Q

What is the specification of the BMW iX M60 motor?

The BMW iX M60 is powered by permanent magnet synchronous motors. It adopts a dual-motor setup with front and rear placement. The motor specifications include a maximum output of 619 horsepower, with a combined power of 455 kW and peak torque of 1,110 N·m. These potent motors enable exceptional dynamic performance, allowing the vehicle to accelerate from 0 to 100 km/h in just 3.8 seconds (as officially claimed) and reach a top speed of 250 km/h. The all-wheel-drive system enhances BMW iX M60's traction and handling performance across various road conditions. The combination of these motor parameters and the drivetrain delivers a smooth, powerful, and efficient driving experience, making the BMW iX M60 a perfect choice for those consumers seeking a high-performance electric executive sedan.
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Q
Does the BMW iX M60 have air suspension?
The BMW iX M60 does not have air suspension. It is equipped with a double-wishbone independent suspension at the front and a multi-link independent suspension at the rear. These suspension systems are designed to achieve an optimal balance between ride comfort and handling performance. The front double-wishbone suspension effectively manages forces acting on the wheels during cornering and braking, enhancing steering precision. The rear multi-link suspension helps maintain stability and ride quality, adapting well to various road conditions. While air suspension in some other models offers adjustable ride height and damping characteristics to improve comfort and performance, the iX M60 focuses on the capabilities of its standard suspension setup to deliver a smooth and controlled driving experience.
Q
What's the weight of BMW iX M60?
A BMW iX M60 weighs 2,585 kg. Its weight is influenced by multiple factors, such as its large dimensions of 4,953 mm in length, 1,967 mm in width, and 1,969 mm in height, with a wheelbase of 3,000 mm. Its all-wheel-drive system with two permanent magnet synchronous motors also increases the weight. The vehicle's lithium-iron-phosphate battery, with a capacity of 111.5 kWh, significantly impacts the overall weight, as EV batteries are typically heavy. Additionally, robust safety and comfort features—such as a comprehensive airbag system, multi-zone climate control, and a premium audio system—further increase its total mass. This weight does not necessarily affect performance; in fact, the BMW iX M60 can reach a top speed of 250 km/h and accelerate from 0 to 100 km/h in just 3.8 seconds.
Q
What's the top speed of the iX M60?
The BMW iX M60 has a top speed of 250 km/h, which shows the excellence of its powertrain system. Equipped with dual motors - specifically permanent magnet synchronous motors - working together to deliver exceptional power output, the iX M60 achieves such top speed through its 619 horsepower, 455 kW combined system power, and remarkable 1,110 N·m of torque. The outstanding top speed not only delivers enjoyable driving experience but also shows BMW's engineering excellence in the electric vehicle domain. The vehicle's suspension and braking systems - including the front double-wishbone independent suspension, rear multi-link independent suspension, and ventilated disc brakes throughout - are specifically designed to handle the forces and demands of high-speed operation, ensuring both safety and handling precision are maintained even at maximum velocity.
Q
What are the differences between the iX M60 and M70?
There are several differences between the BMW iX M60 and M70. In terms of power performance, the iX M60's electric motor delivers a maximum output of 619PS, while the M70 generates a more powerful performance of 650 horsepower. Regarding exterior design, the new iX's closed front grille features a revised surface pattern that has changed from diamond to diagonal design, while the M70 adopts horizontal slat details similar to those on the new BMW M3/M4. Besides that, an LED surround light strip has been added to the front grille as standard equipment on the M70, while being optional for other variants. For wheels, the new BMW iX is equipped with 20-inch rims, with 21-inch and 22-inch options available, while the M70 introduces an optional 23-inch rim for the first time. In terms of range, the iX M60 has an official pure-electric range of 561km, while the M70 is estimated to achieve 302 miles (approximately 486km). Inside, the new BMW iX adopts a redesigned three-spoke circular steering wheel, replacing the previous polygonal two-spoke design. Additionally, the M70's M multifunction seats feature revised lateral bolstering and come equipped with a new heat pump air conditioning system, potentially casuing differences in overall configuration and driving experience.
Q
Is the BMW iX M60 equipped with All Wheel Drive system?
