Company Filing History:
Years Active: 2011-2015
Title: Innovations of Roger Schmidt in Thermal Imaging Technology
Introduction
Roger Schmidt is a notable inventor based in Shorewood, MN (US), recognized for his contributions to thermal imaging technology. With a total of 5 patents, Schmidt has made significant advancements in the field, particularly in the development of thermal imaging cameras.
Latest Patents
One of Schmidt's latest patents is for a thermal imaging camera with range detection. This innovative camera captures both visible-light (VL) images and infrared (IR) images. It includes a range imaging camera module that captures the VL image and an infrared camera module that captures the IR image. The VL image consists of various portions, each corresponding to different parts of the scene, along with distance-to-target data. This technology allows for the alignment of the VL image with the IR image, correcting any parallax errors. Another significant patent involves methods for comparing infrared images. This method selects two image data sets, including visual-light and infrared data, from multiple viewpoints of a scene. The visual-light data is compared to determine alignment correlations, which are then used to correlate the infrared data, generating infrared comparison image data.
Career Highlights
Roger Schmidt has established himself as a key figure in the thermal imaging sector through his work at Fluke Corporation. His innovative approach and technical expertise have led to the development of advanced imaging solutions that enhance the accuracy and functionality of thermal cameras.
Collaborations
Schmidt has collaborated with notable colleagues, including Kirk R Johnson and Thomas J McManus, contributing to the success of various projects within Fluke Corporation.
Conclusion
Roger Schmidt's work in thermal imaging technology exemplifies the impact of innovation in enhancing imaging capabilities. His patents reflect a commitment to advancing the field and improving the functionality of thermal imaging systems.