Industrial M.2 NVMe SSD

High-Speed PCIe Storage for Industrial & Embedded Systems
Key Features
  • PCIe Gen4 x4 NVMe  Performance
  • Large Capacity up to 4TB
  • Industrial-Grade Reliability
  • Power Loss Protection
  • Long Lifecycle Supply
  • High Endurance

Product Overview

Industrial M.2 NVMe SSD for High-Performance Embedded Systems

Indudisk Industrial M.2 NVMe SSDs are designed for industrial and embedded systems that require high-speed data access, low latency, reliable 24/7 operation, and long-term product availability.

Built around the compact M.2 form factor and PCIe NVMe interface, these SSDs deliver significantly higher bandwidth than traditional SATA storage, making them suitable for industrial PCs, edge AI platforms, machine vision systems, robotics, transportation equipment, medical devices, and defense applications.

With industrial-grade NAND Flash, advanced firmware, wide temperature options, and long lifecycle support, Indudisk Industrial M.2 NVMe SSDs help OEMs and system integrators build reliable next-generation computing platforms.

Why Choose Indudisk Industrial M.2 NVMe SSD

High-Speed PCIe Performance

Higher bandwidth and lower latency than SATA-based storage for demanding industrial workloads.

Optimized for Edge AI

Fast data access supports AI inference, machine vision, robotics, and real-time edge computing.

Industrial-Grade Reliability

Designed for stable 24/7 operation in demanding industrial environments.

Wide Temperature Operation

Selected models support wide temperature -40~+85℃ ranges for harsh and outdoor environments.

Long Lifecycle Supply

Controlled BOM and long-term availability help reduce redesign and qualification risks.

Industrial NVMe SSD vs Industrial SATA SSD

  Industrial NVMe SSD Industrial SATA SSD
Interface PCIe SATA
Protocol NVMe AHCI
Performance Higher Moderate
Latency Lower Higher
AI / Edge Computing Excellent Good
Machine Vision Excellent Good
Industrial PC Excellent Excellent
Legacy Compatibility Moderate Excellent
Best For High-performance systems Compatibility & cost efficiency

Choose Industrial NVMe SSD when high bandwidth and low latency are critical. Choose Industrial SATA SSD when compatibility, cost efficiency, and proven platform support are the priority.

Typical Applications

  • Industrial PCs
  • Edge AI
  • Machine Vision
  • Robotics
  • Transportation
  • Defense

Industrial M.2 NVMe SSD Specifications

SpecificationDetails
Form FactorM.2 2280
InterfacePCIe Gen4 x4
ProtocolNVMe
NAND Flash3D TLC 
CapacityUp to 4TB
Sequential ReadUp to 6,200 MB/s*
Sequential WriteUp to 6,500 MB/s*
Operating Temperature0°C to +70°C/-40°C to +85°C
ECCLDPC
SMARTSupported
TRIMSupported
Power Loss ProtectionOptional
EncryptionOptional
TBW(4TB)6000TB
MTBF2,000,000 h

Ordering Information

ModelCapacityFlashTemp
I8-256256GBTLCIndustrial
I8-512512GBTLC Industrial
I8-01T1TBTLC Industrial
I8-02T2TBTLC Industrial
I8-04T4TBTLC Industrial

Product Overview

Industrial 2.5" SATA SSD for Reliable Long-Term Storage

Indudisk’s Industrial 2.5″ SATA SSD is engineered to deliver reliable, long-term storage for industrial automation, embedded computing, transportation, medical devices, surveillance systems, and mission-critical applications. Built with industrial-grade NAND Flash and advanced firmware technologies, it provides stable performance, exceptional endurance, and long lifecycle support for systems operating 24/7 in demanding environments.

Designed to withstand harsh operating conditions, our industrial SATA SSD features wide temperature support, intelligent error correction, power-loss protection, and optional security functions to ensure maximum data integrity and system reliability. Available in multiple capacities and customizable for OEM projects, it is an ideal storage solution for industrial PCs, embedded systems, edge computing, and rugged applications.

Why Choose Indudisk Industrial 2.5" SATA SSD

Reliable Industrial Storage for Long-Term Projects

Industrial applications require more than high performance—they demand reliability, stable supply, and long-term product availability. Indudisk Industrial SATA SSDs are designed to support mission-critical systems with consistent performance throughout the entire product lifecycle.

Engineered for Harsh Environments

Our Industrial SATA SSDs operate reliably in temperatures ranging from -40°C to +85°C, making them ideal for factory automation, transportation, outdoor equipment, and embedded systems exposed to challenging environments.

Long Lifecycle Supply Commitment

Stable BOM management and extended product availability help system integrator and project managers reduce redesign costs and maintain long-term project consistency.

