Abstract:
A system including a base affixed to a radio. The base includes a first base connector and a second base connector with a plurality of radial interconnectors positioned around the perimeter of the first base connector. The system includes an antenna connector including a first antenna connector and a second antenna connector with a plurality of radial interconnectors positioned around the perimeter of the first antenna connector. The first base connector is connected to the first antenna connector to form a central radio frequency (RF) coaxial connection and a first transmission line for a first antenna. The second antenna connector is connected to the second base connector to form a second transmission line and a plurality of radial connections around the perimeter of the central RF coaxial connection. The plurality of radial connections is configured to function as a signal carrier and/or an additional RF element.
Abstract:
A display (110) providing a tactile display user interface is provided. A display sub-assembly (204) with lens (104) is mounted within an internal frame (218) having a base (214). A perimeter seal (208) is mounted between the lens (104) and the internal frame (218). Mechanical switches (210) are disposed between a back surface of the display and the base (214) of the internal frame (218). The display sub-assembly (204) and lens (104) is moveable relative to the internal frame (218) resulting in actuation of a single mechanical switch in response to the display being pressed. Sealing of the lens (104) to the internal frame (218) being maintained during switch actuation.
Abstract:
A unitary metal clip (100) is formed of a pocket mounting side (102), a device mounting side (104) and a top end pocket flange (108) therebetween. The clip further comprises first and second side flanges (106) extending from the pocket mounting side (102) toward the top end pocket flange (108). The top end pocket flange (108) provides alignment, while first and second side flanges (106) provide slide-in, engagement, and grip features for clip (100). A recessed retention feature (114) is also provided within the pocket mounting side (102) to provide a compression feature of clip. A device mounting platform (130) is located on the device mounting side (104) extending from the top end pocket flange (108) of clip (100) for mounting to a device, such as a holster or directly to a communication device. Clip (100) provides stable, non-rotational positioning and retention for body worn portable communication device applications.
Abstract:
A process at an electronic digital assistant (EDA) computing device uses natural language detection of a user status change to make corresponding modification of a user interface associated with the user. The EDA monitors a private or talkgroup voice call associated with a user and detects first user speech from the user. The EDA identifies a current status of the user of on-assignment or not-on-assignment and determines that the first user speech is indicative of a first or second user status change. When it is the first user status change, the EDA causes a mobile or portable computing device associated with the user to automatically swap a foreground not-on-assignment related application with a not-previously-in-foreground on-assignment related application, and vice versa when it is the second user status change.
Abstract:
A charging accessory (104) is provided. The charging accessory (104) comprises a mechanical attachment device, such as a clip (110), and a receive coil (112) integrated within the clip, the receive coil for receiving a wireless charging signal (118). A wearable lanyard (126) is coupled to the clip (110) for transferring power and charging signals. The charging accessory (104) can be worn and operated within a charging system (100) to power and charge a wearable electronic device (102).
Abstract:
An audio device (100) provides an on-ear speaker housing (110), an adjustable shaft (120), and a malleable ear loop (130) coupled to the adjustable shaft. The adjustable shaft (120) controls vertical movement of the malleable ear loop (130). The malleable ear loop (130) can be fit about a user's ear with its height being adjusted by the adjustable shaft 120. The adjustable shaft further controls rotation of the on-ear speaker housing (110). The rotation of the on-ear speaker housing (110) allows for user adjustable left ear mounting or right ear mounting with a single device.
Abstract:
A rotary control knob (110) for a portable radio (100) utilizes a flexible shaft (112) as a tether to provide a plurality of flexible positions. The flexible shaft (112) is coupled to a switch mechanism (116) located in the radio housing (102). The rotary control knob (110) can be slid up and down the flexible shaft (112) and the flexible shaft can be bent to provide improved user access to the knob, such as for gloved usage.