Initial Experience: Packaging, First Boot, Build Quality
Unboxing the computer was quick and easy, the box comes with a seal that shows that it wasn’t tampered or stolen in transit. The box is high quality and has individually boxed accessories fit into compartments inside (everything is well protected).
The first boot up of the computer went without issue, simply plugging in the included 100W PD USB-C charger, using the included cable, waiting just a few seconds for the memory to train, it boots into windows for the usual Windows 11 out of box experience.
Giving the laptop the WIFI password, or connecting to Ethernet via the included dock, it will take about an hour to download and install updates (though you can skip that step and do it later if you’re in a hurry, and this is just an estimate and will depend on your Internet connection).
The casing of the M16 is high quality, a nice matte silver finish, and the fasteners are all exposed, none hidden unlike many other brands. This makes it simple for someone with the appropriate torx screwdriver to open the shell and access the SSD, which is a Kingston 512GB. It can be upgraded to a reported 4TB max.
The Hardware (Meteor Lake based system in a 16-inch Shell)
Speakers: 2x, system comes equipped with DTS:X Ultra;
Hinge: 180-degree;
Weight: 1.73kg (3.8 lbs);
Dimensions: 355.2 mm x 250 mm x 16.7 mm (14.0" L × 9.8" W × 0.66" H );
Power Adaptor: 100W, USB-C.
HWinfoUSB-C and HDMIUSB-A and multipurpose 3.5mm audio jack
Internal Component Analysis
Cooling Matrix: The acoustic profile of this cooler is very quiet compared to single fan coolers that I’ve seen, with a very quick ability to correct for sudden loads. At maximum speed, it sounds like a high pitched whine much like a twin turbo kicking in while you’re sitting in the driver’s seat: you can hear it but it’s neither loud nor does it last very long.
Memory Architecture: The 16 GB of Micron DDR5 running at 7500 MT/s in quad-channel configuration is soldered and cannot be upgraded.
Processor Package: The Intel Core Ultra 9 185H (Meteor Lake) processor integrated with Intel Arc Graphics. Designed to support a 55W TDP, the system utilizes proprietary Dynamic Tuning Technology (DTT) to manage power delivery intelligently. During rigorous testing, the CPU demonstrated a peak package power draw of 53.8W under heavy burn-in loads, while the integrated Arc graphics independently scaled to 19.6W during graphics intensive tasks such as Furmark.
Performance under stress
During my stress-testing with the Geekom M16, the system demonstrated truly exceptional thermal management and power scaling. I pushed the laptop through a continuous barrage of demanding workloads, ranging from a heavy CPU burn-in that commanded a peak package power of nearly 54W, to a suite of AI and OpenVINO benchmarks targeting the CPU, GPU, and NPU, and finishing with a grueling Furmark run. Through it all, the M16 stayed remarkably cool under pressure. The highest temperature recorded during the stress-test was a highly manageable 85°C during the intensive AI CPU benchmark. When the testing pivoted to graphics-heavy tasks like Furmark, the integrated graphics stretched their legs up to 19.6W of dedicated power while staying perfectly chilled at a maximum of just 72°C. Most impressively, despite throwing everything from sustained multi-core loads to varied AI inferencing tasks at it back-to-back, the laptop experienced just one instance of thermal throttling. It flawlessly and dynamically shifted power to where it was needed most, proving it can sustain peak performance profiles reliably.
Key Data Points From the Logfile:
Thermal Throttling: One instance during a test designed to max out the CPU, once the fans ramped up throttling stopped.
CPU Performance: Peaked at 53.8W power draw during the initial burn-in and hit its maximum temperature of 85°C during the AI CPU benchmark.
GPU Performance: Correctly ramped up during the Furmark test, pulling up to 19.6W independently and reaching a safe peak of 72°C.
Intelligent Patterns: The log shows clear, segmented power delivery. During GPU-bound tests (like Furmark or the AI GPU benchmark), CPU power draw gracefully stepped down to give the integrated graphics maximum thermal headroom, keeping overall system temperatures exceptionally stable for a laptop chassis.
Battery Life Testing
Taking this laptop out to the back porch for an outdoor gaming session truly showcased its outstanding thermal and power management. Even while running in 'Performance Mode' and playing Mewgenics in an environment with an ambient temperature of 75°F, the system remained astonishingly cool. Over an impressive uninterrupted gaming stretch of 2 hours and 42 minutes, the CPU temperatures maxed out at a mere 61°C and comfortably hovered around an average of just 50°C. During this heavy load, the battery smoothly discharged from 95% down to 20%, projecting well over 3.5 hours of unplugged gaming stamina, which is a remarkable feat for any modern laptop. Once the battery hit that 20% mark, I closed the game and transitioned to office tasks mainly using Google Chrome. The system instantly demonstrated its dynamic efficiency, drastically cutting the CPU package power from a 17.1W gaming average down to just 6.9W. It only sipped 4% of the battery over nearly 20 minutes of active web use, while the CPU temperatures dropped to a 43°C average. Whether it's pushing pixels on the porch or quietly powering through spreadsheets, this laptop perfectly balances sustained performance with superb battery life.
