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PLEX Price Increases, The Rise of Jellyfin and Now What?

Par : Rob Andrews
18 avril 2025 à 18:00

Is This The Beginning of the End of PLEX – Is It Jellyfin Time?

After more than a decade of keeping its Lifetime Plex Pass at $119.99, Plex has officially announced a significant price increase—raising the cost to $249.99 starting April 29, 2025. This announcement, delivered through a press release on March 19, also outlined several additional changes to Plex’s pricing structure and feature availability. While price increases are common in the subscription space, this is Plex’s first major change of its kind in over ten years. It affects not just future subscribers, but the entire conversation around personal media platforms and the value Plex provides in 2025. As someone who has tested and covered Plex across various NAS platforms over the years, I think it’s important to break this all down clearly—and fairly.

Note – at the time of writing, April 5th, the old prices from Plex Pass are still available and a Lifetime Plex Pass purchased now will be no different than one purchased after April 29th 2025)

The TL;DR – Plex Just Raised Prices and Paywalled Remote Streaming

Plex is doubling the price of its Lifetime Pass from $119.99 to $249.99 starting April 29, 2025—its first increase in over a decade. At the same time, remote streaming will no longer be free, now requiring either a Plex Pass or a new $1.99/month Remote Watch Pass. While Plex has removed mobile app unlock fees and teased new features like a Common Sense Media integration, users are frustrated that core features are being moved behind paywalls. Open-source alternatives like Jellyfin are gaining traction, though they lack Plex’s polish and easy remote access. Emby sits awkwardly between the two, offering both paid and free tiers but without a clear value advantage. If you’re a regular Plex user, now is likely the last chance to grab the Lifetime Pass at its original price—after that, the equation changes.

Why is PLEX Increasing Prices and Changing their Software Services?

Plex has positioned this move as a necessary step toward long-term sustainability and innovation, citing rising infrastructure and development costs. Alongside the new Lifetime price, the monthly subscription will increase to $6.99 (up from $4.99), and the annual plan will rise to $69.99 (from $39.99). That’s a considerable leap across the board. If you’re currently on the fence about investing in a Lifetime Pass, the window is closing quickly. I’ve said it before and I’ll say it again—if Plex is part of your day-to-day setup, especially with multiple users or remote access needs, now is the most sensible time to act. Once the new pricing kicks in, the Lifetime tier may lose its appeal for newer users, especially when compared to other one-time license models in the tech space.

More controversial than the price hike, though, is the newly introduced limitation on remote streaming. As of late April, remote access will no longer be included in the free version of Plex. This means that if you want to stream media from your home server while away—say on a mobile device or at work—you’ll now need a Plex Pass or a new tier called Remote Watch Pass, which is priced at $1.99/month or $19.99/year. This shift marks a pretty significant change in Plex’s philosophy. Previously, you could set up a NAS, install Plex Media Server, and stream remotely with minimal friction. Now, that experience is essentially paywalled. While the company has clarified that users with an existing Plex Pass won’t be affected, new users and guests who rely on remote access will need to consider this new fee model.

In his own coverage of the news, Alex from the KTZ Systems YouTube channel offered a measured but critical response. He highlighted the underlying tension many feel: “You’re paying Plex to access your own files, on your own hardware, over your own network and internet connection.” It’s a fair point—and while I can understand Plex’s need for sustainable revenue, the optics of charging for what many considered a core, previously-free feature are less than ideal. In our recent joint podcast, Alex and I both agreed that if Lifetime Passes are no longer financially viable, Plex should have either phased them out or significantly increased the cost to signal their rarity. Instead, the $249.99 price tag sits in an odd middle ground—too high to feel like a deal, too low to feel truly premium.

(From official Plex Pages) IMPORTANT NOTE FOR CURRENT PLEX PASS HOLDERS:
For users who have an active Plex Pass subscription, remote playback will continue to be available to you without interruption from any Plex Media Server, after these changes go into effect. When running your own Plex Media Server as a subscriber, other users to whom you have granted access can also stream from the server (whether local or remote), without ANY additional charge—not even a mobile activation fee.

Could PLEX Have Approached Funding and Sustainability Better?

Rather than placing long-standing features behind a paywall, Plex had several other options for becoming more financially sustainable—many of which were discussed across the community in recent weeks:

  • Introduce a “Plex 2.0” Premium Tier: Instead of retroactively limiting features, Plex could have rolled out a major version update with enhanced capabilities—such as native audiobook support, advanced download controls, or multi-user analytics—reserved for paying users, while leaving existing features intact for legacy users.

  • Cap Lifetime Passes and Shift Focus to Recurring Tiers: Rather than awkwardly doubling the Lifetime price, Plex might have opted to discontinue Lifetime entirely and focus on expanding the value of annual/monthly subscriptions through regular feature rollouts or exclusive integrations, as seen in platforms like Roon or UnRAID.

  • Use a “Freemium Scaling” Model: By allowing remote access for a limited number of external users or devices on the free tier (e.g., “first one’s free”), Plex could have maintained goodwill while encouraging heavier users to upgrade organically—similar to how many SaaS platforms incentivize scaling through added value, not restriction.

What Else is Changing in Plex?

To their credit, Plex has removed one of the more annoying barriers from its platform—the mobile app unlock fee. Previously, streaming via the Android or iOS app was limited to one minute unless you paid a small one-time fee or had a Plex Pass. With the rollout of their new mobile client experience, this limitation is going away. Local streaming—meaning within the same network—will now be completely free on mobile. This is undoubtedly a welcome change, especially for users who run everything locally and don’t rely on remote features. However, for those who previously enjoyed full functionality across networks without a subscription, this small improvement may not offset the new restrictions.

Plex also used the announcement to preview some upcoming features for Plex Pass subscribers, including an integration with Common Sense Media aimed at improving parental control tools, a new server management app (separate from Plex Dash), and a long-requested open API for metadata agents and custom integrations. While these additions have genuine value, their timing—bundled with a price increase and feature restrictions—makes it harder for users to assess whether Plex is giving more or simply charging more. Alex pointed out in our podcast that innovation, not restriction, should drive paid feature rollouts. It’s a sentiment I tend to agree with: adding new tools rather than paywalling old ones is the path that generates goodwill and long-term user engagement.

Is Now the time to Ditch PLEX, and Opt for Jellyfin or Emby Media Server?

Naturally, this news has reignited interest in Jellyfin, the most well-known open-source alternative to Plex. Jellyfin remains free, with no subscriptions or data collection, and offers solid core media server functionality. However, as Alex and I discussed in our joint video, Jellyfin comes with its own set of trade-offs. While it nails the fundamentals—smooth playback, broad codec support, and responsive local streaming—it lacks polish in its client apps, and remote access typically requires self-configuration through a VPN or mesh network like Tailscale. For tech-savvy users, that’s a worthwhile trade. But for those who rely on Plex’s seamless, cross-platform access, Jellyfin may still feel like a step backward in convenience.

Emby, once considered a middle ground between Plex and Jellyfin, is rarely mentioned in this conversation anymore—and there are reasons for that. Emby straddles an awkward line between open-source philosophy and commercial aspirations. It still charges for features like hardware transcoding and has moved away from its open development roots. In our podcast, Alex shared his own frustrations with Emby’s shift to closed source shortly after he purchased a Lifetime license. Combined with a smaller user base, inconsistent app support, and limited visibility in NAS ecosystems, Emby struggles to be either the budget-friendly choice or the polished premium one. In short, it’s not that Emby is bad—it’s that it’s not compelling enough to compete meaningfully right now.

Feature Plex Emby Jellyfin
Cost Free with premium options (Plex Pass) Free with premium options (Emby Premiere) Completely free and open-source
User Interface Highly polished and intuitive Modern and user-friendly User-friendly and customizable
Media Management Excellent metadata handling and organization Powerful and versatile Robust and feature-rich
Remote Streaming Highly efficient; seamless and reliable Seamless and reliable Smooth and reliable
Parental Controls Available with Plex Pass Available and customizable Built-in and customizable
Cloud Syncing Limited support Available Not supported
Hardware Transcoding Available with Plex Pass Available with Emby Premiere Free and supported
Live TV / DVR Available with Plex Pass Available with Emby Premiere Free and supported
Multiple Users Supported Supported Supported
Offline Downloads Available with Plex Pass Available with Emby Premiere Free and supported
Plugins/Add-ons Wide range of plugins and add-ons Extensive selection Limited selection
Platform Support Broad range of platforms Wide range of platforms Wide range of platforms
Community Support Large and active community Active community support Growing community support

Are We Seeing the End of PLEX on the Horizon?

One key issue here isn’t just the new pricing or paywalled features, but how Plex has communicated these changes. As we discussed in the podcast, the rollout feels rushed and reactive, missing an opportunity to reframe this as a strategic step forward—say, through a “Plex Plus” or “Plex Lite” tier with exclusive new tools, or by versioning changes the way other platforms (like UnRAID or even macOS) handle major updates. Instead, moving features behind a paywall post-launch risks alienating loyal users. Plex’s assertion that these changes won’t affect existing Plex Pass holders is reassuring, but it doesn’t help new users discovering Plex for the first time—and realizing that what used to be free is now a subscription service.

Ultimately, I don’t believe Plex is on the brink of collapse—as some dramatic headlines might suggest—but I do think this moment marks a turning point. If you’re a regular Plex user who streams remotely or shares content with others, the Lifetime Pass at $119.99 (until April 29) remains a solid investment. After that, the value calculus shifts dramatically. For new users, the free tier will still work well for local-only setups, and the Remote Watch Pass provides a budget-friendly option. But the days of a completely free, fully featured Plex experience are clearly behind us.


