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Intelligent vehicle

Driving the Future with Automotive-Grade Storage Solutions
Intelligent vehicle
Case Details

As intelligent experiences continue to evolve, smart cars are often described as “servers on wheels” or “mobile phones on wheels.” Automotive applications are placing increasingly higher demands on storage: automotive-grade storage must balance ultra-large capacity, ultra-low power consumption, data partitioning, high throughput, low latency, SoC adaptation and compatibility, ultra-high durability, data security, disaster recovery backup, and power-off protection. For example, according to Counterpoint, the storage capacity of a single vehicle will reach 2TB to 11TB within the next decade to meet the needs of different levels of autonomous driving. Leveraging its integrated R&D and testing advantages, the company continues to expand in the automotive storage market, actively developing automotive-grade products such as eMMC, UFS, LPDDR4X/5, BGA SSDs, and Micro SD (TF) cards. These solutions cover both the automotive front-end and aftermarket, meeting the application requirements of ADAS, in-vehicle infotainment systems, intelligent cockpits, and dash cameras.

1
Continuous R&D investment in automotive-grade storage solutions

The company continues to increase investment in the research and development of automotive-grade memory. In NAND Flash media characteristic analysis, it has mastered the ability to evaluate performance under automotive conditions such as cross-temperature ranges, data retention, read-write interference, and endurance. In firmware development, it has developed data reliability protection algorithms—such as data loss prevention and recovery—and endurance extension technologies, including wear leveling and write amplification control.

2
Advanced packaging and testing capabilities ensure consistency, stability, and reliability

In packaging, the company has established automotive-grade design, simulation, and process capabilities, and has passed IATF16949 automotive quality management system certification. In testing, it has built comprehensive temperature range testing (high, normal, and low temperature) and dynamic aging testing capabilities, supported by in-house chip testing equipment and algorithms. Leveraging big data, it can also conduct abnormal sample analysis and prediction to ensure yield and PPM performance. Additionally, the company has set up specialized laboratories for design simulation, signal analysis, system verification, reliability testing, material analysis, and failure analysis, fully supporting product design and validation. With advanced packaging, rigorous reliability testing, and strict control throughout the process—from customer requirements and product development to material selection and final delivery—the company ensures consistent quality, high stability, and strong reliability of automotive-grade memory products.

3
Extensive customer service experience

With strengths in wide-voltage technology, wide-temperature technology, conformal coating, electromagnetic interference resistance, and power-off protection, the company has launched a series of automotive products—including TF/SD cards, eMMC, and LPDDR—that meet IATF16949 automotive quality standards. Its products are now part of the supply chain systems of automotive electronics manufacturers such as Zongheng Automotive Electronics and Dingwei Technology, as well as leading IoV enterprises such as Ruiming Technology and G7 IoT.

Typical applications: In-Vehicle Infotainment (IVI) systems, Advanced Driver Assistance Systems (ADAS), Intelligent Cockpit Systems (ICS), Dash Cams (DVR), Surround View Monitoring Systems (AVM), Automotive Dashboards, and Telematics Control Units (T-BOX).

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