Motorola Razr Ultra 2025 vs Honor Magic V3: A Deep Dive into Foldable Flagships

The foldable phone market is heating up, with Motorola and Honor both vying for dominance. The Motorola Razr Ultra 2025 arrives with Qualcomm’s cutting-edge Snapdragon 8 Elite, promising a performance leap, while the Honor Magic V3 leverages the established Snapdragon 8 Gen 3. This comparison dissects these two devices, focusing on where their architectural choices translate into real-world benefits for users.
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🏆 Quick Verdict

For users prioritizing raw processing power and future-proofing, the Motorola Razr Ultra 2025 emerges as the winner. Its Snapdragon 8 Elite chipset, built on a 3nm process, offers a significant architectural advantage over the Honor Magic V3’s 4nm Snapdragon 8 Gen 3. However, the Magic V3’s superior battery life in active use makes it a strong contender for power users.

PHONES
Phone Names Motorola Razr Ultra 2025 Honor Magic V3
Network
2G bandsGSM 900 / 1800 / 1900GSM 850 / 900 / 1800 / 1900
3G bandsHSDPA 850 / 900 / 1700(AWS) / 1900 / 2100HSDPA 800 / 850 / 900 / 1700(AWS) / 1900 / 2100
4G bands1, 2, 3, 4, 5, 7, 8, 12, 13, 14, 17, 18, 19, 20, 25, 26, 28, 29, 30, 32, 34, 38, 39, 40, 41, 42, 43, 48, 66, 711, 2, 3, 4, 5, 7, 8, 12, 17, 18, 19, 20, 26, 28, 34, 38, 39, 40, 41, 66
5G bands1, 2, 3, 5, 7, 8, 12, 14, 20, 25, 26, 28, 29, 30, 38, 40, 41, 48, 66, 70, 71, 75, 77, 78 SA/NSA/Sub61, 3, 5, 8, 28, 38, 41, 77, 78 SA/NSA
SpeedHSPA, LTE, 5GHSPA, LTE, 5G
TechnologyGSM / HSPA / LTE / 5GGSM / CDMA / HSPA / CDMA2000 / LTE / 5G
Launch
Announced2025, April 242024, July 12
StatusAvailable. Released 2025, May 15Available. Released 2024, July 19
Body
BuildPlastic front (unfolded), glass front (folded, Gorilla Glass Ceramic), silicone polymer back (eco leather), aluminum frame (6000 series), hinge (stainless steel)Glass front, fiber-reinforced plastic back, aluminum frame
DimensionsUnfolded: 171.5 x 74 x 7.2 mmFolded: 88.1 x 74 x 15.7 mmUnfolded: 156.6 x 145.3 x 4.35 mm or 4.4 mmFolded: 156.6 x 74.0 x 9.2 mm or 9.3 mm
SIMNano-SIM + eSIM· Nano-SIM + eSIM· Nano-SIM + Nano-SIM
Weight199 g (7.02 oz)226 g or 230 g (7.97 oz)
Display
Protection-King Kong Rhinoceros
Resolution1224 x 2912 pixels (~464 ppi density)2156 x 2344 pixels (~402 ppi density)
Size7.0 inches, 106.7 cm2 (~84.1% screen-to-body ratio)7.92 inches, 201.6 cm2 (~88.6% screen-to-body ratio)
