Comparison DJI Mini 5 Pro vs Autel Evo Lite Plus Premium Bundle
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|---|---|---|
| DJI Mini 5 Pro | Autel Evo Lite Plus Premium Bundle | |
| Compare prices 6 | from $1,058.00 | |
| User reviews | ||
| TOP sellers | ||
Image transmission and control technology O4+ (up to 10 Mbps over the radio channel, up to 100 Mbps with Wi-Fi 6). FPV video transmission 1080p 60fps (flight, video/photo mode), 30fps (flight, video), 24fps (on the ground/standby mode). The camera sensor and gimbal stabilizer tilt have been improved. A forward-facing LIDAR and dual-band GPS (L1+L5) have been added. The drone's flight characteristics have been slightly improved. The ActiveTrack 360° mode has been updated. The Intelligent Flight Battery Plus is not officially sold in Europe. | The maximum flight distance is 24 km. Variable camera aperture f/2.8..f/11. Digital zoom 16x, lossless 4K - 1.3x, 1080p - 3x. The maximum video bitrate is 120 Mbps. Wi-Fi transfer rate - 20 MB / s. Maximum video quality: 2.7K at 30fps – closer than 1 km, 1080p at 30fps – further than 1 km. Quadcopter battery charging – 78 W. The Premium Bundle includes a charging unit for several batteries, additional batteries (2 pcs), a bag and additional spare parts. | |
Flight specs | ||
| Range of flight | 21 km | 24 km |
| Maximum flight time | 36 min | 40 min |
| Horizontal speed | 65 km/h | 68 km/h |
| Ascent / descent speed | 36 km/h | 18 km/h |
| Wind impedance | 12 m/s | 12 m/s |
Camera | ||
| Camera type | built-in | built-in |
| Matrix size | 1" | 1" |
| Aperture | f/1.8 | f/2.8 – f/11 |
| Number of megapixels | 48 MP | 20 MP |
| Photo resolution | 8192x6144 px | 5472x3648 px |
| Full HD filming (1080p) | 1920x1080 px 60 fps | 1920x1080 px 60 fps |
| Quad HD filming | 2720x1530 px 60 fps | |
| Ultra HD (4K) | 3840x2160 px 60 fps | 3840x2160 px 60 fps |
| Filming above 4K | 5472x3078 px 30 fps | |
| Viewing angles | 84° | 85 |
| Time lapse | ||
| Mechanical stabilizer suspension | ||
| Camera with control | ||
| Live video streaming | ||
| Memory card slot | ||
Flight modes and sensors | ||
| Flight modes | return "home" Follow me (tracking) Dronie (distance) Rocket (distance up) Orbit mode (flying in a circle) Helix (spiral flight) flight plan without GPS (Waypoints) | return "home" Follow me (tracking) flight plan without GPS (Waypoints) flyby GPS points |
| Sensors | GPS module heights optic gyroscope | GPS module optic gyroscope |
| Obstacle sensors | bottom top on the sides front back | bottom front back |
Control and transmitter | ||
| Control | remote control only | remote control and smartphone |
| Range | 20000 m | 12000 m |
| Control frequency | 2.4, 5.1 and 5.8 GHz | 2.4 and 5.8 GHz |
| Video transmission frequency | 2.4 and 5.8 GHz (Wi-Fi) | 2.4 and 5.8 GHz (Wi-Fi) |
| Smartphone mount | ||
| Remote control power source | battery | battery |
Motor and chassis | ||
| Motor type | brushless | |
| Number of screws | 4 pcs | 4 pcs |
| Foldable design | ||
Battery | ||
| Battery capacity | 2.79 Ah | 6.18 Ah |
| Voltage | 7.32 В | 11.13 В |
| Battery model | 2S | 3S |
| Batteries in the set | 1 pcs | 3 pcs |
General | ||
| Body backlight | ||
| Material | plastic | plastic |
| Dimensions | 380x304x91 mm | 517x430x85 mm |
| Dimensions (folded) | 157x95x68 mm | 210x104x85 mm |
| Weight | 249 g | 835 g |
| Color | ||
| Added to E-Catalog | september 2025 | january 2022 |
Compare DJI Mini 5 Pro and Autel Evo Lite Plus Premium Bundle
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Glossary
Range of flight
The distance that a quadcopter can travel in the air on one full battery charge. Simply put, this is the drone's range in kilometers. Note that smaller, lighter drones tend to have a more limited flight range compared to larger, more powerful models. In the latter, it can reach 30 km or more. Also, the maximum flight distance is often influenced by weather factors and the load carried by the copter.
Maximum flight time
Maximum flight time of a quadcopter on one full battery charge. This indicator is quite approximate, since it is most often indicated for ideal conditions - in real use, the flight time may be less than stated. However, by this indicator it is quite possible to evaluate the general capabilities of the copter and compare it with other models - a longer declared flight time in practice usually means higher autonomy.
Note that for modern copters, a flight time of 20 minutes or more is considered a good indicator, and in the most “long-lasting” models it can exceed 40 minutes.
