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Software Defined Perimeter Market Size, Share, Analysis, Forecast, Growth 2032: Demand Trends Across Key Sectors
Software Defined Perimeter Market was valued at USD 7.0 billion in 2023 and is expected to reach USD 56.9 Billion by 2032, growing at a CAGR of 26.19% from 2024-2032.
The Software Defined Perimeter (SDP) market is rapidly emerging as a pivotal technology in reshaping modern cybersecurity frameworks. By eliminating traditional perimeter-based defenses and implementing a dynamic, identity-driven access model, SDP offers unmatched protection against sophisticated threats. This innovative approach enables organizations to reduce attack surfaces, secure remote access, and safeguard cloud infrastructure with greater agility and precision. As cyber threats evolve in complexity, enterprises are increasingly adopting SDP solutions to enhance control, visibility, and trust across distributed IT environments.
Software Defined Perimeter Market hyper-connected digital ecosystem, the Software Defined Perimeter market stands at the forefront of a new era in cybersecurity. Organizations across industries are turning to SDP to enforce strict access control by verifying users and devices before granting access to critical resources. With zero-trust models becoming the gold standard, SDP solutions are no longer optional but essential tools in every cybersecurity strategy. The paradigm shift from legacy systems to software-defined, cloud-centric infrastructure continues to drive the relevance and growth of the SDP market.
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Market Keyplayers:
Cisco Systems, Inc. - Cisco
Check Point Software Technologies Ltd. - Check Point
Palo Alto Networks, Inc. - Palo Alto Networks
Akamai Technologies, Inc. - Akamai
Zscaler, Inc. - Zscaler
Broadcom Inc. (Symantec Corporation) - Broadcom
Fortinet, Inc. - Fortinet
Juniper Networks, Inc. - Juniper Networks
IBM Corporation - IBM
Cloudflare, Inc. - Cloudflare
Google LLC (BeyondCorp) - Google
Microsoft Corporation (Azure AD Conditional Access) - Microsoft
Intel Corporation - Intel
Okta, Inc. - Okta
Forcepoint LLC - Forcepoint
Unisys Corporation - Unisys
AppGate, Inc. - AppGate
F5 Networks, Inc. - F5
Perimeter 81 - Perimeter 81
Centrify Corporation (now Delinea) - Delinea
Market Analysis The SDP market is experiencing significant momentum fueled by increased adoption of cloud services, remote work models, and the growing frequency of cyberattacks. Companies are prioritizing agile security frameworks capable of adapting to dynamic IT landscapes. SDP meets these needs by enabling micro-segmentation, invisible infrastructure, and continuous user verification. As a result, the market is witnessing participation from both established cybersecurity vendors and emerging tech innovators, intensifying competition and fostering technological advancements.
Market Trends
Rise in demand for zero-trust network access (ZTNA)
Growing integration of SDP with identity and access management (IAM) platforms
Expansion of SDP applications across hybrid and multi-cloud environments
Increasing use of AI and machine learning for adaptive security controls
Surge in adoption by small and medium-sized enterprises (SMEs) for cost-effective security
Market Scope The scope of the Software Defined Perimeter market extends across a wide range of industries including finance, healthcare, IT, manufacturing, and government sectors. Its flexibility and scalability allow for tailored implementations, whether for securing IoT ecosystems, protecting remote users, or ensuring compliance in regulated sectors. As enterprises shift toward decentralized operations and virtual infrastructures, SDP solutions are proving critical in enabling secure digital transformation strategies globally.
Market Forecast The future outlook for the SDP market remains highly promising, marked by rapid innovation and broader market penetration. Adoption is expected to expand as businesses become more aware of the limitations of perimeter-based security and recognize the value of software-defined access controls. Continued investments in research and development are anticipated to enhance solution capabilities, reduce deployment complexities, and streamline integration with existing systems. As digital ecosystems grow more complex, SDP is set to play a foundational role in securing the modern enterprise.
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Conclusion As cyber threats become more advanced and traditional defenses falter, the Software Defined Perimeter market offers a bold new approach to security—one that is resilient, flexible, and built for the future. Its rise signals a strategic pivot in how organizations think about trust, access, and protection. For stakeholders looking to future-proof their digital infrastructure, investing in SDP is not just a security measure—it's a transformative move toward smarter, safer operations in the digital age.
