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Comparison Optoma Zh462 vs Optoma ZH461

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Optoma Zh462
Optoma ZH461
Optoma Zh462Optoma ZH461
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Main functionuniversaluniversal
Lamp and image
Lamp typeLaser-LEDLaser-LED
Number of lamps1
Service life30000 h30000 h
Brightness5000 lm5000 lm
Dynamic contrast3 000 000:1300 000:1
Colour rendering1 billion colors
Horizontal frequency15 — 140 kHz15 – 91 kHz
Frame rate24 — 240 Hz
50 – 85 Hz /120 Гц для 3D/
Sensor
TechnologyDLPDLP
Sensor size0.65"
Real resolution1920x1080 px1920x1080 px
Max. video resolution1920x1080 px3840x2160 px
Image format support4:3, 16:9, 16:1016:9, 16:10, 4:3
HDR support
Colour enhancement
 /Amazing colour/
Resolution enhancement
Projecting
Rear projection
Throw distance, min1 m1 m
Throw distance, max8 m10 m
Image size0.76 — 7.62 m0.51 – 8.14 m
Throw ratio1.13:1 — 1.47:11.4:1 – 2.24:1
Optical zoom1.6 x
Digital zoom1.3 x
Zoom and focusmanualmanual
Lens shift
 /116%/
Keystone correction (vert), ±30 °30 °
Keystone correction (horizontal), ±30 °30 °
Features
Features
PJ-Link protocol
3D support
PJ-Link protocol
3D support
Wi-FiWi-Fi ready (optional)
Hardware
USB 2.0
/power supply via USB 1.5A/
1
Number of speakers12
Sound power15 W10 W
Video connectors
 
 
VGA /1 input, 1 output/
composite
HDMI inputs22
HDMI versionv 2.0
Audio connectors
 
 
3.5 mm output (mini-Jack)
microphone input
3.5 mm input (mini-Jack)
3.5 mm output (mini-Jack)
Service connectors
COM port (RS-232)
 
LAN (RJ-45)
 
COM port (RS-232)
USB (slave)
LAN (RJ-45)
3D Sync
General
Noise level (nominal)31 dB32 dB
Noise level (energy-saving / quiet)29 dB30 dB
Power sourcemainsmains
Power consumption205 W282 W
Size (HxWxD)108х274x216 mm123x337x265 mm
Weight3.4 kg4.5 kg
Color
Added to E-Catalogjanuary 2024august 2022

Number of lamps

The number of lamps provided in the design of the projector.

Most modern projectors have one lamp, but there are also multi-lamp models. More lamps increase the light flow and, accordingly, the brightness of the image provided by the projector. In addition, in models with 4 lamps, it may be possible to continue working even if one of the lamps burns out — the brightness of the remaining ones is enough to provide the desired brightness. In two-lamp versions, most often you have to change a burned-out lamp.

Dynamic contrast

The dynamic image contrast provided by the projector.

Dynamic contrast ratio is the ratio between the brightest white and darkest black colour that a projector can produce. Recall that the quality of colour reproduction and detailing depend on contrast, the higher this indicator, the lower the likelihood that details will be indistinguishable in bright or dark areas. However, dynamic contrast is a rather specific parameter. The fact is that when it is calculated, the brightest white at the maximum brightness settings and the darkest black at the minimum are taken into account. As a result, the figures in this column can be very impressive, but it is impossible to achieve such a contrast within one frame.

By introducing this parameter, the manufacturers went to a certain trick. However, this is not to say that dynamic contrast has nothing to do with image quality at all. Projectors can use automatic brightness control, in which the overall brightness, depending on the "picture" on the screen, can increase or decrease. This format of work is based on the fact that the human eye does not need too bright areas on a general dark background and very dark areas on a bright one, the image is normally perceived even without it. The maximum brightness difference achievable in this mode of operation is exactly what described by dynamic contrast.

Colour rendering

The number of individual colour shades that the projector is capable of displaying.

