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Sharge Disk Pro 2 Revealed

Par : Rob Andrews
4 mai 2026 à 18:00

Sharge Go Back to the Drawing Board, with the Disk Pro 2

The Sharge Disk Pro 2 is an upcoming portable storage and connectivity device that combines the functionality of a USB hub with external SSD support in a compact, credit card-sized form factor. Developed by Sharge, the device is designed to address the increasing demand for high-speed data access, external storage expansion, and multi-port connectivity across mobile and desktop platforms. Unlike conventional USB-C hubs or portable SSDs, the Disk Pro 2 merges both roles into a single unit, while also incorporating active cooling to maintain consistent performance under sustained workloads. At launch, it will be available in two variants, Lite and Ultra, which differ in display capability and power efficiency, introducing a tiered approach not seen in the previous model.

Positioned as a follow-up to the earlier Sharge Disk Pro, this new iteration shifts away from fixed internal storage and instead introduces support for user-installed SSDs in multiple M.2 form factors. Alongside this change, the device retains key characteristics such as 10Gbps data throughput, integrated power delivery, and video output capabilities, while adding refinements including magnetic attachment and a lanyard-style data cable. The Lite version features HDMI 2.0 and a higher power draw of around 4W, while the Ultra version includes HDMI 2.1 and operates at approximately 1W, providing a more efficient option with expanded display support. The Disk Pro 2 is scheduled to launch via Kickstarter, continuing the company’s established approach of introducing new hardware through crowdfunding platforms.

Sharge Disk Pro 2 – Design & Storage

The Sharge Disk Pro 2 maintains a compact footprint, measuring approximately 90 × 61 × 11 mm, aligning closely with the dimensions of a standard credit card. This size places it firmly in the category of ultra-portable accessories, designed to be carried alongside a smartphone or laptop without requiring additional space typically associated with external drives or docking stations. The chassis follows a flat, rectangular layout with integrated components distributed to maximize internal efficiency while preserving a slim profile. A defining aspect of the design is its transparent enclosure, which exposes internal components in a style often associated with “cyberpunk” aesthetics. This approach is not purely cosmetic, as it also highlights the inclusion of active cooling hardware within a device of this size. The visible fan and internal layout reinforce the product’s positioning as a performance-oriented device rather than a passive accessory, distinguishing it from more conventional sealed USB hubs. The external design remains consistent across both Lite and Ultra variants, with no physical differentiation beyond internal configuration.

The Disk Pro 2 introduces a magnetic mounting system intended for direct attachment to compatible devices. This includes native support for MagSafe-enabled smartphones, as well as the option to use included magnetic rings for broader compatibility with non-MagSafe hardware. The goal is to reduce cable strain and improve portability by allowing the hub and connected device to function as a single unit during use, particularly in mobile workflows such as handheld video capture or on-the-go file transfers. Another physical design element is the inclusion of a detachable lanyard-style cable that supports both data and power delivery. This integrated approach removes the need for users to carry separate cables for connectivity, while also doubling as a carrying mechanism. The included cable is specified as a 24-pin pure copper design, supporting up to 10Gbps data transfer, power delivery, and DisplayPort signal passthrough.

In terms of storage, the Disk Pro 2 departs from the fixed-capacity approach of the earlier Sharge Disk Pro. Instead of pre-installed flash memory, it supports user-installed M.2 SSDs in 2230, 2242, and 2280 form factors, with a maximum supported capacity of up to 8TB. This change introduces flexibility in both capacity selection and potential future upgrades, allowing users to tailor storage based on their requirements rather than being limited to predefined configurations. The choice between Lite and Ultra models does not affect storage compatibility, with both versions offering the same SSD support and expansion capabilities.

Sharge Disk Pro 2 – Internal Hardware

At the core of the Sharge Disk Pro 2 is a multi-controller architecture described as an independent 4-chip control system. Each major function, including storage access, USB expansion, video output, and power delivery, is handled by a dedicated controller. This separation is intended to improve stability and reduce bandwidth contention when multiple ports are in use simultaneously, particularly under sustained workloads such as file transfers while outputting video and supplying power. A central feature of the internal design is the active cooling system, referred to as the “Ice-storm” fan. Operating at speeds of up to 10,000 RPM, the fan is designed to maintain consistent thermal conditions during extended data transfers. The system includes three operational modes: OFF, Auto, and Turbo. In Auto mode, fan speed adjusts based on internal temperatures, while Turbo maintains maximum cooling performance. This approach addresses a common limitation in compact hubs and SSD enclosures, where passive cooling can lead to thermal throttling under load. The cooling system is consistent across both Lite and Ultra variants, with no differentiation in thermal hardware between the two models.

The storage interface supports M.2 NVMe SSDs across multiple physical formats, with a maximum capacity of up to 8TB. Data transfer is handled over a 10Gbps USB interface, setting an upper limit on throughput but aligning with typical USB 3.2 Gen 2 performance expectations. The combination of active cooling and dedicated controllers is intended to sustain transfer speeds closer to this ceiling over longer periods, rather than allowing performance to degrade as temperatures increase. Differences between the Lite and Ultra versions are not related to storage or controller design, but instead focus on power efficiency and display output, meaning internal data handling performance should remain consistent regardless of variant selection.

Sharge Disk Pro 2 – Ports & Connections

The Sharge Disk Pro 2 integrates a total of 6 ports, combining data transfer, display output, and power delivery within a single device. These include 2 USB-C ports, 1 USB-A port, 1 HDMI output, and dual card reader slots for SD and microSD media. This configuration positions the device as a compact alternative to larger desktop docking stations, while maintaining compatibility with a wide range of peripherals and storage formats. The primary USB-C interface (USB-C1) supports 10Gbps data transfer alongside up to 100W power input, allowing the connected host device to be charged while the hub is in use. A secondary USB-C port (USB-C2) provides up to 80W power output, enabling downstream charging for connected devices. The inclusion of both input and output power delivery allows the hub to function as an intermediary between a power source and multiple connected devices without interrupting data throughput. This overall port layout remains consistent across both Lite and Ultra variants.

Video output capabilities differ between the two versions. The Ultra model includes HDMI 2.1, supporting resolutions up to 4K at 144Hz or 8K at 30Hz, depending on the host system and display compatibility. In contrast, the Lite version is equipped with HDMI 2.0, which reduces maximum output capabilities accordingly. Outside of this distinction, additional connectivity is provided through a USB-A 3.0 port operating at up to 5Gbps, alongside SD and microSD card slots with rated read speeds up to 180MB/s and write speeds up to 120MB/s. The included lanyard cable also functions as a full-featured USB-C connection, supporting 10Gbps data transfer, up to 100W power input, and DisplayPort signal transmission, reducing reliance on separate cables during use.

Sharge Disk Pro vs Sharge Disk Pro 2

The transition from the original Sharge Disk Pro to the Sharge Disk Pro 2 represents a shift in both hardware architecture and product segmentation. The Disk Pro is fundamentally an all-in-one device, combining fixed internal NVMe storage with a compact multi-port hub and active cooling, positioned as a self-contained solution for users who want storage and connectivity without additional components. It integrates storage capacities up to 4TB and was originally sold in tiered pricing depending on capacity . In contrast, the Disk Pro 2 removes onboard storage entirely and instead supports user-installed M.2 SSDs up to 8TB, changing the device into a modular enclosure and hub hybrid rather than a pre-configured storage product. This also alters the pricing structure significantly, as the Disk Pro 2 is sold as a standalone unit starting at $49 for the Lite version and $69 for the Ultra version, separating the cost of storage from the hardware itself.

