causes easily warp deformation is mounted on the board by solder-joint.
Abstract:
A spring member is provided in a switch having a lever to receive a pushing force from outside, by bringing an arch-part formed at the left end of the spring member into resilient contact with the bottom surface of the lever, in addition to the movable contact, the spring member also can return the lever. In the case of developing a compact and low-profile switch, the returning force of the lever can be increased to perform electrical connection or disconnection reliably.
Abstract:
An information processing device, for use in a mobile terminal unable to obtain power consumption information from an external source, which can estimate, based on an actual performance value, a battery life, power consumption for processing that changes depending on the usage by the user, and so on, and ensures execution of processing specified by the user for a specified period of time, the information processing device comprising a power consumption calculating unit which calculates, for each processing executed by the information processing device, power consumption information concerning an amount of power consumed by executing each processing; a request generating unit which compares the amount of power indicated by the power consumption information and a remaining amount of power of the information processing device, and generates a request to execute predetermined processing according to a result of the comparison; and a request processing unit which executes the predetermined processing in response to the generated request.
Abstract:
An information processor (1) comprises: a history packet transmitter (11) for transmitting via a plurality of ports of a communication processor (2) a plurality of history packets; a request packet transmitter (12) for transmitting a request packet requesting transmission of a return packet; a packet transmission controller (13) for controlling transmission of a request packet; a return packet receiver (14) for receiving a return packet transmitted from a server (3); and a port keeping time detector (15) for detecting the port keeping time of the communication processor (2) based on reception of a return packet by the return packet receiver (14). The server (3) includes: a request packet receiver (31) for receiving the request packet; and a return packet transmitter (32) for transmitting the return packet to the history port of the communication processor (2) where a history packet passed when a request packet receiver (31) received a request packet. This configuration provides an information processing system for detecting the port keeping time of the communication processor.