BIOSTAR has recently released two new industrial products, the BIELK-PAT mainboard and MS-J6412 applications system, offering exceptional functionality and features for a wide range of industrial use-cases.
- BIELK-PAT mainboard is designed to operate in diverse environments
- MS-J6412 applications system is ideal for fanless embedded systems
- BIOSTAR continues to innovate and deliver high-quality products in the IT industry
GREAT UTILITY FOR INDUSTRIAL HMI SYSTEMS
Biostar, a leading manufacturer of motherboards, Graphics Cards, and storage devices, has recently introduced two new products specifically designed to meet the demands of modern industries. The BIELK-PAT industrial motherboard and MS-J6412 applications system offer exceptional functionality and features for a wide range of industrial use-cases.
The BIELK-PAT mainboard is a versatile and innovative solution. It is designed to operate in diverse environments, with a temperature range of -40ºC to 85ºC and an operational voltage of 9-24V. This makes it suitable for outdoor devices, EV charging stations, kiosks, and refrigerated factories. The mainboard is powered by an Intel Elkhart Lake SoC Processor and offers display outputs via LVDS, HDMI, and VGA. It supports up to 32GB of DDR4 RAM and features 2.5GbE LAN powered by Intel.
In terms of specifications, the BIELK-PAT includes a SATA III and an M.2 slot for storage, as well as multiple USB 2.0 and USB 3.0 ports. It is an excellent choice for system integration builds, particularly for SI businesses looking for hardware synergy with Windows 10 and Linux Ubuntu operating systems.
The MS-J6412 applications system from BIOSTAR is ideal for fanless embedded systems. Despite its compact size, it delivers powerful performance and is well-suited for driving POS systems, interactive kiosks, and interconnected IoT devices across various industries. The system features a sleek, thin design and operates quietly thanks to its innovative fanless design.
The MS-J6412 applications system is equipped with an Intel Celeron J6412 quad-core processor and supports up to 32GB of DDR4 RAM. It offers enhanced network connectivity with Intel 2.5GbE LAN and a range of USB 2.0 and USB 3.0 ports. The system provides graphics display through HDMI and VGA, with exceptional audio-visual quality thanks to the built-in ALC897 audio codec. It also supports multiple operating systems, including Windows 10 Pro, Windows 10 IoT Enterprise 2021, and Linux Ubuntu 20.04.
Both the BIELK-PAT motherboard and the MS-J6412 application system are designed to drive future industrial systems. They offer excellent functionality and features that cater to a wide range of use-case scenarios. These industrial solutions from BIOSTAR are sure to meet the needs of businesses in various industries.
Overall, BIOSTAR continues to innovate and deliver high-quality products in the IT industry. With a strong emphasis on design, marketing, and research and development, BIOSTAR strives to provide solutions that push the boundaries of technology.
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Background Information
About Biostar:
Biostar is a well-established company in the field of motherboards, graphics cards, and industrial computing solutions. With a commitment to innovation and quality, Biostar has been catering to the needs of both casual and professional users since its inception. Their range of products includes high-performance motherboards designed for gaming and content creation, as well as reliable solutions for industrial computing applications.Latest Articles about Biostar
About Intel:
Intel Corporation, a global technology leader, is 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 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.Latest Articles about Intel
Technology Explained
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.
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M.2: M.2, also known as Next Generation Form Factor (NGFF), is a computer expansion card format that is designed to replace the outdated mSATA standard. It is thinner and longer than mSATA, which gives it a much higher data transfer rate. The M.2 format measures 22mm in width and can measure up to 110mm in length. It uses the M-key and B-key connectors to interface with PC host systems, and can connect to both SATA III and PCIe for data transfer. Due to its small size, M.2 is often used for ultra-slim laptops and netbooks, as well as in embedded SSDs for tablets and other mobile devices. It is also becoming increasingly popular in the desktop computer industry, thanks to its compactness and fast transfer speeds. This makes M.2 ideal for gaming PCs, workstations, and other demanding applications that require high levels of data throughput.
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SoC: A System-on-Chip (SoC) is a highly integrated semiconductor device that encapsulates various electronic components, including processors, memory, input/output interfaces, and often specialized hardware components, all on a single chip. SoCs are designed to provide a complete computing system or subsystem within a single chip package, offering enhanced performance, power efficiency, and compactness. They are commonly used in a wide range of devices, from smartphones and tablets to embedded systems and IoT devices, streamlining hardware complexity and facilitating efficient integration of multiple functions onto a single chip.
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