Din Rail PCs

Advancing technology has made reliable computing solutions essential in industrial environments. Din Rail PCs are compact, rugged computers built for harsh settings like manufacturing plants, oil rigs, and transportation systems. They easily mount on standard din rails, which streamlines installation, saves space, and simplifies maintenance compared to traditional desktops or towers, improving efficiency in industrial applications.

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eBOX626A

Axiomtek eBOX626A Intel Celeron J6412 Fanless Embedded System
  • CPU: Intel Celeron J6412
  • Memory: Up to 32GB
  • Max Temp Range: -10°C to +60°C
  • Power Input: 9 to 36 VDC
  • Certifications: CE/FCC

eBOX671B

Axiomtek eBOX671B 13th/12th Gen Intel Core i9/i7/i5/i3/Celeron Fanless Embedded System with Intel R680E Chipset
  • CPU: Intel Core i9/i7/i5/i3 & Celeron Processor
  • Memory: Up to 64GB
  • Max Temp Range: -40°C to +65°C
  • Power Input: 9 to 36 VDC
  • Certifications: CE/FCC

VBOX-3121

Sintrones VBOX-3121 6th Gen Intel Core i7/i5/i3/Celeron In-Vehicle Computer for On-board Telematics
  • CPU: Intel Core i7/i5/i3
  • Memory: Up to 16GB
  • Max Temp Range: . -40ºC to +70ºC
  • Power Input: 9 to 36 VDC
  • Certifications: CE/FCC, MIL-STD

VBOX-3130

Sintrones VBOX-3130 Intel Pentium/Celeron In-Vehicle Computer for Fleet Management
  • CPU: Intel Pentium & Intel Celeron
  • Memory: Up to 8GB
  • Max Temp Range: -40ºC to +70ºC
  • Power Input: 9 to 36 VDC
  • Certifications: CE/FCC, E-Mark, MIL-STD

tBOX110-APL-MR4

Axiomtek tBOX110-APL-MR4 Intel Atom x5-E3940 Fanless Embedded System
  • CPU: Intel Atom x5-E3940
  • Memory: Up to 8GB
  • Max Temp Range: -40°C to +70°C
  • Power Input: 24 to 110 VDC
  • Certifications: EN45545, EN50155, MIL-STD

tBOX110-APL-MR2

Axiomtek tBOX110-APL-MR2 Intel Atom x5-E3940 Fanless Embedded System for Rail PC
  • CPU: Intel Atom x5-E3940
  • Memory: Up to 8GB
  • Max Temp Range: -40°C to +70°C
  • Power Input: 24 to 110 VDC
  • Certifications: EN50155, EN45545, MIL-STD

tBOX110-APL-TV

Axiomtek tBOX110-APL-TV Intel Atom x5-E3940 Fanless Embedded System for Vehicle
  • CPU: Intel Atom x5-E3940
  • Memory: Up to 8GB
  • Max Temp Range: -40°C to +70°C
  • Power Input: 24 to 110 VDC
  • Certifications: CE/FCC, EN45545, EN50155

ICO120-E3350

Axiomtek ICO120-E3350 Intel Celeron N3350 DIN-rail Fanless Embedded System
  • CPU: Intel Celeron N3350
  • Memory: Up to 8GB
  • Max Temp Range: -40°C to +70°C
  • Power Input: 9 to 36 VDC
  • Certifications: CE/FCC, UL

ICO330

Axiomtek ICO330 Intel Atom x6212RE/x6414RE DIN-Rail Fanless Embedded System
  • CPU: Intel Atom x6212RE & x6414RE
  • Memory: Up to 32GB
  • Max Temp Range: -40°C to +70°C
  • Power Input: 9 to 36 VDC
  • Certifications: CE/FCC

ICO520

Axiomtek ICO520 12th Gen Intel Core i7/i5/i3/Celeron DIN-Rail Fanless Embedded System
  • CPU: Intel Core i3/i5/i7 & Celeron 7305E
  • Memory: Up to 32GB
  • Max Temp Range: -40°C to +70°C
  • Power Input: 9 to 36 VDC
  • Certifications: CE/FCC