Beyond storage, the Disk Pro 2 introduces clearer product tiering with Lite and Ultra variants, something not present in the original model. The Lite version reduces cost by using HDMI 2.0 and operating at a higher power draw of around 4W, while the Ultra version includes HDMI 2.1 and lowers power consumption to approximately 1W. Both retain the same core concept of combining data transfer, display output, and power delivery into a compact device, but the newer model expands connectivity with additional ports, including SD and microSD slots. Both generations maintain active cooling as a central feature, designed to prevent thermal throttling during sustained transfers, a capability that has been demonstrated in testing of the original device where performance remained stable under load . Physically, both devices share a similar credit card-sized footprint and transparent design, but the Disk Pro 2 refines usability with a detachable lanyard cable and broader magnetic compatibility. Overall, the original model prioritizes simplicity and integration, while the newer version emphasizes flexibility, lower entry cost, and configurable storage.

Attribute
Sharge Disk Pro
Sharge Disk Pro 2
Storage Type Built-in NVMe SSD User-installed M.2 NVMe SSD
Max Capacity Up to 4TB Up to 8TB
Upgradeable Storage No Yes (2230/2242/2280)
Interface USB 3.2 Gen2 (10Gbps) USB 3.2 Gen2 (10Gbps)
Cooling System Active cooling fan Active cooling fan
Ports 5-in-1 hub 6 ports (adds SD + microSD)
HDMI Version HDMI 2.1 HDMI 2.0 (Lite) / 2.1 (Ultra)
Power Consumption ~4W (Lite) / ~1W (Ultra)
Power Delivery Up to 100W input / 80W output Up to 100W input / 80W output
Cable Design Integrated USB-C cable Detachable lanyard USB-C cable
Magnetic Mounting Yes Yes (expanded compatibility)
Launch Pricing From ~$189 with storage $49 (Lite) / $69 (Ultra)
Product Approach All-in-one storage + hub Modular hub + enclosure

 

Sharge Disk Pro 2 – Launch Date and Price?

The Sharge Disk Pro 2 is scheduled to launch via a crowdfunding campaign on Kickstarter, with the campaign planned to go live on June 9. As with previous releases from Sharge, this approach places the product in an early-access phase prior to wider retail availability, meaning final specifications and delivery timelines may still be subject to change. The device will be offered in two distinct variants, allowing users to choose between different feature sets and efficiency profiles at launch. The entry-level Lite version is priced at $49 and features HDMI 2.0 output with a higher reported power consumption of around 4W. The higher-tier Ultra version is priced at $69 and includes HDMI 2.1 support, alongside a lower power draw of approximately 1W. Both versions are expected to ship with a 24-pin pure copper lanyard-style cable that supports data transfer, charging, and DisplayPort signal transmission. This tiered pricing structure introduces a lower entry point compared to earlier expectations, while still separating features such as display capability and power efficiency between the two models.

 

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COOL M.2 & USB4 ADAPTERS IN 2026 (Who Are IOCREST and LEKUO?)

Par : Rob Andrews
10 avril 2026 à 18:00

New Cost-Effective USB4, M.2 and PCIe Adapters from IOCREST/Lekuo for 2026 Revealed

IOCREST, also marketed under the Lekuo name for consumer channels, is preparing a broader range of USB4, M.2, and PCIe expansion products aimed at users who need higher speed networking, storage expansion, or more flexible external PCIe connectivity. Based on the product information provided and the accompanying interview material, the current lineup combines shipping devices with several products still in development or not yet formally listed on the company’s official product pages, reflecting a portfolio that spans compact 10GbE adapters, SFP+ connectivity, multi-drive enclosures, and USB4 based PCIe breakout designs.

Lekuo USB4 to 10GbE Hub

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The Lekuo DTB3R61 is a compact USB4 hub that combines 10GbE networking with basic peripheral and removable media expansion in a single enclosure. It is built around a USB4 upstream connection and is intended for hosts that support USB4 or Thunderbolt 3/4/5, rather than older USB 3.x only systems. In practical terms, this positions it as a multi function dock for users who need wired 10GbE, a small number of USB ports, and SD or TF card access without moving to a larger desktop class dock.

The port layout is relatively simple, consisting of 1x 10GbE RJ45 port, 3x 5Gbps USB Type A ports, and a TF/SD 3.0 card reader. The supplied specifications list a 40Gbps host link, support for Windows, macOS, and Linux, and a compact metal chassis. Although your transcript refers to a fanless design, the specification sheet provided here states an aluminum alloy casing with fan assisted cooling, so that distinction should be treated carefully in the article unless you want to frame it as pre release versus final spec variation.

Specification Details
Product Name Lekuo 6 in 1 USB4 Hub
Model DTB3R61
Host Interface USB4
Host Compatibility USB4 / Thunderbolt 5 / Thunderbolt 4 / Thunderbolt 3
Legacy USB Support Does not support USB 3.2 / 3.1 / 3.0 / 2.0 hosts
Network Port 1x RJ45 10GbE
Network Speeds 10 / 100 / 1000 / 2500 / 5000 / 10000Mbps
USB Ports 3x USB A
USB Data Rate 5Gbps
Card Reader 1x TF/SD 3.0
Card Reader Speed Up to 104MB/s
Upstream Bandwidth 40Gbps
Cooling Aluminum alloy casing + fan
OS Support Windows / Mac OS / Linux
Included Accessories 40Gbps cable, user manual
Product Size 90.2 × 92.2 × 28.4mm

Lekuo USB4 to 2x25GbE Adapter

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This unreleased Lekuo adapter is one of the more bandwidth focused products discussed in the interview material, built around a USB4 host connection and 2x 25GbE network ports. Based on the information provided, the design uses an SFP based approach rather than RJ45, which is consistent with the higher thermal and signal demands of 25GbE. It is positioned as a compact external network adapter for systems that need significantly more throughput than 10GbE, while still relying on USB4 as the host side connection.

The transcript also indicates several design details that help distinguish this unit from more common USB or Thunderbolt network adapters. It is described as a silent design with no active fan, includes an external barrel power input, and features a physical power button on the enclosure. The company indicated that the product was expected around Q2 and priced below $200 at the time of filming, but as it is not yet listed on the official product page, those details should be treated as pre release guidance rather than final retail specification.

Specification Details
Product Name Lekuo USB4 to 2x25GbE Adapter
Model Not provided in supplied materials
Host Interface USB4
Host Compatibility USB4 / Thunderbolt host systems
Network Interface 2x 25GbE
Port Type SFP based 25GbE connectivity
Cooling Passive / no fan, based on interview statements
Power Input Barrel power input present
Power Control Physical on/off button present
Availability Status Not yet listed on official product page
Reported Launch Window Q2, as stated in interview
Reported Price Guidance Below $200, as stated in interview

Lekuo DTB3F21 USB4 to 2x10GbE Adapter

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The Lekuo DTB3F21 is a dual port USB4 network adapter designed around 2x 10GbE SFP+ connections. Unlike simpler USB to Ethernet devices that target single port RJ45 connectivity, this model is positioned for users who need higher density fibre or DAC based networking from a single external enclosure. The supplied specifications identify the Intel 82599 controller, placing it closer to a traditional server class 10GbE design than a lower cost USB NIC.

From the product information and transcript, this adapter is part of Lekuo’s broader push into USB4 based external networking, especially for systems that lack internal expansion but still need multi port high speed network access. The enclosure is described as compact and externally connected over USB Type C, with support across Windows, Windows Server, Linux distributions, and several enterprise networking features such as VLAN support, jumbo frames, interrupt moderation, and virtual machine queue support. In the transcript, a dual 10GbE version is also discussed alongside the dual 25GbE model as part of the same general product family.