Office Phase (Web Browsing): Duration: 18.2 minutes of active use.
Battery Drain: 4% drop (20% to 16%). This projects to roughly 7.5 hours of total battery life for office tasks.
CPU Temps: 51.0°C Max / 43.8°C Average.
CPU Package Power: ~6.9W Average.
The next day (after allowing the battery to fully recharge), I unplugged and began a session of browsing, streaming and office application use with the power profile set to “balanced” and using Microsoft’s PowerToys to stop the computer from sleeping or turning off the screen while I had to leave the room for a moment (you’ll see why that was needed momentarily).
The following is an analysis of the log file taken during that productivity session:
A. Run Time and Battery Projection
Total Log Run Time: 9 hours, 48 minutes, and 51 seconds. (This is why PowerToys was needed)
Battery Drain: The battery started at 100% capacity (99.9 Wh) and ended at 25% capacity (25.482 Wh), resulting in a total drain of 75% during the session.
Projected Runtime to Empty: Based on the continuous 75% drain over roughly 9.8 hours, the projected total battery life from 100% to 0% under this specific productivity workload is ~13.1 hours (13 hours and 5 minutes).
B. Throttling Instances
During the run, the system experienced several instances of thermal and power throttling. This usually happens in short bursts when opening applications or loading heavy web pages, which is common behavior for modern thin-and-light processors managing burst performance.
Thermal Throttling Events:
Core Thermal Throttling (avg): 962 instances
Package/Ring Thermal Throttling: 958 instances
IA: Thermal Event: 971 instances
Note: P-Core 9 ran the hottest, triggering thermal limits 728 times on its own, followed by P-Core 8 (473 times).
Power Throttling Events:
Package/Ring Power Limit Exceeded: 154 instances
Core Power Limit Exceeded (avg): 29 instances
Note: The individual E-Cores and P-Cores hit their individual power limits about 26–27 times each.
GPU Throttling:
GPU Throttle Reasons (avg): 5,927 instances. (With integrated Intel Arc Graphics, the GPU frequently hits software/hardware power limits to leave thermal headroom for the CPU during general productivity).
5. Verdict: Specialized Performance and Endurance
The M16 presents an intentional, high-value design. By focusing its engineering on what truly matters to power users, it carves out a highly specific, powerful niche for professionals who value structural substance, sustained processing muscle, and true all-day endurance over flashy RGB looks.
When evaluating what this laptop offers at its current sale price, it stands out remarkably against the broader landscape of its peers:
Unmatched Mobile Endurance: Against standard ultraportables or highly restrictive base-model premium platforms that bottleneck you with meager RAM and storage, the M16 provides generous local hardware resources paired with an absolute monster of a 99.9Wh battery. For anyone working on long-haul travel or away from an outlet, this legal-limit battery size offers immense run time.
Workstation Muscle Over Budget Alternatives: While entry-level gaming laptops in this price range often sacrifice build quality for graphical flair, resulting in flimsy plastic frames and abysmal battery life, the M16 channels its budget into premium aerospace-grade aluminum. Under the hood, a robust dual-fan thermal cooling system is explicitly engineered to let its high-end processor sustain heavy workloads without severe performance drops, ensuring snappy, reliable responsiveness during intense productivity tasks.
Universal Compatibility and Power: Unlike the newer ARM-based platforms at this price tier (which frequently suffer from software compatibility headaches and emulation layers) the M16 delivers uncompromised x86 architecture. It runs heavy data-crunching, code compilation, and development environments natively and effortlessly.
To wrap this up, the M16 strips away unnecessary RGB fluff to invest heavily where it counts. If you are a programmer, data analyst, or remote professional who needs uncompromised, sustained processing power, maximum physical battery capacity, and a premium chassis that can handle the rigors of daily travel, this machine delivers exactly what matters. At $799, it stands as an incredibly robust, specialized workhorse that offers exceptional value.
The A7 Max is a complete powerhouse in a small package.
