The increasing performance and integration of electronic components has not only enabled greater equipment functionality but often delivers this in smaller and smaller form factors. Associated with this trend is the expectation that power supplies will also become more compact. Initially this demand was addressed by the adoption of switch-mode technology but the continuing trend has led to increased power densities. Part of the remedy for this is to use higher switching frequencies and more efficient designs. However, the inescapable conclusion is that there will always be a need for effective thermal management in power electronics.
View More >>More and more 1080P,4K,8K camera are introduced to application in camera, high-definition image processing , big data computing,high power consumption and calorific value in confined quarters make the problems of thermal management and EMI shielding increasingly prominent.Simultaneously, the volatilization of thermal interface material molecules and the precipitation of silicone oil effecting on the optical lens, the low temperature resistance of the chip, all these ask for meticulous thermal designing.
View More >>Thermal interface material are used widely in aerospace, consumer electronics, and telecom equipment industries, sealing and shielding processes, and power supply unit applications. IBH Advance Material are used for transferring heat between microprocessors and heat sinks in integrated circuits.
View More >>The communication base station equipment is developing towards lightweight, high power and high integration. Contrary to its volume decreasing, the heat consumption density of the system increases to 30W/L-35W/L, while the shell generally being cast cavity causes to adopt the passive heat dissipation method . The huge calorific value poses serious challenge to the whole device.
View More >>Medium to high power LEDs are constantly evolving, although the need to remove heat from that LED remains constant. IBH's focus is to lower junction temperature of the led by using a direct thermal path. lower junction temperature increases LED life, LED brightness, lumen output, product reliability and can even reduce dollars per lumen.
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