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I Visited a Chinese NAS Factory – And Here is What I Saw…

Par : Rob Andrews
7 avril 2025 à 18:00

Visiting a NAS Production Facility in Shenzhen, China – The CWWK Factory and Office Tour

As part of a broader effort to explore the landscape of Chinese tech manufacturers, I recently visited the facilities of CWWK (ChangWang) in Shenzhen, China. CWWK is best known in enthusiast circles for producing NAS motherboards and compact computing solutions, often associated with budget-friendly, DIY network storage builds. My visit aimed to independently assess the scope and structure of their operations. What made this particular tour notable was the access I was granted: no NDAs were signed, there were no editorial restrictions placed on what I could film or ask, and I was permitted to record freely inside their production and R&D spaces.

This is uncommon, particularly in the tech hardware space, where many brands—especially in Asia—are typically guarded about internal processes, even when media are invited. The open format allowed for a more thorough and independent evaluation, without needing to speculate based on secondhand reports or promotional material.

It’s important to contextualize how the visit came about. CWWK did not arrange or sponsor my trip to China in any way. I was in the region for a series of self-funded visits to multiple tech companies, looking to gain a clearer understanding of how various hardware brands operate behind the scenes. The idea was to go beyond spec sheets and product listings and see what real infrastructure, if any, stood behind companies whose products are often marketed under many different brand names on platforms like AliExpress, Amazon, and Alibaba.

I reached out to CWWK on short notice—roughly 10 to 14 days prior—and they agreed to the visit. The fact that they were able to accommodate the tour with minimal lead time is worth noting. It doesn’t rule out the possibility of some presentation enhancements being made in preparation, but it does suggest that the company was not reliant on elaborate staging to present a working production environment.

The first location I visited was a mixed-use building that included administrative offices, logistics personnel, and access to part of the factory floor. Externally, the building bore no clear CWWK branding, which initially raised questions about ownership or exclusivity. Inside, however, the picture was more cohesive: staff wore uniforms bearing CWWK logos, and product runs on the factory floor featured motherboards that matched CWWK’s catalog.

While I wasn’t given lease documentation or corporate records, the volume of CWWK-branded activity suggested the company either occupies a substantial portion of the facility or has secured long-term, semi-exclusive use of the space. Several floors were accessible, and the presence of both production and support teams indicated that this was more than a satellite or temporary operation. Even so, it’s likely this building is part of a larger industrial complex shared with other tenants, which is common practice in Shenzhen’s manufacturing zones.

One of the key questions I brought to the visit concerned product design and IP ownership—specifically, whether CWWK truly engineers its own hardware or rebrands ODM (original design manufacturer) platforms that are available generically to other companies. In a formal meeting with several members of their team, facilitated by a translator, I was told that all motherboard designs are created in-house.

The company emphasized that while many of their designs do appear under other brand names, including through known resellers or system integrators, the core engineering and schematics originate from their internal teams. Some of these designs, they explained, are distributed under license or through contract manufacturing relationships.

While I wasn’t shown the full design pipeline or documentation for each SKU, I was given access to product schematics, test rigs, and development areas. Based on what I observed, it’s reasonable to conclude that CWWK controls the design process and that their platforms are later distributed—often without clear attribution—by partner companies.

Technical support and warranty policies are often ambiguous when it comes to imported tech from overseas sellers, so I took the opportunity to ask about their post-sales procedures. According to CWWK staff, customers who purchase through major e-commerce channels like AliExpress and Alibaba are serviced directly by the company’s internal support team. This contradicts the assumption that resellers handle all inquiries. They described a standard one-year warranty policy, during which defective products are repaired where feasible rather than replaced outright.

While this approach may not satisfy buyers expecting instant replacements, it aligns with broader industry trends aimed at reducing e-waste and extending hardware lifespans. I observed a dedicated support office where staff were responding to issues, many of which involved firmware or BIOS concerns. The responses to my questions were generally clear but did follow a templated structure, which made it difficult to determine how adaptable their support might be in complex cases.

Moving onto the factory floor, I was able to observe multiple stages of the production workflow. The environment combined automated processes—such as SMT (surface mount technology) component placement and soldering—with manual checkpoints, where staff would verify board integrity, inspect connector alignment, and move products between stations. The factory space showed signs of active use: floor scuffing, desk wear, and tooling marks suggested long-term operation rather than short-term setup.

Workers were equipped with anti-static wrist straps, and safety protocols appeared to be in place, though a few inconsistencies were observed. For instance, not all staff were wearing the full lab coats or coverings that I was required to wear as a visitor. While that’s not uncommon in similar facilities, it’s worth noting in the context of manufacturing discipline. Overall, the workflow followed a logical structure, and there were observable quality checks along the line, including one instance where a misaligned port was flagged and redirected for correction.

Direct interaction with factory personnel was limited, mainly due to language barriers and the guided nature of the tour. I attempted brief conversations, but most staff were focused on their tasks and understandably uninterested in lengthy exchanges with a foreign visitor.

I did not observe any signs of distress or visible overwork, but equally, I did not have enough time or context to draw firm conclusions about working conditions. The facility walls displayed motivational signage, some of which featured quite stern phrasing around responsibility and company reputation.

These types of messages—such as “Your mistakes are our mistakes”—may reflect common workplace culture in the region rather than specific managerial attitudes. In contrast, a separate building used for research and marketing featured more aspirational language. These environmental details may offer some insight into the tone and structure of the company, although they should be interpreted cautiously.

A portion of the facility was allocated to repairs and technical diagnostics. I observed several staff members actively responding to customer-reported issues and working on returned products. Desks were equipped with diagnostic tools and some BIOS interfaces were visible on screens.

In a nearby room, technicians were repairing or reworking boards—examples included reseating CPUs, correcting poorly soldered connectors, and inspecting DIMM slots.

Although the scale of this area was not massive (around six to eight desks), it indicated an operational RMA process. I did not assess how quickly repairs are processed or whether every return is examined manually, but the team appeared to be addressing real customer issues, not simply staging activity for the tour. Staff in this area were dressed more casually than the production line workers, likely due to the nature of their tasks involving pre-owned or defective components.

The second facility, located in the Beta Industrial Park, was clearly identified as a CWWK property. Unlike the first building, this one included prominent company branding, product showcases, and internal signage referencing CWWK’s development roadmap.

The upper floors were used by the R&D and marketing teams. In a dedicated product room, I was shown nearly every motherboard they’ve developed, including legacy models and upcoming releases. Several new boards were in early development, featuring high-density SATA fan-outs via SFF-8654 and NVMe expandability.

Designs ranged from micro-ITX to mATX, with plans to scale modularly using add-on cards for storage and connectivity. I also viewed design schematics and 3D renderings used to plan component layout and case compatibility. CWWK is working on 10GbE-capable models using newer Intel and AMD platforms, including boards with ECC memory support and USB4 integration. While I was not permitted to document everything in detail, the scope and clarity of the development process suggested an active, technically capable engineering team.

After spending a full day across both facilities, my overall impression of CWWK was that of a mid-sized but competent hardware developer with a growing international presence. While the first building’s exact ownership remains somewhat ambiguous, the second building was clearly operated and branded by CWWK, housing their product, development, and marketing teams. More significantly, based on my observations and the responses given, it is clear that CWWK designs and owns the intellectual property behind their motherboards.

There were also strong indications that they serve as an upstream supplier for other brands—likely including companies like Topton, MrRoute, and similar resellers often seen on Chinese e-commerce platforms. Whether these partners act as distributors, integrators, or white-label resellers wasn’t explicitly stated, but the relationship appears to exist.

CWWK is not a shell company or brand-only operation; it is a functioning developer and manufacturer of computing hardware with its own IP, infrastructure, and personnel. For buyers, this doesn’t automatically guarantee performance or support satisfaction, but it does lend some credibility and traceability to a product category often dominated by opaque supply chains and unbranded goods.

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Finally, for free advice about your setup, just leave a message in the comments below here at NASCompares.com and we will get back to you. Need Help? Where possible (and where appropriate) please provide as much information about your requirements, as then I can arrange the best answer and solution to your needs. Do not worry about your e-mail address being required, it will NOT be used in a mailing list and will NOT be used in any way other than to respond to your enquiry. [contact-form-7] TRY CHAT Terms and Conditions
If you like this service, please consider supporting us. We use affiliate links on the blog allowing NAScompares information and advice service to be free of charge to you.Anything you purchase on the day you click on our links will generate a small commission which isused to run the website. Here is a link for Amazon and B&H.You can also get me a ☕ Ko-fi or old school Paypal. Thanks!To find out more about how to support this advice service check HEREIf you need to fix or configure a NAS, check Fiver Have you thought about helping others with your knowledge? Find Instructions Here  
 
Or support us by using our affiliate links on Amazon UK and Amazon US
    
 
Alternatively, why not ask me on the ASK NASCompares forum, by clicking the button below. This is a community hub that serves as a place that I can answer your question, chew the fat, share new release information and even get corrections posted. I will always get around to answering ALL queries, but as a one-man operation, I cannot promise speed! So by sharing your query in the ASK NASCompares section below, you can get a better range of solutions and suggestions, alongside my own.

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GMKTec NucBox G9 NAS Review

Par : Rob Andrews
3 février 2025 à 18:00

GMKTec NucBox G9 Flash NAS Review – Insane Value?

The GMKtec NucBox G9 represents the brand’s first attempt to transition from the mini PC market into the world of network-attached storage (NAS). This 4-bay, SSD-only system targets entry-level users and light workloads, offering affordability and versatility in a compact form factor. Designed as a hybrid between a mini PC and a NAS, the G9 comes with pre-installed dual operating systems—Windows 11 Pro and Ubuntu—and a range of features aimed at balancing performance, cost, and functionality.

