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2018年10月17日 星期三

Data high-speed computing and transmission applications, Intel and AMD have launched a new generation


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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2013年9月10日 星期二

Keep it up with micro enhancement


To keep up with the increasing sophistication of factory equipment, Human Machine Interfaces (HMIs) need to deliver sophisticated 2D and fanless embedded systems, video, and other media types that clearly communicate a machine’s status and intended operation. Advanced visuals are also important in central control rooms, where solutions management needs to understand increasingly complex and distributed Internet of Things-enabled systems at a glance. They work in harsh environments, and they get little or no recognition. But their impact on power plant efficiency can be significant. Valves and actuators are critical in almost every aspect of single board computer.

refer to:

2013年8月26日 星期一

Actuator solutions in power plant

In the most frequently used duty, the Contrac actuator follows an technology analogue setpoint signal in continuous operation. As the torque or force increases or decreases smoothly, the mechanical components are not subjected to load peaks. This technology facilitates long service intervals and a long service life of the actuator and actuating element. In this material-friendly duty, Contrac systems can also be operated when control commands are received as embedded systems pulses from a step controller. In this way, the embedded systems user can benefit from these unique operating features even in older plants, which frequently still use step control or simple open-closed commands. Torques and forces can be set independently of each other as well as the direction of motion. This can either be set via single board computer or a torque/force characteristic curve. The speed settings are made in a similar manner.


refer to: http://www.power-eng.com/articles/print/volume-117/issue-8/features/opportunities-to-improve-efficiency.html

2013年7月30日 星期二

Reviews from the embedded system user



Much of the content will be based around the embedded computers development and validation of Autosar compliant code and the development of code for specific devices such as the BOSCH GTM, the AURIX and Freescale's Nexus based Qorivva solutions. Some of the presentations will also touch on the debugging of code on multicore systems. Delegates will also have the opportunity to discuss their specific challenges and requirements.

Engineers working in the development of software for automotive embedded computers will have the opportunity to learn about the latest tools and techniques at Lauterbach's September Automotive Forum.

2013年2月25日 星期一

Modular standards extend ARM platform scalability for smart

embedded systems, gaming platform, single board computer

The competitive market for smart, connected devices is heating up, which requires OEMs to stay focused on differentiating their products and getting to market quickly. ARM-based building blocks are enabling OEMs to reallocate the resources needed to find, install, program, and troubleshoot drivers or debug hardware and concentrate instead on their core competencies. With prevalidated platforms that are fully configured and tested to deliver the required interoperability, compatibility, and functionality, OEMs can focus on application development and reuse existing application-specific software on a flexible hardware framework.

It is a dynamic time in the embedded market, as processors and software advancements are breaking down the barriers that once limited the implementation of various computing platforms. In conjunction with these advancements, embedded computing board and module suppliers are continually enhancing their platform portfolios to take advantage of the performance, interface, functionality, and power improvements available with next-generation processor architectures.
The ARM architecture is now viewed as one of the enabling processor architectures for embedded systems because of its ability to provide a true open-systems approach in its support of a broad range of interfaces and much-needed features. ARM also offers competitive performance that is comparable to x86 dual-core processors but at sub 5 W power consumption. This is an attractive combination and a contributing factor as to why more and more smartphone, tablet, and Human-Machine Interface (HMI) subsystem applications in low-power market segments are embracing ARM-based platforms.
The inherent benefits of ARM technology deliver the feature set required in an increasing number of small form factor applications. One former limitation of ARM was the availability of scalable platforms from a growing group of providers that could serve as the basis for efficient development from one generation to the next. The key to ARM technology’s long-term viability is a supportive hardware and software ecosystem that can deliver products providing interoperability and a smooth migration path that embedded systems OEMs can depend on.
Refer:
http://embedded-computing.com/articles/modular-scalability-smart-connected-devices/#at_pco=cfd-1.0

2013年1月29日 星期二

The Intel® Atom™ processor is designed to keep you moving

Network appliance, Console server, single board computer

The Intel® Atom™ processor is designed to keep you moving, whether it’s in a smartphone, embedded application, tablet or microserver.

With an Intel® Atom™ processor-based tablet, you’re going to have one of the lightest tablets around. And you won’t sacrifice performance at all.


 With lead-free and halogen-free manufacturing, the Intel® Atom™ processor is also an environmentally responsible choice.

from
1.http://www.intel.com/content/www/us/en/processors/atom/atom-processor-details.html?wapkw=atom
2.http://ark.intel.com/products/49490

2012年10月16日 星期二

Fanless AR-ES5430FL Embedded System

AR-ES5430FL
Fanless and Dustproof Intel 945GME Embedded System



1. Intel 945GME + ICH7M
2. Support Core 2 Duo/Core Duo/Celeron M
3. VGA/DVI/LVDS/TV-Out
4. Dual Giga LAN
5. PCI-104 Expansion
6. Anti-Shock 2.5" HDD Mounting Kit
7. Audio, USB2.0, IDE, CFII, COM, GPIO, SATA

2012年10月1日 星期一

Embedded and Fanless System

AR-ES6003FL
Fanless and Dustproof Intel Atom D525/D425 Embedded System with PCI and PCIe Expansion Slot

AR-ES6003FL is a fanless embedded system with Intel Atom D525 / D425 which is onboard solution and fanless design. AR-ES6003FL has variety IO like 4 x serial port, 6 x USB, 2 x GbE and PCI Express expansion.

2012年9月25日 星期二

Single-Board-Computer Mini-ITX

AMB-QM77T1
Intel QM77 with Core i7/ i5/ i3 Mini-ITX Motherboard, DDR3-1600, SATA III, USB 3.0, Gen.3 PCIe x16, DVI-D, VGA, COM, GbE, TPM

1. Supports Intel 22nm/ 32nm Intel Core i7/ i5/i3 Mobile processors 2 x 204-pin
2. SO-DIMM sockets support DDR3 1600/1333 SDRAM up to 16GB
3. 3 x COM, 4 x USB3.0, 8 x USB2.0,2 x SATA III, 3 x SATA II, 8-bit GPIO
4. 1 x Gen.3 PCI-E x16, 1 x Mini-PCI-E,1 x CFast

2012年9月4日 星期二

Embedded Computer

Fanless Embedded Computer and Rugged Embedded Computer / Embedded PC / Embedded SBC & Embedded System designed for harsh environment industrial automation applications with heat pipe technology.
Scalable Intel Atom, Celeron, Core i, Core 2 Duo platforms fulfill your various requirements. Flexible expansion: Mini-PCIe, PCIe, PCI, Wi-Fi