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#Software Defined Perimeter Market#Software Defined Perimeter Market Scope#Software Defined Perimeter Market Growth#Software Defined Perimeter Market Trends
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Mastering Cisco ACI: A Comprehensive Guide to Simplifying Data Center Management
Cisco Application Centric Infrastructure (ACI) is transforming the way data centers are managed by simplifying complex network operations and enabling automation. As businesses face growing demands for scalable, efficient, and secure networks, Cisco ACI emerges as a powerful solution that automates network provisioning, enhances application performance, and improves operational efficiency.
For professionals looking to gain a deep understanding of this cutting-edge technology, Cisco ACI training is essential. This guide provides a detailed overview of Cisco ACI and its significance in modern data center management, covering everything from architecture to troubleshooting.
1 . What is Cisco ACI and Why Is It Crucial for Data Center Management?
Cisco ACI is a comprehensive, policy-driven solution designed to streamline data center management through automation and centralized control. By integrating both hardware and software, ACI simplifies network operations, reduces manual configuration, and enhances application performance.
Key Features of Cisco ACI:
Policy-Driven Automation: Automates network configuration, reducing human errors and speeding up deployment.
Application-Centric Approach: Aligns network resources with the needs of applications, ensuring optimal performance.
Scalability: Easily scales from small setups to large enterprise environments.
Centralized Management: APIC (Application Policy Infrastructure Controller) provides a single point of control for the entire ACI fabric.
Security and Micro-Segmentation: Enforces security policies at the application level, isolating workloads to prevent unauthorized access.
2 . The Importance of Cisco ACI in Today’s IT Landscape
As organizations increasingly adopt software-defined networking (SDN) solutions, the demand for professionals skilled in Cisco ACI is rapidly growing. This technology allows businesses to meet the needs of digital transformation by providing flexibility, scalability, and automation.
Reasons to Pursue Cisco ACI Expertise:
High Demand for Skilled Professionals: As more businesses embrace ACI, the need for trained experts continues to rise.
Competitive Advantage: Having Cisco ACI expertise makes you a highly sought-after candidate in the competitive IT job market.
Future-Proof Skills: ACI aligns with the growing trends of SDN and cloud networking, ensuring professionals stay relevant in the evolving landscape.
Cisco ACI expertise helps professionals stay ahead in a competitive market, opening up numerous career growth opportunities in network engineering and IT management.
3 . Getting Started with Cisco ACI
Cisco ACI provides an excellent foundation for individuals looking to expand their knowledge in network automation. Whether you are a beginner or a seasoned professional, there are various training courses and certifications to help you master ACI.
Recommended Learning Paths:
For Beginners:
Start with CCNA Data Center for foundational knowledge in networking.
Proceed to DCACI (Cisco ACI Fundamentals) for a deeper understanding of ACI components and configuration.
For Experienced Professionals:
CCIE Data Center or CCDE certification are ideal for advanced ACI implementation, design, and troubleshooting.
Cisco ACI Training and Certifications:
Cisco ACI Fundamentals (DCACI): Learn about ACI architecture, policies, and configuration.
Cisco Certified Specialist - Data Center ACI Implementation: Dive deeper into ACI deployment and operations.
Cisco Certified Internetwork Expert (CCIE) Data Center: Achieve expert-level skills in implementing and managing Cisco data center solutions, including ACI.
By following these structured learning paths, you can gain the expertise required to implement and optimize ACI environments.
4 . Key Features and Functionalities of Cisco ACI
Cisco ACI brings numerous features that significantly enhance data center operations and networking capabilities. These features enable organizations to automate and streamline their network management processes.
Key Features of Cisco ACI:
Policy-Driven Automation: Simplifies network configurations by using predefined policies.
Application-Centric Architecture: Optimizes network resources to meet specific application needs.
Centralized Management: APIC allows for unified control over the entire ACI fabric, making management easier and more efficient.
Micro-Segmentation and Security: Implements network segmentation to enhance security and reduce attack surfaces.
Cloud Integration: Integrates with cloud platforms for hybrid and multi-cloud strategies.
Cisco ACI’s ability to automate and streamline network operations helps organizations deliver high-performance applications and improve scalability.
5 . Deployment Best Practices for Cisco ACI
Deploying Cisco ACI requires careful planning and execution to ensure successful integration into existing data center environments. Here’s a step-by-step guide to implementing Cisco ACI:
Preparation:
Assess your network requirements and select appropriate ACI hardware.
Review your current data center architecture for compatibility.
Initial Setup:
Deploy Cisco ACI fabric (spine and leaf switches).
Install and configure APIC for centralized control.
