Sale 2 days before selling 30,000? "Resident Evil 7" Steam sales dismal

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Sell ​​2 days to sell 30,000? "Resident Evil 7" Steam sales dismal from Baidu VR

As early as 16 years, Karpong’s first day sales of “Resident Evil 7” are expected to be 4 million. Today, Biochemical 7 finally meets with the players. How about the sales of the game?

The data given on SteamSpy shows that the number of users on Steam is 32431±9073. This was somewhat unexpected. Although the game was only released for two days, as a biochemical orthodox masterpiece, the sales volume of around three or four thousand is really not high. In contrast, 2016 Civilization 6 was sold for less than three days and sold more than 400,000 on Steam. It was time to revert back to 2015, and Radio 4’s sales on Steam's first day were as high as 1.2 million. In comparison, the list of "Resident Evil 7" is not realistic.

Of course, this is just a digital version of Steam's sales, and the game is not sold long. The game's performance in the end, but also need to wait for the relevant statistical agencies issued by the host version of the data.

However, in terms of the Steam platform, the sales of "Resident Evil 7" are still too bleak, especially for such a masterpiece with high hopes.

PLC Splitter

PLC, that is, planar optical waveguide, that is to say, the optical waveguide is located in a plane.
As everyone is familiar with single-layer circuit boards, all circuits are located in a plane of the substrate. Therefore, PLC is a kind of technology, it does not refer to a certain type of product, let alone a splitter! Our most common PLC splitter is made of silicon dioxide (SiO2). In fact, PLC technology involves a wide range of materials, such as glass/silicon dioxide (Quartz/Silica/SiO2), lithium niobate (LiNbO3), III-V semiconductor compounds (such as InP, GaAs, etc.), silicon-on-insulator (SOI/SIMOX), silicon oxynitride (SiON), polymer, etc.
Devices based on planar optical waveguide technology solutions include: Splitter, Star coupler, Variable Optical Attenuator (VOA), Optical switch, Optical comb ( Interleaver) and Array Waveguide Grating (AWG), etc. According to the requirements of different applications (such as response time, ambient temperature, etc.), these devices can be made by choosing different material systems and processing techniques. It is worth mentioning that these devices are all optical passive devices and are independent. They can be combined with each other or with other active devices to form high-end devices with different functions.

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