I didn’t open all the cards of 2016 at once, but limited myself to a budget move, leaving the most “trump card” for April. It is for this month that the debut of the flagship HTC One M10 is scheduled, while even if not trump cards, but as many as three "aces" will warm up the appetite - Desire 530, Desire 630 and Desire 825. , which in terms of information content will certainly be more useful. At the same time, we will try to understand how ready the newcomer is to fight for the buyer with the Samsung Galaxy S7 edge and Micromax Canvas Amaze 4G Q491.

New look

As the eldest of the new trio HTS Desire 825 very, very similar to the Desire 630 model. Moreover, common features are already visible at a cursory glance. Polycarbonate cases of new devices have acquired multi-colored small dots, which, like freckles, are randomly scattered throughout the panel. Since the pattern is not repeated, two identical samples cannot be found. Such a touch is more likely to appeal to the younger generation of users. Connoisseurs of the classics are also not deprived of attention, monotonous cases are prepared for them.

Potential

Let's say right away that not everyone understands the company's move towards not a new, and therefore not the most productive 32-bit Qualcomm Snapdragon 400 with 4 cores, with a frequency of 1.6 GHz. But when you remember that the model is not positioned as the main one, then the question loses its sharpness. But just a couple of years ago, the desire to have a device with such a chip increased the heartbeat of more than one hundred users.

HTC Desire 825 Equipped with a 5.5” Super LCD display with a resolution of 1280x720p. The block of operational processing, which is 2 GB, does not differ in outstanding performance. The flash drive also meets the class of the device - 16 GB. The memory problem is solved by bringing in microSD up to 2 TB to the rescue, which is a godsend for a mid-range device.

Modest Benefits

The image of the dual-sim HTC Desire 825 running Android v6.0 Marshmallow with the Sense shell is complemented by a 13-megapixel main camera and its front-facing companion for lovers of personal photos with a capacity of 5 megapixels. Both modules are capable of recording Full HD video, and the front camera can also process images in real time. A pleasant moment is the presence of a Dolby Audio enhancer. Another highlight of the gadget is the ability to change operating modes from physical to touch. The functionality is supported by a 2700 mAh battery.

Desire 825 sales start is expected from March 2016, but the cost is still a mystery.

HTC Desire 825 Dual Sim powerful smartphone on the latest android with certified 24-bit Hi-Res Audio high-definition sound. The novelty received a large HD screen, supports two SIM cards, works in 4G LTE networks and is equipped with a powerful battery. Long work without recharging is one of the most important characteristics of any device, Eychtisi desire 825 is powered by a powerful 2700 mAh battery and provides up to 24 hours of phone talk time and up to 28 days of standby time.

Main characteristics HTC Desire 825 Dual Sim: 5.5" HD Screen, Dual Nano-SIM, Qualcomm Snapdragon 400 Quad-Core 1600MHz, Adreno 305 GPU, Android 6.0 with HTC Sense, 13MP Main camera, GPS navigation, a powerful 2700 mAh battery with power saving and maximum power saving modes, 16 GB of internal and 2 GB of RAM.

Main camera HTC Desiree 825 dual sim 13 MP autofocus resolution allows you to take photos and videos in excellent quality, as the smartphone is equipped with a front 5 MP camera for selfies and video calls. Use the auto selfie mode, to create a selfie, you just need to smile at the camera and the smartphone will take a picture of you. The phone user can also select other modes such as voice selfie, tap mode, self-portrait timer, face detection, Full HD video recording and more.

Quad-core processor and 2 GB of RAM HTC Desire 825 Dual Sim is enough to open several windows with applications at the same time or to run the latest Android games without freezes and brakes. 16 GB of internal memory, of which a little more than 10 GB is available to the user, the rest of the memory will be occupied by the system, but it is possible to expand up to 2 TB using memory cards.

Large 5.5 inch screen ECTISI DESIRE 825 Dual SIM cards in HD quality provide a clear picture on the screen, it is comfortable to read e-books, watch movies or web pages on it. Support for two SIM cards on Desire 825 is an opportunity to choose favorable tariffs for calls and the Internet, and work in 4G LTE networks provides high-speed Internet on your phone.

