Asus ZenFone 7 Asus ZenFone 7
HTC U Ultra HTC U Ultra
VS

Comparision Asus ZenFone 7 vs HTC U Ultra

Asus ZenFone 7

WINNER
Asus ZenFone 7

Rating: 71 points
HTC U Ultra

HTC U Ultra

Rating: 45 points
Grade
Asus ZenFone 7
HTC U Ultra
Performance
4
1
Display
8
7
Camera
3
2
Battery
3
2
Other
8
5
Main characteristics
4
4
Audio
10
0
Interfaces and communications
9
7

Top specs and features

AnTuTu

Asus ZenFone 7: 590590 HTC U Ultra: 170787

Main camera resolution

Asus ZenFone 7: 64 MP HTC U Ultra: 12 MP

Android Version

Asus ZenFone 7: 10 HTC U Ultra: 7

Battery capacity

Asus ZenFone 7: 5000 mAh HTC U Ultra: 3000 mAh

Pixel density per screen inch

Asus ZenFone 7: 387 ppi HTC U Ultra: 513 ppi

Description

Camera Comparison In DxOMark tests, Asus ZenFone 7 scored There is no data points. HTC U Ultra scored There is no data in the DxOMark camera test.

Resolution of the main camera sensor for Asus ZenFone 7 64 MP, versus 12 MP for HTC U Ultra. Main camera aperture at Asus ZenFone 7 f/1.8. At HTC U Ultra aperture reaches f/1.8. The first smartphone has a Dual LED flash, the second one has a Dual LED flash.

The resolution of the front camera for the first device is 64 MP vs. 16 MP for HTC U Ultra. As for aperture, the first smartphone has f/There is no data versus f/2 for the second.

Performance comparison. Asus ZenFone 7 has the Qualcomm Snapdragon 865 chip installed. The processor frequency reaches 2.8 GHz. Qualcomm Adreno 650 is responsible for graphics. The frequency of the graphics core reaches 600 MHz. Asus ZenFone 7 has 8 GB of RAM installed. The maximum amount of RAM for this model reaches 16. The RAM version is DDR5.

HTC U Ultra is equipped with Qualcomm Snapdragon 821. The processor frequency is 2.2 GHz. In terms of graphics, the Qualcomm Adreno 530 kernel is used here. The video core is capable of operating at a frequency of up to 650 MHz. The machine is equipped with 4 GB of RAM. RAM version for HTC U Ultra DDRThere is no data.

Tests in benchmarks. In the AnTuTu benchmark, Asus ZenFone 7 scored 590590 points out of 911349 points possible. HTC U Ultra scored 170787 on AnTuTu.

Comparison of displays. On board Asus ZenFone 7 installed AMOLED screen matrix. The display resolution is 6.7 inches. The pixel density reaches 387dpi screen.

Asus ZenFone 7's screen refresh rate is 90 Hz. And the brightness of the display reaches 700 cd/m².

HTC U Ultra has a IPS LCD matrix with a diagonal of 5.7 inches. Here the pixel density is 513 ppi. The screen refresh rate is There is no data Hz. And the display brightness reaches There is no data cd/m².

Equipment and general characteristics. Asus ZenFone 7 came out in There is no data. HTC U Ultra submitted There is no data.

The first smartphone has an IPThere is no data class of protection against dust and moisture, compared to the IPThere is no data class of the second device.

Asus ZenFone 7 supports up to 2 sim cards, versus 2 for HTC U Ultra.

Asus ZenFone 7 weighs 230 grams, versus 170 grams for HTC U Ultra. The thickness of the first smartphone is 9.6 mm, versus 8 mm for the second one.

Asus ZenFone 7 has USB version 2 and HTC U Ultra has got 3.1 USB version. The first smartphone is running 10 version of Android. The second device has the 7 version of Android installed. Asus ZenFone 7 is capable of supporting the 802.11 a/b/g/ac Wi-Fi version. HTC U Ultra supports the 802.11 a/b/g/ac Wi-Fi version.

The first smartphone supports memory cards up to There is no data GB, the second up to There is no data GB.

