Brand name of the company that manufactures the device.
Model name of the device.
Information about the width, i.e. the horizontal side of the device when it is used in its standard orientation.
|75 mm (millimeters)|
7.5 cm (centimeters)
0.246 ft (feet)
2.953 in (inches)
Information about the height, i.e. the vertical side of the device when it is used in its standard orientation.
|156 mm (millimeters)|
15.6 cm (centimeters)
0.512 ft (feet)
6.142 in (inches)
Information about the thickness/depth of the device in different measurement units.
|8 mm (millimeters)|
0.8 cm (centimeters)
0.026 ft (feet)
0.315 in (inches)
Information about the weight of the device in different measurement units.
|169 g (grams)|
0.37 lbs (pounds)
5.96 oz (ounces)
Estimated volume of the device, calculated from the dimensions provided by the manufacturer. Applies for devices in the form of a rectangular parallelepiped.
|93.6 cm³ (cubic centimeters)|
5.68 in³ (cubic inches)
Information about the colors, in which the device is available in the market.
Materials used in the fabrication of the device's body.
Information about the standards, in which the device is certified.
|SIM card type|
Information about the type and size (form factor) of the SIM card used in the device.
|Nano-SIM (4FF - fourth form factor, since 2012, 12.30 x 8.80 x 0.67 mm)|
|Number of SIM cards|
Information about the number of SIM cards, supported by the device.
GSM (Global System for Mobile Communications) was developed to replace the analog cellular network (1G), therefore it is referred to as a 2G mobile network. It has been improved with the addition of General Packet Radio Services (GPRS) and later via the Enhanced Data rates for GSM Evolution (EDGE) technology.
|GSM 850 MHz (B5)|
GSM 900 MHz (B8)
GSM 1800 MHz (B3)
GSM 1900 MHz (B2)
CDMA (Code-Division Multiple Access) is a channel access method for communications within mobile networks. Compared to other 2G and 2.5G standards like GSM and TDMA, it provides increased data transfer speeds and allows more subscribers to connect simultaneously to the network.
|CDMA 800 MHz (BC0)|
CDMA 1900 MHz (BC1)
CDMA 800 MHz (BC10)
UMTS stands for Universal Mobile Telecommunications System. Based on the GSM standard, it is deemed as a 3G mobile network standard. It has been developed by the 3GPP and its major advantage is the provision of greater bandwidth and spectral efficiency, due to the W-CDMA technology.
|UMTS 800 MHz (B6)|
UMTS 800 MHz (B19)
UMTS 850 MHz (B5)
UMTS 900 MHz (B8)
UMTS 1700 MHz (B4)
UMTS 1900 MHz (B2)
UMTS 2100 MHz (B1)
LTE is deemed to be the fourth generation (4G) of mobile communications technology. It has been developed by the 3GPP based on the GSM/EDGE and UMTS/HSPA technologies in order to increase the speed and capacity of wireless data networks. A further development of the technology is called LTE Advanced.
|LTE-FDD 700 MHz (B12)|
LTE-FDD 700 MHz (B13)
LTE-FDD 700 MHz (B14)
LTE-FDD 700 MHz (B17)
LTE-FDD 700 MHz (B28)
LTE-FDD 700 MHz (B29)
LTE-FDD 800 MHz (B20)
LTE-FDD 850 MHz (B5)
LTE-FDD 850 MHz (B18)
LTE-FDD 850 MHz (B19)
LTE-FDD 850 MHz (B26)
LTE-FDD 900 MHz (B8)
LTE-FDD 1500 MHz (B32)
LTE-FDD 1700 MHz (B4)
LTE-FDD 1700 MHz (B66)
LTE-FDD 1800 MHz (B3)
LTE-FDD 1900 MHz (B2)
LTE-FDD 1900 MHz (B25)
LTE-FDD 2100 MHz (B1)
LTE-FDD 2600 MHz (B7)
LTE-TDD 1900 MHz (B39)
LTE-TDD 2300 MHz (B40)
LTE-TDD 2500 MHz (B41)
LTE-TDD 2600 MHz (B38)
LTE-FDD 2300 MHz (B30)
LTE-TDD 5200 MHz (B46)
LTE-TDD 3500 MHz (B46)
LTE-FDD 600 MHz (B71)
The 5G (fifth generation) mobile networks use the new radio access technology (RAT) developed by 3GPP, dubbed 5G NR and deemed as the global standard for the air interface of 5G networks. 5G NR operates in two frequency ranges - FR1 (sub-6 GHz) and FR2 (above 24 GHz). In the FR1 frequency range, the 5G mobile networks use a number of bands, some of which are traditionally used by previous standards. The FR2 provides shorter range but higher available bandwidth than bands in the FR1.
