更加關(guān)心您 1756-IF8H 性能高 耐用性強
1756-A13 | 1762-IF2OF2 | 1763-L16AWA | 1769-AENTR | 1771-BA | 1784-PCICS |
1756-A17 | 1762-IF4 | 1763-L16BBB | 1769-ARM | 1771-CAD | 1784-PCIDS |
1756-A4 | 1762-IQ16 | 1763-L16BWA | 1769-ASCII | 1771-CAS | 1784-PKTCS |
1756-A7 | 1762-IQ32T | 1763-L16DWD | 1769-BA | 1771-CD | 1784-PKTX |
1756-BA1 | 1762-IQ8 | 1763-MM1 | 1769-ECL | 1771-CE | 1784-PKTXD |
1756-BA2 | 1762-IQ8OW6 | 1763-NC01 | 1769-ECR | 1771-CFM | 1784-U2CN |
1756-BATA | 1762-IR4 | 1766-L32AWA | 1769-HSC | 1771-CFMK | 1784-U2DHP |
1756-BATM | 1762-IT4 | 1766-L32AWAA | 1769-IA16 | 1771-HD | 1784-U2DN |
1756-CFM | 1762-L24AWA | 1766-L32BWA | 1769-IA8I | 1771-HDP | 1785-ENET |
1756-CN2 | 1762-L24AWAR | 1766-L32BWAA | 1769-IF16C | 1771-HODS | 1785-L20B |
1756-CN2R | 1762-L24BWA | 1766-L32BXB | 1769-IF16V | 1771-HRA | 1785-L20E |
1756-CNB | 1762-L24BWAR | 1766-L32BXBA | 1769-IF4 | 1771-HS3A | 1785-L40B |
1756-CNBR | 1762-L24BXB | 1766-MM1 | 1769-IF4I | 1771-HS3CR | 1785-L40C |
1756-CP3 | 1762-L24BXBR | 1768-CNB | 1769-IF8 | 1771-HSAR | 1785-L40C15 |
1756-CPR2 | 1762-L40AWA | 1768-CNBR | 1769-IG16 | 1771-HSARS | 1785-L40E |
1756-DH485 | 1762-L40AWAR | 1768-ENBT | 1769-IM12 | 1771-HSN | 1785-L60B |
1756-DHRIO | 1762-L40BWA | 1768-EWEB | 1769-IQ16 | 1771-HT | 1785-L60L |
1756-DNB | 1762-L40BWAR | 1768-KY1 | 1769-IQ16F | 1771-HT3 | 1785-L80B |
1756-EN2F | 1762-L40BXB | 1768-L43 | 1769-IQ32 | 1771-HTE | 1785-L80C |
1756-EN2T | 1762-L40BXBR | 1768-L43S | 1769-IQ32T | 1771-HTT | 1785-L80C15 |
更加關(guān)心您 1756-IF8H 性能高 耐用性強
Digitalization is resulting in a world divided between those who possess and effectively utilize data and those who lack access to those resources. This is a barrier to both corporate success and macro-economic growth. As a response, legislators are requiring vendors to share data among much broader ecosystems. In addition, various use cases for traceability, such as the Digital Product Passport (DPP) and the Battery Passport (DBP), will create a greater need for interoperability of data models. Governmental security requirements, such as the Cyber Resilience Act, also create further requirements for data communication standards. The IEC standard OPC UA is well bed to fulfill these demands.
數(shù)字化正在導(dǎo)致一個世界分化,一方面是擁有并有效利用數(shù)據(jù)的人,另一方面是缺乏這些資源訪問權(quán)限的人。這是企業(yè)成功和宏觀經(jīng)濟增長的障礙。作為回應(yīng),立法者要求供應(yīng)商在更廣泛的生態(tài)系統(tǒng)享數(shù)據(jù)。此外,諸如數(shù)字產(chǎn)品(DPP)和電池(DBP)等可追溯性的多種用例,將創(chuàng)造對數(shù)據(jù)模型互操作性的更大需求。《網(wǎng)絡(luò)彈性法案》等政府安全要求也對數(shù)據(jù)通信標準提出了進一步的要求。IEC標準OPC UA能夠很好地滿足這些需求。
“OPC UA has established itself as the industrial interoperability standard in on-premises, OT environments, field-level communication, as well as industrial Edge applications,” said Stefan Hoppe, president of the OPC Foundation, “Therefore, it is not surprising that OPC UA users want to leverage their existing investment in OPC UA Inbation Models and communication patterns and also utilize it in IT and cloud applications by enhancing secure, interoperable cloud architectures for advanced data analysis, digital twins and AI.”
OPC會主席Stefan Hoppe表示:“OPC UA已成為本地、OT環(huán)境、現(xiàn)場級通信以及工業(yè)邊緣應(yīng)用中的工業(yè)互操作性標準。因此,OPC UA用戶理所當然希望利用他們對OPC UA信息模型和通信模式的現(xiàn)有投資,并通過增強用于高級數(shù)據(jù)分析、數(shù)字孿生和人工智能的安全、可互操作的云架構(gòu),將其用于IT和云應(yīng)用。”
Notably, the initiative has garnered significant support from cloud industry leaders including Alibaba-Cloud, AWS, Huawei, Microsoft and SAP, as well as major manufacturers. This collaborative effort will harmonize existing working groups and initiate new working groups for cloud-centric applications, aiming to utilize and extend OPC UA and foster interoperability between cloud solutions. This strategic initiative is set to reduce costs and improve the usability of OPC UA Inbation Models for cloud-based use cases.
值得注意的是,該倡議得到了阿里云、AWS、華為、微軟、SAP等云以及各大廠商的大力支持。這項協(xié)作工作將協(xié)調(diào)現(xiàn)有工作組,并為以云為中心的應(yīng)用程序啟動新的工作組,旨在利用和擴展OPC UA并促進云解決方案之間的互操作性。這一戰(zhàn)略舉措旨在降低成本并提高OPC UA信息模型在基于云的用例中的可用性。
更加關(guān)心您 1756-IF8H 性能高 耐用性強