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NanoMarkets——印制传感器和有机传感器市场:2007-2015

2007年05月15日 17:22:00 中国传动网

印刷电子和有机电子作为一门行业的出现为传感器领域带来了可观的机遇,印刷可以帮助降低传感器成本,也许还是生产多层传感器产品,如电子鼻的理想途径。新型有机材料的引入增加了传感器制造商的选择,最后,印刷电子制造大批量平面式感测器开始了完整新产品,如生物检测的传感器,可穿戴计算机或机器人生产的可能性。但是,印制传感器和有机传感器只是刚开始商业革命。 NanoMarkets公司的该项报告分析了印刷传感器和有机传感器市场,展现了此类传感器最广泛的应用领域,作为分析的一部分,报告评估了适当的生产技术,系统架构,通信接口以及印刷传感器和有机传感器(转换速度,敏感度,灵活性等)要求的性能和功效。报告还讨论了重要的产品类型,如电子鼻,晶片实验室,生物芯片和智能微尘,有机材料和印刷术在这些应用中将作出巨大的贡献。 报告中介绍的印刷传感器和有机传感器应用包括智能包装,智能纺织品和智能制服,医疗诊断,基因组学和蛋白质组学,国土安全应用大面积感应,水质测试和其他环境测试,机器人以及智能皮肤。在每项应用中对印刷传感器和有机传感器进行八年的预测,报告还根据传感器的类型提供市场预测,例如,气体传感器,温度传感器,运动传感器,生物传感器等,分析了贸易公司,和大学和研究组主要的研究组织当前从事的工作。 目录 执行摘要 E.1 有机传感器市场和印刷传感器市场的关键机遇:设备 E.2 有机传感器市场和印刷传感器市场的关键机遇:原材料 E.3 调查公司 E.4 八年预测摘要 第一章:绪论 1.1 报告背景 1.2 主题和报告范围 1.3 报告方法 1.4 报告计划 第二章:技术和产品趋势 2.1 介绍 2.2印刷电子和有机电子的材料平台 2.3 印刷传感器的优点及使用类型 2.4 最新印刷传感器和有机传感器的类型 2.5 专业传感器中印刷电子和有机电子的作用 2.5.1 电子鼻和电子舌 2.5.2 智能皮肤 2.5.3 晶片实验室和生物芯片 2.5.4 智能微尘和传感器阵列 2.6 最新要求性能和性能成果 2.7 有机传感器和印刷传感器的接口技术 第三章:市场分析 3.1 介绍 3.2 智能包装 3.3 智能纺织品和智能制服 3.4 医疗诊断 3.5 基因组学和蛋白质组学 3.6 国土安全 3.7 环境测试 3.8 机器人 3.9 其他 第四章:研发印刷传感器和有机传感器的公司和研究组 本章将包括研印刷传感器和有机传感器的公司和主要大学研究组简介。 第五章:印刷传感器和有机传感器八年预测 5.1 预测方法 5.2 根据传感器类型区分的八年预测 5.3 根据应用区分的八年预测 5.4 根据材料区分的八年预测 original text: [COLOR=#708090]NanoMarkets——PRINTED AND ORGANIC SENSOR MARKETS: 2007-2015 The emergence of printed and organic electronics as an industry holds considerable promise for the sensor sector. Printing can help bring down costs of sensors and may also be the ideal way for creating multi-layered sensor products such as "electronic noses." The introduction of new organic materials increases the choices for sensor manufacturers. Finally, the ability of printed electronics to create large arrays of sensors on flexible substrates opens up possibilities for entirely new products such as sensors for biohazard detection, wearable computing or robotics. Nonetheless, printed and organic sensors are just beginning their commercial evolution. This NanoMarkets report analyzes the printed and organic sensor markets to show where such sensors can make their biggest contribution. As part of this analysis, the report assesses appropriate production technologies, system architectures and communications interfaces, as well as performance requirements and achievements for printed and organic sensors (switching speeds, sensitivity, flexibility, etc.) It also discusses important product types such as electronic noses, labs-on-a-chip, biochips and smart dust, for which organic materials and printing may make a considerable contribution. Applications of printed and organic sensors covered in the report include smart packaging, smart textiles and uniforms, medical diagnostics, genomics and proteomics, large area sensing for security apps, water and other environmental testing, robotics and smart skins. Eight-year forecasts are provided for printed and organic sensors in each of these applications. The report also provides market projections by type of sensors, e.g. gas sensors, temperature sensors, motion sensors biosensors, etc., along with an analysis of current activities of both commercial firms and major research groups at universities and research institutes. TABLE OF CONTENTS EXECUTIVE SUMMARY E.1 Key Opportunities in the Organic and Printed Sensor Market: Devices E.2 Key Opportunities in the Organic and Printed Sensor Market: Materials E.3 Firms to Watch E.4 Summary of Eight-Year Forecasts CHAPTER ONE: INTRODUCTION: 1.1 Background to Report 1.2 Objective and Scope of Report 1.3 Methodology of Report 1.4 Plan of Report CHAPTER TWO: TECHNOLOGY AND PRODUCT TRENDS 2.1 Introduction 2.2 Materials Platforms for Printed and Organic Electronics 2.3 Advantages to Printing Sensors and Types of Printing Used 2.4 Types of Printed and Organic Sensors Developed to Date 2.5 Role of Printed and Organic Electronics in Specialized Sensors 2.5.1 Electronic noses and tongues 2.5.2 Smart skins 2.5.3 Labs-on-a-chip and biochips 2.5.4 Smart dust and sensor arrays 2.6 Performance Requirements and Performance Achievements To Date 2.7 Interface Technology for Organic and Printed Sensors CHAPTER THREE: MARKET ANALYSIS 3.1 Introduction 3.2 Smart Packaging 3.3 Smart Textiles and Uniforms 3.4 Medical Diagnostics 3.5 Genomics and Proteomics 3.6 Homeland Security 3.7 Environmental Testing 3.8 Robotics 3.9 Other CHAPTER FOUR: FIRMS AND RESEARCH GROUPS INVOLVED WITH PRINTED AND ORGANIC SENSORS This chapter will consist of profiles of firms and major university groups actively involved in the development of printed and organic sensors. CHAPTER FIVE: EIGHT-YEAR FORECASTS OF PRINTED AND ORGANIC SENSORS 5.1 Forecasting Methodology 5.2 Eight-Year Forecasts of Organic and Printed Sensors by Sensor Type 5.3 Eight-Year Forecasts of Organic and Printed Sensors by Application 5.4 Eight-Year Forecasts of Organic and Printed Sensors by Material[/COLOR]
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