Abstract:
A multilayer structure (200) including a preferably flexible substrate film (102) capable of accommodating electronics (106, 108), such as conductive traces and optionally electronic components such as SMDs (surface-mount device), on a first side thereof, the film having the first side and a second side, and a plastic layer (204) molded onto the first side of the substrate and protruding at one or more locations (114, 114B) through the substrate onto the second side, forming one or more protrusions (218) on the second side having a predetermined function. A corresponding method of manufacture is presented.
Abstract:
A multilayer structure for an electronic device, includes a flexible substrate film (202, 502) for accommodating electronics, a number of electronic components (308, 508) provided on a first surface area (401A, 501A) of the film, the film also including a second surface area adjacent (401B, 501B) to the first surface area, and a number of conductive traces (412, 512) printed on the substrate film for electrically connecting electronic components together, wherein the number of electronic components and the related first surface area of the substrate accommodating the components have been overmolded with first thermoplastic material (306, 506), the adjacent second surface area and at least part of the first area being overmolded with second thermoplastic material so that at least part of the electronic components and the first thermoplastic material thereon are substantially embedded between the substrate film and second thermoplastic material. A corresponding method of manufacture is presented.
Abstract:
A multilayer structure for a garment, optionally footwear, includes a flexible substrate film for accommodating electronics, a number of flexible sensor pads provided on the film utilizing printed electronics technology, optionally screen printing or ink jetting, at least one electronic circuit, preferably integrated circuit, further provided on the film for controlling capacitive measurements via the number of sensor pads for obtaining an indication of pressure subjected to the multilayer structure, a number of conductor traces further printed on the film for electrically connecting the at least one electronic circuit and the number of capacitive sensor pads, a power supply element for powering electricity-driven components including the at least one electronic circuit, and at least one plastic layer molded upon the film substantially embedding the number of sensor pads, conductor traces and the at least one electronic circuit therewithin. A related method of manufacture is presented.
Abstract:
A multilayer structure (200) including a preferably flexible substrate film (102) capable of accommodating electronics (106, 108), such as conductive traces and optionally electronic components such as SMDs (surface-mount device), on a first side thereof, the film having the first side and a second side, and a plastic layer (204) molded onto the first side of the substrate and protruding at one or more locations (114, 114B) through the substrate onto the second side, forming one or more protrusions (218) on the second side having a predetermined function. A corresponding method of manufacture is presented.
Abstract:
A multilayer structure for an electronic device, includes a flexible substrate film (202, 502) for accommodating electronics, a number of electronic components (308, 508) provided on a first surface area (401A, 501A) of the film, the film also including a second surface area adjacent (401B, 501B) to the first surface area, and a number of conductive traces (412, 512) printed on the substrate film for electrically connecting electronic components together, wherein the number of electronic components and the related first surface area of the substrate accommodating the components have been overmolded with first thermoplastic material (306, 506), the adjacent second surface area and at least part of the first area being overmolded with second thermoplastic material so that at least part of the electronic components and the first thermoplastic material thereon are substantially embedded between the substrate film and second thermoplastic material. A corresponding method of manufacture is presented.
Abstract:
Multilayer structure (200) for electronic devices, including a flexible substrate film (102) for accommodating electronics, a number of electrical elements (204, 206) provided to the flexible substrate film, preferably by element of printed electronics and/or surface mounting, a protective layer (104) laminated onto at least first surface of the substrate film, the protective layer being configured to mask perceivable physical deviation of the substrate, such as uneven surface profile or coloring, substantially at the location of the number of elements, from outside perception, optionally visual perception and/or tactile inspection taking place via the protective layer, and plastic layer (106) molded over at least second surface of the substrate film opposite to the first surface. A corresponding method of manufacture is presented.