Green Tech Repairs · Custom PC Systems

Fanless PCs Built Without Cooling Fans

Purpose-designed custom PCs using passive thermal engineering rather than conventional cooling fans, for customers who want the absence of fan noise to be a fundamental characteristic of the system.

What Is a Fanless PC?

A true Fanless PC has no cooling fans. Instead, heat is transferred away from the processor and other heat-producing components through heatsinks, heat pipes, thermal interfaces and the chassis itself. The enclosure effectively becomes part of the thermal solution.

Fanless means no cooling fans. This is different from a Silent PC, which can use carefully selected fans running at very low speeds. Fanless systems are designed around passive cooling from the beginning, and that places real limits on processor power, graphics capability, sustained workload and enclosure design.
Fanless performance has physical limits. Removing fans does not remove heat. A processor or graphics device still produces thermal energy that has to be transferred into the chassis and dissipated into the surrounding environment. Fanless systems therefore require careful matching of hardware, power consumption, heatsink capacity, ambient temperature and intended workload.

Fanless Engineering Explained

Fanless computing is not simply conventional PC hardware with the fans unplugged. Every part of the thermal design has to work together.

Passive Thermal Transfer

Heat generated by the processor is transferred through the thermal interface into a heatsink or heat-spreading structure. Heat pipes or other thermal conduction methods can then distribute that energy across a larger surface area.

Without forced airflow, the system depends on conduction and natural convection. The physical design of the chassis therefore becomes a critical part of the cooling system.

Why Fanless Systems Are Different

A conventional PC can use a fan to move large quantities of air across a heatsink. A fanless system cannot. This means thermal energy has to be dissipated through substantially larger passive surfaces and carefully designed heat paths.

The result is a different engineering balance between processor power, sustained workload, chassis size, ambient temperature and performance.

CPU Power and Sustained Workloads

CPU power consumption directly affects the amount of heat that has to be dissipated. Fanless systems are therefore particularly suited to processors with efficient power characteristics and workloads that do not continuously demand maximum CPU power.

Short bursts of processing can be handled by thermal mass, but a sustained heavy workload eventually depends on the system’s ability to dissipate heat into the environment.

Integrated Graphics

Integrated graphics can be particularly useful for fanless systems because the graphics processor is incorporated into the CPU package and does not require a separate graphics card with its own active cooling system.

This makes fanless configurations well suited to office computing, development, media playback, signage, control systems and other workloads that do not require a high-performance discrete GPU.

Discrete Graphics and Fanless Design

High-performance discrete graphics hardware presents a much greater thermal challenge. Modern gaming GPUs can produce substantial sustained heat, which makes true fanless gaming systems highly specialised and unsuitable for many demanding gaming workloads.

For this reason, the configurations below concentrate on genuinely appropriate fanless workloads rather than pretending that a conventional high-power gaming GPU can simply be made fanless without major compromises.

Chassis as a Heatsink

Many serious fanless systems use a thermally conductive chassis as part of the cooling solution. Heat is transferred from the processor into the enclosure and then radiated and naturally convected away from its external surfaces.

This makes enclosure material, surface area, internal thermal paths and physical placement important engineering considerations.

Ambient Temperature

Fanless systems are more sensitive to ambient temperature because they cannot increase airflow when the surrounding air becomes warmer. A system designed for a cool room may behave differently in a hot enclosed space.

Room temperature, enclosure location and ventilation around the chassis therefore form part of the thermal design.

Storage and Mechanical Components

Solid-state NVMe storage is particularly appropriate for fanless systems because it has no mechanical motor or actuator. It also avoids introducing another moving mechanical component into a system specifically designed around silent operation.

Fanless Does Not Mean Heatless

A fanless PC still produces heat. The difference is that there is no fan forcing air across the heatsink. Thermal management is therefore achieved through passive heat transfer and natural convection.

This distinction is essential when choosing a fanless system. The correct configuration is one where the intended workload matches the passive thermal capacity of the hardware and chassis.

Fanless PC Configurations

Each system below is individually named and built around a specific fanless use case. The specifications are deliberately centred on efficient hardware, integrated graphics and workloads that can realistically be served by passive cooling.

