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Manual Video Measuring System LMVMS-B100 provides high-resolution measurement of 0.5 µm. It supports 3D measurements with 200 x 100 mm X, Y-axis travel for versatility. It features sub-pixel segmentation technology to enhance image resolution of fine features. Equipped with powerful measuring software to automate edge detection and reporting efficiently. Our Manual Video Measuring System LMVMS-B100 supports diverse data reporting and export.
Specifications
| Image Sensor | 1/3 |
| Objective Lens | Manual Position Zoom Lens |
| Video Magnification | 0.7 ~ 4.5x, Objective Lens: 20 ~ 148x |
| Resolution | 0.5 µm |
| 3D Model | Yes |
| Object View | 8.1 mm – 1.3 mm |
| Working Distance (Standard) | 92 mm |
| Movement System | X, Y-axis: Polish Rod, Z-axis: T-type Screw Rod |
| X, Y-axis Travel Distance (mm) | 200X100 |
| Z-axis Travel Distance (mm) | 200 |
| X, Y-axis Accuracy (µm) | ≤ 3 + L/200 |
| Data Processor | RS-100 |
| Illumination | Surface: 8-division LED Cold Light, Contour: Adjustable 256-grades LED Cold illumination |
| Measuring Software | Yes |
| Working Environment | Temperature: 20℃ ± 2℃, Temperature Variation < 2℃/hr, Humidity: 30~80% |
| Power Source | AC 100~220V, 50/60Hz, 10A |
| Dimensions (mm) | 600 X 500 X 920 |
| Net Weight (kg) | 120 |
| Loading Weight of Working Stage | 25 kg |
Features
Powerful Measuring Software
Automatic Calculation
Sub-pixel Segmentation Technology
Cold Light Source
Stable Granite Workbench
User friendly interface
Integrated sensors for measurements
Diversified Data reporting and export
High-resolution Video System
Robust geometric measurement
Renishaw 3D probe
Laser Pointer
Applications
Manual Video Measuring System LMVMS-B100 is applicable in research and development, semiconductor fabrication, precision tooling, optical manufacturing, in quality control, product development, and ensuring optimal performance in high-tech industries.
Selection Guide
When selecting Manual Video Measuring System LMVMS-B100, customers should consider its suitability for high-precision measurement tasks in research and industrial settings. This model is often used in applications involving electronics inspection, medical device validation, precision component manufacturing, and plastics measurement. It features a high-resolution 1/3" color CCD camera, manual zoom lens (0.7x to 4.5x), and objective lens magnification ranging from 20x to 148x, making it suitable for detailed dimensional analysis. With a resolution of 0.5 µm, it ensures accurate, repeatable measurements. It is particularly beneficial for experiments requiring 2.5D model capability and geometric feature assessment. It is commonly selected for R&D labs and quality control departments due to its compliance with ISO and CE certifications, ensuring reliability and global standardization. When selecting this model, users should align their choice with the need for manual operation, non-contact measurement, and precision in multi-industry research or experimental environments.
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Frequently Asked Questions
1 What is a 3D Manual Video Measuring System?
A 3D Manual Video Measuring System is an apparatus designed to use a video camera and manual control to inspect and measure the dimensions of objects in three dimensions.
2 How does 3D Manual Video Measuring System work?
It works by using high-resolution optics and a camera to capture detailed images of a part, which are then manually aligned and measured using software tools to obtain accurate 3D data.
3 Can 3D Manual Video Measuring System measure depth accurately?
It can measure depth accurately by using calibrated Z-axis movement and focus-based height measurement techniques.
4 What kind of maintenance is required by 3D Manual Video Measuring System?
Regular maintenance includes cleaning of lenses, calibrating the stage and camera, and checking software updates to ensure optimal performance.
5 Can 3D Manual Video Measuring System be used for inspecting electronic components?
It is ideal for inspecting electronic components such as PCBs, connectors, and microchips, where precise measurement of small features is critical.
6 How is 3D Manual Video Measuring System used in the medical device industry?
In the medical device industry, it is used to measure surgical tools, implants, and precision parts to ensure they meet strict dimensional tolerances and regulatory standards.
7 Can 3D Manual Video Measuring System be used in automotive component testing?
It is widely used in the automotive sector for inspecting gears, engine parts, brackets, and other components where dimensional accuracy is essential.
8 Is 3D Manual Video Measuring System effective for high-mix, low-volume manufacturing environments?
It is particularly effective in high-mix, low-volume settings due to its flexibility, low setup time, and adaptability to varied part geometries.
9 How does 3D Manual Video Measuring System benefit additive manufacturing or 3D printing workflows?
It benefits additive manufacturing by verifying critical dimensions of 3D printed parts, ensuring the build matches design intent and tolerances.
10 How does 3D Manual Video Measuring System improve inspection throughput?
It improves inspection throughput by allowing fast manual positioning and quick visual alignment, making it efficient for routine checks without programming delays.