Intel Atom® x7000RE DIN-rail PoE Fanless Rugged Edge Computer
• Industrial Grade Amston Lake Processor and Ethernet Controller
• Intel® Twin Lake Processor SKU Available
• 1 x 2.5GbE, 4 x PoE Ports for IoT Devices Connectivity
• 1 x Built-in CAN FD for Vehicle Device Communication
• Dual NVMe SSD Support for NVR Applications
• Built-in Watchdog and Smart Power Management for System Health Monitoring
• Supports DIN-rail and Wall-mount Installation
Intel Atom® x7835RE Octa-core Processor up to 3.6 GHz
Intel Atom® x7433RE Quad-core Processor up to 3.4 GHz
Intel® Twin Lake N355 Core™ 3 Octa-core Processor up to 3.9 GHz*
Intel® Twin Lake N150 Quad-core Processor up to 3.2 GHz
Intel® UHD Graphics
1 x SO-DIMM DDR5 up to 16 GB
1 x TPM 2.0
Auto reset for unresponsive system
1 x HDMI® with support for 4K@60Hz as specified in HDMI 2.0b
1 x Line-out, 1 x Mic-in (Optional)
• 1 x 2.5GbE from I226-IT via RJ-45 or M12 X-code for PoE model
• 4 x GbE* from Marvell Ethernet Switch w/ PoE (PSE Class 3: 15W) via RJ-45 or M12 X-code
* Share with 1GbE bandwidth; Power budget: 60W
**Non-PoE model: 2 x 2.5GbE
***M12 X-code cable is not included in the package
1 x CAN FD
2 x USB 3.2, 2 x USB 2.0
8 x DI (5-48VDC), 4 x DO (12VDC/100mA)
2 × RS-232/422/485 ports, expandable with 4 optional COM ports
• 1 x M.2 3042/3052 Key B for WWAN with dual Nano SIM support
• 1 x M.2 2230 Key E for Wi-Fi/BT
• 1 x M.2 2280 Key M for NVMe SSD
• 1 x M.2 2280 Key M for NVMe/SATA SSD
x7000RE Processor: -40°C ~ 70°C (-40°F ~ 158°F) with 0.6 m/s airflow
N-series Processor: -30°C ~70°C (-22°F~158°F) with 0.6m/s airflow
*The x7000RE processor for non-PoE models can operate up to 75°C (167°F), the processor performance may be limited.
** Operating temp. varies by the accessories installed.
-40 ~ 80°C (-40°F ~ 176°F)
10% RH – 90% RH (non-condensing)
• IEC 60068-2-64, random, 2.5G@5~500Hz, 1hr/axis
• MIL-STD-810H, Method 514.8, Procedure I, Category 4
MIL-STD-810H, Method 516.8, Procedure I, trucks and semi-trailers=15G (11ms)
DC 9-60V
*Power input for PoE models is recommended to be 24V or above.
OCP, OVP, surge protection, reversed polarity protection
Ignition detection, Smart Power Management
Backup battery for system power backup
* Non-PoE model only
Windows 11 IoT Enterprise LTSC, Ubuntu 24.04 LTS
Aluminum Alloy with Fanless Design
6 x SMA connector panel mount hole
DIN rail, Wall-mount
• RJ-45 model: 150 x 150 x 65 mm (5.91 x 5.91 x 2.56 in.)
• M12 PoE model: 150 x 150 x 87 mm (5.91 x 5.91 x 3.43 in.)