Stillpoint Compact fanless everyday system for office work, web use, email, streaming and general desktop computing.
CaseAkasa Newton TN
CPUIntel Core i3-14100T
CPU CoolerAkasa passive CPU cooling solution integrated with the fanless chassis
GPUIntel UHD Graphics 730 integrated graphics
MotherboardASRock H610M-HDV/M.2
RAMKingston FURY Beast 16GB DDR4-3200
StorageSamsung 990 EVO Plus 1TB NVMe SSD
PSUExternal fanless DC power supply matched to system requirements
Operating SystemWindows 11 Home
Fanless focus: Designed for everyday computing where the absence of cooling fans is more important than high-end graphics performance. Suitable for office work, web browsing, email, media playback and general desktop applications.
Silent Desk Fanless productivity system for home office, administration, study and extended desktop use.
CaseAkasa Turing A50
CPUIntel Core i5-12400T
CPU CoolerAkasa passive thermal chassis solution
GPUIntel UHD Graphics 730 integrated graphics
MotherboardASUS PRIME B660M-A D4
RAMKingston FURY Beast 32GB DDR4-3200
StorageWD Blue SN580 1TB NVMe SSD
PSUExternal fanless DC power supply matched to system requirements
Operating SystemWindows 11 Pro
Fanless focus: A stronger productivity platform for users who want a completely fanless desktop environment while retaining additional CPU and memory capacity for heavier office, browser and development workloads.
Passive Core Fanless development and programming system for code editors, databases, virtual tools and technical applications.
CaseAkasa Turing A50 MKII
CPUIntel Core i5-12500T
CPU CoolerAkasa passive thermal chassis solution
GPUIntel UHD Graphics 770 integrated graphics
MotherboardASUS PRIME B660M-A D4
RAMKingston FURY Beast 32GB DDR4-3200
StorageSamsung 990 PRO 2TB NVMe SSD
PSUExternal fanless DC power supply matched to system requirements
Operating SystemWindows 11 Pro
Fanless focus: A programming-oriented system for software development, coding, web development, database work and technical applications where sustained acoustic silence is valuable for concentration.
Media Still Fanless media and entertainment system for high-quality video playback, streaming and living-room use.
CaseAkasa Newton TN
CPUIntel Core i5-13500T
CPU CoolerAkasa passive thermal chassis solution
GPUIntel UHD Graphics 770 integrated graphics
MotherboardASRock B760M Pro RS/D4
RAMKingston FURY Beast 32GB DDR4-3200
StorageSamsung 990 EVO Plus 2TB NVMe SSD
PSUExternal fanless DC power supply matched to system requirements
Operating SystemWindows 11 Home
Fanless focus: A media-centred configuration for video playback, streaming services, music, home entertainment and living-room environments where the complete absence of fan noise is particularly valuable.
Control Room Fanless system for monitoring, dashboards, digital signage, control applications and always-on environments.
CaseAkasa Newton TN
CPUIntel Core i3-14100T
CPU CoolerAkasa passive thermal chassis solution
GPUIntel UHD Graphics 730 integrated graphics
MotherboardASUS PRIME H610M-A D4
RAMCrucial 16GB DDR4-3200
StorageCrucial P3 Plus 1TB NVMe SSD
PSUExternal fanless DC power supply matched to system requirements
Operating SystemWindows 11 Pro
Fanless focus: Built for displays, dashboards, control applications, monitoring systems and environments where the computer needs to operate without introducing fan noise.
Archive Fanless storage and document workstation for quiet offices, libraries, records and information management.
CaseAkasa Turing A50 MKII
CPUIntel Core i5-12400T
CPU CoolerAkasa passive thermal chassis solution
GPUIntel UHD Graphics 730 integrated graphics
MotherboardMSI PRO B660M-A DDR4
RAMKingston FURY Beast 32GB DDR4-3200
StorageSamsung 990 PRO 4TB NVMe SSD
PSUExternal fanless DC power supply matched to system requirements
Operating SystemWindows 11 Pro
Fanless focus: A storage-heavy quiet workstation for document management, research, archives, office databases and information-heavy workloads where silent operation is desirable.
Studio Still Fanless audio and music workstation designed around the absence of computer fan noise near microphones and monitoring equipment.
CaseAkasa Turing A50 MKII
CPUIntel Core i5-12500T
CPU CoolerAkasa passive thermal chassis solution
GPUIntel UHD Graphics 770 integrated graphics
MotherboardASUS PRIME B660M-A D4
RAMKingston FURY Beast 32GB DDR4-3200
StorageSamsung 990 PRO 2TB NVMe SSD
PSUExternal fanless DC power supply matched to system requirements
Operating SystemWindows 11 Pro
Fanless focus: Designed for recording spaces, music production, audio editing and monitoring environments where the absence of cooling fan noise can be more important than high-end GPU performance.
Library Fanless research and knowledge-work system for reading, writing, research, study and quiet professional environments.
CaseAkasa Newton TN
CPUIntel Core i5-13400T
CPU CoolerAkasa passive thermal chassis solution
GPUIntel UHD Graphics 730 integrated graphics
MotherboardASRock B760M-HDV/M.2
RAMKingston FURY Beast 32GB DDR4-3200
StorageWD_BLACK SN850X 2TB NVMe SSD
PSUExternal fanless DC power supply matched to system requirements
Operating SystemWindows 11 Pro
Fanless focus: A quiet research and knowledge-work platform for study, writing, document analysis, web research and professional desktop use where acoustic distraction is undesirable.
Monolith High-capacity fanless workstation concept for demanding desktop productivity within passive thermal limits.
CaseStreacom FC9 Alpha
CPUIntel Core i5-13500T
CPU CoolerStreacom passive heat-pipe cooling system
GPUIntel UHD Graphics 770 integrated graphics
MotherboardASRock B760M Pro RS/D4
RAMKingston FURY Beast 64GB DDR4-3200
StorageSamsung 990 PRO 4TB NVMe SSD
PSUStreacom Nano160 fanless internal PSU
Operating SystemWindows 11 Pro
Fanless focus: A larger passive platform for users requiring substantial memory and storage capacity while keeping the system completely free from cooling-fan noise. Workloads must remain appropriate for the passive thermal envelope.
Absolute Dedicated fanless workstation for customers who place absolute mechanical silence above graphics performance.
CaseStreacom FC9 Alpha
CPUIntel Core i5-13500T
CPU CoolerStreacom passive heat-pipe cooling system
GPUIntel UHD Graphics 770 integrated graphics
MotherboardASUS PRIME B760M-A D4
RAMKingston FURY Beast 64GB DDR4-3200
StorageSamsung 990 PRO 4TB NVMe SSD
PSUStreacom Nano160 fanless internal PSU
Operating SystemWindows 11 Pro
Fanless focus: The strongest passive configuration in this collection for customers who specifically require a completely fanless desktop. It is intended for CPU-based productivity, development, research, office and media workloads rather than high-performance discrete-GPU gaming.

