We put the Crosscall Stellar-M6 through our rigorous DXOMark camera test suite to measure its performance as photos, videos and zooms from the point of view of the final user. This article disappears the way the device went to a variety of tests and several cases of common use and is intended to highlight the most important results of our tests with an extract of the acquired data.

Panoramic

Key camera specifications:

Pros

  • Target exposure quite accurate in light conditions when you take photos and videos
  • Neutral white balance in light conditions
  • Stable autofocus which is also fast in external conditions

Against

  • In the photo, slow exposure time in all conditions, leading to Motion Blur
  • Limited dynamic range in high dynamic scenes
  • Lowly on details in all conditions, with a high level of noise in photos and videos
  • Evident artifacts as a ghost, quantization of color, shift of shade
  • Lack of bokeh effect with the Tele and Ultra Wide module
  • In video, visible exposure and autofocus instability in all conditions
  • Video stabilization is not very efficient when it is moving
  • The problems of adaptation of white balance are sometimes visible

The single main Crosscall Stellar-M6 camera has provided images with less than average quality for its high-end price segment. Although the device is known for its solid build, the very limited performance of the camera in conditions other than the ideal make even appeal unlikely to users who need to take an occasional photo or video when they are on the field.

Exposure to target and white balance were often on this point, but only in brilliant conditions. Even in brilliant conditions, the photos would sometimes show off due to a slow exposure time. The dynamic range was also quite limited, with resulting images containing a low level of details and a high level of noise.

When taking videos, the video stabilization of the camera was inefficient, adding to the instability seen on display, autofocus and color.

Test summary

Information on DXOMark camera tests: The assessments of the DXOMark camera take place in the workshops and in situations from the real world using a wide variety of subjects. The scores are based on objective tests for which the results are calculated directly from the measurement software on our laboratory configurations and on perceptive tests in which a sophisticated set of metrics allows a group of images of images to compare the aspects of the image quality that require a human judgment. Testing a smartphone includes a team of engineers and technicians for about a week. The quality of photos, zooms and videos is evaluated separately and therefore combined in an overall score for the comparison between the cameras in different devices. For more information on the DXOMark camera protocol, click here. More details on the smartphone camera scores are available here. The following section collects key elements of the tests and exhaustive analyzes of DXomark. Complete performance assessments are available on request. Please contact us on how to receive a complete relationship.

Crosscall Stellar-M6 Camera scores

This graphic compares the Dxomark scores photos, zooms and videos between the tested device and the references. Average and maximum scores of the price segment are also indicated. The average and maximum scores for each price segment are calculated based on the DXOMark database of tested devices.

Photo

59

Huawei Pura 70 Ultra

Huawei Pura 70 Ultra

Information on the photographic tests of DXOMark Camera

For the score and analysis, DXOMark engineers acquire and evaluate over 2,600 test images both in controlled laboratory environments and in external, internal natural scenes and in low light conditions, using the predefined settings of the camera. The photographic protocol is designed to take into account the main cases of use and is based on typical shooting scenarios, such as portraits, family and landscape photography. The evaluation is performed by visually inspecting images compared to a reference of natural scenes and performing objective measurements on the images of graphs captured in the laboratory in different lighting conditions from 1 to 1,000+ lux and color temperatures of 2,300ka 6,500k.

Crosscall Stellar-M6 Photo Scores

The photographic tests analyze the quality attributes of the image such as exposure, color, plot and noise in various light conditions. Autofocus performances and the presence of artifacts on all images captured in laboratory conditions controlled and in real life images are also evaluated. All these attributes have a significant impact on the final quality of the images captured with the tested device and can help understand the main strengths and weaknesses of the camera.

Crosscall Stellar M6 – accurate target exposure and natural balance.

AUTOFOCUS Irregularities and Speed: 1000Lux δ0Ev daytake

This graph illustrates the accuracy and speed of focus and also the zero -shutter delay capacity by showing the exacerbation of the edges compared to the measurement time on the AFHDR configuration on a series of images. All the images were taken at 1000Lux with a daylight lighting light, 500 ms after the Defocus. The Edge’s mite is measured on the four edges of the dead leaves table and the shooting time is measured on the universal led timer.

Dxomark Chart (DMC) detailed conservation score compared to Lux levels for the conditions of the tripod and the PDA

This graph shows the evolution of the DMC details conservation score with the Lux level, for two maintenance conditions. The DMC detail conservation score derives from a metric based on artificial intelligence trained to evaluate the plot and details that make the selection of crops of our DXOMark graph.

Evolution of visual noise with levels of enlightenment in portable conditions

This graph shows the evolution of visual noise metric with the level of lux in portable conditions. The metric of visual noise is the average of the measurement of visual noise on all the patches of the graphic graphic designer in the AFHDR configuration. Dxomark visual noise measurement derives from the ISO15739 standard.

Zoom

24

Huawei Pura 70 Ultra

Huawei Pura 70 Ultra

Information on the Zoom tests of the DXOMark camera

Dxomark engineers acquire and evaluate over 400 test images in controlled laboratory environments and in external natural scenes, internal and in low light conditions, using the default settings of the camera and pinch the zoom to various zoom zoom factors ultra wide to long range. The evaluation is carried out by visually inspecting the images compared to a reference of natural scenes and performing objective measurements of the graphic magicians captured in the laboratory in different conditions from 20 to 1000 lux and color temperatures from 2300k to 6500k.

Crosscall Stellar-M6 Zoom Punician

This graph illustrates the relative scores for the different ranges of zooms assessed. The abscissa is expressed in focal length equivalent to 35 mm. The zoom-in scores are displayed on the right and zoom-out scores on the left.

Video

73

Apple iPhone 16 Pro

Apple iPhone 16 Pro

Information on the video tests of the DXOMark camera

Dxomark engineers acquire and evaluate more than 2.5 hours of videos in controlled laboratory environments and in natural scenes of poor lighting, internal and external, using the default settings of the camera. The evaluation consists in visually inspecting the natural videos taken in various conditions and the execution of objective measurements on the videos of the graphs recorded in the laboratory in different conditions from 1 to 1000+ lux and color temperatures of 2,300ka 6,500k.

Crosscall Stellar-M6 Video scores

The video tests analyze the same quality attributes of the image of fixed images, such as exposure, color, plot or noise, as well as temporal aspects such as speed and fluidity and stability of the exposure, white balance and autofocus transitions.

Crosscall Stellar-M6-exposure to the target is accurate with the balance of neutral white.

Dxomark Chart (DMC) Detail Book of preservation Vide Lux

This graph shows the evolution of the DMC details of the DMC detail with the Lux level on video. The DMC detail conservation score derives from a metric based on artificial intelligence trained to evaluate the plot and details that make the selection of crops of our DXOMark graph.

Evolution of the visual spatial noise with the level of enlightenment

This graph shows the evolution of visual spatial noise with the level of Lux. The visual spatial noise is measured on the visual noise graph in the configuration of the noise video. Dxomark visual noise measurement derives from the ISO15739 standard.

Evolution of the time visual noise with the level of enlightenment

This graph shows the evolution of time visual noise with the Lux level. The time visual noise is measured on the visual noise graph in the configuration of the noise video.

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Philip Owell

Professional blogger, here to bring you new and interesting content every time you visit our blog.