modtek l33t case series xp2s pc case w lcd panel made in china
Multi-Color LCD Screen! Displays fan speeds, temperature (with included temperature monitor), noise levels and even offers an internal temp alarm and much more!
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We first saw the Thermaltake Divider 550 TG Ultra at the company"s Expo event, coinciding with CES 2022 in January. Now, the firm has released a full set ...
Case modding took off in the late 90s, and taught us all that computers could (and should!) look awesome. Much of the aesthetic went mainstream, and now tons of computer cases come with lights and windows and all the rest. [WysWyg_Protogen] realized those simple case windows could be way cooler with a neat LCD hack, and set to work.
The concept is simple. Take an old LCD monitor, remove the backlight and extraneous hardware, and then install it to the window in a computer case. When lit from behind via LEDs in the case, the screen creates a ghostly display through which the computer’s internals can still partially be seen. It’s a really compelling effect, and in theory, quite easy to achieve. All one need do is mount the stripped-down screen to the case and pipe it video from the graphics card.
In practice, it’s a little tricky. Disassembling the screen and removing things like the anti-glare coating can be tough to do without damaging the delicate panel inside. The windows typically used on computer cases can dull the effect, too. However, [WysWyg_Protogen] is continuing to tinker with the project and the results are getting increasingly impressive with each iteration. It doesn’t photograph too well, but it looks truly amazing in motion.
We often forget LCDs are transparent in their basic form, as we generally only use them with backlights or reflective backers. They really do look great when used in this transmissive way, though. Video after the break.
Actually beside myself right now. How does this look this good? This was a trash pile monitor and this looks like a 700 dollar case upgrade pic.twitter.com/4yBXlcY921
We first got a look at the Thermaltake Divider 550 TG Ultra at the company"s Expo event, coinciding with CES 2022 in January. Now the firm has released a full set of product pages for this showy mid-tower case with triple tempered glass sides and a 3.9 inch LCD screen atop of the front panel.
The Divider 550 TG Ultra"s USP is clearly its front embedded display panel. If not for this add-in, it would be a pretty standard hefty ATX case with a lot of tempered glass and room for a full sized (5.25 inch) optical drive to slot into the top.
From the images it looks like Thermaltake has decided to craft an LCD screen to fit into such a gap, but sadly the display area doesn"t fill the space, as it has quite significant bezels. Thermaltake quite breathlessly describes this 3.9 inch LCD screen as "a new way to monitor your PC’s performance and at the same time to show your own personality." In 2022 it might be more useful than an optical drive bay, but it isn"t revolutionary.
The display can be used for various monitoring and personal styling purposes. You customize what is on the display using the TT RGB Plus 2.0 software. This allows you to display any still images or animated GIFs. More practical uses of the display are for processor and RAM monitoring. For processors you can monitor temperature, frequency, load, and other real-time stats of your CPU and GPU. For memory you can use the display for checking capacity, frequency, temperature and load. Moreover, the display can sync with other Thermaltake components like the AiO cooler range.
From the front you will also see Thermaltake has boldly fitted a trio of RGB fans. These are also configured using TT RGB Plus 2.0 software. Users can make the fan lighting work in harmony with the LCD display. Alternatively, it is possible to control and sync the fan LEDs with RGB motherboard software from Asus, Gigabyte, MSI, and ASRock. Anti software bloat purists can decide to control the fan lighting using the dedicated RGB button on the I/O panel. This button turns the RGB LEDs on and off and cycles through 27 color schemes and modes.
That more or less covers the Thermaltake Divider 550 TG Ultra"s "special sauce" that center around its triple RGB fan and LCD display fronted appearance. If you have got this far you might be interested in the essential tech specs such as case size, capacity, and maximum compatibility stats. We have tabulated this data below for your convenience.
Some niceties that are worth highlighting are the rotational PCIe slots, to make the case vertical or horizontally orientated GPU friendly. A rizer cable bracket and GPU support is included with the case too. Lastly, we are thankful Thermaltake has both USB Type-A and Type–C ports in the easy access I/O section atop of the case.
At the time of writing we don"t have any release date or pricing specifics to share. As Thermaltake has moved from the announcement stage to the product page population phase, an actual hard launch shouldn"t be far away.
If readers are interested in acquiring a new PC case in the meantime, you would be advised to check out our recently updated guide to the Best PC Cases of 2022.
Realme has unveiled its new Q3t smartphone on Chinese shores in collaboration with China Telecom. The company is yet to announce launch details for markets outside China. The Realme Q3t supersedes the Realme Q3s and comes in two different colors. It is powered by a Snapdragon 788G processor and sports a triple-camera setup on the rear.
The Realme Q3t’s Snapdragon 788G processor is paired with 8GB of RAM and 256GB of internal storage, just like its predecessor launched in October this year. The Realme Q3t features a Dynamic RAM Expansion (DRE) feature that uses internal storage to expand the RAM capacity dynamically. The phone also features a 5,000mAh battery and support for 30W fast charging.
The Realme Q3t runs on Realme UI 2.0 based on Android 11. This device features a 6.67-inch FHD+ IPS LCD panel with a resolution of 1080×2412 pixels. The display is capable of a 144Hz refresh rate and 600 nits of peak brightness. That said, the Realme Q3t has an impressive 90.8 percent screen-to-body ratio, indicative of razor-thin bezels on the front, although the bottom bezel is rather prominent. The Realme Q3t also has a side-mounted fingerprint sensor.
Realme’s approach to the display differs from its competitors that offer AMOLED displays with the standard 60Hz refresh rate but support HDR content playback or a DCI-P3 color gamut in some cases.
The Realme Q3t has a hole-punch cutout for the camera on the upper left corner of the display. The front-facing camera is a 16MP unit. On the rear, the three-camera array comprises a 48MP primary camera flanked by what is reported to be a 2MP macro lens and a 2MP depth sensor.
