Q

What engine is in the 2018 AMG GT?

The 2018 AMG GT is powered by a handcrafted 4.0-liter V8 biturbo engine developed in-house by Mercedes-AMG. This powerplant features the brand’s signature "hot inside V" configuration, where the turbochargers are mounted inside the cylinder banks for sharper throttle response and reduced lag. Depending on the model, output ranges from 476 hp (AMG GT) to a blistering 577 hp (AMG GT R), with peak torque hitting between 630 Nm and 700 Nm. Paired with a 7-speed dual-clutch transmission, it rockets from 0-100 km/h in as little as 3.6 seconds. The engine also employs a dry-sump lubrication system to maintain optimal performance during hard driving, while its exhaust note delivers that classic AMG soundtrack—growling at low revs and screaming at full tilt. Notably, this same engine finds its way into the AMG GT 4-Door Coupe and select 63-series models, showcasing AMG’s engineering prowess. Whether you're daily driving or hitting the track, this V8 delivers the kind of thrills that true enthusiasts crave.
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Related Q&A

Q
What is the 2018 AMG GT R 0-60 time?
The 2018 AMG GT R rockets from 0-60 mph in just 3.5 seconds, thanks to its hand-built 4.0-liter twin-turbo V8 pumping out 577 horsepower and 700 Nm of torque. Paired with a lightning-fast 7-speed dual-clutch transmission and a rear-wheel-drive system tuned for maximum attack, this beast delivers brutal acceleration. With active aerodynamics and weight-saving measures, the GT R isn’t just about straight-line speed—it carves corners with surgical precision. For driving purists, this thing is pure adrenaline: a track-focused weapon that still turns heads on the street. You won’t see many of these prowling daily commutes, but hit a track day or cars-and-coffee event, and it’ll instantly become the center of attention.
Q
How much is the 2018 Mercedes-AMG GT C?
The 2018 Mercedes-AMG GT C typically carries a new-car price tag between RM800,000 to RM1 million, depending on configuration, optional extras, and overall condition. In the used market, prices usually range from RM600,000 to RM800,000, fluctuating based on mileage and maintenance history. Under the hood, it packs a 4.0-liter V8 biturbo engine churning out 550 horsepower, rocketing from 0-100 km/h in just 3.7 seconds—serious performance credentials. Its sleek fastback design and premium interior also make it a dream car for many enthusiasts. Sitting between the GT S and GT R in AMG’s lineup, the GT C strikes a perfect balance—comfortable enough for daily driving yet razor-sharp for near-track-ready handling. If you’re considering one, I’d recommend booking a test drive at an authorized dealer. Get behind the wheel to experience its raw power and meticulous craftsmanship firsthand, and don’t forget to ask about servicing and warranty details to maximize your ownership experience.
Q
What is the engine in the 2018 AMG GT?
The 2018 AMG GT is powered by Mercedes-AMG's in-house developed M178 4.0-liter V8 biturbo engine. This powerplant features a plasma-coated cylinder lining and a dry-sump lubrication system. In the standard AMG GT, it delivers 476 horsepower and 630 Nm of torque, while the higher-performance GT S variant pushes output to 522 hp and 670 Nm. Paired with a 7-speed dual-clutch transmission (AMG SPEEDSHIFT DCT), the GT rockets from 0-100km/h in just 3.8 seconds (3.6 seconds for the GT S). What sets this engine apart is its innovative "hot inside V" turbocharger placement, which significantly reduces turbo lag and sharpens throttle response. The standard AMG DYNAMIC SELECT system lets drivers tweak engine characteristics based on road conditions. Fun fact: This same M178 engine serves across the AMG GT family, including the GT C and GT R models, with different tuning specs for each variant. This modular approach balances performance with production efficiency. For enthusiasts, this engine isn't just about raw power—it showcases German engineers' obsession with detail. Pro tip: For optimal performance, use 98-octane fuel during daily driving, and don't skip those carbon cleanings to keep the engine running smoothly long-term.
