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:
The invention relates to an OLED device (100) comprising an organic layer (130) between an anode (120) and a cathode (140), and a mirror layer (150) on the anode or cathode. The organic layer (130) is structured into electroluminescent zones (131) and inactive zones (132), while the mirror layer (150) is structured into nontransparent zones (151) and transparent zones (152). Via an at least partial alignment of these structures, the OLED device can be made transparent for environmental light and simultaneously emissive in a dominant (or even a single) direction.
摘要:
The present invention relates to an OLED-arrangement (1) provided with an encapsulating structure (2) for protecting an OLED-device (3). The OLED-arrangement (1) comprises an internally operative substance binding member (15) and the encapsulating structure (2) comprises a barrier (11) and a covering layer (5) formed by a polymeric material arranged outside the barrier (11). The barrier (11) is arranged outside the substance binding member (15). The present invention aims at providing a robust and reliable encapsulation of OLED-arrangements.
摘要:
An organic functional device (1; 40; 50) comprising a substrate (2) having a first electrode layer (3) and at least a first substrate shunt structure (6), at least a first organic functional layer (7) provided on top of the first electrode layer (3), a second, transparent electrode layer (8) arranged on top of the first organic functional layer (7). The organic functional device further comprises a plurality of mutually spaced apart second electrode shunting structures (9a-d) which are each in electrical contact with the second electrode layer (8) and with the first substrate shunt structure (6).
摘要:
Disclosed is an optoelectronic device including at least one optoelectronic active region comprising at least a rear electrode and a front electrode between which an organic optoelectronic material is sandwiched, said rear electrode being reflective, and a cover layer arranged in front of said front electrode. The cover layer is formed from a material with light-scattering particles of a first material dispersed in a transparent matrix of at an least partly hydrolyzed silica sol. Due to the highly scattering properties of the cover layer, the device is essentially concealed behind the cover layer when not in its operative state.
摘要:
The present invention relates to an integrated device (10) comprising at least one active organic element (14, 24, 26), a substrate supporting the at least one active organic element, a prefabricated thin battery (20) coupled to the at least one active organic element, and an encapsulation for sealing the integrated device, wherein one of the substrate and the encapsulation is formed by the prefabricated thin battery. This structure allows for a thin integrated device. The present invention also relates to a method for the manufacturing of such an integrated device.
摘要:
A method for the manufacture of displays, in particular flexible displays, is disclosed. A substrate (1) provided with small openings (2), rendering the substrate porous and forming trenches in the substrate (1), is used. A removable layer (3) is attached to the substrate (1). An etch and temperature resistent layer (4) is deposited onto the removable layer (3), and a display is processed on said etch and temperature resistent layer (4). The removable layer (3) is removed by etching through the openings (2) in the substrate (1) and the substrate may be re-used.
摘要:
An electric transport component may include a substrate provided with a barrier structure with a first inorganic layer, an organic decoupling layer and a second inorganic layer, wherein the organic decoupling layer is sandwiched between the first and the second inorganic layer, and at least one electrically conductive structure distributed in a plane defined by the organic decoupling layer, and that is accommodated in at least one trench in the organic decoupling layer. A method of manufacturing an electric transport component may include the steps of providing a first inorganic layer, providing a first organic decoupling layer, forming at least one trench in the organic decoupling layer, depositing an electrically conductive material in the at least one trench, and providing a second inorganic layer. The component may be applied for example in opto-electrical and electro-optical devices.
摘要:
Disclosed is an OLED device including an organic layer disposed between an anode and a cathode, and a mirror layer on the anode or cathode. The organic layer is structured into electroluminescent zones and inactive zones, while the mirror layer is structured into nontransparent zones and transparent zones. Via an at least partial alignment of these structures, the OLED device can be made transparent for environmental light and simultaneously emissive in a dominant direction.
摘要:
An encapsulated electronic device is described comprising: a first barrier structure (20) comprising at least one inorganic (24) and at least one organic layer (23), a second barrier structure (30) comprising at least one inorganic (31) and at least one organic layer (32), an electronic device (10) arranged between the first and the second barrier structure (20, 30), characterized in that the at least one inorganic layer (24) of the first barrier structure (20) and the at least one inorganic (31) layer of the second barrier structure (30) contact each outside an area (A) occupied by the electronic device (10).