Q
mitsubishi xpander made in which country
The Mitsubishi Xpander is a seven-seater MPV primarily targeted at Southeast Asian markets. It rolls off the production line at Mitsubishi's Cikarang plant in West Java, Indonesia, which has been handling global supply for the Xpander and its derivatives – including Malaysia – since 2017. Under the hood, you'll find a 1.5-liter MIVEC engine paired with either a 4-speed automatic or 5-speed manual gearbox. What really makes it stand out, though, is that crossover-inspired 210mm ground clearance, making it a solid fit for Malaysia's varied road conditions. Add to that its flexible seating configurations and dual-zone air conditioning, and it's clear this MPV is tailored to meet local family needs.
Mitsubishi's regional production strategy is worth highlighting here. The Indonesian plant doesn't just supply ASEAN nations; it also exports to the Middle East and Latin America. For Malaysian buyers, the Xpander undergoes partial local assembly at facilities like Mitsubishi's Pahang plant, where certain components are fitted locally. This approach helps strike a balance between maintaining quality and optimizing costs.
In the competitive landscape, the Xpander goes head-to-head with the Toyota Avanza and Honda BR-V. Each brings something different to the table – whether it's space utilization or fuel efficiency – so shoppers should compare them based on their specific needs.
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Related Q&A
Q
What engine is in the Mitsubishi Xpander 2023?
The 2023 Mitsubishi Xpander is powered by a 1.5-liter MIVEC four-cylinder naturally aspirated gasoline engine, delivering a maximum output of 105 horsepower and a peak torque of 141 Nm. It comes paired with either a 5-speed manual or a 4-speed automatic transmission. This engine prioritizes fuel efficiency and smoothness, making it ideal for daily family use. As a 7-seater MPV, the Xpander's engine is tuned to emphasize low-end torque, suiting city driving and load-carrying needs. It also features Mitsubishi's MIVEC variable valve timing technology, which optimizes power response and fuel consumption. Among its peers, many competitors like the Toyota Avanza or Honda BR-V also use naturally aspirated engines of similar displacement, but their tuning and technical focuses vary. The Xpander stands out for its high reliability and relatively low maintenance costs, appealing to practicality-minded consumers. For those seeking more power, Mitsubishi offers other models with turbocharging technology, but the Xpander is positioned more towards economy and practicality, targeting family users.
Q
How much is the new Xpander 2023?
The official price of the all-new 2023 Mitsubishi Xpander ranges from RM99,980 to RM111,980, depending on the variant, including the standard Xpander, the high-spec Xpander, and the Xpander Cross. All models are powered by a 1.5L MIVEC naturally aspirated engine paired with a 4-speed automatic transmission, delivering a smooth driving experience. The Xpander is known for its spacious 7-seater cabin and flexible interior layout, making it ideal for families. The addition of the new ADAS advanced driver assistance system further enhances driving safety. This MPV stands out for its value-for-money proposition in its class, especially appealing to consumers who prioritize practicality and comfort. When purchasing, you can also check out the promotional offers from different dealers, such as free maintenance services or low-interest loans. If you're interested in the Xpander, it's advisable to visit a nearby showroom for a test drive to experience its handling and space firsthand. You might also want to compare it with other models in the same category, like the Toyota Avanza or Honda BR-V, to make a more comprehensive buying decision.
Q
What is the ground clearance of the Xpander 2020?
The 2020 Mitsubishi Xpander has a ground clearance of 205mm, a design that makes it perform exceptionally well on Malaysia's diverse road conditions, handling both city driving and occasional country roads with ease. The higher ground clearance not only improves the vehicle's off-road capability but also effectively prevents the undercarriage from scraping on rough roads, making it particularly suitable for water accumulation section that may appear during Malaysia's rainy season. Ground clearance is one of the key indicators for measuring the practicality of SUVs and MPVs; models typically ranging between 180mm and 220mm can balance comfort and off-road performance. As a 7-seater MPV, the Xpander maintains a spacious interior while also focusing on optimizing the chassis height, giving it a competitive edge among models in its class. For Malaysian consumers, choosing a model with appropriate ground clearance is especially important, as it directly relates to the convenience and safety of daily driving, especially when dealing with areas with poor road conditions.
Q
What is the fuel consumption of the Mitsubishi Xpander Cross 2020?
