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
    • 1. 发明专利
    • Quality control method of solder junction and quality control device
    • 焊接和质量控制装置质量控制方法
    • JP2011210884A
    • 2011-10-20
    • JP2010076100
    • 2010-03-29
    • Mitsubishi Electric Corp三菱電機株式会社
    • TSURUTA AKIZOSHIRASE TAKASHISUGIURA SEIIWATA MASAKI
    • H05K3/34
    • PROBLEM TO BE SOLVED: To obtain the quality control method of a solder junction which can a perform non-destructive and highly accurate quality inspection on real time without additional inspections.SOLUTION: The quality control method of a junction formed by supplying (S0) solder and local thermal energy on a resin substrate includes a process (S1) to measure the time variation of temperature of the junction during junctioning, a process (S2) to find a plurality of feature quantities from measured data, a process (S3) to find a single numerical value index from the plurality of feature quantities, and a process (S4) to determine whether the junction is suitable (S5) or not suitable (S6) comparing the numerical value index and a predetermined threshold value (S4). The plurality of feature quantities includes a time tin which the temperature of the junction is a predetermined temperature Tor more to satisfy a condition (the glass transition temperature of the substrate-50°C)≤T≤(the glass transition temperature of the substrate+250°C) and a time tin which the temperature of the junction reaches a predetermined temperature Tto satisfy a condition (the glass transition temperature of the substrate-50°C)≤T≤(the glass transition temperature of the substrate+250°C) from the start time of heating by the thermal energy.
    • 要解决的问题:获得可以实时进行无损和高精度质量检测的焊点的质量控制方法,无需附加检查。解决方案:通过供应(S0)焊料形成的结的质量控制方法 并且树脂基板上的局部热能包括测量结合期间结点的温度时间变化的处理(S1),从测量数据找到多个特征量的处理(S2),找到的处理(S3) 来自多个特征量的单个数值索引,以及用于确定结合是否适合(S5)或不适合(S6)比较数值指数和预定阈值的处理(S4)(S4)。 多个特征量包括:为了满足条件(基板的玻璃化转变温度-50℃)≤T≤(基板的玻璃化转变温度+ 250℃)和结温达到规定温度Tto的时间锡满足条件(基板的玻璃化转变温度-50℃)≤T≤(基板的玻璃化转变温度+ 250℃) )从加热的开始时间通过热能。
    • 2. 发明专利
    • Gas liquid filling device
    • 气体液体填充装置
    • JP2010190453A
    • 2010-09-02
    • JP2009033346
    • 2009-02-17
    • Mitsubishi Electric Corp三菱電機株式会社
    • YAGI NAOKIHIRONAKA SHINGOIPPOSHI SHIGETOSHISHIRASE TAKASHIMATSUO SHIGERU
    • F28D15/02
    • PROBLEM TO BE SOLVED: To obtain a gas liquid filling device capable of accurately filling working fluid and non-condensable gas within a heat pipe and having good manufacturing efficiency.
      SOLUTION: The gas liquid filling device includes: a working fluid supply part 52; a non-condensable gas supply part 24; a vacuum exhaust part 23; a connecting part 34 having a connecting port 66 for connecting a pipe 19, a connecting port 67 for connecting the working fluid supply part 52, a connecting port 69 for connecting the vacuum exhaust part 23 and a connecting port 68 for connecting the non-condensable gas supply part 24; a sealing processing part 20 for sealing the pipe 19 at a position lower than the connecting port 66; an orifice 36 provided between the connecting port 67 and the working fluid supply part 52; a valve 35 positioned on the lower side of the orifice 36 and opened for a predetermined time corresponding to the aperture of the orifice 36 and working fluid injection amount; a valve 33 provided between the connecting port 69 and the vacuum exhaust part 23; and a valve 25 provided between the non-condensable gas supply part 24 and the connecting port 68.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:获得能够精确地填充热管内的工作流体和不可冷凝气体并具有良好制造效率的气液填充装置。 气体充填装置包括:工作流体供给部52; 不可冷凝气体供给部24; 真空排气部23; 具有用于连接管19的连接口66,用于连接工作流体供给部52的连接口67,连接真空排气部23的连接口69和连接不可冷凝物的连接口68的连接部34 气体供给部24; 密封处理部20,用于将管19密封在比连接口66低的位置; 设置在连接口67和工作流体供给部52之间的孔36; 阀35位于孔36的下侧,并且对应于孔36的孔径和工作流体喷射量打开预定时间; 设置在连接口69和真空排气部23之间的阀33; 以及设置在不可冷凝气体供给部24和连接口68之间的阀25.权利要求(C)2010,JPO&INPIT
    • 3. 发明专利
    • Electronic apparatus
    • 电子设备
    • JP2010109247A
    • 2010-05-13
    • JP2008281349
    • 2008-10-31
    • Mitsubishi Electric Corp三菱電機株式会社
    • TAKAMUNE KOICHIOMURA YOICHISUGIURA SEISHIRASE TAKASHI
    • H05K7/20H01L23/36
    • H01L2924/0002H01L2924/00
