Motorola Moto G85 alternatives
Tap above to see alternatives.
Vivo T3 Pro alternatives
Tap above to see alternatives.
Motorola Moto G85

Motorola Moto G85
-
Snapdragon 6s Gen 3
6 nm
-
5000 mAh
33W
-
6.67"
1080x2400 pixels
-
50 MP
1080p@30/60fps
-
Specs
Vivo T3 Pro

Vivo T3 Pro
-
Snapdragon 7 Gen 3
4 nm
-
5500 mAh
80W
-
6.77"
1080x2392 pixels
-
50 MP
4K@30/60fps
-
Specs
2x2.2 GHz Kryo 660 Gold
6x1.7 GHz Kryo 660 Silver
1x2.63 GHz Cortex-A715
3x2.4 GHz Cortex-A715
4x1.8 GHz Cortex-A510
8GB 256GB (UFS 2.2)
12GB 256GB (UFS 2.2)
8GB 256GB (UFS 2.2)
f/1.8 (wide), 1/1.95", 0.8µm, PDAF, OIS
8 MP
f/2.2, 118˚ (ultrawide), 1.12µm, AF
f/1.8, (wide), 1/1.95", 0.8µm, PDAF, OIS
8 MP
f/2.2, 120˚ (ultrawide)
1080p
f/2.4, (wide), 0.7µm
f/2.5, (wide), 1/3.0", 1.0µm
SIM1: Nano, SIM2: Nano
SIM1: Nano, SIM2: Nano
FDD: N1, N3, N5, N7, N8, N20, N28
TDD: N38, N40, N41, N77, N78
FDD: N1, N3, N5, N8, N28
TDD: N40, N77, N78
FDD: N1, N3, N5, N7, N8, N20, N28
TDD: N38, N40, N41, N77, N78
FDD: N1, N3, N5, N8, N28
TDD: N40, N77, N78
In this performance comparison, the Vivo T3 Pro with its Qualcomm Snapdragon 7 Gen 3 (4nm) performs better than the Motorola Moto G85 with the Qualcomm Snapdragon 6s Gen 3 (6nm), thanks to superior chipset efficiency.
Both Motorola Moto G85 and Vivo T3 Pro offer the same software support — 2 years of OS updates and 3 years of security updates.
Both Motorola Moto G85 and Vivo T3 Pro feature AMOLED displays, offering vibrant colors and deeper blacks. Both smartphones offer the same 120 Hz refresh rate. Vivo T3 Pro also boasts a brighter screen with 4500 nits of peak brightness, enhancing outdoor visibility. Both phones have the same screen resolution.
Vivo T3 Pro features a larger 5500 mAh battery, potentially delivering better battery life. Vivo T3 Pro also supports faster wired charging at 80W, compared to 33W on Motorola Moto G85.
Vivo T3 Pro offers better protection against water and dust with an IP64 rating.
- Motorola Moto G85 – Check price here
- Vivo T3 Pro – Check price here
¹ Scores can vary even with the same chipset due to RAM, thermals, and software optimization.