Specification Details
Product Name Lekuo USB4 to Dual 10Gb Fiber SFP+ Ports Network Adapter
Model DTB3F21
Host Interface USB
Output Interface 2x SFP+
Motherboard Slot USB
Network Speed 10Gbps per port
Controller Intel 82599
Host Cable Type C to Type C
Product Size 142.5 x 69.5 x 25.6mm
USB Standard Universal Serial Bus 3.2 Revision 1.0 compliant
Ethernet Standards 10Gb/s and 1Gb/s Ethernet / 802.3ap, 10Gb/s Ethernet / 802.3ae, 1000BASE-BX
Jumbo Frames Up to 15.5KB
VLAN Support 802.1q
Offload Features TCP segmentation offload up to 256KB, IPv6 checksum offload, fragmented UDP checksum offload
Interrupt Support MSI, MSI-X, interrupt throttling
Virtualization Support Up to 64 virtual machines per port
Additional Features Flow control, multiple receive queues, dynamic interrupt moderation, DCB support
Operating Temperature 0°C to +55°C
Storage Temperature -40°C to +70°C
OS Support Windows 10/11, Server 2022, RHEL/CentOS 7.3/7.6/7.9/8.2/8.3, Deepin 15.11/20/20.6, Ubuntu 16.04.3/18.04.5 and later
Package Contents Adapter, user manual, Type C to Type C cable

Lekuo M.2 to 10G SFP+ Adapter

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Lekuo is also developing an M.2 to 10G SFP+ adapter, extending the same general idea seen in its M.2 to 10GbE RJ45 products toward fibre based networking. In the transcript, this product is described as a refined version of an existing concept rather than a completely new direction, aimed at compact systems that only have an M.2 slot available for expansion. That makes it relevant for small servers, mini PCs, and embedded platforms where a full PCIe slot is not available but higher speed network connectivity is still required.

The main distinction here is the move from copper 10GbE to SFP+, which allows use of fibre modules or DAC cabling depending on deployment requirements. That gives the adapter a different role from the RJ45 version, particularly in longer distance links or environments already using SFP+ switching infrastructure. Based on your notes, this product is not yet available on the official product page, so the current information is limited to what was shown and discussed during the visit rather than a finalized retail specification sheet.

Specification Details
Product Name Lekuo M.2 to 10G SFP+ Adapter
Model Not provided in supplied materials
Host Interface M.2
Network Interface 1x 10G SFP+
Port Type SFP+
Intended Use Adds 10GbE fibre connectivity to systems with available M.2 slot
Deployment Focus Compact systems, mini PCs, small servers
Design Status Shown during visit / discussed in transcript
Official Product Page Status Not yet listed
Cooling Not specified in supplied materials
Controller Not specified in supplied materials
OS Support Not specified in supplied materials
Included Accessories Not specified in supplied materials

Lekuo USB4 to 2x PCIe Gen4 x1 Slots Box

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This unreleased Lekuo USB4 expansion box is designed to expose 2x PCIe slots from a single external USB4 connection, using the same basic enclosure approach shown on the company’s 8x 1GbE adapter. In the transcript, the unit is described as a small PCIe dock originally used internally for testing, with the USB4 connection bridging to 2 separate PCIe paths inside the enclosure. The concept is straightforward: rather than delivering fixed networking or storage, it provides a more flexible external PCIe breakout for users who want to install their own cards.

That flexibility is the main point of interest here. The transcript suggests use cases such as network cards, SATA cards, and other compact PCIe devices, with bus power available over USB4 and a barrel power input included for cards that need more power than the host connection can provide on its own. Since this product is not yet listed on the official product page, the available information is still limited and some details remain unconfirmed. The requested naming of this section as a PCIe Gen4 x1 slot box reflects the intended lane configuration you provided, but that specific wording was not fully documented in the supplied official specification text, so it should be treated as based on your product notes.

Specification Details
Product Name Lekuo USB4 to 2x PCIe Gen4 x1 Slots Box
Model Not provided in supplied materials
Host Interface USB4
Host Compatibility USB4 / Thunderbolt host systems
PCIe Expansion 2x PCIe slots
PCIe Lane Configuration 2x PCIe Gen4 x1 slots
Enclosure Basis Uses casing shown on Lekuo 8x 1GbE adapter
Power Source USB bus power supported
Supplemental Power Barrel power input present
Intended Use External PCIe expansion for add in cards
Example Use Cases NICs, SATA cards, other low power PCIe devices
Cooling Not specified in supplied materials
Official Product Page Status Not yet listed
Retail Status Development / internal test derived design

Lekuo USB4 to 4 HDD and 1x Gen4 M.2 Box

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Lekuo is also preparing a multi drive USB4 enclosure that combines 4 HDD bays with a single PCIe Gen4 M.2 NVMe slot in the same chassis. Based on the transcript, this is a DAS rather than a NAS, so it is intended to provide direct attached storage expansion over USB4 instead of functioning as a self contained network appliance. The inclusion of the M.2 slot adds a layer of flexibility beyond a standard 4 bay enclosure, allowing for SSD caching, a dedicated fast volume, or a separate high speed workspace alongside the hard drive array.

The product is described as relying on software RAID rather than including a hardware RAID controller, and the transcript also notes a dual port TB4 style design for daisy chaining. At the same time, the core concept is clear: this is an external storage enclosure aimed at users who want a mix of larger capacity HDD storage and faster NVMe storage within a single USB4 connected device. As with several of the other products shown during the visit, this unit does not yet appear on the official product page, so the available details should be treated as pre release rather than final retail specifications.

Specification Details
Product Name Lekuo USB4 to 4 HDD and 1x Gen4 M.2 Box
Model Not provided in supplied materials
Host Interface USB4
Drive Bays 4x HDD bays
SSD Slot 1x PCIe Gen4 M.2 NVMe slot
Product Type DAS
RAID Software RAID
Hardware RAID Controller No
Daisy Chain Support Dual port TB4 style connectivity mentioned in transcript
Intended Use Direct attached storage expansion with mixed HDD and NVMe storage
Official Product Page Status Not yet listed
Retail Status In development / shown during visit
Cooling Not specified in supplied materials
OS Support Not specified in supplied materials
Included Accessories Not specified in supplied materials

Lekuo USB Expansion PCIe Card

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Lekuo is also developing a PCIe expansion card that combines USB and storage connectivity on a single board, aimed at systems where slot space is limited and adding multiple separate controller cards is not practical. In the transcript, the card is shown with 2x USB Type C ports, 1x USB Type A port, 4x SATA ports, and an integrated 2.5GbE network connection. Rather than focusing on a single function, it is intended as a compact multi purpose expansion card for small form factor systems, embedded builds, or storage focused PCs that still need additional external connectivity.

The card is described as operating over a PCIe Gen4 x1 connection, giving it a total host side bandwidth of 20Gbps to allocate across its various controllers. That does not mean every port can run at maximum speed simultaneously, but it does make the board suitable for mixed duty use where SATA connectivity, modest USB expansion, and basic 2.5GbE networking need to be consolidated into one slot. Based on the material you provided, this product was shown during the visit rather than backed by a full standalone specification sheet, so some lower level details remain unspecified.

