13 resultados para SEMICONDUCTOR INTERFACES

em CiencIPCA - Instituto Politécnico do Cávado e do Ave, Portugal


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Global competition requires that the companies adapt themselves to technological changes rapidly, develop new products, reduce the cost, shorten the time to market, and increase the quality. In this context, supplier involvement in New Product Development (NPD) is determinant for a company to respond to the requirements of the increasingly dynamic markets. The main purpose of the paper is to demonstrate the importance of supplier involvement in NPD, buyer-supplier relationships and their effects on buyer’s NPD process, highlighting the benefits of supplier involvement, the barriers, the strategic aspects and industry aspects. These issues are addressed with a case study from the semiconductor industry. Besides helping to understand NPD in the semiconductor industry, the contribution and fi ndings of this work are clear: the results achieved confirm the findings of studies referred in the literature review, and confirm that the semiconductor industry sector requires a closer and more complex relationship structure with suppliers, given the specificities and challenges of the sector, such as rapid technological changes, permanent innovation, global competition, reduction of cost and time-to-market cycle, increased capacity, among other. The main contribution of the paper to the scientific literature and to managers is the better understanding of the buyer-supplier relationships in NPD in the semiconductor industry.

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Recent progresses in the software development world has assisted a change in hardware from heavy mainframes and desktop machines to unimaginable small devices leading to the prophetic "third computing paradigm", Ubiquitous Computing. Still, this novel unnoticeable devices lack in various capabilities, like computing power, storage capacity and human interface. Connectivity associated to this devices is also considered an handicap which comes generally associated expensive and limited protocols like GSM and UMTS. Considering this scenario as background, this paper presents a minimal communication protocol introducing better interfaces for limited devices. Special attention has been paid to the limitations of connectivity, storage capacity and scalability of the developed software applications. Illustrating this new protocol, a case-study is presented addressing car sensors communicating with a central

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Graphical user interfaces (GUIs) are critical components of todays software. Given their increased relevance, correctness and usability of GUIs are becoming essential. This paper describes the latest results in the development of our tool to reverse engineer the GUI layer of interactive computing systems. We use static analysis techniques to generate models of the user interface behaviour from source code. Models help in graphical user interface inspection by allowing designers to concentrate on its more important aspects. One particularly type of model that the tool is able to generate is state machines. The paper shows how graph theory can be useful when applied to these models. A number of metrics and algorithms are used in the analysis of aspects of the user interface's quality. The ultimate goal of the tool is to enable analysis of interactive system through GUIs source code inspection.

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When developing interactive applications, considering the correctness of graphical user interfaces (GUIs) code is essential. GUIs are critical components of today's software, and contemporary software tools do not provide enough support for ensuring GUIs' code quality. GUIsurfer, a GUI reverse engineering tool, enables evaluation of behavioral properties of user interfaces. It performs static analysis of GUI code, generating state machines that can help in the evaluation of interactive applications. This paper describes the design, software architecture, and the use of GUIsurfer through an example. The tool is easily re-targetable, and support is available to Java/Swing, and WxHaskell. The paper sets the ground for a generalization effort to consider rich internet applications. It explores the GWT web applications' user interface programming toolkit.

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Graphical user interfaces (GUIs) are critical components of today's software. Developers are dedicating a larger portion of code to implementing them. Given their increased importance, correctness of GUIs code is becoming essential. This paper describes the latest results in the development of GUISurfer, a tool to reverse engineer the GUI layer of interactive computing systems. The ultimate goal of the tool is to enable analysis of interactive system from source code.

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Graphical user interfaces (GUIs) make software easy to use by providing the user with visual controls. Therefore, correctness of GUI's code is essential to the correct execution of the overall software. Models can help in the evaluation of interactive applications by allowing designers to concentrate on its more important aspects. This paper presents a generic model for language-independent reverse engineering of graphical user interface based applications, and we explore the integration of model-based testing techniques in our approach, thus allowing us to perform fault detection. A prototype tool has been constructed, which is already capable of deriving and testing a user interface behavioral model of applications written in Java/Swing.

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Abstract. Graphical user interfaces (GUIs) make software easy to use by providing the user with visual controls. Therefore, correctness of GUI’s code is essential to the correct execution of the overall software. Models can help in the evaluation of interactive applications by allowing designers to concentrate on its more important aspects. This paper describes our approach to reverse engineer an abstract model of a user interface directly from the GUI’s legacy code. We also present results from a case study. These results are encouraging and give evidence that the goal of reverse engineering user interfaces can be met with more work on this technique.

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Graphical user interfaces (GUIs) are critical components of today's open source software. Given their increased relevance, the correctness and usability of GUIs are becoming essential. This paper describes the latest results in the development of our tool to reverse engineer the GUI layer of interactive computing open source systems. We use static analysis techniques to generate models of the user interface behavior from source code. Models help in graphical user interface inspection by allowing designers to concentrate on its more important aspects. One particular type of model that the tool is able to generate is state machines. The paper shows how graph theory can be useful when applied to these models. A number of metrics and algorithms are used in the analysis of aspects of the user interface's quality. The ultimate goal of the tool is to enable analysis of interactive system through GUIs source code inspection.