Fanless PC Engineering Priorities

Passive Heat Transfer

Heat must move from the processor into the passive heatsink and chassis without the assistance of a cooling fan.

Thermal Envelope

Every fanless system has a finite thermal capacity. Processor power and sustained workload must remain within that envelope.

Chassis Surface Area

A passive chassis needs enough effective surface area to transfer heat into the surrounding environment.

Integrated Graphics

Integrated graphics avoid the substantial additional thermal load and active cooling requirements of most discrete GPUs.

Ambient Temperature

Room temperature directly affects passive cooling because the system cannot increase airflow when the environment becomes warmer.

Workload Matching

A fanless PC should be selected around the customer’s actual applications rather than treating passive cooling as suitable for every workload.

How Your Fanless PC Is Chosen

Choose a Configuration Select the fanless system that most closely matches your intended workload.
Tell Us How You Use It Give us your applications, displays, storage requirements and operating environment.
Compatibility Review The proposed specification is assessed as a complete passive system.
Technician Verification We review the thermal and component requirements before final confirmation.
Final Quotation Your confirmed specification and quotation are provided before ordering.

Choose Your Fanless PC

Select a specific Fanless PC above and tell us exactly how you intend to use it. The selected PC name is captured directly in the enquiry so your requested configuration is clearly identified.

Selected Fanless PC: No configuration selected
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