TypeFoldable LTPO AMOLED, 1B colors, 165Hz, Dolby Vision, HDR10+, 4500 nits (peak)Foldable LTPO AMOLED, 1B colors, HDR10+, Dolby Vision, 120Hz, 1800 nits (peak)
Platform
CPUOcta-core (2x4.32 GHz Oryon V2 Phoenix L + 6x3.53 GHz Oryon V2 Phoenix M)Octa-core (1x3.3 GHz Cortex-X4 & 3x3.2 GHz Cortex-A720 & 2x3.0 GHz Cortex-A720 & 2x2.3 GHz Cortex-A520)
ChipsetQualcomm SM8750-AB Snapdragon 8 Elite (3 nm)Qualcomm SM8650-AB Snapdragon 8 Gen 3 (4 nm)
GPUAdreno 830Adreno 750
OSAndroid 15Android 14, upgradable to Android 15, MagicOS 9
Memory
Card slotNoNo
Internal512GB 16GB RAM, 1TB 16GB RAM256GB 12GB RAM, 512GB 12GB RAM, 512GB 16GB RAM, 1TB 16GB RAM
Main Camera
Dual50 MP, f/1.8, 24mm (wide), 1/1.56", 1.0µm, multi-directional PDAF, OIS 50 MP, f/2.0, 12mm, 122˚ (ultrawide), 0.6µm, PDAF-
FeaturesLED flash, panorama, HDR, Pantone Validated Colour and Skin TonesLaser AF, LED flash, HDR, panorama
Triple-50 MP, f/1.6, 23mm (wide), 1/1.56", 1.0µm, PDAF, OIS 50 MP, f/3.0, 90mm (periscope telephoto), 1/2.51", 0.7µm, PDAF, OIS, 3.5x optical zoom 40 MP, f/2.2, 16mm, 112˚ (ultrawide), AF
Video8K@30fps, 4K@30/60/120fps, 1080p@30/60/120/240fps, Dolby Vision HDR, gyro-EIS4K@30/60fps (10-bit), 1080p@30/60fps, gyro-EIS, OIS
Selfie camera
FeaturesHDRHDR
Single50 MP, f/2.0, (wide), 0.64µm20 MP, f/2.2, 90˚, 21mm (wide), 0.61µm Cover camera: 20 MP, f/2.2, 90˚, 21mm (wide), 0.61µm
Video4K@30/60fps, 1080p@30/60fps4K@30fps, 1080p@30fps, gyro-EIS
Sound
35mm jackNoNo
Loudspeaker Yes, with stereo speakers (with Dolby Atmos)Yes, with stereo speakers
Comms
Bluetooth5.4, A2DP, LE, aptX HD, aptX Adaptive, aptX Lossless5.3, A2DP, LE, aptX HD, LDAC
Infrared port-Yes
NFCYesYes
PositioningGPS, GALILEO, GLONASS, BDS, QZSSGPS (L1+L5), GLONASS (L1), BDS (B1I+B1c+B2a), GALILEO (E1+E5a)
RadioNoNo
USBUSB Type-C, OTGUSB Type-C 3.1, OTG, Display Port 1.2
WLANWi-Fi 802.11 a/b/g/n/ac/6e/7, dual-band or tri-band (region dependent)Wi-Fi 802.11 a/b/g/n/ac/6e/7, dual-band, Wi-Fi Direct
Features
SensorsFingerprint (side-mounted), accelerometer, gyro, proximity, compass, barometerFingerprint (side-mounted), accelerometer, gyro, proximity, compass, barometer
Battery
Charging68W wired 30W wireless 5W reverse wired66W wired 50W wireless 5W reverse wired
Type4700 mAhSi/C Li-Ion 5150 mAh
Misc
ColorsPantone: Rio Red, Scarab, Mountain Trail, CabaretVelvet Black, Snow, Tundra Green, Red
Models-FCP-AN10, FCP-N49
Price$ 749.99€ 838.00 / $ 1,229.00 / £ 832.00

