Industrial Grade PCIe3.0 SSD 512GB 2tb Solid State Drive M.2 Internal Hard Disk For Laptop Desktop Mobile Storage
High Speed Data Transmission
It supports NVMe protocol to achieve faster data access speed, especially in high concurrency read and write operations.
Low Latency
It provides fast response time and is suitable for real-time data processing and high-performance computing applications.
Energy Conservation
Compared to traditional hard drives, PCIe SSD has lower power consumption, which helps to reduce overall
system energy consumption.
Seismic Resistance
PCIE 3.0 SSD has no mechanical components and strong resistance to vibration and impact, making it suitable for industrial and mobile devices.
Wide Application
It is suitable for various scenarios such as data centers, embedded systems, high-performance computing, artificial intelligence, etc.
Industrial Grade PCIe3.0 SSD Specification
Capacity
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128GB/256GB/512GB/1TB/2TB
|
Interface
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M.2(2230/2242/2280)
|
Protocol
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NVMe1.3
|
Read speed
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3000MB/s
|
Write speed
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2800MB/s
|
Operating temperature
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-40~85℃
|
EP
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≥3000
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Power-off protection
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support
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Hardware or software destruction
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optional
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High IOPS performance
- Higher IOPS: For scenarios that require frequent random reads and writes, such as database queries and high-frequency trading, industrial PCIe 3.0 SSDS can provide extremely high input and output operations per second (IOPS), far exceeding SATA SSDS or traditional hard disks.
Data persistence
- Persistent write performance: In environments with high write loads, industrial SSDS are more reliable than consumer SSDS. With more durable NAND flash memory and optimized algorithms, long-term write stability can be maintained.
Adapt to high load working environment
- Continuous read and write ability: Industrial-grade PCIe 3.0 SSDS are usually designed to support long periods of high-load work without overheating, performance degradation, or crashes, and are suitable for applications such as data centers and enterprise-class servers that require continuous processing of large amounts of data.