2 resultados para Testing Service-Based Applications

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Over the past several years technology has been evolving in a way that it has become crucial for most businesses and companies to have interactive technology enabled touchpoints available online. Such interactive touchpoints can be developed as mobile application, webpages, or even through social networks. In the end such touchpoints will most surely represent the most easily reachable and marketable side of the business. Today selling a product alone is no longer enough to make consumers satisfied and complete, businesses and business models are changing. Increasingly, companies are choosing to not just sell products but to combine both sale and service. These service-based approaches will provide the client with a unique and personalized experience of what the company is selling. By selling a service the company transmits values that are more complex than the simple selling of a product. A service is something immaterial, happens over time and exists in the moment of the delivery. When conceiving and designing services, the use of the new technologies becomes a crucial step in order to craft touchpoints that facilitate the whole experience cycle of the service, from attracting, orienting, interacting and retaining the client, as well as providing later support to the consumer to advocate for the service itself. This thesis reports on the design and implementation of the online touchpoint of Cozinha da Madeira, which is a service designed to support tourism, specifically promoting the discovery of tradition and landscapes in the island of Madeira. Such touchpoint developed in the form of a website, embodies completely or partially various stages of the Service Experience cycle, from attracting and connecting, orienting, interacting as well as retaining and advocating. Through this thesis we will describe the design and implementation of such touchpoint as well as the evaluation and possible future implications.

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Tests on printed circuit boards and integrated circuits are widely used in industry,resulting in reduced design time and cost of a project. The functional and connectivity tests in this type of circuits soon began to be a concern for the manufacturers, leading to research for solutions that would allow a reliable, quick, cheap and universal solution. Initially, using test schemes were based on a set of needles that was connected to inputs and outputs of the integrated circuit board (bed-of-nails), to which signals were applied, in order to verify whether the circuit was according to the specifications and could be assembled in the production line. With the development of projects, circuit miniaturization, improvement of the production processes, improvement of the materials used, as well as the increase in the number of circuits, it was necessary to search for another solution. Thus Boundary-Scan Testing was developed which operates on the border of integrated circuits and allows testing the connectivity of the input and the output ports of a circuit. The Boundary-Scan Testing method was converted into a standard, in 1990, by the IEEE organization, being known as the IEEE 1149.1 Standard. Since then a large number of manufacturers have adopted this standard in their products. This master thesis has, as main objective: the design of Boundary-Scan Testing in an image sensor in CMOS technology, analyzing the standard requirements, the process used in the prototype production, developing the design and layout of Boundary-Scan and analyzing obtained results after production. Chapter 1 presents briefly the evolution of testing procedures used in industry, developments and applications of image sensors and the motivation for the use of architecture Boundary-Scan Testing. Chapter 2 explores the fundamentals of Boundary-Scan Testing and image sensors, starting with the Boundary-Scan architecture defined in the Standard, where functional blocks are analyzed. This understanding is necessary to implement the design on an image sensor. It also explains the architecture of image sensors currently used, focusing on sensors with a large number of inputs and outputs.Chapter 3 describes the design of the Boundary-Scan implemented and starts to analyse the design and functions of the prototype, the used software, the designs and simulations of the functional blocks of the Boundary-Scan implemented. Chapter 4 presents the layout process used based on the design developed on chapter 3, describing the software used for this purpose, the planning of the layout location (floorplan) and its dimensions, the layout of individual blocks, checks in terms of layout rules, the comparison with the final design and finally the simulation. Chapter 5 describes how the functional tests were performed to verify the design compliancy with the specifications of Standard IEEE 1149.1. These tests were focused on the application of signals to input and output ports of the produced prototype. Chapter 6 presents the conclusions that were taken throughout the execution of the work.