I Am the President of the University

Vol 2 Chapter 250: No. 2 Guanghua Scholar

(Don't read it yet, wait an hour later... Hey, I haven't finished writing yet, I'm making up. The author broke his promise again, I'm really sorry ~ www.wuxiahere.com~ I've forgotten about it.)

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(Don't read it yet, wait an hour later... Hey, I haven't finished writing yet, I'm making up. The author broke his promise again, I'm really sorry ~ www.wuxiahere.com~ I've forgotten about it.)

…………………………

The advantage of diamond single crystal nanotechnology is the combination of optoelectronic computing, because the energy consumption of the photoelectric core is the lowest, and it has advantages over graphene. The carbon core does not mean that it must be black graphene. Diamond is carbon. .

The carbon application team of the Huawei Research Institute is really exploring this now. Once the carbon application technology breaks through, it will forget about the original nanotube technology restrictions, and now it is almost a tipping point.

Diamond can be used as a chip, and it can also be combined with optical computing and electrical computing. The current chip is electrical computing. The next generation has two directions. One is an optical core, which uses photons to replace electrons, but that requires photoelectric conversion, and the other is Use carbon technology to replace the current silicon-based or molybdenum-based, and diamond can take care of both. If the process of material ductility and flexural toughness is solved, then the next-generation display screen is integrated with the chip, there is no circuit, no bus Up.

Diamond has high strength and is not afraid of damage, but its ductility and flexural toughness are not good, and there are no free electrons, and it is not easy to conduct.

However, the optical conductivity of diamond is very good. Now the new technology realizes the tensile and bending properties of diamond nano-single crystals, and the single crystals can achieve good electrical conductivity while maintaining the original optical conductivity.

Using this material to make a display screen, there is no need to layer, and there is no need to match a decoding imaging chip, and can be directly made together.

Moreover, the speed, efficiency, and energy consumption of optical logic gates can be reduced by an order of magnitude by using photons to implement calculations.

And it will not be limited by the refined manufacturing precision of chips or OLED displays, which will widen the road in one go.

With such a display, it is easy to linearly jump to a 16K screen, and the energy consumption is less than one-tenth of the current one.

Electronic chips or electronic displays are prone to heat, transistors are made smaller and thinner, and the production process is demanding. However, the diamond soft screen that implements optical computing does not have this display. The production process of his chip or optical unit is currently in production. It is easy to implement and does not require a 7-nanometer lithography machine.

The advantages of photon screens are sturdiness, low energy consumption, high power, and production is easier than OLED, at least the process is easy. And it can achieve multi-function integration, and the production process is greatly reduced.

The current OLED is a kind of plastic, which is resistant to fire and is not really resistant to high temperatures. It is also afraid of corrosion. The photon screen does not have this defect. The softened diamond screen is not only strong but also tough.

Diamond is man-made diamond. Its light conductivity is very good, and the image is more fidelity than that of OLED. And the force is very high. It is a thing that solves the material problem, comprehensively reduces the process complexity and comprehensively improves various performances.

The advantage of diamond single crystal nanotechnology is the combination of optoelectronic computing, because the energy consumption of the photoelectric core is the lowest, and it has advantages over graphene. The carbon core does not mean that it must be black graphene. Diamond is carbon. .

The carbon application team of the Huawei Research Institute is really exploring this now. Once the carbon application technology breaks through, it will forget about the original nanotube technology restrictions, and now it is almost a tipping point.

Diamond can be used as a chip, and it can also be combined with optical computing and electrical computing. The current chip is electrical computing. The next generation has two directions. One is an optical core, which uses photons to replace electrons, but that requires photoelectric conversion, and the other is Use carbon technology to replace the current silicon-based or molybdenum-based, and diamond can take care of both. If the process of material ductility and flexural toughness is solved, then the next-generation display screen is integrated with the chip, there is no circuit, no bus Up.

Diamond has high strength and is not afraid of damage, but its ductility and flexural toughness are not good, and there are no free electrons, and it is not easy to conduct.

However, the optical conductivity of diamond is very good. Now the new technology realizes the tensile and bending properties of diamond nano-single crystals, and the single crystals can achieve good electrical conductivity while maintaining the original optical conductivity.

Using this material to make a display screen, there is no need to layer, and there is no need to match a decoding imaging chip, and can be directly made together.

Moreover, the speed, efficiency, and energy consumption of optical logic gates can be reduced by an order of magnitude by using photons to implement calculations.

And it will not be limited by the refined manufacturing precision of chips or OLED displays, which will widen the road in one go.

With such a display, it is easy to linearly jump to a 16K screen, and the energy consumption is less than one-tenth of the current one.

Electronic chips or electronic displays are prone to heat, and transistors are made thinner and thinner, which requires high production technology. However, diamond soft screens that implement optical calculations do not have this display~www.wuxiahere.com~ His chip or optical unit The current production process is easy to achieve and does not require a 7-nanometer lithography machine.

The advantages of photon screens are sturdiness, low energy consumption, high power, and production is easier than OLED, at least the process is easy. And it can achieve multi-function integration, and the production process is greatly reduced.

The current OLED is a kind of plastic, which is resistant to fire and is not really resistant to high temperatures. It is also afraid of corrosion. The photon screen does not have this defect. The softened diamond screen is not only strong but also tough.

Diamond is man-made diamond. Its light conductivity is very good, and the image is more fidelity than that of OLED. And the force is very high. It is a thing that solves the material problem, comprehensively reduces the process complexity and comprehensively improves various performances.

The advantage of diamond single crystal nanotechnology is the combination of optoelectronic computing, because the energy consumption of the photoelectric core is the lowest, and it has advantages over graphene. The carbon core does not mean that it must be black graphene. Diamond is carbon. .

The carbon application team of the Huawei Research Institute is really exploring this now. Once the carbon application technology breaks through, it will forget about the original nanotube technology restrictions, and now it is almost a tipping point.

Diamond can be used as a chip, and it can also be combined with optical computing and electrical computing. The current chip is electrical computing. The next generation has two directions. One is an optical core, which uses photons to replace electrons, but that requires photoelectric conversion, and the other is Use carbon technology to replace the current silicon-based or molybdenum-based, and diamond can take care of both. If the process of material ductility and flexural toughness is solved, then the next-generation display screen is integrated with the chip, there is no circuit, no bus Up.

Diamond has high strength and is not afraid of damage, but its ductility and flexural toughness are not good, and there are no free electrons, and it is not easy to conduct.

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