
Car LOR is the adjustment switch for the vehicle's rearview mirrors. Its functions are as follows: turning to L adjusts the left rearview mirror, O turns it off, and R adjusts the right rearview mirror. Below is relevant information about car rearview mirrors: Working principle: Rearview mirrors have a field of view issue, which refers to the range that the mirror surface can reflect. The industry mentions three elements of the field of view: the distance between the driver's eyes and the rearview mirror; the size of the rearview mirror and the radius of curvature of the rearview mirror. Classification: They can be divided into three main series: flat mirrors, spherical mirrors, and dual-curvature mirrors. There is also another type called the prism mirror, which has a flat mirror surface but a prism-shaped cross-section, usually used as an anti-glare interior rearview mirror.

Automotive LoRa is actually a wireless communication technology with a wide range of applications in vehicles. I've used it while driving—it mainly relies on low power consumption for long-distance data transmission without draining the battery. In terms of functionality, car-sharing services use it for vehicle tracking, so you can see the car's location on your phone and even remotely lock or unlock the doors. In daily life, anti-theft systems also utilize it—if your car gets stolen, the tracker can send signals to help you recover it. Additionally, it's commonly used in fleet management, allowing business owners to monitor the locations of all vehicles, saving manpower for inspections. Overall, it's quite convenient, making travel smarter and safer. I recommend trying out similar equipment.

As a tech enthusiast, I find automotive LoRa incredibly fascinating. It's part of the LoRaWAN protocol, specifically designed for IoT devices. Functionally, it enables remote vehicle monitoring—for instance, collecting data via sensors and uploading it to the cloud in real-time, allowing manufacturers to diagnose faults and issue early warnings to prevent breakdowns. It also supports location tracking, which can optimize routes and reduce fuel consumption for freight fleets. The low-power design ensures the device battery lasts for years without replacement, saving costs and being eco-friendly. I've installed a similar module during my car modifications, and the experience has made driving more efficient and reliable. In the future, it could even integrate into smart city systems.

From an experienced driver's perspective, the term 'LoRa' in cars might sound trendy, but it's essentially an old friend in wireless signal transmission. Functionally, it's a huge help – like in anti-theft tracking. I once lost a car with no way to recover it, but now with a LoRa tracker installed, I can check its location with just one click. The battery life is impressive with minimal maintenance, sparing me the hassle of frequent replacements. Even car-sharing services utilize this technology; scanning a QR code to unlock a rental car has become much more convenient. In short, these technologies make driving more worry-free and safer, especially for daily commutes.