The Realme Q3t has been listed for ¥2,099 ($328) on Realme’s China website for the sole 8GB/256GB model. The phone is offered in Nebula and Night Sky Blue colors. Presently, Realme hasn’t revealed when the phone will be available in international markets outside China.
One of today’s modern technological wonders is the flat-panel liquid crystal display (LCD) screen, which is the key component we find inside televisions, computer monitors, smartphones, and an ever-proliferating range of gadgets that display information electronically.What most people don’t realize is how complex and sophisticated the manufacturing process is. The entire world’s supply is made within two time zones in East Asia. Unless, of course, the factory proposed by Foxconn for Wisconsin actually gets built.
Last week I had the opportunity to tour BOE Technology Group’s Gen 10.5 factory in Hefei, the capital of China’s Anhui Province.This was the third factory, or “fab” that Beijing-based BOE built in Hefei alone, and in terms of capability, it is now the most advanced in the world.BOE has a total of 12 fabs in Beijing, Chongqing, and several other major cities across China; this particular factory was named Fab 9.
Liquid crystal display (LCD) screens are manufactured by assembling a sandwich of two thin sheets of glass.On one of the sheets are transistor “cells” formed by first depositing a layer of indium tin oxide (ITO), an unusual metal alloy that you can actually see through.That’s how you can get electrical signals to the middle of a screen.Then you deposit a layer of silicon, followed by a process that builds millions of precisely shaped transistor parts.This patterning step is repeated to build up tiny little cells, one for each dot (known as a pixel) on the screen.Each step has to be precisely aligned to the previous one within a few microns.Remember, the average human hair is 40 microns in diameter.
On the other sheet of glass, you make an array of millions of red, green, and blue dots in a black matrix, called a color filter array (CFA).This is how you produce the colors when you shine light through it.Then you drop tiny amounts of liquid crystal material into the cells on the first sheet and glue the two sheets together.You have to align the two sheets so the colored dots sit right on top of the cells, and you can’t be off by more than a few microns in each direction anywhere on the sheet.The sandwich is next covered with special sheets of polarizing film, and the sheets are cut into individual “panels” – a term that is used to describe the subassembly that actually goes into a TV.
For the sake of efficiency, you would like to make as many panels on a sheet as possible, within the practical limitations of how big a sheet you can handle at a time.The first modern LCD Fabs built in the early 1990s made sheets the size of a single notebook computer screen, and the size grew over time. A Gen 5 sheet, from around 2003, is 1100 x 1300 mm, while a Gen 10.5 sheet is 2940 x 3370 mm (9.6 x 11 ft).The sheets of glass are only 0.5 - 0.7 mm thick or sometimes even thinner, so as you can imagine they are extremely fragile and can really only be handled by robots.The Hefei Gen 10.5 fab is designed to produce the panels for either eight 65 inch or six 75 inch TVs on a single mother glass.If you wanted to make 110 inch TVs, you could make two of them at a time.
The fab is enormous, 1.3 km from one end to the other, divided into three large buildings connected by bridges.LCD fabs are multi-story affairs.The main equipment floor is sandwiched between a ground floor that is filled with chemical pipelines, power distribution, and air handling equipment, and a third floor that also has a lot of air handling and other mechanical equipment.The main equipment floor has to provide a very stable environment with no vibrations, so an LCD fab typically uses far more structural steel in its construction than a typical skyscraper.I visited a Gen 5 fab in Taiwan in 2003, and the plant manager there told me they used three times as much structural steel as Taipei 101, which was the world’s tallest building from 2004- 2010.Since the equipment floor is usually one or two stories up, there are large loading docks on the outside of the building.When they bring the manufacturing equipment in, they load it onto a platform and hoist it with a crane on the outside of the building.That’s one way to recognize an LCD fab from the outside – loading docks on high floors that just open to the outdoors.
LCD fabs have to maintain strict standards of cleanliness inside.Any dust particles in the air could cause defects in the finished displays – tiny dark spots or uneven intensities on your screen.That means the air is passed through elaborate filtration systems and pushed downwards from the ceiling constantly.Workers have to wear special clean room protective clothing and scrub before entering to minimize dust particles or other contamination.People are the largest source of particles, from shedding dead skin cells, dust from cosmetic powders, or smoke particles exhaled from the lungs of workers who smoke.Clean rooms are rated by the number of particles per cubic meter of air.A class 100 cleanroom has less than 100 particles less than 0.3 microns in diameter per cubic meter of air, Class 10 has less than 10 particles, and so on. Fab 9 has hundeds of thousands of square meters of Class 100 cleanroom, and many critical areas like photolithography are Class 10.In comparison, the air in Harvard Square in Cambridge, MA is roughly Class 8,000,000, and probably gets substantially worse when an MBTA bus passes through.
Since most display manufacturing has to be done in a cleanroom and handling the glass requires such precision, the factory is heavily automated.As you watch the glass come in, it is placed into giant cassettes by robot handlers, and the cassettes are moved around throughout the factory.At each step, robots lift a piece of glass out of the cassette, and position it for the processing machines.Some of the machines, like the ones that deposit silicon or ITO, orient the glass vertically, and put them inside an enormous vacuum chamber where all the air is first pumped out before they can go to work.And then they somehow manage to deposit micrometer thin layers that are extremely uniform.It is a miracle that any of this stuff actually works.
The Hefei Gen 10.5 is one of the most sophisticated manufacturing plants in the world.On opening day for the fab, BOE shipped panels to Sony, Samsung Electronics, LG Electronics, Vizio, and Haier.So if you have a new 65 or 75-inch TV, there is some chance the LCD panel came from here.