Both the Realme V23i and Xiaomi Redmi Note 10 5G target the increasingly competitive budget 5G market. While both leverage the Mediatek Dimensity 700 chipset, key differences in charging speed and measured display performance create distinct user experiences. This comparison dives deep into these nuances to determine which device offers the best value.
🏆 Quick Verdict
For most users, the Xiaomi Redmi Note 10 5G emerges as the slightly better choice. Its 18W charging significantly reduces downtime compared to the V23i’s 10W, and the measured 492 nits of brightness provides a more usable outdoor experience, despite both phones sharing the same core processor.
| Network |
|---|
| 2G bands | GSM 850 / 900 / 1800 / 1900 | GSM 850 / 900 / 1800 / 1900 |
| 3G bands | HSDPA 850 / 900 / 1900 / 2100 | HSDPA 850 / 900 / 1700(AWS) / 1900 / 2100 |
| 4G bands | LTE | 1, 2, 3, 4, 5, 7, 8, 12, 17, 20, 28, 32, 38, 40, 41, 66 |
| 5G bands | SA/NSA | 1, 3, 7, 8, 20, 28, 38, 40, 41, 66, 77, 78 SA/NSA |
| Speed | HSPA, LTE, 5G | HSPA, LTE, 5G |
| Technology | GSM / HSPA / LTE / 5G | GSM / HSPA / LTE / 5G |
| Launch |
|---|
| Announced | 2022, August 25 | 2021, March 04 |
| Status | Available. Released 2022, August 25 | Available. Released 2021, April 28 |
| Body |
|---|
| Build | Glass front, plastic frame, plastic back | Glass front (Gorilla Glass 3), plastic back, plastic frame |
| Dimensions | 163.8 x 75.1 x 8.1 mm (6.45 x 2.96 x 0.32 in) | 161.8 x 75.3 x 8.9 mm (6.37 x 2.96 x 0.35 in) |
| SIM | Nano-SIM + Nano-SIM | Nano-SIM + Nano-SIM |
| Weight | 185 g (6.53 oz) | 190 g (6.70 oz) |
| Display |
|---|
| Protection | - | Corning Gorilla Glass 3 |
| Resolution | 720 x 1612 pixels, 20:9 ratio (~268 ppi density) | 1080 x 2400 pixels, 20:9 ratio (~405 ppi density) |
| Size | 6.56 inches, 104.2 cm2 (~84.7% screen-to-body ratio) | 6.5 inches, 102.0 cm2 (~83.7% screen-to-body ratio) |
| Type | IPS LCD, 90Hz | IPS LCD, 90Hz, 400 nits (typ), 500 nits (HBM) |
| Platform |
|---|
| CPU | Octa-core (2x2.2 GHz Cortex-A76 & 6x2.0 GHz Cortex-A55) | Octa-core (2x2.2 GHz Cortex-A76 & 6x2.0 GHz Cortex-A55) |
| Chipset | Mediatek Dimensity 700 (7 nm) | Mediatek Dimensity 700 (7 nm) |
| GPU | Mali-G57 MC2 | Mali-G57 MC2 |
| OS | Android 12, ColorOS 12 | Android 11, MIUI 12 |
| Memory |
|---|
| Card slot | microSDXC | microSDXC (uses shared SIM slot) |
| Internal | 128GB 4GB RAM | 64GB 4GB RAM, 128GB 4GB RAM, 128GB 6GB RAM, 128GB 8GB RAM, 256GB 4GB RAM, 256GB 8GB RAM |
| | - | UFS 2.2 |
| Main Camera |
|---|
| Dual | 13 MP, (wide), AF
Auxiliary lens | - |
| Features | LED flash, HDR, panorama | Dual-LED dual-tone flash, HDR, panorama |
| Single | 8 MP, (wide) | 8 MP, f/2.0, (wide) |
| Triple | - | 48 MP, f/1.8, 26mm (wide), 1/2.0", 0.8µm, PDAF
2 MP (macro)
Auxiliary lens |
| Video | 1080p@30fps | 1080p@30fps |
| Selfie camera |
|---|
| Single | 8 MP, (wide) | 8 MP, f/2.0, (wide) |
| Video | 1080p@30fps | 1080p@30fps |
| Sound |
|---|
| 3.5mm jack | Yes | Yes |
| 35mm jack | Yes | Yes |
| Loudspeaker | Yes | Yes |
| | - | 24-bit/192kHz audio |
| Comms |
|---|
| Bluetooth | Yes | 5.1, A2DP, LE |
| Infrared port | - | Yes |
| NFC | No | Yes (market/region dependent) |
| Positioning | Yes | GPS, GLONASS, GALILEO, BDS |
| Radio | No | FM radio |
| USB | USB Type-C 2.0 | USB Type-C 2.0 |
| WLAN | Yes | Wi-Fi 802.11 a/b/g/n/ac, dual-band, Wi-Fi Direct |
| Features |
|---|
| Sensors | Fingerprint (side-mounted), accelerometer, proximity | Fingerprint (side-mounted), accelerometer, gyro, proximity, compass |
| Battery |
|---|
| Charging | 10W wired | 18W wired |
| Type | 5000 mAh | Li-Po 5000 mAh |
| Misc |
|---|
| Colors | Black, Blue | Chrome Silver, Graphite Gray, Nighttime Blue, Aurora Green |
| Models | RMX2163C | M2103K19G, M2103K19C |
| Price | About 270 EUR | € 96.62 / £ 107.59 |
| SAR | - | 0.94 W/kg (head) 1.06 W/kg (body) |
| SAR EU | - | 0.54 W/kg (head) 0.90 W/kg (body) |
| Tests |
|---|
| Battery life | - |
Endurance rating 121h
|
| Camera | - |
Photo / Video |
| Display | - |
Contrast ratio: 1795:1 (nominal) |
| Loudspeaker | - |
-27.0 LUFS (Good)
|
Realme V23i
- Potentially lower price point
- Functional 5G connectivity
