Abstract:
PROBLEM TO BE SOLVED: To provide a conveyance mechanism capable of preparing conveyance during processing without obstructing simultaneous processing on the front and rear surfaces of a cell and capable of enhancing productivity, and a solar cell module assembly device including the same.SOLUTION: The conveyance mechanism includes: a holding clamp which lifts in each processing unit and holds a pair of opposing sides of a cell; and a conveyance clamp which reciprocates between processing units and holds a pair of opposing sides different from the sides held by the holding clamp. The holding clamp has a structure of holding a position of preventing interference with processing heads of the processing units, and after processing, is retracted to a position without obstructing reciprocation of the conveyance clamp by a lifting mechanism after delivering the cell to the conveyance clamp.
Abstract:
PROBLEM TO BE SOLVED: To provide a mounting crimp device for a flat panel display, capable of reducing a joint deviation between a panel substrate electrode and a lead electrode of an electronic component caused by a reaction force at the time of crimping, and capable of stably heat crimping with a constant pressure.SOLUTION: In the flat panel display mounting crimp device, an inner frame 109a, to which a lower blade 104 and an upper crimp blade 102 are attached, is separated from an outer frame 109b to which a lifting mechanism 125 of the upper crimp blade 102 is attached. Also, a joint component 112 is provided between the upper crimp blade 102 and the lifting mechanism 125 to absorb their axial deviation and inclination.
Abstract:
PROBLEM TO BE SOLVED: To protect a polarizing plate from high-temperature radiation by a crimping head, without being concerned of the variation in the temperature of the crimping head due to cooling air, while avoiding damages to the polarizing plate. SOLUTION: An electronic component-mounting device includes a crimping head 21, a heater 22, a heatproof board 41 and a cooling means 42. The crimping head 21 is heated by the heater 22 to crimp a driver IC circuit 105, at least onto one side of a panel base board 101 on whose surface a polarizing plate 104a is arranged. The heatproof board 41 is arranged between the crimping head 21 and the polarizing plate 104a during the crimping period in which the crimping head 21 crimps the driver IC circuit 105, to interrupt the radiant heat of the crimping head 21, in a state where its end part 41b approaches the crimping head 21 and the polarizing plate 104a. The cooling means 42 blasts air against the heatproof board 41, during the non-crimping period at which the crimping head 21 does not have the driver IC circuit 105 crimped. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an electron beam drawing apparatus or electron beam tester and an electron beam microscope which enable a high speed and high accuracy electron beam deflection. SOLUTION: The drawing apparatus comprises a means for matching the impedance of deflection electrodes in a vacuum chamber 101, this matching means is a pair or a plurality of resistors disposed with the center at a transmitting means around a terminator of the transmitting means, or a tubular resistor, and further is a shield electrode disposed between the terminator of the transmitting means and the electrodes to adjust the shield electrode and the electrodes of a deflector. It has a temperature controller for holding constant the temperatures of the transmitting means, the impedance matching means and the deflector, while the transmitting means has a coaxial structure and its outer conductor is used for a heat conducting medium and enclosed with a metal. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a manufacturing method of a lithium ion battery capable of maintaining electrode quality while reducing an economical burden, and a manufacturing device for the lithium ion battery.SOLUTION: A manufacturing device for a lithium ion battery comprises: an electrode material application part 2 for applying an electrode material 18 to one surface of an electrode foil 1 conveyed from an electrode foil supply part 4 to an electrode foil winding part 7; and a separator material application part 17 provided at the back of the electrode material application part 2, for applying a separator material 12 to a surface of the electrode material 18 which is applied to the one surface of the electrode foil 1. Between the electrode material application part 2 and the separator material application part 17, a predrying nozzle 8 is provided for drying the electrode material 18 which is applied to the one surface of the electrode foil 1, by blowing warm air to the electrode material 18.
Abstract:
PROBLEM TO BE SOLVED: To provide a conductive film separator peeling device which peels separators without using an adhesive tape that is a consumable supply, and to provide a solar cell module assembly device including the conductive film separator peeling device.SOLUTION: A separator peeling device peels a separator 3a of a conductive film 3 which has the separator 3a bonded to a solar cell 1 and a conductive layer 3b, and includes: a peeling part 166, a biasing part 167a, and a pair of rollers 186A, 186B. The peeling part 166 comes in contact with the conductive film 3 from the lateral side and peels the separator 3a from the conductive layer 3b. The biasing part 167a holds the peeling part 166 and biases the peeling part 166 to the solar cell 1 side. The pair of contact members 186A, 186B is attached to the peeling part 166 while being arranged in a direction in which the peeling part 166 moves close to the conductive film 3 and comes in contact with a surface of the solar cell 1 on which the conductive layer 3b is bonded.
Abstract:
PROBLEM TO BE SOLVED: To provide an FPD mounting device having a control technique in which a pressure setting of a pressure-bonding device is simplified in order to apply an appropriate load to a pressure-bonding part depending on a change in product type, and the pressure-bonding device pressurizes at an appropriate pressure.SOLUTION: Provided is an FPD mounting device realizing a pressuring control system in which air pressure command data for a direct load setting is automatically created by automatically collecting load data of a load cell in load measurement, simplifying measuring operation through automated load measurement, and automatically converting a correlation between the pressurization and the load in a control CPU.
Abstract:
PROBLEM TO BE SOLVED: To provide a technology for performing focus point distance correction by a simple means by only using an optical drive function which is conventionally held without being influenced by the classification of electric components (tape carrier packages (TCPs) and ICs) or their combinations. SOLUTION: In a flat panel display (FPD) module mounting device in which the plurality of electric components are aligned along a peripheral section of a display panel, and in which the electric components of different thicknesses are mounted according to specifications of the display panel includes: a mounting head for holding, carrying and moving the electric components; an image recognition section for recognizing images of alignment marks which are formed at the electric component and the display panel; and a light path length adjusting section for adjusting a light path length of a light path which connects a first alignment mark provided on the electric component held on an upper peripheral part of the display panel by the mounting head to the image recognition section. The light path adjusting section is constituted oof at least two light path length generation plates having different optical attributes. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a conductive resin sticking device capable of stably sucking a conductive film cut into small pieces and sticking to a cell or an electric wire, and a solar cell module assembly device.SOLUTION: The conductive film sticking device, which cuts a conductive film 3 having a conductive layer and a separator overlapped with the conductive layer into pieces and sticks the conductive layer to a solar cell or an electric wire, is provided with a chopping board member, a cutter member 135, a pressing mechanism 138, and a sticking head 133. The cutter member 135 is provided with a plurality of cutting blades 135b for sandwiching the conductive film 3 between the cutting blades and the chopping board member and cutting it into small pieces. The pressing mechanism 138 presses a conductive layer side of the conductive film 3 adhered to the plurality of cutting blades 135b cut into pieces by the cutter member 135. The sticking head 133 sucks a separator side of the conductive film 3 pressed by the pressing mechanism 138 and sticks a conductive layer of the sucked conductive film 3 to the solar cell or the electric wire.
Abstract:
PROBLEM TO BE SOLVED: To complete a sealing process in a short time and to reduce residual air in a solar cell module.SOLUTION: A layered body 10, 20 is heated and pressurized at a temperature lower than the melting temperature of a sealing resin, to soften the sealing resin. Then, the layered body 10, 20 is heated and pressurized to increase the temperature from a central part of the layered body 10, 20, to melt the sealing resin.