  • Full specifications and reviews HTC Desire 825 Dual Sim see below.
  • If you know something about the pros and cons of Eightsee Desire 825 two SIM cards or you have additions to the article, useful information or tips for a smartphone, then please share by adding your review below.
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All features of HTC Desire 825 Dual Sim. Eichtisi desire 825.

  • Number of SIM cards: 2 SIM cards
  • SIM card type: Nano-SIM + Nano-SIM / support 3G, 4G-LTE
  • Software: Android 6.0 with proprietary HTC Sense interface
  • Processor: Quad-core 1.6 GHz / Qualcomm Snapdragon 400
  • Video processor: Adreno 305
  • Display: 5.5 inch/ HD 1280 x 720 pixels/ Super LCD/ Gorilla Glass/ 267 ppi
  • Machine. screen rotation: supports
  • Camera: 13 MP / BSI sensor / LED flash / autofocus / continuous shooting
  • Add. camera: 5 MP / BSI sensor / voice selfie
  • Video camera: Full HD camera video recording
  • Battery capacity: 2700 mAh / power saving mode and maximum power saving
  • Talk time: up to 24 hours
  • Standby time: up to 672 hours
  • Internet time in Wi-Fi networks: up to 7 hours
  • HD video playback time: up to 6 hours
  • Music playback time: up to 48 hours
  • Built-in memory: 16 GB / available to the user 10.5 GB
  • RAM memory: 2 GB
  • Memory card: microSD up to 2 TB
  • Bluetooth: 4.1
  • WiFi: yes
  • NFC: yes
  • Headphone jack: 3.5 mm.
  • micro-USB port: yes
  • 3G: support
  • 4G LTE: Supports Cat 4 LTE / Upload up to 150Mbps, Upload up to 50Mbps
  • Navigation: GPS/ A-GPS/ GLONASS
  • Sensors: Accelerometer/ Ambient Light/ Proximity/ Sensor Hub/ Compass/ Acceleration
  • Muses. player: yes / 24-bit Hi-Res BoomSound Audio with Dolby Audio
  • Voice control: yes
  • Flashlight function: yes
  • Dimensions: (H.W.T) 156.9 x 76.9 x 7.4 mm.
  • Weight: 155 grams.

3G, Android 6.0, 5.50", 1280x720, 16GB, 155g, 13MP camera, Bluetooth

MAIN SPECIFICATIONS

General characteristics

Type: smartphone OS version: Android 6.0 Case type: classic Control: touch buttons SIM type: nano SIM Number of SIM cards: 2 Multi-SIM mode: alternate Weight: 155 g Dimensions (WxHxD): 76.9x156.9x7 .4 mm

Screen

Screen type: color, touchscreen Type of touchscreen: multitouch, capacitive Diagonal: 5.5 inch. Image size: 1280x720 Automatic screen rotation: yes Scratch-resistant glass: yes

Multimedia features

Camera: 13 megapixels, LED flash Camera features: autofocus Aperture: F/2.2 Movie recording: yes (MP4) Front camera: yes, 5 million pixels Audio: MP3

Connection

Standard: GSM 900/1800/1900, 3G, 4G LTE, LTE-A Cat. 4 Support for LTE bands: FDD: 1, 3, 5, 7, 8, 20, 28; TDD: 40 Interfaces: Wi-Fi 802.11n, Bluetooth 4.1, USB Satellite navigation: GPS/GLONASS A-GPS system: yes

Memory and processor

Processor: 1600 MHz Number of processor cores: 4 Video processor: Adreno 305 Built-in memory: 16 GB RAM: 2 GB Memory card slot: yes, up to 2048 GB

Food

Battery capacity: 2700 mAh Talk time: 24 hours Standby time: 672 hours Music time: 48 hours

Other features

Control: voice dialing, voice control Flight mode: yes Sensors: illumination, proximity, compass Flashlight: yes

Additional Information

Features: Sound - Certified 24-bit Hi-Res BoomSound Audio with Dolby Audio Announce Date: 2016-02-22 Start Date: 2016-06-30

Information about the make, model, and alternative names of a particular device, if any.

Design

Information about the dimensions and weight of the device, presented in different units of measurement. Used materials, suggested colors, certificates.

Width

Width information refers to the horizontal side of the device in its standard orientation during use.

76.9 mm (millimeters)
7.69 cm (centimeters)
0.25ft
3.03in
Height

Height information refers to the vertical side of the device in its standard orientation during use.