• CE, FCC Class A, UKCA, E-Mark, EN 62368-1, EN 50155, EN 45545-2 (R25)
| VBOX-3132P |
VBOX-3132P-yyyy-zzzzz (yyyy=M12X; zzzzz=x7835=Intel Atom® x7835RE, zzzzz=x7433=Intel Atom® x7433RE) |
| VBOX-3132-D25-M12X |
VBOX-3132-D25-M12X-zzzzz (zzzzz=x7835=Intel Atom® x7835RE, zzzzz=N150 =Intel® Processor N150) |
| VBOX-3132-D25 |
VBOX-3132-D25-zzzz (zzzz=N355=Intel® Core™ 3 Processor N355, zzzz=N150=Intel® Processor N150) |
| VBOX-3132P |
Intel Atom® x7000RE 4-Port PoE M12/RJ-45 DIN rail Rugged Edge Computer |
| VBOX-3132-D25-M12X |
Intel Atom® x7000RE/Twin Lake Dual 2.5GbE M12 DIN rail Rugged Edge Computer (BBU for Option) |
| VBOX-3132-D25 |
Intel® Twin Lake Processor Dual 2.5GbE RJ-45 Fanless Edge Computer (BBU for Option) |
Made in Taiwan
DDR5 SO-DIMM 16GB
M.2 2280 NVMe SSD 256GB~2TB
M.2 2230 Wi-Fi Module
M.2 3042/3052 WWAN Modem
M.2 2242 GNSS Module
BAT-2300v2 (Operating Temp.: -20°C~60°C (-4°F~140°F) (Only for non PoE model)
Non-PoE model: DC 12V, 60W
PoE model: DC 24V, 160W
M12 X-code to RJ-45 (1M)
Are you seeking a reliable embedded system that delivers high performance with low power consumption at a budget-friendly cost? The SINTRONES embedded system — powered by the Intel® Twin Lake processor, the latest generation of Intel’s Processor N-series — is a choice you’ll never regret. As the successor to the Alder Lake-N lineup, the Twin Lake family introduces two new CPUs: a Quad-core model optimized for ultra-low power consumption and an Octa-core model designed for enhanced performance. These future-ready processors also ensure product availability for up to 10 years, through 2034 — making them ideal for industrial applications that demand extended lifecycle and long-term support. New Quad-Cores, Ultra-Low 6W TDP Built on four efficient cores (E-cores), the Twin Lake N150 achieves superior performance per watt with a thermal design power (TDP) of only 6W — 50% lower than its predecessor, the Alder Lake N97. This low-power design is especially suitable for large-scale system deployments in factory and retail environments. By cutting CPU power consumption in half, organizations can significantly reduce energy usage, lowering total cost of ownership (TCO) over time. Performance Where It Counts For heavier workloads, the Intel® Core™ 3 Processor N355 provides exceptional value with a max turbo frequency of 3.9GHz and GPU clock speeds up to 1.35GHz. The Twin Lake Octa-core CPU delivers a 10% boost in multi-threaded performance compared to the Alder Lake Core™ i3-N305, while maintaining the same efficient power profile. This performance uplift ensures greater efficiency and value without increasing energy consumption. 10-Year Product Longevity Lifecycle Support Launched in early 2025—two years after Alder Lake-N—the Twin Lake series provides product lifecycle support until 2034. With long-term availability and consistent...
Read moreA major public transport initiative in Finland aimed to modernize its urban bus network to meet the growing demands of smart city infrastructure. To manage over 2,000 vehicles, the transport authority required a comprehensive bus fleet management system to improve punctuality and passenger information accuracy. The project sought to create a future-proof public transport telematics backbone capable of handling real-time tracking and engine diagnostics across a massive metropolitan fleet. Navigating Urban Canyons and Maintaining Fleet Health Operating a large-scale fleet in a modern city presents unique technical hurdles. In “urban canyons” where GPS signals drop, traditional arrival estimates fail. A sophisticated intelligent transportation system (ITS) must overcome these gaps to maintain passenger trust. Additionally, the operator struggled with reactive maintenance; without vehicle tracking and diagnostics, buses often suffered from unexpected breakdowns in the harsh Nordic climate. Data-Driven Efficiency for Large-Scale Transit Beyond positioning, the city needed a fleet visibility solution that could bridge the gap between mechanical systems and the central office. The goal was to move toward a predictive model, using actual telemetry to determine servicing needs. Given the scale of 2,000 units, the reliability of this connected bus technology was paramount to prevent logistical headaches and service gaps. The Solution: VBOX-3132 with Dead Reckoning and CANbus The VBOX-3132 was implemented as the core computing unit for the fleet. Its standout feature is the optional Dead Reckoning support, which ensures accurate positioning even when satellite signals are obstructed. Furthermore, the system’s CANbus support enabled continuous engine monitoring, while its expandable wireless architecture allows for the integration of high-speed 5G modules, providing a high-speed backbone for real-time data synchronization. 100% Visibility and a 15% Reduction in...
