Q

What kind of battery is in the Ora 07?

As an electric vehicle under Great Wall Motors, the Ora 07 is equipped with lithium-ion power batteries, specifically ternary lithium batteries. These batteries are widely used in modern electric vehicles due to their high energy density and stability, and can provide the vehicle with a cruising range of approximately 400 to 500 kilometers (the specific data may vary depending on the configuration and driving conditions). For Malaysian users, the performance of ternary lithium batteries in tropical climates is worthy of attention. Their battery management systems are usually equipped with temperature regulation functions to adapt to high-temperature environments and extend the battery life. In addition, for the battery maintenance of electric vehicles, it is recommended to regularly check the charging status and avoid long-term storage at full charge or low charge to maintain optimal performance.
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Related Q&A

Q
What is the battery capacity of the Ora 7?
The battery capacity of the Ora 7 is 63kWh. This all-electric model adopts advanced lithium-ion battery technology, which can offer a range of approximately 400 kilometers (based on the NEDC standard), making it suitable for the daily commuting or short-distance travel needs of Malaysian users. In Malaysia's hot climate, it is recommended that car owners regularly check the battery's health status and try to avoid charging during high-temperature periods to extend the battery's lifespan. It's worth mentioning that the Ora 7 supports fast - charging. It can charge the battery from 30% to 80% in about 40 minutes, greatly enhancing the convenience of charging. For Malaysian consumers considering buying an electric vehicle, apart from paying attention to the battery capacity, they also need to learn about the distribution of local charging facilities. Currently, the charging networks in major cities in Malaysia have been gradually improved. Moreover, electric vehicles have more advantages over fuel-powered vehicles in terms of road tax and maintenance costs, which can significantly reduce vehicle-using expenses in the long run.
Q
What is the ground clearance of Ora 07?
As an electric sedan designed for the modern metropolis, the ground clearance of the Ora 07 is approximately between 150mm and 160mm. This figure is at a moderate level among similar electric vehicle models. It can not only meet the passability requirements of daily urban roads but also maintain a low center of gravity to enhance handling stability. For users in Malaysia, such ground clearance can adapt to the local common road conditions, including occasionally encountered uneven roads or gentle slopes, while also taking into account the safety of the unique battery layout of electric vehicles. It's worth noting that the ground - clearance design of electric vehicles usually pays more attention to the protection of the battery pack than that of fuel - powered vehicles. Therefore, the chassis structure of the Ora 07 may adopt an enhanced protection design, such as increasing the thickness of the battery casing or installing protective plates. It is recommended that car owners still exercise caution when driving on special road conditions (such as waterlogged roads during the rainy season or rural gravel roads). If necessary, they can go to the authorized service center for chassis inspection. If you often need to deal with complex terrains, you can also consult the dealer for information on official modification plans. Some brands offer factory - approved chassis - raising services that do not affect the warranty.
Q
What is the top speed of the Ora 07?
As the latest model of Ora, an electric vehicle brand under Great Wall Motors, the Ora 07 can reach a top speed of 170 kilometers per hour. This performance is more than sufficient for city commuting and highway driving in Malaysia. Meanwhile, the instant torque output of the electric vehicle can also provide a nimble acceleration experience. In Malaysia's hot climate, the battery temperature control system installed in the Ora 07 can ensure stable performance in high - temperature environments. Moreover, local consumers can also enjoy the policy incentives of the government, which exempts electric vehicles from import duties and road taxes. It's worth mentioning that the top - speed design of electric vehicles is usually slightly lower than that of fuel - powered vehicles, mainly to balance the range performance. The Ora 07 can achieve an NEDC range of about 500 kilometers in ECO mode, fully meeting the need for long - distance travel from Kuala Lumpur to Penang. Malaysia is rapidly building charging infrastructure. Currently, there are more than 1,000 charging piles across the country. When buying an electric vehicle, it is recommended to download local charging apps such as ChargeEV or JomCharge to facilitate trip planning.
Q
What is the wheelbase of the Ora 07?
The wheelbase of the Ora 07 is 2,870 millimeters. This dimension is above average among electric vehicles in the same class, providing ample legroom for passengers inside the car, which is especially suitable for the comfort needs of Malaysian family users. The wheelbase is one of the important indicators for measuring the vehicle's seating space. A longer wheelbase usually means more stable high - speed driving performance and a more comfortable riding experience, but it will also slightly affect the vehicle's turning flexibility. As an electric sedan targeting young families, the wheelbase design of the Ora 07 strikes a good balance between handling and space comfort. Moreover, the 2,870 - millimeter wheelbase ensures that the legroom for rear - seat passengers is spacious enough, so they won't feel cramped even on long - distance trips. For Malaysian consumers, such a wheelbase performance is very suitable for the common family - car scenarios in the local area. Whether it's urban commuting or weekend self - driving tours, it can offer a great riding experience. It's worth mentioning that the wheelbase design of electric vehicles often has an advantage over that of fuel - powered vehicles. The layout of the battery flat under the chassis allows for more efficient use of the interior space.
Q
What is the range of the Ora 07?
As a pure - electric sedan under Great Wall Motors, the Ora 07's cruising range, according to official data, can reach approximately 420 to 500 kilometers under the WLTP test standard. The specific figure depends on the battery configuration and driving conditions, which can meet the daily commuting and short - distance travel needs of Malaysian users. For electric vehicles, the cruising range is affected by various factors, such as driving habits, air - conditioning usage, road conditions, and climate conditions. The hot and rainy climate in Malaysia may have a certain impact on battery efficiency. It is recommended that car owners regularly maintain the battery to keep it in optimal performance. In addition, the Ora 07 supports fast - charging technology, which can replenish a large amount of power in a short time. This is an advantage considering the gradually improving charging infrastructure in Malaysia. As electric - vehicle technology becomes more popular in the Southeast Asian market, it is particularly important for potential buyers to understand the cruising performance and charging convenience. The Ora 07 offers a competitive option in this niche market.
