US2016363836A1PendingUtilityA1
Glass composite with functional element
Est. expiryApr 2, 2032(~5.7 yrs left)· nominal 20-yr term from priority
Inventors:Linda Czapka
G06F 3/01F21Y 2105/10G03B 15/03F21V 29/508G02B 6/0076H05K 1/0274B44C 5/04B32B 3/10B32B 2457/12G01D 7/00G03B 17/55B32B 17/06G02B 7/00F21V 33/006B32B 37/18F21V 29/50C03C 27/06B32B 2457/00G01D 11/24H05K 1/0306F21Y 2115/10G03B 17/02G09F 13/04G01D 11/28
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Claims
Abstract
A glass composite has at least one first main glass panel ( 2 ), at least one second main glass panel ( 3 ) arranged at a distance from the first main glass panel, and at least one plate element ( 5 ) arranged between the main glass panels ( 2, 3 ), wherein at least one technical module ( 4 ) is arranged between the two main glass panels ( 2, 3 ) and the plate element ( 5 ) borders a recess ( 6 ) that is adapted to the shape of the technical module ( 4 ), in which recess the technical module ( 4 ) is accommodated.
Claims
exact text as granted — not AI-modified1 . A glass composite comprising:
at least one first main glass panel ( 2 ), at least one second main glass panel ( 3 ) that is spaced apart from the first, at least one plate element ( 5 ) that is located between the main glass panels ( 2 , 3 ) and bordering a recess ( 6 ), and at least one technical module ( 4 ) located between the first and second main glass panels ( 2 , 3 ) and accommodated within the recess ( 6 ), wherein a shape of the recess ( 6 ) matches a shape of the at least one technical module ( 4 ).
2 . A glass composite according to claim 1 , wherein the at least one plate element ( 5 ) is made at least in two parts and wherein the at least two parts in the plane between the first and second main glass panels ( 2 , 3 ) adjoin the edges of the technical module ( 4 ).
3 . A glass composite according to claim 1 , wherein the at least one technical module ( 4 ) has one of the group consisting of a display unit, an input unit, a sensor unit, a photovoltaic panel, a current-carrying apparatus, a data-carrying apparatus and a data-recording apparatus.
4 . A glass composite according to claim 1 , wherein at least one of the first and second main glass panels ( 2 , 3 ) and the at least one technical module ( 4 ) are arranged at a distance to one another using a spacer ( 9 ) such that cooling of the at least one technical module ( 4 ) is ensured.
5 . A glass composite according to claim 1 , wherein adjacent to one of the first and second main glass panels ( 2 , 3 ), there is an illumination system that runs in a plane parallel to these main glass panels ( 2 , 3 ) and between these main glass panels ( 2 , 3 ), and a third main glass panel ( 22 ) has an embedded light-conducting illumination panel ( 21 ).
6 . A glass composite according to claim 1 , wherein adjacent to one of the main glass panels ( 2 , 3 , 22 ), especially the main glass panel ( 3 , 22 ) that is facing a back of the technical module ( 4 ), there is a color layer that runs in a plane that is parallel to these main glass panels ( 2 , 3 , 22 ) and between these main glass panels ( 2 , 3 , 22 ), and another main glass panel ( 33 ) has a color panel ( 34 ) that is embedded.
7 . A glass composite according to claim 1 , wherein there are conducting means ( 11 ) that are intended for electrically-conductive connection of the electrical terminals ( 12 ) of the technical module ( 4 ) to the vicinity of the glass composite ( 1 ),
the conducting means ( 11 ) in the plate element ( 5 ) having a hole or notch or groove ( 13 ) and an electrical line ( 14 ) that is accommodated there, and/or the conducting means ( 11 ) having first printed conductors ( 15 ) that run on the edges of the plate element ( 5 ) and that are line-like or surface-like there, and/or between the main glass panels ( 2 , 3 ), spacers ( 9 ) being inserted on the edge side that define the distance of the main glass panels ( 2 , 3 ) to one another, the spacer ( 9 ) being a component of the conducting means ( 11 ) and having electrically-conductive structures in regions, especially in the form of cable-like, line-like or surface-like second printed conductors ( 16 ), and/or corner elements ( 17 ) between the spacers ( 9 ) forming a component of the conducting means ( 11 ) and having an electrically-conductive penetration ( 18 ) in order to electrically connect the technical module ( 4 ) to the vicinity of the glass composite ( 1 ).
