会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 11. 发明公开
    • DEHUMIDIFIER
    • 除湿机
    • EP2545979A1
    • 2013-01-16
    • EP11753176.4
    • 2011-02-22
    • Mitsubishi Electric CorporationMitsubishi Electric Home Appliance Co., Ltd.
    • KABETA, NoriyoshiAKAMATSU, HisayukiARAI, SatoshiWAKAI, Hiroshi
    • B01D53/26D06F58/28F24F11/02F26B21/00
    • B01D53/26B01D2259/4508F24F1/02F24F3/14F24F11/30F24F11/79F24F2003/144F24F2013/221F24F2110/10
    • Provided is a dehumidifier which detects a place having the lowest temperature in the room without error and causes the dry air to strike the place in a concentrated manner. For this purpose, the dehumidifier is provided with wind direction changing means 1 which changes the blowing direction of the dry air B vertically and laterally, an infrared sensor 6 which is attached to the wind direction changing means 1 and detects the surface temperature of an object present in the blowing direction of the wind direction changing means 1 in a non-contact state, and a control circuit 7 which, upon detection of the start of a removal operation of dew condensation in the room, controls the blowing direction of the wind direction changing means so that the surface temperature detection means moves on a predetermined route in a surface temperature detection range obtained by changing the blowing direction of the wind direction changing means vertically and laterally, and also reads the surface temperatures on the predetermined route detected by the infrared sensor 6, and selects the lowest surface temperature from the read surface temperatures and controls the wind direction changing means 1 so that the dry air is blown in the direction of the lowest surface temperature.
    • 本发明提供一种除湿器,该除湿器无误地检测房间内温度最低的地方,并使干燥空气集中地冲击该地点。 为此,除湿机设置有风向改变装置1,该风向改变装置1竖直地和横向地改变干燥空气B的吹风方向;红外传感器6,其安装在风向改变装置1上并检测物体的表面温度 以非接触状态存在于风向可变装置1的吹出方向上;以及控制电路7,在检测到室内的结露的除去动作开始时,控制风向的吹出方向 使表面温度检测装置在通过垂直和横向改变风向改变装置的吹风方向获得的表面温度检测范围内的预定路线上移动,并且还读取由红外线检测的预定路线上的表面温度 传感器6,并从读取的表面温度中选择最低表面温度并控制风向 使得干燥空气沿着最低表面温度的方向吹送。
    • 14. 发明公开
    • TOUCH GRAPH STRUCTURE OF EMBEDDED CAPACITIVE TOUCHSCREEN
    • 百灵达电子科技有限公司GRAPHIKSTRUKTURFÜREINEN EINGEBETTETEN KAPAZITIVEN TOUCHSCREEN
    • EP2728451A1
    • 2014-05-07
    • EP12876083.2
    • 2012-11-15
    • Shanghai Tianma Micro-electronics Co., Ltd.
    • YAO, QijungWANG, Lihua
    • G06F3/044
    • G06F3/044
    • A touch pattern structure of an in-cell capacitive touch screen is provided. The touch pattern structure includes: multiple driving lines in a first direction, the multiple driving lines being insulated from each other; and multiple sensing lines in a second direction, the multiple sensing lines being insulated from each other, wherein the first direction is perpendicular to the second direction, the driving line are insulated from the sensing lines, and a mutually-embedded structure is provided on at least a part of opposing sides of the driving line and the sensing line. In the touch pattern structure of the in-cell capacitive touch screen disclosed by the invention, the mutually-embedded structure is formed between the driving line and the sensing line, such that the length of the opposing sides of the driving line and the sensing line is increased, the mutual-capacitance effect between the driving lines and the sensing lines is strengthened, and the touch sensitivity is further improved.
    • 提供了单元电容式触摸屏的触摸图案结构。 触摸图案结构包括:沿第一方向的多个驱动线,多个驱动线彼此绝缘; 以及多个感测线在第二方向上,所述多条感测线彼此绝缘,其中所述第一方向垂直于所述第二方向,所述驱动线与所述感测线绝缘,并且在其上设置相互嵌入的结构 驱动线和感测线的相对侧的至少一部分。 在本发明公开的单元电容式触摸屏的触摸图案结构中,在驱动线和感测线之间形成相互嵌入的结构,使得驱动线和感测线的相对侧的长度 驱动线和感测线之间的互电容效应增强,触摸灵敏度进一步提高。
    • 15. 发明公开
    • All-optical logic gates using nonlinear elements
    • Vollständigoptische logische Gates mit nichtlinearen Elementen
    • EP2711772A1
    • 2014-03-26
    • EP13197457.8
    • 2006-12-06
    • Coveytech, LLC
    • Covey, John Luther
    • G02F3/00G02B6/122B82Y20/00
    • G02F3/00G02B6/1225G02B6/125G02B6/305G02F2202/32G02F2203/15
    • An all-optical logic gates comprises a nonlinear element such as an optical resonator configured to receive optical input signals, at least one of which is amplitude-modulated to include data. The nonlinear element is configured in relation to the carrier frequency of the optical input signals to perform a logic operation based on the resonant frequency of the nonlinear element in relation to the carrier frequency. Based on the optical input signals, the nonlinear element generates an optical output signal having a binary logic level. A combining medium can be used to combine the optical input signals for discrimination by the nonlinear element to generate the optical output signal. Various embodiments include all-optical AND, NOT, NAND, NOR, OR, XOR, and XNOR gates and memory latch.
