Introduction
The Asustor Lockerstor 10 Gen3 AS6810T is built for users who need substantially more than a basic home NAS. With 10 drive bays, three included 4TB SSDs, 16GB ECC DDR5 memory, four M.2 NVMe slots, dual 10GbE networking, and dual 5GbE ports, this configuration targets demanding storage environments where capacity, speed, redundancy, and expansion all matter.
At the center of this 10GbE NAS storage system Package is an AMD Ryzen quad-core processor running at 2.3 GHz. That combination gives the system a strong foundation for file sharing, backups, media libraries, virtualization-oriented workloads, business storage, and high-speed data transfers. The included WDS400T4B0E 4TB SSDs also provide a fast starting point without requiring the system to be populated entirely from scratch.
What makes the Lockerstor 10 Gen3 particularly interesting is how its storage architecture can evolve. Ten drive bays provide substantial room for expansion, while four M.2 NVMe slots can be used for fast storage or cache-oriented configurations depending on the workload and software setup. For a creative professional, small office, enthusiast, or technical user managing large datasets, this flexibility can be more valuable than raw capacity alone.
Features
10-Bay Storage Architecture
The biggest physical advantage of the AS6810T is its 10-bay design. A multi-bay NAS gives you much more flexibility than a compact two- or four-bay enclosure because you can build larger arrays, maintain redundancy while retaining useful capacity, and expand your storage strategy over time. Ten bays are especially useful for users working with large photo collections, video projects, backups, business documents, surveillance data, or virtual-machine storage.
The included three 4TB SSDs provide 12TB of raw drive capacity before accounting for RAID configuration, filesystem overhead, and redundancy. Because actual usable capacity depends on the selected array and configuration, buyers should plan around their intended redundancy requirements rather than simply adding the individual drive capacities together.
AMD Ryzen Processing
The AMD Ryzen quad-core processor operates at 2.3 GHz and provides the processing foundation for NAS services and applications. A capable CPU becomes increasingly important as a NAS moves beyond simple file storage. Encryption, indexing, multiple simultaneous users, application services, database workloads, containers, media management, and other tasks can all increase CPU demand.
For a workstation or small-business environment, having four CPU cores provides useful headroom for multitasking. The processor is paired with 16GB of ECC DDR5 memory, giving the system a substantial memory pool for a NAS platform.
16GB ECC DDR5 RAM
Memory capacity and memory reliability both matter in a storage server. The 16GB ECC DDR5 configuration offers a strong starting point for applications that require more memory than a basic file server. ECC memory is designed to detect and correct certain types of memory errors, which is particularly relevant in systems intended to operate continuously and handle important data.
For users running several services simultaneously, the available memory can also help the system handle concurrent workloads more comfortably. Whether the NAS is serving multiple computers, maintaining backups, hosting applications, or managing a large media library, 16GB provides meaningful room for multitasking.
Four M.2 NVMe Slots
The four M.2 NVMe slots are another major highlight. NVMe storage can provide extremely high storage performance with low latency, making these slots useful for workloads where responsiveness matters. Depending on the supported configuration and software features, users can incorporate NVMe storage into their NAS strategy alongside the larger drive bays.
This hybrid approach can be useful when frequently accessed data needs faster storage while the larger drive bays handle bulk capacity. It also gives advanced users more opportunities to tune the system around their specific workflow.
Dual 10GbE and Dual 5GbE Networking
Networking is one of the strongest reasons to consider this particular configuration. Dual 10GbE ports can provide high-bandwidth network connectivity for compatible infrastructure, while the additional dual 5GbE ports offer further flexibility for network segmentation, multiple connections, or different network environments.
However, the NAS itself is only one part of the networking equation. To take full advantage of 10GbE speeds, the connected computer, switches, cabling, storage configuration, and network protocol all need to support the required performance level. Users moving large video files or workstation datasets over a properly configured 10GbE network can benefit much more from this architecture than someone using a standard gigabit connection.
SSD-Based Starting Configuration
The three included WDS400T4B0E 4TB SSDs give this package an immediate performance-oriented storage foundation. SSDs eliminate the mechanical components found in conventional hard drives, which can provide lower access latency and quieter operation while making the system particularly attractive for workloads involving frequent small-file operations or demanding application access.
