Market Research announces that it has a new study on Mid Infrared (IR) Sensors Market Shares and Forecasts, Worldwide, Nanotechnology 2012-2018. Products power sensor networks that are the base for smarter computing and for all manner of military and commercial management of devices.
Intelligent decision making depends on automated process and information gathered from sensors. The 2011 study has 717 pages, 136 tables and figures. Mid Infrared (IR) Sensors are evolving in the context of the development of solid state technology that provides vast improvements. Improvements in energy density are one of the benefits of energy harvesting give to traditional rechargeable and solid state batteries and sensors become much more useful in this context. The ability to locate self-sufficient sensors out in the field without replacing batteries is a significant market development. Lower cost and size of the mid IR sensors is another market aspect.
Mid Infrared (IR) sensors markets at $509 million market worldwide in 2011 is anticipated to increase tenfold to $5 billion by 2018. This strong growth is anticipated to come as units are less expensive and more effective in the same amount of space. Wireless sensor networks are useful almost everywhere, creating the opportunity to implement controls and mange every aspect of human activity in ways that have not even been imagined hitherto.
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Mid-infrared (MIR) optical chemical sensor technology in the spectral range of 3-12m is gaining importance in process monitoring, environmental analysis, security/surveillance applications, and the biomedical field. Design approaches for digitally dominated active pixel sensors: leveraging Moore's Law scaling in focal plane readout design. CMOS technology scaling has provided tremendous power and circuit density benefits for innumerable applications, focal plane array (FPA) readouts have largely been left behind.
Design and modeling of nanophotonic beam structures as optical NEMS sensors. Silicon photonic crystal (PhC) waveguide based resonator is designed by introducing a micro-cavity within the line defect. Silicon photonic crystals form the resonant band gap structure for PhC.
Mid IR sensors can measure chemical composition of materials and gas in a manner that is unmatched by any other technology, for a cost that is increasingly more competitive. Mid IR is being readied for use beyond military applications to commercial systems, including wireless network systems.
Advances in QC laser technology and spectrometer hardware are combined with spectroscopic techniques. Intra pulse spectroscopy and similar techniques provide a major step change in sensitivity, speed of operation, fingerprinting capability, size and cost. They offer a major improvement on methods of gas detection.
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Table Of Content Of Mid Infrared (IR) Sensors Market:
Table of Content
Mid IR Sensors Executive Summary
Mid-Infrared (IR) Laser Sensor Systems
Mid-Infrared (IR) Laser Sensors Are Able To
Measure Change In Device Condition, Chemistry,
Turnkey Mid-Infrared Laser Sensor Systems Are
Based On Technology That Goes From 3-12 m
Mid IR Sensor Market Driving Forces
Mid IR Sensor Market Shares
Mid IR Sensor Market Forecasts
Mid Infrared (IR) Sensor Market Description and Market Dynamics
1. Mid IR Sensor Market Description and Market Dynamics
1.1.1 FTIR Spectroscopy Used To Establish
Purity Of Chemical Compounds
1.1.2 Applications of Infrared Sensing Thermopiles
1.1.3 Preventive and Predictive Maintenance
1.1.4 Residential Control Systems
1.1.5 White Goods (Home Appliances)
1.1.6 Medical and Health
1.1.7 Industrial Process Control
1.1.8 Security and Surveillance
2. Mid IR Sensors Market Shares and Market Forecasts
2.1Mid-Infrared (IR) Laser Sensor Systems
2.1.1 Mid-Infrared (IR) Laser Sensors Are Able To Measure Change In Device Condition, Chemistry, Or Temperature
2.1.2 Turnkey Mid-Infrared Laser Sensor Systems Are Based On Technology That Goes From 3-12 m
2.1.3 Mid IR Sensor Market Driving Forces
2.2Mid IR Sensor Market Shares
2.2.1 FLIR Systems Multi-Sensor Mission Equipment
2.2.2 FLIR Mid IR Sensors
2.2.3 FLIR Building Inspection
2.2.4 FLIR Infrared Detector Design Manufacturing
2.2.5 FLIR Sensing Materials
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