Abstract: A method to have a fast, contactless & re-usable sensor to detect the presence of hydrocarbons on surfaces by analyzing the reflected light of the sensor. The invention generally is a sensor device which includes a light emitting source, a reflective light spectrum analyzer which is able to detect the specificity of the reflectivity of hydrocarbons on surfaces.
Abstract: A thermal infrared sensor with a mount so that it can be fixed onto infrared windows to provide a solution for performing continuous thermal monitoring of equipment that is provisioned with one or more infrared windows. The IR mount can be made out of any material or combination thereof. The mount can be attached in any possible form to the Infrared window or enclosure surrounding the Infrared window. The mount can fully or partially cover the Infrared window to be monitored. Depending on its implementation it could also fully or partially cover more than just one infrared window. The mount can be a mount made specifically for one or more types of Infrared windows or a generic mount. It could be an existing mount that could be used in such a way that when combined with the second element it enables the presented invention.
Abstract: A new innovative way for connecting multiple thermal imaging sensors to a base unit while only using one port of the base unit when connected to such a base unit; this by using a daisy chained connection between the sensors themselves. The thermal imaging sensor(s) connect to each other using a wired connectivity with or without being connected directly or indirectly to a base unit. The thermal imaging sensor in this invention is not a single standalone unit but consists of at least 2 physical different devices that are connected to each other using a wired connection.