Abstract:
An operator can use a word processor for editing by substituting character strings. The operator can use a designating part of the word processor to identify what portion of a text is to be edited. The portion of the text to be edited is a designated character string. A plurality of substitute strings can be stored in a memory. The substitute character strings can replace the designated character strings. In addition, the designated character string can be placed in a memory to be used later as a substitutive character string.
Abstract:
In an information processor, input interface units (161, 162) are connected to one ring data bus (191) through jointing units (201, 202) and data processing units (181 and 185) are connected to the ring data bus (191) through jointing units (203 through 206) and branching units (221 through 224). Data processing units (183 through 187) are connected to the other ring data bus (192) through jointing units (207 through 210) and branching units (225 through 228) and output interface units (171, 172) are connected to the other ring data bus (192) through branching units (229, 230). The ring data buses (191, 192) propagate the respective in data through the input interface units (161, 162) while storing such data, and processing the data in any of the data processing units to provide outputs to any of the output interface units (171, 172). Thus, since the data is transmitted through the ring data buses ( 191, 192) while being held in the data buses, there is no necessity to provide a memory for temporarily storing the data in each data processing unit. In addition, for a large scale integration of a system, it is easy to integrate each unit in a high density.
Abstract:
The invention discloses isoxazole derivatives represented by a formula, in which R1 stands for hydrogen, lower alkyl, amino, halogen, lower alkoxy and the like, R2 stands for substituted or unsubstituted aryl and the like, R3 stands for hydrogen or lower alkyl, R4 stands for substituted or unsubstituted phenyl and the like, and Y stands for —CH2—, —CO—, —CH(CH3)—, —O—, —NH— and the like, or pharmaceutically acceptable salts thereof, which have excellent p38MAPkinase inhibitory action.
Abstract:
Substituted pyrazole compounds represented by formula (I), or salts thereof are disclosed, wherein R1 is —CH(OH)—CH(R4)-(A)n-Y, —CH2—CH(R4)-(A)n-Y, —CO-B1-A-Y or the like (wherein A is a lower alkylene; Y is an aryl group which may be substituted, for example, by halogen, or the like; R4 is a hydrogen atom or a lower alkyl group; B1 is —CH(R4)— or —N(R4)—; and n is 0 or 1); R2 is a hydrogen atom, a lower alkyl group which may be substituted by hydroxyl or the like, or an aralkyl group; R3 is a phenyl group which may be substituted by halogen or the like, or a pyridyl group; and Q is a pyridyl or quinolyl group. These substituted pyrazole compounds or their salts have an excellent p38MAP kinase inhibiting effect and are hence useful in the prevention or treatment of tumor necrosis factor α-related diseases, interleukin 1-related diseases, interleukin 6-related diseases or cyclooxygenase II-related diseases
Abstract translation:公开了由式(I)表示的取代的吡唑化合物或其盐,其中R 1是-CH(OH)-CH(R 4) - (A) -CH(R 4) - (A)n -Y, - CO(CH 2) -B 1 -I 1等(其中A是低级亚烷基; Y是可以被卤素取代的芳基等); R 4, SUP>是氢原子或低级烷基; B 1是-CH(R 4) - 或-N(R 4) - ;和n为0或1); R 2是氢原子,可以被羟基等取代的低级烷基或芳烷基; R 3是可以被卤素等取代的苯基或吡啶基; Q为吡啶基或喹啉基。 这些取代的吡唑化合物或其盐具有优异的p38MAP激酶抑制作用,因此可用于预防或治疗肿瘤坏死因子α相关疾病,白细胞介素1相关疾病,白细胞介素6相关疾病或环氧合酶II相关疾病
Abstract:
In a data transmission apparatus, a plurality of data processing modules are used and required sequence setting is performed to a port sequencer of input/output ports of each data processing module, and the daisy chain transfer of the selective data transfer, the load distribution data transfer, the collective data transfer is combined between the data processing modules, thereby the data transmission is performed efficiently at high speed.
Abstract:
In a data transmission apparatus, a plurality of data processing modules are used and required sequence setting is performed to a port sequencer of input/output ports of each data processing module. The daisy chain transfer of the selective data transfer, the load distribution data transfer, the collective data transfer is combined between the data processing modules, thereby the data transmission is performed efficiently at high speed.
Abstract:
This invention offers isoxazole derivatives represented by the following formula (I) in which R1 and R2 each stands for hydrogen, lower alkyl, amino and the like; R3 stands for substituted or unsubstituted aryl or hetero aryl; R4 stands for hydrogen or lower alkyl; R5 stands for substituted or unsubstituted phenyl, furyl and the like; and Y stands for —CH2—, —CO—, —O—, —NH— and the like, or pharmaceutically acceptable salts thereof which exhibit excellent p38MAPkinase-inhibiting action with reduced side-effects, and are useful for treating such diseases as chronic rheumatoid arthritis, ulcerative colitis and the like.
Abstract:
A printing apparatus has a memory 5 that stores image data for overprinting making it difficult to notice characters printed by overprinting, an image rendering unit 7 that renders image data on the basis of a rendering command of the memory and expands the image data for overprinting, and a printer engine unit 8 that prints and records the image data transmitted from the image rendering unit 7 on a paper. The printer engine unit 8 overprints the image data for overprinting on the printed paper.
Abstract:
A data transmission apparatus for transmitting data between systems includes: an input data transmission path, an output data transmission path, and a branch data transmission path each constituted by a shift register, each data transmission path has a plurality of data storage circuits and a plurality of transfer control circuits each provided corresponding to each o--stage. The data storage circuit control a self stage data storage circuit in accordance with a control signal from the transfer control circuit of an adjacent stage. An initialization circuit for initializing the device is provided so that data on the data transmission path does not remain at the start of operation of the device.
Abstract:
A data processing apparatus includes two data transmission paths formed likewise in a loop fashion. These data transmission paths include a plurality of latch registers connected in a cascade fashion respectively and are constituted as a so-called self-running type shift register wherein each data word constituting a data packet is shifted in sequence provided that a pre-stage register is vacant. Data packets are transmitted in the directions reverse to each other on the two loop-shaped data transmission paths an identification data included in each data packet being transmitted is detected in a section defined as a data packet pair detecting section. The detected identification data are compared in a comparing circuit and, one new data packet is produced from the two data packets in a manner that a data packet is joined from one data transmission path to the other data transmission path.