Sci-fi vision is very thin: the future of smart TV development

At the beginning of 2016, under the rhythm of the two major exhibitions of CES and AWE, the competition of the future television has become more intense, with LCD TVs, OLED TVs, and laser televisions headed by quantum dots, transparent TVs and mirror TVs that are more conceptually displayed. Any one seems to be so savage. Who is the primary form of TV in the future? What will the TVs your children and grandchildren use after decades or even 100 years?


The biggest difference between humans and artificial intelligence lies in its infinite imagination and creativity. The intelligence of Alpha Dogs is ultimately a product of human imagination and creativity. Next, science fiction vision led everyone to enjoy the secrets of future television.

Extremely thin 0.1? OLED TV Ultimate Form

Extremely thin 0.1? Oh, what I said was really a TV! As we all know, a major feature of OLED is its ultra-thin, OLED has a more obvious advantage in the development of TV towards the ultra-thin.


At CES and AWE, the new OLED TV with a panel thickness of only 2.57mm was shown by LG, which greatly shocked people's vision. We also have more expectations for ultra-thin TVs. Moreover, TCL is ready to invest in a new technology - the print display will further improve the OLED screen, it is likely to achieve a thinner degree. But I think the ultimate form of ultra-thin TV should be like this...


When the wireless power supply and wireless transmission technologies have developed to a certain degree, split-type + ultra-thin is the most ideal form, and the screen part actually reaches the level of A4 paper, no! I am not talking about "A4 waist" but the thickness of A4 paper. Directly attached to the wall, part of the hardware is responsible for the task of wireless transmission. Is it cool?

Shutdown disappears? Transparent TV/Mirror TV

In fact, the concept of transparent television and mirror television has long appeared, but there has been no major breakthrough and it is still in the stage of continuous research and development. However, the transparent TVs and mirror televisions displayed by AWE Shanghai Telecom evoked the imagination of the future TV.

Transparent TV

Miner Accessories


Immersion Cooling is a technique used to cool components of IT equipment that consists of submerging the computer components in a thermally conductive and dielectric liquid. Through this practice, the servers are cooled and heat is transferred from the source to the liquid.

When we talk about Immersion Cooling, we also need to discuss the different types of Immersion Cooling, as well as the applications of Immersion cooling. The practice of Immersion Cooling has a multitude of benefits particularly as it allows datacenters to be managed in a greener and more sustainable manner. Environmental concerns has been a huge catalyst for the adoption of the technology in recent years.


With Immersion Cooling the heat is transferred directly from the heat source to the working fluid. In [watercooling" the working fluid is potentially harmful to electronics and thus flows through a sealed loop isolated from the heat source. A watertight waterblock is used to indirectly transfer the heat from the heat source to the working fluid. With Immersion Cooling the working fluid must be non-conductive and that generally limits us to four families of fluids:

deionized water
mineral oil
fluorocarbon-based fluids
synthetic
Immersion Cooling systems used to have a higher fluid cost than water cooling, but this is already changing.

A wide variety of liquids exist for this purpose, the most suitable being transformer oils and other electrical cooling oils. Non-purpose oils, including cooking, motor and silicone oils, have been successfully used for cooling personal computers


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