Q
How do you open the door on a McLaren 570S?
To open the McLaren 570's door, first locate the door handle – it's a hidden design tucked along the upper edge of the door. Gently press the button on the inside of the handle, and the door swings upward in that signature "dihedral" style. It's not just cool-looking; that butterfly door action actually makes getting in and out easier in tight spots too. Just keep an eye on your surroundings when popping it open to avoid any scrapes.
As you'd expect from a high-performance supercar, the 570's door design nails both form and function. The lightweight carbon fiber construction really shows McLaren's obsession with engineering details. Here in Malaysia's hot and humid climate, I’d recommend checking the door hinges and electronic switches regularly to keep them properly lubricated – that way, they keep moving smooth. Also, try to park in the shade when you can; constant baking in the sun will age those rubber seals faster than you'd think.
If you ever run into a door that won't open, start by checking the key fob battery or trying the mechanical key override. If that doesn't do it, best to hit up a McLaren authorized service center. They've got professional workshops in places like Kuala Lumpur and Penang, so you can get that factory-backed tech support when you need it.
Special Disclaimer: This content is published by users and does not represent the views or position of PCauto.
Related Q&A
Q
Does the McLaren 570S have an automatic transmission?
The McLaren 570S is equipped with a 7-speed dual-clutch transmission that features an automatic shifting function, so the vehicle can operate in automatic mode. Its dual-clutch transmission enables smooth gear changes, enhancing both performance and driving experience. Moreover, it can shift gears automatically to adapt to various driving conditions, such as normal city driving or high-speed cruising.
However, this automatic functionality does not impair the driving experience. Drivers can also take control and shift gears manually if they prefer a more hands-on approach—for instance, when on a track or seeking a more enjoyable driving on winding roads. With its combination of automatic and manual-shift capabilities, the McLaren 570S caters to a wide range of driving preferences among car enthusiasts.
Q
How many gears does McLaren 570S have?
McLaren 570S has 7 gears. It is equipped with a 7-speed dual-clutch transmission. This type of transmission offers several advantages. Dual-clutch transmissions can provide extremely quick gear shifts, allowing for smooth power delivery during acceleration. For the 570S, a sports car known for its high-performance capabilities, the 7-speed dual-clutch gearbox helps it achieve rapid acceleration, such as its official 0-100km/h acceleration in just 3.2 seconds. The multiple gears also enable the engine to operate with its optimal power output and torque range across different driving conditions, whether it's cruising at high speeds on open roads or during intense track driving where quick gear changes are crucial for maintaining speed through corners.
Q
Is 570S a convertible?
The McLaren 570S has a convertible version, known as the 570S Spider, priced at RM 2,033,600. However, there's also a coupe body style, the 570S Coupe, priced at RM 1,870,570. Therefore, strictly speaking, the 570S isn't inherently a convertible as the name encompasses both body types. The convertible 570S Spider allows drivers to enjoy open-top motoring, feeling the wind and experiencing the sounds of the road more directly. It features a power-operated soft-top that can be raised or lowered at the touch of a button. The coupe version, on the other hand, offers a more aerodynamic and enclosed driving experience. Both models share many mechanical components, such as the 3.8-liter twin-turbocharged V8 engine producing 570 PS, delivering the excellent performance and typical handling characteristics of McLaren sports cars.
Q
Is McLaren 570S good for daily use?
The McLaren 570S can be suitable for daily use to some extent. With the starting price of RM 1,870,570, it offers both excellent performance and certain practical features. It has a 3.8L twin-turbocharged V8 engine with 570 PS, accelerating from 0 to 100km/h time in just 3.2 seconds. Despite being a sports car, it has some practical elements. It has features like keyless operation, dual-zone automatic climate control, and a touchscreen. The interior has comfortable seats with good support, and there's some storage space. It also has safety features such as ABS, stability control, and multiple airbags. However, it has a relatively low ground clearance of 93 mm, which might pose challenges on uneven roads. In addition, with petrol consumption of 10.7 L/100km , it is not very fuel-efficient. But overall, if you can overlook these minor drawbacks and afford its running costs, it can be used for daily driving while still providing an enjoyable driving experience.
Q
What type of engine is 570S equipped with?
The 570S is equipped with a 3,800 mL (3.8 L) V8 twin-turbocharged engine. This engine adopts a turbocharged intake system, capable of producing a maximum output of 570 horsepower. It reaches peak power at 7,500 rpm and delivers maximum torque between 5,000 and 6,500 rpm. The combination of the V8 configuration and twin-turbocharging ensures robust power delivery and rapid acceleration, which enables the 570S to achieve an official 0-100 km/h acceleration time of just 3.2 seconds and a top speed of 328 km/h. The engine's design perfectly aligns with the character of sports car, offering an enjoyable driving experience. Additionally, technologies such as direct fuel injection may be employed to enhance fuel efficiency and vehicle's performance.
