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Comparison Acer H6546Ki vs Acer M511

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Acer H6546Ki
Acer M511
Acer H6546KiAcer M511
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from £833.05 
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Main functionhomepresentations
Operating systemSmart TV (proprietary system)
Lamp and image
Lamp typeUHP
Service life3000 h3000 h
Service life (energy-saving)4500 h
Lamp power245 W
Brightness ANSI Lumens5200 lm4300 lm
Dynamic contrast10 000:110 000:1
Colour rendering1.07 billion colours1.07 billion colours
Horizontal frequency15 – 100 kHz15 – 100 kHz
Frame rate24 — 120 Hz24 – 120 Hz
Projection system
TechnologyDLP
Size0.47"
Real resolution1920x1080 px1920x1080 px
Max. video resolution1920x1200 px1920x1200 px
Image format support4:3, 16:94:3, 16:9, 16:10
Colour enhancement
Projecting
Rear projection
Throw distance, min1 m1 m
Throw distance, max10 m10 m
Image size27 – 301 "27 – 301 "
Throw ratio1.5:1 — 1.66 :11.5:1 – 1:66:1
Projection shift (offset)132 %121 %
Optical zoom1.1 x1.1 x
Digital zoom2 x2 x
Zoom and focusmanual
Keystone correction (vert), ±40 °40 °
Keystone correction (horizontal), ±40 °
Features
Features
3D support
3D support
Bluetoothv 4.2
Wi-FiWi-Fi 4 (802.11n)Wi-Fi 5 (802.11ac)
Miracast
Hardware
RAM2 GB
Built-in memory8 GB
USB-A 2.01 pcs2 pcs
Number of speakers11
Sound power3 W10 W
Video connectors
VGA
VGA
composite AV-input
HDMI inputs22
HDMI versionv 1.4
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)
COM port (RS-232)
General
Noise level (nominal)26 dB33 dB
Noise level (energy-saving / quiet)24 dB
Power sourcemainsmains
Power consumption290 W
Size (HxWxD)114x313x2240 mm114x313x240 mm
Weight2.9 kg3 kg
Color
Added to E-Catalogoctober 2023july 2022
Compare Acer H6546Ki and M511
The Acer H6546Ki and Acer M511 projectors have different purposes and features. The H6546Ki is designed for home theater and offers a brightness of 5200 ANSI lumens, making it more suitable for watching movies in well-lit conditions. Meanwhile, the M511, geared towards presentations, has a brightness of 4300 ANSI lumens and an integrated Smart TV operating system, which can be convenient for working with multimedia content. Both projectors support 3D and have similar contrast (10,000:1) and resolution (1920x1080 pixels) parameters. However, the H6546Ki features lower noise levels (26 dB compared to 33 dB for the M511) and sound power (3 W compared to 10 W for the M511), which may be significant for home use. Ultimately, the choice between them depends on your needs: the H6546Ki is better for cinema, while the M511 is better for presentations.
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Glossary

Main function

Main purpose of the projector.

This parameter is somewhat subjective and largely depends on how the device is positioned by the manufacturer; nevertheless, for the most comfortable use, it is best to follow the stated purpose. The options may include: universal, for presentations, for home theater, professional, portable, gaming. Here is a more detailed description of each option:

— Universal. The simplest type of projector, roughly speaking—any model that does not belong to one of the specializations described below. Most have fixed optics, a projection distance of 1 – 12 m, an image diagonal of approximately 1 – 7 m (see below), and a relatively low price.

— For presentations. Projectors primarily intended for business use, particularly for giving presentations. They generally have a short projection distance with a fairly large image diagonal, allowing them to be used in small rooms; they can work with both widescreen and standard image formats (see below), and support resolutions typical of computer graphics cards—for example, 1280х800. At the same time, the native resolution itself (see below) may be quite low. In addition, an almost mandatory feature of this type of projector—with rare exceptions—is a 15-pin D-Sub...input (see “Connectors”).

— For home theater. Projectors intended primarily for watching films. The main criterion for assigning a particular model to this category is how the projector is positioned by the manufacturer itself (in other words, whether this purpose is specified in the official documentation). However, there are also some common features: cinema-oriented models generally support widescreen image formats, have a high native resolution (see below), allowing them to work with HD video, and are equipped with the appropriate interfaces (see “Connectors”).

— Professional. High-end projectors with advanced specifications, numerous features and, accordingly, a considerable price. They are characterized by high image contrast ratios, support high-resolution video (including cinematic image formats), feature optical zoom for scaling the image without loss of quality, allow the connection of multichannel audio systems, and much more. The specific set of options in professional projectors may vary depending on the model, but in any case, these are fully loaded devices with top-tier specifications.