|5G-FDD 600 MHz (n71)|
5G-FDD 700 MHz (n12)
5G-FDD 700 MHz (n28)
5G-FDD 850 MHz (n5)
5G-FDD 900 MHz (n8)
5G-FDD 1700 MHz (n66)
5G-FDD 1800 MHz (n3)
5G-FDD 1900 MHz (n2)
5G-FDD 2100 MHz (n1)
5G-TDD 2500 MHz (n41)
5G-FDD 2600 MHz (n7)
5G-TDD 3500 MHz (n78)
5G-TDD 3700 MHz (n77)
|Mobile network technologies|
There are several network technologies that enhance the performance of mobile networks mainly by increased data bandwidth. Information about the communication technologies supported by the device and their respective uplink and downlink bandwidth.
|UMTS (384 kbit/s )|
HSPA+ (HSUPA 42.2 Mbit/s , HSDPA 5.76 Mbit/s )
EV-DO Rev. A (1.8 Mbit/s , 3.1 Mbit/s )
|Operating system (OS)|
Information about the operating system used by the device as well as its version.
The SoC integrates different hardware components such as the CPU, GPU, memory, peripherals, interfaces, etc., as well as software for their functioning.
Information about the process technology used in manufacturing the chip. The value in nanometers represents half the distance between elements that make up the CPU.
|5 nm (nanometers)|
The CPU bits are determined by the bit-size of the processor registers, address buses and data buses. 64-bit CPUs provide better performance than 32-bit ones, which on their part perform better than 16-bit processors.
A CPU core is the processor unit, which executes software instructions. Presently, besides single-core processors, there are dual-core, quad-core, hexa-core and so on multi-core processors. They increase the performance of the device allowing the execution of multiple instructions in parallel.
RAM (Random-Access Memory) is used by the operating system and all installed applications. Data in the RAM is lost after the device is turned off or restarted.
|8 GB (gigabytes)|
12 GB (gigabytes)
Information about the capacity of the built-in storage of the device. Sometimes one and the same model may is offered in variants with different internal storage capacity.
|128 GB (gigabytes)|
256 GB (gigabytes)
One of the main characteristics of the display is its type/technology, on which depends its performance.
In mobile devices display size is represented by the length of its diagonal measured in inches.
|6.4 in (inches)|
162.56 mm (millimeters)
16.26 cm (centimeters)
Approximate width of the display
|2.68 in (inches)|
68.12 mm (millimeters)
6.81 cm (centimeters)
Approximate height of the display
|5.81 in (inches)|
147.6 mm (millimeters)
14.76 cm (centimeters)
The ratio between the long and the short side of the display
The display resolution shows the number of pixels on the horizontal and vertical side of the screen. The higher the resolution is, the greater the detail of the displayed content.
|1080 x 2340 pixels|
Information about the number of pixels per centimeter (ppcm) or per inch (ppi) of the display. The higher the pixel density, the more detailed and clearer is the information displayed on the screen.
|403 ppi (pixels per inch)|
158 ppcm (pixels per centimeter)
The color depth of the display is also known as bit depth. It shows the number of bits used for the color components of one pixel. Information about the maximum number of colors the screen can display.
The estimated percentage of the screen area from the device's front area.
|86.22 % (percent)|
Information about other functions and features of the display.
|90 Hz refresh rate|
Sensors vary in type and purpose. They increase the overall functionality of the device, in which they are integrated.
|In-display optical fingerprint sensor|
The rear cameras of mobile devices use mainly a LED flash. It may arrive in a single, dual- or multi-light setup and in different arrangements.
One of the main characteristics of the cameras is their image resolution. It states the number of pixels on the horizontal and vertical dimensions of the image, which can also be shown in megapixels that indicate the approximate number of pixels in millions.
|50 MP (megapixels)|
Information about the maximum resolution at which the rear camera can shoot videos.
|3840 x 2160 pixels|
8.29 MP (megapixels)
Information about the maximum number of frames per second (fps) supported by the rear camera while recording video at the maximum resolution. Some of the main standard frame rates for recording and playing video are 24 fps, 25 fps, 30 fps, 60 fps.
|60 fps (frames per second)|
Information about additional software and hardware features of the rear camera which improve its overall performance.
Digital image stabilization
Optical image stabilization
White balance settings
Phase detection autofocus (PDAF)
|Secondary rear camera - 12 MP (ultra-wide)|
Information about the number of pixels on the horizontal and vertical dimensions of the photos taken by the front camera, indicated in megapixels as well.
|4032 x 3024 pixels|
12.19 MP (megapixels)
Information about the maximum resolution of the videos shot by the front camera.
|1920 x 1080 pixels|
2.07 MP (megapixels)
Digital cameras are able to shoot videos at different frames per second (fps). Some of the main standard frame rates for recording and playing video are 24 fps, 25 fps, 30 fps, 60 fps. Information about the maximum possible fps for shooting videos at the maximum possible resolution.
|30 fps (frames per second)|
Information about additional software and hardware features of the front camera which improve its overall performance.