Yes, the BMW iX M60 is equipped with All Wheel Drive (AWD). It is powered by a dual-motor setup with a Front+Rear (front and rear) motor layout, which enables all-wheel drive. The all-wheel drive system makes the power distribution of the vehicle more flexible, allowing all four wheels to receive driving force. On slippery roads, such as in rainy or snowy conditions, all-wheel drive can significantly improve the vehicle's traction and stability, making the vehicle's driving safer and more reliable. During acceleration, all-wheel drive can better transfer power to the road surface, fully enabling the vehicle's power performance and achieving more rapid acceleration. Therefore, the all-wheel drive system of the BMW iX M60 brings drivers a better driving experience and adaptability in various road conditions.
Q
What are the differences between BMW iX M60 and xDrive50?
The BMW iX M60 differs from the xDrive50 in many aspects. In terms of power performance, the iX M60's electric motor shows more powerful output and quicker accerleration with a maximum output of 619PS, total power rated at 455kW, peak torque reaching 1,110N·m and official 0-100km/h acceleration time of 3.8 seconds, while the xDrive50 generates 523 horsepower and achieves the acceleration in 4.6 seconds. Regarding range, the iX M60's official pure-electric range reaches 561km, whereas the xDrive50's WLTP-certified range extends up to 630km. In addition, the drag coefficient measures 0.26Cd for the iX M60 compared to the xDrive50's 0.25Cd. In terms of price, the iX M60 is Priced at RM 579,800. What's more, in exterior design details, as the model of M Performance, the iX M60 adopts blue brake calipers with M badging, showing a more athletic and sophisticated appearance. Both models offer unique features, your selection can be based on your priorities for performance, range, and other factors.
Q
How long does it take to fully charge the BMW iX M60?
The BMW iX M60, as a high-performance all-electric SUV equipped with a large-capacity battery pack and fast-charging technology, its charging time depends on the charging method. When using a 50kW public fast charger, charging the battery from 10% to 80% takes approximately 1 hour and 30 minutes. With a more powerful 200kW fast-charging station, the same charging range can be achieved in about 35 minutes. For overnight slow-charging using an 11kW AC home wallbox, a full charge typically requires 10-11 hours. Notably, to protect battery longevity, BMW's charging management system automatically reduces charging speed after reaching 80% capacity (particularly during high-power fast charging). Therefore, for long-distance travel, it's recommended to discontinue charging at 80% as this already provides sufficient range.
Q
What is the actual range of the BMW iX M60?
The official pure-electric cruising range of the BMW iX M60 is 561 kilometers. However, in actual use, its real cruising range is affected by various factors. For example, driving habit is an important factor. If the driving style is aggressive, with frequent rapid acceleration and sudden braking, the power consumption will increase and the cruising range will be shortened; smooth driving helps to improve the cruising performance. Road conditions are also a crucial factor. Frequent start-stop cycles in congested road or uphill driving increase the vehicle's energy consumption and reduce the cruising range, whereas on unobstructed highways or urban expressways, the cruising range is relatively closer to the official data. Additionally, temperature impacts its cruising range. In cold weather, battery performance declines, reducing the cruising range. In hot weather, prolonged use of air conditioning also consumes power and shortens the cruising range. In summary, the combination of multiple factors results in differences between the actual cruising range and the official data.
Q
Where is the BMW iX M60 made?
The BMW iX M60 is manufactured in Germany. BMW is a renowned German automotive manufacturer, and its vehicles are typically produced in Germany factories. German manufacturing is known for its high quality, precision, and advanced engineering, which are hallmarks of BMW's production processes. The company's factories are equipped with state-of-the-art technology and staffed by skilled workers who ensure each vehicle meets BMW's stringent standards. The BMW iX M60 benefits from this manufacturing excellence, with features such as its advanced electric drivetrain, robust build quality, and luxurious interior working together to create a premium vehicle. Moreover, German manufacturing also enables efficient production and quality control, ensuring that Malaysian customers who purchase the BMW iX M60 receive a top-tier product.
Q
How fast is the speed of BMW iX M60?
The speed of BMW iX M60 is quite fast. Its top speed is 250 km/h, which allows it to reach high velocities on suitable roads. Regarding acceleration, it can accelerate from 0 to 100 km/h in just 3.8 seconds. This quick acceleration is caused by its powerful electric drivetrain, which consists of two Permanent Magnet Synchronous Motors. These motors work together to produce a combined system output of 619 horsepower and 1110 N·m of torque.Therefore, BMW iX M60 can rapidly gain speed, providing an exciting driving experience. The iX M60's excellent speed performance helps drivers a lot whether for overtaking on the highway or merging into traffic. This kind of performance is especially impressive for an SUV that weighs 2585 kg, showing the advanced engineering of BMW's electric vehicle technology.
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Pros

