Comparison Acer H6810 vs Acer H7850
Add to comparison | ![]() | ![]() |
|---|---|---|
| Acer H6810 | Acer H7850 | |
from $174.60 | Outdated Product | |
| TOP sellers | ||
Support for HDR technology | Support for HDR technology | |
| Main function | home | home |
Lamp and image | ||
| Lamp type | UHP | UHP |
| Lamp model | MC.JQE11.001 | MC.JPC11.002 |
| Service life | 4000 h | 4000 h |
| Service life (energy-saving) | 10000 h | 10000 h |
| Lamp power | 240 W | 240 W |
| Brightness | 3000 lm | |
| Brightness ANSI Lumens | 3500 lm | |
| Dynamic contrast | 10 000:1 | 1 000 000:1 |
| Colour rendering | 1.07 billion colours | 1.07 billion colours |
| Horizontal frequency | 15 – 135 kHz | 15 – 135 kHz |
| Frame rate | 24 – 120 Hz | 24 – 120 Hz |
Projection system | ||
| Technology | DLP | DLP |
| Size | 0.47" | |
| Real resolution | 3840x2160 px | 3840x2160 px |
| Image format support | 4:3, 16:9, 16:10 | 4:3, 16:9, 16:10 |
| HDR support | + | + |
| Resolution enhancement | ||
Projecting | ||
| Rear projection | ||
| Throw distance, min | 1 m | 1.3 m |
| Throw distance, max | 9.75 m | 9.3 m |
| Image size | 26 – 300 " | 26 – 302 " |
| Throw ratio | 1.47:1 – 1.76:1 | 1.39:1 – 2.22:1 |
| Optical zoom | 1.2 x | 1.6 x |
| Digital zoom | 2 x | |
| Zoom and focus | manual | manual |
| Keystone correction (vert), ± | 40 ° | 15 ° |
Features | ||
| Features | DLNA support MHL support | |
| Wi-Fi | Wi-Fi ready | |
Hardware | ||
| USB-A 2.0 | 1 pcs | 1 pcs |
| Number of speakers | 1 | 2 |
| Sound power | 10 W | 10 W |
| Video connectors | VGA | VGA |
| HDMI inputs | 2 | 2 |
| HDMI version | v 2.0 | |
| Audio connectors | 3.5 mm input (mini-Jack) 3.5 mm output (mini-Jack) | 3.5 mm input (mini-Jack) 3.5 mm output (mini-Jack) |
| Service connectors | COM port (RS-232) USB (slave) | COM port (RS-232) USB (slave) LAN (RJ-45) |
General | ||
| Noise level (nominal) | 30 dB | 29 dB |
| Noise level (energy-saving / quiet) | 24 dB | 26 dB |
| Power source | mains | mains |
| Power consumption | 335 W | 315 W |
| Size (HxWxD) | 125x343x258 mm | 127x398x298 mm |
| Weight | 4 kg | 5.3 kg |
| Color | ||
| Added to E-Catalog | september 2018 | august 2017 |
Compare Acer H6810 and H7850
The projectors Acer H6810 and H7850 are designed for home theater use, and both utilize DLP technology with a resolution of 3840x2160 pixels and HDR support. However, the H6810 offers a brightness of 3500 ANSI lumens and a dynamic contrast ratio of 10,000:1, making it a brighter option for well-lit rooms. Meanwhile, the H7850 has a brightness of 3000 lm but impresses with a contrast ratio of 1,000,000:1, which can provide deeper black tones. The projection distance for the H6810 ranges from 1.0 to 9.8 meters, while the H7850 ranges from 1.3 to 9.3 meters. It is also worth noting that the H7850 supports additional features like DLNA and optional Wi-Fi, which may be useful for users seeking more modern connectivity options. Overall, the choice between these projectors depends on preferences for brightness and contrast in the image.
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Glossary
Lamp model
The lamp model that the projector is designed for. Most projectors come with lamps included, so this information is not needed for normal use. But when looking for a spare lamp or replacement, information about model can be very useful: finding a spare part by the exact name is much easier than by general data like the brand of the projector.
Brightness
The brightness of the image produced by the projector at maximum backlight brightness. Usually, the average brightness of the screen, derived from a special formula, is indicated. The higher it is, the less the image depends on ambient light: a bright projector can provide a clearly visible image even in daylight, but a dim one will require dimming. On the other hand, increasing brightness reduces contrast and accuracy of colour reproduction.
