Abstract:
Trägermaterialien für den Druck elektrisch leitfähiger Strukturen mittels Inkjet-Druck mit Tinten, die leitfähige Partikel enthalten, führen ohne thermische Nachbehandlung zu niedrigen Widerständen der gedruckten Strukturen, wenn sie als äußere Schicht eine mikroporöse Schicht mit einer mittleren Porengröße von kleiner als 100 nm enthalten.
Abstract:
An electronic device such as a cover for a portable device may be provided with a body having hinge portions. The hinge portions may allow the body to bend about one or more bend axes. The cover may have electrical components such as a keyboard. A keyboard may be mounted at one end of the cover and a connector may be mounted at an opposing end of the cover. A flexible fabric signal path structure may be formed from metal traces on a flexible fabric substrate. At one end of the cover, the flexible fabric signal path structure may be coupled to a printed circuit in the keyboard using conductive adhesive. At the opposing end of the cover, the metal traces on the flexible fabric substrate may be coupled to the connector.
Abstract:
A heating element 16 for a shaving razor 10 having an insulating member 42 with a base 74 and at least one electrical terminal 60. A flexible printed circuit board 34 having a base 76 with at least one electrical terminal 54 electrically and mechanically coupled to the corresponding electrical terminal of the insulating member. A non electrically conductive underfiller encapsulant 72 is positioned between the base of the insulating member and the base of the flexible printed circuit board to provide a water tight seal around the electrical terminals.
Abstract:
A sensor (500) is disposed between a first component (102) and a second component of (108) an electronic device. The sensor includes a first surface (428) having a first dimension and a second surface (418 lower surface) having a second dimension that is less than the first dimension such that the sensor has a tapered profile (D1, D2).
Abstract:
Embodiments of the present disclosure are directed towards an integrated circuit (IC) package. In embodiments, an integrated circuit (IC) package may include a flexible substrate (102). The flexible substrate (102) may have a plurality of dies (104 -112) coupled therewith. The IC package may include a first encapsulation material (116-120), having a first rigidity, disposed on the flexible substrate (102) to at least partially encapsulate each die of the plurality dies (104 -112). The IC package may further include a second encapsulation material (122), having a second rigidity, disposed on the flexible substrate (102). In embodiments, the second rigidity and the first rigidity are different from one another. Other embodiments may be described and/or claimed.
Abstract:
Disclosed herein is a display apparatus that reduces a magnitude of a tension applied to a flexible PCB when a display panel is provided with a curved surface, and prevents damage of a driving chip. The display apparatus in accordance with exemplary embodiments includes a display panel configured to display an image, a source printed circuit board configured to control the display panel, and a flexible PCB that connects the display panel and the source printed circuit board. A length of at least one side edge of the flexible PCB is formed longer than a minimum length from the display panel to the source printed circuit board.
Abstract:
A portable electronic device commonly includes one or more batteries. Further, a portable electronic device may be manufactured using one or more overmolding techniques to achieve certain aesthetic and/or mechanical characteristics. Batteries within the portable electronic device may be overmolded by using a covering, wherein the covering includes a protective layer such that the batteries are not exposed to the high temperatures and high pressures associated with an overmolding process which may be in excess of temperature and pressure thresholds associated with the batteries.