At the same time, the ten available bays mean the included SSDs do not have to define the NAS forever. The enclosure provides room for a larger and more customized storage layout as requirements change.
Pros & Cons
| Pros | Cons |
|---|---|
| 10-bay chassis provides extensive storage and expansion flexibility | 10GbE performance requires compatible networking equipment |
| Includes three 4TB SSDs for a substantial starting configuration | Actual usable capacity depends on RAID and storage configuration |
| 16GB ECC DDR5 memory is well suited to demanding NAS workloads | Advanced features may require more configuration knowledge |
| Four M.2 NVMe slots add high-speed storage flexibility | A 10-bay NAS occupies more physical space than compact NAS systems |
| Dual 10GbE and dual 5GbE ports offer excellent network flexibility | High-end networking can increase the total system cost |
| AMD Ryzen quad-core processor supports multitasking and applications | Users with basic storage needs may not need this level of hardware |
Performance
The performance potential of the Lockerstor 10 Gen3 comes from the interaction between its processor, memory, SSDs, NVMe capability, and networking rather than from any single component. The result is a platform designed for workloads where a conventional entry-level NAS could become restrictive.
For large file transfers, the dual 10GbE interfaces are particularly important. A properly configured 10GbE network has considerably more bandwidth than standard 1GbE networking, making it better suited to transferring large video files, project archives, virtual-machine images, datasets, and backup repositories. With compatible clients and infrastructure, this type of network connectivity can substantially reduce transfer times.
For example, a creative team working with large media assets can keep centralized files on the NAS rather than relying exclusively on local workstation storage. Editors and designers can access shared project material while the NAS remains the central repository. The actual experience will depend on the network configuration, file types, application behavior, storage array, and number of simultaneous users.
The SSD configuration also changes the character of the system compared with a conventional HDD-only NAS. SSD storage can deliver fast access and strong responsiveness for frequently accessed data. The four M.2 NVMe slots provide another layer of flexibility for users who want to design a faster storage tier or take advantage of NVMe-based capabilities supported by the system.
Memory is another important performance factor. With 16GB of ECC DDR5, the NAS has enough memory to support a range of simultaneous services without being limited to the basic requirements of a simple file server. Users who expect to run additional applications should still evaluate the memory requirements of each workload individually.
For backup duties, the large chassis is especially useful. A NAS can act as a central destination for computers, workstations, and other devices, helping consolidate important files into a managed storage environment. With multiple bays, users have more options when designing redundancy and capacity around their data-protection requirements.
It is also worth distinguishing performance from data protection. RAID can improve availability and protect against certain drive failures, but RAID should not be treated as a complete backup strategy. Important data should have additional copies stored according to an appropriate backup plan.
Daily Usability and Expansion
A 10-bay NAS makes the most sense when storage requirements are expected to grow. Instead of replacing a small NAS once its bays are filled, a larger enclosure gives users more room to build out their storage environment. This can be useful for growing businesses, photographers, videographers, IT departments, researchers, and serious home-lab users.
The combination of conventional drive bays and M.2 NVMe slots is particularly useful because not every workload needs the same kind of storage. Bulk data can prioritize capacity, while frequently accessed applications or performance-sensitive datasets can make use of faster storage where supported.
The networking configuration also provides flexibility beyond a single high-speed connection. Dual 10GbE and dual 5GbE interfaces can be incorporated into more advanced network designs, although the exact benefits depend on how the network is configured.
Who Should Consider the AS6810T?
This NAS is most appropriate for users who have a genuine need for high storage capacity, high-speed networking, and hardware expansion. A professional working with large media files, a small business maintaining centralized storage, or a technical user building a home lab can potentially make much better use of its capabilities than someone who only needs occasional document backups.
The system is also compelling for users who prefer to plan ahead. Ten bays and four M.2 slots leave considerably more room for future storage strategies than a small NAS enclosure. That flexibility can be valuable when a data library grows faster than expected.
On the other hand, users with only a few hundred gigabytes of files and no requirement for advanced networking may find a smaller NAS architecture more appropriate for their needs. The hardware here is designed around expansion and demanding workloads rather than minimum-cost storage.
Setup Considerations
Before purchasing, it is worth checking the entire network and storage environment. If your computer only has gigabit Ethernet, a 10GbE NAS cannot by itself create a 10GbE workflow. You may need compatible network adapters, switches, cabling, and other infrastructure.