First, let’s talk unboxing. The box itself is a little bit nondescript, white with a picture of the top of the device on the lid and the words “GEEKOM A series” on the front and back, and a sticker that says “Max” on the front. On the bottom, standard legal information and the internal specs (CPU, RAM amount, etc). Inside the box you get the power adapter (standard wall plug to barrel jack with transformer between them), an HDMI cable, information cards, the A7 Max itself, and a VESA mount, which is great. The A7 Max is designed to be able to mount to the back of VESA-compatible monitors, which is very cool.
Coming around to the A7 Max itself, along the front you get 4 USB 3.2 Gen 2 ports. The leftmost port supports S5 sleep state power, so it’s always on. Meaning you can receive power from that port even when the system is off. To make it easier to identify, an icon of a battery surrounding the icon for USB SuperSpeed. Next to the USB ports, there is a 3.5 mm (1/8th inch) headphone/microphone combo jack. On the right of the device’s front, there is a power button that is very nice to press. I enjoy clicking it, it provides a nice sound. When the device is on, the power button glows white, and when it’s in standby (sleep) mode, it blinks white. One odd thing, while blinking, the light is on more than it is off, so it’s harder to tell whether it’s on or in sleep mode at a glance. Very minor detail, though.
Along the device’s left side, you have a UHS-II SD card slot, with a max theoretical speed of 312 MB/s and a real world speed of ~200 MB/s. Of course, speeds all depend on the card itself, but it’s nice to know that the slot isn’t a bottleneck. You also have lots of ventilation.
On the right side, there’s a standard Kensington lock and more ventilation.
Along the back, you have 2 HDMI 2.0 ports, 1 USB 4.0 Type-C that supports Power Delivery out and PD in. PD in is used to power the device through the USB C port (yes, really!). You need a pretty beefy adapter, though, capable of delivering up to (and, for best results, over) 120 watts. Using a standard 65 watt laptop charger will not work due to the CPU alone being able to pull 65 watts during bursts. The other USB 4.0 Type-C port also supports PD out, but not PD in. Of course, the barrel jack. And a really special part of this system, the dual 2.5 Gbe ports! There are lots of uses for these ports. Connecting to a NAS on one port, and then connecting to the rest of the LAN on the other port, so heavy network transfers don’t bog everyone else’s connection to the LAN (and internet). It could be used as a firewall, or a router. Many uses indeed.
The system supports up to 4x 4K @ 60 Hz displays, or one 8K display, which is impressive.
The cooling here is very nice. I ran benchmark collection 10 of the Phoronix Test Suite benchmarking software, which focuses on the CPU. The CPU topped out at 90.5°C. You can view the results here https://openbenchmarking.org/result/2602262-NE-BENCHMARK23. IceBlast 2.0 is very impressive. I cannot wait for IceBlast 3.0!
The CPU inside is a Ryzen 9 7940HS with 8 cores and 16 threads and a base clock of 4 GHz with a boost of 5.2. It has comparable performance to the Intel Core Ultra 9 185H in the Geekbook X14. The Radeon 780M inside is sufficient for most tasks. I edited a video at 1792x1080 (odd resolution, I know) @ 60 FPS and it was good. It took about 10 minutes to render inside of Kdenlive, so approximately a render to realtime ratio of 1:1. The 16 GB of RAM wasn’t much of a bottleneck for some tasks, but for very heavy applications like compiling Android, it was just barely enough. For fan noise, it was tolerable. The pitch wasn’t rumbly and low, but it wasn’t like a fly buzzing in your ear. It had a similar pitch to [this](https://youtu.be/FVFF0ECGWrM?t=19) video.
Wireless technologies include Wi-Fi 6E and Bluetooth 5.2. The Wi-Fi performs well, being able to saturate my 600 Mbps download speed whilst passing through about 5 drywall walls (tested with Speedtest.net).
RAM. The A7 Max comes with 16 GB of DDR5 running at 5600 MT/s. It’s SODIMM, and not soldered! It can be upgraded to 64 GB, but good luck doing that during the RAM shortage.
The OS is Windows 11 Pro, with very little bloatware. It only has the standard Windows stuff, and the Geekom PC Manager. One great thing that Geekom did is, they removed the requirement for a Microsoft account upon setup! I was very grateful for that, even though I did install Debian almost right away.
I have the general gist of what GHz are and what they do but I’m still stuck on understanding them fully.
I know that 3.5 GHz is just 3.5 Billion clock cycles per second and those handle instructions. This is hyperbole, but let’s say the CPU was sent 4 instructions, would they do those 4 instructions 3.5 Billion times a second or is it 3.5 Billion chances at completing that instruction?
Am I missing something or am I taking it too literal? I’m having a difficult time visualising how that process would actually work.
