Acrosser Purley’s new platform combines multiple platform innovations and integrates performance enhancement technologies

In response to the rising of artificial intelligence (AI), high-definition audio and video streaming and online live broadcast, data high-speed computing and transmission applications, Intel and AMD have launched a new generation of server platform products, including Intel’s next-generation Xeon® scalable processor family – Purley CPUs which are based on the Skylake-SP architecture and planned to replace the previous both Xeon® E5 and E7 processors powered by Broadwell microarchitecture.

Purley’s new platform combines multiple platform innovations and integrates performance enhancement technologies, including Intel AVX-512, Intel MESH architecture, Optane Solid State Drive (SSD) and Omni-Path Fabric fiber optic transmission technology. Purley’s new platform also supports existing and emerging data center and network workloads, including cloud computing, high-performance computing, and artificial intelligence, etc. The evolving data center and network infrastructure are designed to deliver the industry’s highest energy efficiency and system-level performance. Its average performance is 1.65 times higher than the previous generation. Performance of Xeon® expandable processor is 2.2 times more efficient than the previous generation under the ever-increasing workload of artificial intelligence.

Acrosser Technology now is providing customers the Purley’s new platform network appliances, the Acrosser first 2U IoT Rackmount Server: ANR-C627/622N1. Positioned as powerful network appliances, ANR-C627/622N1 equipped with the latest generation Intel® Xeon® Scalable processors are perfect for IoT Gateway, Edge Computing (EC), Cloud, Next Generation Firewall (NGFW), IPS/IDS, Security Gateway (Se-GW), Unified Threat Management (UTM) and Network Functions Virtualization (NFV). As excellence network appliances, ANR-C627/622N1 series support dual-socket Intel® Xeon® Scalable processors, 24* RDIMM/LRDIMM DDR4-2666, dual onboard SFP+ (10G fiber) and 8* Expandable Network Interface Modules (NIMs) for 1G/10G/40G (fiber/Copper/Bypass) various options. Strong networking ability can meet most of enterprise-class customers’ needs.

Acrosser had committed its valuable resources to further develop its advanced network product lines. Furthermore, Acrosser is now working directly with Intel, as part of Intel IoT Solutions Alliance, in order to be able to offer its customers first-to-market services, the latest technologies, and solutions in a timely manner. As a member of Intel IoT Solutions Alliance, Acrosser is able to directly obtain valuable resources in providing high quality and stable performance products/solutions to its customers, vis-à-vis non-IoT-Alliance-members.

For pricing and availability, please send your inquiry at http://www.acrosser.com/inquiry.html

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Network appliance, 3.5″ SBC, in-vehicle computer, Embedded computer, Embedded Mini-ITX board

Acrosser Announced New Apollo Lake Network Appliances: AND-APL1N1FL

In order to provide customer more choices in entry-level network solution, today ACROSSER Technology, a world-leading network appliance supplier, proudly revealed its latest micro box fan-less network appliance –AND-APL1N1FL series.

The fan-less micro box network appliance, AND-APL1N1FL, can offer the utmost connectivity with a compact form factor at dimensions 280 x 209 x 44 mm (11.02” x 8.23” x 1.73”). In addition, AND-APL1N1FL also supports 3-pair LAN bypass for Ethernet connection and provides a luxurious set of I/O, including one mini PCIe slot to support WiFi or 4G, three USB3.0 ports on the rear panel, one console port (RJ45), 8-bit GPIO on-board pin header, and one SATA III port or mSATA socket. Rich I/O ports and drive bays are designed for easy access and maintenance.

AND-APL1N1FL, with compact size and reasonable cost, is the perfect solution for small office network solution, UTM, mail server and firewall applications.

AND-APL1N1FL Specifications:

  1. Intel® Apollo Lake SoC J-series/N-series/E-series
  2. 1 x SO-DIMM DDR3L-1866 MHz, up to 8GB
  3. 6 x GbE, 3 x USB
  4. 1 x Mini PCIe Socket
  5. 8 x GPIO

Product introduction video please refers to:

https://www.youtube.com/watch?v=1JymTQfSXsY&feature=youtu.be

This new Apollo Lake network appliance: AND-APL1N1FL is designed with customers looking for a cost-effective niche solution in mind. Samples are available upon request; please contact us via the online inquiry system:

http://www.acrosser.com/inquiry.html

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Network appliance, 3.5″ SBC, in-vehicle computer, Embedded computer, Embedded Mini-ITX board,

 

Acrosser is able to directly obtain valuable resources in providing high quality and stable performance products/solutions to its customers, vis-à-vis non-IoT-Alliance-members.