— Portable projector. An ultra-compact type of projector: most models are small enough to be carried in a pocket. These devices are primarily intended for giving impromptu presentations. Their form factor and power supply can vary. Some models are standalone devices with their own built-in storage and batteries (and sometimes even a full-fledged mobile OS such as Android on board). Others are designed like external cases or add-ons and, when in use, are attached directly to a mobile phone, using it as the signal and power source. However, in all cases, portable projectors have rather modest specifications due to their small size—for example, they have neither high brightness nor high image contrast. Battery life (in models with their own batteries) generally ranges from 40 minutes to an hour and a half. Energy-efficient LED lamps are also characteristic of this type (see below).

— Gaming. Specialized projectors intended for use with video games. Externally, they often feature a distinctive “aggressive” design, which may follow the style of a particular line of gaming PCs or laptops. As the name suggests, their practical specifications are primarily geared toward delivering a high-quality gaming image. To this end, projectors for this purpose typically offer, among other things, high native resolution (at least 1920х720, and more often 1920х1080 or higher), color reproduction of 1 billion colors, support for refresh rates (see below) of up to 120 Hz inclusive, and at least one HDMI input for receiving a digital signal from a computer graphics card. In addition, such models often support 3D. The maximum image diagonal may reach 7.5 m or more; this category also includes ultra-wide-angle devices capable of providing an image diagonal of about 3 m from a distance of about half a meter.

Operating system

Smart TV (proprietary system). The operating system of the projector is represented by the proprietary software shell of the manufacturer. Usually such operating systems have an attractive and convenient menu, similar to a traditional Smart TV. A proprietary operating system is developed by the manufacturer for the hardware resources of a particular projector model or a whole line. But, as practice shows, compared to the classic Smart TV, the functionality of proprietary system often has significant limitations, and the system itself, in fact, is a stripped-down version of a full-fledged Smart TV.

Smart TV (Android AOSP). This type of operating system is a modification of the popular Android OS, mainly notable for being open source. It is a versatile operating system that gives the user much more freedom to create changes and customizations within the system. At the same time, the installation and work stability of certain applications on this platform are not guaranteed, and the overall system management was not specially “tailored” for large screens, which may cause some inconvenience. First of all, such solutions will will generate interest among users who understand the features of the Android OS, like to customize and control everything, and have time for this.

Android TV. This type of projector has full-fledged Android TV software, spec...ially adapted to work on large screens. In accordance with the name, it is a type of Android OS, specially designed for projectors/TVs, etc. In addition to the common features of all “Androids” (such as the ability to install additional applications, including even games), it has a number of special features: optimized interface, integration with smartphones (including the ability to use them as a remote control), voice search, etc. Thanks to this, TVs with this feature are significantly superior in functionality to models with a Smart TV. Of course, a dedicated processor, graphics subsystem and memory are provided for the operation of a multifunctional OS, and the presence of such hardware resources is reflected in the total cost of the projector. Given the same optical design, models with Android TV will cost more than classic projectors with a simple multi-line menu.

Lamp type

— HD (High-intensity discharge). General name for gas discharge lamps, i.e. lamps in which the light flow is created by an electrical discharge between the electrodes inside the bulb. In the case of projectors, such lamps can be mercury, metal-halide, and xenon (see above for more details).

LED. LEDs are used as a light source. They provide high brightness with low power consumption.

Laser-LED. Light source based on laser LEDs. It has even greater brightness than classic LED, with relatively low power consumption.

— UHP (Ultra-high performance) — a high-pressure mercury lamp, developed by Philips. Compared to other lamps, it consumes less power, while not inferior in brightness. Projectors on such lamps are smaller and lighter than conventional ones due to a smaller power supply, the cooler operates with a lower noise level. The creators claimed a service life of up to 10,000 hours. One of the most popular types of lamps for projectors today

– UHE (Ultra-High Energy). Variety of UHP lamps (see above).

— UHB (Ultra-high brightness). Another kind of UHP lamps (see above).

— NSH (New Super High Pressure). Also applies to high pressure mercury lamps manufactured by Ushio. Somewhat less popular than UHP and its peers, but also widespread. Estimated operating time is about...2000 hours.

— SHP. High pressure mercury lamps manufactured by Phoenix.

— P-VIP (Video Projector) — a high-pressure mercury lamp from OSRAM. High brightness lamps, service life — 4000 — 6000 hours.

—UHM (Ultra High Performance Lamp of Matsushita) is a high pressure mercury lamp manufactured by Panasonic. Сan be easily changed, operating time, depending on type — 2000 — 5000 hours.