Q
What is the battery range of the Ora 07?
As an electric vehicle under Great Wall Motors, the battery range of the Ora 07 is a major concern for many Malaysian consumers. According to official data, the Ora 07 can achieve a range of approximately 420 kilometers under the WLTP test standard. This performance can meet the needs of most urban commutes and short - distance trips. Considering the common driving habits and road conditions in Malaysia, the actual range may fluctuate slightly due to factors such as air - conditioning use and traffic conditions, but overall, it still remains at the mainstream level among electric vehicles in the same class. For users considering electric vehicles, in addition to range, charging convenience is also a crucial factor. The Ora 07 supports fast - charging technology and can charge the battery from 30% to 80% in about 30 minutes. This is a plus for Malaysia's gradually improving charging infrastructure. It's worth noting that the range of an electric vehicle can be affected by driving style, load, and terrain. It is recommended that car owners plan their trips reasonably and make use of the regenerative braking function to further improve energy efficiency. At the same time, the Malaysian government currently offers tax incentives for electric vehicles, so purchasing a model like the Ora 07 can also enjoy certain policy benefits.
Q
What are the specs of the Ora 7 car?
The Ora 7 is a pure - electric compact SUV under the Ora brand of Great Wall Motors, mainly targeting young consumers. Its Malaysian version is expected to be equipped with a single - motor front - wheel drive system. The maximum power is about 150kW (204hp), and the peak torque is 340Nm. It can accelerate from 0 - 100km/h in about 7 seconds. It comes with a 63kWh lithium iron phosphate battery pack, with an NEDC cruising range of up to 500 kilometers. It supports fast charging (charging from 30% to 80% of the battery capacity takes about 30 minutes). The body size is approximately 4600mm×1860mm×1650mm, with a wheelbase of 2700mm. It has a 5 - seat layout. The interior is equipped with dual 12.3 - inch LCD screens, a HUD head - up display, and an L2 - level driving assistance system. The demand for electric vehicles in the Malaysian market is gradually increasing. The cruising range and intelligent configuration of the Ora 7 meet the local commuting needs. However, attention should be paid to the impact of the tropical climate on battery life. It is recommended to regularly check the battery cooling system. Competitors in the same class include the BYD Atto 3 and the Tesla Model Y. Consumers can make a choice after comparing the charging network coverage and after - sales policies.
Q
What is the size of the Ora 07?
The Ora 07 is a mid - sized electric sedan. Its body dimensions are 4,871 mm in length, 1,862 mm in width, and 1,500 mm in height, with a wheelbase of 2,870 mm. These dimensions provide passengers with a spacious seating area, especially the rear - seat legroom, which performs excellently and perfectly meets the needs of Malaysian family users. As a pure - electric vehicle, the Ora 07 emphasizes aerodynamics in its design. It has smooth body lines and a relatively low drag coefficient, which helps improve its range performance. In the Malaysian market, the Ora 07 has similar dimensions to its peers in the same class, such as the Tesla Model 3 or the BYD Seal, but its price is more competitive, making it a highly cost - effective choice. It's worth mentioning that the trunk volume of the Ora 07 also reaches a decent level, which can meet the needs of daily commuting or short - distance trips, and it's a plus for Malaysian consumers who value practicality. With the Malaysian government increasing its support for electric vehicles, electric cars like the Ora 07, which are of moderate size and practical in terms of space, will be increasingly favored by local consumers.
Q
What is the color of Ora 07?
As a stylish electric vehicle, the Ora 07 comes in three classic colors: Purple, Grey, and White. In Malaysia's hot and rainy climate, it's recommended to choose light - colored options like White. These colors can not only reflect sunlight to lower the temperature inside the car but are also more stain - resistant and easier to maintain. On the other hand, Purple or Grey offer a more distinctive look, but they require more frequent cleaning to keep their luster. In addition, the color choice of an electric vehicle may also affect its resale value. Neutral colors are generally more popular in the used - car market. If you're considering the future resale value, you should give priority to mainstream color schemes. After learning about the color options, it's advisable to visit the showroom to see the actual colors in person. Screen displays may cause color differences due to variations in lighting and devices. Also, some colors may require additional option fees. You can confirm the details with the sales staff before purchasing a car.
Q
What is the range of  Ora 07?
As a pure - electric sedan, the Ora 07 has a cruising range of approximately 420 to 500 kilometers under the WLTP test standard. The specific figure depends on the battery configuration and driving conditions. Such cruising ability is more than enough to meet the daily commuting and inter - city travel needs of Malaysian users. For electric vehicles, the cruising range is affected by various factors, including driving habits, air - conditioning usage, road conditions, and climate. The hot and rainy climate in Malaysia may have a certain impact on battery efficiency. It is recommended that users plan their charging schedules reasonably to optimize the usage experience. In addition, the Ora 07 supports fast - charging technology, which can replenish a large amount of power in a short time. Coupled with the gradually improving charging infrastructure in Malaysia, the practicality of the electric vehicle can be further enhanced. As electric vehicle technology continues to develop, the cruising range and charging efficiency are constantly improving. In the future, more high - performance electric vehicles suitable for tropical regions will enter the market, offering Malaysian consumers more choices.
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Pros

Impressive acceleration, 0-100km/h in 4.3s for performance version
Long range, up to 640km for extended range version
Fast DC charging, 30% to 80% in 30 minutes
Strong body structure with multiple safety features
Abundant intelligent and comfortable interior features

Cons

No specific cons found yet

Latest Q&A

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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