Dtf 2012 ultra mobile ecosystem forum
Backed up by academic analyses, the government will also push for the development of advanced technologies to enrich the country's pools of patents. A task force set up by the MOEA for the promotion of smart handheld device industry is currently serving as a platform for cross-industry exchanges and cooperation; the task force will initiate international cooperation, motivate innovative developments, spur industrial integration and improve market environments for the industry, Leu concluded.
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News tagged DTF Ultra Mobile and Ecosystem Forum at DIGITIMES
Check the Advanced options to learn the new search rules. Strategies for developing Taiwan smart handheld device industry. Tuesday 30 April Related topics. A conventional notebook is 1. To do this, the thickness of a display panel needs to be decreased from 5mm to 3mm while the battery diameter needs to be decreased from 18mm to 16mm or rectangular batteries of 80mm x 60mm shall be used.
Moreover, socket connections are all canceled inside th ultrabook, where all IC chips are directly soldered on board using surface mount technology SMT. According to Lau, the ultrabook has been Intel's biggest platform change since the company launched Centrino in , as the CPU, chipset, chassis, display panel, and storage have all been changed. According to Intel's three-year plan, since the launch of Sandy Bridge 2nd generation Core Ultrabook in June , Ivy Bridge 3rd generation Core Ultrabook will enter the mainstream market in , and the CPU codenamed Haswell that is expected to be launched in would transform the existing notebook market completely.
Citing a Digitimes from April and many others, Lau noted that increasing ultrabook shipments would help boost the gross margin at notebook OEMs. According to Lau, ZDNet considers the first year of the era of the ultrabook. Wired pointed out that would witness the fruition of the ultrabook while eWeek mentioned that ultrabook-based tablets would be shown at CES at the latest.
In , as many as 75 ultrabook models based on the Ivy Bridge 3rd generation Core are being designed. During the Anti-Theft Technology demo that followed. Intel's Anti-Theft Service website was introduced. Registration with the website will lock lost or stolen laptops by using another computer or cell phone to access the website. Locked notebooks -- upon logging on -- will show a message of being locked as well as the contact information of their owners. Locked ultrabook laptops are completely inoperative except for displaying the message, and their hard discs cannot be duplicated even if they are removed.
This safeguards ultrabook users' privacy. According to Digitimes Research, Taiwan-based server vendors, including suppliers of motherboards, end systems, storage devices and related network equipment, continue to enjoy growth in In terms of volume, global server shipments will show continuing growth throughout and This Digitimes Research Special Report offers global shipment forecasts for three major mobile device market segments - smartphones, notebooks and tablets - for the year and beyond. It gives in-depth analyses of their respective market outlooks, with shipment forecasts extending to Taipei, Thursday, February 21, Toggle navigation.
Some of the applications, such as UV photography, security, forensics, lighting, therapy, pest control, scientific analysis of materials e. Though the present disclosure primarily elaborates examples with integrated UV sensors, certain embodiments can include both UV radiation source and UV sensors integrated with the smart mobile devices. The photovoltaic cell may be used to charge a battery of the mobile device. In an embodiment, standard photovoltaic cells may be interlaced with UV-specific sensors.
When it is expected that a user of the mobile device would optimally position the device to capture solar radiation, then both the UV detection feature and solar charging feature would be benefited. Various alterations, improvements, and modifications of the systems and embodiments may occur and are intended for those skilled in the art, though not expressly stated herein. These alterations, improvements, and modifications are intended to be suggested by this disclosure, and are within the spirit and scope of the exemplary aspects of this disclosure.
Moreover, certain terminology has been used to describe embodiments of the present disclosure. Furthermore, the particular features, structures or characteristics may be combined as suitable in one or more embodiments of the present disclosure. The integrated circuit may take the form of a processor such as a microprocessor, an application specific integrated circuit, a digital signal processor, a micro-controller, or the like. Furthermore, the recited order of method, processing elements, or sequences, or the use of numbers, letters, or other designations therefore, is not intended to limit the claimed processes and methods to any order except as can be specified in the claims.
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Although the above disclosure discusses through various examples what is currently considered to be a variety of useful aspects of the disclosure, it is to be understood that such detail is solely for that purpose, and that the appended claims are not limited to the disclosed aspects, but, on the contrary, are intended to cover modifications and equivalent arrangements that are within the spirit and scope of the disclosed aspects. Similarly, it should be appreciated that in the foregoing description of embodiments of the present disclosure, various features are sometimes grouped together in a single embodiment, figure, or description thereof for the purpose of streamlining the disclosure aiding in the understanding of one or more of the various inventive aspects.