    • 全光逻辑门包括非线性元件,例如被配置为接收光输入信号的光学谐振器,其中至少一个被幅度调制以包括数据。 非线性元件被配置为相对于光输入信号的载波频率,以基于非线性元件相对于载波频率的谐振频率执行逻辑运算。 基于光输入信号,非线性元件产生具有二进制逻辑电平的光输出信号。 可以使用组合介质来组合用于由非线性元件鉴别的光输入信号以产生光输出信号。 各种实施例包括全光AND,NOT,NAND,NOR,OR,XOR和XNOR门和存储器锁存器。
    • 16. 发明公开
    • A METHOD FOR ASSOCIATING A TRACKING AREA IDENTITY LIST WITH A USER EQUIPMENT IN A WIRELESS COMMUNICATIONS NETWORK
    • 程序用于跟踪区域标识列表与用户设备在无线通信网络配置
    • EP2628344A1
    • 2013-08-21
    • EP10773736.3
    • 2010-10-11
    • Telefonaktiebolaget L M Ericsson (publ)
    • ARVIDSSON, ÅkeMIHÁLY, AttilaRUNE, Johan
    • H04W60/00
    • H04W8/16H04W60/00
    • The invention relates to a method for use in a core network node, such as a mobility management entity, in a wireless communication network for associating a tracking area identity list comprising at least one tracking area identity (TAI) with a user equipment. The method comprises the steps of: associating a first tracking area identity list with a user equipment as the user equipment registers with the core network node; sending the first tracking area identity list to the user equipment; and receiving at least one tracking area identity comprising the tracking area identity of a tracking area being used by the user equipment. The method further comprising the steps of: compiling an second tracking area identity list based on the tracking area identity list currently associated with the user equipment and on the received at least one tracking area identity;in case the second tracking area identity list contains a different set of tracking area identities than the tracking area identity list currently associated with the user equipment, sending the second tracking area identity list to the user equipment to replace an earlier tracking area identity list in the user equipment; and associating the second tracking area identity list with the user equipment in place of the tracking area identity list currently associated with the user equipment. The invention further relates to a core network node, such as a mobility management entity, and a computer program product for use in such a core network node.
    • 20. 发明公开
    • DEHUMIDIFIER
    • 除湿机
    • EP2545980A1
    • 2013-01-16
    • EP11753177.2
    • 2011-02-22
    • Mitsubishi Electric CorporationMitsubishi Electric Home Appliance Co., Ltd.
    • AKAMATSU, HisayukiKABETA, NoriyoshiARAI, SatoshiWAKAI, HiroshiSHIBATA, HideoUCHIDA, Tsuyoshi
    • B01D53/26D06F58/28F24F11/02F26B21/00
    • D06F58/00B01D53/265B01D53/30B01D2259/4508D06F58/28D06F2058/2819D06F2058/2841D06F2058/2845D06F2058/2854D06F2058/2864F24F3/14F24F11/0008F24F11/30F24F2110/20
    • There is provided a dehumidifier capable of identifying the arrangement range of an object to be dried even when the humidity in a room is high. For this purpose, the dehumidifier includes a dehumidifying means 5 which removes moisture contained in room air A; an blowing fan 2 that draws in the room air A and blows out dry air B, which is obtained by causing the room air A to pass through the dehumidifying means 5, into the room; a humidity sensor 4 which detects the humidity in the room; a wind direction changing means 1 which changes a blowing direction of the dry air B; an infrared ray sensor 6 which detects the surface temperature of the washing in a non-contact state; and a control circuit 7 that detects the dried state of the washing from the surface temperature detected by the infrared ray sensor 6, and controls the wind direction changing means 1 according to the dried state thereof. Before the surface temperature of the washing is detected, the control circuit 7 judges whether or not the humidity in the room is higher than a predetermined humidity, and if the humidity in the room is higher than the predetermined humidity, the control circuit 7 controls a fan motor 2a and the wind direction changing means 1 so that the dehumidifying capability of the dehumidifying means 5 is at the maximum until the humidity in the room reaches the predetermined humidity.
    • 提供一种即使在房间内的湿度高的情况下也能够识别被干燥物的配置范围的除湿机。 为此,除湿器包括去除室内空气A中含有的水分的除湿装置5; 吸入室内空气A,并使室内空气A通过除湿单元5而得到的干燥空气B向室内吹出的送风风扇2; 检测室内湿度的湿度传感器4; 改变干燥空气B的吹出方向的风向变更单元1, 红外线传感器6,其以非接触状态检测洗涤物的表面温度; 以及控制电路7,其根据由红外线传感器6检测出的表面温度检测洗涤物的干燥状态,并且根据其干燥状态控制风向改变装置1。 在检测到洗涤物的表面温度之前,控制电路7判断房间内的湿度是否高于预定湿度,并且如果房间内的湿度高于预定湿度,则控制电路7控制 风扇马达2a和风向改变装置1,使得除湿装置5的除湿能力最大,直到房间内的湿度达到预定湿度。