Note that for modern copters, a flight time of 20 minutes or more is considered a good indicator, and in the most “long-lasting” models it can exceed 40 minutes.
Horizontal speed
The highest speed that a quadcopter can achieve in horizontal flight. It is worth considering that in most cases this parameter is indicated for optimal operating conditions: a fully charged battery, low air temperature, minimum weight, etc. However, it is quite possible to rely on it both when choosing and when comparing different models of copters with each other.
Note that quadcopters were originally designed as stable and maneuverable aerial platforms, and not as high-speed vehicles. Therefore, you should specifically look for a fast quadcopter only in cases where the ability to quickly move from place to place is critical (for example, when the device is supposed to be used for video recording of fast-moving objects over large areas).
Note that quadcopters were originally designed as stable and maneuverable aerial platforms, and not as high-speed vehicles. Therefore, you should specifically look for a fast quadcopter only in cases where the ability to quickly move from place to place is critical (for example, when the device is supposed to be used for video recording of fast-moving objects over large areas).
Ascent / descent speed
The speed at which the quadcopter rises up in the air or descends to the ground. Recreational, photo and video models tend to have more moderate climb/descent speeds, while professional or racing drones can rise and fall much faster. This indicator can be used to evaluate how quickly the copter can rise to a height for filming or, if necessary, avoid obstacles, and a high descent rate will be useful if the drone needs to be returned to the ground quickly and safely.
Aperture
Aperture - a characteristic that determines how much the camera lens attenuates the light flux passing through it. It depends on two main characteristics - the diameter of the active aperture of the lens and the focal length - and in the classical form is written as the ratio of the first to the second, while the diameter of the effective aperture is taken as a unit: for example, 1 / 2.8. Often, when recording the characteristics of a lens, the unit is generally omitted, such a record looks, for example, like this: f / 1.8. At the same time, the larger the number in the denominator, the smaller the aperture value: f / 4.0 lenses will produce a darker image than models with f / 1.4 aperture.
Number of megapixels
Resolution of the matrix in the standard camera of the quadrocopter.
Theoretically, the higher the resolution, the sharper, more detailed image the camera can produce. However, in practice, the quality of the "picture" is highly dependent on a number of other technical features - the size of the matrix, image processing algorithms, optical properties, etc. Moreover, when increasing the resolution without increasing the size of the matrix, the image quality may drop, because. significantly increases the likelihood of noise and extraneous artifacts. And for shooting video, a large number of megapixels is not required at all: for example, to shoot Full HD (1920x1080) video, which is considered a very solid format for quadrocopters, a sensor of only 2.07 megapixels is enough.
Note that high resolution is often a sign of an advanced camera with high image quality. However, this quality is not determined by the number of megapixels, but by the characteristics of the camera and the special technologies used in it. Therefore, when choosing a quadcopter with a camera, you should look not so much at the resolution as at the class and price category of the model as a whole.
Theoretically, the higher the resolution, the sharper, more detailed image the camera can produce. However, in practice, the quality of the "picture" is highly dependent on a number of other technical features - the size of the matrix, image processing algorithms, optical properties, etc. Moreover, when increasing the resolution without increasing the size of the matrix, the image quality may drop, because. significantly increases the likelihood of noise and extraneous artifacts. And for shooting video, a large number of megapixels is not required at all: for example, to shoot Full HD (1920x1080) video, which is considered a very solid format for quadrocopters, a sensor of only 2.07 megapixels is enough.
Note that high resolution is often a sign of an advanced camera with high image quality. However, this quality is not determined by the number of megapixels, but by the characteristics of the camera and the special technologies used in it. Therefore, when choosing a quadcopter with a camera, you should look not so much at the resolution as at the class and price category of the model as a whole.
Photo resolution
The maximum resolution of photos that the standard quadcopter camera can take. This parameter is directly related to the resolution of the matrix (see above): usually, the maximum resolution of a photo corresponds to the full resolution of the matrix. For example, for pictures of 4000x3000 pixels, a sensor of 4000 * 3000=12 megapixels is provided.
Theoretically, a higher resolution of photography allows you to achieve highly detailed photographs, with good visibility of fine details. However, as in the case of the overall resolution of the matrix, high resolution does not guarantee the same overall quality, and you should focus not only on this parameter, but also on the price category of the quadcopter and its camera.
Also note that the high resolution of the camera affects the volume of the materials being shot, for their storage and transmission, more voluminous drives and “thick” communication channels are required.
Theoretically, a higher resolution of photography allows you to achieve highly detailed photographs, with good visibility of fine details. However, as in the case of the overall resolution of the matrix, high resolution does not guarantee the same overall quality, and you should focus not only on this parameter, but also on the price category of the quadcopter and its camera.
Also note that the high resolution of the camera affects the volume of the materials being shot, for their storage and transmission, more voluminous drives and “thick” communication channels are required.
Quad HD filming
The maximum resolution and frame rate supported by the aircraft camera (built-in or bundled) when shooting in Quad HD.