156.9 mm (millimeters)
15.69 cm (centimeters)
0.51 ft
6.18in
Thickness

Information about the thickness of the device in different units of measurement.

7.4 mm (millimeters)
0.74 cm (centimeters)
0.02 ft
0.29in
The weight

Information about the weight of the device in different units of measurement.

155 g (grams)
0.34 lbs
5.47oz
Volume

Approximate volume of the device, calculated from dimensions provided by the manufacturer. Refers to devices with the shape of a rectangular parallelepiped.

89.29 cm³ (cubic centimeters)
5.42 in³ (cubic inches)
Colors

Information about the colors in which this device is offered for sale.

Grey
White
Housing materials

The materials used to make the body of the device.

Plastic

SIM card

The SIM card is used in mobile devices to store data that certifies the authenticity of mobile service subscribers.

Mobile networks

A mobile network is a radio system that allows multiple mobile devices to communicate with each other.

GSM

GSM (Global System for Mobile Communications) is designed to replace the analogue mobile network (1G). For this reason, GSM is often referred to as a 2G mobile network. It is enhanced by the addition of GPRS (General Packet Radio Services) and later EDGE (Enhanced Data rates for GSM Evolution) technologies.

GSM 850 MHz
GSM 900 MHz
GSM 1800 MHz
GSM 1900 MHz
UMTS

UMTS is short for Universal Mobile Telecommunications System. It is based on the GSM standard and belongs to 3G mobile networks. Developed by 3GPP and its biggest advantage is to provide more speed and spectral efficiency with W-CDMA technology.

UMTS 850 MHz
UMTS 900 MHz
UMTS 1900 MHz
UMTS 2100 MHz
LTE

LTE (Long Term Evolution) is defined as fourth generation (4G) technology. It is developed by 3GPP based on GSM/EDGE and UMTS/HSPA to increase the capacity and speed of wireless mobile networks. The subsequent development of technologies is called LTE Advanced.

LTE 800 MHz
LTE 850 MHz
LTE 900 MHz
LTE 1800 MHz
LTE 2100 MHz
LTE 2600 MHz
LTE-TDD 2300 MHz (B40)
LTE 700 MHz (B28)

Mobile technologies and data rates

Communication between devices in mobile networks is carried out through technologies that provide different data transfer rates.

Operating system

The operating system is the system software that manages and coordinates the operation of the hardware components in the device.

SoC (System on a Chip)

System on a chip (SoC) includes all the most important hardware components of a mobile device in one chip.

SoC (System on a Chip)

System on a chip (SoC) integrates various hardware components such as processor, graphics processor, memory, peripherals, interfaces, etc., as well as the software necessary for their operation.

Qualcomm Snapdragon 400 MSM8928
Technological process

Information about the technological process by which the chip is made. The value in nanometers measures half the distance between the elements in the processor.

28 nm (nanometers)
Processor (CPU)

The main function of the processor (CPU) of a mobile device is the interpretation and execution of instructions contained in software applications.

ARM Cortex-A7
Processor bit depth

The bit depth (bits) of a processor is determined by the size (in bits) of registers, address buses, and data buses. 64-bit processors have higher performance than 32-bit processors, which, in turn, are more productive than 16-bit processors.

32 bit
Instruction Set Architecture

Instructions are commands by which the software sets/controls the operation of the processor. Information about the instruction set (ISA) that the processor can execute.

ARMv7
First level cache (L1)

Cache memory is used by the processor to reduce access time to more frequently accessed data and instructions. L1 (level 1) cache is small and much faster than both system memory and other cache levels. If the processor does not find the requested data in L1, it continues to look for them in the L2 cache. With some processors, this search is performed simultaneously in L1 and L2.

16 kB + 16 kB (kilobytes)
Second level cache (L2)

L2 (level 2) cache is slower than L1, but in return it has a larger capacity, allowing more data to be cached. It, like L1, is much faster than system memory (RAM). If the processor does not find the requested data in L2, it continues to look for it in the L3 cache (if available) or RAM.

1024 KB (kilobytes)
1 MB (megabytes)
Number of processor cores

The processor core executes program instructions. There are processors with one, two or more cores. Having more cores increases performance by allowing many instructions to be executed in parallel.

