The Hisense UR9S is without a doubt a show of strength from the Chinese manufacturer when it comes to luminance. On a synthetic test pattern the panel reached as much as 2600 nits, which is an impressive result. But you have to clearly separate lab results from film realities. In real material the UR9S behaves much more restrained. Peak brightness in balanced scenes hovers around 1500 nits. In demanding, dark shots—where the algorithms must at the same time preserve deep blacks and precisely light small details—brightness can drop drastically, even down to around 400 nits. The gap between the chart and reality is therefore huge. This is a direct consequence of conservative local-dimming behavior. When a bright object occupies a large portion of the frame, the system can easily maintain a high luminance. But in night scenes the priority becomes protecting black levels and fighting the halo effect (unsightly glows around bright edges). To avoid degrading contrast, the TV drastically limits its light output. Even so, the UR9S can still produce a very powerful, engaging HDR effect that impresses in bright, spectacular sequences.
Color gamut coverage
On test patterns the Hisense UR9S performs excellently in terms of color. DCI-P3 coverage is nearly 100%, and BT.2020 coverage reaches 93%. Those are figures even the best QD-OLED TVs don't achieve. But again, synthetic measurements are one thing and movies and series are another. In real-world scenes the numbers fell to 93% for DCI-P3 and 81% for BT.2020. That's still great, but the advantage of RGB Mini LED is no longer as dramatic as manufacturers promise in marketing materials. You could even say their capability is now close to TVs equipped with quantum dots, the so-called QLEDs. Why does this happen? Largely, color reproduction depends on how the local dimming zones operate. When a highly saturated color appears next to white or another, more complex element, a single zone must handle both parts of the image at once. Under those conditions the backlight cannot maintain extreme saturation of a given color on the screen, because the emitted light takes on a character closer to white. Hisense refined this quite well in the UR9S, but still not enough for the TV to sustain such high color saturation in every situation.
In terms of brightness the Samsung R95H shows that we’re still dealing with a top-tier TV, although the results aren’t always as spectacular as you might expect from a flagship Micro RGB model. In synthetic tests the TV can exceed 2,400 nits, so it definitely has plenty of headroom. Importantly, it can sustain high brightness even when bright elements occupy a larger portion of the screen. In real movie scenes the situation is a bit more complex. The R95H most often reaches around 1,000 to 1,400 nits, which still delivers a very good, strong HDR effect. Bright sunlight, reflections, or lights can look truly impressive, and the TV has enough power for HDR to be clearly distinguishable from regular SDR.
The problem appears mainly in very dark scenes with single, small light sources. Here the local dimming algorithm favors deep blacks and reducing the halo over maximizing the brightness of such elements. As a result, small lights can be noticeably dimmed. Overall HDR performs well, but not without limitations. The R95H has huge brightness headroom, especially in larger and brighter parts of the image, but in difficult, dark scenes its capabilities are mainly limited by how the local dimming operates.
Colors
Colors were meant to be the biggest revolution enabled by the RGB backlight, and the R95H does show considerable potential here. The assessment is not, however, as simple as synthetic measurements might suggest. On test charts the TV performs superbly. BT.2020 coverage reaches almost 94%, and DCI-P3 98%, so especially strongly saturated reds and greens can look really impressive. The picture changes a bit when, instead of test charts, we start measuring real movie scenes. Then BT.2020 coverage drops to about 87% and DCI-P3 to 93%. It seems that with more complex imagery the RGB zones are not always able to maintain the same high color saturation as on simple charts. They are still saturated, but the advantage of the new backlight is no longer as large as the manufacturer's numbers might suggest.