Abstract:
An information processing device capable of easily using an application by an operation environment based on each user between different personal computers. A recording medium includes at least a storage region for storing a medium ID and an application program and a storage region where user setting information of each user can be written additionally. As an operation for the recording medium, by using the information for environment setting stored in the storage medium including the aforementioned user setting information, environment setting is performed in the information processing device. Under the environment of each user thus set, application programs stored in the same storage medium are started an executed.
Abstract:
[Solving Means] A bulb-type light source apparatus includes a light source and a light guide member. The light source is provided annularly. The light guide member includes an outer surface, a light-incident end surface opposing the light source, and an optical pattern portion configured to emit, from the outer surface, light that enters from the light-incident end surface.
Abstract:
According to an embodiment of the present technology, there is provided a bulb-type light source apparatus including a light source unit, a translucent cover, and a base unit. The translucent cover includes a first area including a convex lens function and a second area including a concave lens function. The base unit supports the light source unit and the translucent cover such that the second area is positioned closer to the light source unit than the first area.
Abstract:
A cathode active material having a large capacity and improved charge/discharge cycle characteristics is disclosed. A battery has a cathode (2) having a cathode active material, an anode (3) and a non-aqueous electrolyte, and uses a cathode active material composed of a mixture of a first lithium-transition metal composite oxide containing Ni and Co and comprising a layer structure and a second lithium-transition metal composite oxide containing Ni and Mn and comprising a layer structure.
Abstract:
An information processing device capable of easily using an application by an operation environment based on each user between different personal computers. A recording medium includes at least a storage region for storing a medium ID and an application program and a storage region where user setting information of each user can be written additionally. As an operation for the recording medium, by using the information for environment setting stored in the storage medium including the aforementioned user setting information, environment setting is performed in the information processing device. Under the environment of each user thus set, application programs stored in the same storage medium are started an executed.
Abstract:
A magnetic alloy which contains not less than 0.03 weight % but not more than 5.0 weight % of P not less than 3.0 weight % but not more than 26.0 weight % of Al and Si totally (where Al is not less than 0.01 weight % but not more than 13.0 weight % and Si is not less than 0.01 weight % but not more than 13.0 weight %), the remaining part of the alloy consists mainly of Fe and the alloy is characterized in that P is presented on the grain boundary thereof with the amount more than 0.5 weight % of the atoms which form said grain boundary.
Abstract:
A modulating method, a modulating device and a demodulating device, in which it is possible to improve the digital sum value (DSV) of the coded information, modulated for transmission or recording on the recording medium, are disclosed. An encoding circuit (11) translates a sequence of input data into a sequence of coded data suitable for transmission. A pattern generating circuit (12) generates a pattern of a pre-set length at a pre-set interval inversely proportionate to the low-range cut-off frequency of the modulated coded data. A pattern inserting circuit (13) inserts the patterns into the sequence of coded data A at the pre-set interval. A modulating circuit (14) NRZI modulates the pattern- interlaced sequence of the coded data B and outputs the resulting sequence. A timing control circuit (15) controls the pattern inserting circuit (13) a so forth. The DSV of the modulated coded data may be controlled by the inserted patterns, while the increase in redundancy may be maintained at a necessary minimum value to adapt the DSV control characteristics to the specifications demanded by the transmission system.
Abstract:
A modulating method, a modulating device and a demodulating device, in which it is possible to improve the digital sum value (DSV) of the coded information, modulated for transmission or recording on the recording medium, are disclosed. An encoding circuit (11) translates a sequence of input data into a sequence of coded data suitable for transmission. A pattern generating circuit (12) generates a pattern of a pre-set length at a pre-set interval inversely proportionate to the low-range cut-off frequency of the modulated coded data. A pattern inserting circuit (13) inserts the patterns into the sequence of coded data A at the pre-set interval. A modulating circuit (14) NRZI modulates the pattern- interlaced sequence of the coded data B and outputs the resulting sequence. A timing control circuit (15) controls the pattern inserting circuit (13) a so forth. The DSV of the modulated coded data may be controlled by the inserted patterns, while the increase in redundancy may be maintained at a necessary minimum value to adapt the DSV control characteristics to the specifications demanded by the transmission system.