TL;DR: In this article, a method of enabling single-handed user-software interactions, comprising the steps of: generating a singlehanded utilization zone; positioning said singlehanded usage zone at a current detected thumb location on the touchscreen; rendering a proxy desktop within said zone, said proxy desktop providing substantially the same functionality of the operating system desktop of the large form-factor mobile electronic device and being conformed substantially in shape and size to a small form factor mobile electronic devices to facilitate user familiarity with thumb stroke actions with the rendered touch screen desktop.
Abstract: In a large form-factor mobile electronic device having a touchscreen for receiving user thumb input actions via an operating system desktop to facilitate user-software interactions, a method of enabling single-handed user-software interactions, comprising the steps of: generating a single-handed utilization zone; positioning said single-handed utilization zone at a current detected thumb location on the touchscreen; rendering a proxy desktop within said zone, said proxy desktop providing substantially the same functionality of the operating system desktop of the large form-factor mobile electronic device and being conformed substantially in shape and size to a small form factor mobile electronic device to facilitate user familiarity with thumb stroke actions with the rendered touch screen desktop; and rendering an application interface within said zone upon receiving a generate application interface request.
TL;DR: An easily removable modular optical signal transceiver unit for conversion between modulated light signal transmission and electronic data signals and which conforms to the Small Form Factor standard for transceiver interfaces is disclosed in this article.
Abstract: An easily removable modular optical signal transceiver unit for conversion between modulated light signal transmission and electronic data signals and which conforms to the Small Form Factor standard for transceiver interfaces is disclosed. The structural details of its chassis include aspects which insure the proper positioning of electronic circuit boards of a transmitter optical subassembly and a receiver optical subassembly as well as the positioning of electromagnetic radiation shielding on the chassis. In conjunction with an interface device on an electronic circuit board of a host device, the chassis supports electromagnetic radiation shielding which substantially encloses the sources of electromagnetic radiation within the module and suppresses the escape of electromagnetic radiation, thereby preventing electromagnetic interference with sensitive components and devices in proximity to the module.
TL;DR: In this article, a system and method to facilitate communication between an associated bus, such as employs a standard bus protocol, and a connector to which a removable SFF device can be attached.
Abstract: A system and method to facilitate communication between an associated bus, such as employs a standard bus protocol, and a connector to which a removable SFF device can be attached. A desired operating mode is selected based on the device attached at the connector, such as either to pass the protocol between the bus and device generally unchanged or to implement suitable protocol conversion for such communication. Thus, by configuring the SFF device to appear as device currently supported by the bus, the SFF device can operate at the connector with native operating system support.
TL;DR: A small form factor transceiver (SFF) as mentioned in this paper performs protocol translation by means of an integral protocol translation unit that performs standards-based or proprietary conversion between network protocols, in addition to the conventional electrical and/or optical transmission media conversion.
Abstract: A small form-factor transceiver module performs protocol translation, in addition to the conventional electrical and/or optical transmission media conversion. Such protocol conversion may enable transport of traffic from limited-range primary networks over long-range secondary networks, such as extension of Ethernet networks over low-rate TDM links. Additionally, such protocol conversion may enable interworking between different networks of differing technologies, such as transport of ATM traffic over Ethernet networks. The transceiver module may be a Small Form Factor transceiver (SFF), Small Form Factor pluggable module (SFP), Gigabit Interface Converter (GBIC) or any similar small form-factor module consisting of a housing, internal electronic circuitry and optionally optical components, and associated electrical or optical connectors. The transceiver module performs protocol translation by means of an integral protocol translation unit that performs standards-based or proprietary conversion between network protocols.
TL;DR: A monolithic optical module of injection-molded high temperature polymeric resin combines an optical turn of typically 90 degrees together with dual or triple beam paths No additional piece parts are necessary for achieving the optical turn, since this occurs by total internal reflection (TIR) as mentioned in this paper.
Abstract: A monolithic optical module (110) of injection-molded high temperature polymeric resin combines an optical turn of typically 90 degrees together with dual or triple beam paths No additional piece parts are necessary for achieving the optical turn, since this occurs by total internal reflection (TIR), and no additional piece parts are necessary for dual monitoring, which is realized by means of an air-gap functioning as a dual beam-splitter plate (112) The monolithic optical module further includes integrally surfaces for accurate alignment of the module with external optical elements, and can additionally include integral optical elements, for example lenses and this film coatings