— Xenon. The design and principle of operation of such lamps are similar to high-pressure mercury lamps — light is created due to a discharge in a gaseous medium. However, instead of mercury vapor, in this case, an inert xenon gas under high pressure is used. This allows to create high power lamps (from 2 kW) with the appropriate light flow. Xenon lamps are used primarily in professional models.

— HPM. High-pressure mercury lamp technology developed by Sony and used primarily in its projectors (although other brands are also available). Combines compact size and relatively low cost with high brightness.

— DC. Abbreviation for "direct current". In the case of projector lamps, this designation usually refers to mercury lamps powered by direct current. The operating voltage of such lamps in different models of projectors may be different. Their design usually uses various tricks to improve performance compared to conventional lamps of this type — in particular, increase service life and reduce power consumption without sacrificing brightness.

— AC. This abbreviation stands for "alternating current". Such lamps are similar in almost everything to the DC ones described above, differing from them only in the type of power supply.

Service life (energy-saving)

When working in economy mode, the brightness of the backlight is noticeably reduced, on average by 30-50%. With a decrease in brightness, heat dissipation also decreases, which saves the working life of the illuminator, thereby increasing the lamp life. Thus, the ECO mode allows you to extend the lamp life by an average of 30%. If the typical projector lamp life is 4000 hours, regular use of the ECO mode will extend the backlight life to approximately 5500 hours.

Lamp power

The power consumption of the backlight lamp installed in the projector.

Theoretically, the more powerful the lamp, the brighter it is. However, this is only true when comparing lamps of the same type (see above); and even in this case, the brightness may also depend on the nuances of the design. Therefore, when evaluating the capabilities of a lamp, it is worth focus not so much on power, but on the directly claimed brightness in lumens (see below).

But what this parameter directly affects is the total power consumption of the projector: the lamp is the most “greedy” component of the device, compared to it, the power consumption of the rest of the electronics is very small. Also note that many powerful lamps have high heat dissipation and require cooling systems, which affects the size and weight of the projector.

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.

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).

Technology

The technology by which the projector sensor is built.

DLP. This technology is based on a chip with thousands of rotary micromirrors. Each such mirror corresponds to one pixel and has two fixed positions — “lit” and “darkened”. In most DLP projectors, there is only one sensor, and the output of a colour image is provided by the colour wheel, thanks to which the projector alternately displays the red, green and blue image; they are replaced so quickly that the viewer perceives not individual frames, but a whole colour picture. Compared to LCD models (see related section), these single-sensor projectors are more compact and offer better image contrast with deep black levels (which improves black and white image quality). However, the brightness of the colour image in DLP devices is relatively low, in addition, they are subject to the "rainbow effect": in dynamic scenes, colour artifacts may be noticeable due to the mismatch of red, green and blue image components. Three-sensor DLP projectors don`t have these shortcomings; however, such a design is very expensive, so it is found rarely, mainly among premium devices.

3LCD. Technology based on the use of translucent LCD sensors. There are three such sensors, each of them is translucent with its base colour (red, green or blue), and the final colour “picture” is formed from three images simultaneously superimposed on each other. Thanks to...this format of operation, you can achieve brighter, more saturated colours than in single-sensor DLP projectors (see the relevant paragraph); in addition, this technology is completely devoid of the "rainbow effect". Among its shortcomings are the relatively low contrast ratio (in particular, due to the low black depth) and the larger size of the projectors.

LCD(Liquid Crystal Display) — a colour rendering technology based on the modulation of light by liquid crystals. Do not confuse LCD and 3LCD sensors. 3LCD technology forms an image from three separate light streams, and in an LCD sensor, the image follows immediately from a single light beam. Sensors of this type provide a stable, contrasting and colour-rich image. Among the shortcomings of the technology, one can note the glimpse of the light grating, if you look at the picture from a close distance. Additionally, the substrate of LCD sensors is prone to fading, due to which the blue colour may begin to turn yellow over time (note that this can happen after a long time of active operation). LCD sensors require periodic maintenance, the service comes down to cleaning the air filter. LCD-sensor projectors are usually compact in size and light in weight, such models are prone to heat, and the noise threshold is above average.

— LCoS. A technology that combines the properties of DLP and LCD. Like LCD, it provides three separate sensors for the three primary colours (red, green, blue), and the final colour image is formed by the simultaneous superposition of these three components. The difference lies in the fact that in LCoS projectors the sensors are not translucent, but reflective. Thanks to this, you can achieve excellent contrast (as in DLP) combined with bright, high-quality colours without the "rainbow effect" (as in LCD). The main drawback of this technology is the impressive cost, which is why it is used mainly in premium projectors.

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.