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Comparison Sony FDR-AX33 vs Sony HDR-CX740E

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Sony FDR-AX33
Sony HDR-CX740E
Sony FDR-AX33Sony HDR-CX740E
from $784.00 up to $1,386.24
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Featuresamateuramateur
Media typeflash (memory card)flash (memory card)
Sensor
Sensor typeCMOSCMOS
Sensor size1/2.3"1/2.9"
Number of megapixels8.296.65
Effective megapixels8.296.14
Camera lens
Focal length (35mm equivalent)29.8 — 298 mm26 — 318 mm
Aperturef/1.8 — f/3.4f/1.8 — f/3.4
Optical zoom10 х10 х
Digital zoom120 х120 х
Image stabilizationopticaloptical
Filter diameter52 mm52 mm
Manual focus
Video shooting
Video resolution3840x2160 px1920x1080 px
Frame frequency50 fps50 fps
Recording formatsMPEG-4 AVC/ H.264 AVCHDMPEG-4 AVC/ H.264 AVCHD
Video recording speed100 Mbps, 28 Mbps, 24 MbpsPS 28 Mbps, FX 24 Mbps, FH 17 Mbps
Minimum illuminance3 lux
Night shooting
Shutter speed1/6 - 1/10000 с1/8 — 1/10000 с
White balanceauto, capturing, outdoor, indoor
Auto exposure910
Scene programmesauto, beach, fireworks, landscape, night shootingauto, twilight, twilight portrait (photo)
Sound recordingDolby Digital (5.1)Dolby Digital 5.1
Photo
Number of megapixels20.624.1
Max. photo size6048x3400 px6544x3680 px
Picture while shooting
Screen
Screen size3 "3 "
Screen resolution921.6 K pixels921 K pixels
Touch screen
Features
Features
viewfinder
 
 
 
built-in speaker
Wi-Fi module
NFC
 
viewfinder
built-in flash
backlight lamp
hot shoe
built-in speaker
 
 
direct copy to HDD
Memory and sockets
Built-in memory32 GB
Memory card supportMS PRO Duo, MS PRO HG-DuoMS PRO Duo, MS PRO-HG Duo, SD, SDHC, SDXC (Class 4 or higher)
Connectors
USB
HDMI
AV output
microphone input
headphone jack
USB
HDMI
AV output
microphone input
headphone jack
Battery
USB charging
Battery typeNP-FV70NP-FV50
Battery capacity2100 mAh1030 mAh
Battery life2.05 h
General
Remote control
Dimensions (WxHxD)71x78.5x155 mm107.5x87.5x166 mm
Weight700 g650 g
Color
Added to E-Catalogmarch 2015april 2012

Sensor size

The physical size of the camcorder sensor. It is usually measured diagonally and is indicated in fractions of an inch — for example, 1/3 "or 1/2.33" (the second option is larger, respectively). In addition, sensors of a “photographic” format can be installed in video cameras, in which case the corresponding designation is used — for example, APS-C.

The larger the sensor, the higher the image quality it can provide (all else being equal). This is due to the fact that on larger sensors, each individual pixel is larger, more light falls on it, which increases sensitivity and reduces noise; this is especially important for shooting in low light. For amateur purposes, small sensors are quite enough, but in professional cameras (see "Features") this parameter is at least 1/3". The exception, however, are models with several sensors (see "Number of sensors") in them each individual sensor is quite small, and high quality is ensured by image processing features.

Number of megapixels

The total number of individual photosensitive points (pixels) provided in the design of the sensor (1 megapixel corresponds to a million pixels). This parameter takes into account both those points on which the light falls, and service points that are not directly involved in the construction of the image. Therefore, in modern video cameras, it is more of a reference than practically significant; the actual image quality depends primarily on the number of effective megapixels (see below).

Effective megapixels

The number of light sensitive pixels directly involved in the construction of the image. These are the dots on which the “image” projected by the lens onto the matrix falls. In addition to them, there are also service pixels that are not illuminated during camera operation — they provide auxiliary information necessary for processing the resulting image. Also, when calculating effective megapixels, the reserve area required for electronic stabilization is usually not taken into account (see "Image Stabilization").

The value of the number of effective pixels for different modes of operation of the camcorder will also be different. For example, when recording video, many cameras use multiple pixels to build a single dot on the image; this is due to the fact that the sensor resolutions significantly exceed those required for video shooting (for example, the Full HD standard technically corresponds to only 2.07 megapixels). As a result, the image quality depends more on the sensor size (see above) than on the resolution. And among sensors of the same size, high resolution allows user to get better colour rendering and higher clarity (however, not always — a lot also depends on the peculiarities of image processing). If we are talking about photography, then more megapixels means a higher resolution of the resulting image, but the quality of such a picture can be relatively low due to the increased noise level and low sensitivity of each individual pixel.

Focal length (35mm equivalent)

Focal length of a standard video camera lens in terms of a 35 mm full-frame sensor. This parameter is also called the "equivalent focal length" — EFL.

The focal length itself is the distance from the optical centre of the lens (when focus to infinity) to the sensor, at which the sharpest image is obtained on the sensor. It is one of the key characteristics of any lens, because. determines the viewing angles, the degree of approximation and, accordingly, the specifics of the use of optics. At the same time, it is impossible to compare different options in terms of the actual focal length: the laws of physics are such that with different sizes of sensors, the same focal length will give different viewing angles. Therefore, EFL was adopted as a universal characteristic and criterion for comparison. It can be described as the focal length that a 35mm lens with the same viewing angles would have.

