Carlson Void Scanner 150

A specialised, ruggedised instrument, Void Scanner uses time-of-flight laser measurement to map the shape, position and spatial location of voids, which helps ensure both the safety of personnel, and the protection of stock and underground sites.

Void Scanner data is used to ensure more efficient and profitable mineral extraction. With accurate, up-to-the minute site maps, you can better monitor progress, improve planning, reduce wastage, maximise extraction and speed up project timescales.

For more information go to: http://www.carlsonsw.com/products/laser-measurement-devices/



Access the inaccessible with Void Scanner real-time 3D laser surveying

A specialised, ruggedised instrument, Void Scanner uses time-of-flight laser measurement to map the shape, position and spatial location of voids, which helps ensure both the safety of personnel, and the protection of stock and underground sites.
Void Scanner data is used to ensure more efficient and profitable mineral extraction. With accurate, up-to-the minute site maps, you can better monitor progress, improve planning, reduce wastage, maximise extraction and speed up project timescales.

  • Enhance project capability
    Now with multi-station project capability, Void Scanner software enables you to scan from multiple locations and view the resulting scans together in real time for a complete 3D representation of the site.
  • Minimise safety risks
    Flexible deployment options and wireless communication to the PC offered by the optional Wi-Fi box, mean operators can retreat to a position of safety and still view results during scanning.
  • mprove site management
    Use Void Scanner data to better monitor and control ore loss and dilution by comparing the scanned stope with the design data. Scans also provide a record of daily productivity to support decision making.

Модел

Void Scanner

Лазерна класификация (BS EN 60825-1: 2014)

Клас 2

Инфрачервен лазерен модул

Тип

InGaAs лазерен диод

Дължина на вълната (стандартна)

905 nm

Максимална енергия на импулс

1.06 μJ

Дивергенция на гредата

2.76 × 1.5 mrads

Резолюция

1 cm

Максимален обхват при пасивен обект (сигнал)

до 150 m

Минимален обхват

0.5 m

Размер и местоположение на блендата на обектива

18 mm (местоположение в предната част на модула)

Видим лазерен модул

Тип

InGaAsP лазерен диод

Дължина на вълната (стандартна)

650 nm

Максимална мощност

<0.6 mW

Размер и местоположение на блендата на обектива

3 mm (местоположение в предната част на модула)

Ъглови измервания

Тип

Оптоелектронен енкодер

Точност

0.02°

Резолюция

0.01°

Обхват

Вертикално: от -135° до +135°

Хоризонтално: от 0° до 360°

Задвижване

Серво задвижващи системи с ръчни съединители

Сензори за насочване и спускане

Тип

Базиран на принципа на акселерометъра

Точност

± 0.2°

Обхват

360°

Физически характеристики

Конструкция

Обработен алуминий и неръждаема стомана

IP степен на защита

IP65

Работна температура

от -10 °C до 45 °C

Размери на преносимата кутия

620 mm × 480 mm × 240 mm

Тегло

Сонда: 5 кг / Система в транзитен случай: 23 кг

Външно захранване

от 10 до 15 V dc и от 110 до 240 V ac

Потребление на енергия по време на сканиране (типично)

9.6 W

 

Access the inaccessible with Void Scanner real-time 3D laser surveying

A specialised, ruggedised instrument, Void Scanner uses time-of-flight laser measurement to map the shape, position and spatial location of voids, which helps ensure both the safety of personnel, and the protection of stock and underground sites.
Void Scanner data is used to ensure more efficient and profitable mineral extraction. With accurate, up-to-the minute site maps, you can better monitor progress, improve planning, reduce wastage, maximise extraction and speed up project timescales.

  • Enhance project capability
    Now with multi-station project capability, Void Scanner software enables you to scan from multiple locations and view the resulting scans together in real time for a complete 3D representation of the site.
  • Minimise safety risks
    Flexible deployment options and wireless communication to the PC offered by the optional Wi-Fi box, mean operators can retreat to a position of safety and still view results during scanning.
  • mprove site management
    Use Void Scanner data to better monitor and control ore loss and dilution by comparing the scanned stope with the design data. Scans also provide a record of daily productivity to support decision making.

Model

Void Scanner

Laser classification (BS EN 60825-1: 2014)

Class 2

Infrared laser module

Type

InGaAs laser diode

Wavelength (standard)

905 nm

Maximum energy per pulse

1.06 μJ

Divergence of the beam

2.76 × 1.5 mrads

Resolution

1 cm

Maximum range with passive object (signal)

up to 150 m

Minimum range

0.5m

Lens aperture size and location

18 mm (location on the front of the module)

Visible laser module

Type

InGaAsP laser diode

Wavelength (standard)

650 nm

Maximum Power

<0.6 mW

Lens aperture size and location

3 mm (location on the front of the module)

Angular measurements

Type

Optoelectronic encoder

Accuracy

0.02°

Resolution

0.01°

Scope

Vertical: from -135° to +135°

Horizontal: from 0° to 360°

Drive

Servo drive systems with manual clutches

Aiming and Descent Sensors

Type

Based on the accelerometer principle

Accuracy

± 0.2°

Scope

360°

Physical Features

Construction

Machine aluminum and stainless steel

IP degree of protection

IP65

Operating temperature

from -10 °C to 45 °C

Portable Case Dimensions

620mm × 480mm × 240mm

Weight

Probe: 5 kg / System in transit case: 23 kg

External power supply

10 to 15 V dc and 110 to 240 V ac

Power consumption during scanning (typical)

9.6 W