The loudspeaker is a device, which reproduces various sounds such as ring tones, alarms, music, voice calls, etc. Information about the type of speakers the device uses.
Active noise cancellation
HAC (M3/T3) - Hearing Aid Compatibility
Information whether the device has an FM radio receiver or not.
The tracking/positioning service is provided by various satellite navigation systems, which track the autonomous geo-spatial positioning of the device that supports them. The most common satellite navigation systems are the GPS and the GLONASS. There are also non-satellite technologies for locating mobile devices such as the Enhanced Observed Time Difference, Enhanced 911, GSM Cell ID.
Wi-Fi communication between devices is realized via the IEEE 802.11 standards. Some devices have the possibility to serve as Wi-Fi Hotspots by providing internet access for other nearby devices. Wi-Fi Direct (Wi-Fi P2P) is another useful standard that allows devices to communicate with each other without the need for wireless access point (WAP).
|802.11a (IEEE 802.11a-1999)|
802.11b (IEEE 802.11b-1999)
802.11g (IEEE 802.11g-2003)
802.11n (IEEE 802.11n-2009)
802.11ac (IEEE 802.11ac)
The technology has several versions, which improve the connection speed, range, connectivity and discoverability of the devices. Information about the Bluetooth version of the device.
Bluetooth uses various profiles and protocols related to faster exchange of data, energy saving, better device discoverability, etc. Some of those supported by the device are listed here.
|A2DP (Advanced Audio Distribution Profile)|
LE (Low Energy)
There are several USB connector types: the Standard one, the Mini and Micro connectors, On-The-Go connectors, etc. Type of the USB connector used by the device.
There are several versions of the Universal Serial Bus (USB) standard: USB 1.0 (1996), the USB 2.0 (2000), the USB 3.0 (2008), etc. With each following version the rate of data transfer is increased.
Тhe USB interface in mobile devices may be used for different purposes such as battery charging, using the device as a mass storage, host, etc.
Information whether the device is equipped with a 3.5 mm audio jack.
Information about some of the most widely used connectivity technologies supported by the device.
Information about some of the features and standards supported by the browser of the device.
|Audio file formats/codecs|
List of some of the most common audio file formats and codecs supported standardly by the device.
|AAC (Advanced Audio Coding)|
AAC+ / aacPlus / HE-AAC v1
AMR / AMR-NB / GSM-AMR (Adaptive Multi-Rate, .amr, .3ga)
AMR-WB (Adaptive Multi-Rate Wideband, .awb)
aptX / apt-X
aptX HD / apt-X HD / aptX Lossless
eAAC+ / aacPlus v2 / HE-AAC v2
FLAC (Free Lossless Audio Codec, .flac)
M4A (MPEG-4 Audio, .m4a)
MP3 (MPEG-2 Audio Layer II, .mp3)
OGG (.ogg, .ogv, .oga, .ogx, .spx, .opus)
WMA (Windows Media Audio, .wma)
WAV (Waveform Audio File Format, .wav, .wave)
|Video file formats/codecs|
List of some of the most common video file formats and codecs supported standardly by the device.
|3GPP (3rd Generation Partnership Project, .3gp)|
AVI (Audio Video Interleaved, .avi)
DivX (.avi, .divx, .mkv)
Flash Video (.flv, .f4v, .f4p, .f4a, .f4b)
H.264 / MPEG-4 Part 10 / AVC video
H.265 / MPEG-H Part 2 / HEVC
MKV (Matroska Multimedia Container, .mkv .mk3d .mka .mks)
QuickTime (.mov, .qt)
MP4 (MPEG-4 Part 14, .mp4, .m4a, .m4p, .m4b, .m4r, .m4v)
WMV (Windows Media Video, .wmv)
The capacity of a battery shows the maximum charge, which it can store, measured in mili-Ampere hours.
|4600 mAh (milliampere-hours)|
The battery type is determined by its structure and more specifically, by the chemicals used in it. There are different battery types and some of the most commonly used in mobile devices are the lithium-ion (Li-Ion) and the lithium-ion polymer battery (Li-Polymer).
|Quick charge technology|
Quick charge technologies differ in energy efficiency, power output, control over charging, temperatures, etc. The device, battery and charger must support one and the same charging technology to achieve faster charging times.
|Power Delivery 3.0|
Information about some additional features of the device's battery.
|Qi wireless charging|
Wireless reverse charging