Accordingly, when choosing this parameter, you need to consider the conditions in which you plan to use the projector. So, for office or school/university use, a brightness of at least 3000 lm is desirable — this allows you to get normal visibility without obscuring the room. In turn, among the top models a very low brightness can be found, because. such projectors are usually installed in rooms specially designed for them with good darkness level. And in ultra-compact devices it is impossible to achieve high brightness for technical reasons.
Detailed recommendations on the optimal brightness for certain conditions can be found in special sources. Here we note that anyway, it is worth choosing according to this indicator with some margin. As mentioned above, as brightness increases, contrast and colour quality decrease, and you may need to use the projector at a reduced brightness to achieve the desired picture quality.
Accordingly, when choosing this parameter, you need to consider the conditions in which you plan to use the projector. So, for office or school/university use, a brightness of at least 3000 lm is desirable — this allows you to get normal visibility without obscuring the room. In turn, among the top models a very low brightness can be found, because. such projectors are usually installed in rooms specially designed for them with good darkness level. And in ultra-compact devices it is impossible to achieve high brightness for technical reasons.
Detailed recommendations on the optimal brightness for certain conditions can be found in special sources. Here we note that anyway, it is worth choosing according to this indicator with some margin. As mentioned above, as brightness increases, contrast and colour quality decrease, and you may need to use the projector at a reduced brightness to achieve the desired picture quality.
Brightness ANSI Lumens
This parameter largely determines the ability of the projector to work in a well-lit room. For a dark room, 1000 lumens is enough to make the projection picture bright, rich, clear and understandable. But when working in a lit room, the projector will need at least 3500-4000 lumens. Do not confuse ANSI lumens with Peak lumens. These are two different brightness standards. To convert one type of brightness to another, you need to multiply Peak lumens by 10-12. The result will be an approximate value of ANSI Lumens.
However, experts do not recommend chasing high ANSI lumen brightness values. There are many professional projectors with brightness up to 3500 lm. The lower the brightness, the lower the power consumption, and at the same time, the life of the illuminator increases. Of course, if the projector will be installed in a work office or classroom where good lighting is required, it is recommended to purchase a model with ANSI Lumens brightness of 4000 lumens and more.
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.
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.
Size
The size of the panel/chip affects the depth and final quality of the image. The larger the panel/chip, 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.
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.
Throw distance, min
The closest distance to the screen that the projector can be used on. Typically, this is the minimum distance at which the image from the projector remains in focus.
This parameter is especially important if the device is to be placed at a small distance from the screen (for example, in a cramped room). Some modern projectors are able to work normally at a distance of 10 – 20 cm. Also note that the throw distances are determined primarily by the lens, and if the initial range of these distances does not suit you, perhaps the situation can be solved by replacing the optics.
This parameter is especially important if the device is to be placed at a small distance from the screen (for example, in a cramped room). Some modern projectors are able to work normally at a distance of 10 – 20 cm. Also note that the throw distances are determined primarily by the lens, and if the initial range of these distances does not suit you, perhaps the situation can be solved by replacing the optics.
Throw distance, max
The farthest distance from the screen that the projector can be used on. This is the maximum distance at which the image remains in focus and maintains acceptable brightness — at least enough for viewing in a darkened room on a high-quality screen.
It is necessary to choose according to this parameter taking into account the expected operating conditions and the distances to be dealt with. At the same time, it's ok to have a certain margin for the maximum distance — since, as already mentioned, it is usually indicated for an perfect screen and a darkened room, and such conditions are not always available. Also note that although the throw distances depend on the lens, not every projector with an interchangeable lens allows the installation of more "long-range" optics than the standard one — the device may simply not have enough brightness for an increased distance.
It is necessary to choose according to this parameter taking into account the expected operating conditions and the distances to be dealt with. At the same time, it's ok to have a certain margin for the maximum distance — since, as already mentioned, it is usually indicated for an perfect screen and a darkened room, and such conditions are not always available. Also note that although the throw distances depend on the lens, not every projector with an interchangeable lens allows the installation of more "long-range" optics than the standard one — the device may simply not have enough brightness for an increased distance.
Image size
Size of the image projected by the projector. Usually, it is indicated as a range — from the smallest, at the minimum throw distance, to the largest, at the maximum. About throw distances, see above; here it is worth saying that the choice of diagonal size depends both on the distance between the screen and the audience, and on the format of the projector. For example, to watch a video, the best option is the situation when the distance from the viewer to the image corresponds to 3-4 diagonals, and a relatively large picture can be useful for working with presentations. More detailed recommendations for different situations can be found in special sources; here we only recall that the image must fit on the screen used with the projector.