4
Processor clock speed

The clock speed of a processor describes its speed in terms of cycles per second. It is measured in megahertz (MHz) or gigahertz (GHz).

1600 MHz (megahertz)
Graphics Processing Unit (GPU)

The graphics processing unit (GPU) handles calculations for various 2D/3D graphics applications. In mobile devices, it is used most often by games, consumer interface, video applications, etc.

Qualcomm Adreno 305
Number of GPU cores

Like the CPU, the GPU is made up of several working parts called cores. They handle the graphical calculations of different applications.

1
The amount of random access memory (RAM)

Random access memory (RAM) is used by the operating system and all installed applications. Data stored in RAM is lost when the device is turned off or restarted.

2 GB (gigabytes)

Built-in memory

Each mobile device has a built-in (non-removable) memory with a fixed amount.

Memory cards

Memory cards are used in mobile devices to increase the storage capacity for storing data.

Screen

The screen of a mobile device is characterized by its technology, resolution, pixel density, diagonal length, color depth, etc.

Type/technology

One of the main characteristics of the screen is the technology by which it is made and on which the image quality of information directly depends.

Super LCD
Diagonal

For mobile devices, the screen size is expressed in terms of its diagonal length, measured in inches.

5.5in
139.7 mm (millimeters)
13.97 cm (centimeters)
Width

Approximate Screen Width

2.7in
68.49 mm (millimeters)
6.85 cm (centimeters)
Height

Approximate Screen Height

4.79in
121.76 mm (millimeters)
12.18 cm (centimeters)
Aspect Ratio

The ratio of the dimensions of the long side of the screen to its short side

1.778:1
16:9
Permission

Screen resolution indicates the number of pixels vertically and horizontally on the screen. Higher resolution means sharper image detail.

720 x 1280 pixels
Pixel Density

Information about the number of pixels per centimeter or inch of the screen. Higher density allows information to be shown on the screen in clearer detail.

267 ppi (pixels per inch)
104 ppcm (pixels per centimeter)
Color depth

Screen color depth reflects the total number of bits used for the color components in a single pixel. Information about the maximum number of colors the screen can display.

24 bit
16777216 flowers
Screen area

Approximate percentage of screen space on the front of the device.

69.34% (percentage)
Other characteristics

Information about other functions and features of the screen.

capacitive
Multitouch
Scratch resistance
Corning Gorilla Glass

Sensors

Different sensors perform different quantitative measurements and convert physical indicators into signals that are recognized by the mobile device.

rear camera

The main camera of a mobile device is usually located on its rear panel and can be combined with one or more additional cameras.

Sensor typeCMOS BSI (backside illumination)
Svetlosilaf/2.2
Focal length28 mm (millimeters) *(35 mm / full frame)
Flash type

The rear (rear) cameras of mobile devices mainly use LED flashes. They can be configured with one, two or more light sources and vary in shape.

LED
Image resolution4128 x 3096 pixels
12.78 MP (megapixels)
Video Resolution1920 x 1080 pixels
2.07 MP (megapixels)
30 fps (frames per second)
Characteristics

Information about additional software and hardware features of the rear (rear) camera.

autofocus
Burst shooting
digital zoom
geo tags
panoramic shooting
HDR shooting
Touch focus
Face recognition
Adjusting the white balance
ISO setting
Exposure compensation
Scene Selection Mode

Front-camera

Smartphones have one or more front cameras of various designs - a pop-up camera, a PTZ camera, a cutout or hole in the display, a camera under the display.

Sensor type

Information about the type of camera sensor. Some of the most widely used sensor types in mobile device cameras are CMOS, BSI, ISOCELL, etc.

CMOS (complementary metal-oxide semiconductor)
Svetlosila

Luminosity (also known as f-stop, aperture, or f-number) is a measure of the size of a lens aperture that determines the amount of light that enters the sensor. The lower the f-number, the larger the aperture and the more light reaches the sensor. Usually, the number f is indicated, which corresponds to the maximum possible aperture of the aperture.

f/2.8
Focal length

Focal length indicates the distance in millimeters from the sensor to the optical center of the lens. The equivalent focal length (35mm) is the focal length of a mobile device camera that is equal to the focal length of a 35mm full-frame sensor that would achieve the same angle of view. It is calculated by multiplying the actual focal length of the mobile device's camera by the crop factor of its sensor. The crop factor can be defined as the ratio between the 35mm diagonals of a full-frame sensor and a mobile device sensor.

