Abstract:
A single lens reflex camera or a camera system uses a camera body unit and has a view finder unit permanently fixed to or detachably mounted on the camera body. A first terminal on the camera body is electrically connected with a synchronous device which is so arranged as to provide a synchronous signal related to the operation of a shutter device, while a second terminal which can contact with or can be coupled to the first terminal on said camera body when the view finder unit is attached to the camera body unit, is provided on the view finder unit. Therefore one or more electrical devices, which are built in the view finder unit or are detachably mounted on the view finder unit and require the synchronous signal related to the operation of the shutter device for having themselves activated, are electrically connected to the synchronous means through the contacting or coupling of the second terminal with the first terminal. A latch holds the view finder in position and aligns it with the camera body.
Abstract:
In a photographic camera for use with a single-reel magazine wherein the film after withdrawn by a film advancing sprocket for exposure purposes has to be transported backwards to the magazine while the sprocket being idle, a mechanism for releasing the sprocket from braking engagement with a drive member therefor is provided with two control or rewinding buttons arranged to be manually actuable from the outside of the camera housing at respective places, one of which is located in a recess of the bottom panel thereof so that, for example, when a motor drive unit is attached thereto, an automatic responding relationship is established therebetween, and another place which is located so that, while the user is unabled to make use of the first-named rewinding button, as, for example, a tripod remains left in attachment with the camera at its bottom panel, it is made possible to switch the camera from the film winding to the rewinding state.
Abstract:
An electrically operated extrinsic coordinating system for the light metering and exposure controlling circuits of a photographic camera, the camera also having incorporated therein an intrinsic coordinating system for those circuits, comprises first and second electronic switches connected in the respective power supply circuits for the light metering and exposure controlling circuits through respective interconnection channels to shunt the first and second switches of the intrinsic coordinating system, a delay circuit connected between the first and second electronic switches, and an operating switch arranged to be accessible from the outside of the camera and cooperative with the first electronic switch upon manual closure of the operating switch to actuate the light metering and exposure controlling circuits for the power supply in predetermined time-displaced relation to each other independently of the intrinsic coordinating system.
Abstract:
A porous polyimide film having a three-layer structure that comprises two surface layers (a) and (b) and a macrovoid layer sandwiched between the surfaces layers (a) and (b). The macrovoid layer has a partition wall bonding to the surface layers (a) and (b), and multiple macrovoids each surrounded by the partition wall and the surface layers (a) and (b) and having a mean pore size in the film plane direction of from 10 to 500 μm. The partition wall of the macrovoid layer has a thickness of from 0.1 to 50 μm and has multiple pores having a mean pore size of from 0.01 to 50 μm. The surface layers (a) and (b) each have a thickness of from 0.1 to 50 μm, at least one of the surface layers has multiple pores having a mean pore size of from more than 5 μm to 200 μm, and the other surface layer has multiple pores having a mean pore size of from 0.01 to 200 μm. The pores in the partition wall of the macrovoid layer as well as in the surface layers (a) and (b) communicate with each other and further communicate with the macrovoids. The film has a total thickness of from 5 to 500 μm and a porosity of from 60 to 95%.
Abstract:
A mobile information device includes a general-UI API 32 that generates screen data about a screen layout specified by an application 2, a UI-during-travel API 33 that generates screen data about a screen layout used during travel which is specified by the application 2 and is to be displayed when a vehicle is travelling on the basis of template data defining a screen layout used during travel which is to be displayed when the vehicle is travelling, and a controller 31 that is disposed in an application execution environment 3, and that causes a display unit 5 to display the screen data generated by the general-UI API 32 when the vehicle is at rest and causes the display unit 5 to display the screen data generated by the UI-during-travel API 33 when the vehicle is travelling.
Abstract translation:移动信息设备包括通用UI API 32,其生成关于由应用程序2指定的屏幕布局的屏幕数据;行程UI 33,其生成关于在旅行期间使用的屏幕布局的屏幕数据,该屏幕数据由应用程序指定 并且当车辆行驶时,基于定义在车辆行驶期间要显示的行驶期间使用的屏幕布局的模板数据以及设置在应用执行环境3中的控制器31来显示车辆;以及 这导致显示单元5在车辆静止时显示由通用UI API 32生成的屏幕数据,并且使得显示单元5在车辆是行驶时显示由旅行时UI API 33生成的屏幕数据 旅行
Abstract:
A light-emitting device includes a first compound semiconductor layer, an active layer, and a second compound semiconductor layer; a second electrode formed on the second compound semiconductor layer; an insulating layer covering the second electrode; a first opening provided to pass through the insulating layer, the second electrode, the second compound semiconductor layer, and the active layer; a second opening provided to pass through the insulating layer; a first electrode formed on an exposed portion of the first compound semiconductor layer at the bottom of the first opening; a first electrode extension extending from the first electrode to the insulating layer through the first opening and a first pad portion including a portion of the first electrode extension on the insulating layer; and a second pad portion connected to an exposed portion of the second electrode at the bottom of the second opening.
Abstract:
A vehicle includes a front grille and a vehicle presence notification apparatus that includes a supersonic speaker, where the vehicle presence notification apparatus is behind the front grille. The front grille includes a plurality of grille bars that may be in a front range of the supersonic speakers. The grille bars that are positioned in the front range of the supersonic speaker includes a curved convex and an upper plate, which have a substantial U shape cross section. The supersonic wave is reflected on an inside surface of one grille bar in a downward direction, and is reflected again on an outside surface of an adjacent grille bar in a forward or frontal direction to output toward a front field of the vehicle.
Abstract:
A sheet processing apparatus includes a feeding portion that feeds an original or a recording medium, a reading portion that reads an original, and a recording portion that performs recording on a recording medium. The original or recording medium fed from the feeding portion can be selectively conveyed to the reading portion or the recording portion, thereby allowing for compactness of the apparatus as well as cost reduction.
Abstract:
A method of manufacturing a light emitting device, including the steps of: (A) sequentially forming a first compound semiconductor layer of a first conduction type, an active layer, and a second compound semiconductor layer of a second conduction type different from said first conduction type, over a substrate; and (B) exposing a part of said first compound semiconductor layer, forming a first electrode over said exposed part of said first compound semiconductor layer and forming a second electrode over said second compound semiconductor layer, wherein said method further includes, subsequent to said step (B), the step of: (C) covering at least said exposed part of said first compound semiconductor layer, an exposed part of said active layer, an exposed part of said second compound semiconductor layer, and a part of said second electrode with an SOG layer.
Abstract:
The disclosed is an arteriosclerosis evaluating apparatus capable of easily separating pulse wave data detected at one measurement site into an incident wave and a reflected wave and capable of easily determining and evaluating the degree of arteriosclerosis. The pulse wave transmitted through an artery is detected at one site of a living body by a pulse wave detection device, and the detected pulse wave is fitted with a fitting function by a breakdown device so that the detected pulse wave can be broken down into an incident wave and a reflected wave. The degree of arteriosclerosis is evaluated from the amplitude intensities (i.e., peak intensities) of the incident wave and the reflected wave broken down from the pulse wave.