Moto G96 alternatives
Tap above to see alternatives.
Samsung Galaxy A54 alternatives
Tap above to see alternatives.
Samsung Galaxy A54
Samsung Galaxy A54
-
Exynos 1380
5 nm
-
5000 mAh
25W
-
6.4"
1080 x 2340 pixels
-
50 MP
4K@30fps
- Specs
4x2.40 GHz Cortex-A78
4x1.95 GHz Cortex-A55
4x2.4 GHz Cortex-A78
4x2.0 GHz Cortex-A55
8GB 256GB (UFS 2.2)
8GB 128GB (UFS 2.2)
f/1.9, (wide), 1/1.56", 1.0µm, Sony LYT-700C, multi-directional PDAF, OIS
8 MP
f/2.2, 119˚ (ultrawide), 1/4.0", 1.12µm, AF
f/1.8, (wide), 1/1.56", 1.0µm, PDAF, OIS
12 MP
f/2.2, 123˚ (ultrawide), 1.12µm
5 MP
f/2.4, (macro)
1080p@30/60/120fps, gyro-EIS, OIS
1080p@30/60fps
720p@480fps
f/2.2, (wide), 1/3.14", 0.7µm
f/2.2, 26mm (wide), 1/2.8", 0.8µm
1080p@30fps, gyro-EIS
1080p@30/60fps
SIM1: Nano, SIM2: Nano
SIM1: Nano, SIM2: Nano
13 5G bands
n1, n3, n5, n7, n8, n20, n26, n28, n38, n40, n41, n77, n78
9 5G bands
n1, n3, n7, n8, n28, n40, n41, n77, n78
In this performance comparison, the Samsung Galaxy A54 with its Exynos 1380 (5nm) performs better than the Moto G96 with the Qualcomm Snapdragon 7s Gen 2 (4nm), thanks to superior chipset efficiency.
Samsung Galaxy A54 launched with Android 13 and will receive updates until Android 17, whereas Moto G96 launched with Android 15 and will get Android 16. Both phones are expected to receive security updates until around 2028.
Both Moto G96 and Samsung Galaxy A54 feature AMOLED displays, offering vibrant colors and deeper blacks. In terms of smoothness, Moto G96 offers a higher 144 Hz refresh rate, ensuring fluid scrolling and animations. Moto G96 also boasts a brighter screen with 1600 nits of peak brightness, enhancing outdoor visibility. Both phones have the same screen resolution.
Moto G96 comes with a larger 5500 mAh battery, which may offer longer usage on a single charge. Moto G96 also supports faster wired charging at 33W, compared to 25W on Samsung Galaxy A54.
Moto G96 offers better protection against water and dust with an IP68 rating.
¹ Scores can vary even with the same chipset due to RAM, thermals, and software optimization.