At its core, the G9 is powered by Intel’s efficient N150 processor, a quad-core chip designed for low-power applications. Paired with 12GB of LPDDR5 memory, it’s clear the system isn’t intended for heavy-duty tasks but rather for home use, backups, and small-scale media hosting.

The reliance on M.2 NVMe SSDs rather than traditional hard drives results in silent operation and faster performance, albeit at a higher cost per terabyte.

While it offers an impressive range of connectivity options, the lack of 10GbE networking and its reliance on PCIe Gen 3 x2 lanes for storage performance may limit its appeal to users with more demanding needs. This review dives deep into the GMKtec NucBox G9 to explore its design, features, and performance, and determine whether it’s worth considering as an entry-level NAS.

GMKTec NucBox G9 NAS Review – Quick Conclusion / TL;DR

The GMKtec NucBox G9 is an affordable, compact NAS system that doubles as a mini PC. With support for up to 32TB of SSD storage across four M.2 NVMe slots, it’s designed for quiet and efficient operation. It’s powered by an Intel N150 processor and features dual 2.5GbE ports, multiple USB connections, and dual HDMI outputs. While the system is cost-effective, it has limitations in thermal management and external connectivity. This device is ideal for home users and small-scale setups that prioritize affordability and low noise over raw performance. However, the reliance on plastic for the chassis, lack of SSD heatsinks, and PCIe Gen 3 x2 lanes limit its appeal for heavy workloads. Users should also be prepared to configure third-party NAS software, as the pre-installed operating systems are not optimized for NAS-specific functionality. If you’re looking for an entry-level, SSD-only NAS with minimal noise and power consumption, the GMKtec NucBox G9 is a compelling option. However, power users or those requiring advanced features like 10GbE or robust thermal performance may find it restrictive. It’s a promising debut for GMKtec in the NAS market, but with room for improvement in future iterations.

BUILD QUALITY - 6/10
HARDWARE - 7/10
PERFORMANCE - 6/10
PRICE - 10/10
VALUE - 10/10


7.8
PROS
👍🏻Affordable starting price ($150-199 for base model).
👍🏻Compact and lightweight design, ideal for small spaces.
👍🏻Quiet operation, even under load, with low noise levels (👍🏻Dual 2.5GbE ports with reliable and consistent performance.
👍🏻Supports up to 32TB of SSD storage with four M.2 NVMe slots.
👍🏻Low power consumption (19–30W) for energy-efficient operation.
👍🏻Pre-installed dual operating systems (Windows 11 Pro and Ubuntu Linux).
👍🏻Versatile connectivity, including USB 3.2 Gen 2, USB-C, and HDMI outputs.
CONS
👎🏻PCIe Gen 3 x2 lanes limit the full potential of M.2 NVMe SSDs.
👎🏻Plastic chassis hinders effective heat dissipation.
👎🏻No included SSD heatsinks, leading to thermal throttling risks.
👎🏻Lack of 10GbE networking for higher-speed environments.
👎🏻Pre-installed operating systems are not optimized for NAS functionality.
👎🏻Non-upgradable 12GB LPDDR5 memory limits scalability.
👎🏻Not a true turnkey NAS solution; requires user configuration.
👎🏻Thermal performance under load is insufficient without additional cooling

Where to Buy? How Much?

Component Details
CPU Intel N150 (Quad-Core, 3.6GHz)
Memory 12GB LPDDR5-4800
Storage 4 x M.2 NVMe (PCIe Gen 3 x2)
Networking 2 x 2.5GbE LAN
Ports 3 x USB-A 3.2 Gen 2, 1 x USB-C (data & video), 1 x USB-C (power), 2 x HDMI (4K 60Hz)
Pre-Installed OS Windows 11 Pro, Ubuntu Linux
Power Consumption 19-30W
Chassis Material Plastic
Price Starting at $169 ($216 for 1TB SSD Model)

GMKTec NucBox G9 Flash Review – Design

The GMKtec NucBox G9 features a compact, lightweight plastic chassis, which contributes to its affordability but comes with certain drawbacks. While the design is minimalistic and functional, the reliance on plastic for the panel covering the four M.2 NVMe slots raises concerns about thermal performance. Metal would have been a better choice to aid heat dissipation, particularly in an SSD-only system where temperatures can rise quickly under load.

Inside, the system accommodates up to four M.2 NVMe SSDs, each operating at PCIe Gen 3 x2 speeds. This configuration supports up to 32TB of total storage, providing flexibility for users with varying needs.

However, the Gen 3 x2 limitation caps throughput at 2GB/s per drive, which may bottleneck performance in high-demand scenarios. While the system can handle basic RAID configurations, its performance in RAID setups is limited by the hardware.

The absence of heatsinks for the SSDs is a notable oversight. Although pre-configured models with SSDs include basic heatsinks, users adding their own drives will need to invest in aftermarket cooling solutions. The plastic panel covering the storage bays further exacerbates heat dissipation challenges, as it traps heat rather than dispersing it effectively. This is really only noticeable when the system was a especially high use, but it did give me pause for thought. (Thermal test with HikMicro Mini v2 Thermal Camera on Amazon HERE )

Despite these limitations, the G9’s storage configuration is impressive for its price range. SSD-only setups ensure silent operation and faster performance compared to traditional hard drives, making it ideal for environments where noise and energy efficiency are priorities.

GMKTec NucBox G9 Flash Review – Connections

The G9 offers a solid selection of connectivity options for a device in its class. It includes two 2.5GbE LAN ports, allowing users to link aggregate bandwidth or set up separate networks. During testing, these ports easily reached their full potential, delivering consistent performance for both independent and linked configurations. However, the absence of 10GbE networking may deter users with more demanding network requirements.

In addition to networking, the system provides four USB 3.2 Gen 2 ports—three Type-A and one Type-C—offering up to 10Gbps of data transfer per port. The USB-C port doubles as a video output, complementing the two HDMI 2.0 ports that support 4K resolution at 60Hz. These features make the G9 versatile for dual roles as a NAS and a lightweight desktop workstation.

Power input is handled via a dedicated USB-C port connected to an external 65W power supply. This compact power solution aligns with the G9’s low-power design, but it also means there’s no internal power redundancy, which might concern users deploying the device in mission-critical environments.

While the ports and connections are adequate for most use cases, the lack of expandability—such as PCIe slots for adding 10GbE or other features—limits its future-proofing. Users seeking advanced connectivity options may need to consider alternatives or rely on external adapters.

Where to Buy?

GMKTec NucBox G9 Flash Review – Internal Hardware

The Intel N150 processor is the heart of the GMKtec NucBox G9. This quad-core chip operates at a base clock of 1GHz, with a boost clock of 3.6GHz. Designed for efficiency, it features a 6W TDP, making it well-suited for low-power applications like home NAS setups. While not a powerhouse, it handles light workloads effectively, including file sharing, backups, and media streaming.

Feature Details
Architecture Intel Twice Lake
Cores / Threads 4 Cores / 4 Threads
Base Clock Speed 1.0 GHz
Boost Clock Speed Up to 3.6 GHz
TDP (Thermal Design Power) 6W
Cache 6MB Intel Smart Cache
Memory Support LPDDR5-4800, DDR4-3200 (dual-channel)
Graphics Integrated Intel UHD Graphics
Graphics Frequency Up to 1.0 GHz
Max Display Resolution 4K @ 60Hz (via HDMI/DisplayPort)
PCIe Version Gen 3 (Up to 9 lanes)
Instruction Set 64-bit
Special Features Intel VT-x, VT-d, AES-NI, Intel Speed Shift
Manufacturing Process 10nm Intel Process
Release Date Q1 2025

Paired with 12GB of LPDDR5-4800 memory, the system offers a decent amount of RAM for its intended purposes. However, the memory is soldered onto the board, meaning it cannot be upgraded. This limitation may frustrate users who anticipate scaling up their usage over time. The LPDDR5 memory’s efficiency helps offset this drawback by delivering faster performance compared to older DDR4 standards.

Storage capabilities are impressive, with support for up to four M.2 NVMe drives. These slots operate at PCIe Gen 3 x2, which, while adequate for most entry-level NAS tasks, may bottleneck performance in more demanding scenarios.

The system’s internal hardware also includes an eMMC drive for the pre-installed operating systems, but its limited 64GB capacity may prompt many users to replace it or install a new OS on an M.2 SSD.

The hardware design prioritizes cost-efficiency, which is evident in the lack of ECC memory support and limited thermal management. While these decisions align with the device’s target audience, they reinforce its position as an entry-level solution rather than a high-performance NAS. In other words – KEEP YOUR EXPECTATIONS RELATIVE!!!

GMKTec NucBox G9 Flash Review – Software

The G9 is marketed as a “dual-system” NAS, shipping with Windows 11 Pro and Ubuntu Linux pre-installed. This flexibility allows users to operate the device as a mini PC or a lightweight NAS out of the box. However, neither OS is tailored for NAS-specific functionality, and users seeking advanced features like RAID management or robust file sharing will need to install third-party software.

Popular NAS operating systems such as TrueNAS, Unraid, or OpenMediaVault are compatible with the G9, but they require manual installation and configuration. While this isn’t a deal-breaker, it may deter users unfamiliar with NAS software or those seeking a plug-and-play solution. Ubuntu, while functional, lacks the intuitive tools and features found in dedicated NAS systems.

The inclusion of a Windows 11 Pro license is a welcome addition for users who may want to use the device as a general-purpose PC. However, this feature feels somewhat misplaced in a NAS-focused product, as most users will likely replace the OS with something more suited to storage tasks. Additionally, the 64GB eMMC drive hosting the OS is insufficient for many use cases, necessitating an upgrade to an M.2 SSD.