Motorola Razr Ultra 2025

  • Potentially superior performance with Snapdragon 8 Elite
  • More efficient 3nm process for better thermal management
  • Faster wired charging (68W)

  • Battery life is currently unknown and could be a weakness
  • Display specs are currently unavailable for detailed comparison

Honor Magic V3

  • Excellent battery life (10:05h active use)
  • High peak brightness (1076 nits)
  • Established image processing quality

  • Older 4nm Snapdragon 8 Gen 3 chipset
  • Slower wireless charging (50W)

Display Comparison

The Honor Magic V3 boasts a measured peak brightness of 1076 nits, a strong figure ensuring excellent visibility outdoors. While the Razr Ultra 2025’s display specs are currently unknown, Honor’s brightness level sets a high bar. Both devices likely employ LTPO technology for adaptive refresh rates, conserving battery life. The key difference will be color accuracy and calibration; Honor typically excels in this area, and the Razr Ultra 2025 will need to match or exceed that standard to compete. The foldable form factor itself introduces challenges in bezel minimization, and a close inspection of both devices will be crucial to determine which offers a more immersive viewing experience.

Camera Comparison

Without detailed camera specifications for the Razr Ultra 2025, a direct comparison is limited. However, both devices will likely feature multi-camera systems with a primary sensor, ultrawide, and telephoto lenses. The Honor Magic V3’s image processing is known for its vibrant colors and strong dynamic range. The Razr Ultra 2025 will need to offer comparable image quality, potentially leveraging computational photography advancements enabled by the Snapdragon 8 Elite’s ISP. The presence of Optical Image Stabilization (OIS) on the main sensors will be critical for sharp, blur-free photos and videos, especially in low-light conditions. We'll need to see sample images to assess the real-world performance of both systems.

Performance

The Motorola Razr Ultra 2025’s Qualcomm SM8750-AB Snapdragon 8 Elite chipset, built on a 3nm process, represents a significant architectural shift. Its octa-core CPU, featuring Oryon V2 Phoenix cores, promises substantial gains over the Honor Magic V3’s Snapdragon 8 Gen 3 (4nm). The Oryon cores are designed for higher single-core performance, crucial for responsive UI and app loading. While the Snapdragon 8 Gen 3 is no slouch, the 3nm node of the 8 Elite offers improved thermal efficiency, potentially leading to less throttling during sustained workloads. The Razr Ultra 2025 is poised to deliver a smoother, faster experience, particularly in demanding games and applications.

Battery Life

The Honor Magic V3 demonstrates a clear advantage in battery endurance, achieving a 10:05 hour active use score. While the Razr Ultra 2025’s battery capacity is unknown, the Magic V3’s score is a strong benchmark. The Magic V3 supports 66W wired charging, 50W wireless charging, and 5W reverse wired charging. The Razr Ultra 2025 offers 68W wired, 30W wireless, and 5W reverse charging. The slightly faster wired charging on the Razr Ultra 2025 is offset by the Magic V3’s superior battery life. The efficiency gains from the Snapdragon 8 Elite will need to be substantial to compensate for a potentially smaller battery capacity in the Razr Ultra 2025.

Buying Guide

Buy the Motorola Razr Ultra 2025 if you need the absolute fastest performance for demanding tasks like gaming, video editing, or running complex applications, and value the benefits of a newer chipset architecture. Buy the Honor Magic V3 if you prioritize all-day battery life and a consistently bright, high-quality display, even if it means sacrificing some peak processing power.

Frequently Asked Questions

❓ Will the Snapdragon 8 Elite in the Razr Ultra 2025 significantly improve gaming performance compared to the Snapdragon 8 Gen 3?
Yes, the Snapdragon 8 Elite’s Oryon V2 Phoenix cores are designed for higher single-core performance, which directly translates to smoother frame rates and faster loading times in games. The 3nm process also allows for sustained performance without significant throttling, providing a more consistent gaming experience.
❓ How much faster is the 68W charging on the Razr Ultra 2025 compared to the 66W charging on the Honor Magic V3 in real-world scenarios?
The difference in charging speed is likely to be marginal. While 2W may seem small, it could shave off a few minutes from a full charge. However, the Honor Magic V3’s larger battery capacity means it will still take longer to fully charge despite the slightly slower charging speed.
❓ Does the Honor Magic V3’s display support high PWM dimming rates to reduce screen flicker for sensitive users?
While not explicitly stated, Honor typically implements high PWM dimming rates in their flagship devices to minimize screen flicker. This makes the Magic V3 a potentially better choice for users who experience eye strain or headaches from lower PWM frequencies.
❓ What kind of thermal management solutions are employed in the Razr Ultra 2025 to handle the heat generated by the Snapdragon 8 Elite?
The 3nm process of the Snapdragon 8 Elite inherently generates less heat than the 4nm process of the Snapdragon 8 Gen 3. However, Motorola will likely incorporate advanced cooling solutions, such as vapor chambers or graphite sheets, to further dissipate heat and maintain optimal performance during prolonged use.