Q
How much is the 2018 Mercedes-AMG GT?
The 2018 Mercedes-AMG GT's price varies depending on condition, specs, mileage, and other factors. On the used market, expect to pay between RM500k to RM800k, with the final figure largely determined by the model variant (GT, GT S, or GT C) and whether it has optional extras. Under the hood, you’ll find a 4.0-liter V8 biturbo pumping out anywhere from 469 to 550 horsepower, paired with a 7-speed dual-clutch transmission. Performance is razor-sharp—0-100 km/h takes just 3.7 to 4.0 seconds. As a proper high-performance coupe, the AMG GT doesn’t just deliver thrills on the road. Its aggressive styling is matched by a cabin packed with premium materials and tech like the COMAND infotainment system and sport seats. If you’re seriously considering one, stick to official certified pre-owned programs or reputable dealers to ensure quality and after-sales support. Just keep in mind that maintenance costs run high, especially for performance components, so budget accordingly. This car is perfect for drivers who prioritize excitement and brand prestige, and it holds its value better than most in its class.
Q
Is the 2018 Mercedes-AMG GT reliable?
The 2018 Mercedes-AMG GT proves to be a highly reliable performance coupe overall. Its handcrafted 4.0L V8 biturbo engine, meticulously tuned by AMG, delivers robust power with proven reliability and relatively low failure rates. That said, expect higher maintenance costs than regular passenger cars – especially for wear items like brakes and tires that require more frequent attention. While the complex electronics might occasionally throw minor glitches, these rarely affect daily driving. We recommend sticking to authorized service centers for routine checkups to keep everything in top shape. Where the AMG GT truly shines is its thrilling driving dynamics. The rock-solid chassis and razor-sharp steering serve up pure driving excitement, while the three-pointed star badge adds peace of mind regarding build quality. If your budget can handle the upkeep (and you're cool with premium fuel bills), this is one hell of a driver's car. Just be sure to get a thorough pre-purchase inspection – particularly for used examples – paying close attention to the powertrain's condition.
Q
How much horsepower does a 2018 AMG GT have?
The 2018 Mercedes-AMG GT offered a range of horsepower outputs depending on the trim level. The base AMG GT came packing a 4.0-liter twin-turbo V8 cranking out 476 horsepower, while the punchier AMG GT S upped that to 522 hp. For those craving the ultimate, the top-dog AMG GT R squeezed out an impressive 585 hp. Mated to a 7-speed dual-clutch transmission, the GT R rockets from 0-100km/h in just 3.6 seconds. What really makes this car tick is its classic front-mid engine, rear-wheel drive setup and lightweight aluminum frame. Here in Malaysia's sweltering heat, its efficient cooling system and AMG Dynamic Select drive modes do a solid job adapting to different road conditions. Local owners should keep up with regular turbo system maintenance to keep that performance consistent over time. When you stack it up against other German sports cars in its class, the AMG GT's power figures sit right at the top, really showing off what Mercedes' performance division is capable of.
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Pros