Overall, the software experience is mixed. While the dual OS option adds versatility, the lack of NAS-specific tools and reliance on user-driven configuration highlight the device’s limitations as a turnkey NAS solution.

GMKTec NucBox G9 Flash Review – Performance & Tests

In performance testing, the G9’s storage read speeds peaked at 1.4–1.5GB/s per drive, which is respectable for its hardware. Write speeds were less consistent, averaging 400–500MB/s under sustained load.

Interestingly (and still being checked into since this review was started), the system features multiple ASM1182e Gen 2 packet switches to carve up the downstream of the PCIe lanes internally (understandable for a modest CPU to require PCIe switches to allow for so many M.2s), but I suspect that THIS is why the write performance was so low. Still checking and will update ASAP here and/or in the video.

The dual 2.5GbE ports delivered solid external performance, easily saturating their bandwidth in both independent and aggregated configurations.

Thermal management proved to be a challenge. Without included SSD heatsinks and with a plastic panel covering the storage bays, temperatures rose quickly under load. Idle temperatures were manageable, but sustained use resulted in throttling, emphasizing the need for aftermarket cooling solutions. This is especially important for users planning to use the device in environments with higher ambient temperatures.

Noise levels were impressively low, even with all three fans running. During idle, the system operated nearly silently, while under load, noise levels remained below 40dB. Power consumption ranged from 19–20W at idle to 28–30W under load, making it an efficient option for users concerned about energy usage.

Overall, the G9 performs well for an entry-level system but struggles in scenarios requiring sustained performance. Its thermal limitations and PCIe bottlenecks make it better suited for light to moderate workloads rather than demanding applications.

GMKTec NucBox G9 Flash Review – Conclusion & Verdict

The GMKtec NucBox G9 is an ambitious first step for the brand into the NAS market, blending elements of mini PCs with network-attached storage. Its compact, lightweight design, combined with the use of M.2 NVMe SSDs, makes it an efficient, quiet solution for home users or small-scale deployments. With a competitive starting price of $150-199 and dual operating systems pre-installed, it offers value for users who are comfortable setting up their own NAS software. The inclusion of dual 2.5GbE ports, multiple USB connections, and support for up to 32TB of SSD storage ensures it caters to a wide variety of use cases, from media hosting to backups. However, its reliance on plastic for the chassis and the absence of SSD heatsinks highlight thermal management as a weak point, making it less suitable for sustained or intensive workloads without additional investment in cooling solutions.

While the device performs well in basic NAS tasks, its hardware limitations, such as PCIe Gen 3 x2 slots and a non-upgradable memory configuration, may leave power users wanting more. The lack of 10GbE networking and limited built-in NAS software tools further cement its position as an entry-level system rather than a fully-featured solution. Ultimately, the NucBox G9 is a solid choice for users seeking an affordable, low-power NAS for quiet environments but less ideal for those with advanced needs or performance-intensive requirements. As a debut NAS product, it succeeds in offering value within its scope while leaving room for refinement in future iterations.

Pros Cons
Affordable starting price ($150-199 for base model) Limited to PCIe Gen 3 x2 lanes for M.2 NVMe slots
Compact and lightweight design Plastic chassis reduces thermal efficiency
Quiet operation, even under load No SSD heatsinks included
Dual 2.5GbE ports with solid performance Lacks 10GbE networking
Supports up to 32TB of SSD storage Pre-installed OS (Windows/Ubuntu) not NAS-optimized
Low power consumption (19–30W) Non-upgradable 12GB LPDDR5 memory
Pre-installed dual operating systems Not a true turnkey NAS solution
Flexible connectivity options (USB, HDMI, etc.) Thermal throttling under heavy loads
Where to Buy?
  • GmkTec G9 NAS (AliExpress) HERE
  • GMKTec NucBox G9 NAS (Amazon) HERE

 

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Need Advice on Data Storage from an Expert?

Finally, for free advice about your setup, just leave a message in the comments below here at NASCompares.com and we will get back to you. Need Help? Where possible (and where appropriate) please provide as much information about your requirements, as then I can arrange the best answer and solution to your needs. Do not worry about your e-mail address being required, it will NOT be used in a mailing list and will NOT be used in any way other than to respond to your enquiry. [contact-form-7] TRY CHAT Terms and Conditions
If you like this service, please consider supporting us. We use affiliate links on the blog allowing NAScompares information and advice service to be free of charge to you.Anything you purchase on the day you click on our links will generate a small commission which isused to run the website. Here is a link for Amazon and B&H.You can also get me a ☕ Ko-fi or old school Paypal. Thanks!To find out more about how to support this advice service check HEREIf you need to fix or configure a NAS, check Fiver Have you thought about helping others with your knowledge? Find Instructions Here  
 
Or support us by using our affiliate links on Amazon UK and Amazon US
    
 
Alternatively, why not ask me on the ASK NASCompares forum, by clicking the button below. This is a community hub that serves as a place that I can answer your question, chew the fat, share new release information and even get corrections posted. I will always get around to answering ALL queries, but as a one-man operation, I cannot promise speed! So by sharing your query in the ASK NASCompares section below, you can get a better range of solutions and suggestions, alongside my own.

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CWWK Q670 8-Bay Gen5 NAS vPro Mobo Review

Par : Rob Andrews
27 décembre 2024 à 18:00

CWWK Q670 8-Bay Gen5 NAS Motherboard Review

The CWWK Q670 8-Bay Gen5 NAS motherboard is a strong contender in the ever-expanding DIY mini-server motherboard market. Priced between $239 and $250, this ITX board boasts features like PCIe Gen 5 support, DDR5 memory compatibility, and versatile storage options, catering to home lab enthusiasts and small business setups alike. It is designed for Intel’s 12th, 13th, and 14th Gen processors, offering users a robust and scalable platform for building custom NAS solutions. This motherboard succeeds its predecessor with noticeable improvements in storage and connectivity, making it more appealing to users looking for cutting-edge performance. It includes eight SATA drive connections over SFF fan out cables (available as an optional purchase), three M.2 NVMe slots, and a single PCIe Gen 5 x16 slot, all in a compact 17x17cm form factor. While it provides a solid foundation for a variety of NAS applications, it also introduces challenges, particularly around memory support, networking limitations, and lane management.

One of the key selling points of the CWWK Q670 is its modularity, allowing users to customize their builds to suit specific needs. However, this flexibility comes with a steep learning curve for those unfamiliar with BIOS tuning or component compatibility. Nevertheless, the board is a worthy option for DIY enthusiasts willing to invest time and effort into creating a high-performance storage solution. This review explores the board’s design, hardware, connectivity, and performance to help you decide if the CWWK Q670 is the right choice for your next NAS project.

Note –  This is a review of the newer generation version of this NAS motherboard, you can find my review of the previous revision HERE on NASCompares, or HERE on our YouTube Channel

CWWK Q670 NAS Mobo Review – Quick Conclusion

The CWWK Q670 8-Bay Gen5 NAS motherboard is a versatile and feature-rich platform that caters to a wide range of NAS builders. Its support for modern processors, DDR5 memory, and extensive storage options make it an attractive choice for those seeking a balance between performance and scalability. However, its reliance on user customization and the absence of ECC memory or native 10GbE networking may limit its appeal for certain applications. For DIY enthusiasts and experienced NAS builders, the Q670 offers tremendous flexibility and value. Its compact ITX form factor, supporting 8 SATA drives, and PCIe Gen 5 support enable users to create powerful storage solutions tailored to their specific needs. The inclusion of Intel vPro adds an enterprise-grade feature, enhancing its appeal for remote management scenarios. While the board has its quirks, such as tight component placement and reliance on BIOS tuning, these are manageable for users willing to invest time and effort. For most users, the CWWK Q670 serves as a capable and cost-effective foundation for building a high-performance NAS. Bottom line, the CWWK Q670 is a compelling choice for those looking to balance advanced hardware features with affordability. It is not without its limitations, but for those willing to navigate its complexities, it delivers exceptional performance and scalability in a compact package.

BUILD QUALITY - 8/10
HARDWARE - 9/10
PERFORMANCE - 8/10
PRICE - 9/10
VALUE - 9/10


8.6
PROS
👍🏻A Gen5 M-ITX NAS Mobo...SOLD!
👍🏻8x SATA Ports (via SFF Fan out x2)
👍🏻Good scope to support 13th Gen and more CPUs
👍🏻3x M.2 at Gen 4x4 (one of the 22110)
👍🏻PCIe 5x16 Slot
👍🏻Excellent USB Outputs
👍🏻Full-Length DIMM Memory Support (i.e more memory possible)
👍🏻Very well priced at just over $200+
CONS
👎🏻CPU Cooler vs Memory slot placement is VERY tight!
👎🏻No pre-bundled (CPU/RAM) options
👎🏻1 PCIe slot (standard M-ITX build) will lead to hard choices about NIC upgrades


Where to Buy a Product
amzamexmaestrovisamaster 24Hfree delreturn VISIT RETAILER ➤ 
amzamexmaestrovisamaster 24Hfree delreturn VISIT RETAILER ➤


CWWK Q670 NAS Mobo – Design and Build

The CWWK Q670 packs an impressive array of features into its compact ITX form factor. Its 17x17cm footprint allows for installation in small cases, making it suitable for space-constrained setups. Despite its size, the board incorporates features typically found in larger motherboards, such as eight SATA drives supported, via SFF to SATA fanout cables, and support for DDR5 memory.

The off-white PCB design adds a modern aesthetic, distinguishing it from more generic black boards in the market. Not exactly a dealbreaker – but worthy of note.