8 . A glass composite according to claim 1 , wherein illumination means ( 19 ) are integrated between two main glass panels ( 2 , 3 , 22 , 33 ) and are designed for lateral feed of light between the main glass panels ( 2 , 3 , 22 , 33 ) and wherein the illumination means ( 19 ) are thermally coupled to a spacer ( 9 ).
9 . A glass composite according to claim 8 , wherein the illumination means ( 19 ) have a light-emitting diode strip ( 24 ) having a board ( 32 ) with light-emitting diodes ( 23 ) attached to it and wherein the board ( 32 ) is used as a cooling body.
10 . A glass composite according to claim 1 , wherein the at least one plate element ( 5 ) is located between the two main glass panels ( 2 , 3 ) in one function plane and acts as a frame in this function plane for at least one technical module ( 4 ) by its bordering a recess ( 6 ) that is matched to the shape of the technical module ( 4 ) and in which the technical module ( 4 ) is accommodated.
11 . A glass composite according to claim 1 , wherein the at least one technical module ( 4 ) is a camera.
12 . A glass composite according to claim 1 , wherein adjacent to one of the second main glass panel ( 3 ) faces a back of the technical module ( 4 ), there is an illumination system that runs in a plane parallel to the first and second main glass panels ( 2 , 3 ) and between the first and second main glass panels ( 2 , 3 ), and a third main glass panel ( 22 ) has an embedded light-conducting illumination panel ( 21 ).
13 . A method for producing a glass composite ( 1 ) with at least one first main glass panel ( 2 ), at least one second main glass panel ( 3 ) that is spaced apart from the first, and at least one plate element ( 5 ) that is located between the main glass panels ( 2 , 3 ), wherein at least one technical module ( 4 ) is located in a recess ( 6 ) of at least one plate element ( 5 ), which recess is matched to the shape of the technical module ( 4 ), and wherein the at least one plate element ( 5 ) and the at least one technical module ( 4 ) are located between the two main glass panels.
14 . A method according to claim 16 , wherein the plate element ( 5 ) is made at least in two parts and the parts of the plate element ( 5 ) during arrangement are aligned such that in the plane between the main glass panels ( 2 , 3 ), edges of the technical module ( 4 ) adjoin the plate edges of the parts of the plate element ( 5 ).
15 . A method according to claim 16 , wherein between the main glass panels ( 2 , 3 ) on the edge side, spacers ( 9 ) are inserted so that at least one of the main glass panels ( 2 , 3 ) and the technical module ( 4 ) are arranged at a distance to one another using the spacers ( 9 ) such that cooling of the technical module ( 4 ) is ensured.
16 . A method according to claim 16 , wherein adjacent to one of the main glass panels ( 2 , 3 ), especially the main glass panel ( 3 ) that is facing a back of the technical module ( 4 ), there is an illumination system that runs in a plane that is parallel to these main glass panels ( 2 , 3 ) and between these main glass panels ( 2 , 3 ), and a third main glass panel ( 22 ) has an embedded light-conducting illumination panel ( 21 ).
17 . A method according to claim 16 , wherein adjacent to one of the main glass panels ( 2 , 3 , 22 ), especially the main glass panel ( 3 , 22 ) that is facing a back of the technical module ( 4 ), there is a color layer that runs in a plane that is parallel to these main glass panels ( 2 , 3 , 22 ) and between these main glass panels ( 2 , 3 , 22 ), and another main glass panel ( 33 ) has a color panel ( 34 ) that is embedded.Join the waitlist — get patent alerts
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