33.7 mm (millimeters) *(35 mm / full frame)
Image resolution

One of the main characteristics of cameras is resolution. It represents the number of horizontal and vertical pixels in an image. For convenience, smartphone manufacturers often list resolution in megapixels, giving an approximate number of pixels in millions.

2560 x 1920 pixels
4.92 MP (megapixels)
Video Resolution

Information about the maximum video resolution that the camera can record.

1920 x 1080 pixels
2.07 MP (megapixels)
Video recording speed (frame rate)

Information about the maximum recording rate (frames per second, fps) supported by the camera at maximum resolution. Some of the most basic video recording speeds are 24 fps, 25 fps, 30 fps, 60 fps.

30 fps (frames per second)

Audio

Information about the type of speakers and audio technologies supported by the device.

Radio

The radio of the mobile device is a built-in FM receiver.

Location determination

Information about navigation and location technologies supported by the device.

WiFi

Wi-Fi is a technology that provides wireless communication for short distance data transmission between different devices.

Bluetooth

Bluetooth is a standard for secure wireless data transfer between different types of devices over short distances.

USB

USB (Universal Serial Bus) is an industry standard that allows different electronic devices to communicate.

Headphone jack

This is an audio connector, which is also called an audio jack. The most widely used standard in mobile devices is the 3.5mm headphone jack.

Connecting devices

Information about other important connection technologies supported by the device.

Browser

A web browser is a software application for accessing and viewing information on the Internet.

Browser

Information about some of the key features and standards supported by the device's browser.

HTML
HTML5
CSS 3

Audio file formats/codecs

Mobile devices support various audio file formats and codecs that store and encode/decode digital audio data, respectively.

Video file formats/codecs

Mobile devices support various video file formats and codecs, which store and encode/decode digital video data, respectively.

Battery

Mobile device batteries differ from each other in their capacity and technology. They provide the electrical charge they need to function.

Capacity

The capacity of a battery indicates the maximum charge it can store, measured in milliamp-hours.

2700 mAh (milliamp-hours)
Type of

The type of battery is determined by its structure and, more specifically, by the chemicals used. There are different types of batteries, with lithium-ion and lithium-ion polymer batteries being the most commonly used in mobile devices.

Li-Ion (Li-Ion)
Talk time 2G

Talk time in 2G is the period of time during which the battery is completely discharged during a continuous conversation in a 2G network.

24 h (hours)
1440 min (minutes)
1 days
2G standby time

The 2G standby time is the amount of time it takes for the battery to fully discharge when the device is in stand-by mode and connected to a 2G network.

672 h (hours)
40320 min (minutes)
28 days
3G talk time

Talk time in 3G is the period of time during which the battery is completely discharged during a continuous conversation in a 3G network.

24 h (hours)
1440 min (minutes)
1 days
3G standby time

The 3G standby time is the amount of time it takes for the battery to fully discharge when the device is in stand-by mode and connected to a 3G network.

672 h (hours)
40320 min (minutes)
28 days
Adapter output power

Information about the electrical current (measured in amps) and electrical voltage (measured in volts) supplied by the charger (power output). Higher power output ensures faster battery charging.

5 V (volts) / 1.5 A (amps)
Characteristics

Information about some additional features of the device's battery.

Removable

Specific Absorption Rate (SAR)

SAR levels refer to the amount of electromagnetic radiation absorbed by the human body while using a mobile device.

Head SAR (EU)

The SAR level indicates the maximum amount of electromagnetic radiation that the human body is exposed to when holding a mobile device near the ear in a conversation position. In Europe, the maximum allowable SAR value for mobile devices is limited to 2 W/kg per 10 grams of human tissue. This standard has been established by CENELEC in accordance with IEC standards following the 1998 ICNIRP guidelines.

0.355 W/kg (watt per kilogram)
Body SAR (EU)

The SAR level indicates the maximum amount of electromagnetic radiation that the human body is exposed to when holding a mobile device at hip level. The maximum allowed SAR value for mobile devices in Europe is 2 W/kg per 10 grams of human tissue. This standard has been established by CENELEC following the 1998 ICNIRP guidelines and IEC standards.

0.518 W/kg (watt per kilogram)