Hello everyone, I’d like to ask for a recommendation from people who really know their stuff. I really like cases with built-in displays—I want a computer case with a built-in screen where I can view metrics like the computer’s temperature. When I look at cases with built-in displays, they cost around $200 in my country; they’re probably not the highest quality, but they’ll get the job done. But then I had an idea: what if I got something like a James Donkey portable monitor, mounted it inside a case I like, and fed the signal from my graphics card? That way, I’d essentially have a built-in screen, and this method would also cost around $200—plus I’d get a bigger screen. It probably won’t look as sleek as a pre-built setup, but if I can put it together properly, it looks like it’ll turn out pretty well. So, which do you think is better? Or if anyone has other good suggestions, I’m open to them. Let’s assume there are no issues with outputting the video or with my system’s capabilities. The only concern I have is whether building it myself might cause a technical issue, like overheating the inside of the case. I’ve seen some small screens that attach to the graphics card or are supported by it, but I didn’t like them because they’re too small. My 12-year-old brother told me that if I get him a screen with an Arduino or Raspberry Pi, he could build one for me exactly the way I want it, but I don’t really know much about these things.
Hello, my IdeaPad recently died. I have a new laptop now, but there are still files on this one I’d like to recover from the SSD.
Is there a certain adapter that works best for this? This is my first time doing this so I’m not sure if it’s one size fits all, or if there’s a specific one that works best.
I have been working on a Xbox one s pc case build and I’m wondering if I can use sfx psu to power Xbox one s. Any suggestions are greatly appreciated, thanks
Long story short, I will need a new laptop for my engineering studies (Mainly machine learning).
The thing is, I have a relatively strong desktop at home (AMD Ryzen 7 7800X3D, RTX 5070Ti etc).
I am wondering whether I should buy a gaming laptop with a dedicated GPU or simply go for something like an Ultrabook and remotely access my desktop by apps like Parsec or such. Is the latter option even practical ? Appreciate your help
So I need a laptop for school, there was an incident with my cat this morning and I broke mine. It’s already old so it makes more sense to replace than to fix
Price Range: nothing over $600 I’d consider something closer to $700 if it’s an absolute gem for the price
Uses: full time online college coursework, light to moderate gaming
Requirements: must be able to run the most recent version of windows, something that won’t take a poo within the next four years
My computer knowledge: I don’t know anything about computer hardware and how it handles software.
I’d appreciate any and all advice possible, I’ve been considering a cheap gaming laptop as I figured if it can handle gaming it could handle gaming and school. I’ve not had much time for research as mine broke this morning
Yesterday both my monitors (1 hdmi, 1dp) were working perfectly. Today I boot up my pc and only my hdmi monitor is working. The dp one is on and simply shows "no signal" (photo 1).
After checking the cables multiple times and trying the 3 dp output of my graphics card (Radeon RX 6600, photo 2, 1 hdmi and 3 dp outputs) (dont mind the dust please, i know i need to clean my pc), I plugged this monitor in hdmi and it works, i fear my gpu's dp outputs are dead :/
The monitor is a Samsung S24C330GAU and has both dp and hdmi input
The second monitor is a 24" PIXL (i dont have the exact model, sorry) and doesnt have a dp input
Please tell me it isnt as bad as I think it i dont have the money to buy a gpu 🙏
Btw I will only be able so answer in about 9 hours because work and sleep, thanks for your understanding
I bought an s10+ a few months ago that I wanted to use for art editing. Unfortunately, I really don't like any of the editing apps in the google play store so this expensive tablet has become more of a time wasting/yt machine.
I can trade it in for ~375 at Best buy where I had bought it. There's a touchscreen laptop I'm interested in, but I'm also worried that it won't be strong enough for Affinity (the program I use for edits) ASUS - Upgraded - 11.6" 2-in-1 Touch Laptop,Intel Celeron N100,4GB RAM,256GB SSD+1TB Dock Set,Intel UHD Graphics,Win 11 Pro - Gray <the one I'm looking at
I'm aiming to spend as close as I can to my trade in value, as I've already lost money just by not returning this tablet immediately. Any and all suggestions are appreciated.
My current laptop is 17" and a pain to move around, so a smaller model would be ideal for me. I also got it in 2017 so it's quite old anyway. I use it for gaming, so don't necessarily need the work laptop to be able to run games. I would like a lot of space (256-1tb) for files.