Why Asus ZenFone 7 is better than HTC U Ultra

  • AnTuTu 590590 против 170787 , more on 246%
  • Main camera resolution 64 MP против 12 MP, more on 433%
  • Android Version 10 против 7 , more on 43%
  • Battery capacity 5000 mAh против 3000 mAh, more on 67%
  • Display size 6.7 " против 5.7 ", more on 18%
  • RAM 8 GB против 4 GB, more on 100%
  • Maximum RAM 16 против 6 , more on 167%

Asus ZenFone 7 vs HTC U Ultra: highlights

Asus ZenFone 7
Asus ZenFone 7
HTC U Ultra
HTC U Ultra
Performance
AnTuTu
The AnTuTu score is an important characteristic of all Android devices. This score consists of such components as RAM speed, 2D and 3D graphics performance, processor performance. Show more
590590
max 1352159
Average: 109983.5
170787
max 1352159
Average: 109983.5
RAM
The more RAM you have, the more apps and processes you can run at the same time without lag or performance degradation.
8 GB
max 18
Average: 2.8 GB
4 GB
max 18
Average: 2.8 GB
Processor configuration
1 ядро 2.84 + 3 x 2.42 + 4 ядра по 1.8 GHz
2 ядра по 2.4 + 2 ядра по 1.6
The maximum frequency of the processor
2.8 GHz
max 3.46
Average: 1.8 GHz
2.2 GHz
max 3.46
Average: 1.8 GHz
Processor model
There are many different processor models from different manufacturers such as Qualcomm, MediaTek, Samsung Exynos and Apple A-series. Each processor model has its own unique characteristics, such as the number of cores, clock speed, architecture, and energy efficiency. Show more
Qualcomm Snapdragon 865
Qualcomm Snapdragon 821
Graphic accelerator (GPU)
Responsible for processing and displaying graphics on the device screen.
Qualcomm Adreno 650
Qualcomm Adreno 530
DDR memory version
Newer versions of DDR memory provide better performance and faster performance of tasks such as running applications, multitasking, and working with graphics. Show more
5
max 5
Average: 3.7
max 5
Average: 3.7
eMMC Storage Version
eMMC is a flash memory standard that offers low cost and good storage capacity.
5.1
max 5.1
Average:
5.1
max 5.1
Average:
Memory card
microSDXC
microSDXC
Cumulative memory
128
max 1024
Average:
64
max 1024
Average:
Maximum RAM
More RAM allows you to run more demanding applications and perform multiple tasks at the same time without compromising performance.
16
max 18
Average:
6
max 18
Average:
Process technology
The small size of semiconductors means that this is a new generation chip.
7 nm
Average: 22.9 nm
14 nm
Average: 22.9 nm
The maximum frequency of the graphics core
The graphics processing unit (GPU) is characterized by a high clock speed.
600 MHz
max 1100
Average: 611.8 MHz
650 MHz
max 1100
Average: 611.8 MHz
Display
Pixel density per screen inch
The higher the density of pixels per inch, the sharper and more detailed the image will be displayed on the screen. The high pixel density creates smoother edges and sharper details. Show more
387 ppi
max 848
Average: 296.2 ppi
513 ppi
max 848
Average: 296.2 ppi
Display size
Image perception depends on the screen size. The bigger, the better.
6.7 "
max 10.1
Average: 5.1 "
5.7 "
max 10.1
Average: 5.1 "
Screen resolution
The higher the screen resolution, the more detailed and clear the image can be seen. However, screen resolution is not the only factor affecting image quality. Factors such as screen type, brightness, contrast, and color reproduction are also important. Show more
1080 x 2340 px
1440 x 2560
Surface use
82 %
max 98
Average: 66.8 %
69 %
max 98
Average: 66.8 %
Maximum brightness
700 cd/m²
max 1600
Average: 572 cd/m²
cd/m²
max 1600
Average: 572 cd/m²
Gorilla Glass
Protective glass technology is used to increase the strength and resistance of the smartphone screen to scratches, bumps and damage.
Available
Available
scratch resistant glass
Available
Available
HDR10+
It is an HDR format that delivers brighter and more contrasting colors, rich detail in highlights and shadows, and improved playback of high dynamic range content. Show more
Available
There is no data
Display supports HDR 10 technology
HDR10 technology provides a wider range of brightness, greater color depth and more accurate display of light and dark areas of images.
Available
There is no data
Screen refresh rate
The refresh rate of the screen affects the image quality. The higher the score, the less screen flicker and the better the representation of movements. Show more
90 Hz
max 240
Average: 77.4 Hz
Hz
max 240
Average: 77.4 Hz
Screen Matrix
There are various types of screen matrices such as IPS, AMOLED, TFT and others. IPS screens provide wide viewing angles and good color accuracy. AMOLED screens have richer colors, deeper blacks and lower power consumption. TFT screens usually offer a more affordable price but may have limited viewing angles and less accurate color reproduction. Show more
AMOLED
IPS LCD
Aspect Ratio
20:09
16:09
DCI-P3
Support for DCI-P3 means that the display is able to reproduce a wider range of colors than the standard sRGB color space.
Available
There is no data
Multitouch
The ability of the touch screen to respond to the simultaneous touch of several points at once.
Available
Available
capacitive
A type of touch screen that responds to the touch of a finger or other conductive objects.
Available
Available
Camera
Front camera resolution
64 MP
max 64
Average: 7.7 MP
16 MP
max 64
Average: 7.7 MP
main camera aperture
wide aperture is available at the minimum focal length. When using a wide aperture, the sensor captures more light. This way you can sharpen and avoid the blurring effect at fast shutter speeds. You can also reduce the sharpness if you want to blur the background to focus on the subject. Show more
1.8 f
Average: 2 f
1.8 f
Average: 2 f
Type (processor)
Octa-Core
Quad-Core
Main camera resolution
The higher the resolution of the main camera, the more detailed and clear photos and videos can be. However, resolution is not the only factor affecting image quality. Optics quality, pixel size, light sensitivity and other factors are also important. Show more
64 MP
max 200
Average: 14.2 MP
12 MP
max 200
Average: 14.2 MP
4K (Selfie Camera)
120
max 120
Average: 42.6
max 120
Average: 42.6
1080 (Selfie Camera)
30
max 240
Average: 32.7
30
max 240
Average: 32.7
Dual front camera
Available
There is no data
Dual camera
In poor lighting conditions, it is difficult to take a high-quality photo. The dual camera takes two pictures in a row and superimposes them on top of each other, thereby improving the quality and sharpness of the image. It also allows you to blur the background. Show more
Available
There is no data
Setting the ISO value
Available
Available
Scene mode
Allows you to select preset settings optimized for various types of scenes and shooting conditions.
Available
Available
Burst Mode
Available
There is no data
Video recording (main camera)
4320 x 30
2160 x 30
Supports slow motion video
Available
Available
Flash
If the lighting leaves much to be desired, a flash will come in handy. The device can also be used as a flashlight.
Available
Available
Flash
If the lighting leaves much to be desired, a flash will come in handy. The device can also be used as a flashlight.
Dual LED
Dual LED
Flash
If the lighting leaves much to be desired, a flash will come in handy. The device can also be used as a flashlight.
Available
Available
Flash
If the lighting leaves much to be desired, a flash will come in handy. The device can also be used as a flashlight.
Dual LED
Dual LED
Dual camera
In poor lighting conditions, it is difficult to take a high-quality photo. The dual camera takes two pictures in a row and superimposes them on top of each other, thereby improving the quality and sharpness of the image. It also allows you to blur the background. Show more
Available
There is no data
autofocus
To enable autofocus on an object, just touch its icon on the touch screen.
Available
Available
Flash drive
UFS 3.1
There is no data
Recording 8K
30
There is no data
zoom
Optical
Digital
Stabilization
A technology that reduces camera shake for clearer and more stable photos and videos.
Digital
Optical
Shooting timer
Allows you to set a delay before the camera triggers.
Available
Available
Phase detection autofocus (PDAF)
Autofocus technology that uses phase comparison to quickly and accurately focus on a subject. This technology analyzes the phase of light passing through a smartphone's lens to determine if an object is in focus or not. Show more
Available
Available
exposure compensation
A feature that allows the user to adjust the brightness or exposure of photos before or after shooting. It allows you to control the amount of light that hits the camera's sensor to achieve the desired level of light and detail in your photo. Show more
Available
Available
Laser autofocus (LAF)
Autofocus technology that uses a laser beam to measure the distance to a subject and focus on it precisely.
Available
Available
Front camera retractable
Available
There is no data
Battery
Battery type
One of the most common types is the lithium-ion (Li-Ion) battery.
Li-Polymer
Li-Polymer
Fast charge power
Most modern smartphones support fast charging with a power of 10 to 40 watts.
30 W
max 240
Average: 26.1 W
18 W
max 240
Average: 26.1 W
Battery capacity
The larger the battery capacity, the longer the smartphone can work without recharging.
5000 mAh
max 22000
Average: 3090.7 mAh
3000 mAh
max 22000
Average: 3090.7 mAh
Non-removable battery
Available
Available
Fast charging technology
To reduce the amount of time it takes to charge, devices use Qualcomm's Quick Charge or Pump Express fast charging technologies. For example, with this technology, it takes only 30 minutes to charge the battery to 50%. Show more
Available
Available
Other
Main characteristics
Weight
230 g
Average: 158.9 g
170 g
Average: 158.9 g
Thickness
9.6 mm
Average: 9.7 mm
8 mm
Average: 9.7 mm
Width
77.3 mm
Average: 71 mm
79.8 mm
Average: 71 mm
Height
165.1 mm
Average: 143.5 mm
162.4 mm
Average: 143.5 mm
Frameless
Available
There is no data
Android Version
10
max 13
Average: 6.3
7
max 13
Average: 6.3
release date
08/01/2020
01/01/2017
Brand
Asus
HTC
SIM type
There are several types of SIM cards, including standard SIM, Micro SIM, Nano SIM, and eSIM. Micro SIM was designed for smaller devices and Nano SIM for even thinner and more compact smartphones. eSIM (embedded SIM) is an embedded electronic SIM module that does not require a physical card. Show more
Nano SIM
Nano SIM
Audio
FM receiver
It can work as an FM radio if you connect headphones.
Available
There is no data
Interfaces and communications
5G
Available
There is no data
GPS
GPS helps to determine the location of the subject, to find maps. Used in applications where navigation is required.
Available
Available
NFC
NFC is a near field communication required for transactions, payments.
Available
Available
Bluetooth version
Each new version of Bluetooth has its own features and improvements over the previous version.
5.1
max 6
Average: 3.9
4.2
max 6
Average: 3.9
4K recording
30
max 960
Average: 38.7
30
max 960
Average: 38.7
Entry 1080
30
max 960
Average: 40.3
max 960
Average: 40.3
Entry 720
480
max 7680
Average: 185.2
120
max 7680
Average: 185.2
HDR10 video recording
The ability to record video with improved dynamic range and brighter and more contrasting colors.
Available
Available
WiFi version
Indicates the supported version of the Wi-Fi wireless standard. For example, Wi-Fi version 6 (802.11ax) is newer and more advanced, offering faster data transfer rates. Show more
802.11 a/b/g/ac
802.11 a/b/g/ac
A-GPS
A-GPS uses a combination of GPS signals and data from the cellular network to determine the current position of your smartphone faster and more accurately. Show more
Available
Available
Glonass
Global satellite navigation system developed by Russia.
Available
Available
Beidou
Global satellite navigation system developed by China.
Available
Available
Number of SIM cards
2
max 2
Average: 1.9
2
max 2
Average: 1.9
Bluetooth A2DP
A2DP allows your smartphone to stream high-quality, lossless audio to wireless headphones, speakers, or other compatible Bluetooth audio devices.
Available
Available
Bluetooth EDR
EDR improves the data transfer speed between your smartphone and other Bluetooth devices.
Available
Available
USB OTG
This feature allows the smartphone to act as a host and connect other USB devices such as flash drives, keyboards, mice, and other peripherals directly to the smartphone. Show more
Available
Available
USB charging
Available
Available
OTA updates
With the OTA update function, the smartphone can automatically download and install new versions of the operating system, security patches and other updates without the need to connect to a computer. Show more
Available
Available
Gyroscope
The gyroscope is needed to measure or maintain the orientation of the device. It is achieved by measuring the angular velocity of rotation. They were originally made with a spinning rotor that detected changes in orientation such as rotation or twisting. Show more
Available
Available
USB version
New versions are more convenient in power management, work faster
2
max 3.2
Average: 2.1
3.1
max 3.2
Average: 2.1
Compass
The compass is essential for navigation software and games.
Available
Available
Wi-Fi
The device can work via Wi-Fi.
Available
Available
Accelerometer
The accelerometer measures the linear acceleration of the device in space. It is needed to determine when the device changes from vertical to horizontal. Show more
Available
Available
Galileo
Satellite navigation system developed by the European Union.
Available
There is no data
Proximity sensor
The main purpose of the sensor is to automatically turn off the screen or block touch input when the smartphone is near the user's ear during a call or close to the face during a conversation. This prevents accidental touching or activation of functions during a call and improves usability. Show more
Available
Available
Light sensor
Used to detect the light intensity around the smartphone and adjust the screen brightness according to that level.
Available
Available
Hall Sensor
Detects and measures the magnetic field near the smartphone.
Available
There is no data
Game buttons
Not available
Not available
geo tags
Allows you to add location information (geographic coordinates) to photos and videos taken on a smartphone.
Available
Available
3G
B1 (2100), B2 (1900), B5 (850), B8 (900)
B1 (2100), B2 (1900), B4 (1700/2100 AWS A-F), B5 (850), B8 (900)
Dual band
The ability to support dual frequency bands for wireless communications, typically Wi-Fi or cellular. This means that the device can operate in both the 2.4GHz band and the 5GHz band. Show more
Available
Available
Wi-Fi Direct
technology that allows devices to connect to each other directly over a Wi-Fi wireless connection, without the need for a router or access point.
Available
Available
Wi-Fi Display
Wi-Fi Display in smartphones refers to a technology that allows the image and sound from a mobile device to be transmitted to a large screen, such as a TV or monitor, via a Wi-Fi wireless connection. Show more
Available
There is no data
Wi-Fi MiMO
MIMO allows you to increase bandwidth and improve signal quality by simultaneously transmitting and receiving multiple data streams between devices.
Available
There is no data
AVRCP (Audio/Visual Remote Control Profile)
Allows you to control audio and video playback on connected devices using your smartphone as a remote control. AVRCP allows you to skip tracks, adjust volume, play, pause or stop playback of media content on connected devices. Show more
Available
There is no data
OPP (Object Push Profile)
Is a Bluetooth profile that allows you to transfer objects (files, pictures, contacts, etc.) between devices.
Available
There is no data
HFP (Hands-Free Profile)
This is a Bluetooth profile that allows you to establish a wireless connection between a smartphone and a headset/car system, providing hands-free calling and call control. Show more
Available
There is no data
HSP (Headset Profile)
It is a Bluetooth profile for wireless connection and use of headsets and headphones.
Available
There is no data
MAP (Message Access Profile)
Refers to a profile that allows the smartphone to exchange text messages with connected devices via Bluetooth.
Available
There is no data
PBAP/PAB (Phone Book Access Profile)
A profile that allows a device to access the contacts and phonebook entries of a compatible device via Bluetooth.
Available
There is no data
VoLTE
Available
There is no data

