Standardized real-time industrial Ethernet for Industry 4.0 with integrated time-sensitive network (TSN)
Nuremberg, Germany, March 14, 2017 (Embedded Systems Show 2017) – NXP SemiconductorsTM NV (NASDAQ: NXPI) today announced today as the world's leading provider of advanced connectivity solutions The latest QorIQ® Layerscape SoC (LS1028A). The LS1028A is manufactured to IEEE 802.1 standards and integrates time-sensitive network (TSN) functionality.
Industrial OEM Design Solutions In order to implement Industry 4.0, an operational technology (OT) domain must be integrated with an information technology (IT) infrastructure. However, OT networks require guaranteed, timely packet transmission rather than the best method commonly used in today's IT networks. At the same time, the technology currently used in the OT domain is usually limited to 10-100 Mbps transmission rate, and its bandwidth is not enough to support the needs of new manufacturing technologies, such as high-definition video. Time-sensitive networks support legacy IT and OT devices in the same network and provide gigabit bandwidth while simplifying network deployment and management processes.
NXP LS1028A
To provide deterministic Ethernet for industrial applications, the IEEE defines TSN to support real-time, reliable networks. TSN network technology is ubiquitous, representing the next step of Ethernet development. Ethernet supporting TSN plays an important role in the development of the Internet of Things and Industry 4.0. GE predicts that by 2020, the industrial Internet market will reach $225 billion.
Based on NXP's Layerscape family of SoCs, the LS1028A adds many important features, including an upgraded 64-bit ARM® Cortex v8 processor core, integrated 3D GPU and LCD controller, 4-port TSN switch and 2 independent TSNs. Ethernet controller. Combined with time-sensitive networks and GPUs, SoCs can manage industrial human-machine interfaces and control applications. Built on NXP's trusted architecture, the LS1028A provides a root of trust, secure applications and services. Designed to support TSN bridge applications and TSN terminal applications, and enjoy a 15-year manufacturing life commitment.
Noy Kucuk, vice president of NXP's Digital Network Products Division, said: "TSN is the foundation of Industrial IoT and Industry 4.0, enabling the convergence of information networks and operational technology networks. The LS1028A is built on NXP's decades of industry experience and can be used to solve Serious challenges including processing, connectivity and low power design."
Robust reference design platform for fast productionOEMs can now begin to develop TSN-enabled systems using NXP's TSN reference design platform, speeding up prototyping and deploying next-generation industrial solutions. This reference design platform provides four Gigabit Ethernet TSN switch ports with the processing and security features of the NXP Layerscape processor. The platform uses the industry's open source Linux SDK to provide real-time performance, TSN configuration support, and IEEE 1588 precision time protocol. Developers can take advantage of the SDK's configuration software to quickly demonstrate the pros and cons of TSN time-sensitive networks. Applications written by the developer for the reference design platform are forward compatible with the LS1028A SoC through standard APIs.
Time to market· For more information on the LS1028A, visit nxp.com/LS1028 or contact an NXP sales representative.
· NXP will participate in the 2017 Embedded Systems Show and showcase the TSN reference design platform at the NXP booth (4A-220), which is currently available. For more information, please visit LS1021ATSN.
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(1) Low-voltage micro power consumption
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(5) Easy to colorize (reproduce very accurately on the chromatogram)
(6) No electromagnetic radiation (safe for the human body, conducive to information confidentiality)
(7) Long life (this kind of device has almost no deterioration problem, so the life is extremely long, but the life of the LCD backlight is limited, but the backlight part can be replaced)
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