Q
What's the top speed of McLaren 570S?
The McLaren 570S can reach a top speed of 328 km/h, making it a high-performance sports car capable of rapid acceleration and achieving extreme velocities. It is powered by a 3.8-liter V8 twin-turbocharged engine, generating 570 horsepower, which helps the vehicle achieve this impressive top speed. Whether it's the Coupe or Spider version, both can reach this high velocity. With a 0-100 km/h acceleration time of just 3.2 seconds, the 570S not only has a high top speed but also offers rapid acceleration. Its excellent performance perfectly show McLaren's engineering philosophy of creating a sports car that combines speed, power, and precision handling for an enjoyable driving experience.
Q
Is McLaren 570S an AWD model?
No, McLaren 570S is not an AWD (All-Wheel Drive) model. It is a rear-wheel drive sports car. This rear-wheel drive layout is common among many high-performance sports cars as it provides a more direct connection between the engine and the driven wheels, contributing to a more engaging driving experience and improved weight distribution for enhanced handling. Powered by a 3.8-liter twin-turbocharged V8 engine producing 570 PS, the rear-wheel drive configuration enables the McLaren 570S to achieve an official 0-100 km/h acceleration time of 3.2 seconds and a top speed of 328 km/h. The rear-wheel drive system, combined with its advanced suspension and braking systems, allows the 570S to deliver exceptional performance both on the road and the track.
Q
Is the McLaren 570S twin-turbocharged?
Yes, the McLaren 570S is indeed a twin-turbocharged model. It is powered by a 3.8-liter twin-turbocharged V8 engine, which significantly enhances the vehicle's power output. The twin-turbo system enables more efficient induction, delivering superior performance.
The 570S's engine generates substantial power and torque, allowing the vehicle to achieve a top speed of 328 km/h and accelerate from 0 to 100 km/h in just 3.2 seconds. Twin-turbo technology reduces turbo lag, providing immediate and consistent power delivery during acceleration, which results in exceptionally responsive performance whether on the road or track, creating an enjoyable driving experience.
Q
Is 570S faster than 650s?
No, the 570S is not faster than the 650S. Instead, the McLaren 650S has a higher top speed and shorter acceleration time. The 650S can reach a top speed of 340 km/h and accelerate from 0 to 100 km/h in just 3.0 seconds. In contrast, the 570S has a top speed of 328 km/h and an official 0-100 km/h acceleration time of 3.2 seconds. The differences in speed and acceleration are caused by the 650S's more powerful engine, which produces 650 horsepower, while the 570S's engine produces 570 horsepower. It's important to note that these are official figures, and actual performance may vary depending on driving conditions and other factors. However, in general, the 650S is faster. If you're looking for maximum speed and acceleration, the 650S would be the better choice. But if you prefer a more comfortable and practical sports car for everyday driving, the 570S may be better as it still offers impressive performance and is suitable for daily use.
Q
How much does it cost to maintain 570S?
The maintenance cost of 570S can be different. For routine minor maintenance at a 4S shop, it's approximately RM 7,300. If more parts are replaced, the cost may rise to RM 13,000, and with additional inspections, it could be close to RM 20,000. At a reliable local shop, a basic minor maintenance, like changing the oil and oil filter, air filter, etc., might cost around RM 1,800. Using fully synthetic oil for just an oil change typically costs about RM 2,000. A comprehensive minor maintenance including oil, oil filter, and air filter replacement is around RM 7,600. The maintenance cycle for 570S is 10,000 kilometers. Overall, the annual maintenance cost for the first three years is around RM 100,000 - RM 150,000, and after three years, it's RM 200,000 - RM 300,000. Keep in mind that these are just estimates and actual costs may vary based on factors such as vehicle usage, location, and parts condition.
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Q
Does more RPM mean more torque?
The relationship between engine speed (RPM) and torque is not a simple linear proportionality, but rather an inverse relationship under the premise of constant power. At low engine speeds, due to the extended fuel injection and intake duration, the combustion pressure inside the cylinders increases, resulting in higher torque output, which is suitable for scenarios requiring strong traction such as vehicle launch, hill climbing, or heavy loads. Conversely, torque decreases at high speeds, but power may increase to support high-speed driving. This characteristic stems from the physical formula "Power = Torque × Speed × Constant." Therefore, different vehicle models are calibrated for torque curves based on their intended purposes. For example, diesel engines or turbocharged engines typically emphasize high torque at low speeds, while high-performance vehicles prioritize power output at high speeds. In daily driving, rationally utilizing transmission gear ratios to match speed and torque (such as using first gear for high-torque hill climbing and higher gears for low-RPM cruising) can optimize fuel economy and dynamic performance.
