Vivo T3x alternatives
Tap above to see alternatives.
Redmi Note 14 Pro+ alternatives
Tap above to see alternatives.
Redmi Note 14 Pro+

Redmi Note 14 Pro+
-
Snapdragon 7s Gen 3
4 nm
-
6200 mAh
90W
-
6.67"
1220 x 2712 pixels
-
50 MP
4K@24/30fps
-
Specs
4x2.2 GHz Cortex-A78
4x1.8 GHz Cortex-A55
1x2.5 GHz Cortex-A720
3x2.4 GHz Cortex-A720
4x1.8 GHz Cortex-A520
6GB 128GB (UFS 2.2)
8GB 128GB (UFS 2.2)
8GB 256GB (UFS 2.2)
8GB 256GB (UFS 2.2)
12GB 512GB (UFS 2.2)
f/1.8, (wide), PDAF
2 MP
f/2.4, (depth)
f/1.6, (wide), 1/1.55", 1.0µm, PDAF, OIS
50 MP
f/2.0, 60mm (telephoto), PDAF (50cm - ∞), 2.5x optical zoom
8 MP
f/2.2, 120˚ (ultrawide), 1/4.0", 1.12µm
1080p@30fps
1080p@30/60/120fps
f/2.1, (wide)
f/2.2, (wide), 1/4.0", 0.7µm
SIM1: Nano, SIM2: Nano (Hybrid)
SIM1: Nano, SIM2: Nano
8 5G bands
n1, n3, n5, n8, n28, n40, n77, n78
10 5G bands
n1, n3, n5, n8, n28, n38, n40, n41, n77, n78
In this performance comparison, the Redmi Note 14 Pro+ with its Qualcomm Snapdragon 7s Gen 3 (4nm) performs better than the Vivo T3x with the Qualcomm Snapdragon 6 Gen 1 (4nm), thanks to superior chipset efficiency.
Redmi Note 14 Pro+ offers 3 years of OS updates, whereas Vivo T3x provides 2 years. For security updates, Redmi Note 14 Pro+ offers 4 years of support compared to Vivo T3x's 3 years.
Redmi Note 14 Pro+ features a superior AMOLED display, while Vivo T3x comes with an LCD panel. Both smartphones offer the same 120 Hz refresh rate. Redmi Note 14 Pro+ also boasts a brighter screen with 3000 nits of peak brightness, enhancing outdoor visibility. Notably, Redmi Note 14 Pro+ offers a higher screen resolution, resulting in sharper visuals and more detailed content.
Redmi Note 14 Pro+ features a larger 6200 mAh battery, potentially delivering better battery life. Redmi Note 14 Pro+ also supports faster wired charging at 90W, compared to 44W on Vivo T3x.
Redmi Note 14 Pro+ offers better protection against water and dust with an IP69 rating.
- Vivo T3x – Check price here
- Redmi Note 14 Pro+ – Check price here
¹ Scores can vary even with the same chipset due to RAM, thermals, and software optimization.