摘要:
The invention relates to an instrument (100) that can at least partially be inserted into an internal cavity (2) of an object (1), particularly a catheter or an endoscope. The instrument (100) comprises an optical system (OS) for collecting light coming from external objects through a viewing corridor (VC). The optical system comprises an OLED (110) for illuminating said external objects which is disposed in the viewing corridor (VC). In a particular embodiment, the OLED (110) may at least partially be transparent. By arranging the OLED (110) in the light corridor, an optimal illumination can be achieved together with a compact design of the whole instrument (100).
摘要:
This invention relates to a photovoltaic system for electronic appliance. The photovoltaic system comprises an energy concentrator having an outer layer (201) and an inner layer (202), the outer layer (201) adapted to gather incoming electromagnetic radiation into the energy concentrator (101) and the inner layer (202) being adapted for reflecting the incoming electromagnetic radiation such that the incoming electromagnetic radiation becomes concentrated within the energy concentrator (101). The system further comprises a solar cell (102) optically coupled to the energy concentrator (101), such that light concentrated in the energy concentrator is directed to the solar cell, the solar cell adapted to act as a power source for the electronic appliance (103). The outer layer (201) of the energy concentrator (101) forms part of an outer surface of the electronic appliance (103) and the inner layer (202) of the energy concentrator (101) is formed around a cavity for hosting electronic or mechanical components of the electronic appliance (103) and the energy concentrator is configured to reflect light through the energy concentrator (101) around at least a part of the cavity (305).
摘要:
An electric transport component (10; 110; 310; 60) comprises a substrate (20; 120) provided with a barrier structure with a first inorganic layer (16; 116; 66), an organic decoupling layer (12; 112; 62) and a second inorganic layer (18; 118; 68), wherein the organic decoupling layer is sandwiched between the first and the second inorganic layer, and at least one electrically conductive structure (14; 114; 314; 414; 414-1, 414- 2; 514; 614-1,614-2; 64) distributed in a plane defined by the organic decoupling layer, and that is accommodated in at least one trench (13; 113) in the organic decoupling layer. A method of manufacturing an electric transport component comprises the steps of a) providing a first inorganic layer b) providing a first organic decoupling layer, c) forming at least one trench in the organic decoupling layer, d) depositing an electrically conductive material in the at least one trench, e) providing a second inorganic layer. The component may be applied for example in opto-electrical and electro-optical devices.
摘要:
A method is presented for reducing the light output capacity of light emitting components (C1, C2, C3), each with a different absorption band, of an OLED device (1). By irradiating at least a portion of each light emitting component (C1, C2, C3) with light (L) having a wavelength within at least one of the absorption bands, the light output capacity of the irradiated portion (P, P1, P2, P3) of each organic light emitting component having a light absorption band in which the wavelength of the light (L) is included is reduced. An OLED device (1) is also presented.
摘要:
The present invention relates to a planar electro-optic device and a method for producing the same. The device comprises an embedded woven structure of conductive wires (3), which adjoin the top surface of the substrate (7) at locations thereof. Different electrode layers may be connected to the wires at these locations. The wires may then be used e.g. to provide a uniform potential over an entire electrode surface, even if the electrode itself is very thin. A substrate of this kind may also be used for addressing purposes.
摘要:
The present invention relates to an electronic device (1) which comprises a modular housing (2) comprising a plurality of stacked housing parts (4, 6) that are mechanically interconnected by connection means (8, 10), and which comprises electronic parts (16, 26) having contact portions (30, 32) for providing electrical contact between the parts, a housing part adapted to accommodate an electronic part and having contact members for providing electrical contact between the parts, which contact members comprise conductive tracks (12) provided on a first surface (14), wherein the contact members comprise conductive tracks (18) provided on a second surface (20), the tracks on the second surface of a housing part are electrically connected to the tracks on the first surface of said housing part, and the second surface faces towards the first surface of a next housing part when connected to the housing. The invention further relates to a housing part for assembling a modular housing accommodating electronic parts and to a method of manufacturing such a housing part.
摘要:
An organic diode device (1) comprises an organic diode structure (2) having an anode layer (12), a cathode layer (13) and an organic layer (14). One of the anode layer (12) and the cathode layer (13) has a set of contact areas (19, 20) that are distributed over a face (15) of said structure (2). A barrier layer (16) hermetically covers said structure (2) and is provided with a set of openings (23, 24) aligned with said set of contact areas (19, 20). A metal conductor (5) has been electroplated on said barrier layer (16) and contacts the set of contact areas (19, 20) via the set of openings (23, 24). A method of forming such a device comprises forming the structure (2), forming the barrier layer (16) with the set of openings (23, 24), and exposing said structure (2) to an electroplating process to form the metal conductor (5).
摘要:
The invention relates to a display panel (2) comprising a plurality of display pixels (3) with at least one light emissive layer (10) and at least one electrode layer (7) deposited on or over said light emissive layer. A first display pixel (3A) is determined by a first barrier structure (20) and a second display pixel (3B), adjacent to said first display pixel, is determined by a second barrier structure (21). The first barrier structure and second barrier structure are separated by an electrically conductive structure (22) in electrical contact with the electrode layer. Accordingly, space is available between the barrier structures (20,21) for electrical shunting of the electrode layer (7). The invention further relates to an electric device comprising such a display panel and a method for manufacturing a display panel.