Abstract:
PROBLEM TO BE SOLVED: To attain miniaturization of an electronic device by integrating a flexible printed board for input/output of an LCD unit and at least a flexible printed board for input/output of a backlight unit with each other. SOLUTION: At least the flexible printed board 40 for input/output of the backlight unit 26 is joined to a joining part 38b provided at the flexible printed board 38a for input/output of the LCD unit 7 and the joining part 38b is provided in an inclined space 49 of a wedge-shaped light guide plate 42. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide a heat radiation means by which dust is prevented from getting in a lens barrel of a camera part of an electronic apparatus comprises an image pick-up means and a heat generating means such as an HDD, an intermittent electromagnetic wave does not affect a motor of an aperture mechanism of the camera, and further birl of a cooling fan does not get in a sound pickup microphone. SOLUTION: A sealing casing 19 is interposed between a lens barrel 12 and a heat radiation means 16 of a camera part 11 of the image pick-up means. The heat generated from the heat radiation means 16 is transferred to the sealing casing 19, and radiated to the outside of a box body 3 through the heat radiation means only in the heated sealing casing 19. The sealing casing 19 is comprised of an electromagnetic shielding material such as aluminum, and a soundproof member is arranged. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide a removal mechanism with safety and high quality grade by avoiding a battery from being jumped out from a package when the battery is removed. SOLUTION: This invention provides the battery removal mechanism 1 that contains/eject the battery, and is provided with; a package 2 having an opening 21 inserting the battery and a container 22 containing the battery; a slider 3 moved forward/backward in the container 22 of the package 2 according to the attachment/detachment of the battery; a spring 4 for energizing the slider 3 toward the direction of the opening 21 of the package 2; and a damper 5 providing a load to the movement of the slider 3 when the energizing of the spring 4 moves the slider 3 in the direction of the opening 21 of the package 2. Further, the imaging apparatus has the battery removal mechanism 1.
Abstract:
PROBLEM TO BE SOLVED: To suppress the occurrence of backlash of a rotating disk by respectively independently setting friction between a base and the rotating disk and force when a click is fixed. SOLUTION: This rotating hinge mechanism 1 is provided with the rotating disk 13 attached in a freely rotatable manner with respect to the base 11 through a friction spring 12, a clicking arm 14 provided in the rotating disk 13 with a projecting part 141 provided at one end 14b movable with the other end 14a as a supporting point, a clicking disk 15 fixed to the base 11 with a recessed part 151 corresponding to the projecting part 141 of the clicking arm 14 provided at a circumferential part, and a click spring 16 for pulling the one end 14b of the clicking arm 14 toward the circumference of the clicking disk 15. In an image pickup device of this invention, a main body housing and a lens-barrel are supported with the rotating hinge mechanism 1 in a freely rotatable manner.
Abstract:
PROBLEM TO BE SOLVED: To easily and surely attach an auxiliary optical unit used for automatic focusing and a light emitting unit used for infrared photographing. SOLUTION: In this image pickup device 1 with a lens-barrel 20 extending toward an object from a main body housing 10, the auxiliary optical unit 31 for automatic focusing with respect to an object is attached directly to the front of a support frame 21 on the side of the object of a lens L in the lens- barrel 20. In the image pickup device 1, the light emitting unit 32 for infrared photographing with respect to an object is also attached directly to the front most of the support frame 21 on the side of the object of the lens L in the lens-barrel 20.
Abstract:
PROBLEM TO BE SOLVED: To miniaturize the form of a card connector and prevent a bolting out of a card component. SOLUTION: The card connector 1 comprising the card component 3 with a card side terminal 9 at its top end, a card retaining component 5 having a body side terminal 17 at its top end in which insertion and removal of the card component 3 is made possible, and a slider 7 which can slide within the card retention component 5 with the innsertion and removable of the card component 3. A rocking component 27 which is freely rocked in a slider 7 is formed, and a hooking projection section 29 which engages to engaging concave section 13 of the card component 3 on the middle section of the rocking component 27 is formed, and a cam projecting section 31 is formed on the top end section of the rocking component 27. A cam slot 19 is established in the inner side of a sidewall of the card retention component 5 which counters the top end section of the cam projection section 31. The card component 3 is retained to the retention component 5, in the state that the card side terminal 9 and the body side terminal 17 contact responding to pushing operation of the card component 3 according to the cam mechanism which consists of the cam projection section 31 and a cam slot 19, and moreover the positioning of the card component 3 is fixed and held to the position, in which insertion and removed are made possible for the card retention component 5.
Abstract:
PROBLEM TO BE SOLVED: To provide electronic equipment of which the size and weight can be reduced, without risk of fall-down of a battery from the equipment. SOLUTION: The electronic equipment has an enveloping case 21 having a battery housing part 44 composed of a recessed part having a shape almost same with a battery device 1, and a slide member 62 supported on the enveloping case in free sliding movement. The battery housing part 44 has a width corresponding to that of the battery device 1, a length corresponding to the length to be inserted by rotating the battery device with a side in length direction as a center, and a main body side connection terminal 56 connected to a connection terminal of the battery device by housing the battery device 1 in the battery housing part by rotating the battery device. Four engaging claws 51, 52, and a coil spring 64 making the locking claws lock into projection pieces 7B, 7C by biasing the locking claws in a direction separating from the body side connection terminal are arranged on the slide member 62. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an imaging apparatus capable of reducing the number of components without requiring a cushion such as a rubber bush between a pressing plate metal and a speaker. SOLUTION: The imaging apparatus includes a camera casing 5 provided with an imaging block 77 having a predetermined lens and an imaging device 79 in the inside, and a speaker 47 to be arranged while contacting the inside surface of the camera case, a ground circuit arranged inside the camera case, and a pressing plate metal 48 pressing the speaker from the opposite side of the inside of the camera case and connected to the ground circuit. The pressing plate metal is provided with a spring presser 49b for pressing the speaker while biasing the speaker to the inside surface of the camera case. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To miniaturize a conventional imaging apparatus in which a lens device is arranged nearly coaxially with a disk drive device so that they overlap each other. SOLUTION: The imaging apparatus comprises a disk storage 47 for storing a DVD-R8 while the DVD-R8 can be loaded and unloaded; a disk rotating device 36 that is provided in the disk storage 47 and rotates and drives the removably attached DVD-R8; the lens device 5 to which light from an object is transmitted; a CCD6 that forms an image by supplying light through the lens device 5, and outputs an image signal corresponding to the image; an optical pickup device capable of recording the image information on the DVD-R8, based on the image signal outputted from the CCD6; and a heat sink 57 provided in the disk storage section 47. The heat sink 57 and the CCD6 are composed so that heat can be transferred, and heat in the CCD6 can be radiated to the disk storage section 47 via the heat sink 57. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide a touch panel apparatus in which a load caused by external force applied to a touch panel is not applied to a display panel, or a back light panel, consequently the glass of the display panel is hardly broken. SOLUTION: The touch panel apparatus is provided with: an imaging device main body 2 having an open window 48; the touch panel 72 installed on the imaging device main body 2 so as to close the open window 48; the display panel 71 arranged on the back of the touch panel 72; a back light panel 73 arranged on the back of the display panel 71; and a press plate 77 arranged on the back of the back light panel 73. The touch panel 72 is formed to be larger than the display panel 71, and a spacer 75 is provided so as to be intervened between the extrusion section 80 of the touch panel 72 extruded from the display panel 71 and the press plate 77. The touch panel 72 and the press plate 77 sandwiches, through the spacer 75, the display panel 71 and the back light panel 73. COPYRIGHT: (C)2006,JPO&NCIPI