The MediaTek MT6737V/WA is a quad-core processor designed for entry-level smartphones. It integrates a quad-core ARM Cortex-A53 CPU, a Mali-T720 MP1 GPU, and a range of connectivity options. This SoC aims to provide a balance between performance, power efficiency, and cost-effectiveness for mass-market mobile devices.
Applications
- Entry-Level Smartphones
- Smart Feature Phones
- Industrial Handheld Devices
Features
- Quad-Core Cortex-A53 CPU: Provides efficient processing for common tasks and applications.
- Mali-T720 MP1 GPU: Offers basic graphical capabilities for multimedia and light gaming.
- 4G LTE Connectivity: Supports high-speed mobile data connectivity on various LTE bands.
- Wi-Fi and Bluetooth: Enables wireless networking and peripheral connections.
- HD Display Support: Supports high-definition (HD) displays for clear visuals.
- Low Power Consumption: Designed for optimal battery life in mobile devices.
Benefits
- Responsive User Experience: Delivers a smooth and responsive experience for everyday smartphone tasks.
- Fast Mobile Data: Enables quick downloads and streaming with 4G LTE support.
- Wireless Connectivity: Provides convenient wireless networking and peripheral connections.
- Long Battery Life: Optimizes power consumption for extended usage times.
- Cost-Effective Solution: Offers a good balance of features and performance at an affordable price point.
Additional Details
The MT6737V/WA is manufactured using a 28nm process technology. It supports LPDDR3 memory and eMMC storage. MediaTek provides software drivers and SDKs for Android integration. This SoC includes security features to protect against unauthorized access and data breaches. Power management is optimized to reduce energy consumption during various usage scenarios. The integrated modem supports multiple LTE bands, ensuring compatibility with different mobile networks. Specific memory configurations and operating frequencies may vary depending on the device implementation. The MT6737V/WA is designed to meet industry standards for safety and electromagnetic compatibility.