BMX-T522-SK

Avalue BMX-T522-SK 6th Gen Intel Core i7/i5/i3/Celeron BGA Processor Mini ITX Fanless Box PC
  • CPU: Intel Core i7/i5/i3 & Celeron
  • Memory: Up to 32GB
  • Max Temp Range: 0°C to +55°C
  • Power Input: 12 to 24 VDC
  • Certifications: CE/FCC

EMS-EHL-6LAN

Avalue EMS-EHL-6LAN Intel Celeron J6413/Atom x6425E Fanless Rugged Embedded System with LAN IET Module
  • CPU: Intel Celeron J6413/ Atom x6425E
  • Memory: Up to 32GB
  • Max Temp Range: -40°C to +70°C
  • Power Input: 9 to 36 VDC
  • Certifications: CE/FCC
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Compact & Rugged

Din Rail PCs

Din rail PCs from Assured Systems offer a reliable, durable, and efficient solution for industrial computing needs. Their fanless design, compact form factor, and robust construction make them ideal for a wide range of applications, from industrial automation to environmental monitoring. With a commitment to quality and customer satisfaction, we provide products that meet the highest standards, ensuring seamless integration and long-term performance in demanding industrial environments.

Key Features of Our Din Rail Computers

1. Robust Construction

Our Din Rail PCs are built to withstand the rigorous demands of industrial environments. These computers feature rugged enclosures and are constructed from durable materials capable of resisting dust, moisture, vibration, and shocks. This robustness guarantees reliability and longevity in challenging conditions, ensuring continuous operation without failure. Fanless designs also contribute to their durability, eliminating moving parts that could wear out or fail, and enhancing overall system stability.

2. Flexible Connectivity

Connectivity is crucial in industrial applications for seamless integration with various devices and networks. Our Din rail computers excel in providing a plethora of connectivity options, including multiple USB ports, Ethernet, serial ports, and wireless communications such as Wi-Fi and Bluetooth. This allows for easy connection with sensors, actuators, and other peripheral devices necessary in a modern industrial setup. Additionally, options for expansion slots for adding extra I/O modules or network interfaces make these systems highly adaptable to specific needs.

3. Wide Temperature Range

Industrial environments often expose devices to extreme temperatures, making operational temperature range a critical specification for embedded computers. Our Din Rail PCs are designed to operate across a broad temperature spectrum, typically ranging from -40°C to 85°C. This feature ensures that the computers perform reliably under thermal stress and in varying climatic conditions, which is essential for industries like manufacturing, and outdoor applications.

4. Ease of Integration

Ease of installation and integration is another significant feature of our Din Rail PCs. Designed to be mounted directly onto standard Din rails, these compact units save space and reduce clutter, facilitating streamlined installations within cabinets or control panels. The mounting process is straightforward, promoting quick deployment and maintenance, which is incredibly beneficial in reducing downtime and simplifying system upgrades or expansions.

5. Scalable Performance

Equipped with powerful processors and capable of supporting extensive memory configurations, our Din rail computers deliver the exceptional performance necessary for handling complex computations and managing large-scale industrial applications effortlessly. Scalability is another critical feature, allowing for expansions and upgrades such as additional memory or enhanced connectivity options without needing to replace the entire unit. This adaptability ensures that the system can evolve alongside growing industrial demands.

6. Energy-Efficient

Energy efficiency is a pivotal feature of our Din Rail PCs. These systems are designed to maximise performance while minimising power consumption. This not only helps in reducing operational costs but also supports industries in their quest to meet sustainability goals. Low-power models reduce the overall environmental impact of operations. When scaled across multiple installations, it contributes significantly to energy conservation efforts.

Applications of Din Rail PCs

Automation

In the realm of automation, Din Rail PCs are invaluable. Their compact form factor allows them to be integrated into control cabinets where space is at a premium. They are used to control machinery, manage production lines, and handle data processing tasks that are critical to maintaining efficiency and productivity.

Railway

The railway industry benefits significantly from Din Rail PCs. These rugged computers support the essential operations of rail networks, including signalling, control, and security systems. Given the harsh environments typical of railway operations, DIN-rail PCs are built to withstand vibrations, temperature extremes, and dust, ensuring continuous and reliable functioning.

Energy

Energy management is another critical application of Din Rail PCs. As the world moves towards sustainable sources and seeks more efficient energy utilisation, these computers help manage and monitor energy consumption and generation. They are employed in both conventional energy generation plants and renewable energy systems like wind, solar, and hydroelectric power facilities.

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