Filter products
–
Low-power PC – Energy-efficient industrial solutions
Maximum reliability with minimum power consumption. Our low-power industrial PCs are optimised for maintenance-free 24/7 continuous operation and offer sufficient computing power for control tasks, data acquisition and IoT gateways.
Ultra low power: Optimized Intel® Atom™ & Celeron® Processors for low heat dissipation
Compact Design: Space-saving enclosures for DIN rail mounting or wall mounting
Completely silent: 100% fanless cooling protects against dust intake and wear
IoT Ready: Diverse I/O such as LAN, COM and USB for industrial networking
Features & Mounting:
DIN-RAIL
ENERGY EFFICIENT
IOT GATEWAY
Fanless
NISE-105 series
- Intel Atom / Celeron CPU
- Up to 8GB DDR3 RAM
- 2x Gigabit Intel I210 Ethernet Ports
- USB 2.0 & USB 3.0
- Two independent Displays via HDMI & DVI-I
- 4x Serial RS232/422/485 interfaces
- MiniPCIe port for Wifi/4G module
- -20 ~ 70 °C operating temperature
NISE-106-N3710
- Intel Pentium N3710 Quad Core CPU
- Up to 8GB DDR5 RAM
- 1x HDMI, 1x DVI-D, 1x DisplayPort
- 2x Intel Gigabit Ethernet Ports
- 4x USB 3.0, 4x serial RS232/422/485 interfaces
- 1x 2,5" SATA 3.0 SSD
- MiniPCIe port for Wifi/4G Module
- -10 ~ 60 °C operating temperature
- 9-30V wide range input
NISE-107 series
- Intel Atom Dual/Quad Core CPU
- Up to 8GB DDR3 RAM
- 1x DisplayPort, 1x DVI-D
- 2x Intel I210 GbE LAN Ports
- 4x USB 3.0, 4x serial RS232/422/485 ports
- 1x 2,5" SSD, 1x M.2 2242 NVME
- MiniPCIe port for Wifi/4G module
NISE-109 series
- Intel Atom / Celeron CPU
- Up to 16GB DDR4 RAM
- 1x M.2 2242 NVME, 1x 2,5" SSD
- 3x USB 3.0, 4x serial ports
- 2x Intel I210 GbE LAN ports
- TPM 2.0
- -20 ~ 70 °C operating temperature
- CE/FCC class A certified
NISE-110 Serie
- Intel Atom x7211E / Celeron N97 CPU
- Up to 16 GB DDR5 RAM
- 1x M.2 2242/2280 NVME, 1x mSATA
- 2x USB 3.2, 2x USB 2.0
- 1x HDMI, 1x DisplayPort
- -40 ~ 60°C operating temperature
- 9-30V DC wide range input
- CE, FCC Class A and UL certified
NISE-50-A04 series
- Onboard Intel N97 Quad Core CPU
- Up to 16GB DDR5 RAM
- M.2 2280/2242 SATA NVME
- 3x Intel 2.5 GbE ports
- 2x/6x USB 3.2, 1x/2x COM, 1x HDMI
- TPM 2.0, Windows 11 approved
- 12/24V DC input
- CE/FCC Class A certified
NISE-51 series
- Intel Dual Core / Quad Core CPU
- Up to 8GB DDR3 RAM
- 16GB - 32GB Onboard EMMC + optional M.2 2242 module
- mPCIe Slots for add-on cards
- USB 2.0 / 3.0, 3x COM, 1x DisplayPort
- 12V / 24V DC input
- CE/FCC certified
NISE-53 series
- Intel Atom / Celeron CPU
- Up to 16GB DDR4 RAM
- 2x USB 3.0, 2x USB 2.0, 2x COM
- 3x HDMI, 3x GbE LAN
- 32GB Onboard EMMC and M.2 SATA Slot
- Full Size mPCIe for add-on cards
- -10 ~ 60°C operating temperature
- CE & FCC Class A certified
NISE-70 Serie
- Intel Celeron / Core CPU der 11. Generation
- Bis zu 32GB DDR4 RAM
- 3x USB 3.0, 1x USB 2.0, 2x COM
- 3x Intel GbE LAN Port
- 4x HDMI, unterstützt 4k @ 30Hz
- TPM 2.0 Modul
- -10 ~ 60°C Betriebstemperatur
- 12V - 24V DC Input
POC-200 Serie
- Intel® Atom™ Quad-core CPU
- 1x SO-DIMM socket for DDR3L-1333
- 3x USB 3.0 and 1x USB 2.0
- 1x DVI port, up to 4x serial ports
- 2x Gigabit (PoE+) Ethernet ports
- Supports a 2.5" HDD/SSD
- Rugged fanless operation, wide temperature range -25°C to 70°C
- Wall or DIN-rail mounting
POC-40 Series
- Up to 32 GB DDR4-3200 RAM
- 2x USB 3.1, 2x USB 2.0, 2x Gigabit Ethernet ports, 1x DisplayPort
- 1x M.2 2280 M-Key slot
- Fanless operation with wide temperature range
- Extremely compact design
POC-400 Serie
- Intel® Elkhart Lake Atom® x6425E Quad-Core CPU
- Up to 32 GB DDR4-3200 RAM
- 2x USB 3.1, 2x USB 2.0, DisplayPort connection
- 3x 2.5 GbE ports
- 1x M.2 2280 M-Key slot
- Fanless operation with a wide temperature range from -25°C to 70°C
- Very compact design
POC-465AWP
- Intel® Elkhart Lake Atom® x6425E quad-core CPU
- Up to 32GB DDR4-3200 SDRAM
- M12 connections: 2x USB, 2x Ethernet, 2x serial interfaces, 1x VGA
- M.2 2280 SSD, 1x full-size miniPCIe port
- Robust, fanless operation up to 70°C
- Water and dust protected to IP66
POC-500 Series
- AMD Ryzenâ„¢ Embedded V1000 quad-core CPU
- Up to 32 GB DDR4-3200 RAM
- 4x USB 3.0, 4x PoE+ Gigabit Ethernet ports, DisplayPort and VGA connection
- 1x M.2 2280 M-Key slot
- Operation in a wide temperature range from -25°C to 70°C