Read moreIn Finland’s precision logistics and heavy-duty transport sectors, including waste management and forestry, real-time on-board weighing systems play a critical role in regulatory compliance and billing accuracy. Vehicles operate across rugged terrain and extreme weather conditions, requiring a reliable in-vehicle computer capable of capturing and transmitting weight data instantly from the vehicle to centralized back-office systems. To support these requirements, the customer sought a compact, rugged in-vehicle computing solution designed for continuous operation in harsh mobile environments. Operational Accuracy for Heavy-Duty Transport in Extreme Environments Maintaining operational accuracy in heavy-duty transport is particularly challenging in Nordic regions such as Finland, where vehicles are exposed to sub-zero winters, rough roads, and long operating cycles. Accurate weight measurement must occur at the point of operation and be transmitted without delay to support compliance, reporting, and invoicing. Any system instability, data loss, or transmission delay can directly impact logistics efficiency and revenue performance. Limited Space, Harsh Conditions, and Delayed Data Flow Deploying an on-board weighing system introduced several technical challenges. Driver cabins were already crowded with existing vehicle electronics, leaving minimal space for traditional industrial PCs. At the same time, onboard computing hardware had to withstand constant vibration, shock, and wide temperature fluctuations without failure. Manual recording of weight data further created data silos, increasing the risk of human error and delaying invoicing due to the lack of real-time data transmission. Compact In-Vehicle Computing with Seamless Sensor Integration The customer selected the VBOX-3132 in-vehicle computer for its ultra-compact form factor, enabling seamless installation in space-constrained vehicle cabins. Its multi-functional I/O, including LAN and serial ports, allowed direct integration with on-board weight sensors. The system features versatile wireless expansion options, supporting...
Read moreTaipei, Taiwan, December 18, 2025 – SINTRONES Technology Corp. (TWSE 6680), a global leader in edge AI computing, highlights its VBOX-3132 series, a compact in-vehicle computer engineered for seamless installation in space-constrained environments such as industrial cabinets. Engineered for reliability in harsh conditions, this edge computing solution features hardware expandability, flexible connectivity, and a modular, customizable design, making it the ideal choice for diverse industrial and transportation applications. Seamless Integration into Industrial Environments Designed for easy installation, this space-saving and portable computer supports both wall and DIN-rail mounting while consolidating most I/O ports on one side to maximize space efficiency and streamline cable management. With its versatile mounting options and compact design, the VBOX-3132 series fits effortlessly into constrained spaces, especially suited for deployment in NEMA enclosures or transport vehicles. Scalability and Connectivity for Smart Surveillance and Transportation Featuring Intel Atom® x7000RE Amston Lake CPU with extended temperatures that can operate reliably in industrial environments, SODIMM DDR5 memory, and two M.2 2280 slots for two NVMe SSDs to fulfill storage expansion needs, the VBOX-3132 series is scalable to handle increasing data loads without performance degradation. In terms of multi-connectivity, the industrial-grade computer provides one 2.5GbE uplink port for efficient data transfer to reduce network congestion, plus four PoE Ethernet ports for IP cameras, LiDAR, or other peripherals connections to increase situational awareness. Additionally, with the built-in CAN 2.0 port, which plays a vital role in seamless integration and communication within vehicles, the VBOX-3132 series is tailored for intelligent transportation and surveillance applications that require real-time video recording and playback, object detection and tracking, data analytics and decision-making. Versatile Design to Fulfill Diverse Needs The VBOX-3132...
Read moreTaipei, Taiwan, May 19, 2025 – SINTRONES Technology Corp. (TWSE 6680), a leader in edge AI applied computing, will showcase its cutting-edge innovations at COMPUTEX 2025. The exhibition will highlight three key aspects of edge AI advancements: rugged IP66 solutions, GPU-accelerated computing, and vision-enabled applications. Additionally, SINTRONES will present its latest breakthroughs in in-vehicle computing performance and its ongoing advancements in display computing technologies. Must-See Live Demos: Rugged IP66 Edge AI By simulating real-world environments, the water-resistant and dustproof IBOX-650P-IP66 will reveal its exceptional ruggedness in hostile environments while showcasing advanced AI performance powered by the NVIDIA® Jetson AGX Orin™ module, delivering up to 275 TOPS for real-time video analytics and problem-solving. This makes it an ideal solution for outdoor traffic monitoring, traffic flow optimization, and transportation efficiency enhancements. GPU-Accelerated AI Vision The ABOX-5220, featuring the Raptor Lake-S Refresh i9-14900T processor and Intel® Arc™ A370E, will demonstrate high-precision anomaly detection and time-sensitive alert notification using OpenVINO™ AI inference deployment. With its AI-accelerated GPU, the ABOX-5220 enables instant edge-based decision-making, making it an optimal choice for industrial automation, mobile surveillance, and security inspection systems. Machine Vision Solutions SINTRONES has teamed up with industry players to ensure smooth machine vision integration within its embedded systems. The industrial-grade edge AI computer, IBOX-601-M12X, capable of delivering real-time and high-bandwidth video transmission and analytics, will work in tandem with oToBrite’s GMSL-2 automotive-grade cameras to perform the AI-driven monocular depth estimation task, trying to predict the depth information of a scene from the captured image, making it a top choice for Advanced Driver-Assistance Systems (ADAS) and in-vehicle infotainment. Additionally, SINTRONES will showcase the EVERPRECISION soldering (spot welding) robot that utilizes its embedded computer...
Read more