Quantifying "shape" through three-dimensional measurement (3D digitizing)
Quantifying "shape," feedback to design, feedback to CAD.
Quantifying "shape" through three-dimensional measurement (3D digitizing)
- Company:アポロ リバースエンジニアリング部門
- Price:Unset
1~4 item / All 4 items
Quantifying "shape," feedback to design, feedback to CAD.
Quantifying "shape" through three-dimensional measurement (3D digitizing)
Leveraging laser mobile measurement know-how, we offer efficient and high-precision three-dimensional measurement services!
The "Narrow Multi-Beam Depth Measurement System" is a multi-beam acoustic depth sounder that integrates a sonar unit (transmitter and receiver), a motion sensor (IMU), and surface water sound velocity (SV). Since sonar data, motion data, and sound velocity data come through a single cable from the underwater unit, complicated wiring is unnecessary. 【Features】 ■ Simultaneous three-dimensional measurement of underwater and above-ground ■ No complicated wiring required ■ Adopts Curved Array method ■ Frequency can be freely selected between 200 and 700 kHz ■ High-precision trajectory management is possible *For more details, please refer to the PDF document or feel free to contact us.
Pick up non-contact measurement methods using light. Explain the selection of methods and equipment by type of object.
There are many types of methods used for three-dimensional measurement of objects. In this document, we will highlight non-contact measurement methods that use light and introduce their characteristics and applications. We will also explain points to consider when introducing three-dimensional measurement devices. [Contents] ■ Basic concepts and necessity of 3D measurement ■ Representative 3D measurement methods and their principles (triangulation method, ToF method) ■ Characteristics of 3D measurement using lasers ■ Main application fields and uses of 3D measurement technology *For more details, please download the PDF or feel free to contact us.