- Expandable thanks to MezIO® interface
- Very compact design
POC-700 Serie
- Intel® Alder Lake Core™ i3-N305 or Atom® x7425E CPU
- Up to 16GB DDR5-4800 RAM
- 4x USB 3.2, 4x Gigabit Ethernet (PoE+) ports, Displayport, HDMI
- 1x M.2 2280 M key slot, 1x full-size mini PCIe
- Fanless operation with a wide temperature range from -25°C to 70°C
- High performance with very compact dimensions
POC-751VTC
- Intel® Alder Lake i3-N305 Processor (15 W)
- Four GbE-PoE+ ports and four USB 3.2 Gen 2 ports with screw lock
- Two monitor outputs (DP++ and HDMI 1.4b)
- Two isolated CAN 2.0 ports, with support for SocketCAN in Linux
- Isolated DI (8-channel) and isolated DO (8-channel)
-
Power supply via 8 – 35 V DC input, with integrated ignition control
-
E-Mark and EN 50155 EMC certification
POC-766AWP
- Intel® Core™ i3-N305 CPU
- Up to 16Gb DDR5-4800 RAM
- 1x M.2 2280 SSD
- 2x 2.5Gb Ethernet ports via waterproof M12 X-coded connectors
- 1x isolated RS-232, 1x RS-422/485 via M12
- 8-35V DC input with ignition power control via M12
- MIL-STD-810H, CE/FCC and UL certified
Advantages of a low-power industrial PC
- Energy efficiency: With their low power consumption, low-power PCs not only help to reduce operating costs, but also make an active contribution to sustainability – ideal for energy-optimised industrial plants.
- Fanless design: Thanks to passive cooling, the systems are particularly resistant to dust, vibrations and temperature fluctuations – and are virtually maintenance-free.
- Compact design: The slim form factors allow for easy integration into control cabinets, machines or mobile platforms – perfect for space-constrained or embedded environments.
- Reliable performance: Despite minimal power consumption, low-power industrial PCs impress with high system stability and a long life cycle – even in continuous operation.
A proven example of a compact and energy-efficient solution is the POC-700 series from OMTEC – ideal for edge applications, medical device integration and space-critical industrial projects.
Typical areas of application for low-power industrial PCs
Energy-efficient embedded systems are used in numerous industrial and commercial scenarios where compact design, energy efficiency and reliable continuous operation are required. They are particularly advantageous in environments where traditional industrial PCs reach their limits due to space, heat or energy restrictions.
- IoT and edge computing: Decentralised data processing directly at the sensor or device – ideal for smart factories, machine monitoring or predictive maintenance.
- Building automation: Control of lighting, air conditioning and security systems in modern building structures – with minimal energy consumption and high reliability.
- Medical technology: Energy-efficient computing units for mobile diagnostic systems, laboratory equipment or patient monitoring – reliable and hygienic integration thanks to fanless design.
- Video surveillance & image analysis: Compact systems for controlling IP cameras, edge video analysis or distributed security systems – with 24/7 stability.
A low-power industrial PC from OMTEC enables companies to implement modern technologies in an energy-efficient and space-saving manner – without compromising on performance or reliability.
Why choose a low-power industrial PC from Neousys?
Neousys stands for quality, innovation and practical solutions in industrial computing. The manufacturer's energy-efficient PCs have been specially developed for modern industrial applications where compact dimensions, energy efficiency and reliability are paramount. Not only do they offer a stable platform for 24/7 operation, they can also be flexibly integrated into a wide variety of environments.
- Industrial components with a long service life: Robust construction and selected components ensure reliable continuous operation even under demanding conditions.
- Flexible configuration options: Whether interfaces, memory or mounting – the systems can be individually adapted to your project requirements.
- Technical support from OMTEC: We accompany you from selection to commissioning with sound advice, test installations and rapid support for integration and maintenance.
