Oppo has launched a new phone accessory in China called the Oppo Bubble, and it’s surprisingly versatile. It functions like a selfie tool, while also being a tiny rear display, a playful phone add-on, and a fun accessory in general. All of this would have it dominate tech TikTok a few years ago.
Announced alongside the Reno 16 series, the Bubble is a compact magnetic circular display that attaches to the back of supported Oppo smartphones. The tiny gadget basically acts like a secondary screen that helps in taking better selfies, which is honestly handy. It is small, light, and customizable, while also upgrading your selfies or group photos thanks to the better rear cameras. You’d usually have to guess the framing with your rear cameras, but this just makes it work.
Oppo
What all can it do?
The Oppo Bubble has a circular AMOLED touchscreen that can show static wallpapers, live photos, videos, emojis, decorative themes, and carousel-style media playback. Meaning, the gadget isn’t limited to just being a selfie accessory. Though, the wireless camera preview is undoubtedly the most practical feature.
When the Bubble is attached, users can preview framing, adjust angles, and trigger shots remotely. Oppo claims that the Bubble supports wireless live preview from up to 10 meters away, which could make it useful for tripod shots, group photos, or anyone who has ever done the awkward “set timer, sprint into frame, hope for the best” routine.
Oppo
Useful and still light
The good news is that Oppo did not make this thing absurdly chunky. The Bubble measures about 7mm thick and weighs around 27.5 grams, so it should not turn a phone into a pocket dumbbell. It also has a built-in 550mAh battery, pairs without cables, and can be detected automatically by compatible Oppo phones when brought nearby.
You can even use it as a standalone hanging display accessory when paired with a compatible protective case. The Oppo Bubble is priced at 499 yuan, or roughly $75, in China. Current compatibility includes the Oppo Reno 16 series, Reno 15 series, Reno 14 series, Find X8 series, and Find X9 series.
Oppo
Looking at how impressive some of its latest flagship camera phones have been, owners of those devices can have a really great experience with accessories like these. Not everyone needs a tiny magnetic selfie screen on the back of their phones, but vloggers, selfies addicts, and people who love fun tech would definitely see the appeal here.
Modern displays are amazing when it comes to detail, brightness, color, and all the ingredients that make for an impressive picture—except motion clarity.
CRT screens are still the king of motion clarity, but plasma flat-panel screens hold a respectable second place, and in many ways I still miss my old 720p 51-inch plasma TV and the crisp motion I gave up by switching to a 4K LCD.
Plasma solved motion the “right” way
Plasma displays didn’t just show an image—they flashed it.
While they operate on different principles, CRTs and plasma TVs have a few things in common. First, the phosphors used by CRTs and plasma displays are the same. Second, because these phosphors fade quickly, they need to be continuously refreshed.
In a CRT, the electron beam scanning from the top to the bottom of the screen achieves this, and in a plasma, a high-speed electric pulse does the same. Because of this rapid pulse-and-fade, these screen technologies have crisp perceptual motion, since our brains tend to interpret moving images that don’t pulse as “smearing” across our retinas.
The pulsing nature of plasma technology isn’t the only reason for its better motion reproduction. These screens also have very low latency and very fast pixel response times. Combined, it’s not quite as good as CRT motion handling, but it’s significantly better than LCD and OLED technology, even today.
Modern TVs rely on sample-and-hold—and that’s the problem
Stand and deliver blurry images
Modern LCD and OLED televisions are “sample and hold” technologies. They can hold each frame of video perfectly for the entire duration of that frame without deviating in brightness and then instantly snap to the next frame without any dipping to black in-between.
On paper, this sounds like a good thing, but your eyes don’t stay still when tracking motion. As they follow a moving object, the image being held on screen effectively drags across your retina, creating the perception of blur. Even if the panel itself is perfectly sharp.
You might not even realize how blurry motion is on modern displays if all you’ve ever seen with the naked eye is an LCD or plasma. However, if you see a CRT or plasma in person, the difference is quite striking.
The sample and hold issue means that no matter how much you increase the refresh rate, that type of blur persists. It’s why my 85Hz CRT monitor is clearly less blurry in motion than my 240Hz LCD monitor. It’s especially apparent when you’re playing 2D games that scroll the entire screen, with LCDs or OLEDs smearing the image in a way that gives me a bit of a headache if I’m being honest.
Credit: Sydney Louw Butler/Shutterstock.com
It creates this weird situation where a modern TV can be incredibly sharp in a freeze frame but somehow look softer than a lower-resolution display that isn’t sample and hold as soon as you press play.
Motion interpolation is a workaround, not a solution
It’s an abomination, that’s what it is
One of the “fixes” that TV makers came up with to reduce unwanted motion blur is a technology known as frame interpolation, or more commonly “motion smoothing.” Here an algorithm creates fake frames that guess at what the middle step of motion would look like if it were captured. This creates a high frame-rate video output, which we see as smoother and more crisp.
While this doesn’t take away sample-and-hold blur, it does improve motion clarity. Unfortunately, it also destroys the intended frame rate that shows and movies were meant to be seen at. It’s also useless for video games, because it introduces an enormous amount of input lag. NVIDIA’s DLSS technology is also frame interpolation, but it works for games because of several mitigations NVIDIA put into the technology. These measures don’t exist on TVs.
While some people think motion smoothing isn’t all bad, TV makers are no longer activating it by default as much anymore, and my advice is to always turn it off because the trade-offs are just not worth it.
7/10
Brand
TCL
Display Size
85-inches
The 2025 model TCL QM6K Google TV delivers a stunningly clear and bright picture with a new Mini-LED panel, improved local dimming zones, Dolby Vision IQ, and a neat new Halo Control system for improved visuals. Get this TV and elevate your living room.
Black frame insertion tries to recreate plasma—but comes with trade-offs
Who turned out the lights?
The other trick sample-and-hold screens have to mimic what CRTs and plasma TVs do naturally is called BFI, or Black Frame Insertion. As the name suggests, the display inserts a full black frame between every original frame. This provides an instant and dramatic increase in motion clarity. However, it also has a big impact on brightness. As much as half of the light is now gone, so the image is much dimmer. Pushing overall brightness to compensate makes things hotter and more energy-hungry.
Some BFI implementations cause visible flicker, for which I personally have no tolerance at all, but the biggest problem here is that BFI doesn’t have the smooth pulsing roll off of the phosphors used in CRTs and plasma.
The future might circle back—but we’re not there yet
That might be changing, however, because a new generation of LCDs can leverage the power of multi-zone backlight technology to strobe the backlight across the screen in a way that mimics a CRT scanline.
NVIDIA’s G-SYNC Pulsar has received rave reviews from the biggest motion blur haters, and I sincerely hope that a similar technology becomes standard in TVs going ahead, so we can go back to enjoying the crisp motion we used to have without all the compromises.
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