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MiniLEDLow temperature sintering nano silver pasteAs an innovative achievement, it has led the revolution of display technology. Its characteristics include low sintering temperature, low resistivity, good sustained printability, fast printing speed, and good reliability. This article will analyze the importance and advantages of Advanced Institute Technology in the field of display technology from multiple dimensions.
1、 Low sintering temperature: 120 degrees sintering result
Sintering temperature is one of the important factors in the preparation of nano silver paste electrodes. MiniLED low-temperature sintering nano silver paste has successfully achieved low-temperature sintering and high-quality electrode preparation at only 120 degrees. This breakthrough makes it possible to complete sintering at lower temperatures, greatly improving production efficiency and reducing costs.
For example, compared to traditional processes that require high temperature sintering, MiniLED low-temperature sintering nano silver paste does not require high temperature conditions in the production process, which can protect the integrity of the substrate material, reduce thermal damage, and enable the electrode to work stably for a longer period of time in high temperature environments.
2、 Low resistivity: meets the requirements of electronic components
MiniLED low-temperature sintered nano silver paste has the advantage of low resistivity, with a volume resistivity of<4.5 * 10-6 Ω CM. This means that the electrode has outstanding conductivity and can meet the high resistivity requirements of small-sized electronic components.
Reference data: Research has shown that, MiniLEDLow temperature sintering nano silver pasteThe electrical resistivity is only about half of that of traditional silver paste, greatly improving the conductivity efficiency of electronic components.
3、 Continuous good printability: achieving aspect ratio requirements
MiniLED low-temperature sintered nano silver paste has good sustained printing performance, even during continuous printing, the viscosity of the silver paste is moderate, which can maintain a good aspect ratio. This characteristic is particularly important in the preparation of high-definition display devices.
For example, the aspect ratio requirement is particularly strict in the manufacturing process of MiniLED, and the continuous printing performance of MiniLED low-temperature sintered nano silver paste can meet this requirement, avoiding the problem of uneven electrode width and improving the quality of display devices.
4、 Fast printing speed: improving production efficiency
MiniLED low-temperature sintered nano silver paste has a fast printing speed, reaching 300-400mm/s. This feature makes the production process more efficient and can significantly improve the manufacturer's production capacity.
Reference data: Compared with traditional silver paste, MiniLED low-temperature sintered nano silver paste has increased printing speed by 50%, reduced waiting time in the manufacturing process, and improved production efficiency.
5、 Good reliability: Ensure the persistence of the display module
The electrode formed by MiniLED low-temperature sintering nano silver paste has good weather resistance and can withstand various external environmental tests, thereby ensuring the reliability of the display module.
For example, the electrode formed by low-temperature sintering of nano silver paste in MiniLED has undergone rigorous experimental testing and demonstrated high weather resistance. It can work stably for a long time in various environments, effectively extending the lifespan of display devices.
Conclusion: MiniLEDLow temperature sintering nano silver pasteWith its unique characteristics such as low sintering temperature, low resistivity, continuous printability, fast printing speed, and good reliability, it has broad application prospects in the field of display technology. It provides manufacturers of display devices with more efficient and reliable manufacturing solutions, promoting continuous progress and innovation in display technology.
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