LS-G6-LASER

The laser

The Laser can be used to measure changes in the distance between walls, tunnel convergence, bearing and joint movements in bridges, lifting and placement of structures and movements of historical buildings. It can also be used to monitor slope movements and for fracture and faults surveillance.

Loadsensing edge device

Laser distance meter

A wireless sensor

  • Wireless sensor. 
  • Measures the relative distance between pairs of reference points.
  • Accurate distance measurement. 
  • Long battery life (> 6 years @1h sampling rate). 
  • Reduced size (150 x 100 x 61 mm).
  • Visible Laser Class II laser with 655 nm. 
  • High repeatability.

HOW IT WORKS

From edge-to-cloud

Simplify your projects through remote, automated monitoring.

DLog app connected to gateway
Connectivity management tool and integrations options infographic
3rd party software graphic

DATA COLLECTION

The laser collects and wirelessly transmits data at your chosen sampling rate.

COMMUNICATION

Data is sent to the cloud through a reliable and redundant network.

DATA ACCESS & DATA MONITORING

Manage all deployed devices, data and networks through CMT by Loadsensing.

DATA ANALYTICS

Analyze all data through our 3rd-party software partners or your proprietary tool.

Downloads

Datasheet - Laser distance meter

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FAQ’s

01

What is the temperature influence on the measurement?

The change of temperature and weather conditions of the deployment can affect the measurements of the laser distance meter wireless sensor. However, temperature influences are considered on the accuracy of the sensor according to reading conditions. See the datasheet for more details.

02

What are the effects of weather conditions on the measurement?

The weather conditions of the deployment can affect the measurements of the laser distance meter wireless sensor. However, the resulting measurements comply with the accuracy of the sensor according to reading conditions. See the datasheet for more details.
In addition, signal strength may vary due to the luminosity descension.

03

What happens if the laser gets out of the target? How can I detect it?

When the laser gets out of the target, the signal strength will fall immediately and it will show a variation of the distance measured. The combination of both parameters will be key to detect it.

04

What happens when pointing to an irregular surface? What are we measuring?

When pointing to an irregular surface, the edges will hold different signal strength and distance measure will be the one that holds more power (the biggest irregularity).

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