Feature Details
CPU Compatibility Intel 12th, 13th, and 14th Gen processors (LGA1700)
Memory Dual-channel U-DIMM DDR5, 5600MHz (96GB max)
Storage 3 x M.2 PCIe 4.0 (1 x 22110, 2 x 2280), 8 x SATA3 (via 2 SFF-8643)
Networking 2 x 2.5GbE (Intel i226-V and i226-LM with vPro support)
Expansion Slot 1 x PCIe 5.0 x16 (bifurcation supported: 8+8)
USB Ports 1 x USB-C 3.2 (20Gbps), 3 x USB 3.2, 2 x USB 2.0
Video Outputs HDMI 2.0, DisplayPort 1.4 (4K@60Hz)
Power Connector Standard 24-pin ATX
Form Factor ITX (17x17cm)

The layout is thoughtfully organized, with memory slots positioned near the CPU socket, and storage interfaces placed for easy cable management. However, the proximity of these components can create challenges when using large CPU coolers or compact NAS cases. Users should carefully consider their cooling solutions, as the board’s compact design can obstruct airflow in certain configurations.

The use of full-sized U-DIMM DDR5 slots is a notable choice, enabling higher memory capacities and speeds than SODIMM alternatives. However, the lack of ECC support may deter users looking for fault-tolerant setups.

The eight SATA connections via SFF are a standout feature, offering excellent storage expandability without the need for additional adapters, simplifying installation and minimizing compatibility issues. The previous gen of this board favoured physical SATA connections.

Overall, the CWWK Q670 strikes a fine balance between size, functionality, and scalability. Its thoughtful design and rich feature set make it a compelling option for those looking to build a high-performance NAS in a compact footprint.


CWWK Q670 NAS Mobo – Ports and Connectivity

The CWWK Q670 excels in connectivity, offering a wide range of ports and interfaces to meet diverse needs. Its dual Intel 2.5GbE Ethernet ports provide reliable networking, one of which supports Intel vPro for BIOS-level remote management. This feature is particularly beneficial for enterprise users or IT administrators who require remote access for troubleshooting or system configuration.

The rear I/O panel features HDMI 2.0 and DisplayPort 1.4, capable of outputting 4K@60Hz resolution. These are useful for initial setup or troubleshooting, especially for users running graphical interfaces on their NAS. While video output is not typically essential for headless server applications, its inclusion adds flexibility for multi-purpose builds.

USB connectivity includes a single USB-C 3.2 port with 20Gbps bandwidth, three USB 3.2 Type-A ports, and two USB 2.0 ports. Additionally, the board includes internal headers for USB 3.0 and USB 2.0, allowing users to add front-panel connections or bootable storage devices. The presence of an internal USB 2.0 port is a thoughtful addition, making it ideal for booting NAS operating systems like UnRAID directly from a USB drive.

The board’s PCIe Gen 5 x16 slot offers significant expandability, enabling users to install GPUs, high-speed NICs, or storage accelerators. Bifurcation support (8+8) further enhances its versatility, allowing users to connect multiple devices simultaneously. However, the single PCIe slot requires careful planning, as it must accommodate both networking and storage upgrades in most builds.


CWWK Q670 NAS Mobo – Storage and Expandability

Storage is one of the key strengths of the CWWK Q670, 8x SATA media and three M.2 PCIe 4.0 slots offering ample capacity for large-scale data storage and high-speed applications.

The two SFF-8643 connectors simplify the integration of multiple SATA drives, eliminating the need for adapters or complex wiring setups. This makes the board particularly appealing for users planning to build RAID arrays or multi-drive setups.

The three M.2 NVMe slots are positioned strategically to maximize cooling and accessibility. One slot supports the longer 22110 form factor, ideal for high-capacity SSDs with improved heat dissipation. The other two slots support the more common 2280 size. Performance testing revealed read speeds of 5-5.6GB/s and write speeds of 3.7-3.8GB/s, which are consistent with PCIe 4.0 standards.

However, users should note that storage performance can vary significantly depending on the CPU and configuration. Lane-sharing between the PCIe and M.2 slots may lead to bottlenecks in certain setups, particularly when multiple high-speed drives are in use. Transfers between NVMe drives showed reduced throughput (~1GB/s), highlighting the need for careful resource management.

The PCIe Gen 5 x16 slot adds further storage flexibility, supporting advanced SSD expansion cards or bifurcation for multiple devices. This makes the Q670 an excellent choice for flash-based servers, provided users are prepared to invest in compatible components and optimize their configurations.


CWWK Q670 NAS Mobo – Performance Potential

Performance testing on the CWWK Q670 revealed a capable and efficient platform, capable of handling demanding workloads with ease. Using an Intel i5-12500 CPU and 16GB DDR5 memory, the board delivered consistent results across a variety of benchmarks. Idle power consumption was measured at ~30W, while load conditions with active drives peaked at 57-58W.

NVMe performance was a particular highlight, with read/write speeds reaching 5-6GB/s under optimal conditions. While these speeds are impressive, lane-sharing and resource allocation in the BIOS may limit performance in more complex setups. For example, transferring data between NVMe drives resulted in reduced speeds (~1GB/s), underscoring the need for careful configuration.

Networking performance, while reliable, may be a limiting factor for some users. The dual 2.5GbE ports provide adequate bandwidth for most home and small business applications but fall short for larger-scale deployments. Users requiring higher throughput will need to invest in a PCIe-based NIC or USB-C adapters, adding to the overall cost and complexity.

Ultimately, the CWWK Q670’s performance is highly dependent on the components selected and the time invested in BIOS optimization. While it offers a strong foundation for a high-performance NAS, its full potential can only be unlocked through careful planning and customization.


CWWK Q670 NAS Mobo – Review Verdict and Conclusion

The CWWK Q670 8-Bay Gen5 NAS motherboard is a versatile and feature-rich platform that caters to a wide range of NAS builders. Its support for modern processors, DDR5 memory, and extensive storage options make it an attractive choice for those seeking a balance between performance and scalability. However, its reliance on user customization and the absence of ECC memory or native 10GbE networking may limit its appeal for certain applications. For DIY enthusiasts and experienced NAS builders, the Q670 offers tremendous flexibility and value. Its compact ITX form factor, supporting 8 SATA drives, and PCIe Gen 5 support enable users to create powerful storage solutions tailored to their specific needs.

The inclusion of Intel vPro support (CPU dependant) adds an enterprise-grade feature, enhancing its appeal for remote management scenarios. While the board has its quirks, such as tight component placement and reliance on BIOS tuning, these are manageable for users willing to invest time and effort. For most users, the CWWK Q670 serves as a capable and cost-effective foundation for building a high-performance NAS. Bottom line, the CWWK Q670 is a compelling choice for those looking to balance advanced hardware features with affordability. It is not without its limitations, but for those willing to navigate its complexities, it delivers exceptional performance and scalability in a compact package.

PROs of the CWWK Q670 v.2 NAS Motherboard CONs of the CWWK Q670 v.2 NAS Motherboard
  • A Gen5 M-ITX NAS Mobo…SOLD!
  • 8x SATA Ports (via SFF Fan out x2)
  • Good scope to support 13th Gen and more CPUs
  • 3x M.2 at Gen 4×4 (one of the 22110)
  • PCIe 5×16 Slot
  • Excellent USB Outputs
  • Full-Length DIMM Memory Support (i.e more memory possible)
  • Very well priced at just over $200+
  • CPU Cooler vs Memory slot placement is VERY tight!
  • No pre-bundled (CPU/RAM) options
  • 1 PCIe slot (standard M-ITX build) will lead to hard choices about NIC upgrades

Where to Buy?

  • CWWK Q670 8-Bay Gen5 NAS MoBo ($203 AliExpress) HERE
  • CWWK x86 P5 NVMe NAS Board ($155 AliExpress) HERE
  • CWWK x86 P5 Barebones + Case ($239 Amazon) – HERE

 


 

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This description contains links to Amazon. These links will take you to some of the products mentioned in today's content. As an Amazon Associate, I earn from qualifying purchases. Visit the NASCompares Deal Finder to find the best place to buy this device in your region, based on Service, Support and Reputation - Just Search for your NAS Drive in the Box Below

Need Advice on Data Storage from an Expert?

Finally, for free advice about your setup, just leave a message in the comments below here at NASCompares.com and we will get back to you. Need Help? Where possible (and where appropriate) please provide as much information about your requirements, as then I can arrange the best answer and solution to your needs. Do not worry about your e-mail address being required, it will NOT be used in a mailing list and will NOT be used in any way other than to respond to your enquiry. [contact-form-7] TRY CHAT Terms and Conditions
If you like this service, please consider supporting us. We use affiliate links on the blog allowing NAScompares information and advice service to be free of charge to you.Anything you purchase on the day you click on our links will generate a small commission which isused to run the website. Here is a link for Amazon and B&H.You can also get me a ☕ Ko-fi or old school Paypal. Thanks!To find out more about how to support this advice service check HEREIf you need to fix or configure a NAS, check Fiver Have you thought about helping others with your knowledge? Find Instructions Here  
 
Or support us by using our affiliate links on Amazon UK and Amazon US
    
 
Alternatively, why not ask me on the ASK NASCompares forum, by clicking the button below. This is a community hub that serves as a place that I can answer your question, chew the fat, share new release information and even get corrections posted. I will always get around to answering ALL queries, but as a one-man operation, I cannot promise speed! So by sharing your query in the ASK NASCompares section below, you can get a better range of solutions and suggestions, alongside my own.

☕ WE LOVE COFFEE ☕

 

N305 6-Bay 10GbE NAS Motherboard Review – BUDGET BRILLIANT DIY NAS BUILD?

Par : Rob Andrews
20 décembre 2024 à 18:00

The N305 M-ITX NAS Motherboard with 10GbE – Should You Buy It?

