Xiaomi unveils new smartphone with a huge battery

Xiaomi has officially unveiled the Redmi Note 17 Pro Max 5G smartphone in the Japanese market, equipped with its largest-ever battery capacity of 10,000 mAh. One.uz reports.
A distinctive feature of the device is that, while engineers managed to fit such a large power source inside the body, they kept the phone's thickness at 8.57 mm and its weight at 229.5 grams. This news is expected to set new standards for battery life in the modern smartphone market.
Technical capabilities and performance The new smartphone's performance is powered by the Qualcomm Snapdragon 6 Gen 5 processor, and it runs on the latest Android 16 operating system. The device supports 100-watt fast charging technology, allowing the large-capacity battery to be charged in a short time.
In addition, with reverse charging of up to 27 watts, this smartphone can be used as an external power source for other gadgets. The model is equipped with a 6.83-inch OLED display, offering 1.5K image resolution and a 120 Hz refresh rate.
It is emphasized that image quality and color reproduction metrics are at a high level. As for photography capabilities, the main camera consists of 50 and 8 megapixel sensors, while the front camera has a resolution of 32 megapixels.
Protection and more affordable alternative models The manufacturer has also paid special attention to the device's durability. The body is designed in accordance with the IP68 international standard for protection against dust and moisture.
Xiaomi guarantees six years of security updates for this model. In the initial stage of sales in Japan, the smartphone's price is set at approximately $440.
At the same time, the company also showcased the Redmi 17 4G model for those who prefer affordable devices. This phone is equipped with a MediaTek Helio G91 Ultra processor and a 7,500 mAh battery.
Its 6.9-inch HD+ display also operates at a 120 Hz frequency. The price of this model with 4/128 GB storage is approximately $190.
Both devices stand out in their class for high energy efficiency.