Strong power, offers an exciting driving experience.
Unique exterior, eye-catching with large and stylish wheels.
Low maintenance, less hassle compared to traditional cars.
Spacious interior, comfortable for both driver and passengers.
Advanced tech, convenient multimedia and voice control system.

Cons

Interior workmanship could be more refined.
Screen may black out occasionally, needs restart.
Wind noise is a bit loud when driving at high speeds.
Limited range, may not be suitable for long trips.

Latest Q&A

Q
What does gear size mean?
Gear size refers to the geometric characteristics of gears calculated through core parameters such as module, number of teeth, and pressure angle, which essentially reflect the physical specifications and meshing capability of gears. As a fundamental parameter, the module (m) is defined as the ratio of the pitch to the circumference π (m = p/π), directly determining the tooth height and tooth thickness. For example, the tooth height of a gear with a module of 0.5 is 1.125 mm (2.25 × 0.5), while that of a gear with a module of 1.0 doubles to 2.25 mm. Gear size calculation covers key data such as reference circle diameter (d = mz) and addendum circle diameter (da = d + 2m). For instance, the reference circle diameter of a gear with 16 teeth and a module of 0.4 is 6.4 mm. It should be noted that gears that mesh with each other must have the same module; otherwise, normal transmission cannot be achieved. The standardized design of gear sizes (such as the module series specified in JIS B 1701) ensures manufacturing compatibility, while the modified gear technology can adjust the center distance to meet non-standard requirements. These parameters collectively affect the torque transmission efficiency and mechanical strength of gears, and are core considerations in the design of transmission systems such as automotive gearboxes.
Q
What is the gear ratio of 1 to 7?
The gear ratios from 1st to 7th gear in an automobile transmission refer to the rotational speed ratio between the input shaft and the output shaft at each gear position. Their numerical design directly affects the vehicle's power output and fuel efficiency. Taking manual transmissions as an example, the 1st gear ratio is usually between 3.0:1 and 5.0:1, achieving high torque output through a large gear ratio, which is suitable for starting or climbing. As the gear position increases, the gear ratio gradually decreases. For instance, the 5th gear ratio is approximately 0.7:1 to 1.0:1, while the 6th or 7th gear (more common in high-performance or energy-efficient models) may further drop to around 0.6:1 to reduce the engine speed during high-speed cruising. The gear ratio distribution logic of automatic transmissions is similar, but the specific values vary due to differences in brand technologies. For example, the 1st gear ratio of some 7-speed dual-clutch transmissions is about 4.7:1, and the 7th gear ratio may be 0.6:1. It should be noted that the actual gear ratio is comprehensively influenced by the vehicle's positioning, engine characteristics, and final drive ratio. For example, the low gear ratios of commercial vehicles may be as high as 6:1 or more to meet heavy-load requirements, while the overdrive gear is designed to improve fuel economy through a gear ratio of less than 1. It is recommended to consult the technical manual of the specific vehicle model to obtain accurate data.
Q
What is the D4 on a car?
