ADLINK Unveils Innovative IMB-C Value Series ATX Motherboards, Revolutionizing Computing


July 18, 2024 by our News Team

ADLINK Technology Inc. has released the IMB-C Value Series of ATX motherboards, featuring a range of processor options and essential features, providing a cost-effective alternative to their high-performance IMB-M series for industrial applications.

  • Wide range of processor options, from Gen 10 to Gen 14 Intel Core i9/i7/i5/i3
  • Features like 2.5 Gbe, PCIe 4.0, DDR4, and USB 3.0 for solid performance
  • Cost-effective alternative to high-performance IMB-M series without compromising essential features


ADLINK Technology Inc., a leading player in the world of edge computing and a global supplier of industrial PCs and motherboards, has just unveiled its latest offering: the IMB-C Value Series of ATX motherboards. This new series aims to provide users with high-performance options at a more affordable price point, expanding the already impressive IMB series motherboard range.

So, what sets the IMB-C Value Series apart? Well, for starters, these motherboards come with a range of processor options, from Gen 10 to Gen 14 Intel Core i9/i7/i5/i3. This means that whether you’re working on warehousing, industrial automation, smart manufacturing, or new energy applications, there’s a processor option that suits your needs. But that’s not all – these motherboards also boast features like 2.5 Gbe, PCIe 4.0, DDR4, and USB 3.0.

The IMB-C series is designed to be a cost-effective alternative to the high-performance IMB-M series. It’s tailored for budget-sensitive projects without compromising on essential features. These models support DDR4 and PCIe 4.0, making them perfect for applications that require solid performance without breaking the bank. On the other hand, the IMB-M series is all about top-tier performance, supporting DDR5 and PCIe 5.0 – ideal for cutting-edge industrial use.

Let’s dive a little deeper into the specifics. The IMB-C series offers a comprehensive portfolio of motherboards, ranging from Intel’s 10th to 14th Gen processors. For example, the IMB-C46 and IMB-C46H models are equipped with the Q470 and H420E chipsets respectively, optimized for 10th Gen Intel Core processors. If you’re looking for something even more advanced, there’s the IMB-M47 with the Q670 chipset and the IMB-M47H with the H610 chipset, both supporting the 12th to 14th gen Intel Core processors.

“The IMB-C series broadens our ATX motherboard lineup to include budget-conscious models that maintain our standard for durability without the hefty price tag,” said HC. Lin, ADLINK’s Product Manager of Edge Computing Platforms BU. “By leveraging the latest technology with more conservative specifications, we’ve achieved an optimal balance. The series includes essential features for industrial applications—such as PCIe, 2.5GbE, and a range of Intel Core processors—while keeping costs low with DDR4 and PCIe 4.0. These choices ensure our customers can access high-quality, cost-effective solutions that are also fully compatible with ADLINK’s pre-validated expansion cards, paving the way for future innovations in edge computing.”

What does all this mean for you? Well, it means that the ADLINK IMB-C series of industrial ATX motherboards offers cost-effectiveness without sacrificing performance. These motherboards are fully compatible with ADLINK’s range of pre-validated expansion cards for motion, vision, and I/O, making system integration a breeze and speeding up deployment. And don’t worry about cutting-edge options – the IMB-C Value Series focuses on well-established technology to ensure reliability and effectiveness.

With support for Intel Core processors from the 10th to 14th generations, PCIe x16 slots, multiple PCI or PCIe slots, up to 128 GB of DDR4 memory, 2.5 GbE LAN, and AI enablement, the IMB-C series is here to boost productivity and drive innovation in Edge AI applications.

So, whether you’re working on a tight budget or looking for top-tier performance, ADLINK has got you covered with their IMB-C Value Series. These motherboards offer the perfect balance of affordability and functionality, allowing you to take your industrial applications to the next level.

ADLINK Unveils Innovative IMB-C Value Series ATX Motherboards, Revolutionizing Computing

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Background Information


About Intel: Intel Corporation, a global technology leader, is renowned for its semiconductor innovations that power computing and communication devices worldwide. As a pioneer in microprocessor technology, Intel has left an indelible mark on the evolution of computing with its processors that drive everything from PCs to data centers and beyond. With a history of groundbreaking advancements, Intel's relentless pursuit of innovation continues to shape the digital landscape, offering solutions that empower businesses and individuals to achieve new levels of productivity and connectivity.

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Technology Explained


ATX: ATX (Advanced Technology eXtended) is a type of motherboard form factor that has become the standard in the computer industry. It was first introduced in the mid-1990s and has since evolved to become the most widely used form factor for desktop computers. The main purpose of ATX is to provide a standardized layout for computer components, making it easier for manufacturers to design and produce compatible parts. This has led to a more efficient and cost-effective production process, resulting in more affordable and reliable computers for consumers. Additionally, the ATX form factor allows for better airflow and cooling within the computer, which is crucial for maintaining optimal performance. Overall, ATX technology has greatly contributed to the advancement of the computer industry by providing a universal standard for computer components and improving the overall functionality and reliability of computers.


DDR4: DDR4 is a generation of Double Data Rate (DDR) dynamic random access memory (RAM) technology. It is a type of RAM that utilizes a higher clock frequency and is more power-efficient than its predecessors. As a result, it is capable of processing data more quickly than other RAM in the computer industry. Its increased speed and power efficiency are beneficial for applications such as gaming, rendering, and machine learning. It is designed for high-performance computing and enables faster access to stored information, resulting in better overall performance for the user. Furthermore, because of its low voltage requirements it requires less power consumption, making it an attractive option for many computer systems. DDR4 is set to become the primary RAM in most computer systems as the industry transitions away from its predecessors.


DDR5: DDR5 (Double Data Rate 5) is the next generation of memory technology for the computer industry. It is a modern day improvement on earlier DDR technologies, with faster speeds, greater bandwidth and higher capacities. DDR5 enables higher resolution, seamless gaming experiences and faster data transfer rates, making it an ideal choice for high-performance computing and 4K gaming. With its greater RAM compatibility, DDR5 provides faster buffering times and raised clock speeds, giving users an improved overall work system. DDR5 is also optimized for multi-tasking, allowing users to multitask without experiencing a significant drop in performance, increasing the productivity of digital tasks. As an ever-evolving technology, DDR5 is paving the way for the computer industry into a new and powerful era.


PCIe: PCIe (Peripheral Component Interconnect Express) is a high-speed serial computer expansion bus standard for connecting components such as graphics cards, sound cards, and network cards to a motherboard. It is the most widely used interface in the computer industry today, and is used in both desktop and laptop computers. PCIe is capable of providing up to 16 times the bandwidth of the older PCI standard, allowing for faster data transfer speeds and improved performance. It is also used in a variety of other applications, such as storage, networking, and communications. PCIe is an essential component of modern computing, and its applications are only expected to grow in the future.





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