Flexible OEM & ODM Customization

We offer firmware customization, hardware optimization, capacity selection,function customization and tailored storage solutions to meet specific industrial application requirements.

Why Use an Industrial 2.5" SATA SSD Instead of a Consumer SSD?

FeatureIndustrial 2.5″ SATA SSDConsumer SATA SSD
24/7 Operation✔ Designed for continuous operationLimited
Wide Temperature✔ AvailableUsually limited
Long Lifecycle✔ Long-term availabilityProduct lifecycle may be short
BOM Control✔ ControlledComponents may change
EnduranceHigh / Application OptimizedConsumer workload
Power Loss ProtectionOptionalUsually unavailable
Firmware Customization✔ Available
OEM SupportLimited
Typical UseIndustrial & Embedded SystemsPCs & Consumer Electronics

Typical Applications

  • Industrial Automation
  • Industrial PC (IPC)
  • Embedded Computing
  • Medical Equipment
  • Transportation & Railway
  • AI Edge Computing
  • Machine Vision
  • Surveillance Systems
  • Robotics
  • Energy & Utilities

Certifications

Technical Specifications

General

SpecificationDetails
InterfaceSATA
ProtocolSATAIII
Form Factor2.5″ SATA 7+15pin
Capacity256GB – 7.68TB
NAND Flash3D TLC
ControllerIndustrial-grade Controller

Performance

Read Speed520 MB/s
Write Speed500 MB/s
Random ReadUp to 92K IOPS
Random WriteUp to 31K IOPS

Reliability

FeatureDescription
MTBF> 2 Million Hours
Endurance(4TB)Up to 2100 TBW
ECCLDPC Error Correction
Power Loss ProtectionSupported
SMART MonitoringSupported
TRIMSupported
Secure EraseOptional
AES EncryptionOptional

Environmental

Operating Temperature0~70℃/-20~70℃/-40°C ~ +85°C
Storage Temperature-55°C ~ +95°C
Shock Resistance1500G
Vibration20G
Humidity5%~95%

Power

Voltage5V
Active Power(4TB)3.79W
Idle Power(4TB)1.14W

Ordering Information

ModelCapacityFlashTemp
I7-256256GBTLCIndustrial
I7-512512GBTLC Industrial
I7-01T1TBTLC Industrial
I7-02T2TBTLC Industrial
I7-04T4TBTLC Industrial

FAQ

An Industrial M.2 NVMe SSD is a solid-state storage device designed for industrial and embedded systems that require high-speed performance, reliable 24/7 operation, extended temperature support, and long-term product availability.

M.2 NVMe SSDs use the PCIe interface and NVMe protocol, providing higher bandwidth and lower latency than M.2 SATA SSDs.

 Industrial SSDs: mainly designed specifically for system designers and builders and capable of operating in extreme environments.Industrial SSDs come in a wide variety of small form factors with different interfaces.We normally  require reliable performance and consistency for industrial storage solutions.

Nomrally industrial ssds are designed for high reliability and performance operating in extreme environments while consumer SSDs are cost-effective storage for everyday us.The eKey differences include operating temperature ranges, durability, write endurance, and features like power loss protection and error correction.

Industrial SSDs are crafted for resilience in extreme environments, making them ideal for various demanding applications. They boast greater endurance and reliability than consumer SSDs, thanks to their rugged design and rugged components. Industrial SSDs have significantly higher reliability and endurance, with program/erase (P/E) cycles of around 3000 to100,000 compared to only about 1,000 for consumer SSDs. This allows industrial SSDs to handle heavy workloads for much longer before wearing out. Furthermore, they are designed to endure industrial temperatue and wide temperature ranges (from -40°C to 85°C, while consumer SSDs typically only support 0°C to 70°C).

The main difference between industrial ssd and military ssd lies in the design for environmental resilience,security features and reliability.Industrial SSDs are built to withstand harsh conditions like extreme temperatures and vibrations, while military SSDs incorporate even more rigorous standards for security, data protection, and resistance to environmental stressors like shock, vibration,humidity and electromagnetic interference.

Most people are still confused to select a right SSD type . Generally speaking, this greatly depends on the operating temperature range of your application environment for the SSD. As an SSD manufacturer ,Consumer SSDs/Commercial SSDs are designed to operate at temperatures ranging from 0 degrees Celsius  to 70 degrees Celsius , Industrial SSDs are designed to operate at  temperatures ranging from -20 degrees Celsius  to 70 degrees Celsius while military SSDs/rugged SSDs are designed to operate at  temperatures ranging from -40 degrees Celsius  to 85 degrees Celsius. 

