Abstract:
There is provided a portable electronic device (100). The portable electronic device (100) comprises an enclosure that comprises a housing component and a front cover (102) coupled to the housing component (104) and defining a front exterior surface of the portable electronic device (100). The portable electronic device (100) also comprises a display (103) positioned below the front cover, the display defining: an active display region, a first hole surrounded by the active display region, and a second hole surrounded by the active display region. The portable electronic device (100) further comprises a first optical sensor (106) positioned below the front cover (102) and below the first hole, a second optical sensor (109) positioned below the front cover (102) and below the second hole, and a touch-sensing component. The touch-sensing component is configured to detect a first touch input applied to the front cover (102) in the active display region of the display (103), and a second touch input applied to the front cover (102) over the first hole in the display (103).
Abstract:
A mobile phone (700) includes a housing structure, the housing structure defining a side surface (811) of the mobile phone, a front cover coupled to the housing structure and defining a front surface (809) of the mobile phone, a rear cover coupled to the housing structure and defining a rear surface (813) of the mobile phone, a display positioned below the front cover, a first directional antenna (730) defining a first radiation pattern (803) extending through the front surface of the mobile phone, a second directional antenna (732) defining a second radiation pattern (805) extending through the rear surface of the mobile phone, and a third directional antenna (734) defining a third radiation pattern (804) extending through the side surface of the mobile phone.
Abstract:
Apparatus, systems and methods for improving chemical strengthening behavior in glass members are disclosed. According to one aspect, a method for processing a glass part formed using a fusion process or a float process includes annealing the glass part and then chemically strengthening the glass part. Annealing the glass part includes at least heating the glass part at a first temperature, maintaining the first temperature, and cooling the glass part to a second temperature using a controlled cooling process. Chemically strengthening the glass part includes facilitating an ion exchange between ions included in the glass part and ions included in a chemical strengthening bath.