Strong and powerful engine performance
Stunning muscular exterior design
Spacious interior and cargo space
Advanced and luxurious interior features
Excellent handling and driving dynamics

Cons

High price tag, not affordable for many
Considerable fuel consumption
Some find the suspension and seats too firm
Noticeable engine noise during operation
Limited storage space inside the car

Latest Q&A

Q
Which country has autonomous cars?
Currently, multiple countries around the world have begun deploying autonomous vehicles, including technologically advanced nations such as the United States, China, Germany, and Japan, where tests or commercial operations of L4-level autonomous driving have been conducted. Taking Malaysia as an example, although large-scale deployment on public roads has not yet been achieved, autonomous driving technology is developing rapidly. The government actively promotes it through frameworks like the *National Automotive Policy*. In 2025, 9D Intelligence and ALS jointly launched a public road trial operation of L4-level autonomous logistics vehicles, marking the transition of the technology from experimentation to practical application. Local enterprises, such as REKA with its CRETA accessories, and international brand collaboration projects have also accelerated the technology's implementation. It is expected that in the coming years, priority will be given to its adoption in closed scenarios such as logistics and ports. However, challenges such as defining legal responsibilities still need to be addressed, and full-scale deployment in the short term may remain limited.
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Do autonomous vehicles use 5G?
Autonomous vehicles do utilize 5G networks in their technical implementation, but they are not entirely dependent on them. Currently, the development of autonomous driving technology in Malaysia is gradually integrating 5G communication technology. For example, in the 2020 Langkawi 5G demonstration project, driverless shuttle buses transmitted real-time data via 5G and collaborated with 3D-LiDAR sensors to achieve environmental perception and path planning. This low-latency, high-bandwidth communication capability can significantly improve the response speed of vehicles to complex road conditions, with particularly obvious advantages in scenarios such as multi-vehicle coordination or remote monitoring. However, it should be noted that autonomous driving systems adopt a multi-sensor redundancy design, and local perception devices such as millimeter-wave radars and visual cameras remain the core, while 5G primarily serves as a supplementary means for data interaction. The deployment of Tesla FSD in Malaysia demonstrates another technical approach: it achieves high-level autonomous driving based on a pure vision solution and onboard computing power, with low dependence on 5G. However, future integration of V2X (Vehicle-to-Everything) functionality would still require 5G support. Overall, 5G is an important enabler for improving the reliability of autonomous driving and expanding application scenarios, but at the current stage, technological implementation still requires balancing communication requirements with cost-effectiveness based on specific solutions.
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Does autonomous driving use AI?
Autonomous driving technology indeed relies on artificial intelligence (AI) to achieve its core functions, as fully demonstrated in the recently launched L4-level autonomous logistics vehicle project in Malaysia. The enterprise-level autonomous logistics vehicle jointly developed by 9D.ai and ALS processes sensor data, plans routes, and makes real-time decisions through AI algorithms, enabling it to autonomously complete logistics transportation tasks in complex urban and industrial environments. AI technology endows the vehicle with environmental perception, multi-object recognition, and dynamic obstacle avoidance capabilities. For instance, it can accurately identify obstacles and optimize driving paths in scenarios such as warehouses and ports, while continuously adapting to localized road conditions and climate characteristics through machine learning. This project not only validates the critical role of AI in autonomous driving but also enhances public trust in the technology through educational initiatives. In the future, with the iteration of AI models and regulatory improvements, autonomous driving will see further adoption in logistics, retail, and other sectors, driving the industry toward greater efficiency and intelligence.
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Does China have self-driving cars?
China has achieved mass production and application of L3 conditional autonomous driving technology, and has launched pilot programs in cities such as Chongqing and Beijing. Vehicles equipped with special license plates can operate on designated road sections; for example, specific models of Changan Automobile and BAIC Arcfox have been approved for road use. The L3 system can take over driving in specific scenarios but requires the driver to assume control when requested by the system, marking a key leap from assisted driving to autonomous driving. Meanwhile, L4 driverless technology has been implemented in closed scenarios such as autonomous taxis and logistics vehicles. For instance, companies like Baidu Apollo Go have realized commercial operations in regions including the Middle East and Europe. At the policy level, China is promoting the transition of technology from test verification to large-scale application through regulatory improvements and pilot explorations, emphasizing safety bottom lines and responsibility definition—such as clarifying the division of responsibilities among car manufacturers, system suppliers, and drivers in the event of accidents. In the future, with algorithm optimization and infrastructure upgrades, autonomous driving will gradually expand from limited scenarios to open roads, but challenges such as safety redundancy in extreme scenarios and cost control need to be addressed. This process not only relies on technological progress but also requires the synchronous development of public trust and supporting social systems.
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Do cars use Nvidia chips?
Currently, some automotive brands do adopt NVIDIA's chip technology, especially in the fields of intelligent driving and in-vehicle computing platforms. For example, General Motors has announced the expansion of its partnership with NVIDIA, stating that it will use NVIDIA's DRIVE AGX platform as the core hardware for its autonomous driving system. This platform can provide advanced driver assistance functions and support simulation for future smart factories. In the local market, the demand for NVIDIA chips in the data center industry also reflects its technological influence, although regulatory authorities are currently strengthening the tracking of the circulation of high-end chips. It is worth noting that the application of NVIDIA chips in the automotive sector mainly focuses on scenarios requiring high-performance computing, such as autonomous driving algorithm processing and in-vehicle infotainment systems. Such collaborations are usually realized through direct technical integration agreements between automakers and chip manufacturers. With the development of automotive intelligence, it is expected that more brands will consider adopting similar solutions to enhance the digital processing capabilities of their vehicles.
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