Q
What is the maximum torque a human can apply?
The maximum torque that a human can apply with one hand typically ranges from 60 to 120 Newton-meters, with the specific value depending on individual strength, force application posture, and tool usage. When an average adult uses a standard wrench, a grip force of 200 Newtons can generate approximately 100 Newton-meters of torque when calculated with a 0.5-meter lever arm. However, due to muscle efficiency limitations, the actual output is mostly 50%-70% of the theoretical value. Professional athletes or manual laborers can achieve 25-30 Newton-meters through training, while specially trained individuals such as rock climbing enthusiasts can generate finger torque of up to 40 Newton-meters. Tools can significantly amplify torque output; for example, a regular wrench can multiply human force by 3-5 times, but sustained force application requires consideration of muscle fatigue. Daily operations like tightening screws or turning a steering wheel typically maintain torque within the range of 5-50 Newton-meters. Torque calculation follows the physical principle of force multiplied by lever arm, and in practical operations, attention should be paid to the influence of force application angle and joint range of motion on the final torque value.
Q
What is low RPM high torque?
Low RPM high torque refers to the characteristic of an engine that can deliver substantial torque within a relatively low RPM range (typically 1500-3000 rpm). This design significantly enhances a vehicle's launch acceleration and hill-climbing capability. When engine power remains constant, torque is inversely proportional to RPM. Consequently, generating high torque at low RPM enables the crankshaft to produce greater power per revolution, providing ample traction without requiring high engine speeds—particularly advantageous for urban stop-and-go driving or mountainous terrain. Turbocharged models often excel in this regard; for instance, certain popular local SUVs achieve peak torque at 1800 rpm, facilitating loaded hill ascents or overtaking maneuvers. By contrast, low-torque engines must rely on higher RPMs to compensate for power deficiency, resulting in increased fuel consumption and acceleration lag. Notably, the low-RPM high-torque characteristic also reduces shift frequency, minimizes mechanical wear, and improves driving smoothness—especially beneficial for drivers frequently encountering congested conditions. When evaluating this parameter during vehicle selection, prioritize models whose torque curve peaks earlier, typically indicated in specifications as "XX N·m @ 1500-4000 rpm."
Q
How much torque is 1800 RPM?
The torque value at 1800 RPM needs to be calculated in combination with engine power, and the specific numerical value depends on the power output at this rotational speed. According to the physical formula "Power = Torque × Rotational Speed ÷ 9550", when power is constant, torque is inversely proportional to rotational speed. This means that when the engine speed is 1800 RPM, if the vehicle is in a low-speed, high-load working condition (such as climbing a slope or starting with a heavy load), the torque output will be relatively high to provide sufficient traction; while during flat-road cruising, the torque at the same rotational speed may decrease moderately to optimize fuel efficiency. Turbocharged engines usually form a wide torque plateau in the range of 1500-4500 RPM, and 1800 RPM falls precisely within this range, delivering over 90% of the peak torque. For example, a 1.5T engine can generate approximately 250-300 Nm of torque at this rotational speed. In actual driving, by monitoring the tachometer and coordinating throttle control, the torque characteristics at this rotational speed can be effectively utilized to achieve smooth acceleration or overcome gradients. It should be noted that different engine calibrations will result in variations in torque curves, so it is recommended to consult the torque-speed curve diagram of the specific vehicle model to obtain accurate data.
Q
Why is it almost impossible to rev to 21000 RPM?
It is nearly impossible to increase the engine speed to 21,000 revolutions per minute, primarily constrained by the comprehensive limitations of material physical limits, mechanical structural strength, and engineering design. The inertial forces exerted on moving components within the engine, such as pistons and connecting rods, at ultra-high speeds would far exceed the tensile strength of metallic materials, resulting in component deformation or even fracture. Taking current mass-produced naturally aspirated engines as an example, the Lexus LFA's 9,000 revolutions per minute already approaches the acoustic and mechanical balance limits of naturally aspirated engines, while turbocharged engines like the Bugatti Veyron, which prioritize low-end torque output, typically limit the redline speed to approximately 6,400 revolutions per minute. Furthermore, emission regulations and noise standards further diminish the viability of ultra-high-speed engines, with modern technology favoring efficiency improvements through turbocharging or hybrid systems. Even for diesel engines, their compression ignition characteristics generally result in lower maximum speeds compared to gasoline engines, typically not exceeding 5,000 revolutions per minute. These technical challenges and safety considerations collectively determine that achieving 21,000 revolutions per minute remains within the theoretical realm under current engineering frameworks.
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