Specification Details
Product Name Lekuo USB Expansion PCIe Card
Model Not provided in supplied materials
Host Interface PCIe
PCIe Link PCIe Gen4 x1
Total Host Bandwidth 20Gbps
USB Ports 2x USB Type C, 1x USB Type A
Storage Ports 4x SATA
Network Port 1x 2.5GbE
Intended Use Multi function expansion for compact systems
Example Deployments Small servers, small form factor PCs, embedded systems
Additional Connectivity Extra output cable mentioned for further USB expansion depending on case layout
Official Product Page Status Not specified in supplied materials
Retail Status Shown in transcript / development status not fully confirmed
Cooling Not specified in supplied materials
OS Support Not specified in supplied materials
Included Accessories Additional output cable referenced in transcript

Lekuo USB4 to 10G SFP+ Adapter

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Lekuo is also expanding its external 10GbE range with a USB4 to 10G SFP+ adapter, offering an alternative to the more common RJ45 based 10GbE designs already associated with the brand. In the transcript, this model is presented as a silent SFP based version of the company’s existing copper 10GbE adapter, intended for users who want fibre or DAC connectivity instead of 10GBASE T. That makes it more relevant for rackmount environments, structured fibre deployments, and users already working with SFP+ switching infrastructure.

The product appears to share the same broader design language as the other newer USB4 network adapters shown during the visit, including a compact metal enclosure, ventilation at each end, and an external power option. The transcript also notes a physical power button on this family of devices, which is relatively uncommon on compact external network adapters. As this specific single port USB4 to 10G SFP+ model is not included in the supplied formal product specification sheets, the current information is based on what was shown and described in the video rather than a final retail listing.

Specification Details
Product Name Lekuo USB4 to 10G SFP+ Adapter
Model Not provided in supplied materials
Host Interface USB4
Host Compatibility USB4 / Thunderbolt host systems
Network Interface 1x 10G SFP+
Port Type SFP+
Cooling Passive / silent design, based on transcript
Chassis Metal enclosure with ventilation at each end
Power Input Barrel power input mentioned in transcript
Power Control Physical on/off button mentioned in transcript
Intended Use External 10GbE fibre or DAC connectivity over USB4
Official Product Page Status Not yet listed in supplied materials
Retail Status Shown during visit / pre release context

Who Are IOCREST/Lekuo?

IOCREST and Lekuo are effectively 2 market facing identities used by the same company. Based on the interview material, the business was founded in 2000 and has operated for more than 20 years in adapter, connectivity, and expansion hardware design. IOCREST appears more closely associated with the company’s long standing OEM and B2B activity, while Lekuo is the branding now being pushed more directly toward end users and consumer retail channels.

A key point from the interview is that the company states that most of its products are designed in house, including the internal engineering and development work behind its USB, USB4, M.2, and PCIe based solutions. It also describes its product planning as being driven by practical gaps in the market, particularly in compact systems where users need to add networking, storage, or expansion features that are not available on the base hardware. That helps explain why many of its products focus on niche but increasingly relevant use cases such as M.2 to 10GbE, USB4 to multi port networking, and external PCIe breakout designs.

The other defining part of the company’s position is that much of its historical business has been behind the scenes. In the interview, Lekuo states that before its more recent consumer push, most of its sales were B2B, with products often sold through partners, distributors, or other companies without prominent IOCREST or Lekuo branding on the product listing itself. The current shift appears to be less about changing what it makes and more about putting its own name in front of products that were previously sold in a more anonymous OEM style model.

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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 ☕

 

Gli.Net Comet 5G Review – The ‘ALL-IN’ KVM?

Par : Rob Andrews
23 février 2026 à 16:00

Gl.iNet Comet 5G Review – The ULTIMATE ALL-ACCESS KVM?

The GL.iNet Comet 5G is a remote KVM built to provide keyboard, video, and mouse control of a connected computer from power on through BIOS, rather than relying on a working operating system like traditional remote desktop tools. It accepts HDMI input from the host and offers HDMI passthrough so a local display can remain connected, with support up to 4K at 30 fps or 1080p at 60 fps, plus 2 way audio. Connectivity is where the Comet 5G differentiates itself most clearly in this product line: it can be managed over Gigabit Ethernet and Wi-Fi 6, but it also includes a nano SIM slot for 5G RedCap with 4G LTE fallback, intended for out of band access when the site network is down, segmented, or simply not trusted. It also supports a local AP mode that broadcasts its own wireless network for nearby management sessions without joining the surrounding LAN. In day to day use, the device is mainly aimed at remote maintenance tasks such as OS installs, recovery and imaging, BIOS changes, and support work on machines that lack built in management like iDRAC or iLO. Compared with the Comet Pro, it keeps the same general platform and interface approach, but adds the cellular path, the AP mode, a larger 3.69 in touchscreen, and 64 GB of eMMC storage for ISO and file staging. The key questions for a review are less about raw compute, since the core platform is similar to the Comet Pro, and more about whether the extra connectivity options, storage capacity, and on device usability justify its higher price for the way it will actually be deployed.

Gli.Net Comet 5G KVM Review – Quick Conclusion

The GL.iNet Comet 5G is essentially the Comet Pro style KVM experience with a stronger connectivity toolkit rather than a major jump in raw performance: you still get reliable BIOS level access, HDMI passthrough so a local screen can stay connected, and flexible access from a browser across different operating systems, but the main reason to choose it is the extra ways it can be reached when the local network is unavailable or not trusted. The nano SIM support (5G RedCap with 4G LTE fallback) gives an out of band route that can keep access available even when Ethernet or Wi-Fi are misconfigured, and the AP mode adds a direct nearby connection for quick point to point management without joining the site LAN, which can be genuinely useful in field work, segmented networks, or recovery situations. It also doubles the internal storage to 64 GB, which makes it easier to keep several ISO images and tools ready to mount remotely, and the larger 3.69 in touchscreen makes local setup and status checks less cramped. The trade offs are mostly about expectations: storage speeds remain modest, so uploading and copying large files is not fast; USB based storage expansion exists but is limited by USB 2.0, can require reboots, and drive compatibility is not always consistent; and while the device supports multiple paths and is marketed around failover, the current interface does not expose deep, router style controls for tuning how those paths behave. If you mostly run KVM over a stable wired or Wi-Fi network, the Comet Pro will usually cover the same core tasks for less money, but if you want a small KVM that gives you more options to regain access when networks are awkward or failing, the Comet 5G is the more complete tool as long as you accept the storage and configuration limitations.

SOFTWARE - 9/10
HARDWARE - 9/10
PERFORMANCE - 8/10
PRICE - 8/10
VALUE - 8/10


8.4
PROS
👍🏻Cellular out of band access via nano SIM (5G RedCap with 4G LTE fallback) adds a separate path when the site LAN is down or misconfigured
👍🏻Nearby Control via AP mode enables direct point to point access without joining the surrounding network, useful for local BIOS work and isolated environments
👍🏻HDMI passthrough plus capture keeps a local monitor active while still providing remote KVM access (up to 4K 30 fps, 1080p 60 fps)
👍🏻Browser based management and access works across Windows, macOS, and Linux without requiring a dedicated client
👍🏻64 GB eMMC provides more room for ISO images and utility files than the 32 GB model, reducing how often media needs to be rotated
👍🏻3.69 in touchscreen makes on device setup and status checks less cramped than smaller panel implementations
👍🏻Multiple remote access approaches are available (LAN, relay, and VPN style options like Tailscale and ZeroTier), allowing different trust and routing models
👍🏻Low complexity deployment with passive cooling and a small footprint makes it viable as a 24/7 appliance when powered independently
CONS
👎🏻Storage performance is modest, and remains closer to mid range eMMC speeds than fast removable storage
👎🏻External storage expansion has caveats, including USB 2.0 limits, possible reboots, and inconsistent compatibility depending on the USB drive and power draw
👎🏻Failover and cellular controls are not deeply tunable in the current UI, so users expecting router grade policy controls may find configuration limited

Buy the Gl.iNet KVM 5G from Amazon Below: Buy the Gl.iNet Comet KVM ($219) from the Official Store Below:

Gli.Net Comet 5G KVM Review – Design & Storage

The Comet 5G follows the same general design language as the Comet Pro, but it is physically larger and more deployment focused. It measures 128 × 93 × 33 mm and weighs 285 g, which makes it more of a bag sized tool than something that disappears behind a monitor without planning. The casing relies on passive ventilation rather than active cooling, and in normal use it is intended to be left running continuously, provided it is powered independently rather than from the host machine.

