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    • 91. 发明专利
    • Picture input device
    • 图像输入设备
    • JPS58222662A
    • 1983-12-24
    • JP10650282
    • 1982-06-21
    • Toshiba Corp
    • KOBAYASHI HIROSHI
    • H04N1/19G06T1/00H04N1/04
    • H04N1/04
    • PURPOSE:To attain highly precise and accurate picture input, by compensating mutually defective cells with the 1st and the 2nd image sensors for inputting a picture. CONSTITUTION:An image of an objective is separated into two systems via an optical system comprising a lens 12 and a half mirror 13 and formed respectively on an image pickup plane of the 1st and the 2nd image sensors 14, 15. A picture signal of the image of objective outputted from the image sensors 14, 15 is subject to the control of an output circuit 16 and read out successively in time series corresponding to picture elements and led to the output circuit 16. This output circuit 16 discriminates whether or not the picture signal read out respectively from the image sensors 14, 15 comes from the defective cell and compensates the picture signal from the defective cell by using the picture signal from the other image sensor according to the result of discrimination for outputting the result of compensation.
    • 目的:为了获得高精度和精确的图像输入,通过用第一和第二图像传感器补偿相互有缺陷的单元,用于输入图像。 构成:物镜的图像通过包括透镜12和半反射镜13并分别形成在第一和第二图像传感器14,15的图像拾取平面上的光学系统分成两个系统。图像信号 从图像传感器14,15输出的物体的图像经受输出电路16的控制,并且以与图像元素对应的时间序列连续读出并被导出到输出电路16.该输出电路16判别图像 来自图像传感器14,15的信号读出来自缺陷单元,并且根据用于输出补偿结​​果的判别结果,利用来自另一图像传感器的图像信号来补偿来自缺陷单元的图像信号。
    • 92. 发明专利
    • Communication system in ptmp type network
    • PTMP类型网络中的通信系统
    • JP2012034042A
    • 2012-02-16
    • JP2010169659
    • 2010-07-28
    • Tokyo Denki UnivToshiba Corp学校法人東京電機大学株式会社東芝
    • KOBAYASHI HIROSHISANO KAORIMORIYA OSAMU
    • H04W74/08H04W72/04H04W84/12
    • PROBLEM TO BE SOLVED: To provide a communication system in a PTMP type network with improved throughput performance.SOLUTION: In this embodiment, in a hub device in a PTMP type network to share the hub device among multiple subscriber devices and to perform transmission control between the hub device and the subscriber devices, different bandwidths are allocated to an uplink control channel for transmitting CA(collision avoidance) frames between the hub device and the multiple subscriber devices and to a data channel for transmitting data frames, respectively. Further, the CA procedure in the uplink control channel is performed independently from the transmission control of the data channel based on a data occupation state of the data channel.
    • 要解决的问题:提供具有改进的吞吐量性能的PTMP型网络中的通信系统。 解决方案:在本实施例中,在PTMP型网络的集线器设备中,在多个用户设备之间共享集线器设备,并且在集线器设备和订户设备之间执行传输控制,将不同的带宽分配给上行链路控制信道 用于在集线器设备和多个用户设备之间发送CA(避免冲突)帧,以及分别用于发送数据帧的数据信道。 此外,基于数据信道的数据占用状态,独立于数据信道的传输控制来执行上行链路控制信道中的CA过程。 版权所有(C)2012,JPO&INPIT
    • 93. 发明专利
    • HYDRAULIC ELEVATOR
    • JPH08245134A
    • 1996-09-24
    • JP5300195
    • 1995-03-13
    • TOSHIBA ELEVATOR ENG KKTOSHIBA CORP
    • MIYAUCHI TETSUYAKOBAYASHI HIROSHI
    • B66B9/04
    • PURPOSE: To eliminate setting of a circulating pump and a motor to drive it by providing an oil cooler having a pair of oil inlet and outlet pipes on a heat exchanging part as well as the heat exchanging part on the outside of an oil tank and circulating oil between the oil tank and the oil cooler without using the circulating pump. CONSTITUTION: Oil in an oil tank 11 is delivered to a hydraulic jack with pressure by driving a hydraulic pump 12 at the time of elevating up a cage. Oil is returned to the oil tank 11 as the cage is elevated down by its dead weight at the time of elevating down the cage. At the time when the hydraulic pump 12 sucks oil in the oil tank 11 through an oil suction and discharge port 14, oil is sucked from an oil inlet and outlet pipe 24 of an oil cooler 21 to a heat exchanging part 22 and sucked out from the oil outlet and inlet pipe 23 to the oil suction and discharge port 14, and accordingly, oil is cooled down by the oil cooler 21. In the meantime, even at the time when the hydraulic pump 12 discharges oil in the oil tank 11 through the oil suction and discharge port 14, oil is cooled down by passing the oil cooler 21 in the reverse direction.
