Truepoint Laser Scanning
3D model of transmitter facility.

Telecommunications & Transmission Lines

Long range scanning is essential for the mapping and modeling of proposed implementation sites of telecommunication towers or telephone lines because it is a quick, accurate, and cost-efficient way to collect spatial data. It is useful in finding ideal locations for telecommunication equipment (both the towers and paths), and its 3D modeling and topographical mapping abilities help to ensure that the infrastructure will work in relation to the rest of its environment.

Additionally, even after successful telecommunication implementation, laser scanning is instrumental in troubleshooting and maintenance. Laser scanning is capable of determining the size and position of antennas on cell towers without surveyors needing to gain access to the tower. The scans are done from the ground quickly and accurately.

In addition, scanning can be used to produce an inventory of antennas / telecommunication equipment. It is safer and quicker and, therefore, more cost-efficient.

 

3D Model

 

Video Simulation

 

3D model of transmitter facility. 3D model of transmitter facility.
3D model of transmitter facility. 3D model closeup of transmitter facility.
3D model of mechanical room in transmitter facility. 3D model of mechanical room in transmitter facility.
3D model of transmitter tower. 3D model closeup of transmitter tower.
Overhead Line Clearances. According to OSHA, 30% of all electrical-related fatalities involved overhead power lines Measuring hard-to-reach overhead telecommunication antennaes using Leica C-10 scanner
3D Mapping of Transformer 3D Laser Scan of Transmission Towers with Topography
3D Mapping of a Transmission Tower Raw Scan Data captured from the ground detailing cell tower antenna

 

 

 

Site Last Updated October 20, 2017
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©2017 TruePoint Laser Scanning, LLC. TruePoint Laser Scanning, LLC. ® is a Registered Trademark
*DISCLAIMER: 3D Laser scanning is a measurement tool to assist in capturing as-built conditions of existing spaces and should be used in conjunction with other sound industry practices for verifying these conditions, including but not limited to: site visits, manual field measurements and verifications of scan data, to ensure its accuracy prior to design and engineering. Because this data can be used for various applications and disciplines outside the scope of the original field scanning and beyond our control, we cannot guarantee that the data is accurate for these uses.
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