Sisältöhaku
Laser safety online training for optical laboratory users
This 30-min online training consisting of a video, a PDF notes and an online quiz is for researchers who work with, or in close proximity to Class 2, Class 3,Class 4 light sources, such as in the light microscopes, in an optical laboratory. It aims to train the lab users to be aware of laser hazard and know how to protect themselves and other users in the optical lab. The training covers the following topics: * Brief introduction of lasers * Classification of lasers and laser systems * Beam-r...
Laser safety training
521292S-3007 Fundamentals of Sensing, Tracking and Autonomy 1 2025-01-06 / 2026-01-04
Defining sensors; physical vs virtual sensors. Chronometers, cameras, infrared, laser, temperature, IMU. Sensor mappings, resolution, noise, calibration. Preimages, sources of uncertainty, comparing sensors, stochastic modeling. Multiple sensor readings and networks of sensors. Triangulation principles. Motion models: Discrete time, continuous time, event-based. Linear, complementary, Kalman, Bayesian, and combinatorial filters. Localization and mapping; global positioning systems; tracking h...
521292S-3007
Fundamentals of Sensing, Tracking, and Autonomy, Part I
Defining sensors; physical vs virtual sensors. Chronometers, cameras, infrared, laser, temperature, IMU. Sensor mappings, resolution, noise, calibration. Preimages, sources of uncertainty, comparing sensors, stochastic modeling. Multiple sensor readings and networks of sensors. Triangulation principles. Motion models: Discrete time, continuous time, event-based. Linear, complementary, Kalman, Bayesian, and combinatorial filters. Localization and mapping; global positioning systems; tracking h...
521149S:3
Microsensors
1. After completing the course, student can explain the basic concepts of sensor theory and technology, classification of sensors, properties of ideal and real sensors, pros and cons of integrated smart sensor systems, and the interface between sensor and measurement electronics. 2. Student can explain the main fabrication methods, including thin-film technologies, micromachining methods, wet and dry etching techniques, and both laser and ion beam milling methods and their applications in mic...
521072S:1