Low Frequency (LF) Wireless Communication Using Murata's LF Antennas: Highly Accurate Real-time 3D Position Measurement Using Triangulation (Real-time 3D Positioning/Location)
2:24
Here, we take a look at 3D position measurement technology that calculates the position (X/Y) and also the height (Z) at high speed and high accuracy through triangulation using three transmitting antennas. This technology can be applied to applications requiring high accuracy including drone control, AGV and robot navigation, motion capture, and RTLS.
Related Videos
In All Videos
-
Play video Low Frequency (LF) Wireless Communication Using Murata's LF Antennas: Stable Data Communication and Labor-saving Solutions Using Magnetic Fields (Magnetic Field Data Transmission)
Low Frequency (LF) Wireless Communication Using Murata's LF Antennas: Stable Data Communication and Labor-saving Solutions Using Magnetic Fields (Magnetic Field Data Transmission)
Here, we take a look at the mechanism of data transmission through LF communication using magnetic fields, and some usage examples. It is possible to transmit a small amount of data when a receiving tag enters a magnetic field. This enables stable co
1:09
-
Play video Low Frequency (LF) Wireless Communication Using Murata's LF Antennas: Magnetic Field-based Wide Area Detection and Safety Management (Magnetic Field Area Detection)
Low Frequency (LF) Wireless Communication Using Murata's LF Antennas: Magnetic Field-based Wide Area Detection and Safety Management (Magnetic Field Area Detection)
Here, we take a look at area detection solutions with low frequency (LF) wireless communication using Murata's LF antennas. This technology is less affected by obstacles and allows for stable area boundary detection because it uses magnetic fields. I
3:02
-
Play video Low Frequency (LF) Wireless Communication Using Murata's LF Antennas: Magnetic Field Communication Technology to Detect the Movement Direction of People and Objects at High Accuracy (Direction Detection)
Low Frequency (LF) Wireless Communication Using Murata's LF Antennas: Magnetic Field Communication Technology to Detect the Movement Direction of People and Objects at High Accuracy (Direction Detection)
Here, we take a look at the mechanism of detecting the movement direction of people and objects at a high accuracy by analyzing the changes in signal strength from two transmitting antennas. We also showcase usage examples. This technology enables si
1:30
-
Play video Why Murata RFIDs Are the Preferred Choice: The Optimal Solution for Embedded Tire Tags
Why Murata RFIDs Are the Preferred Choice: The Optimal Solution for Embedded Tire Tags
Here, we take a look at the strengths of Murata, which mean we are chosen by companies seeking RFID tags embedded in tires. We optimize the embedding position, which determines performance and durability, with extensive simulations and actual measur
1:13
-
Play video Murata RFIDs are blazing a new trail as they realize the future of next-generation smart inspections through embedded tire tags.
Murata RFIDs are blazing a new trail as they realize the future of next-generation smart inspections through embedded tire tags.
The work of inspecting tires places a burden on transport companies and dealers. With tires equipped with Murata's RFID tags, information such as the remaining tread depth can be centrally managed in the cloud by simply scanning the embedded tags. Th
1:35
-
Play video Supporting Worker Operations Using Edge AI Cameras
Supporting Worker Operations Using Edge AI Cameras
Process monitoring using edge AI cameras supports digital transformation (DX) in the manufacturing industry. This system recognizes the movements of workers, detects mistakes, and analyzes workload without the need for the cloud. With its no-code AI
2:12