Hisense UR9S is without doubt a show of force from the Chinese manufacturer when it comes to luminance. On a synthetic test pattern the panel hit as much as 2600 nits, which is an impressive result. But it’s important to clearly separate laboratory results from filmic realities. In real-world content the UR9S behaves much more restrained. Peak brightness in balanced scenes hovers around 1500 nits. In demanding, dark shots, where algorithms must both preserve deep blacks and precisely light small details, brightness can fall drastically, even to around 400 nits. The discrepancy between the chart and reality is therefore huge. This is a direct consequence of conservative local dimming behaviour. When a bright object occupies a large part of the frame, the system can easily maintain a high brightness level. However, in night scenes the priority becomes protecting blacks and fighting halo artefacts (unsightly glows around bright edges). To avoid contrast degradation the TV drastically limits light output. Even so, the UR9S can still produce a very powerful, engaging HDR effect that impresses in bright, spectacular sequences.
Colour gamut coverage
On test patterns the Hisense UR9S performs excellently in terms of colour. DCI-P3 coverage is almost 100%, and the wide BT.2020 as much as 93%. Those are figures even the best QD-OLED TVs don't reach. But again, synthetic measurements are one thing, films and series are another. In real-world scenes the figures dropped to 93% for DCI-P3 and 81% for BT.2020. That’s still a great result, but the advantage of RGB Mini LED is no longer as dramatic as manufacturers promise in marketing materials. One could even say their capability is now close to that of quantum-dot-equipped TVs, the so-called QLEDs. So why is that? To a large extent, colour reproduction here depends on the way the backlight zones operate. When a strongly saturated colour appears next to white or another, more complex element, a single zone must handle both parts of the image at once. Under such conditions the backlight can't maintain extreme saturation of a given colour on the screen, because the emitted light takes on a character closer to white. In the UR9S this has been refined quite well, but still not enough for the TV to maintain such high colour saturation in every situation.
The Samsung QN80H is undoubtedly a bright TV. In synthetic tests it exceeds the 1000‑nit mark, which on paper already promises a solid HDR effect. In practice the screen really shows its stuff, although it can't always fully spread its wings (or its backlight 🤔). The best impression comes from bright, wide shots. Sunlit landscapes or heavily lit scenes look really good on it. Brightness then sits around 700 nits, which delivers a noticeable step up compared with standard SDR. Problems start in dark scenes with small, pinpoint highlights. The QN80H tends to dim those aggressively to protect black depth at all costs. On one hand you get better contrast, on the other... you lose dynamics and the sparkle of fine HDR detail. The TV therefore has plenty of potential, but the local‑dimming algorithm can be too restrictive.
Colour‑gamut coverage
Colour-wise it’s also good. The QN80H uses quantum‑dot technology, and in our measurements it covered 93% of the DCI‑P3 colour space and about 70% of BT.2020. Those results won't drop anyone's jaw today, but in real‑world use they’re more than enough to deliver a vivid and natural picture for most films and series. Colours are suitably saturated and, after proper tuning, they don't look artificial or overly aggressive.