摘要:
The invention relates to a transparent panel (1) according to figure 1, comprising at least one heatable, electrically conductive coating (8) that is connected to at least two collection lines (11, 11'), provided for electrically connecting to the two poles of a voltage source, in such a way that, by applying a supply voltage, a heat current flows via a heat field (12) formed between the at least two collection lines, wherein the heat field (12) contains at least one coating-free zone (14) which is bordered by a zone edge (16) of the coating-free zone (14) at least partially formed by the electrically conductive coating (8), and which is at least partially surrounded by at least one additional electrode (15, 15', 15"), wherein the at least one additional electrode (15, 15', 15") is electrically coupled to the collection lines (11, 11') via the heat field (12) of the coating (8), and the at least two collection lines (11, 11') have a light silver colour and the additional electrode has a dark colour. The invention also relates to a production method and a use thereof.
摘要:
The invention relates to a solar panel (1) which comprises at least a) a support layer (2), b) a first intermediate layer (3), arranged on top of the support layer (2), c) at least one crystalline solar cell (4), arranged on top of the intermediate layer (3), d) a second intermediate layer (5), arranged on top of the crystalline solar cell (4), e) a front pane (6) from glass having a thickness of 0.85 to 2.8 mm, arranged on top of the second intermediate layer (5), and f) an edge reinforcing structure (7), said edge reinforcing structure (7) projecting from the front pane (6) by a height (h) of at least 0.5 mm and the edge reinforcing structure (7) having at least one drain channel (8.1) in every corner of the solar panel (1), said drain channel connecting the interior (10) and the exterior (11) of the edge reinforcing structure (7).
摘要:
The invention relates to a transparent panel having an electrically heatable coating, which is electrically connected to at least two first electrodes for electric connection to both poles of a voltage source such that, by applying a supply voltage, a heating current flows over a heating field formed between the two first electrodes. The heating field contains at least one coating-free zone which is delimited by a zone edge formed in at least some sections by the heatable coating. According to the invention, at least one second electrode for electric connection to the one pole of the voltage source is provided, which comprises at least one supply section disposed at least in some areas of the coating-free zone and one or several connection sections connected to the supply section, wherein the connection sections, starting from the coating-free zone, extend in each case beyond an edge section of the zone edge, wherein the edge section is formed by a section of the heating field which is located between the coating-free zone and the first electrode provided for connection to the other pole of the voltage source. The invention further relates to a method for producing such a panel.
摘要:
The invention relates to a thin-film component (I) wherein a film structure (2) and an electrically conductive protection device (3) are applied to a glass pane (1), at least one dielectric protection film (4) is applied to the film structure (2) and the electrically conductive protection device (3) and wherein the distance between the electrically conductive protection device (3) and the outside edge (5) of the glass pane (1) is smaller than the distance between the film structure (2) and the outside edge (5) of the glass pane (1), and a method for the production and use thereof.
摘要:
The present invention relates to a pane (100) having an electric heating layer (3) and comprising at least: a first pane (1) having a surface (III); at least one electric heating layer (3) that is applied to at least part of the surface (III) and comprises at least one uncoated zone (8); at least two busbars (5.1, 5.2), provided for connection to a voltage source (14), which are connected to the electric heating layer (3) such that a current path (11) for a heating current is formed between the busbars (5.1, 5.2); and n separating lines (9.n) which electrically subdivide the electric layer (3) into m segments (10.m), n being an integer > 1 and m = n+1. The segments (10.m) are arranged in the form of strips around the uncoated zone (8) such that the current path (11) for the heating current is at least partially guided around the uncoated zone (8) and the segments (10.m) have equal width (b) and the sum of widths (b) of segments (10.m) is equal to the width (B) of the electric heating layer (3). Nothing to translate