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Overview
Manual Video Measuring System LMVMS-A102 has high resolution of 0.5 µm for accurate measurements. It features sub-pixel segmentation technology for enhanced precision. It incorporates movement system with Polish rods for X and Y axis. It has laser pointer to assists in pinpointing the exact area. Our Manual Video Measuring System LMVMS-A102 features German-made rods and bearings for improved performance.
Features :
Powerful Measuring Software
Automatic Calculation
Sub-pixel Segmentation Technology
Cold Light Source
Stable Granite Workbench
German-made Precision Rods and Bearings
High-resolution Video System
Laser Pointer
Specifications :
| Image Sensor | 1/3 |
| Objective Lens | Manual Position Zoom Lens |
| Video Magnification | 0.7 ~ 4.5 x, Objective Lens: 20 ~ 148 x |
| Resolution | 0.5 µm |
| 2.5d Model | Yes |
| 3d Model | No |
| 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) | 400 x 300 |
| 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) | 1000x620x990 |
| Net Weight (Kg) | 180 |
| Loading Weight of Working Stage | 25 kg |
Applications :
Manual Video Measuring System LMVMS-A102 finds extensive applications in aerospace engineering, medical device manufacturing, optical component production, and telecommunications.
Selection Guide :
When selecting Manual Video Measuring System LMVMS-A102, customers should consider their specific research applications, experimental requirements, and relevant industry certifications. This model is designed for high-precision dimensional measurements and is commonly used in research laboratories, toolmaking, electronics inspection, medical device analysis, and precision engineering. It is especially suitable for tasks requiring non-contact measurement and high-resolution imaging. Research studies often involve component analysis, microstructure evaluation, and geometrical assessments, where manual control and accurate readings are crucial. Certifications such as ISO or CE compliance ensure reliability, safety, and standardization, making it a dependable choice for regulated environments.