A practical difference in the Comet 5G design is the addition of external antennas to support its wireless roles.

This includes cellular and Wi-Fi antennas, and the unit is clearly built around the expectation that it may be used away from a stable wired network, whether that is via the SIM slot or via a direct nearby wireless connection. In a fixed desk setup the antennas can feel like overkill, but for temporary installs and field support they suit the intended use case.

On the front, the Comet 5G uses a 3.69 in touchscreen, which is notably larger than the Comet Pro’s 2.22 in panel. In practice, that extra size does not materially change the experience of mirroring the host display on the device itself, since you remain limited by the source resolution and scaling.

Where it does help is in the local management interface, where menus and status screens have more room and are less cramped, particularly during setup or when checking network state and service toggles directly on the unit.

Storage is expanded to 64 GB eMMC, and the main advantage is capacity rather than speed. In use, the internal storage is primarily for keeping ISO images, recovery media, and utility files that can be mounted remotely as virtual media or exposed to the host as a remote drive.

File transfers to and from the internal storage typically sit in the same general performance range as the Comet Pro, which means it is functional for staging installers and smaller toolsets, but slow for moving large data sets.

A newer software feature available across the platform also allows external storage via a USB drive, but it comes with constraints that affect how usable it is in practice. Adding a drive can require a reboot, compatibility varies between drives, and the management interface tends to treat partitions individually rather than offering straightforward full disk handling.

Because the port involved is USB 2.0, external storage is more about adding space for additional ISOs than achieving a meaningful improvement in transfer speeds.

Gli.Net Comet 5G KVM Review – Connectivity

The Comet 5G keeps its I/O layout simple, with the core KVM connections built around full sized HDMI input and HDMI output for passthrough. This avoids adapter reliance and makes it easier to drop into existing setups where monitors and capture paths already use standard HDMI cabling. In a permanent install, passthrough is the more important part of that arrangement, since it allows a local user to keep working on the attached screen while remote access remains available in the background.

For host control, the unit presents USB based keyboard and mouse emulation over its USB-C connection, while power is also supplied via USB-C at 5V/3A with PD compatibility.

In practical terms, powering it from an independent adapter is the safer approach, because drawing power from the host machine can remove KVM access when the host is powered off, rebooting, or in a state where USB power is unstable.

Wired networking is provided by a 1 GbE RJ45 port, which is the most consistent option for image quality and responsiveness when the site network is stable. Alongside this, the Comet 5G supports Wi-Fi 6 on both 2.4 GHz and 5 GHz, and it also includes an AP mode that allows a direct nearby wireless connection without joining the surrounding LAN.

That AP mode is best understood as a local management path rather than a general purpose hotspot, and it is primarily useful when you want a quick point to point session for BIOS work or initial configuration.

The main connectivity addition over the Comet Pro is the nano SIM slot for cellular access, supporting 5G RedCap with 4G LTE fallback. This is positioned as an out of band route that can keep the management channel available when Ethernet and Wi-Fi are unavailable or misconfigured, and it also reduces dependence on VLAN routing rules and other site side constraints.

In the current software experience, the cellular side is exposed through its own configuration section, but it does not offer the same depth of policy and failover tuning found on GL.iNet’s router products.

Gli.Net Comet 5G KVM Review – Internal Hardware

Internally, the Comet 5G is built around a quad core ARM Cortex-A53 SoC paired with 1 GB of DDR3L memory, which is broadly the same class of platform used by the Comet Pro. In review terms, this means the Comet 5G is not trying to win on raw compute, but on connectivity and deployment options, because the core processing headroom is similar. The A53 class CPU is adequate for running the management services, handling multiple control sessions, and keeping the on device UI responsive, but it is not aimed at heavier workloads outside the core KVM functions. The OS is Linux 6.1, and the device behaves like a small embedded appliance rather than a general purpose system you would extend with additional packages and services.

The video path is designed around HDMI ingest and H.264 hardware encoding, with the remote stream adapting to available bandwidth and quality settings in the client interface. Support is listed up to 4K at 30 fps and 1080p at 60 fps, with HDMI passthrough keeping a local monitor active while the unit captures the same signal for remote viewing.

Audio is supported in 2 directions, but the device itself is not treated as a standalone audio endpoint, so the practical experience depends on how the host exposes audio over HDMI or USB and how the client session is configured. Input is handled via USB based HID emulation, which is why copy and paste and keystroke injection can sometimes behave differently between applications depending on how they interpret simulated typing versus clipboard shortcuts.

The storage subsystem uses 64 GB eMMC soldered to the board, and in practice it is tuned for predictable, mid range throughput rather than high performance. Real world transfer rates observed during ISO uploads and mounted storage tests typically sit around the mid 20s to mid 30s MB/s range, which aligns with the Comet Pro experience and reflects the limits of the flash and controller rather than a network bottleneck.

That makes it usable for staging installers, recovery media, and driver packs, but not ideal for repeated large image transfers or heavy file shuttling. Expansion is possible via a USB drive using the USB 2.0 Type-A port, but that is primarily a capacity extension, because USB 2.0 limits both bandwidth and available bus power, and drive compatibility can vary depending on the enclosure controller and power draw.

Gli.Net Comet 5G KVM Review – Software, Services & Performance

The Comet 5G uses the same GLKVM software family as the earlier Comet devices, with access provided through a browser interface, a desktop client, and a mobile app. In testing, the browser UI is the most straightforward for configuration and for working across different operating systems, and it also exposes most of the device settings without needing to install anything locally.

Firmware maturity differed slightly between units during side by side use, with the Comet Pro running a stable 1.8 release build while the Comet 5G was still presented as beta, though the overall layout and feature set were close enough that the differences felt tied to hardware options rather than a separate software branch.

#

Account and session security options are built into the platform, including 2 factor authentication and passkey support at the account level, plus the ability to apply an additional password gate per device before entering a remote session. Remote access can be handled locally over LAN, through GL.iNet’s relay service, or through peer to peer options. Tailscale support is part of the platform, and newer software revisions have also introduced ZeroTier support, which addresses earlier feedback around relying on a single remote access option.

For users who prefer not to use relay services, these VPN style paths can provide remote reachability without opening ports or depending on the vendor’s cloud beyond account management.

Where the Comet 5G differs in day to day software behavior is how cellular and nearby access are exposed. Cellular configuration appears as a dedicated section for SIM based connectivity, while the Wi-Fi settings include an AP mode that allows direct nearby connections without joining the site WLAN. In practice, these features improve the chances of reaching the device when the surrounding network is misconfigured or inaccessible, but the management interface does not currently provide the same depth of routing, policy control, or visible failover logic that GL.iNet includes in its router products. Multi path behavior is present at a feature level, but there is limited opportunity to tune it beyond selecting the available connection modes.

Performance during remote control sessions depends mainly on the network path and the host workload rather than differences between the Comet 5G and Comet Pro hardware. Video quality controls and stream settings allow the session to be made more stable on weaker links, and the general desktop experience remains usable for BIOS work, OS installs, and troubleshooting.