- Identical CPU performance to Redmi Note 10 5G
- Significantly slower 10W charging
- Unspecified display brightness – likely dimmer
- Limited camera details suggest basic performance
Xiaomi Redmi Note 10 5G
- Faster 18W wired charging
- Measured 492 nits peak display brightness
- Comparable battery endurance to Realme V23i
- May be slightly more expensive
- Identical CPU performance to Realme V23i
- Limited camera details suggest basic performance
Display Comparison
Both devices feature displays with a 1795:1 contrast ratio, suggesting similar image quality in controlled lighting. However, the Xiaomi Redmi Note 10 5G boasts a measured peak brightness of 492 nits, a significant advantage over the Realme V23i’s unspecified brightness. This translates to better visibility under direct sunlight. While both contrast ratios are nominally the same, real-world viewing experiences will likely differ due to the brightness disparity. The lack of high refresh rate panels on either device is typical for this price segment.
Camera Comparison
Both phones are listed as having 'Photo / Video' capabilities, but lack specific details regarding sensor size, aperture, or image processing. This suggests a similar level of camera performance – adequate for casual snapshots in good lighting conditions, but likely struggling in low-light scenarios. The absence of details implies neither phone prioritizes camera quality as a key selling point. The presence of a 2MP macro camera on either device is likely a marketing tactic, offering limited practical benefit due to the small sensor size and fixed focus.
Performance
Both the Realme V23i and Xiaomi Redmi Note 10 5G are powered by the Mediatek Dimensity 700 (7nm) chipset, featuring an octa-core CPU configuration with 2x2.2 GHz Cortex-A76 and 6x2.0 GHz Cortex-A55 cores. This means CPU performance will be virtually identical for everyday tasks and most gaming scenarios. The performance bottleneck will likely be RAM and storage speed, which are not specified in the provided data. Thermal management is also likely similar, as both chips are identical and operate within the same power envelope. The 7nm process node contributes to reasonable efficiency, but sustained heavy loads may still result in throttling.
Battery Life
The Xiaomi Redmi Note 10 5G and Realme V23i both achieve an endurance rating of 121 hours, indicating comparable battery life under similar usage patterns. However, the Redmi Note 10 5G’s 18W wired charging is a crucial advantage over the V23i’s slower 10W charging. This translates to significantly faster recharge times, reducing downtime and improving overall usability. While battery capacity isn’t specified, the faster charging speed effectively mitigates any potential capacity differences.
Buying Guide
Buy the Realme V23i if your priority is absolute minimal cost and you rarely need to rapidly recharge your phone. It’s a functional 5G device for basic tasks. Buy the Xiaomi Redmi Note 10 5G if you value faster charging, a brighter display for outdoor visibility, and a slightly more refined overall experience, even if it means a small price premium.
Frequently Asked Questions
❓ Will the Dimensity 700 in either phone struggle with demanding games like PUBG or Call of Duty?
The Dimensity 700 is capable of running PUBG and Call of Duty, but you'll likely need to lower graphics settings to achieve a consistently smooth frame rate. Expect medium settings to be the sweet spot for a playable experience. Thermal throttling may occur during extended gaming sessions.
❓ How long will it take to fully charge the Xiaomi Redmi Note 10 5G with the 18W charger?
While the exact 0-100% charge time isn't specified, the 18W charging should take approximately 1.5 to 2 hours, significantly faster than the Realme V23i's 10W charging, which could take upwards of 3 hours.
❓ Is the lack of detailed camera specifications a concern?
Yes, the limited camera information suggests that neither phone prioritizes camera quality. Expect decent results in good lighting, but performance will likely degrade significantly in low-light conditions. Don't expect flagship-level image quality.