This method of disclosure, however, is not to be interpreted as reflecting an intention that the claimed subject matter requires more features than are expressly recited in each claim. Rather, as the following claims reflect, inventive aspects lie in less than all features of a single foregoing disclosed embodiment. Thus, the appended claims are hereby expressly incorporated into this detailed description. Owner name: Free format text: By optimally positioning the sensors, UV sensing and other collateral functionalities e.
What is claimed is: A mobile electronic device comprising: The mobile electronic device of claim 1 , wherein a lens of the camera comprises material transparent to UV wavelength.
The mobile electronic device of claim 1 , wherein the transparent enclosure comprises material transparent to UV wavelength. The mobile electronic device of claim 1 , wherein the device further comprises: The mobile electronic device of claim 1 , wherein the camera is mounted mechanically to allow rotational degrees of freedom. The mobile electronic device of claim 1 , wherein the camera comprises a spherical camera enabled to capture angular image spanning degree or a portion thereof. The mobile electronic device of claim 1 , wherein the device further comprises a UV radiation source.
The mobile electronic device of claim 8 , wherein the processing unit is to produce the UV measurement data indicative of the UV exposure level by fusing signals received from both the cameras. The mobile electronic device of claim 1 , wherein one or more UV photodiodes are aligned to the camera within the transparent enclosure. The mobile electronic device of claim 1 , wherein one or more UV photodiodes are disposed on the housing. The mobile electronic device of claim 1 , wherein one or more UV photodiodes are integrated with a SoC of the device.
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The mobile electronic device of claim 12 , wherein the SoC is aligned to a UV transparent window included in the housing of the mobile electronic device. The mobile electronic device of claim 12 , wherein the UV transparent window includes a removable diffuser to generate a targeted UV response.
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The mobile electronic device of claim 12 , wherein the SoC is packaged in a UV transparent material. The mobile electronic device of claim 1 , wherein one or more UV photodiodes are integrated on a die separate from a core SoC of the device, but in communication with the core SoC of the device. The mobile electronic device of claim 1 , wherein the housing of the device is coated with an UV-sensitive chemical which changes color prominently when UV exposure level is beyond a certain threshold.
The mobile electronic device of claim 1 , wherein an alert is generated when UV exposure level is beyond a certain threshold. The mobile electronic device of claim 18 , wherein the alert comprise an audio alert, a visual alert, or an audio-visual alert presented to the user by using one or more existing peripherals of the electronic device.
The mobile electronic device of claim 1 , wherein the light includes multiple UV spectral components, the UV spectral components are channeled towards UV sensors while the rest of the spectral components are channeled to a second sensor. The mobile electronic device of claim 20 , wherein the second sensor comprises a photovoltaic cell. The mobile electronic device of claim 21 , wherein the photovoltaic cell is configured to charge a battery included in the mobile electronic device.
The mobile electronic device of claim 1 , wherein the transparent enclosure and the camera are contained within a detachable module that is configured to mechanically fit with the housing of the device, such that the detachable module is at least partially physically separated from the mobile electronic device and disposed at a location advantageous to UV data collection when the mobile electronic device itself is occluded from UV radiation.
The mobile electronic device of claim 23 , wherein the detachable module maintains a wired or wireless connectivity with the mobile electronic device when being at least partially physically separated from the mobile electronic device. USB2 en. WOA1 en. Methods, systems, and apparatuses for accurate measurement and real-time feedback of solar ultraviolet exposure.
System and method of estimating spectral contributions in ambient light and correcting field of view errors. USDS1 en. Closed loop control system, sensing apparatus and fluid application system for a precision irrigation device.
USB1 en. USA1 en. JPA en. Ultraviolet quantity measuring device and portable telephone and ultraviolet quantity measuring method. KRB1 en. Method and Device for measuring environmental information by employing camera module.
US9766121B2 - Mobile device based ultra-violet (UV) radiation sensing - Google Patents
JPU en. Ultraviolet sensor and the portable device with a camera for a portable device with a camera. Service implementing method and apparatus based on an ultraviolet index in a mobile terminal. KRA en.
Color changing mobile phone case as ultraviolet intensity using light sensing pigment and ultraviolet block pigment. Wireless communication device with integrated electromagnetic radiation sensors. AnandTech-Apple iPhone 4S: Thoroughly Reviewed, http: AnandTech—Apple iPhone 4S: