Product Description
The MediaTek MT6735V/TMA is a mid-range quad-core mobile processor designed to provide affordable 4G LTE performance, energy efficiency, and solid multimedia capabilities for smartphones and tablets. Built on the 28nm process technology, the MT6735V/TMA is focused on delivering reliable performance while keeping power consumption low, making it suitable for devices that need long-lasting battery life without sacrificing user experience.
At the heart of the MT6735V/TMA is the quad-core ARM Cortex-A53 processor, running at speeds of up to 1.3 GHz. This CPU offers sufficient performance for everyday smartphone functions, such as browsing, social media, and video playback, while also being power-efficient. The use of 64-bit processing ensures that the chip can handle modern 64-bit applications efficiently, improving multitasking capabilities and enabling future-proofing for upcoming software.
For graphics processing, the Mali-T720 MP2 GPU handles Full HD video playback and moderate gaming tasks. The GPU provides smooth rendering of 3D graphics and supports gaming with modest graphical demands. The dual-core GPU ensures that media content is displayed sharply and fluidly, allowing users to enjoy HD movies and casual games without noticeable lag.
A standout feature of the MT6735V/TMA is its 4G LTE Category 4 connectivity, offering download speeds of up to 150 Mbps and upload speeds of up to 50 Mbps. This high-speed internet capability ensures that users can stream videos, download large files, and browse the web at speeds comparable to high-end smartphones. In areas with limited LTE coverage, the chip also supports HSPA+ for fallback 3G connectivity, offering 42 Mbps download speeds for uninterrupted connectivity.
Connectivity is further enhanced by the inclusion of Wi-Fi 802.11 b/g/n, which supports both the 2.4 GHz and 5 GHz bands for improved signal strength and reduced interference. Bluetooth 4.0 with Low Energy support allows for efficient, wireless communication with accessories such as wireless speakers, headsets, and fitness devices, while FM radio support provides offline entertainment without the need for mobile data.
In terms of multimedia capabilities, the MT6735V/TMA supports up to a 13 MP rear camera and a 5 MP front camera, enabling users to take clear photos and engage in video calling. The rear camera can record HD video at 30 fps, making it suitable for capturing high-quality moments. The camera features such as HDR and Panorama further enhance the photographic experience, ensuring good performance in various lighting conditions.
The MT6735V/TMA also excels in memory and storage, supporting LPDDR3 RAM for efficient multitasking and eMMC 5.0 storage for fast data access and app loading times. With support for up to 32 GB of internal storage and expandable storage via microSD, users can store a wide range of apps, media, and documents.
Thanks to its 28nm process, the MT6735V/TMA is highly energy-efficient, ensuring that devices powered by the chip can offer long-lasting battery life, even with high-speed internet access and demanding multimedia features. Power-saving technologies like dynamic voltage scaling ensure that the processor operates efficiently, maximizing battery life without sacrificing performance.
In conclusion, the MediaTek MT6735V/TMA provides a well-rounded solution for mid-range smartphones and tablets, offering strong 4G LTE performance, multimedia capabilities, and energy-efficient operation at a competitive price point. It is particularly well-suited for users seeking affordable yet reliable mobile devices that offer solid performance, fast internet speeds, and good multimedia experiences.
Specification
CPU (Central Processing Unit):
The MT6735V/TMA features a quad-core ARM Cortex-A53 processor with a clock speed of up to 1.3 GHz. The Cortex-A53 cores are based on the ARMv8-A architecture, which supports 64-bit processing, enabling the chip to run modern applications that take advantage of the 64-bit instruction set. The performance of the MT6735V/TMA is sufficient for general smartphone use, such as web browsing, social media, multimedia consumption, and light gaming.
64-bit Architecture: With 64-bit support, the MT6735V/TMA can handle larger amounts of memory and multitask more efficiently compared to older 32-bit processors. This enables better performance in resource-intensive applications and future-proofing for newer apps optimized for 64-bit devices.
GPU (Graphics Processing Unit):
The chip integrates the Mali-T720 MP2 GPU, which features a dual-core design. The Mali-T720 is an energy-efficient graphics unit that supports Full HD (1080p) video decoding and rendering of 3D graphics for mobile gaming. While not as powerful as high-end GPUs, the Mali-T720 MP2 provides a good balance of performance and power consumption, making it suitable for everyday mobile gaming and multimedia tasks.
The Mali-T720 also provides good support for modern graphical effects in mobile games, delivering smooth experiences in mid-range smartphones and tablets, while also supporting HD video playback and video recording at 30 fps.
Modem and Connectivity:
LTE Category 4: The MT6735V/TMA is equipped with 4G LTE connectivity, supporting download speeds of up to 150 Mbps and upload speeds of up to 50 Mbps. These speeds enable faster internet browsing, high-quality video streaming, and online gaming. The chip also supports HSPA+ (3G), providing fallback speeds of up to 42 Mbps for downloads and 11.5 Mbps for uploads, which is ideal for areas with less LTE coverage.
Wi-Fi 802.11 b/g/n: The MT6735V/TMA supports Wi-Fi 802.11 b/g/n for stable and fast wireless connectivity. It operates on both the 2.4 GHz and 5 GHz frequency bands, improving the Wi-Fi experience by reducing interference and ensuring faster data transfer, especially in crowded wireless environments.
Bluetooth 4.0: The chip includes Bluetooth 4.0 support, including Bluetooth Low Energy (BLE), which allows energy-efficient communication with a wide range of devices such as wireless speakers, headphones, and fitness trackers. The use of BLE helps extend the battery life of both the smartphone and connected peripherals.
FM Radio: The MT6735V/TMA also integrates FM radio functionality, enabling users to listen to local radio stations without needing an internet connection. This is particularly useful in regions where mobile data is limited, providing users with offline entertainment options.
Camera Support:
Rear Camera: The MT6735V/TMA supports a main rear camera of up to 13 MP, allowing for high-quality photography. The camera is capable of HD video recording at 30 fps and can capture sharp images with good color accuracy and detail, especially in well-lit environments.
Front Camera: The MT6735V/TMA also supports a front camera of up to 5 MP, which is suitable for video calls and selfies. The chip provides features like HDR (High Dynamic Range) and Panorama for enhancing photo quality, ensuring a pleasant experience for users who frequently engage in social media and video calling.
Memory and Storage:
RAM: The MT6735V/TMA supports LPDDR3 memory with up to 2 GB of RAM, which is suitable for everyday multitasking and handling common mobile apps. The LPDDR3 memory offers better data transfer speeds and energy efficiency compared to older memory types, providing a more responsive user experience.
Storage: The chip supports eMMC 5.0 storage with speeds up to 300 MB/s, offering fast read and write speeds. This helps ensure that apps load quickly and that data is accessed and stored efficiently. The chip supports up to 32 GB of internal storage, and devices based on this chip can have expandable storage via microSD cards for additional capacity.
Energy Efficiency:
The MT6735V/TMA is built on a 28nm process, which significantly reduces power consumption compared to older, larger process technologies. This helps ensure that devices powered by the MT6735V/TMA can offer better battery life despite being equipped with power-hungry features like LTE connectivity and high-resolution cameras.
The chip incorporates power management technologies like dynamic voltage scaling and low-power idle modes, ensuring that the chip only consumes power when necessary, leading to an optimized battery life for devices running on this platform.