According to official figures, the 2020 Mitsubishi Xpander Cross has a combined fuel consumption of approximately 6.5 to 6.9 liters per 100 kilometers, though the actual numbers can vary depending on driving habits, road conditions, and vehicle load. It’s powered by a 1.5-liter MIVEC naturally aspirated engine paired with a 4-speed automatic transmission, delivering smooth power and decent fuel efficiency—perfect for Malaysian family daily use. For owners looking to cut fuel costs further, regular vehicle maintenance, keeping tire pressure at the recommended level, and avoiding aggressive driving like sudden acceleration or hard braking can all help boost fuel efficiency. Plus, as a crossover MPV, the Xpander Cross doesn’t just shine in fuel economy; it also offers generous interior space and a higher ground clearance, making it ideal for Malaysia’s varied road conditions. Whether you’re commuting in the city or heading out for a weekend getaway, it handles it all with ease.
Q
How many seats are in the Mitsubishi Xpander 2020?
The 2020 Mitsubishi Xpander is a popular 7-seater MPV in the Malaysian market, featuring a 2+3+2 seating layout that can accommodate 7 passengers. The second-row seats fold down in a 60:40 split, while the third-row seats fold 50:50, offering flexible space configurations to meet different cargo needs. Under the hood, it's powered by a 1.5-liter MIVEC naturally aspirated engine, delivering 105 horsepower and 141 Nm of peak torque, paired with a 4-speed automatic transmission. It focuses on practicality and fuel efficiency, making it a great fit for family users. The Xpander also comes with basic features like a multifunction steering wheel and a touchscreen infotainment system. Its higher ground clearance (205mm) helps tackle some of Malaysia's rougher road conditions. Notably, the Xpander positions itself between compact MPVs and mid-size SUVs in the Southeast Asian market, competing with models like the Toyota Avanza and Honda BR-V. However, its unique exterior design and Mitsubishi's reputation for durability make it a top choice for many consumers.
Q
What size engine is in the Mitsubishi Xpander 2020?
The 2020 Mitsubishi Xpander is powered by a 1.5-liter MIVEC naturally aspirated petrol engine, model 4A91. This four-cylinder unit churns out 105 horsepower (77 kilowatts) and a peak torque of 141 Nm, paired with either a 5-speed manual or 4-speed automatic transmission. Its performance is ideal for daily family use, striking a good balance between fuel efficiency and reliability. This engine is widely used across multiple Mitsubishi models, boasting mature technology and low maintenance costs, making it well-suited for Malaysia's road conditions and climate. As a 7-seater MPV, the Xpander's engine is tuned to deliver strong low-end torque, perfect for city driving and carrying loads, aligning with the Southeast Asian market's preference for durability and practicality. It's worth noting that while naturally aspirated engines aren't as powerful as turbocharged ones, their simpler structure, easier maintenance, and lower long-term running costs are part of why the Xpander remains popular in Malaysia.
Q
Is Xpander 2024 3 cylinder?
Based on the current information, the 2024 Mitsubishi Xpander available in the Malaysian market is equipped with a 1.5 - liter MIVEC four - cylinder naturally aspirated engine, not a three - cylinder configuration. This engine delivers 105 horsepower and 141 Nm of torque, paired with either a 5 - speed manual or a 4 - speed automatic transmission. It focuses on providing smoothness and fuel efficiency for the family car market.
The doubts about a three - cylinder engine might stem from the fact that some brands have adopted three - cylinder technology in recent years for emission reduction purposes. However, the Xpander maintains a four - cylinder layout to ensure power stability. It's worth noting that although three - cylinder engines are smaller in size and more fuel - efficient, they usually require more advanced technical tuning for vibration suppression and high - speed performance. In contrast, the four - cylinder structure still has advantages in terms of durability and smoothness.
Malaysian consumers can make their choices according to their own needs when purchasing. If they prioritize low fuel consumption and are open to new technologies, they can look into three - cylinder models from other brands. If they prefer a more mature powertrain, the four - cylinder configuration of the Xpander remains a reliable option. It is recommended to take test drives to experience the differences.
Q
What is the ground clearance of the Xpander 2024?
The 2024 Mitsubishi Xpander has a ground clearance of 205 millimeters. This figure is relatively high among compact MPVs and allows the vehicle to adapt well to Malaysia's diverse road conditions, including urban roads and the rough terrains in the suburbs. The high ground clearance not only improves the vehicle's passability but also reduces the risk of chassis scratches, especially on flooded roads that may occur during the rainy season in Malaysia.