A copy and paste stress test with a large block of text showed both devices could transfer long input sequences, but the Comet 5G produced fewer odd spacing issues in the final pasted document during that run. On mobile, both devices provide touch mode and cursor mode plus access to a software keyboard, and external Bluetooth keyboards and mice can be used, but fluidity and compression artifacts were more noticeable when the phone was on cellular data compared with a local Wi-Fi or wired path.

Gli.Net Comet 5G KVM Review – Verdict & Conclusion

The Comet 5G works as a continuation of the Comet Pro platform rather than a clean break. The remote session experience, general interface layout, and core feature set remain familiar, because the underlying compute and encoding approach is broadly the same, and both devices are aimed at the same type of work: BIOS access, OS installs, recovery tasks, and remote troubleshooting where standard remote desktop tools are not enough. The areas that do change the day to day ownership experience are mostly around how you can reach the device when things go wrong. The SIM based 5G RedCap and 4G LTE fallback adds a separate management path, and the AP mode provides a direct nearby connection that avoids relying on the site LAN. The larger 3.69 in screen also makes the on device menus easier to use, even if it does not transform the usefulness of live video mirroring on the panel itself.

On the positive side, the Comet 5G is more adaptable in awkward environments, such as networks with strict VLAN boundaries, unreliable Wi-Fi, or unknown cabling, and it gives you more ways to regain access without a site visit. The 64 GB eMMC storage is also easier to live with if you keep multiple ISO images or toolkits available, although transfer speed remains limited and does not materially improve over the 32 GB model. On the less positive side, the cellular and multi path story is currently presented more as a capability than as a deeply configurable system, so users expecting router style failover policies and detailed controls may find the options relatively basic. The external storage expansion feature helps with capacity, but it is constrained by USB 2.0, requires reboots in some situations, and drive compatibility can be inconsistent, which limits how predictable it is as a long term workflow.

Overall, the Comet 5G is easier to justify when you expect to use the cellular connection or the nearby AP mode regularly, because those are the main reasons it exists and the main differences you will notice. If the device will live on a stable wired network most of the time and you only need a straightforward remote KVM for routine maintenance, the Comet Pro will usually cover the same core tasks for less money. If your priority is having multiple ways to reach the box when the local network is down or not trusted, the Comet 5G is the more complete tool, but its value depends on those deployment realities rather than any large jump in raw performance.

Buy the Gl.iNet KVM 5G from Amazon Below: Buy the Gl.iNet Comet KVM ($219) from the Official Store Below:

Gl.iNet Comet 5G KVM Pros Gl.iNet Comet 5G KVM CONs
  • Cellular out of band access via nano SIM (5G RedCap with 4G LTE fallback) adds a separate path when the site LAN is down or misconfigured

  • Nearby Control via AP mode enables direct point to point access without joining the surrounding network, useful for local BIOS work and isolated environments

  • HDMI passthrough plus capture keeps a local monitor active while still providing remote KVM access (up to 4K 30 fps, 1080p 60 fps)

  • Browser based management and access works across Windows, macOS, and Linux without requiring a dedicated client

  • 64 GB eMMC provides more room for ISO images and utility files than the 32 GB model, reducing how often media needs to be rotated

  • 3.69 in touchscreen makes on device setup and status checks less cramped than smaller panel implementations

  • Multiple remote access approaches are available (LAN, relay, and VPN style options like Tailscale and ZeroTier), allowing different trust and routing models

  • Low complexity deployment with passive cooling and a small footprint makes it viable as a 24/7 appliance when powered independently

  • Storage performance is modest, and remains closer to mid range eMMC speeds than fast removable storage

  • External storage expansion has caveats, including USB 2.0 limits, possible reboots, and inconsistent compatibility depending on the USB drive and power draw

  • Failover and cellular controls are not deeply tunable in the current UI, so users expecting router grade policy controls may find configuration limited

 

 

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Beelink ME Pro NAS Review – BIG Thing in a Small Package?

Par : Rob Andrews
26 janvier 2026 à 18:00

Beelink ME Pro NAS Review

The Beelink ME Pro is a 2-bay NAS-style mini PC that aims to deliver a full home or small office storage setup in a much smaller chassis than most traditional 2-bay systems. It is sold in 2 main versions, based on the Intel N95 or Intel N150, and both ship with pre-attached LPDDR5 memory and a bundled NVMe SSD as the system drive. Storage expansion is a mix of 2 SATA bays for 2.5-inch or 3.5-inch drives, plus 3 internal M.2 NVMe slots (1 running at PCIe 3.0 x2 and 2 running at PCIe 3.0 x1), and networking includes 5GbE plus 2.5GbE alongside WiFi 6 and Bluetooth 5.4. This review is based on several weeks of use and a set of structured tests covering temperatures over extended uptime, noise in idle and active states, power draw across different drive and workload combinations, and storage and network performance over both HDD and NVMe, with additional notes on the system’s internal layout and the practical limitations that come from its compact design.

Beelink ME Pro NAS Review – Quick Conclusion

The Beelink ME Pro is a very compact 2-bay NAS-style mini PC that combines 2 SATA bays with 3 M.2 NVMe slots and multi-gig connectivity, aiming to deliver a small footprint system without dropping features that are often reserved for larger enclosures. It is sold in N95 and N150 versions, both with pre-attached LPDDR5 memory (12GB or 16GB) and a bundled system SSD, and its internal layout uses 1 PCIe 3.0 x2 NVMe slot plus 2 PCIe 3.0 x1 slots, with 5GbE plus 2.5GbE Ethernet, WiFi 6, USB-C 10Gbps (with video output), HDMI 4K60, and a barrel-powered 120W PSU. In testing over extended uptime, external chassis temperatures stayed broadly in the mid-30C range with the rear around 38C, HDDs sat around 34C to 36C with modest 4TB drives installed, and NVMe temperatures rose sharply if the base thermal panel was removed, indicating the thermal pads and chassis contact are part of the cooling design and leaving no practical clearance for NVMe heatsinks. Noise in the tested setup remained in the mid-30 dBA range both at idle and under mixed access, power draw ranged from around 15W to 16W with no drives installed, 18W to 19W with only NVMe, about 22W to 23W with HDDs and NVMe idle, and peaked around 41W to 42W under a combined heavy workload. Performance was consistent with the hardware layout: HDD RAID1 throughput landed around 250MB/s to 267MB/s and will not saturate 5GbE, while NVMe could saturate the 5GbE link and internal testing showed about 1.5GB/s to 1.6GB/s reads and 1.1GB/s to 1.2GB/s writes on the PCIe 3.0 x2 slot, with the PCIe 3.0 x1 slots closer to roughly 830MB/s reads and 640MB/s to 670MB/s writes; media server use handled 4 simultaneous high bitrate 4K playback streams with CPU usage in the teens using Jellyfin. The main drawbacks are tied to the compact design choices: the RAM is not upgradeable, the chassis and storage fitting are very tight during installation, fan control outside BIOS was not straightforward in early testing, the NVMe slots are mixed speed by design, and the CPU options are closely spaced, meaning the upgrade decision is often about the bundled memory and SSD tier as much as the processor. Official messaging also says hot swapping is not supported, yet it worked during testing in a RAID1 scenario, suggesting a support-position limitation rather than a strict hardware block.

