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Last Updated: Apr 25, 2025 | Study Period: 2024-2030
Conformal coating Automated Optical Inspection They inspect the components and the surrounding area for cracks, bubbles, insufficient/excessive coating, loss of adhesion, and other common contaminations.
Conformal coatings can be used in a variety of environments to protect printed circuit boards from moisture, salt spray, chemicals, and temperature extremes, thereby preventing corrosion, mould growth, and electrical failures.
Most conformal coatings now include an optical brightener that fluoresces when exposed to ultraviolet (UV) light. This, in turn, makes inspection easier. However, some defects cannot be seen under UV light, and white (natural) light may also be required.
The Global Conformal Coating Inspection System Market accounted for $XX Billion in 2022 and is anticipated to reach $XX Billion by 2030, registering a CAGR of XX% from 2024 to 2030.
Mek Introduces Fast and Simple PCB Conformal Coating Inspection Mek (Marantz Electronics), a leading provider of 3D Automated Optical Inspection (AOI) and Solder Paste Inspection (SPI) technologies, has introduced the inSpector JUz for conformal coating inspection.
Conformal coating inspection (CCI) is a critical stage of the conformal coating process that, aside from a brief manual visual inspection, very few companies perform.
However, manual inspection is a difficult job due to factors such as eye strain and concentration drift, and slow throughput makes it economically challenging. The inSpector JUz, which is based on proven Mek AOI technology, automates the conformal coating inspection process to ensure coating quality and consistency.
Mek automated inSpector JUz CCI systems for automatic inspection of conformal coatings and defect detection see more than an operator ever could and make conformal coat inspection fast, simple, and cost effective. The majority of Conformal Coatings contain a UV fluorescent dye, typically in the 365 to 405 nm range.
UV light causes the coating to fluoresce, highlighting discrepancies, contamination, or process issues. The system inspects the PCB and components after manual spray, automatic spray, and dip coating applications to identify coating issues such as missing coating, bubbles, insufficient thickness, voids, coating in areas where it is not desired, and other common contaminations.
Unique algorithms and dedicated strategies enable simple and fast programming with high detection coverage. The website provides a comprehensive and user-friendly online training suite.
Sl no | Topic |
1 | Market Segmentation |
2 | Scope of the report |
3 | Abbreviations |
4 | Research Methodology |
5 | Executive Summary |
6 | Introduction |
7 | Insights from Industry stakeholders |
8 | Cost breakdown of Product by sub-components and average profit margin |
9 | Disruptive innovation in the Industry |
10 | Technology trends in the Industry |
11 | Consumer trends in the industry |
12 | Recent Production Milestones |
13 | Component Manufacturing in US, EU and China |
14 | COVID-19 impact on overall market |
15 | COVID-19 impact on Production of components |
16 | COVID-19 impact on Point of sale |
17 | Market Segmentation, Dynamics and Forecast by Geography, 2024-2030 |
18 | Market Segmentation, Dynamics and Forecast by Product Type, 2024-2030 |
19 | Market Segmentation, Dynamics and Forecast by Application, 2024-2030 |
20 | Market Segmentation, Dynamics and Forecast by End use, 2024-2030 |
21 | Product installation rate by OEM, 2023 |
22 | Incline/Decline in Average B-2-B selling price in past 5 years |
23 | Competition from substitute products |
24 | Gross margin and average profitability of suppliers |
25 | New product development in past 12 months |
26 | M&A in past 12 months |
27 | Growth strategy of leading players |
28 | Market share of vendors, 2023 |
29 | Company Profiles |
30 | Unmet needs and opportunity for new suppliers |
31 | Conclusion |
32 | Appendix |