The minimum indicator for modern projection technology is actually 16 million colours (more precisely, 16.7 million is a standard number associated with the features of digital image processing). In the most advanced models, this value can exceed 1 billion. However, two nuances should be taken into account here: firstly, the human eye is able to recognize only about 10 million colour shades, and secondly, not a single modern image output device (projectors, monitors, etc.) cannot cover the entire spectrum of colours visible to the human eye. Therefore, impressive colour performance is more of a marketing ploy than a real indicator of image quality, and in fact it makes sense to pay attention to other characteristics — primarily brightness and contrast (see above), as well as specific data like a colour gamut chart.

Horizontal frequency

Horizontal frequency supported by the projector.

This parameter is relevant when working with analogue video signal. In such a video, the image is formed line by line: each pixel in the line is highlighted in turn, then the next line is highlighted, and so on. The horizontal frequency describes how many times per second the backlight beam runs from edge to edge of the screen. For normal playback, the projector must support the same refresh rate as the input signal was recorded. However, most models support a fairly wide range of frequencies, and there are no problems with support. Also note that if you are not a professional, then when choosing a projector, it is quite possible to focus on the frame rate (see below) — this parameter is simpler and more intuitive, and support for a certain frame rate automatically means support for the corresponding line rate.

Frame rate

Frame rate, simply put, is the frame rate supported by the projector.

For normal playback, it is highly desirable that the frame rate of the projector match the original frame rate of the video signal. However, most modern models do not support a specific frame rate, but a whole range of frequencies, and quite an extensive one at that.

Note that for viewing most video materials, the range from 24 to 60 fps is quite enough. The exception is 3D content, which may require double the frame rate, up to 120Hz (see " 3D Support " for details).

Sensor size

The size of the sensor affects the depth and final quality of the image. The larger the sensor, the more light it is able to process, which means the picture will be clearer and more structured. The average projector has a sensor of 0.5-0.7″, advanced projectors use sensors of 1.2-1.5″ and more.

Max. video resolution

The maximum resolution is closely related to both the overall picture quality and the screen size. The higher the resolution of the projector, the clearer the image details become, especially when viewing the picture on a large screen.

For the vast majority of tasks, a resolution ranging from HD (1280x720) to Full HD (1920x1080) is usually enough. If the projector will be used to play modern games, you should choose a model with a resolution from Quad HD (2560x1440) to 4K (3840×2160) and even 8K (7680x4320).

Of course, the screen size itself should be taken into account. The fact is that on a 40-50″ projection surface there will not be much difference between Quad HD and 4K formats. A high-resolution picture will be able to express itself on a really big screen.

Image format support

Image formats supported by the projector.

In this case, format means the aspect ratio of the image. The general rule in this case is that the projector must support the same format in which the original content is recorded. Otherwise, the image will either be stretched in height or width, or with black stripes on the sides or top-bottom. Specifically, the formats can be divided into three main categories:

— Traditional, or rectangular. Classic formats in which the height of the picture is not much less than the width. The most popular options are 4:3, widely used in analogue TV, and 5:4, common in computer technology. Traditional formats are well suited for presentations, working with documents and graphics, and other similar tasks.

Widescreen — formats in which the frame width is significantly (more than 1.5 times) greater than the height. The most popular of these standards are 16:9 and 16:10. These aspect ratios are well suited for games and movies; in particular, most high-definition content (HD 720p and above) is recorded in widescreen format.

Extra wide. The formats are even wider than the widescreen ones described above — for example, 21:9. Mainly used in cinematography.

It is worth noting that many modern projectors are able to work with several types of formats at once — for example, with classic 4:3 and...wide-angle 16:9.

Resolution enhancement

Resolution enhancement technology uses software algorithms to improve image quality. Resolution enhancement makes textures sharper. There are many ways to do this: noise reduction, contrast enhancement, colour correction, etc. Of course, you can not count on a significant result when improving the resolution in a software way, but it can provide a noticeable effect. Resolution enhancement can be very useful in cases where the projector displays the image on a large screen, capturing the largest possible diagonal.