SMT Machine

I.C.T- FAI1095 | Automatic First Article Inspection Machine

Flying Probe Testing Machine
Flying Probe Testing Machine

I.C.T- FAI1095 | Automatic First Article Inspection Machine

  • Enhanced Efficiency: Achieve a fivefold increase in efficiency through automated material clamping and component detection.
  • Precise and Reliable: Advanced AI systems ensure accurate error identification, minimizing human errors and omissions.
  • Streamlined Documentation: Traceable and tamper-proof test records, along with automated report generation, simplify documentation.
  • Versatile Compatibility: Compatible with various BOM formats for seamless integration into diverse manufacturing setups.

Overview

I.C.T- FAI1095 First Article Inspection Machine

The First Article Inspection Machine, known as the I.C.T-FAI1095, represents a paradigm shift in PCBA testing, transcending the limitations of traditional manual methods. This advanced device integrates a First Article Inspection Machine detection method with sophisticated software, enabling fully automated material clamping and component detection.
Its efficiency, five times greater than conventional FAI detectors, minimizes production line changeover times, optimizing production line utilization. With automated LCR detection and an advanced AI system, it ensures precise identification of errors and real-time data display, enhancing accuracy and preventing human errors.
Moreover, its fully automatic test judgment streamlines the testing process, eliminating manual interventions and improving overall efficiency. Additionally, the machine’s high-definition graphics and optical comparison capabilities facilitate meticulous examination, while its traceable test records and automated report generation ensure comprehensive documentation and traceability throughout the testing process.

Key Features

  • Labor Replacement with Automated Detection: By automating LCR detection processes, the First Article Inspection Machine eliminates manual intervention, substantially saving labor and enhancing speed by at least 3-5 times, achieving an average detection speed of 1 second per component. Its superiority becomes more pronounced with increasing component density on the board.
  • Advanced Artificial Intelligence System: Leveraging an advanced AI system, the machine adeptly identifies erroneous or repeated BOM consumption, multiple and small pieces, reversals, and incorrect materials. Real-time synchronous display of detection data effectively prevents human errors and omissions, ensuring robust accuracy.
  • Fully Automatic Test Judgment: The testing process is entirely automated, obviating the need for manual material insertion, range switching, or manual comparison of measured values. The system autonomously discerns between PASS and FAIL criteria, streamlining the testing procedure.
  • High-Definition Graphics and Optical Comparison: Offering PCBA high-definition graphics with magnification capabilities, the system facilitates meticulous examination of real objects. It performs optical comparison detection seamlessly without manual intervention, ensuring precision and accuracy.
  • Traceable Test Records and Report Generation: With real-time, unmodifiable test record keeping, and the ability to restore detection scenes, traceability is ensured. Additionally, the machine automatically generates comprehensive test reports, available in Excel and PDF formats, complete with component images and pertinent PCBA information.

Specification

Model I.C.T-FAI1095
Max PCB Size 350mm*450mm
PCB Height Up 25mm, Bottom 50mm
Accuracy 0.05%
Measurement Display Range R: 0.01m ohms ~ 99.9999M ohms
L: 0.01nH ~ 9999.9H
C: 0.00001pF ~ 9.9999F
Test Frequency 20Hz ~ 300KHz
Dimensions 1085*1122*1638mm
Weight 700KG

* If further parameters are required, please feel free to contact us for additional details.

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I.C.T Automatic Flying Probe Testing Machine.pdf, File Size: 797 KB

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FAQ

1. What is a flying probe testing machine, and how does it differ from traditional testing methods?

2. How does the Flying Probe Testing Machine improve production line efficiency?

3. What are the key features of the Flying Probe Testing Machine?

4. Can the Flying Probe Testing Machine prevent human errors and omissions?

5. Is the test data generated by the Flying Probe Testing Machine traceable and tamper-proof?

6. How does the Flying Probe Testing Machine support compatibility with various BOM formats?

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