    • PROBLEM TO BE SOLVED: To provide an electronic apparatus large in a heat-transfer area between a heat generation component and a metal housing (radiator), capable of reducing contact thermal resistance by increasing pressing force between the heat generation component and the housing in response to temperature rise in the metal housing by heat generation, and excelling in space efficiency in the apparatus. SOLUTION: This electronic apparatus includes: the metal housing 11 having a first wall part 11a, a second wall part 11b facing the first wall part 11a, and sidewall parts 11c, 11d connecting both edges of the first and second wall parts 11a, 11b to each other; the heat generation component 13 mounted on one surface of a rigid substrate 12, and having an upper surface abutting on the first wall part 11a, or facing the first wall part through a minute space; and a spacer 14 which is formed of a material having a coefficient of thermal expansion larger than those of the sidewall parts 11c, 11d of the metal housing 11, and of which the one side supports the rigid substrate 12 and the other side is supported by the second wall part 11b. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供一种大的发热部件和金属壳体(散热器)之间的传热区域的电子设备,能够通过增加发热部件和发热部件之间的压力来降低接触热阻 响应于通过发热而在金属壳体中的温度上升,并且在设备中具有优异的空间效率。 该电子设备包括:具有第一壁部分11a,面对第一壁部分11a的第二壁部分11b和连接第一和第二壁部分11a的两个边缘的侧壁部分11c,11d的金属壳体11 ,11b彼此; 安装在刚性基板12的一个表面上的发热部件13,并且具有抵靠第一壁部11a的上表面,或者通过微小的间隔面对第一壁部; 以及间隔件14,其由具有比金属壳体11的侧壁部11c,11d的热膨胀系数大的热膨胀系数的材料形成,并且其一侧支撑刚性基板12,另一侧支撑在另一侧 第二壁部11b。 版权所有(C)2010,JPO&INPIT
    • 4. 发明专利
    • Press-in device, and press-in method of the device
    • 压入装置和装置的压入方法
    • JP2007229895A
    • 2007-09-13
    • JP2006057217
    • 2006-03-03
    • Mitsubishi Electric Corp三菱電機株式会社
    • SHIRASE TAKASHIKANEZUKA NORIHIKOHASE HIROAKI
    • B23P19/02
    • PROBLEM TO BE SOLVED: To provide a press-in device capable of precisely pressing in a press-in member to be predetermined press-in length.
      SOLUTION: The press-in device pushing and pressing a press-in member 1 in a press-in hole 20 of a pressed-in member 2 to be the predetermined length, comprises a measuring means measuring the press-in member 1 or the length in a press-in direction of the press-in member 1 and the pressed-in member 2; an actuator 5 pressing the press-in member 1 into the press-in hole 20; a stopper 4 arranged so as to be inserted from a lower end side in the press-in direction of the press-in hole 20; an insertion amount adjusting means 3 adjusting the insertion length to the press-in hole 20 of the stopper 4; and a controlling means 7 controlling the insertion amount adjusting means 3 by calculating the insertion length to the press-in hole 20 of the pressed-in member 2 of the stopper 4 from the length measured by the measuring means and the predetermined press-in length, and controlling pressing of the actuator 5 according to the length of the press-in member 1 and the insertion length measured by the measuring means.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够精确地按压在压入部件中的预定压入长度的压入装置。 解决方案:压入装置将按压构件2的压入孔20中的压入构件1推压并按压到预定长度,包括测量装置,其测量压入构件1 或压入构件1和压入构件2的按压方向的长度; 致动器5将压入构件1压入压入孔20中; 止动件4,其从压入孔20的压入方向的下端侧插入; 插入量调节装置3,调节与止动器4的压入孔20的插入长度; 以及控制装置7,通过从由测量装置测量的长度和预定的压入长度计算到止动件4的压入构件2的压入孔20的插入长度来控制插入量调节装置3 并且根据压入构件1的长度和由测量装置测量的插入长度来控制致动器5的按压。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • ELECTRON GUN ASSAEMLING JIG
    • JPH1140049A
    • 1999-02-12
    • JP19284997
    • 1997-07-17
    • MITSUBISHI ELECTRIC CORP
    • NAGASE AKIHIROSHIRASE TAKASHI
    • H01J9/18
    • PROBLEM TO BE SOLVED: To provide an electron gun assembling jig to allow high precise assembling in an electron gun assembling process by eliminating deformation in a peripheral edge portion of an electron beam passingthrough hole caused with strong contact of a side face of an electrode supporting member to the electron beam passing-through hole in accompaniment of heat expansion of an electrode. SOLUTION: This assemling jig is provided with plural rod-like electrode supporting members to position each electrode in a prescribed position by engagement with electron beam passing-through holes 1a-6a, 1b-6b, 1c-6c of each electrode constituting an in-line type electron gun having a triple pole portion and a lens portion. In this case, the electrode supporting members are arranged in two pieces engaged with outside electron beam passing-through holes 1a-6a, 1c-6c in each electron beam passing-through hole, and flat faces 7a, 7c are formed by cutting whole surfaces of inner faces of the electrode supporting members 7A, 7C to absorb heat expansion of each electrode.