Abstract:
A system enabling mutual entry for exchanging information between an electronic money system and a milage system for accumulating a mile point which is a distance point based on the flying distance of a passenger of an aircraft and exchanging the mile point into a boarding ticket or other services. The system uses an IC card (230) for storing a wallet number, manages the wallet number in correlation with the milage number, references an electronic money value ledger (222) corresponding to the wallet number in response to a user request, references a mile point ledger (122) corresponding to the milage number, converts a predetermined mile point into an electronic money value, performs accumulation processing in the electronic value ledger according to the conversion result, and performs subtraction in the mile point ledger.
Abstract:
In a magnetic head which can be mounted in large number on a rotating drum in large number and cope with a highfrequency band, a leading core and a trailing core can be easily discriminated from each other, and the type of a magnetic head can be easily identified. There is disclosed a magnetic head (1) including a pair of magnetic head halfmembers (4a,4b) obtained by forming magnetic metal (3a,3b) layers serving as magnetic cores on a part on a nonmagnetic substrate and a thinfilm coil (6a,6b) buried in the pair of magnetic head halfmembers, the pair of magnetic head halfmembers being joined to each other through a magnetic gap (g) formed between the magnetic metal layer of one magnetic head halfmember and the magnetic metal layer of the other magnetic head halfmember, wherein an identification groove (8) is formed in one magnetic head halfmember, and the formed identification groove makes the appearances of the pair of magnetic head halfmembers asymmetrical.
Abstract:
A data transmission device transmits a data broadcast using a narrow unused broadcasting band in a digital broadcast, and to record the data broadcast, which has been received, on a receiving side so that the receiving side can play back the data broadcast after a data stream is totally recorded. The transmission device generates a first data stream, which is recorded on a recording medium on a receiving side, and a second data stream including audio and video data, which is transmitted as a broadcasting program. The transmission device multiplexes the first and the second data streams and then transmits the multiplexed data stream. The transmission of the multiplexed data stream is controlled so that a transmission rate for the multiplexed data stream does not exceed the maximum transmission rate, and so that a transmission rate for the first data stream becomes lower than that for the second data stream. A receiving device records the first data stream on the recording medium, and permits the first data stream to be played back for use after the transmission completes.
Abstract:
In a magnetic head which can be mounted in large number on a rotating drum in large number and cope with a highfrequency band, a leading core and a trailing core can be easily discriminated from each other, and the type of a magnetic head can be easily identified. There is disclosed a magnetic head (1) including a pair of magnetic head halfmembers (4a,4b) obtained by forming magnetic metal (3a,3b) layers serving as magnetic cores on a part on a nonmagnetic substrate and a thinfilm coil (6a,6b) buried in the pair of magnetic head halfmembers, the pair of magnetic head halfmembers being joined to each other through a magnetic gap (g) formed between the magnetic metal layer of one magnetic head halfmember and the magnetic metal layer of the other magnetic head halfmember, wherein an identification groove (8) is formed in one magnetic head halfmember, and the formed identification groove makes the appearances of the pair of magnetic head halfmembers asymmetrical.
Abstract:
A data transmission device transmits a data broadcast using a narrow unused broadcasting band in a digital broadcast, and to record the data broadcast, which has been received, on a receiving side so that the receiving side can play back the data broadcast after a data stream is totally recorded. The transmission device generates a first data stream, which is recorded on a recording medium on a receiving side, and a second data stream including audio and video data, which is transmitted as a broadcasting program. The transmission device multiplexes the first and the second data streams and then transmits the multiplexed data stream. The transmission of the multiplexed data stream is controlled so that a transmission rate for the multiplexed data stream does not exceed the maximum transmission rate, and so that a transmission rate for the first data stream becomes lower than that for the second data stream. A receiving device records the first data stream on the recording medium, and permits the first data stream to be played back for use after the transmission completes.
Abstract:
A magnetic head capable of preventing erosion of the magnetic metal film despite the absence of a protective film and suppressing the decrease in the playback output due to decrease in the track width while preventing cracking from being initiated and developed in the ferrite substrate. The magnetic head is prepared by forming magnetic core half blocks and by bonding the core half blocks by gap bonding, each of the magnetic core half blocks being previously formed by stacking ferrite substrates 3, 5 on another ferrite substrate 4, 6, having magnetic metal films 1, 2 via glass films 10, 11 and forming track width adjustment grooves 18, 19. The glass transition temperature Tg of the glass employed for stacking the ferrite substrates is set so as to be higher than the glass yield point Tc of the fusion glass.
Abstract:
A magnetic head capable of preventing erosion of the magnetic metal film despite the absence of a protective film and suppressing the decrease in the playback output due to decrease in the track width while preventing cracking from being initiated and developed in the ferrite substrate. The magnetic head is prepared by forming magnetic core half blocks and by bonding the core half blocks by gap bonding, each of the magnetic core half blocks being previously formed by stacking ferrite substrates 3, 5 on another ferrite substrate 4, 6, having magnetic metal films 1, 2 via glass films 10, 11 and forming track width adjustment grooves 18, 19. The glass transition temperature Tg of the glass employed for stacking the ferrite substrates is set so as to be higher than the glass yield point Tc of the fusion glass.
Abstract:
PROBLEM TO BE SOLVED: To provide mutual linking of a milage system and an electronic money system. SOLUTION: An IC card 230 storing a wallet number is used, the wallet number and a milage number are managed in association, an electronic money value ledger 222 corresponding to the wallet number and a mile point ledger 122 corresponding to the milage number are referred in response to a request of a user, predetermined mile points are converted into an electronic money value, and an addition process is carried out to the electronic money value ledger and a subtraction process is carried out to the mile point ledger in response to a conversion result. By this, mutual conversion of the mile points/electronic money value can be carried out. COPYRIGHT: (C)2004,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To suppress the uneven abrasion of a magnetic shield layer, decrease in a reproduced output due to stains attached to a sliding surface and the fluctuation of the reproduced output. SOLUTION: The magnetic shield layer wherein a sticking matter is more easily stuck to its sliding surface between a lower magnetic shield layer 3 and an upper magnetic shield layer 12 when a tape recording medium slides is arranged on a side where the tape recording medium is inserted when mounted on a rotating drum. COPYRIGHT: (C)2004,JPO
Abstract:
PROBLEM TO BE SOLVED: To convey semiconductor devices with a correct attitude by arranging a positioning means on each suction pipe. SOLUTION: In a semiconductor device conveyer in which a plurality of semiconductor devices are sucked in by a plurality of suction pipes corresponding to the semiconductor devices, a guide hole 14 is formed in a stem 10 of each semiconductor device 4 and a guide pin 16 for being inserted into a guide hole 14 is formed on the lower end surface of each suction pipe 1. The direction of each semiconductor device is arranged in a prescribed direction by inserting the guide pin 16 into the guide hole 14. COPYRIGHT: (C)2003,JPO