Abstract:
One embodiment of the present disclosure is directed to a wearable electronic device. The wearable electronic device includes an enclosure having a sidewall with a button aperture defined therethrough, a display connected to the enclosure, a processing 5 element in communication with the display. The device also includes a sensing element in communication with the processing element and an input button at least partially received within the button aperture and in communication with the sensing element, the input button configured to receive two types of user inputs. During operation, the sensing element tracks movement of the input button to determine the two types of user inputs.
Abstract:
In any context where a user can view multiple different content items, switching among content items is provided using an array mode. In a full frame mode, one content item is visible and active, but other content items may also be open. In response to user input the display can be switched to an array mode, in which all of the content items are visible in a scrollable array. Selecting a content item in array mode can result in the display returning to the full frame mode, with the selected content item becoming visible and active. Smoothly animated transitions between the full frame and array modes and a gesture based interface for controlling the transitions can also be provided.
Abstract:
sistemas de telefone celular com suporte para conversão de chamadas de voz para sessões de dados. a presente invenção refere-se aos dispositivos eletrônicos sem fio tais como telefones celulares podem se comunicar com equipamentos de computação tais como servidores através de uma rede. as chamadas telefônicas de voz podem ser roteadas através de enlances de voz em uma rede de voz e dados podem ser transmitidos através de enlaces de dados em uma rede de dados. a rede de voz pode ser formada usando a rede pública de telefone comutada. a rede de dados pode ser formada usando a internet. as estações de base de celular podem formar enlaces sem fio com os dispositivos sem fio. um servidor pode armazenar informações no endereço de protocolo de internet atual de um usuário do dispositivo sem fio. o usuário pode efetuar uma chamada telefônica de voz para uma organização. em resposta à recepção da chamada telefônica de voz, um servidor pode automaticamente transmitir informações tais como páginas da web ou outros dados que incluam opções na tela interativa para o dispositivo sem fio usando o endereço de protocolo de internet atual do dispositivo.
Abstract:
In any context where a user can view multiple different content items, switching among content items is provided using an array mode. In a full frame mode, one content item is visible and active, but other content items may also be open. In response to user input the display can be switched to an array mode, in which all of the content items are visible in a scrollable array. Selecting a content item in array mode can result in the display returning to the full frame mode, with the selected content item becoming visible and active. Smoothly animated transitions between the full frame and array modes and a gesture based interface for controlling the transitions can also be provided.
Abstract:
Electronic devices may use touch pads that have touch sensor arrays, force sensors, and actuators for providing tactile feedback. A touch pad may be mounted in a computer housing. The touch pad may have a rectangular planar touch pad member that has a glass layer covered with ink and contains a capacitive touch sensor array. Force sensors may be mounted under each of the four corners of the rectangular planar touch pad member. The force sensors may be used to measure how much force is applied to the surface of the planar touch pad member by a user. Processed force sensor signals may indicate the presence of button activity such as press and release events. In response to detected button activity or other activity in the device, actuator drive signals may be generated for controlling the actuator. The user may supply settings to adjust signal processing and tactile feedback parameters.
Abstract:
Wireless electronic devices such as cellular telephones may communicate with computing equipment such as servers over a network. Voice telephone calls may be routed over voice links in a voice network and data may be conveyed over data links in a data network. The voice network may be formed using the public switched telephone network. The data network may be formed using the Internet. Cellular base stations may form wireless links with the wireless devices. A server may store information on the current internet protocol address of a wireless device user. The user may place a voice telephone call to an organization. In response to receiving the voice telephone call, a server may automatically transmit information such as web pages or other data that includes interactive on-screen options to the wireless device using the current internet protocol address of the device.
Abstract:
Electronic devices may use touch pads that have touch sensor arrays, force sensors, and actuators for providing tactile feedback. A touch pad may be mounted in a computer housing. The touch pad may have a rectangular planar touch pad member that has a glass layer covered with ink and contains a capacitive touch sensor array. Force sensors may be mounted under each of the four corners of the rectangular planar touch pad member. The force sensors may be used to measure how much force is applied to the surface of the planar touch pad member by a user. Processed force sensor signals may indicate the presence of button activity such as press and release events. In response to detected button activity or other activity in the device, actuator drive signals may be generated for controlling the actuator. The user may supply settings to adjust signal processing and tactile feedback parameters.
Abstract:
Abstract of the Disclosure Electronic devices may use touch pads that have touch sensor arrays, force sensors, and actuators for providing tactile feedback. A touch pad may be mounted in 5 a computer housing. The touch pad may have a rectangular planar touch pad member that has a glass layer covered with ink and contains a capacitive touch sensor array. Force sensors may be mounted under each of the four corners of the rectangular planar touch pad member. The 10 force sensors may be used to measure how much force is applied to the surface of the planar touch pad member by a user. Processed force sensor signals may indicate the presence of button activity such as press and release events. In response to detected button activity or other 15 activity in the device, actuator drive signals may be generated for controlling the actuator. The user may supply settings to adjust signal processing and tactile feedback parameters.
Abstract:
One embodiment of the present disclosure is directed to a wearable electronic device. The wearable electronic device includes an enclosure having a sidewall with a button aperture defined therethrough, a display connected to the enclosure, a processing element in communication with the display. The device also includes a sensing element in communication with the processing element and an input button at least partially received within the button aperture and in communication with the sensing element, the input button configured to receive two types of user inputs. During operation, the sensing element tracks movement of the input button to determine the two types of user inputs.