If you’re considering a custom NAS or server build, the N305 M-ITX NAS Motherboard with 10GbE offers an enticing mix of performance, power efficiency, and networking prowess. Designed with modern demands in mind, it combines Intel’s Alder Lake-N processors with a robust set of connectivity options, including a standout 10GbE port. Whether for personal media servers, small office NAS setups, or edge computing, this motherboard brings noteworthy improvements over its predecessors. Let’s explore its design, hardware, connectivity, and practical applications.

NOTE 1 – A version of this motherboard has appeared that features a x4 PCIe slot, but it is shared with the 2nd M.2 slot. You can learn more about it HERE on the Amazon listing

NOTE 2 – The review of the N100 version of this motherboard is now live and HERE on YouTube and HERE on the blog

 


Where to Buy the 10GbE N300/N305 NAS MoBo?
  • Aliexpress $138.96 (N100 10GbE, No Memory or SSD) – HERE
  • Aliexpress $214.99 (N300 10GbE, 8GB Memory, 128GB OS SSD) – HERE
  • Check Amazon HERE

Topton MW-N305-NAS ITX DiY NAS Review – Quick Conclusion

The Topton MW-N305-NAS motherboard is an affordable M-ITX option for basic NAS setups, featuring a low-power yet high capability 8 core i3 CPU, dual 2.5GbE ports, and a rare built-in 10GbE port for faster data transfer. With six SATA ports and two M.2 slots, it offers versatile storage options, although the M.2 slots are limited to PCIe Gen 3 x1, restricting maximum speeds. While the lack of a PCIe slot and ECC support may limit its appeal for advanced users, the N305 10G NAS board performs reliably for general NAS tasks like file storage, backups, and moderate streaming. It’s best suited for budget-conscious users who need a compact and low-power NAS with decent networking options, though not for those requiring extensive expandability or high-speed processing. It’s a shame about the lack of PCIe upgradability (there is a split m.2/PCIe x4 version from Topton in the market), but aside from that, it is incredibly difficult to fault this value 10GbE DIY NAS offering!

BUILD QUALITY - 8/10
HARDWARE - 8/10
PERFORMANCE - 7/10
PRICE - 10/10
VALUE - 9/10


8.4
PROS
👍🏻Affordable price for an ITX motherboard with 10GbE networking capabilities.
👍🏻Built-in 10GbE port (Marvell AQC113C) and dual 2.5GbE ports (Intel i226-V) for versatile networking options.
👍🏻Low power consumption (6W TDP for CPU), suitable for continuous 24/7 operation.
👍🏻Six SATA 3.0 ports and two M.2 NVMe slots, providing flexible storage configuration options.
👍🏻Compact form factor, making it ideal for small NAS builds and limited-space installations.
👍🏻Supports up to 32GB of DDR5 memory, which is adequate for general NAS use.
👍🏻Low heat output with stable thermal performance, reducing the need for extensive cooling.
👍🏻User-friendly BIOS with customization options for PCI and USB settings.
CONS
👎🏻No PCIe slot, limiting expansion options for additional hardware like GPUs or other high-speed components.
👎🏻Lacks ECC memory support, which is often preferred in NAS setups for data integrity.
👎🏻M.2 slots are limited to PCIe Gen 3 x1 lanes, restricting maximum speed for high-performance applications.
👎🏻Requires a 300W power supply despite low power demands, adding potential extra cost and size requirements.


Where to Buy a Product
amzamexmaestrovisamaster 24Hfree delreturn VISIT RETAILER ➤ 
amzamexmaestrovisamaster 24Hfree delreturn VISIT RETAILER ➤


N305 M-ITX NAS Motherboard – Design and Build Quality

The N305 10GbE motherboard adheres to the Mini-ITX standard (17cm x 17cm), making it an excellent choice for compact builds. Its matte black PCB not only enhances aesthetic appeal but also signifies durability, with an 8-layer high-density fiber design that provides resistance against environmental stressors like moisture. This level of build quality ensures long-term reliability, critical for 24/7 NAS operation or server usage.

One of the key selling points of this model is its ability to balance compactness with functionality. Despite its small footprint, the board integrates a range of advanced components, including the Intel Alder Lake-N N305 CPU and a robust networking stack.

Thermal management is supported with well-placed headers for CPU and system cooling fans, ensuring stable performance even under continuous operation.

A notable upgrade in this model is the inclusion of a 10GbE LAN port, alongside two 2.5GbE ports. These features position the N305 as a professional-grade option, capable of handling demanding data transfer and network management tasks. The board also supports dual M.2 NVMe slots and six SATA3.0 ports, offering ample storage flexibility for SSDs and HDDs alike.

Component Details
CPU Intel Alder Lake-N N305, 8 Threads, 3.8 GHz boost
Memory 1x SO-DIMM DDR5 (4800-5600MHz), up to 32GB
Networking 1x 10GbE (Marvell AQC113C), 2x 2.5GbE (Intel i226-V)
Storage 6x SATA3.0, 2x M.2 NVMe (PCIe 3.0, 2280)
Graphics Intel UHD Graphics, 4K@60Hz via HDMI 2.1 and DP 1.4b
Power ATX 24+4 Pin, minimum 300W PSU recommended

With its thoughtful design and robust specifications, the N305 10GbE motherboard proves to be a versatile and compact solution for users requiring reliability and high performance in a small form factor.


N305 M-ITX NAS Motherboard – Processor and Performance

The heart of this motherboard is the Intel Alder Lake-N N305 processor, an 8-thread chip with a maximum clock speed of 3.8 GHz. Designed with efficiency in mind, it features a modest TDP of 9-15W, making it ideal for systems running 24/7.

This processor delivers the computational power needed for a wide range of applications, from lightweight virtualization to handling multiple network clients in a NAS setup. I tested the N305 NAS mobo and below are the stats power consumption numbers for both IDLE and 30-50% power use with all drives in use. Testing revealed idle power consumption of just 27-28 watts with six connected drives in hibernation, and a peak utilization of 64-66 watts under heavy RAID 5 operations across six hard drives via 10GbE.

Built on Intel’s Alder Lake-N architecture, the N305 achieves a balance between energy efficiency and performance. This makes it particularly suitable for edge computing, media streaming, and private cloud hosting. Whether you’re transcoding videos for Plex or running containerized workloads in Docker, this CPU handles it all with ease. Additionally, the integrated Intel UHD Graphics (32 execution units) ensures smooth playback of 4K media.

Memory performance on this board is another highlight. The single SO-DIMM DDR5 slot supports frequencies up to 5600MHz and capacities of up to 32GB, delivering fast data access speeds. This enables seamless multitasking and rapid handling of large files, critical for NAS environments where throughput is essential. While the single memory slot may limit scalability for some, it fits well with the board’s compact and power-efficient design. That said, even with it’s more affordable price, the lack of ECC memory support (both a CPU and MoBo limitation) is going to be a dealbreaker for storage veterans.

The N305’s low power consumption doesn’t compromise its capabilities. It can handle a surprising range of tasks for a CPU of its class, making it suitable for both personal and small business setups. The combination of processing power, efficiency, and modern architecture makes this motherboard a compelling choice for users looking to maximize performance without incurring high energy costs.


M-ITX NAS Motherboard – Ports and Connections

Ports and connections are a critical factor for any motherboard, and the N305 doesn’t disappoint. Its rear I/O panel includes a rich mix of options, catering to various connectivity needs.

The standout feature is the 10GbE LAN port, supported by the Marvell AQC113C chipset, which is complemented by two 2.5GbE LAN ports for additional network flexibility.

This combination allows users to configure advanced setups, such as load balancing or link aggregation.

For display outputs, the board features HDMI 2.1 and DisplayPort 1.4b, both supporting 4K@60Hz resolution. These ports ensure crisp visuals for administrative tasks, media playback, or light graphical workloads. Additionally, a 3.5mm audio jack powered by the Realtek ALC897 codec provides basic audio output, suitable for most NAS or server setups.

USB connectivity includes a mix of USB 3.0 and USB 2.0 ports, alongside a Type-C port (albeit limited to USB 2.0 speeds). Internally, headers for additional USB ports and front-panel connectivity provide customization options, enhancing the board’s adaptability for various builds.

Port Type Details
LAN 1x 10GbE, 2x 2.5GbE
Display HDMI 2.1, DP 1.4b (4K@60Hz support)
USB 1x USB 3.0, 2x USB 2.0, 1x Type-C (USB 2.0 rate)
Audio 3.5mm jack (Realtek ALC897 codec)
Internal Headers USB 2.0, fan control, front panel

Internally, the motherboard is equipped with headers for fan control, USB expansion, and front-panel connections, ensuring that builders can optimize cooling and functionality. The thoughtful inclusion of multiple ports and expansion headers makes the N305 10GbE motherboard suitable for a wide range of applications, from data-intensive NAS setups to compact home labs.


M-ITX NAS Motherboard – Storage Capabilities

Storage flexibility is one of the N305’s strongest features. The board includes six SATA3.0 ports, capable of speeds up to 6Gbps, ideal for building RAID arrays or connecting multiple high-capacity drives.

These ports are managed by the JMB585 controller, which ensures efficient throughput and compatibility with various storage devices.

The two M.2 NVMe slots provide high-speed storage options for caching or boot drives. These slots are PCIe 3.0 x1, supporting 2280-sized drives, and deliver sequential read/write speeds sufficient for most NAS or server needs.

#However, one M.2 slot shares its signal with the PCIe x1 lane, requiring users to carefully plan resource allocation depending on their build priorities.

The storage setup also supports features like TRIM for SSDs and port multiplier configurations, allowing users to expand their storage options further. This is particularly useful for creating large-scale NAS setups, where maximizing drive connectivity is a priority.