Likewise, storage planning should happen before installing the drives. Consider how much capacity you actually need, how much redundancy is appropriate, whether SSDs or HDDs make sense for each workload, and how you will maintain independent backups of irreplaceable data.
For buyers researching other equipment and home-office upgrades, a related resource is Related Guide.
Long-Term Value
The long-term appeal of the Asustor Lockerstor 10 Gen3 comes from its combination of expansion potential and connectivity. Storage requirements tend to increase over time, and a 10-bay platform gives users substantially more room to adapt than a compact enclosure.
The included SSDs provide a useful starting point, while the empty bays can accommodate future storage expansion. The M.2 slots add another dimension to that flexibility. Meanwhile, ECC DDR5 memory and the Ryzen processor provide a hardware platform capable of handling more than basic file sharing.
The dual 10GbE interfaces are particularly relevant for users whose workloads involve large files. As network infrastructure moves toward faster Ethernet, having high-speed networking built into the NAS can also reduce the need for immediate hardware replacement.
FAQ
What is the Asustor Lockerstor 10 Gen3 AS6810T?
The AS6810T is a 10-bay network attached storage system designed for high-capacity storage, centralized file management, high-speed networking, and expansion. This particular package includes three 4TB SSDs, 16GB ECC DDR5 memory, four M.2 NVMe slots, dual 10GbE ports, and dual 5GbE ports.
How much storage does this package include?
The package includes three 4TB WDS400T4B0E SSDs, representing 12TB of raw drive capacity before RAID configuration, filesystem overhead, and other considerations. The usable capacity depends on the storage layout selected by the user.
Is this NAS suitable for video editing?
It can be a strong platform for centralized media storage and high-speed file workflows, particularly when paired with compatible 10GbE client hardware and networking equipment. Actual editing performance depends on the editing software, file format, storage configuration, workstation, network, and number of simultaneous users.
What is the advantage of 10GbE?
10GbE provides substantially more network bandwidth than standard 1GbE networking. This is particularly useful when transferring large files such as high-resolution video, photography projects, backups, virtual-machine images, and large datasets. To benefit from it, the rest of the network path must also support appropriate speeds.
Why does ECC memory matter in a NAS?
ECC memory is designed to detect and correct certain memory errors. In a storage server that may operate continuously and handle important data, memory error correction can be a useful reliability feature. The AS6810T package includes 16GB of ECC DDR5 memory.
What are the four M.2 NVMe slots for?
The four M.2 NVMe slots provide additional high-speed storage options. Depending on the supported software and configuration, NVMe drives can be incorporated into the NAS for performance-oriented storage or caching applications.
Can the ten bays be expanded later?
The ten-bay design provides physical room for additional drives, allowing users to build a storage configuration over time. Expansion behavior and migration options depend on the storage technology and configuration selected.
Is RAID the same as a backup?
No. RAID can provide redundancy against certain drive failures, but it does not replace an independent backup. Important data should have additional copies stored separately so that accidental deletion, corruption, malware, hardware failure, or other incidents do not result in permanent data loss.
Who is this NAS best suited for?
The hardware is aimed at users who need substantial storage capacity, high-speed networking, expansion options, and a platform capable of handling multiple services. It can be relevant to professionals, small businesses, content creators, IT environments, and advanced home-lab users.
Final Thoughts
The Asustor Lockerstor 10 Gen3 AS6810T is designed around a clear objective: provide a powerful and expandable foundation for demanding network storage. The combination of ten bays, three included 4TB SSDs, AMD Ryzen processing, 16GB ECC DDR5, four M.2 NVMe slots, dual 10GbE, and dual 5GbE creates a configuration with considerable flexibility.
For users who can take advantage of high-speed Ethernet and need room for future storage expansion, this 10GbE NAS storage system Package offers a robust starting point. Its strongest appeal is not simply the number of drives it can hold, but the combination of capacity, connectivity, memory, SSD storage, NVMe expansion, and a processor capable of supporting a broad range of NAS workloads.
As with any high-end NAS, the final experience depends heavily on how the system is configured. Network infrastructure, RAID choices, drive selection, applications, backup practices, and client hardware all influence real-world results. With those factors properly planned, the AS6810T provides the hardware foundation for a serious centralized storage environment.




