摘要:
An image display apparatus of the present invention includes: a display device for displaying an image; a heat-receiving tube that is disposed so as to be in thermal communication with the display device and is filled with a cooling liquid; a heat-radiating tube that is provided to be continuous with the heat-receiving tube and is filled with the cooling liquid; and a transporting pump allowing the cooling liquid to circulate through the heat-receiving tube and the heat-radiating tube. When viewed from a display surface side of the display device, at least a part of the heat-radiating tube is located outside a peripheral edge of the display device and is disposed along the peripheral edge.
摘要:
The image display device of the present invention includes a display panel having a front surface for displaying an image and a rear surface facing a side opposite to the front surface, and a chassis to which a circuit-bearing member is attached. The chassis supports the display panel. The chassis has a frame shape that surrounds the display panel from outside in a direction perpendicular to a thickness direction of the display panel, and that allows the rear surface of the display panel to be exposed. Thereby, heat can be radiated to air directly from the rear surface of the display panel.
摘要:
A display apparatus including a display device, circuit boards on which circuits for driving the display device are formed, a chassis plate having a first surface to which the display device is mounted and a second surface to which the circuit boards are mounted, and a back cover fastened onto the second surface of the chassis plate by screws. The chassis plate has a first radiating rib, and the back cover has a second radiating rib that is in surface contact with the first radiating rib.
摘要:
A heatsink structure for solid-state image sensors includes a foil-like heatsink sheet made of a high heat conductivity material. The heatsink sheet has a first fixed portion fixed to a solid-state image sensor and a second fixed portion fixed to another member. The heatsink sheet also has a plurality of cutout portions formed along directions from the first fixed portion toward the second fixed portion. Thus, the heatsink structure can cool the solid-state image sensor while reducing any external-force loads applied to the solid-state image sensor with a relatively simple structure.
摘要:
An image pickup device includes a color separation prism composed of prism members and which separates light into color components, solid-state image sensors fixed to the prism members, respectively, image sensor boards on which the solid-state image sensors are mounted, respectively, an image control board to which image pickup signals generated by the image sensor boards, respectively, are inputted, and a flexible board which is connected to the image control board. The flexible board includes a signal transmission layer connected to each of the image sensor boards and which contains transmission paths for transmitting the image pickup signals to the image control board, and a heat radiating layer formed of a high heat conductivity material which is connected to each of the solid-state image sensors and fixed to the signal transmission layer via an insulating layer to transfer heat generated in the solid-state image sensors.
摘要:
In a heat radiating member which has a contact portion to be put into contact with a solid-state image sensor fixed to a prism member, and a fin-like heat radiating portion for radiating heat, which has been transferred through the contact portion, into its surrounding gas, the contact portion and the heat radiating portion are formed from a foil member made of a high heat conductivity material. By mounting the heat radiating member on the solid-state image sensor, there is realized a heat radiating structure for cooling the solid-state image sensor while reducing external-force loads applied to the solid-state image sensor with a relatively simple structure.
摘要:
The image pickup device includes a color separation prism which is composed of a plurality of prism members and which separates light into a plurality of color components, a plurality of solid-state image sensors fixed to the plurality of prism members, respectively, a plurality of image sensor boards on which the plurality of solid-state image sensors are mounted, respectively, an image control board to which image pickup signals generated by the plurality of image sensor boards, respectively, are inputted, and a flexible board which is connected to the image control board. The flexible board includes a signal transmission layer which is connected to each of the plurality of image sensor boards and which contains transmission paths for transmitting the image pickup signals to the image control board, and a heat radiating layer formed of a high heat conductivity material which is connected to each of the plurality of solid-state image sensors and fixed to the signal transmission layer via an insulating layer to transfer heat generated in the solid-state image sensors.
摘要:
In a heat radiating member which has a contact portion to be put into contact with a solid-state image sensor fixed to a prism member, and a fin-like heat radiating portion for radiating heat, which has been transferred through the contact portion, into its surrounding gas, the contact portion and the heat radiating portion are formed from a foil member made of a high heat conductivity material. By mounting the heat radiating member on the solid-state image sensor, there is realized a heat radiating structure for cooling the solid-state image sensor while reducing external-force loads applied to the solid-state image sensor with a relatively simple structure.
摘要:
An object of the present invention is to shorten the time required by processing, and to simplify the work and increase the number of samples processed, in the X-ray analysis of a specific substance contained in a sample. To achieve the object, a method for assaying the content of a specific substance in a sample 106, comprises a measurement step (S3) of irradiating the sample 106 with X-rays, and measuring the spectrum of the sample 106, and an assay step (S4) of comparing the components of the specific substance in the spectrum of the sample 106 and in a reference spectrum that has been pre-stored for the sample 106, and determining whether the specific substance is contained in the sample 106 in an amount equal to or greater than a specific value.
摘要:
In a fluorescent X-ray analysis method, a sample (1) is set on a sample stage (2) on an upper side of an X-ray irradiation chamber (7) and a sample cover (6) is closed from the upper part of the sample (1) to surround the sample (1), and then, a lower plane of the sample (1) is irradiated with X-ray for analysis. When the sample (1) is set on the sample stage (2) and the sample cover (6) is closed, a cover detecting means (8) detects that the sample cover (6) is closed and X-ray is automatically projected from an X-ray source (3) to start analysis.