The performance of the MW-N305-NAS motherboard showcases a balance of efficiency and capability for its price point.  Storage speeds on the six SATA ports, powered by a JMB 58x controller on a Gen 3×1 lane, achieved sequential read and write rates of approximately 495 MB/s and 350-380 MB/s respectively.

While the 10GbE Aquantia AQC113C controller delivered fully saturated 10GbE throughput, the advertised USB 20Gbps port fell short, maxing out at 1GB/s during tests. Despite its modest clock speeds and limited PCIe lanes, the MW-N305-NAS excels as a cost-effective, low-power NAS motherboard for DIY builders, especially when considering its compact ITX form factor and versatile connectivity. In short – SATA HDD performance over the single 10GbE connection was pretty standard and acceptable, and the 3×1 lane allocation to each m.2 resulted in the expected sub 1GB internal throughput. The two M.2 NVMe slots, also Gen 3×1, reached read speeds of 783 MB/s and write speeds around 655-690 MB/s, performing consistently within the bandwidth constraints.

Transferring data between each m.2 SSD inside the system (1GB repeated file write) dropped performance down noticeably, but again – this was largely expected and based on the lane speed downgrades, hardly surprising.

Storage Type Details
SATA Ports 6x SATA3.0 (6Gbps), JMB585 controller
M.2 NVMe 2x PCIe 3.0 x1 slots (2280 size)
TRIM Support Yes
Port Multiplier Yes

Whether for storing media libraries, backing up critical data, or running virtual machines, the N305 offers a robust and flexible storage solution. Despite its compact size, the board’s thoughtful design ensures that users can configure it for both speed and capacity. This makes it a compelling option for anyone looking to build a high-performance, high-capacity NAS or server, with the flexibility to scale storage as needed.


The N305 10GbE Motherboard – Should You Buy It?

As of 2024, the N305 M-ITX NAS motherboard with 10GbE represents a versatile and cost-effective platform for users seeking a combination of performance, power efficiency, and robust connectivity. With its Alder Lake-N processor, DDR5 memory support, and standout 10GbE networking capabilities, it delivers exceptional value for its price. This motherboard is particularly well-suited for applications like Plex Media Server, Proxmox virtual machines, or UnRAID/TrueNAS setups, where both processing power and network bandwidth are critical. Its comprehensive storage options and energy-efficient design further solidify its place as a top contender in the compact NAS and server motherboard market.

However, users with high expansion needs or enterprise-level requirements may find its PCIe lane limitations a challenge. For most small-scale and prosumer applications, though, it strikes an excellent balance between capability and efficiency. Whether you’re building a new media server or upgrading an existing NAS, the N305 10GbE motherboard is a strong choice that offers modern features and flexibility in a compact package.

PROS CONs
  • Affordable price for an ITX motherboard with 10GbE networking capabilities.
  • Built-in 10GbE port (Marvell AQC113C) and dual 2.5GbE ports (Intel i226-V) for versatile networking options.
  • Low power consumption (6-10W TDP for CPU), suitable for continuous 24/7 operation.
  • Six SATA 3.0 ports and two M.2 NVMe slots, providing flexible storage configuration options.
  • Compact form factor, making it ideal for small NAS builds and limited-space installations.
  • Supports up to 32GB of DDR5 memory, which is adequate for general NAS use.
  • Low heat output with stable thermal performance, reducing the need for extensive cooling.
  • User-friendly BIOS with customization options for PCI and USB settings.
  • No PCIe slot, limiting expansion options for additional hardware like GPUs or other high-speed components.
  • Lacks ECC memory support, which is often preferred in NAS setups for data integrity.
  • M.2 slots are limited to PCIe Gen 3 x1 lanes, restricting maximum speed for high-performance applications.

 

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Recommended ATX Motherboards for DIY NAS Builds

Par : Rob Andrews
13 décembre 2024 à 16:00

Six ATX/MATX/EATX Motherboards for Your BYO NAS Build

Building your own NAS (Network Attached Storage) offers unparalleled control over your storage solution, but choosing the right motherboard is crucial. While ITX motherboards are commonly used for compact builds, ATX motherboards excel in scalability and performance. This guide explores six top ATX motherboards suitable for DIY NAS builders and explains why ATX might be the right choice for your project.


ATX vs. ITX: Understanding the Differences for NAS Use

ITX motherboards have long been favored for NAS systems due to their compact size, lower power consumption, and often pre-included mobile CPUs. These features make them ideal for smaller, quieter builds with minimal hardware requirements. However, ITX boards typically offer fewer PCIe slots, fewer SATA ports, and limited M.2 storage options, which can restrict scalability for larger storage systems. In contrast, ATX motherboards shine in builds where storage and expansion are priorities. They offer multiple PCIe slots for RAID cards, network cards, and GPUs, along with extensive SATA and M.2 connectivity. While ATX motherboards tend to consume more power and require larger cases, they cater to the growing demands of NAS builders who need flexibility and performance. If you’re planning to scale your NAS system or integrate high-speed networking, ATX is often the better choice despite its higher price point and larger physical footprint.

Motherboard form factors play a critical role in determining a system’s size, expandability, and compatibility. mATX (Micro-ATX), ATX (Advanced Technology Extended), and E-ATX (Extended ATX) represent progressively larger sizes, each catering to different use cases. mATX motherboards are compact and typically measure 9.6 × 9.6 inches, making them ideal for small cases and builds that prioritize a smaller footprint. However, they often sacrifice expandability, offering fewer PCIe slots, SATA ports, and overall connectivity. Standard ATX motherboards, measuring 12 × 9.6 inches, strike a balance between size and functionality, providing ample room for multiple PCIe slots, more storage options, and better cooling configurations. Finally, E-ATX motherboards, measuring up to 12 × 13 inches, cater to high-performance builds such as workstations or enterprise systems. They offer additional PCIe lanes, memory slots, and connectivity options but require larger cases and often consume more power. The choice between these form factors depends on your specific needs for expandability, performance, and the physical constraints of your build.


1. MSI MAG B550 Tomahawk

VALUE OPTION – AMD Ryzen Support, 6 SATA Ports, 2 M.2 NVMe Slots (Gen 4 + Gen 3), 2.5GbE + 1GbE LAN, DDR4 ECC Support, ATX, Multiple USB Ports – $160 (HERE)

The MSI MAG B550 Tomahawk is a reliable and feature-rich entry-level motherboard that provides excellent value for small to medium NAS setups. Built on AMD’s B550 chipset, it supports Ryzen 3000, 4000, and 5000 series processors, giving builders access to high-performance CPUs. The board can accommodate up to 128GB of DDR4 memory, with ECC support ensuring data integrity for critical storage applications. This feature is particularly important for NAS systems, where even minor data corruption can lead to significant issues.

On the storage front, the B550 Tomahawk offers six SATA III ports and two M.2 slots, providing ample options for both traditional hard drives and high-speed NVMe SSDs. The primary M.2 slot supports PCIe Gen 4, delivering up to 64Gbps of bandwidth, making it ideal for caching or handling high-speed data operations. The second M.2 slot, while limited to PCIe Gen 3, is still more than capable for secondary drives or less demanding workloads. Its two PCIe x16 slots enable expansion options, such as adding a GPU for transcoding or a RAID controller for additional storage management.

The networking setup includes one 2.5GbE and one 1GbE port, sufficient for home NAS systems or small-scale offices. While the board lacks advanced connectivity features like Thunderbolt or Wi-Fi, its affordability (around $160) makes it an attractive choice for budget-conscious builders. Additionally, the board’s user-friendly BIOS and comprehensive I/O options ensure ease of setup and compatibility with a wide range of components.

Specification Details
Socket AM4
Chipset AMD B550
Max Memory 128GB DDR4 (ECC support)
SATA Ports 6
M.2 Slots 2 (1× Gen 4, 1× Gen 3)
PCIe Slots 2× PCIe x16, 2× PCIe x1
Ethernet Ports 1× 2.5GbE, 1× 1GbE
Price ~$160
Form Factor ATX

2. ASRock IMB-X1314

Good Middle Ground Choice – Intel 12th-14th Gen Processor Support, 8 SATA Ports, 2 M.2 NVMe Slots (Gen 4), 3x 2.5GbE LAN, DDR4 ECC Support, Micro-ATX, TPM & USB Ports – $350 (HERE)

The ASRock IMB-X1314 is a professional-grade motherboard that provides exceptional features tailored for NAS and server builds. Designed to support Intel’s 12th to 14th Gen processors, it accommodates up to 128GB of DDR4 ECC memory, ensuring optimal reliability for storage applications. This board is particularly appealing for users who require a robust, scalable solution for high-capacity and data-intensive environments.

For storage, the IMB-X1314 features eight SATA III ports and two M.2 slots. The SATA ports allow for large-scale HDD arrays, perfect for archival storage or bulk data retention, while the M.2 slots provide fast NVMe SSD options for caching or active data operations. Both M.2 slots support PCIe Gen 4, ensuring maximum performance for modern SSDs. Its PCIe layout includes a x16 slot for GPUs or RAID controllers, a x8 slot for additional expansion, and two x4 slots for networking cards or storage accelerators.

Networking is a strong point for the IMB-X1314, with three 2.5GbE ports. These ports enable link aggregation for increased throughput or allow the board to handle multiple subnets, catering to advanced network setups. Security and management features, including onboard TPM 2.0 and Intel vPro support, make this board suitable for enterprise-grade use cases.

Despite its $350 price point, the IMB-X1314 offers excellent value for its advanced features. The robust design and wide range of I/O options ensure compatibility with modern components, while its efficient power delivery system minimizes energy costs for 24/7 operation.