FAQ

How do Asus ZenFone 7 and HTC U Ultra perform in benchmarks?

According to the AnTuTu benchmark, Asus ZenFone 7 scored 590590 points. HTC U Ultra scored 170787 on AnTuTu test out of 911349 possible.

What camera do smartphones have?

Resolution of the main camera sensor for Asus ZenFone 7 64 MP, versus 12 MP for HTC U Ultra.

The front camera of the first smartphone received a resolution of 64 MP, versus 16 MP of the second.

Which accumulator is better for Asus ZenFone 7 or HTC U Ultra?

The battery capacity of Asus ZenFone 7 is 5000 mAh, versus 3000 for HTC U Ultra.

What kind of memory?

As for the built-in memory, it is 128 GB for the first device, and 64 GB for the second.

What screen do smartphones have

The screen of the first smartphone is equipped with a AMOLED matrix, the second with a IPS LCD matrix.

Which processor is better - Asus ZenFone 7 or HTC U Ultra?

Asus ZenFone 7 has Qualcomm Snapdragon 865 on board, the other has Qualcomm Snapdragon 821.

What is the screen resolution?

The display resolution of Asus ZenFone 7 is 6.7 inches, versus 5.7 inches for HTC U Ultra.

How much do they weigh?

Asus ZenFone 7 weighs 230 grams, versus 170 grams for HTC U Ultra.

How many SIM cards are supported?

The first smartphone can support up to 2, versus 2 for the second.

When did the sales start?

Asus ZenFone 7 was announced in There is no data. HTC U Ultra in There is no data.

What operating system version are you using?

Asus ZenFone 7 10 has the Android version, HTC U Ultra 7 has the Android version.

How much memory can be installed on smartphones?

Asus ZenFone 7 supports memory cards up to There is no data GB and HTC U Ultra up to There is no data GB.

What kind of moisture protection?

IPThere is no data of Asus ZenFone 7 versus IPThere is no data of HTC U Ultra.