We are excited to invite you to join us at the Australasian Gaming Expo (AGE) 2024, where ADATA Technology Co., Ltd., the global leader in industrial storage, will be setting a new benchmark for gaming storage.
At this year’s AGE, ADATA Industrial will be showcasing a range of cutting-edge products and proprietary technologies designed to power gaming, including: *BiCS5 3D(e)TLC Storage Products
*High DWPD Solid-State Drives (SSD)
*Industrial-Grade Memory Modules
We will also be presenting our high-performance ECC U-DIMM, ECC SO-DIMM, and R-DIMM (Registered DIMM) that integrate wide temperature, anti-sulfation, high durability, data security, moisture-proof, and anti-fouling technologies. These solutions are engineered to excel in harsh environments, providing large-capacity data flow, extremely fast and efficient reading/writing, and robust security mechanisms.
We look forward to welcoming you at our booth and exploring the future of gaming storage together. Please feel free to reach out to us with any questions or to schedule a meeting in advance.







Medical devices are rapidly becoming more digital. From medical imaging systems, patient monitoring devices, endoscopy systems, and automated dispensing cabinets to healthcare edge gateways, an increasing number of healthcare applications must continuously record medical images, sensor data, operation logs, alarm events, and system status while supporting diagnostic and treatment workflows.

Learn what an NVMe SSD is, how NVMe differs from SATA SSDs, and why NVMe storage is ideal for automation, industrial systems, and high-frequency data logging.

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NVR storage is not only about capacity planning. It also affects data integrity and long-term system reliability. For AI NVR and 24/7 recording environments, storage devices must handle heavy write workloads, RAID rebuilding, and continuous recording. As a result, choosing between HDD vs. SSD and selecting the right surveillance SSD have become critical for modern surveillance deployment.

Temperature is the silent limiter of every SSD, and the SSD temperature range is both a performance spec as well as a reliability spec. Under sustained load, NVMe firmware tracks a composite temperature and will start to throttle lightly or heavily. So, write throughput drops hard and latency spikes. Heat also speeds charge leakage inside NAND, which accelerates retention loss. The effect worsens as cells age from program/erase wear. Thus, you burn endurance faster and raise data-retention trouble when the drive later remains unpowered.

Garbage collection in SSDs is the controller's quiet cleanup job. It compacts still-valid pages into new space and erases blocks that are now mostly junk. That might sound weird until you remember NAND flash can't overwrite a programmed page. It must erase first, and erase happens at the block level, not per page. So, updates become "write elsewhere, then clean later."