A low-power PC from Neousys offers the perfect combination of efficiency, robustness and flexibility – ideal for IoT projects, automation or embedded systems with high energy and operational efficiency requirements.
Smart applications for low-power industrial PCs
Energy-efficient industrial computers offer an energy-efficient and reliable solution for numerous modern applications – especially where computing power with low energy consumption and compact design is required.
- Logistics & warehouse automation: Control systems for autonomous transport vehicles, conveyor systems and warehouse robots – with maximum energy efficiency in 24/7 operation.
- Smart Cities: Intelligent monitoring and control solutions for traffic management systems, lighting management or integration into networked energy supply grids.
- Agricultural technology: Use in agricultural machinery and sensor networks for precise field management, weather data collection and resource control.
- Energy industry: Integration into smart grids to optimise electricity distribution, real-time load management and remote maintenance of energy infrastructure.
Thanks to their fanless design and high resistance to dust, moisture and vibrations, low-power PCs are also ideal for extreme environments – e.g. in offshore installations, mining or heavy industry.
Low-power PCs in Industry 4.0 and 5.0
Low-power industrial PCs play a central role in the digital transformation of industrial processes – both in Industry 4.0 and in the emerging Industry 5.0. Their energy-efficient architecture and compact design make them the ideal basis for networked systems, decentralised computing power and smart automation.
In Industry 4.0, low-power PCs ensure reliable processing of sensor data, monitoring of production facilities and control of autonomous systems – for example, in IoT devices or edge computing environments. Their low power consumption enables continuous 24/7 operation with minimal operating costs.
With the transition to Industry 5.0, low-power systems are becoming increasingly important: they support AI-based applications that are designed for close collaboration between humans and machines. These include collaborative robots (cobots), adaptive control systems and intelligent assistance solutions – always with the aim of combining productivity, sustainability and human interaction.
Sustainability and future viability with low-power industrial PCs
Energy-efficient PCs not only offer technical efficiency, but also real added value in terms of sustainability. Thanks to their significantly reduced energy consumption, they actively contribute to lowering the carbon footprint in industrial applications – an important step for companies that want to combine environmental responsibility with economic efficiency.
In energy-intensive industries in particular, low-power PCs offer an environmentally friendly alternative to traditional industrial computers – without compromising on performance, reliability or connectivity. Thanks to their compatibility with current industry standards, state-of-the-art interfaces and modular expandability, the systems can be operated over the long term and easily integrated into existing infrastructures.
In this way, they combine energy efficiency, technological openness and ecological responsibility – thereby making an important contribution to sustainable and future-proof Industry 4.0 and 5.0.
Our highlights
POC-700 Serie
- Intel® Alder Lake Core™ i3-N305 or Atom® x7425E CPU
- Up to 16GB DDR5-4800 RAM
- 4x USB 3.2, 4x Gigabit Ethernet (PoE+) ports, Displayport, HDMI
- 1x M.2 2280 M key slot, 1x full-size mini PCIe
- Fanless operation with a wide temperature range from -25°C to 70°C
- High performance with very compact dimensions
NISE-105 series
- Intel Atom / Celeron CPU
- Up to 8GB DDR3 RAM
- 2x Gigabit Intel I210 Ethernet Ports
- USB 2.0 & USB 3.0
- Two independent Displays via HDMI & DVI-I
- 4x Serial RS232/422/485 interfaces
- MiniPCIe port for Wifi/4G module
- -20 ~ 70 °C operating temperature
FAQ - Low Power & Ultra compact Embedded PCs
Maximum efficiency in the smallest of spaces: learn more about the advantages of our low-power systems for IoT, data acquisition and permanent installations in control cabinets.
What defines a low-power industrial PC?
Low-power PCs use energy-efficient processors (e.g. Intel® Atom®, Celeron® or Elkhart Lake) that have very low power consumption (TDP). They are primarily designed for tasks where reliability and energy efficiency are more important than maximum computing power, such as logging sensor data.
Are all low-power systems at OMTEC fanless?
Yes, thanks to the low heat generation of the components used, these systems can be cooled completely passively. Without fans, there are no rotating wear parts, which makes the devices maintenance-free and enables silent operation.
Are these PCs suitable as IoT gateways?
Absolutely. Thanks to their compact design and support for mobile communications (LTE/5G), Wi-Fi and multiple LAN ports, they are the ideal interface between local machine peripherals and the cloud. They can pre-process data and transmit it securely.
Can low-power PCs be operated within a wide temperature range?
Yes, many of our embedded systems support the extended temperature range from -25°C to +70°C. As they generate little heat themselves, they are particularly stable in environments with limited air circulation, such as small control cabinets or enclosures.
Which operating systems are supported?
Our low-power systems support common Linux distributions (e.g., Ubuntu, Debian) as well as Windows 10 IoT Enterprise. The IoT editions are particularly well-suited, as they are optimized for resource-efficient hardware and offer long support cycles.
What about long-term availability?
As with all our industrial systems, we ensure the availability of core components for 5 to 15 years. This provides you with planning security for series production projects and ensures that you can obtain identical replacement parts even years later.