Specification Details
Socket LGA 1700
Chipset Intel W680
Max Memory 128GB DDR4 (ECC support)
SATA Ports 8
M.2 Slots 2
PCIe Slots 1× PCIe x16, 1× PCIe x8, 2× PCIe x4
Ethernet Ports 3× 2.5GbE
Price ~$350
Form Factor Micro-ATX

3. ASRock Z890 NOVA WiFi

Good Affordable Flash Solution – Intel Z890 Chipset, 4 SATA Ports, 5 M.2 NVMe Slots (Gen 5 + Gen 4), 5GbE + 2.5GbE LAN, DDR5 Support, ATX, Thunderbolt 4 + WiFi 7 – $450 (HERE)

The ASRock Z890 NOVA WiFi is a state-of-the-art motherboard designed for high-performance NAS setups. Featuring Intel’s Z890 chipset, it supports up to 256GB of DDR5 memory, offering unmatched performance for memory-intensive applications. Its compatibility with the latest Intel processors ensures builders can harness cutting-edge technology for their NAS.

In terms of storage, the Z890 NOVA boasts five M.2 slots, one of which supports PCIe Gen 5, delivering exceptional speeds for NVMe SSDs. The other four slots utilize PCIe Gen 4, making this board ideal for hybrid storage configurations that balance speed and capacity. Additionally, it includes four SATA III ports, accommodating traditional HDDs for bulk storage needs. The robust PCIe layout allows for additional networking cards, RAID controllers, or GPUs, giving builders the flexibility to tailor their system to their specific requirements.

Networking options include a 5GbE and a 2.5GbE port, ensuring reliable, high-speed data transfer. Its Thunderbolt 4 connectivity further enhances its utility, allowing seamless integration with external storage devices or high-speed peripherals. Wi-Fi 7 and Bluetooth 5.4 provide additional wireless options, making the Z890 NOVA suitable for modern, connected environments. At approximately $450, this motherboard offers a perfect blend of performance, scalability, and connectivity for demanding NAS builds.

Specification Details
Socket 1851
Chipset Intel Z890
Max Memory 256GB DDR5
SATA Ports 4
M.2 Slots 5 (1× Gen 5, 4× Gen 4)
PCIe Slots 1× PCIe 5.0 x16, 1× PCIe 4.0 x16
Ethernet Ports 1× 5GbE, 1× 2.5GbE
Price ~$450
Form Factor ATX

4. BKHD-2011-mATX (Refurbished)

Budget Refurbished Option – Intel Xeon E5 Support, 10 SATA Ports, 2 M.2 NVMe Slots, 4x 2.5GbE LAN, DDR4 ECC Support, Micro-ATX, PCIe 3.0 Slots – $320 (HERE)

The BKHD-2011-mATX is a robust, enterprise-oriented motherboard tailored for high-capacity storage and demanding workloads. It is compatible with Intel Xeon E5-2600 v3/v4 processors and supports up to 256GB of DDR4 memory, making it a solid choice for users building NAS systems that require exceptional multitasking and performance. Its support for ECC memory further ensures data integrity, a key requirement for enterprise-grade storage solutions.

This motherboard excels in storage flexibility, featuring ten SATA III ports and two M.2 slots that support NVMe SSDs. The SATA configuration allows for vast storage arrays, ideal for archival or bulk storage purposes, while the M.2 slots provide high-speed access for caching or active workloads. For expansion, it offers two PCIe x16 slots and one PCIe x8 slot, which can be utilized for additional storage controllers, advanced GPUs, or network accelerators.

Networking is another highlight of the BKHD-2011-mATX. Equipped with four 2.5GbE LAN ports, it can handle large data transfers across multiple networks or subnets. This makes it an excellent choice for virtualization environments or NAS systems supporting multiple clients. Despite its older architecture, it remains a compelling option due to its affordability, typically priced around $320. For users looking to build a NAS with enterprise-level capabilities on a budget, the BKHD-2011-mATX delivers outstanding value.

Specification Details
Socket LGA 2011-3
Chipset Intel C612
Max Memory 256GB DDR4 (ECC support)
SATA Ports 10
M.2 Slots 2
PCIe Slots 2× PCIe x16, 1× PCIe x8
Ethernet Ports 4× 2.5GbE
Price ~$320
Form Factor Micro-ATX

5. MSI MEG Z790 GODLIKE

Premium Flash Solution – Intel Z790 Chipset, 6 SATA Ports, 7 M.2 NVMe Slots (Gen 5 + Gen 4), 10GbE + 2.5GbE LAN, DDR5 Support, E-ATX, Thunderbolt 4 Ports – $800 (HERE)

The MSI MEG Z790 GODLIKE is a premium motherboard designed for builders seeking top-tier performance and scalability. Powered by Intel’s Z790 chipset, it supports Intel 12th, 13th, and 14th Gen processors and accommodates up to 256GB of DDR5 memory. With its ECC memory support and robust power delivery system, this board is well-suited for high-performance NAS systems handling mission-critical data.

The GODLIKE excels in storage, offering seven M.2 slots, one of which supports PCIe Gen 5 for unmatched NVMe SSD speeds. The remaining six slots are PCIe Gen 4, ensuring fast and efficient data access. Additionally, six SATA III ports provide ample options for traditional HDDs, making this board suitable for hybrid storage configurations. Its PCIe layout includes two x16 Gen 5 slots, enabling seamless integration of GPUs or advanced RAID controllers.

For networking, the Z790 GODLIKE features dual Ethernet ports—a 10GbE and a 2.5GbE—ensuring ultra-fast data transfers and high reliability. Thunderbolt 4 connectivity expands its utility, supporting high-speed peripherals and external storage devices. Priced at approximately $800, this motherboard targets professionals and enterprise users who require cutting-edge technology and unparalleled scalability.

Specification Details
Socket LGA 1700
Chipset Intel Z790
Max Memory 256GB DDR5 (ECC support)
SATA Ports 6
M.2 Slots 7 (1× Gen 5, 6× Gen 4)
PCIe Slots 2× PCIe 5.0 x16
Ethernet Ports 1× 10GbE, 1× 2.5GbE
Price ~$800
Form Factor E-ATX

6. ASUS Pro WS WRX80E-SAGE SE WiFi

POWERHOUSE VM SERVER – AMD Threadripper PRO Support, 8 SATA Ports, 3 M.2 NVMe Slots (Gen 4), 2x 10GbE LAN, 2TB DDR4 ECC Support, E-ATX, Remote Management – $1,300 (HERE)

The ASUS Pro WS WRX80E-SAGE SE WiFi is the ultimate workstation motherboard for enterprise-grade NAS systems. Built for AMD Ryzen Threadripper PRO processors, it supports up to 2TB of DDR4 ECC memory across eight channels, making it ideal for memory-intensive tasks like virtualization, large-scale data analytics, or multi-user NAS setups. This level of scalability is unmatched, ensuring future-proofing for years to come.

Storage options are equally impressive, with three M.2 PCIe Gen 4 slots, eight SATA III ports, and two U.2 slots capable of supporting NVMe drives. The M.2 slots are optimized for high-speed SSDs, while the SATA and U.2 ports provide bulk storage options, making it ideal for hybrid setups. Its seven PCIe 4.0 x16 slots allow for maximum expansion, accommodating GPUs, high-speed networking cards, and RAID controllers simultaneously.

Networking is handled by dual 10GbE LAN ports, ensuring seamless data transfer even under heavy loads. For remote management, the board includes ASMB9-iKVM, enabling hardware-level control through IPMI. Priced at $1,300, the WRX80E-SAGE SE WiFi is a high-end solution designed for enterprise users who demand unparalleled performance, reliability, and scalability.

Specification Details
Socket sWRX8
Chipset AMD WRX80
Max Memory 2TB DDR4 (ECC support)
SATA Ports 8
M.2 Slots 3
PCIe Slots 7× PCIe 4.0 x16
Ethernet Ports 2× 10GbE
Price ~$1,300
Form Factor E-ATX

Each of these motherboards offers unique features and configurations tailored to specific NAS requirements, ranging from budget-friendly options to high-performance enterprise solutions. Selecting the right board depends on your specific needs for scalability, storage, and networking capabilities. With the detailed specifications provided, you can confidently choose the best motherboard for your DIY NAS project.

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Need Advice on Data Storage from an Expert?

Finally, for free advice about your setup, just leave a message in the comments below here at NASCompares.com and we will get back to you. Need Help? Where possible (and where appropriate) please provide as much information about your requirements, as then I can arrange the best answer and solution to your needs. Do not worry about your e-mail address being required, it will NOT be used in a mailing list and will NOT be used in any way other than to respond to your enquiry. [contact-form-7] TRY CHAT Terms and Conditions
If you like this service, please consider supporting us. We use affiliate links on the blog allowing NAScompares information and advice service to be free of charge to you.Anything you purchase on the day you click on our links will generate a small commission which isused to run the website. Here is a link for Amazon and B&H.You can also get me a ☕ Ko-fi or old school Paypal. Thanks!To find out more about how to support this advice service check HEREIf you need to fix or configure a NAS, check Fiver Have you thought about helping others with your knowledge? Find Instructions Here  
 
Or support us by using our affiliate links on Amazon UK and Amazon US
    
 
Alternatively, why not ask me on the ASK NASCompares forum, by clicking the button below. This is a community hub that serves as a place that I can answer your question, chew the fat, share new release information and even get corrections posted. I will always get around to answering ALL queries, but as a one-man operation, I cannot promise speed! So by sharing your query in the ASK NASCompares section below, you can get a better range of solutions and suggestions, alongside my own.

☕ WE LOVE COFFEE ☕

 
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