Wearables
Wearable devices are typically lightweight, compact, and easy to carry. They can capture information about objects in real-time, making our interactions with the world more immediate and convenient. The highly integrated optical tracking sensor chips and ambient light sensor chips from Time Vision Technology are suitable for smartwatches, fitness trackers, and augmented reality glasses. Their advanced energy-saving architecture allows terminal devices to maintain stable operation for extended periods under low power consumption. The ambient light and proximity sensor chips can be used to further enhance the near-eye display experience, achieving precise matching of display images with surrounding scenes.
-
01
Lightweight
In response to the miniaturization needs of wearable devices, ChuanZhou's highly integrated and miniaturization technology significantly reduces the size of sensors. This makes the devices lightweight and portable, offering a comfortable wearing experience without compromising functionality and performance.
-
02
Low Power Consumption
By using ChuanZhou's advanced compact small-size packaging, an extremely low power consumption level is achieved, further extending the device's battery life. Even in continuous monitoring environments, it can maintain stable operation for extended periods, ensuring worry-free use for users around the clock.
-
03
High Durability
With excellent durability and reliability, it can withstand external factors such as sweat, dust, and moisture, while also adapting to temperature changes and impact vibrations. This ensures stable performance even under harsh conditions, optimizing the user experience.
-
04
Precise Matching
The device intelligently senses the surrounding light conditions and automatically adjusts the screen brightness to optimize visual experience and conserve power. It can also detect if the device is close to the skin or obstructed, ensuring the accuracy of sensor data. This is particularly useful for health monitoring functions, such as heart rate detection, maintaining measurement accuracy in different environments.