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Comparison Kivi 40F800KB vs Kivi 40F820KB

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Kivi 40F800KB
Kivi 40F820KB
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Equipped with the image processing processor PQ-Engine for enhancing color, contrast, and image sharpness.
A PQ-Engine image processing processor is installed to enhance color, contrast, and image sharpness.
Size40 "40 "
Operating systemGoogle TV (Android TV)Google TV (Android TV)
Display
MatrixIPSQLED
Backlight typeDirect LEDDirect LED
Screen surfaceglossyglossy
Resolution1920x1080 px1920x1080 px
Frame rate50/60 Hz50/60 Hz
HDR supportHDR10HDR10
Brightness / contrast enhancement
Colour enhancement
Multimedia
Sound power20 W20 W
Number of speakers22
Audio decodersDolby AudioDolby Audio
Digital tuner
DVB-T2 (terrestrial)
DVB-C (cable)
DVB-T2 (terrestrial)
DVB-C (cable)
Features
Features
Wi-Fi
Google Cast (Chromecast)
Bluetooth
voice control
Google Assistant
Wi-Fi
Google Cast (Chromecast)
Bluetooth
voice control
Google Assistant
Connectors
HDMI22
HDMI versionv 1.4v 1.4
HDMI technologiesARCARC
Additional inputs
USB-A 2 pcs
LAN
composite AV input
USB-A 2 pcs
LAN
composite AV input
Outputs
optical
optical
General
RAM1 GB1 GB
Built-in memory8 GB8 GB
Wall mountVESA 200x200 mmVESA 200x200 mm
Stand shape2 separate legs2 separate legs
Power consumption60 W60 W
Dimensions (WxHxD)893x561x198 mm893x561x198 mm
Dimensions without stand (WxHxD)893x509x82 mm893x509x82 mm
Weight5.5 kg5.5 kg
Color
Added to E-Catalognovember 2025november 2025
Compare Kivi 40F800KB and 40F820KB
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Glossary

Matrix

The type of matrix used in the TV. Among them, OLED, QLED, QD-OLED and NanoCell deserve the most attention, which are found in TVs of the relevant price category. Now more about each of them and other more classic options:

— OLED. TVs with screens that use organic light-emitting diodes — OLED. Such LEDs can be used both to illuminate a traditional LCD matrix, and as elements from which a screen is built. In the first case, the advantages of OLED over traditional LED are compactness, extremely low power consumption, backlight uniformity, as well as excellent brightness and contrast ratios. And in matrices, consisting entirely of OLED, these advantages are even more pronounced. The main disadvantages of OLED TVs are the high price (which, however, is constantly decreasing as the technology develops and improves), as well as the susceptibility of organic pixels to burn-in during long-term broadcast of static images or pictures with static elements (TV channel logo, information panel, etc.).

— QLED. TVs with screens using "quantum dot" technology — QLED. Such screens differ from conventional LED matrices in the design of the backlight: multilayer colour filters in such a backlight are replaced with a thin-film light-transmitting coating based on nanoparticles, and traditional white LEDs are replaced with blue ones. This a...llows to achieve a significant increase in brightness and colour saturation at the same time as improving the quality of colour reproduction, besides, it reduces the thickness and reduces the power consumption of the screen. The disadvantage of QLED matrices is traditional — the high price.

— QD-OLED. A kind of hybrid version of matrices that combine “quantum dots” (Quantum Dot) and organic light-emitting diodes (OLED) in one bottle. The QD-OLED modification was introduced by Samsung at the end of 2021 in response to advanced OLED panels from LG. The technology takes the best from QLED and OLED: it is based on blue LEDs, self-luminous pixels (instead of external backlighting) and “quantum dots”, which play the role of colour filters, but at the same time practically do not attenuate the light (unlike traditional filters) . Thanks to the use of a number of advanced solutions, the creators managed to achieve very impressive characteristics, significantly superior to many other OLED matrices. Among them are high peak brightness from 1000 nits (cd/m²), excellent contrast and black depth, as well as colour coverage of over 90% according to the BT.2020 standard and more than 120% according to DCI-P3. Such matrices are found mainly in flagship TV panels.

— IPS. A type of matrix originally designed for high quality colour rendering. Indeed, IPS screens produce bright and rich colours, have a good colour gamut, and demonstrate wide viewing angles. The initial disadvantage of this technology was the low response time, but in modern modifications of IPS this point has been practically eliminated. Matrices of this type are very popular in the advanced budget and mid-price segment of TV panels.

— *VA. In this case, we mean one of the varieties of VA (Vertical Alignment) type matrices - MVA, PVA, Super PVA, etc. Specific varieties may vary slightly in properties, but they all have common features. In fact, *VA matrices are a more affordable alternative to IPS panels: they are relatively inexpensive, provide fairly good colour reproduction and viewing angles of up to 178°. The main disadvantage of such screens is the long response time, but in modern models this has been practically eliminated thanks to the constant improvement of technology. *VA matrices are used in TVs that are positioned as functional and at the same time affordable models.

— PLS. In fact, it is one of the varieties of the IPS matrices described above, developed by Samsung. According to the manufacturer, in such matrices it was possible to achieve higher brightness and contrast than in traditional IPS, as well as to slightly reduce the cost.

NanoCell. Matrix based on quantum dots. This type of matrix is used in LG TVs and was first introduced in 2017. NanoCell matrices use the structure of classic LCD displays. But unlike the latter, they use so-called quantum dots instead of the classic general backlight, which provide monochromatic light. NanoCell technology reduces power consumption while increasing colour gamut and viewing angle. It is worth noting separately that NanoCell matrices are not the only ones using quantum dot technology. Similar solutions are offered by: Samsung (QLED matrix), Sony (Triluminos matrix), Hisense (ULED).