ACROSSER Technology latest network applianceAND-DNV3N2, which equipped with Intel® Atom C3558 Denverton-NS Platform and 2x SO-DIMM DDR4, 6x GbE, 2x USB 3.0, 2x Mini PCIe(One support SIM card socket),1x 2.5″ SSD and TPM 2.0 for a secure cryptoprocessor. This optimized system design allows network systems to function in a small footprint and form factor. In this particular size, the AND-DNV3N2 is a great alternative for the budget-conscious buyers. This cost-effective network security appliance can offer stable performance with low power consumption; and is suitable in multiple security applications including: network intrusion prevention, content filtering, data leak prevention, VPN, unified threat management (UTM) and SD-WAN solutions.

Major AND-DNV3N2 Specification:
1.Intel® Atom C3558 Denverton-NS Platform
2. 4-Core SoC
3. 2x SO-DIMM DDR4
4. 6x GbE, 2x USB 3.0
5. 2x Mini PCIe, One support SIM card socket
6. 1x 2.5″ SSD,
7. TPM 2.0

AND-DNV3N2  product vidoe ==> Here

Acrosser had committed its valuable resources to further develop its advanced network product lines. Furthermore, Acrosser is now working directly with Intel, as part of Intel IoT Solutions Alliance, in order to be able to offer its customers first-to-market services, the latest technologies, and solutions in a timely manner. As a member of Intel IoT Solutions Alliance, Acrosser is able to directly obtain valuable resources in providing high quality and stable performance products/solutions to its customers, vis-à-vis non-IoT-Alliance-members.

For pricing and availability, please send your inquiry at http://www.acrosser.com/inquiry.html

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Network appliance3.5″ SBCin-vehicle computerEmbedded computerEmbedded Mini-ITX board,

Whether it is the web server, mail server, UTM or any other network application platform



April 11, 2017, Taipei– Acrosser Technology Co., Ltd. (Acrosser) proudly announces its first new product in 2017, the ANR-C236N1, a powerful 1U rackmount server with unique Dual-Protection feature which allows simultaneously supporting both hot swappable HDD/SSD and the highly-effective redundant power supply. This Dual-Protection can eliminate unnecessary failures, reduce the chance of system errors, and improve server efficiency, as well as the IT staff efficiency.

Whether it is the web server, mail server, UTM or any other network application platform, stability and reliability are absolutely the first 2 priority considerations for buyers. Even for a short period, mechanical failure will cause great loss in business.
To meet these needs, the new and powerful Acrosser ANR-C236N1 series server comes with its unique Dual-Protection feature which protects your server/network to run safety 24/7. The ANR-C236N1 is equipped with a hot-swappable HDD/SSD for RAID 0/1 which allows your IT staff to remove the malfunctioning HDD/SDD without shutting down the machine, thereby eliminating machine downtime. The other feature of Dual-Protection is the ANR-C236 is also equipped with 1+1 redundant power supply units (RPSU) which avoids the unexpected power failure and increase the power supply product life by balancing the power output.


In addition to the Acrosser unique Dual-Protection, this brand new rackmount server comes with the latest Intel® server chipset C236 PCH, which supports the latest Intel® Xeon® E3-1200 V5 server processor, and the 6th generation CPU Skylake-S Core i7/i5/i3/Pentium series. Moreover, the ANR-C236N1 designed for Skylake-S is forward compatible with Intel® 7th generation CPUKabylake
In addition, the ANR-C236N1 series provides a more flexible server platform & system expansion versatility with 12x GbE copper LANs (4-pair bypass), 2x 10G fiber networks (SFP+) , 1 x expandable network interface modules (Exp. NIM), 1 Console, 2x USB 3.0, 2 x USB 2.0, 1x HDMI and 1 x Exp. PCIe slot. Furthermore, ANR-C236N1 series is equipped with an LCM display which shows 100 x 16 Pixels in Graphic Mode and 16-character x 2-line in Character Mode. In the power system, a set of 1+1 redundant power supply units (RPSU) come with AC-IN (100~ 240V) , enabling reliable options for system recovery. The ANR-C236N1 power system comes with a special Smart Fan System which increases or decreases fan speed to develop efficient and cost-effective power systems.


Acrosser had committed its valuable resources to further develop its advanced network product lines. Because of these efforts, the ANR-C236N1 had developed as a perfect service/network machine for most business networking applications. Acrosser Technology not only provides products with high reliability and availability, but also networking appliances and products with the best scalability and manageability in the industry. Acrosser Technology is your best choice for building servers and workstations in today’s workplace.


