B32B2311/16

TRANSPARENT CONDUCTOR AND TOUCH PANEL

Provided is a transparent conductor including a transparent resin substrate, a first metal oxide layer, a metal layer containing a silver alloy, and a second metal oxide layer laminated in the order presented, wherein the second metal oxide layer contains zinc oxide, indium oxide, titanium oxide, and tin oxide.

Decorative Vapor Deposition Sheet
20250042132 · 2025-02-06 ·

Object: Provided is a decorative vapor deposition sheet that can reduce or prevent a defect, such as the breaking of a metal vapor deposition layer or the entire sheet, even when applied to a forming method requiring high temperature or the like.

The decorative vapor deposition sheet of an embodiment of the present disclosure is a decorative vapor deposition sheet including a cover resin layer and a metal vapor deposition layer, in which the cover resin layer has a thickness of approximately 50 micrometers or greater, the metal vapor deposition layer exhibits a granular structure, a breaking elongation of the decorative vapor deposition sheet at 20 C. is approximately 120% or greater, and a breaking elongation of the decorative vapor deposition sheet at 160 C. is approximately 350% or greater.

Electromagnetic interference shielding film and preparing methods thereof

An electromagnetic interference shielding film includes an insulation layer, a first adhesive layer, a porous metal layer and a conductive adhesive layer including a plurality of conductive particles. The first adhesive layer is located between the insulation layer and the porous metal layer, and the porous metal layer is formed on the first adhesive layer, and making the first adhesive layer locate between the porous metal layer and the insulation layer. The conductive adhesive layer is located on the porous metal layer so that the porous metal layer is located between the first adhesive layer and the conductive adhesive layer. The present invention further provides a preparation method thereof.

ELECTROCHROMIC FILM AND ELECTROCHROMIC GLASS
20250108586 · 2025-04-03 ·

An electrochromic film including a first conductive substrate, an electrochromic layer, and a second conductive substrate laminated sequentially; an edge of the first conductive substrate is provided with a first accommodating groove, an edge of the second conductive substrate is provided with a second accommodating groove, and an edge of the electrochromic layer is provided with at least two third accommodating grooves; the first accommodating groove and the third accommodating groove are in communication with each other to form a first groove; the second accommodating groove and the third accommodating groove are in communication with each other to form a second groove; both the width of the first groove and the width of the second groove are a, and a distance between orthographic projections of any adjacent the first groove and the second groove onto the plane of the electrochromic layer is b, and ba.

ELECTROMAGNETIC INTERFERENCE SHIELDING FILM AND PREPARING METHODS THEREOF
20250153461 · 2025-05-15 ·

An electromagnetic interference shielding film includes an insulation layer, a first adhesive layer, a porous metal layer and a conductive adhesive layer including a plurality of conductive particles. The first adhesive layer is located between the insulation layer and the porous metal layer, and the porous metal layer is formed on the first adhesive layer, and making the first adhesive layer locate between the porous metal layer and the insulation layer. The conductive adhesive layer is located on the porous metal layer so that the porous metal layer is located between the first adhesive layer and the conductive adhesive layer. The present invention further provides a preparation method thereof.

Laminated glazing comprising a transparent substrate with a heating layer having flow lines which altogether are of variable width
12319029 · 2025-06-03 · ·

A laminated glazing is formed of several rigid transparent substrates adhesively bonded in pairs by an interlayer adhesive layer, at least one of these transparent substrates being coated with an electrically conductive layer, a zone of this transparent substrate exhibiting four opposite edges in pairs, a first and a second busbar being positioned along two opposite edges, the electrically conductive layer exhibiting flow lines for guiding the electric current between the busbars, the set of flow lines being of variable width.

Spandrel

A spandrel including a first substrate, an intermediate film made of polymer material, and a second, opaque substrate, such that the first substrate is coated with at most two layers which are deposited on the surface located on the side facing the intermediate film made of polymer material and which include at least one upper dielectric layer.

Heat-treatable coating having reduced haze

A coated article includes a substrate with a first surface and a second surface and a functional coating applied over the surface. The functional coating includes a base layer over at least a portion of the substrate; a metallic layer over at least a portion of the base layer; and a top layer over at least a portion of the metallic layer. The base layer includes a first film of tin oxide over at least a portion of the substrate and a second film covering the entire portion of the first film. Methods of making a coated article, reducing scattering center formation, and reducing red haze formation are also provided.

Manufacturing method for a flexible flat cable
12394538 · 2025-08-19 · ·

A flexible flat cable (FFC) includes a first insulation layer, at least one pair of conductors, a plurality of low-k dielectric layers, two second insulation layers, and at least one shielding layer. The pair of conductors is located within the first insulation layer. Each pair of conductors includes a plurality of first conductors, and the first conductors are axially extending and arranged in parallel. The low-k dielectric layers are embedded in the first insulation layer. Each of the pair of conductors or each of the first conductors is covered and surrounded with one low-k dielectric layer. The two second insulation layers are located on two surfaces of the first insulation layer. The shielding layer is located on the two second insulation layers opposite to the first insulation layer.

SOLAR-CONTROL STRUCTURE WITH IMPROVED ADHESION

The insertion of an ultra-thin sublayer of intentionally oxygen-doped aluminum nitride can drastically improve the adhesion between an intentionally stoichiometrically deposited aluminum nitride and a silver functional layer of a low-emissivity solar-control structure. A similar sublayer, optionally disposed above the functional layer, can improve the adhesion between the silver and top layers of the structure. Additional benefits of inserting the aluminum-oxy-nitride include an improved smoothness of the interface, reduced electron scattering, and better performance of the structure in both visible and infrared spectral regions.