DESIGN - 9/10
HARDWARE - 8/10
PERFORMANCE - 8/10
PRICE - 8/10
VALUE - 8/10


8.2
PROS
👍🏻Very compact footprint for a 2-bay NAS class system (166 x 121 x 112mm, metal chassis)
👍🏻2x SATA bays (2.5-inch or 3.5-inch) plus 3x M.2 NVMe slots in the same enclosure
👍🏻Multi-gig wired networking: 5GbE + 2.5GbE, plus WiFi 6 and Bluetooth 5.4
👍🏻Strong idle efficiency in testing with drives installed and idle (about 22W to 23W)
👍🏻Noise stayed in the mid-30 dBA range in the tested HDD and NVMe configuration
👍🏻NVMe performance is sufficient to saturate the 5GbE link, with the PCIe 3.0 x2 slot clearly faster than the x1 slots
👍🏻Chassis thermal design appears effective under typical always-on use, with external temps broadly in the mid-30C range
👍🏻Practical service access features: magnetic rear cover, base access for M.2, stored tool in the base, reset and CLR CMOS available
CONS
👎🏻RAM is fixed (no SO-DIMM), so memory cannot be upgraded after purchase
👎🏻Very tight internal tolerances make drive and bracket insertion less forgiving during installation and changes
👎🏻Mixed NVMe slot speeds (1x PCIe 3.0 x2 and 2x PCIe 3.0 x1) and no 10GbE option

Where to Buy the Beelink ME Pro NAS:
  • Beelink ME Pro (N95 + 12GB + 128GB) $369 – HERE
  • Beelink ME Pro (N150 + 16GB + 512GB) $529 – HERE
  • Beelink ME Pro (N150 + 16GB + 1TB) $559 – HERE

Beelink ME Pro NAS Review – Design & Storage

The ME Pro is built around an all-metal unibody chassis that prioritizes footprint over easy internal spacing. In physical terms it sits noticeably smaller than many mainstream 2-bay enclosures, and in my comparisons it looked roughly 20% to 25% smaller next to typical 2-bay units from brands like Synology and TerraMaster. The front panel styling leans into a speaker-like look, and it has been compared to a Marshall speaker design, which is likely intentional given the mesh and badge layout. Functionally, that front area is not a speaker, and the design choice is mostly about appearance and airflow rather than adding any front-facing audio hardware.

From a storage perspective, the ME Pro is a hybrid layout rather than a traditional “2-bay only” NAS. It supports 2 SATA bays for 2.5-inch or 3.5-inch drives, and Beelink positions it as supporting up to 30TB per SATA bay, giving a stated 60TB HDD ceiling. Alongside that, it has 3 internal M.2 NVMe slots with a stated 4TB per slot limit, which Beelink frames as up to 12TB of SSD capacity. Taken together, that is the basis for the commonly quoted 72TB maximum figure, although most buyers will treat that as an upper boundary rather than a typical real-world configuration due to drive cost and heat considerations.

The SATA bays are accessed from the rear by removing a magnetic cooling mesh cover, then sliding out the drive bracket assembly. The trays are screw-mounted rather than tool-less, and the manual specifies different screw types depending on whether you are installing 2.5-inch or 3.5-inch drives. In practice, it is possible to physically place a drive in a tray without fully fastening it, but the design clearly expects proper screw mounting for stability and vibration control. The device also includes silicone plugs intended to reduce vibration and protect the drives, and the overall bay system is designed to sit very flush once reassembled.

One unusual design detail is that each HDD tray includes a thermal pad intended to draw heat away from the drive’s underside. That is not common on many 2-bay systems, and it suggests Beelink is trying to compensate for the compact enclosure by using direct contact points for heat transfer. The tradeoff is that this design pushes the product toward precision fitting, and it aligns with the wider theme of the ME Pro being tightly engineered rather than roomy.

If you typically choose NAS hardware where drive swaps are quick and frequent, this approach will feel more like a compact appliance that expects occasional changes, not a platform designed around constant drive rotation.

The compact chassis also affects how storage installation feels in the hands. Because clearances are tight, inserting the drive bracket and getting everything seated can feel less smooth than on larger 2-bay boxes, even though it looks clean once it is in place. This tightness is likely part of how Beelink is managing airflow paths and vibration control in such a small enclosure, but it still means you have less margin for error during installation. Overall, the storage design is best described as space-efficient and deliberate, but it asks for patience during assembly and it rewards users who install drives once and leave the configuration largely unchanged.

Beelink ME Pro NAS Review – Internal Hardware

The ME Pro is sold in 2 CPU variants, based on Intel’s N95 or N150, both 4-core and 4-thread chips with integrated graphics. In practical NAS terms, these CPUs sit in the low power mini PC category rather than the heavier desktop class, so the platform is designed around efficiency and compact integration rather than raw compute headroom. In your testing and general use, that design target showed up as stable day-to-day responsiveness for typical NAS tasks, plus enough iGPU capability for common media server workloads when paired with the right software stack.

Memory is integrated rather than socketed. The configurations pair the N95 with 12GB LPDDR5 4800MHz and the N150 with 16GB LPDDR5 4800MHz, and there is no user-accessible SO-DIMM slot to expand it later. In the context of a small NAS, this matters less for basic file serving and backups, but it becomes more relevant if the device is expected to run multiple containers, heavier indexing, or virtual machines. Because the memory is fixed at purchase, the CPU choice is also effectively tied to your long-term memory ceiling.

Internally, the platform is constrained by limited PCIe resources, which affects how the storage and networking are wired. In the review you noted the CPU platform has 9 lanes available, and the device uses a split approach across its internal components rather than giving every subsystem the same bandwidth. The NVMe area reflects this most clearly, with 1 slot operating at PCIe 3.0 x2 while the other slots operate at PCIe 3.0 x1, which makes slot choice part of performance planning for any workload that leans heavily on NVMe. This lane budgeting also helps explain why the system lands at 5GbE plus 2.5GbE rather than a single 10GbE port, since 10GbE would typically add pressure to an already tight allocation.

Controller choices are mixed rather than uniform, and you called that out as unusual. The 5GbE port uses a Realtek RTL8126 controller and the 2.5GbE port uses an Intel i226-V controller, which is not a common pairing in the same chassis. On the storage side, the SATA side is handled by an ASMedia ASM2116 controller, and in your notes you referenced it operating on a PCIe 3.0 x1 link, which is still sufficient for 2 SATA bays in most real-world use. These choices are relevant for OS compatibility and driver maturity, particularly if the unit is being used with NAS focused platforms rather than the included Windows 11 installation.

Cooling is one of the main internal design decisions that enables the smaller enclosure. Instead of a traditional rear fan placed at the drive backplane, the system uses a CPU fan working with a vapor chamber arrangement, and airflow is routed so that it also passes over other internal heat sources rather than treating the CPU as a separate cooling zone. In your thermal testing, you observed that the front panel area ran warmer than the rest of the chassis due to the WiFi hardware placement, and you also saw a noticeable rise in NVMe temperatures when the base thermal panel was removed, which supports the idea that the chassis panels and pads are intended to be part of the heat management system. Power is delivered via a barrel connector using a 120W external PSU, which provides headroom for spin-up and load, but it also means this is not a USB-C powered design.

Beelink ME Pro NAS Review – Ports and Connections

Up front, the ME Pro keeps things simple: a power button and a single front-mounted USB port for quick access. This suits the NAS-first intent, where most interaction is remote, but it also sets expectations for local use. If you plan to attach multiple peripherals directly to the unit, you are quickly pushed toward using a hub or relying on network-based management rather than treating it like a conventional mini PC with generous front I/O.