For more information about this ANR-C236N1 1U rackmount server, please check our youtube channel:
https://www.youtube.com/watch?v=aXvC7PIeoOs

For more product information, or asking the price of this brand new product,  please receive a product quote RIGHT NOW!
http://www.acrosser.com/inquiry.html

Acrosser, is 100% committed to providing its OEM/ ODM/ JDM and end-user clientele with high-quality innovative embedded computer solutions and networking appliances for shorter time-to-market and in achieving higher competence to win business opportunities in the market place.

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Network appliance, 3.5″ SBC, in-vehicle computer, Embedded computer, Embedded Mini-ITX board,

It is expected that the market value of embedded systems will reach USD 3.05 billion by year 2020

According to the latest report from market research firm HIS-Markit, in 2015 the market value of embedded computer systems had reached USD 2.54 billion, with the forecast for the next five years projecting an annual growth rate of 3.7%. It is expected that the market value of embedded systems will reach USD 3.05 billion by year 2020. Moreover, the said report also mentioned that the overall market trend   is that system type tends to be miniaturized in order to align with the vast number of potential demands created by the latest microprocessors.

At the same time, IHS-Markit’s report also included the traditional system motherboard form such as the xTCA in 2015, with a decline in revenue of 13%, while in the next five years showing decline at an annual rate of -11%. In the future, market demand will be very different with the various types of embedded system motherboards. Prior to year 2025, driven by demands from industrial automation and industry 4.0, COM form of the motherboard will be the most popular program, with the market growth rate in the next five years expected up to 8.6%. Noteworthy to mention is that these small size modules are specifically suitable for limited spaces, while still being highly flexible, thereby making these the perfect solution for medium to large projects. There is also a substantial increase for other standard computer motherboards (such as Micro ATX, Mini ITX …) due to the increasing demands for industrial automation. In the next five years, the annual growth rate for these boards is expected as high as 7.7%.

Acrosser offers customers a variety of highly flexible design embedded system motherboards, including COM Express motherboard and Mini ITX motherboard. The Acrosser AMB-HM76B1 COM Express board supports COM Express type 6 and Intel CPU from Celeron to Core i7. Meanwhile, AMB-HM76B1COM Express also supports unique fanless design, which can enhance system stability and meet the customers’ needs of continuous line test. Acrosser Mini ITX motherboard solution includes high to low-level models and all kinds of platforms that provide customers with diverse computing options and fulfill customers’ needs and requirements.

The Acrosser Mini ITX motherboard solutions:

Acrosser Intel SoC platform product line includes AMB-BS3T1 which supports latest 14nm Intel Brasewell Celeron N3150 and AMB-BT45B1 and AMB-BT18T2, which support Intel Bay Trail series Atom E3815 to Celeron J1900 CPU. Besides, Acrosser AMB-IH81T1 supports CPU from Celeron, Pentium to Core i7.

Acrosser AMD CPU platform product line includes AMB-A55ET1 which supports AMD Dual Core T56N APU, low power consumption, high-precision graphics processing, and high-resolution display for up to four independent monitors.

For more information about our embedded systems, please check our website at: http://www.acrosser.com/Products/Embedded-Computer.html

http://www.acrosser.com/Products/Single-Board-Computer.html

Acrosser, is 100% committed to providing its OEM/ ODM/ JDM and end-user clientele with high-quality innovative embedded computer solutions and networking appliances for shorter time-to-market and in achieving higher competence to win business opportunities in the market place.

For more product information, please receive a product quote RIGHT NOW! http://www.acrosser.com/inquiry.html

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Latest information for car pc choices

With the first car makers committing to the MOST150 network in selected vehicles from 2011. The new Intelligent Network Interface Controller (INIC) In-Vehicle computers architecture complies with Specification Rev. 3.0 and expands the audio/video capability for next generation automotive infotainment devices such as Head Units, Rear Seat Entertainment, Amplifiers, TV-Tuners and Video Displays. The MOST Cooperation – the organization through which the leading automotive multimedia network Media Oriented Systems Transport (MOST) is standardized – proudly announces that the newest Specification Rev. 3.0 is on its way to production. Various In-Vehicle computers  have already started with first series projects implementing this latest MOST Technology. MOST150 enables the use of a higher bandwidth of 150 Mbps, an isochronous transport mechanism to support extensive video applications, and an embedded Ethernet channel for efficient transport of IP-based packet data. It succeeds in providing significant speed enhancements and breakthroughs while keeping costs down.

refer to: http://embedded-computing.com/news/most150-series-adoption/

The coming of 4th generation Intel® Core™ processors

The 4th generation Intel® Core™  processors

The 4th generation Intel® Core™ processors serve the embedded computing space with a new microarchitecture which Kontron will implement on a broad range of embedded computing platforms. Based on the 22 nm Intel® 3D processor technology already used in the predecessor generation, the processors, formerly codenamed ‘Haswell’, have experienced a performance increase which will doubtlessly benefit applications. Beside a 15% increased CPU performance especially the graphics has improved by its doubled performance in comparison to solutions based on the previous generation processors. At the same time, the thermal footprint has remained practically the same or has even shrunk.

