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Frontier News

New benchmark for gold conductor paste | YB-8113 opens up a new era of electronic materials

Time:2026-06-01Number:1255

Introduction: The innovative force in the field of electronic materials

In the field of high-precision electronic device manufacturing such as hybrid integrated circuits, gas sensors, and riot control devices, the performance of conductive materials directly determines the reliability and service life of products. Gold conductor paste has become one of the core materials in high-end electronic manufacturing due to its excellent conductivity, chemical stability, and corrosion resistance.Advanced Institute of TechnologyThe independently developed YB-8113 gold conductor paste, with precise process control and strict quality standards, provides high-performance solutions for the industry and has become the preferred partner for many well-known enterprises.

 

Performance parameters: Scientific proportioning creates excellent quality

YB-8113 gold conductor pasteThe core advantage of it comes from its precise formula design. The solid content of the product reaches 85%, ensuring sufficient filling of highly conductive metal particles and effectively reducing electrical resistivity; The viscosity is controlled within the range of 50-90 Pa · S, which balances the smoothness and pattern accuracy of screen printing, and can also achieve micrometer level circuit preparation through dot coating or drawing processes. Its brownish yellow appearance is due to the uniform dispersion of special additives, which ensures the metallic luster after sintering and avoids the interference of impurities on the conductivity.

 

In terms of physical stability, the slurry has undergone rigorous testing: within the temperature range of -40 ° C to 150 ° C, the volume resistivity fluctuation is less than 5%, which can meet the long-term use requirements in extreme environments. The chemical stability test showed that there was no corrosion phenomenon in the salt spray test (5% NaCl solution, 96 hours), and the adhesion force decreased by less than 3% after soaking in organic solvents (ethanol, isopropanol, 24 hours), providing reliable guarantee for sensitive components such as gas sensors.

 

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Process adaptation: Optimizing the entire process to improve production efficiency

YB-8113 has developed standardized process parameters to meet the actual needs of electronic manufacturing enterprises. It is recommended to use 300-400 mesh polyester screen in the printing process, with a scraper angle set at 75 ° -80 °, which can achieve precise replication of a line width of 10 μ m. After printing is completed, it should be left to stand in an environment with a cleanliness of ISO Class 5 for 15 minutes to allow the solvent to fully evaporate and avoid the formation of pores during sintering.

 

The drying process adopts a two-stage temperature curve: the temperature is raised to 80 ° C at a rate of 5 ° C/min for the first 15 minutes, and then raised to 110-135 ° C at a rate of 2 ° C/min and maintained for 30 minutes. This process ensures uniform decomposition of organic carriers while preventing oxidation of metal particles. The sintering stage requires high-temperature treatment at 850-930 ° C in a tunnel furnace, with the peak temperature (930 ° C) maintained for 10 minutes to form a dense conductive layer. The overall sintering cycle is controlled within 60 minutes, which increases efficiency by 40% compared to traditional processes.

 

Typical application: Successful practice from laboratory to industrialization

A well-known electronics company in Guangdong is facing technical bottlenecks such as insufficient adhesion of the conductive layer and long response time when developing a new generation of gas sensors. After introducing YB-8113 gold conductor paste, the enterprise first purchases 5g samples for small-scale testing. By optimizing printing parameters and sintering curves, the sensor response time was successfully shortened from 12 seconds to 5 seconds, while the adhesion between the conductive layer and the ceramic substrate was improved to 12N/mm ², reaching an industry-leading level.

 

Industry Impact: Promoting the Upgrading of Electronic Materials Technology

YB-8113 gold conductor pasteThe successful application not only solves the key material problems in high-end electronic device manufacturing, but also promotes the technological upgrading of the entire industry chain. The nanoscale gold particle dispersion technology used enables the thickness of the conductive layer to be controlled within 3 μ m, providing material support for the miniaturization of hybrid integrated circuits; The development of environmentally friendly organic carriers complies with the RoHS directive requirements, helping companies meet international market access standards.

 

Under the trend of domestic substitution of electronic materials, YB-8113 gold conductor paste is redefining the market standard of high-end conductive materials driven by technological innovation, through precise performance control and perfect process support. Its successful case proves that only by deeply integrating breakthroughs in materials science with industrialization needs can it occupy the high ground in global electronic manufacturing competition.

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