Which models are built on Toyota's TNGA platform?
3 Answers
Toyota's TNGA platform includes models such as the Levin, Corolla, Toyota RAV4, Toyota C-HR, Izoa, Avalon, and Wildlander. TNGA stands for Toyota New Global Architecture, representing Toyota's new global platform. The Avalon is Toyota's flagship model in the U.S. market, with dimensions of 4978mm in length, 1849mm in width, 1435mm in height, and a wheelbase of 2870mm. The Avalon features a dual-tone interior design, a 9-inch multimedia touchscreen, a leather-wrapped multifunction steering wheel, traditional analog gauges on both sides of the instrument panel, and a 7-inch HUD (Head-Up Display) in the center.
I've driven several Toyota models over the years, and the TNGA architecture is Toyota's new platform developed in recent years, making cars more stable and safer to drive. There are many common models, such as the Camry, Corolla, RAV4 SUV, and the hybrid Prius—all of which I've tried, and they're indeed different. In the midsize segment, the Avalon also uses this platform, offering a stronger sporty feel. As for compact cars, the C-HR and Yaris are quite popular, along with the Sienna MPV and the large Highlander SUV. In short, TNGA covers a wide range of series from sedans to SUVs, improving overall driving experience and fuel efficiency, making it a direction of upgrade. When encountering these cars in daily driving, they all feel much more agile than the older models.
Driving a car built on the TNGA platform brings many pleasant surprises. I personally drive the new Corolla, which is based on this platform, and I've also tried my friend's RAV4 and Prius hybrid—both popular choices. Toyota is now focusing on this system, with models including the Camry sedan, C-HR compact SUV, and even larger vehicles like the Highlander and Sienna MPV. This architecture makes the cars more fuel-efficient and safer, especially performing well in urban driving conditions. I recommend paying more attention to these models as they combine stylish design with practical functionality.