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Panasonic Industry launches high transparency, low resistance, flexible transparent conductive film for electromagnetic wave shield with pre applied OCA 10.03.2026
HOME / Custom Process for High-Temperature Resistant Passive Components for Vehicle-Mounted Fiber Optic ODN - DKN Access Networks & Consulting
Panasonic Industry launches high transparency, low resistance, flexible transparent conductive film for electromagnetic wave shield with pre applied OCA 10.03.2026
A customer from the automotive sector challenged ERM Fab&Test to produce a part for a racing vehicle that could withstand temperatures above 800
Discover the latest high-temperature materials transforming the automotive industry, enhancing performance, and ensuring safety.
In summary, this paper systematically reviews recent progress in UHTCs, focusing on their fabrication methods, strengthening and toughening strategies, oxidation resistance and ablation
Explore Automotive Passive Components and their evolution in next-generation vehicle electronics and electrical systems.
Long term behavior of passive components for high temperature applications-an update Abstract: The goal of this paper is to present updated information that demonstrates the viability of a significant
Further development and optimization of this process will drive the widespread application of UHTC composites in aerospace and high-temperature structural components, which also offering
New technologies (e.g., high-temperature heat pumps or ORC systems) can raise waste heat to a usable temperature and guide it back into the
Discover how high temperature film capacitors are advancing automotive electronics. Learn about the benefits of electrification and the
While ICs are key to the realization of complete high temperature electronic systems, passive components including resistors, capacitors, magnetics and crystals are also required. This
Learn about heat-resistant alloy castings properties, applications, and why they are the material of choice for aerospace. automotive, etc.
This comprehensive reference of standardized fiber optic acronyms is a resource for understanding technical shorthand across networking and telecommunications.
High temperature thermoplastics (HTPs) represent a revolutionary class of engineering materials that are transforming multiple industries. These
MEISU developed high-temperature resistant optical devices with SM fiber and PM fiber for fiber sensing system. By applying a special high-temperature coating to the normal PM fiber, it provides multiple
For both active and passive devices, the negative of effects of thermal shock can be as detrimental as steady-state operation at extended temperatures.
AEC standards in the AEC-Q series for passive and some active components and modules are seen as the minimum requirements for component stress testing but have several grades depending on the
For components facing sustained high temperatures, alloys such as nickel-based superalloys, heat-resistant steels, titanium alloys, and copper-based high-performance alloys are typically recommended.
High-temperature injection molding is no longer a niche—it''s a necessity. Manufacturers can unlock new realms of performance and efficiency by harmonizing advanced materials, intelligent
This is why high-temperature 150°C MLCC is required not only in the powertrain of internal combustion engines, but also in the EV powertrain
Advanced Heat-Resistant Materials for Automotive The automotive industry is undergoing a significant transformation, driven by the need for more efficient, sustainable, and high-performance
Enter high-temperature electronic components —specially designed semiconductors, sensors, and passive devices that function reliably in harsh thermal conditions.
In our previous study, we developed flexible phase-change material (PCM) packages for passive thermal energy storage of heat from lithium-ion batteries in hybrid electric vehicles/electric
Heat-resistant plastics Under-the-hood car parts, plastic medical equipment, aircraft engine-related polymers, electrical connectors, and many
Ultra-High-Temperature Ceramics (UHTCs): These ceramics can withstand temperatures above 2,000°C (3,632°F) and are being explored for applications in
The prototyping stage of high-temperature components involves rapid prototyping techniques, prototyping materials testing, and iteration to create
This article shares systematic processing techniques for molds of high-temperature, flame-retardant materials from six dimensions: mold design, steel selection,
Silica preforms were converted to thin fibers with significant mechanical and thermal stability using a standard drawing process. Rigorous
Heat-resistant plastics cars use advanced polymers to replace metals in components exposed to high temperatures, such as engine bays and battery