VX8200
When you choose the VX8200 from Chotest, you get an optical measuring machine with a double telecentric optical lens that provides high depth of field...
- Measure with a button press
- User-friendly software
- High depth of field
This optical measuring machine is based on visual measurement principles and features advanced image analysis algorithms that provide fast and reliable dimensional measurement.
When you choose an optical measuring machine from Chotest, you can be sure of getting a product that is built to a high standard. They are very durable and can withstand daily use year after year. Despite their high quality, they are also very affordable, giving you a lot of measuring machine for your money. This makes Chotest an easy choice for optical measuring machines!
All optical measuring machines from Chotest come with their own proprietary measurement software, VisionX. The software is designed to provide the user with easy and quick analysis of their measurements. The program has clear visual elements that make analysis smooth. With up to 80 analysis tools, analysis is easy no matter what you are measuring.
With its high precision and depth of field, the VX8300 is a great option for dimensional measurement of many different details. This includes machines, electronics, molds, injection molding, hardware, rubber, low-voltage devices, magnetic materials, precision punching, connectors, terminals, mobile phones, household appliances, circuit boards, medical equipment, watches, cutting tools, etc.
The VisionX software offers up to 80 tools for extraction analysis, including [Feature Extraction] (such as maxima, centerlines, arcs, peaks, etc.), [accessory tools] (e.g., arbitrary point, line and circle, custom straight line, custom circle, tangent, inscribed circle, etc.), [smart labeling], [geometric tolerance], and specialized tools [application tools] (e.g., pitch distance, pitch angle, groove, thread, round intersection, downward angle, rounded corners, etc.).
Measurement results and their key statistical values (e.g., mean, σ, 3σ, 6σ, Ca, Cp, Cpk, etc.) are recorded and archived automatically. Operators can select different filter conditions for historical extraction.
| Model | VX8300 | |||
| Image Senor | 20MP CMOS | |||
| Monitor | Built-in | 10.4" LCD (XGA:1024×768) | ||
| Outside | 24" LCD (XGA:1920×1080)(Optional) | |||
| Acceptance Lens | Double Tlecentric Lens | |||
| Light | Ring Light | Four-segment illumination(White Light) | ||
| Back Light | Telecentric transmission illumination(Green Light) | |||
| Coaxial Light(optional) | LED parallel light | |||
| F.O.V. | Wide Field | 300*200mm | ||
| High Precision | 230*130mm | |||
| Resolution | 0.1um | |||
| Repeatability of Image Meas. | Wide Field | Without Stitching*1 | ±1um | |
| With Stitching*2 | ±2um | |||
| High Precision | Without Stitching*1 | ±0.5um | ||
| With Stitching*2 | ±1.5um | |||
| Accuracy of Image Meas. | Wide Field | Without Stitching*1 | ±3um | |
| With Stitching*2 | ±(5+0.02L)μm | |||
| High Precision | Without Stitching*1 | ±1.5um | ||
| With Stitching*2 | ±(3+0.02L)μm | |||
| Horizontal Rotary Unit (Optional) | Rotation Angle | Range 360°, Resolution 0.02° | ||
| Rotation Speed | 0.2~2rev/s | |||
| Max Diameter | Φ60mm | |||
| Height Meas. (Optical probe) (Optional) | Measuring Range(XY) | 120×110mm | ||
| Max Hole-Depth Ratio(h/φ) | 1.64 | |||
| Dia. of Beam | Φ100μm(Φ18μm optional) | |||
| Resolution | 0.25μm | |||
| Z Non-movement | Range(Z) | ±2mm | ||
| Accuracy | ±2μm | |||
| Z Movement | Range(Z) | 75mm | ||
| Accuracy | ±(6+0.01H)μm, H is Z moving height in mm | |||
| XY Object Table | X Travel range | 210mm | ||
| Y Travel range | 110mm | |||
| Loading Capacity | 7.5kg | |||
| Z-Axis Travel range | 75mm | |||
| Size(LxWxH) | 531×503×731mm | |||
| Weight | 75kg | |||
| Input | AC100~240V, 50/60Hz,2A,300W | |||
| Working Environment | Temp.10℃~35℃, Humidity 20%~80%, Vibration<0.002g, Less than 15Hz | |||
The trend chart shows the regular trend of the measured values, such as monotonic and periodic changes in the measured values, which can be used to monitor deviations in the production process of manufacturing equipment. The histogram reflects the status and distribution of fluctuations in product quality and can intuitively display information about the quality situation in the production process, which can be used to predict product quality and defect rates.
Through quality diagnosis and analysis using statistical methods, SPC can monitor product quality and the trend of changes in the production process. With SPC, we can find preventive solutions in the production process, thereby reducing subsequent inspections and repairs. Consequently, control of the production process and improvement of product quality is achieved.
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