These improvements and the high scalability from cost-optimized Celeron® versions up to high-end Intel® Core™ i7 and Xeon® processors make the new Intel® Core™ microarchitecture a perfect match for nearly each and every mid-range to high-end embedded applications. In a first step Kontron has implemented the new microarchitecture on COM Express®, Mini-ITX, 6U CompactPCI®, and the Kontron SYMKLOUD Media cloud platforms with further platforms to follow. So, in what way can embedded appliances benefit from these improvements?

refer to: http://embedded-computing.com/white-papers/white-intelr-coretm-processors/

 

On operating system developments…

Fanless embedded system, 	in vehicle pc, Industrial PC
Fanless embedded system, in vehicle pc, Industrial PC

 

Software architects designing critical embedded systems have tough choices to make when selecting an operating system. Decisions can be both simplified and complicated with new framework and platform initiatives coming into being.

 

Operating systems that control critical embedded systems have many stringent requirements that they must be able to address in order for them to be considered for deployment. There will always be debate about the best operating systems to deploy in critical applications. However, improvements in real-time operating capabilities in Windows and Linux have opened up the door to options in addition to traditional Real-Time Operating Systems(RTOSs).

 

refer: http://vita-technologies.com/articles/operating-impact-critical-systems/

 

 

IT managers are under increasing pressure to boost network capacity and performance

IT managers are under increasing pressure to boost network capacity and performance to cope with the data deluge. Networking systems are under a similar form of stress with their performance degrading as new capabilities are added in software. The solution to both needs is next-generation System-on-Chip (SoC) communications processors that combine multiple cores with multiple hardware acceleration engines.

In-Vehicle Computer. single board computer, Industrial PC

The data deluge, with its massive growth in both mobile and enterprise network traffic, is driving substantial changes in the architectures of base stations, routers, gateways, and other networking systems. To maintain high performance as traffic volume and velocity continue to grow, next-generation communications processors combine multicore processors with specialized hardware acceleration engines in SoC ICs.

The following discussion examines the role of the SoC in today’s network infrastructures, as well as how the SoC will evolve in coming years. Before doing so, it is instructive to consider some of the trends driving this need.

 

1.Networks under increasing stress

2. Moore’s Law not keeping pace

3. Hardware acceleration necessary, but …

4.Next-generation multicore SoCs

refer:http://embedded-computing.com/articles/next-generation-architectures-tomorrows-communications-networks/

 

Real-time and general-purpose

 

embedded system, in vehicle pc, Industrial PC

Virtualization for embedded systems has many implementations in which two or more operating systems coexist to gain the benefits of each. One approach puts Microsoft Windows and a Real-Time Operating System (RTOS) together.

 

Much is being said about virtualization these days in the softwareworld. Simply stated, virtualization is about getting multiple OSs to run on the same computing platform at the same time. Virtualization has been cited as a key technology for getting the most performance out of the newest multicore processors. But just as not all computing applications are the same, not all virtualization approaches are appropriate for all applications.

Embedded systems have a key requirement that doesn’t normally apply to office and server computers: the need for deterministic response to real-time events. To support the requirement for determinism, embedded applications typically use RTOSs. Embedded applications also employ general-purpose OSs to handle operator interfaces, databases, and general-purpose computing tasks.

In the past, because OSs couldn’t successfully co-reside on computing platforms, system developers employed multiple processing platforms using one or more to support real-time functions and others to handle general-purpose processing. System designers that can combine both types of processing on the same platform can save costs by eliminating redundant computing hardware. The advent of multicore processors supports this premise because it is possible to dedicate processor cores to different computing environments; however, the software issues posed by consolidating such environments require special consideration. Combining real-time and general-purpose operating environments on the same platform (Figure 1) places some stringent requirements on how virtualization is implemented.

 

refer: http://embedded-computing.com/articles/real-time-general-purpose-unite-via-virtualization/