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Hoje em dia a técnica de cirurgia laparoscópica é bastante comum no tratamento de várias doenças ao nível do abdómen. Um ponto forte em relação a outras técnicas cirúrgicas é a rápida recuperação do paciente após a cirurgia, como também o fato de as marcas provocadas pela cirurgia serem bastante mais discretas. Sendo assim, é de elevada importância que esta técnica evolua e seja aperfeiçoada para que o erro humano seja minimizado e o tratamento dos pacientes melhorado. As dificuldades encontradas na realização destas cirurgias são causa direta dos tipos de instrumentos utilizados, sendo a interação com os aparelhos um fator importante para que a intervenção cirúrgica seja realizada com sucesso. Como tal, devido a natureza ergonómica dos instrumentos, os cirurgiões sentem dificuldades na execução das suas tarefas ao longo da cirurgia, acusando dores musculares nas mãos e nos braços. Este trabalho tem como principal objetivo melhorar este tipo de cirurgia através do design aliado à ergonomia de aparelhos manuais, tendo as formas e funções dos instrumentos existentes como base de estudo para a criação de um aparelho mais ergonómico e eficaz. Também a existência de tecnologias capazes de reproduzir os conceitos criados pelo designer são uma mais valia para a criação das formas desenvolvidas. Desta forma, ao longo do desenvolvimento do produto são tidas em conta questões de ergonomia, mas também a higiene é considerada de relativa importância devido a facilidade de transmissão de doenças através do toque, sendo assim pertinente ter em consideração os pré requisitos necessários para a criação de um aparelho de natureza cirúrgica. O protótipo criado possui um componente eletromecânico já desenvolvido para este tipo de intervenção cirúrgica, desta forma o desenvolvimento da carcaça tem a forma do corpo eletromecânico como base para a criação da melhor ergonomia possível. Esta segue um conceito minimalista e orgânico, procurando adaptar-se à mão do utilizador com o intuito de proporcionar um melhor manuseio do aparelho e através das interfaces conferir uma utilização intuitiva, mais eficaz e menos demorada.

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Hoje em dia a técnica de cirurgia laparoscópica é bastante comum no tratamento de várias doenças ao nível do abdómen. Um ponto forte em relação a outras técnicas cirúrgicas é a rápida recuperação do paciente após a cirurgia, como também o fato de as marcas provocadas pela cirurgia serem bastante mais discretas. Sendo assim, é de elevada importância que esta técnica evolua e seja aperfeiçoada para que o erro humano seja minimizado e o tratamento dos pacientes melhorado. As dificuldades encontradas na realização destas cirurgias são causa direta dos tipos de instrumentos utilizados, sendo a interação com os aparelhos um fator importante para que a intervenção cirúrgica seja realizada com sucesso. Como tal, devido a natureza ergonómica dos instrumentos, os cirurgiões sentem dificuldades na execução das suas tarefas ao longo da cirurgia, acusando dores musculares nas mãos e nos braços. Este trabalho tem como principal objetivo melhorar este tipo de cirurgia através do design aliado à ergonomia de aparelhos manuais, tendo as formas e funções dos instrumentos existentes como base de estudo para a criação de um aparelho mais ergonómico e eficaz. Também a existência de tecnologias capazes de reproduzir os conceitos criados pelo designer são uma mais valia para a criação das formas desenvolvidas. Desta forma, ao longo do desenvolvimento do produto são tidas em conta questões de ergonomia, mas também a higiene é considerada de relativa importância devido a facilidade de transmissão de doenças através do toque, sendo assim pertinente ter em consideração os pré requisitos necessários para a criação de um aparelho de natureza cirúrgica. O protótipo criado possui um componente eletromecânico já desenvolvido para este tipo de intervenção cirúrgica, desta forma o desenvolvimento da carcaça tem a forma do corpo eletromecânico como base para a criação da melhor ergonomia possível. Esta segue um conceito minimalista e orgânico, procurando adaptar-se à mão do utilizador com o intuito de proporcionar um melhor manuseio do aparelho e através das interfaces conferir uma utilização intuitiva, mais eficaz e menos demorada.

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The Ambient Assisted Living (AAL) area is in constant evolution, providing new technologies to users and enhancing the level of security and comfort that is ensured by house platforms. The Ambient Assisted Living for All (AAL4ALL) project aims to develop a new AAL concept, supported on a unified ecosystem and certification process that enables a heterogeneous environment. The concepts of Intelligent Environments, Ambient Intelligence, and the foundations of the Ambient Assisted Living are all presented in the framework of this project. In this work, we consider a specific platform developed in the scope of AAL4ALL, called UserAccess. The architecture of the platform and its role within the overall AAL4ALL concept, the implementation of the platform, and the available interfaces are presented. In addition, its feasibility is validated through a series of tests.

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Several studies suggest that computer-mediated communication can lead to decreases in group effectiveness and reduce satisfaction levels in terms of trust and comfort of its users. Supported by an experiment, where the emotional or affective aspects of communication were tested with the experimentation of two architectures, Direct Communication Architecture (DCA) and the Virtual Communication Architecture (VCA) this paper validates the thesis that, from the users’ perspective, there is no opposition to the acceptance of virtual environments and interfaces for communication, and that these environments are able to cope with the reconfiguration dynamics requirements of virtual teams or client-server relations in a virtual enterprise operation.

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This paper presents a catalog of smells in the context of interactive applications. These so-called usability smells are indicators of poor design on an application’s user interface, with the potential to hinder not only its usability but also its maintenance and evolution. To eliminate such usability smells we discuss a set of program/usability refactorings. In order to validate the presented usability smells catalog, and the associated refactorings, we present a preliminary empirical study with software developers in the context of a real open source hospital management application. Moreover, a tool that computes graphical user interface behavior models, giving the applications’ source code, is used to automatically detect usability smells at the model level.