I wanted to buy macbook air m5 at 1 lakh 10 k inr, but after apple price increase its costing 1.5L so that's out of question now after a lot of research I am stuck between 3 laptops, apple macbook neo 512gb variant (80k with student id) , samsung book 5 base model 512gb, asus vivobooo s14 512gb
My use case is pretty basic, watch video lectures, netflix and basic laptop everyday needs that's it...I am going to medical school...so I would want a laptop that stays with for a good time and doesn't give me trouble....I want a metal/aluminium build only, NO PLASTIC body at all..I am sick of it
I have a samsung ecosystem (s9 fe plus tab and Samsung phone s23) but apple is apple so I am stuck in this decision
After a few minutes of my secondary monitor suddenly going white, my main monitor suddenly started flickering lines. I do not know if it's a monitor issue or a GPU issue. The video is the flickering lines. Which happens when playing videos on Youtube and when I am on my desktop with my wallpaper from Wallpaper engine.
ALSO: my GPU has LED lights where it says "AERO" - it's not turning on, common issue of these Gigabyte GPUs as I've noticed.
My PC was custom-built by my brother around 2019–2020 and lately I’ve been having random crashes/black screens, mostly while playing Overwatch. Specs are Ryzen 7 3700X, RTX 2060 6GB, 16GB RAM, 2560×1440 monitor at 59Hz, and Windows 10. Overwatch originally started crashing pretty consistently after about 5–6 minutes, with the PC itself still running but the game crashing and monitor losing signal (“No DP signal”/“No HDMI signal”). I had the thermal paste replaced because I thought overheating might be the issue, and after getting the thermal paste replaced, the crashes became more random instead of happening consistently, but they didn’t completely stop. It’s also happened while playing Roblox and The Sims 4, so it isn’t only Overwatch. I’ve reinstalled/updated NVIDIA drivers, reinstalled Overwatch, disabled NVIDIA Overlay, lowered settings, capped FPS, and tried borderless windowed. Windows has also logged NVIDIA Overlay/libcef.dll and dwm.exe errors, and I eventually got a BugCheck 0x0000003B crash with a MEMORY.DMP. My GPU has reached around 82°C under load, and playing with the glass side panel off seems to help somewhat. A PC technician recommended upgrading to Windows 11 and eventually upgrading the GPU. I mainly play Overwatch, Sims 4 with mods, Minecraft and Roblox, and I’d also like to use After Effects/video editing. At this point, would it make more sense to upgrade the GPU/other parts, or should I just replace the entire PC?
My brother has robbed me of my pc WE built in 2024… he’s a InfoSec major so it’s understandable. But I just need something that runs Unity well and I can have in my dorm / easy to transport.
As title says, lost power in the middle of the night and got it back about 20 minutes ago. Upon booting up my pc, I have zero internet while every single other device in my house, using ethernet or wifi, is working perfectly fine. I uninstalled and reinstalled network adapter drivers, did a flea power drain, reset all my ip config settings and cleared network cache, reset my entire network system in settings, have restarted multiple times and still nothing. What could possibly be the issue?
Edit: Solved it myself. One of the windows internet firewalls was crashing all internet traffic. I disabled all firewalls and brought them back one by one and now it works.
Issue:
The PC will often boot normally if it has been completely powered off for 2–3+ hours. It’ll reach Windows, and everything seems fine. However, after about 15–20 seconds, the screen suddenly goes black.
After I force shut down and try to restart:
No display output
Keyboard and mouse don’t power on
All fans spin normally, including GPU fans
Sometimes after leaving the PC off for several hours, it will boot again and repeat the same behavior.
Things I’ve tried:
Updated motherboard BIOS
Reseated the GPU
Checked/reconnected GPU power cables
Tried multiple restarts
Ran FurMark when the GPU was working (around 80°C core, 91°C hotspot, no artifacts or crashes)
Once the PC boots successfully, I can sometimes game normally without any noticeable issues
Has anyone experienced something similar? Does this sound like a failing GPU, VRAM issue, power delivery problem, or something else?
Where do you find things like icon creators and app editors, like you would on a phone but for a PC? I want to install it. I guess it's an APK for the computer? Where I can customize the layout.
I recently took my rog zephyrus m16 2021 to the repair shop for a faulty fan motor on the cpu side. The repair shop ordered a new one and sent me back home till the replacement arrives. The fan itself still works but vibrates the whole laptop when on full throttle so they suggested me to not to any heavy gaming till the replacement arrives.
Now back at home when i try to turn on my zephyrus it shuts off immediately before it even reaches the windows boot screen. After a few minutes i tried again and it actually booted this time until it ultimately shut off a few seconds later.
One key thing i noticed was that the heat sensor indicator thingy said a 100 celsius when i managed to peek at it when it booted into windows.
Ive tried reseating the battery but that didnt do anything.
What should i do???? The repair shop is closed for the next 2 days.
Exact specs:
rtx 3060 6gb
I7 11th gen processor
16 gb of ddr4