In addition to the ground clearance, the 2024 Xpander is also equipped with an optimized suspension system, which further enhances driving stability and comfort. For Malaysian consumers, this type of high - chassis MPV is very practical. It can meet the needs of family outings and handle complex road conditions.
If you often need to carry passengers or cargo and also pay attention to the vehicle's passability, the 2024 Xpander would be a great choice. Its space performance and practicality are also worth noting.
Q
Is the 2024 Mitsubishi Xpander a MPV or SUV?
The 2024 Mitsubishi Xpander falls into the MPV (Multi-Purpose Vehicle) category rather than the SUV (Sport Utility Vehicle) category. Its original design aim was to meet the needs of family users for spacious interiors and comfortable riding experiences. It features a three - row seat layout and sliding side doors, which are typical characteristics of MPVs. The Xpander has a relatively high ground clearance and crossover - style exterior kits, making it look somewhat like an SUV. However, in essence, it remains an MPV focused on practicality and versatility.
For consumers in Malaysia, the Xpander is an excellent family vehicle. It offers good comfort and convenience, whether for city driving or long - distance trips. The main differences between MPVs and SUVs lie in their body structures and uses. MPVs prioritize passenger space and cargo - loading flexibility, while SUVs emphasize off - road performance and driving visibility. Consumers can choose the appropriate model based on their actual needs.
The Xpander has always been very popular in the Malaysian market because it combines practicality, economy, and reliability, making it a great fit for local road conditions and family - use scenarios.
Q
What is the fuel consumption of the 2024 Mitsubishi Xpander?
The 2024 Mitsubishi Xpander offers a moderate fuel economy. According to official data, its combined fuel consumption is approximately 6.5 to 7.2 liters per 100 kilometers. The exact figure may vary slightly depending on driving habits, road conditions, and vehicle configurations (such as the 2WD or 4WD versions). This model is equipped with a 1.5-liter MIVEC naturally aspirated engine, paired with a 4-speed automatic or 5-speed manual transmission. The power is tuned to meet the practical needs of families.
For Malaysian users, the Xpander's fuel consumption is suitable for daily city commuting and medium - to short - distance trips, especially considering the common traffic congestion in the local area. It is recommended to perform regular maintenance (such as replacing the air filter and spark plugs) to optimize fuel efficiency. In addition, if you want to further reduce fuel consumption, you can try some fuel - saving driving techniques like smooth acceleration and reducing idling time.
Similar models in the same class, such as the Toyota Avanza or Honda BR - V, have a comparable fuel economy. However, the Xpander has an edge in terms of space flexibility and cost - effectiveness, making it a great choice for family users who value practicality.
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Latest Q&A
Q
What is the difference between l4 and l5 self-driving?
The core differences between L4 and L5 autonomous driving lie in four aspects: applicable scenarios, hardware configuration, liability attribution, and technological maturity.
L4 is classified as conditional automation, enabling autonomous driving only in preset closed or semi-closed areas (such as industrial parks and specific highway sections). It relies on lidar, high-precision maps, and multi-sensor fusion technology. Vehicles retain manual operation components like steering wheels, and human takeover is required when operating beyond the designated scope. Accident liability is usually borne by automakers. Currently, this technology has been commercialized in specific fields such as heavy-duty logistics trucks and shuttle buses.
L5 achieves full automation, capable of handling all road environments and extreme weather conditions. It eliminates traditional driving controls and enables comprehensive operation through multi-spectral perception and human-like AI algorithms. Liability may shift to the system itself, but constrained by algorithm complexity and regulatory frameworks, it remains in the laboratory R&D phase.
In short, L4 represents "specialized" autonomous driving, while L5 embodies "generalized" autonomous driving. Currently, L4 better aligns with practical needs, whereas L5 represents the future direction but requires both technological breakthroughs and legal infrastructure development.
Q
What kind of car is the Waymo car?