This standard is intermediate between Full HD (see above) and UltraHD 4K (see below); in cameras of modern drones, the Quad HD frame size can be from 2560 to 2720 pixels horizontally and from 1440 to 1530 pixels vertically. In some situations, such a video turns out to be the best option: it gives better detail than Full HD, while it does not require such powerful “hardware” and capacious drives as 4K.
As for the actual frame rate, the higher it is, the smoother the video turns out, the less motion is blurred in the frame. On the other hand, the shooting speed directly affects the requirements for the power of the hardware and the volume of the finished files. In general, values up to 24 fps can be called minimal, from 24 to 30 fps — medium, from 30 to 60 fps — high. Speeds of more than 60 fps are mainly used for shooting slow-motion video, however, for a number of reasons, such a possibility is rarely provided for in the QuadHD standard: relatively simple devices would require too powerful and expensive hardware for this, and in advanced copters, where the cost of electronics not particularly important, manufacturers prefer to use slow motion at higher resolutions.
This standard is intermediate between Full HD (see above) and UltraHD 4K (see below); in cameras of modern drones, the Quad HD frame size can be from 2560 to 2720 pixels horizontally and from 1440 to 1530 pixels vertically. In some situations, such a video turns out to be the best option: it gives better detail than Full HD, while it does not require such powerful “hardware” and capacious drives as 4K.
As for the actual frame rate, the higher it is, the smoother the video turns out, the less motion is blurred in the frame. On the other hand, the shooting speed directly affects the requirements for the power of the hardware and the volume of the finished files. In general, values up to 24 fps can be called minimal, from 24 to 30 fps — medium, from 30 to 60 fps — high. Speeds of more than 60 fps are mainly used for shooting slow-motion video, however, for a number of reasons, such a possibility is rarely provided for in the QuadHD standard: relatively simple devices would require too powerful and expensive hardware for this, and in advanced copters, where the cost of electronics not particularly important, manufacturers prefer to use slow motion at higher resolutions.
Filming above 4K
The maximum resolution and frame rate supported by the aircraft camera (built-in or bundled) when shooting at a higher standard than 4K.
Some time ago, the most solid of these standards was UltraHD 5K with resolutions from 5280x2972 to 5472x3078. However, quadcopters with support for even higher resolutions later appeared: for example, as of mid-2021, there were models capable of shooting in 8K (7680x4320). Anyway, these video standards provide a very high degree of detail, but are expensive; in addition, to fully view materials captured in such formats, screens (TVs, monitors, etc.) of the appropriate resolution are required. As for the frame rate, in this case it usually does not exceed 24 fps — this is the minimum figure required for more or less comfortable viewing; a higher shooting speed would require too expensive and “gluttonous” (in terms of power consumption) electronics.
Separately, it is worth mentioning the professional use of drones from this category. In general, high resolutions can be very useful for aerial surveillance, broadcasting of various events, professional filming of documentaries and feature videos, etc. However, in fact, for such tasks it is more convenient and reasonable to use a heavy industrial (see "Type") copter with a gimbal , on which you can install a professional "SLR" or video camera. Such equipment often provides a higher quality of shooting than the compact built-in (or complete)...“peephole” of the copter, and the user’s capabilities are wider — for example, you can use different lenses on the camera, choosing optics for the specifics of a particular situation, and then and even install different cameras on the drone. So nowadays, support for 5K or 8K can only be found in individual devices of small sizes. It makes sense to purchase such models in cases where manoeuvrability and speed are no less important to you than high-resolution video — for example, for filming air races on the same quadrocopters.
Some time ago, the most solid of these standards was UltraHD 5K with resolutions from 5280x2972 to 5472x3078. However, quadcopters with support for even higher resolutions later appeared: for example, as of mid-2021, there were models capable of shooting in 8K (7680x4320). Anyway, these video standards provide a very high degree of detail, but are expensive; in addition, to fully view materials captured in such formats, screens (TVs, monitors, etc.) of the appropriate resolution are required. As for the frame rate, in this case it usually does not exceed 24 fps — this is the minimum figure required for more or less comfortable viewing; a higher shooting speed would require too expensive and “gluttonous” (in terms of power consumption) electronics.
Separately, it is worth mentioning the professional use of drones from this category. In general, high resolutions can be very useful for aerial surveillance, broadcasting of various events, professional filming of documentaries and feature videos, etc. However, in fact, for such tasks it is more convenient and reasonable to use a heavy industrial (see "Type") copter with a gimbal , on which you can install a professional "SLR" or video camera. Such equipment often provides a higher quality of shooting than the compact built-in (or complete)...“peephole” of the copter, and the user’s capabilities are wider — for example, you can use different lenses on the camera, choosing optics for the specifics of a particular situation, and then and even install different cameras on the drone. So nowadays, support for 5K or 8K can only be found in individual devices of small sizes. It makes sense to purchase such models in cases where manoeuvrability and speed are no less important to you than high-resolution video — for example, for filming air races on the same quadrocopters.