    • 94. 发明专利
    • HYDRAULIC ELEVATOR
    • JPH07277608A
    • 1995-10-24
    • JP6534994
    • 1994-04-04
    • TOSHIBA CORP
    • KOBAYASHI HIROSHI
    • B66B1/26B66B1/04
    • PURPOSE:To reduce the size and cost of an oil cooler of a hydraulic elevator and to achieve energy saving by providing an oil cooler for cooling oil in.an oil tank, and variably setting an operating reference temperature according to the estimated heat exchange amount of the oil cooler. CONSTITUTION:A hydraulic elevator is provided with an oil cooler operation control part 22 for cooling oil in an oil tank. The oil cooler operation control part 22 reads an oil temperature detection signal 20a from an oil temperature sensor 20 and lowest oil temperature data 21a from an oil temperature data memory 21, and estimates the heat exchange efficiency of an oil coller in a machine room. According to the estimate, an operating reference temperature of the oil cooler is variably set, and an operation control command for starting and stopping the oil cooler is output. Thus, the size and cost of the oil cooler of a hydraulic elevator can be reduced, and energy saving can be achieved.
    • 95. 发明专利
    • HYDRAULIC ELEVATOR
    • JPH0797154A
    • 1995-04-11
    • JP24094793
    • 1993-09-28
    • TOSHIBA CORP
    • KOBAYASHI HIROSHI
    • B66B9/04B66B1/04B66B5/00B66B5/02
    • PURPOSE:To safely operate an elevator by providing an oil sensor for detecting an oil leak in a connection part of a coupling for connecting a plurality of pipes of force-feeding oil to a cylinder, so that the oil leak in the pipe can be early discovered. CONSTITUTION:In pipes 15 connected between a power unit and a hydraulic jack, the intermediate part is connected by a plurality of couplings 16. This coupling 16 is formed into a two-part divided structure, to cover both end parts of the respective pipes 15, and connected by a bolt 16a. Here to the lower surface of a connection part between the coupling 16 and the pipe 15, an oil sensor 17, which causes a change chemically or electrically by sticking oil to generate an electric signal, is mounted. The oil sensor 17 of each coupling 16, after connected in series by a wire 18, is connected to a control unit of a hydraulic elevator. In the case of detecting an oil leak by any of the oil sensors 17, the oil leak is informed, and also an elevator cage is operated to the lowest story after ending a service relating to a call.
    • 100. 发明专利
    • RADIO INFORMATION COMMUNICATION TERMINAL EQUIPMENT
    • JPH0556045A
    • 1993-03-05
    • JP21188791
    • 1991-08-23
    • TOSHIBA CORP
    • KOBAYASHI HIROSHIHARUYAMA HIDEOYANO MOTOMITSUKAMURA KOICHIRO
    • H04B7/26H04L12/28H04M13/00
    • PURPOSE:To realize the radio information communication terminal equipment in which a radio LAN compatible with an existing wired system LAN is realized while reducing deterioration in the communication quality. CONSTITUTION:In the radio information terminal equipment under a radio transmission environment in which an electromagnetic wave radiating in air is reflected in various objects results in causing frequency selective fading and delay spread, in order to reduce deterioration in the communication quality due to the frequency selective fading and delay spread, a data series subject to error correction coding processing by a coder 73 is given to a serial/parallel conversion circuit 74, from which 4 systems of bit strings are obtained. Then they are given to primary modulators 75a-75d respectively, in which primary modulation is implemented by using a carrier frequency different from each bit string. Furthermore, secondary modulation is implemented to convert the primary modulation signal into a prescribed frequency by a mixer 76 based on a hopping frequency generated from a frequency synthesizer 92 under the control of an FH synchronization detection/generating circuit 91.