This inventor holds 2 USPTO granted patents and 2 published patent applications and 1 EPO patent. Top assignee: Sick Ivp Ab. Active years: 2023-2026.
Company Filing History:
Years Active: 2023-2026
Title: Innovations by Johan Melander
Introduction
Johan Melander is a notable inventor based in Linkoping, Sweden. He has made significant contributions to the field of image sensor technology. His work focuses on reducing the effects of laser speckles in digital images, which is crucial for enhancing image quality in various applications.
Latest Patents
Johan Melander holds a patent for "Image sensor circuitry for reducing effects of laser speckles." This innovative circuitry comprises an image sensor and a method for supporting the reduction of laser speckle effects in a digital image. For each pixel position (x, y) of at least a subregion of the image sensor, the image sensing circuitry assigns a predefined pixel window (w) that includes the pixel position (x, y) and its closest neighboring pixel positions. It obtains first pixel values for each pixel within the predefined pixel window (w), resulting from the same exposure and corresponding to sensed light. The obtained first pixel values are then combined into a single, second pixel value according to a predefined combination function. Ultimately, the digital image is provided based on these second pixel values.
Career Highlights
Johan Melander is associated with Sick IVP AB, a company known for its advancements in sensor technology. His work at Sick IVP AB has allowed him to focus on innovative solutions that address real-world challenges in imaging.
Collaborations
Some of Johan's coworkers include Mattias Johannesson and Romain Müller. Their collaboration contributes to the innovative environment at Sick IVP AB, fostering advancements in technology.
Conclusion
Johan Melander's contributions to image sensor technology exemplify the impact of innovation in enhancing digital imaging. His patent for reducing laser speckle effects showcases his commitment to improving image quality.