Abstract:
An assembly of a plurality of tiles (1) with a carrier (40), wherein the tiles (1) comprise a foil (20) with an electro-physical transducer (10) and electrical connectors (24, 28) to said transducer. The tiles are mechanically and electrically coupled to the carrier, and the tiles overlay according to a fish scale pattern.
Abstract:
The integrated circuit card comprises a card body (1) in which is fixed an integrated circuit (2) with one surface flush with the card body. The integrated circuit has connection pads (3) connected to the tracks (4) extending over to one side of the integrated circuit, one of the tracks (4) being offset towards the middle of one side of the integrated circuit with respect to the connection pad to which this lead is connected.
Abstract:
A card comprising an integrated circuit (7) with pins (6) connected to contact pads (5) via a pattern of curved conductors made of a conductive polymer, is disclosed.
Abstract:
A flexible conductive track arrangement has a pre-flexing condition in which the arrangement is generally planar. Conductive tracks are formed from a metal layer and they are covered above and below by insulator layers. The elongate conductive tracks are generally planar but locally corrugated perpendicularly to the general plane. This enables improved binding performance, for example to form tight windings using the conductive tracks.
Abstract:
A stretchable device (100) for transmitting signal between end points, such as a sensor and electronic unit, comprises a conductive element (101), which is coupled with a supporting structure (102) by introducing said conductive element (101) successively through the thickness of said supporting structure (102) to the first (102a) and second (102b) side of said supporting structure, thereby providing a corrugated structure for said conductive element, which is configured to be straighten out at least partially during stretching said device in its longitudinal direction. The conductive element (101) is coupled with said supporting structure (102) between first (104a) and second (104b) outer layers thereby providing the stretchable device (100).
Abstract:
A protective member (315) which has a surface which is coated with, for example, a conductive sheet or the like is carried upon the surface (311A) of the SAW filter (311) which has been mounted in the fitting region (313) upon the printed substrate (312). Here, within the conductive surface of the protective member (315), by surface contact with the surface (311A) of the SAW filter (311), the size of a conductive coating surface (315A) of the protective member which covers this surface (311A) is set so as to be the same as the size of the surface (311A) of the SAW filter (311), or to be smaller than the size thereof. Furthermore a shield frame member (316) which is shaped as a frame and which is made from a metal (for example from copper or the like) is provided so as to surround the periphery of the fitting region (313) for the SAW filter (311) and moreover a shield lid member (317) which is shaped as a lid and which is made from a metal (for examplefrom copper or the like) is provided so as to be sandwiched from both sides by the printed substrate (312).