A short video of the MG Comet EV has gone viral for highlighting an unexpected and eye-catching feature: a display mounted on the car’s rear glass that continuously shows the vehicle’s current speed. In the clip, the compact electric car makes its pace fully visible to any driver following closely, turning what is usually private information into an open readout for the traffic behind.
The display sits on the rear glass so that it remains clearly readable from the vehicle following. As the MG Comet EV moves, the numbers update in real time, reflecting every change in speed whether the car is accelerating, cruising or slowing down. This allows the person coming from behind to see the exact speed at a glance without having to estimate it from visual cues alone. The live nature of the readout means following drivers receive constant, accurate information about the Comet’s pace rather than a static or delayed figure.
What has captured public attention is the straightforward practicality of the idea. By projecting its speed onto the rear glass, the MG Comet EV effectively communicates with the traffic behind it in a way few other vehicles do. Viewers of the viral video have noted how this open sharing of speed data could help reduce uncertainty on the road, particularly in dense urban traffic where sudden changes in pace are common. Instead of relying solely on brake lights or relative movement, drivers behind the Comet can simply read the numbers and adjust their own speed more confidently.
The feature has sparked conversation precisely because it is so visible and immediate. The video demonstrates the display in everyday driving conditions, showing how the live speed remains easy to read even as the car moves through traffic. For an electric city car already known for its compact size and distinctive design, this rear-glass speed readout adds another layer of novelty that has helped the clip spread rapidly across social platforms. In sharing its speed openly with everyone behind, the MG Comet EV turns a simple piece of information into a shared reference point that following drivers can use in real time.