D4 is a gear identifier for automatic transmission vehicles, indicating that the transmission can automatically shift between gears 1 and 4, making it suitable for most daily driving scenarios. During normal driving, the system automatically selects the appropriate gear based on vehicle speed, engine RPM, and road conditions. For instance, it starts in first gear and progressively shifts up to fourth gear as speed increases to optimize power delivery and fuel efficiency. Common automatic transmission gear positions include P (Park), R (Reverse), N (Neutral), and D (Drive). Within the Drive mode, sub-modes like D3 restrict the transmission to third gear maximum, which is ideal for hill climbing or overtaking, while D4 is better suited for steady-state driving conditions such as highway cruising. In certain vehicle models, D4 may also refer to engine technology specifications—Toyota's D4-series engines, for example, employ direct fuel injection—though this interpretation depends on specific model context. While proper use of D4 enhances driving smoothness, switching to lower gears is recommended in challenging conditions (e.g., steep inclines or heavy traffic) to maintain better vehicle control.
Q
What does the 1/2/3 mean on my car's gear shift?
The numbers 1, 2, and 3 on a car's gear shift typically appear in manual transmission vehicles or the manual mode of automatic transmissions, each representing different gear ratios and power output ranges. Gear 1 is the starting gear, providing maximum torque, suitable for moving the vehicle from a standstill or climbing steep slopes. Gear 2 is used for low-speed driving or gentle inclines, serving as a transition between Gear 1 and Gear 3. Gear 3 is suitable for medium-speed driving, such as urban roads or situations with speeds between 40 to 60 kilometers per hour. These numbered gears adjust the relationship between engine speed and wheel speed to achieve more efficient power delivery and fuel economy. For automatic transmission vehicles with manual mode (e.g., M or S mode), drivers can manually select gears 1 through 3 to handle specific road conditions, such as using lower gears during long descents to employ engine braking and reduce brake system strain. Proper understanding and use of these numbered gears can improve driving safety while optimizing vehicle performance.
Q
How do you calculate gears?
There are three main methods for calculating the gear ratio. The first is based on the number of gear teeth, with the formula: gear ratio = number of teeth of the driven gear ÷ number of teeth of the driving gear. For example, if the driving gear has 20 teeth and the driven gear has 40 teeth, the gear ratio is 2:1, meaning that for every full rotation of the driving gear, the driven gear rotates half a turn. The second method uses the inverse relationship of rotational speeds, with the formula: i = rotational speed of the driving gear ÷ rotational speed of the driven gear = number of teeth of the driven gear ÷ number of teeth of the driving gear. If the driving gear rotates at 3000 rpm and the driven gear at 1500 rpm, the gear ratio is also 2:1. The third method combines torque and power parameters, with the formula: transmission ratio = operating torque ÷ (9550 ÷ motor power) × motor input speed ÷ service factor, which requires integrating motor performance and operating condition data. Gear ratio design directly affects vehicle performance. A large gear ratio (e.g., 1st gear) is suitable for climbing or heavy loads, as it increases torque but sacrifices speed. A small gear ratio (e.g., 5th gear) is beneficial for high-speed cruising and reducing fuel consumption. Modern transmissions optimize shift smoothness and fuel efficiency through multi-speed dense gear ratios (e.g., 8-speed transmissions). Additionally, electronic gear ratio technology can improve control precision by adjusting the pulse equivalent—for instance, optimizing the pulse equivalent from 2.44 μm/pulse to 1 μm/pulse can significantly enhance machining accuracy. A reasonable gear ratio configuration needs to balance power output, fuel economy, and driving comfort.
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