The larger the focal length, the narrower the viewing angle will be and the higher the degree of approximation of the visible scene. Optics with EFL up to 18 mm belongs to the class of ultra wide-angle ("fisheye") and is used primarily to create artistic effects. Distances up to 40 mm correspond to "wide angles", 50 mm gives the same degree of approximation as that of the naked eye, the range of 70-100 mm is considered optimal for portrait shooting, and large values allow the use of optics already as a telephoto lens. Knowing these provisions, one can approximately...evaluate the capabilities of the lens and its suitability for certain tasks; there are more detailed recommendations, they are described in special sources.

Also note that modern video cameras are usually equipped with lenses with a variable focal length (zoom), which allows you to change the degree of approximation and viewing angle; see "Optical Zoom" for details.

Video resolution

The maximum video resolution that the camera can capture. Resolution is the size of an image in points (pixels); usually it is written in two numbers, which correspond to the number of pixels horizontally and vertically.

The more pixels in the image — the clearer it is, the better you can see small details on it, however, the size of the video files increases accordingly. In addition, it is worth considering that in order to fully view the footage, you will need a screen of the appropriate resolution — otherwise all the advantages of the image will be negated. And this parameter also significantly affects the price of the device.

The smallest maximum resolution found in modern camcorders is about 720x480; the quality of such a "picture" can be compared with analogue television broadcasting. Resolution 1280x720 corresponds to the HD standard, it can be found among inexpensive TVs and monitors, and 1920x1080 (Full HD) is the most popular option among mid-range and top-class video devices. The maximum resolution used in modern consumer electronics (including camcorders) is 4K, 4096x2160; it is typical for the most advanced devices.

The vast majority of cameras are able to work not only with the maximum resolution, but also with several “more modest” options — for those cases where small file volumes are more important than high resolution.

Video recording speed

The data transfer speed provided by the camera when recording video. This parameter is also called bitrate (i.e., the number of bits per unit of time). For any file format used for recording, the general rule is that the higher the bitrate, the better the image quality (especially for formats that use lossy compression). On the other hand, high speed have appropriate requirements for the capabilities of the memory cards used — for more details, see "Memory card support"; and it increases the size of the file accordingly. Therefore, many modern camcorders are able to work with different bitrates; this allows you to choose the best option depending on what is more important for you at the moment — maximum quality or the ability to work with a slow card.

At the same time, we note that in terms of quality, this parameter is important mainly for professional video shooting. If you need a camera for amateur purposes, there is no need to look for the maximum bitrate: after all, such models (and memory cards for them) cost accordingly.

Minimum illuminance

The lowest illumination of the scene being shot, at which the camera is able to provide an image of normal quality. Note that in devices with a night view function (see below), this parameter can be specified in different ways. In some models, minimal illuminance is implied, in which the camera can shoot without backlight and at the same time maintain colour reproduction (as in normal daytime shooting); in others — an "absolute" minimum of light, below which it is impossible to use even the night mode. This point should be clarified according to the official documents of the manufacturer.

Anyway, the lower this indicator, the less light the camera needs to work and the better it handles with shooting at dusk or even at night. Thanks to the use of special technologies, some models are able to work even in complete darkness, with an illumination of 0 lux; this is due to the fact that modern sensors are able to perceive infrared radiation invisible to the eye. However, more often than not, shooting still requires a certain amount of light — at least tenths of a lux. For comparison: an illumination of 0.1 lux approximately corresponds to a lunar night with a “half” phase of the moon, and 1 lux is comparable to a bright full moon in southern latitudes.

Night shooting

The camera has night mode. In this case, both the meaning of this parameter and its specific implementation can significantly differ from model to model. So, in some cameras, this term means a special mode for deep twilight, which allows you to get a relatively reliable colour reproduction (“as in the daytime”) without the use of additional illumination. Others use an infrared filter, due to which shooting can be done even in complete darkness — but the image will turn out to be black and white. And in the most advanced models, this filter is complemented by its own IR illumination system, which further expands the capabilities of the camera.

Thus, the details of the operation of this mode in a particular camera should be clarified according to the official documents of the manufacturer. However, anyway, if you often have to shoot in low light conditions or at night, it may make sense to pay attention to such cameras. Also note that the presence of a standart backlight lamp (see "Features") is not considered a night shooting feature, although it can also significantly "make life easier" in the dark.

Shutter speed

The range of shutter speeds in which the camera is capable of operating during the shooting process.

Initially, shutter speed is the time during which light affects the photosensitive material (film) when shooting a single frame. For digital sensors, this is the period of time during which an image is read from the sensor to build a separate frame. When shooting video, this interval cannot be more than 1/n, where n is the frame rate (see above), but it can be less — for example, shooting at a frame rate of 30 fps and shutter speed of each frame 1/60 s. There are no such restrictions for the photo mode.

Long exposures are good because they allow the sensor to take in more light — accordingly, the “picture” is brighter, which is especially important in low light. At the same time, they increase the likelihood of getting a blurry image — due to the rapid movement of objects in the frame, the operator's hand shaking and other random camera movements that even the stabilization system is unable to compensate for. This effect can be useful for artistic motion blur, especially when shooting video, but in photo mode it is most often undesirable. Fast shutter speeds, on the other hand, allow you to get clear shots, but with less light, and in the case of video, even with the effect of sharp, jerky movements.

Accordingly, different exposure time options will be optimal for each situation, and the wider their range, the more opportunities the came...ra has to adjust to specific conditions.
Sony FDR-AX33 often compared
Sony HDR-CX740E often compared