Waymo vehicles are driverless taxis (Robotaxis) developed by Waymo, an autonomous driving company under Alphabet. Their core technology is based on the L4-level autonomous driving system, enabling fully driverless operation. Currently, Waymo has partnered with Geely Holding Group, and its Zeekr brand customizes exclusive vehicles based on the SEA-M (Sustainable Experience Architecture - Mobility) platform. This model removes traditional steering wheels and pedals, integrates sensors such as lidar on the roof, and is equipped with the Waymo Driver autonomous driving solution. These vehicles are primarily deployed on the Waymo One ride-hailing service platform, having commenced commercial operations in locations like Phoenix, USA, with plans to expand to cities including Miami. Notably, Waymo's vehicle design philosophy emphasizes shared mobility scenarios, featuring sliding doors and spacious interiors to facilitate passenger boarding and alighting. Although Waymo has not yet entered the Southeast Asian market, its technological approach aligns with regional competitors like Baidu's "Apollo Go," both employing high-precision sensor fusion and AI algorithms to navigate complex road conditions. Future global expansion may be considered as the technology matures.
Q
What are the problems with self-driving cars?
The main challenges facing the local development of autonomous vehicles are concentrated in the ambiguity of the legal framework and liability attribution. The existing *Road Transport Act* has not yet clearly defined the division of responsibilities among manufacturers, software suppliers, or vehicle owners in the event of an accident, making it difficult for insurance claims mechanisms to adapt.
Technologically, while systems like Tesla's FSD have adapted to complex road conditions through visual algorithms, the local variable traffic environment—such as dense motorbike traffic—still poses challenges to the real-time judgment capabilities of sensors.
In terms of infrastructure, insufficient coverage of charging networks and the lack of high-precision map data limit the reliability of autonomous driving systems.
Furthermore, current regulations conflict with some provisions of the Vienna Convention; for example, the requirement that drivers maintain full control of the vehicle directly hinders the commercial deployment of L4-level autonomous driving. Although the government has initiated the law revision process and established the Bukit Jalil test section, the improvement of the regulatory system still needs to advance in tandem with technological progress, and large-scale road application is not expected to be realized in the short term.
Notably, local enterprises like REKA, which has developed the CRETA add-on system, demonstrate the potential of transitional solutions. Such retrofitting schemes can provide limited autonomous driving functions within the existing legal framework.
Q
What is autonomous driving?
Autonomous driving refers to the technology that enables vehicles to operate independently through advanced sensors, artificial intelligence algorithms, and control systems, without requiring continuous human intervention. Currently, Malaysia has achieved breakthrough progress in this field. For instance, the L4 autonomous logistics vehicle jointly developed by ALS and Zelos in 2025 can perform complex tasks like cargo transportation in predefined environments, signifying the local logistics industry's shift toward intelligent transformation. Technically, L4 autonomy represents high automation where vehicles can manage most road conditions, though regulatory challenges persist—such as undefined accident liability frameworks. The government is addressing this by collecting data through pilot programs (e.g., Kuala Lumpur's 12-kilometer dedicated route) to refine policy frameworks. While full public road deployment remains distant in the near term, autonomous systems have demonstrated efficiency gains in confined settings like warehouses and ports. A case in point is the collaboration between 9Sight Intelligence and Pos Malaysia, which targets last-mile logistics solutions. Moving forward, as technology advances and standards mature, autonomous driving will progressively integrate into Malaysia's transport ecosystem, driving green logistics and smart city development.
Q
What is l2 autonomous driving?
L2 autonomous driving refers to a partially automated driving system where the vehicle can simultaneously control steering and acceleration/braking under specific conditions, but the driver still needs to remain attentive and be ready to take over at any time. Such systems use sensors like cameras and radar to monitor the road environment in real time, enabling the coordinated operation of functions such as adaptive cruise control (automatically adjusting vehicle speed to maintain distance from the preceding vehicle) and lane centering assist (automatically fine-tuning the steering wheel to keep the vehicle within the lane). For example, when driving on highways, the vehicle can automatically follow the preceding car and stay in the center of the lane, but the driver must continuously observe the road conditions and cannot keep their hands off the steering wheel for an extended period. Currently, mainstream models in the local market such as Proton X90 and Perodua Ativa are equipped with L2 systems, with prices usually ranging from RM80,000 to RM150,000. It should be noted that L2 systems still fall under the category of driving assistance, and the driver is ultimately responsible for driving safety under any circumstances, which is fundamentally different from higher-level conditional autonomous driving (L3). With technological development, some manufacturers have begun to gradually enhance the scenario adaptation capabilities of L2 systems through OTA updates, such as adding automatic lane changing or traffic light recognition functions.
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