Most connectivity is placed at the rear and along the base section of the chassis, which also helps keep cables routed in one direction when the unit is placed on a desk or shelf. Wired networking is split across 2 Ethernet ports, a 5GbE port and a 2.5GbE port, and the unit also includes WiFi 6 plus Bluetooth 5.4. That mix allows both a standard single-cable setup and more flexible layouts such as separating traffic across the 2 wired links, or keeping WiFi available for temporary placement, troubleshooting, or scenarios where pulling Ethernet is not straightforward.

For general external connectivity, the ME Pro includes a USB-C port rated at 10Gbps for data and it supports video output, but it is not used for power input. Power is delivered through a barrel connector and the unit ships with a 120W external PSU, which provides comfortable headroom and removes any questions around USB-C PD negotiation. Alongside USB-C, it includes 1 USB 3.2 port rated at 10Gbps and 2 USB 2.0 ports at 480Mbps, which covers basic keyboard, mouse, UPS signalling, or low bandwidth accessories, but it is still a small selection compared with many mini PCs.

For local display and basic audio, there is 1 HDMI output rated up to 4K 60Hz and a 3.5mm audio jack. The manual also calls out a reset hole and a CLR CMOS function, which is useful context for users who intend to experiment with different operating systems, boot media, or BIOS settings, since recovery options are clearly exposed rather than being hidden inside the chassis. Overall, the port selection feels intentionally weighted toward networking and core connectivity, with enough display and USB support for setup and troubleshooting, but not a layout aimed at heavy local peripheral use.

Beelink ME Pro NAS Review – Noise, Heat, Power and Speed Tests

Testing was done over several weeks of general use and targeted measurements, with a focus on temperatures, noise, power draw, and storage and network throughput. The typical configuration used for the core measurements included 2 SATA HDDs and 3 installed NVMe drives, with the system left running for extended periods and accessed regularly throughout the day. In addition to network file transfers, I also checked internal storage performance directly over SSH to separate storage limits from network limits.

On thermals, external chassis temperatures after a 24-hour period of operation with regular hourly access sat around 34C to 35C across most sides. The base area was a little warmer at roughly 34C to 38C, and the rear section around the motherboard and vapor chamber area was around 38C. The installed HDDs sat around 34C to 36C in that same period, using 4TB IronWolf drives, so not high power enterprise class media. The front panel area peaked higher than the rest of the enclosure, which aligned with the internal placement of the WiFi hardware near the front of the chassis.

The NVMe area showed the clearest example of how much the chassis panels and pads matter. With the base thermal panel in place, the panel itself sat around 36C over the same extended uptime. When that panel was removed, temperatures on the NVMe drives rose noticeably, with the PCIe 3.0 x2 slot drive reaching around 45C to 46C and the PCIe 3.0 x1 slot drives sitting around 38C to 41C. The difference suggested that the base panel and thermal pad contact are doing meaningful work as part of the heat path, and it also reinforces that there is no practical clearance for NVMe heatsinks in this chassis.

Noise levels were measured in a modest drive configuration, and they stayed in the mid-30 dBA range in the test environment. With the HDDs idle and the system otherwise sitting in standby, noise came in around 36 dBA to 37 dBA. With both HDDs being accessed simultaneously and NVMe activity occurring, it sat around 35 dBA to 38 dBA. The system uses a compact fan approach tied to the CPU cooling path, and one limitation I ran into is that I did not find a straightforward way to control the fan outside the BIOS during early testing, including attempts via SSH, which reduces fine tuning options for users who want tighter acoustics control.

Power consumption was tested in several stages to isolate the impact of installed storage. With no HDDs or NVMe installed and the system powered on, it drew around 15W to 16W. With 3 NVMe installed and no HDDs, it rose to around 18W to 19W. With 2 HDDs and 3 NVMe installed but all media idle, it sat around 22W to 23W.

Under a heavy combined workload with HDD and NVMe activity plus the CPU at full utilization, power draw reached around 41W to 42W, which reflects a worst case state rather than typical idle or light service operation.

For throughput, 2 HDDs in a RAID1 style setup were able to deliver around 250 MB/s to 267 MB/s, which is consistent with what you would expect from 2-bay HDD performance and means the HDD side will not saturate a 5GbE link.

NVMe storage over the 5GbE connection was able to reach full saturation of the network link in testing, so the network became the limiting factor rather than the SSD. Internal NVMe testing over SSH showed the expected split between slots, with the PCIe 3.0 x2 slot delivering roughly 1.5 GB/s to 1.6 GB/s reads and 1.1 GB/s to 1.2 GB/s writes, while the PCIe 3.0 x1 slots delivered around 830 MB/s to 835 MB/s reads and roughly 640 MB/s to 670 MB/s writes with more variability.

On media server use, 4 simultaneous high bitrate 4K playback streams ran with CPU usage in the teens, using Jellyfin. One extra operational note from testing is that while official messaging indicates hot swapping is not supported, I was able to remove and replace a drive in a RAID1 environment without powering down and continue the rebuild process, which suggests the limitation may be a support stance rather than an absolute hardware block.

Beelink ME Pro NAS Review – Conclusion & Verdict

The ME Pro’s main practical strengths are the space-efficient chassis, the combination of 2 SATA bays with 3 internal NVMe slots, and a connectivity set that includes 5GbE plus 2.5GbE and WiFi 6. In measured testing it delivered controlled external temperatures under typical always-on use, mid-30 dBA noise levels in the tested configuration, and power draw that stayed in the low-20W range at idle with drives installed, rising into the low-40W range under a full combined workload. Storage performance matched the internal design limits: HDD throughput was solid but not enough to saturate 5GbE, while NVMe performance split clearly between the PCIe 3.0 x2 slot and the PCIe 3.0 x1 slots, with the faster NVMe slot capable of saturating the 5GbE link in network transfers.

The main limitations are tied to the same compact, integrated approach that makes it unusual. Memory is fixed at purchase with no SO-DIMM upgrade path, NVMe cooling relies on chassis contact and leaves no clearance for heatsinks, and the lane allocation results in mixed NVMe slot speeds rather than uniform bandwidth across all 3 slots. The launch CPU options also remain close enough that the decision is often as much about bundled memory and SSD tier as it is about a clear performance tier shift. For buyers who want a small, always-on NAS with mixed SATA and NVMe storage, multi-gig networking, and reasonable thermals, noise, and power characteristics, the ME Pro aligns with that goal, but it is less suitable for users who expect frequent hardware changes, want expandability in RAM, or prefer a more conventional 10GbE-first network design.

PROs of the Beelink ME Pro NAS CONs of the Beelink ME Pro NAS
  • Very compact footprint for a 2-bay NAS class system (166 x 121 x 112mm, metal chassis)

  • 2x SATA bays (2.5-inch or 3.5-inch) plus 3x M.2 NVMe slots in the same enclosure

  • Multi-gig wired networking: 5GbE + 2.5GbE, plus WiFi 6 and Bluetooth 5.4

  • Strong idle efficiency in testing with drives installed and idle (about 22W to 23W)

  • Noise stayed in the mid-30 dBA range in the tested HDD and NVMe configuration

  • NVMe performance is sufficient to saturate the 5GbE link, with the PCIe 3.0 x2 slot clearly faster than the x1 slots

  • Chassis thermal design appears effective under typical always-on use, with external temps broadly in the mid-30C range

  • Practical service access features: magnetic rear cover, base access for M.2, stored tool in the base, reset and CLR CMOS available

  • RAM is fixed (no SO-DIMM), so memory cannot be upgraded after purchase

  • Very tight internal tolerances make drive and bracket insertion less forgiving during installation and changes

  • Mixed NVMe slot speeds (1x PCIe 3.0 x2 and 2x PCIe 3.0 x1) and no 10GbE option

 

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