Generally Speaking, we can differ Industrial SSDs from military SSDs by their Operating Temperature as below:

  • Commercial SSD Operating Temperature: 0C to +70C
  • Industrial SSD Operating Temperature :-20C to +70C       
  • Military SSD Operating Temperature:-40C to +85C

If you are exploring your options for industrial flash storage, two contenders are likely to be on your list: SLC NAND and MLC NAND. Both forms of NAND flash storage are popular and reliable, and each one has its most appropriate uses. The trick is not using MLC NAND when you really need SLC, or paying for SLC when you could get by with MLC. Which NAND flash storage technology is right for your application? This comparison of SLC NAND vs. MLC NAND will help you make up your mind.

With SLC NAND, one bit of data is stored on each cell. This kind of storage is extremely important for devices in which critical data will be saved.It provides suitable reliability and greatly minimizes the risk of data loss and corruption.

With MLC Nand,MLC stands for multi-level cell with  two bits of data are stored per cell.You will find it most often in commercial and industrial applications. MLC NAND is the right solution for these products because it costs less than SLC NAND.

SLC and MLC flash mermory are similar in their design. MLC SSDs cost less and allow for higher storage density. SLC SSDs provide faster write performance and higher reliability.

With TLC Nand, a triple-level cell NAND flash, stores three bits of data per cell.It is ideal for consumer grade products because the price point of TLC flash is the lowest of these three forms.

As for SSD endurance, SLC SSD is rated at approximately 100,000 PE cycles  per cell. SLC SSD is is rated at approximately 10,000 PE cycles per cell. TLC SSD is rated at approximately 3,000 PE cycles per cell.While QLC is rated at approximately only 1,000 PE cycles per cell.

An SSD form factor is the size, configuration or physical arrangement of solid-state storage media.The form factor determines the media’s physical compatibility and interchangeability with other computer components or devices. 

2.5″ 

when buying an SSD, the first thing you want to know is which form factor fits your system. SSDs come in a variety of form factors. For example,2.5″ is the most common type of SSD and fits into most laptop or desktop computers.It has a similar shape to a traditional HDD and connects over SATA cables so it offers a very familiar experience to what many are already used to.

M.2 

M.2 has become the standard type of storage for slim laptops and notebooks.Its tiny form factor is often compared to a stick of gum and easy to install right on the motherboard in most cases. It is available in various lengths to enable different SSD capacities, The longer the drive,the more Nand flash chips can be mounted on it leading to higher capacity SSDs.

mSATA

mSATA or mini-SATA,is essentially a smaller version of the full-size SATA SSD,It uses a compact form factor like M.2 but not interchangeable.M.2 SSD can support both SATA and PCIe interface options whereas mSATA only supports SATA. This form factor is designed for smaller form factor systems where space is limited.

U.2

Finally,there’s U.2 which looks like a 2.5″ drive but it is a bit thicker .It uses a different connector and sends data through the PCIe interface.U.2 SSD is typically used for high-end workstations,servers and interprise applications that need greater storage.It allows higher operating temperatures and is more favorable for transferring heat than M.2 form factor.

While M.2 and NVMe are popularly used now,they actually refer to different technologies that can be used together but:

  • NVMe is a storage transfer protocol specially designed for high-performance,non-volatile storage media.
  • M.2 is an SSD form factor that enables high-performance storage. 
  • M.2 SSD connected using the NVMe interface deliver faster read/write speed
There are two types of M.2 SSDs which are SATA and NVMe based.They differ in storage technology and depending on your needs and budget,they each have their own pros and cons. 
M.2 SATA SSDs use the SATA interface with a max. data transfer of 6Gbps. This is slow compared to the new NVMe intefaces. But it have 3 to 4 times the bandwidth compared to traditional HDD and is more available and affordable than a NVMe SSD. So it is a great alternative

 M.2 NVMe SSDs  are much more performance driven compared to M.2 SATA SSDs. By leveraging the PCIe bus, M.2 NVMe SSDs  have theoretical transfer speeds of up to 20Gbps which is already faster compared to M.2 SATA SSDs with 6Gbps. PCIe buses can support 1x, 4x, 8x, and 16x lanes.

Yes. Industrial M.2 NVMe SSDs are suitable for industrial PCs, edge computing platforms, machine vision systems, robotics, transportation, medical equipment, and other embedded applications.

Selected industrial models can support operating temperatures from -40°C to +85°C. Always refer to the specific product datasheet for exact specifications.

SSD lifespan depends on NAND type, capacity, workload, write volume, and operating conditions. TBW, DWPD, and expected service life should be evaluated based on the application.

Yes. Depending on project requirements, firmware, NAND configuration, endurance, security, power protection, and hardware configurations may be customized.

Need the Right Industrial NVMe SSD for Your Application?

Tell us your capacity, performance, operating temperature, workload, endurance, and lifecycle requirements. Our SSD specialists can help you select or customize the right storage solution for your system.

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