Policy Definition:
Define application policies and security rules to align with your network’s requirements.
Create End-Point Groups (EPGs) for better traffic management.
Testing and Validation:
Perform extensive testing to ensure policies are applied correctly, and traffic flows as intended.
Common Challenges in ACI Deployments:
Complex Network Configurations: Use a phased deployment approach to handle complexity.
Integration with Legacy Systems: Plan for interoperability by using Cisco’s compatibility tools and services.
6 . Advanced Configurations and Integrations
Cisco ACI offers advanced configuration options that allow integration with existing infrastructures and optimization of network performance.
Advanced Configuration Tips:
Optimize Performance: Use ACI’s traffic analytics to fine-tune configurations for better application performance.
High Availability: Implement redundancy strategies to ensure continuous operation.
Integration with Hybrid and Multi-Cloud Environments:
Unified Management: Use APIC to manage both on-premise and cloud environments through a single interface.
Cloud Interoperability: Cisco ACI supports major cloud providers such as AWS, Azure, and Google Cloud for seamless integration.
7 .Troubleshooting and Maintenance in Cisco ACI Deployments
To ensure the long-term success of your ACI deployment, it’s essential to address potential issues and perform regular maintenance.
Common Troubleshooting Areas:
Fabric Connectivity Issues: Use APIC logs and diagnostics tools to quickly identify and resolve problems.
Configuration Inconsistencies: Double-check policies across devices to prevent configuration mismatches.
Maintenance Strategies:
Regular Software Updates: Keep the ACI fabric and APIC up to date to ensure stability and security.
Continuous Monitoring: Use ACI’s monitoring tools to proactively identify and resolve issues.
Conclusion
Mastering Cisco ACI is an essential step for network professionals looking to optimize their data center infrastructures. Cisco ACI simplifies network management, increases scalability, and enhances security, making it a critical tool for modern businesses. By pursuing a Cisco ACI course and obtaining certifications, professionals can stay ahead of the curve in a competitive industry, ensuring they are well-equipped to manage complex, automated network environments. A Cisco ACI course not only provides hands-on experience but also imparts the expertise needed to implement, configure, and troubleshoot ACI, giving professionals the skills to enhance network performance and security.
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Exploring the Edge Computing in Healthcare Market: Growth Trends and Forecasts - UnivDatos
According to a new report by Univdatos Market Insights, Edge Computing in Healthcare Market, is expected to reach USD 37,250 Million in 2032 by growing at a CAGR of 25%. Edge computing has emerged as a crucial technology in the healthcare sector, offering real-time data processing and analysis at the point of care.
Benefits of Edge Computing in Healthcare:
Real-time Insights: Edge computing enables healthcare providers to analyze patient data in real-time, allowing for quicker diagnosis and treatment decisions.
Enhanced Data Security: By processing sensitive patient data locally, edge computing minimizes the risk of data breaches and ensures compliance with healthcare regulations.
Improved Patient Experience: With faster data processing, edge computing facilitates remote patient monitoring, personalized treatment plans, and predictive analytics, leading to better patient outcomes.
Cost Efficiency: Edge computing reduces the need for extensive network infrastructure and centralized data storage, resulting in cost savings for healthcare organizations.
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Challenges and Considerations:
While edge computing offers numerous benefits, its implementation in healthcare comes with challenges such as interoperability, data privacy concerns, and the need for robust cybersecurity measures. Healthcare providers must address these challenges through proper infrastructure planning, data governance policies, and collaboration with technology partners.
Real-world Applications of Edge Computing in Healthcare:
Remote Patient Monitoring: Edge computing enables continuous monitoring of vital signs and health metrics in real-time, allowing healthcare providers to intervene promptly in case of any abnormalities.
Wearable Devices: Smart wearables equipped with edge computing capabilities can track patient activity, monitor chronic conditions, and provide personalized health insights without relying on a constant internet connection.
Mobile Health Clinics: Edge computing facilitates the deployment of mobile health clinics equipped with diagnostic tools and telemedicine capabilities, bringing healthcare services to underserved communities.
Operating Rooms: In surgical settings, edge computing enables the integration of advanced imaging technologies, robotics, and augmented reality to enhance surgical precision and patient safety.
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Recent Developments:
• In Feb 2023, Private 5G adoption and edge computing solutions were boosted by the Cisco System in partnership with the NTT DATA, across the automotive, logistics, healthcare, retail, and public sector.
• In Feb 2022, Kyndryl in partnership with the Amazon Web Services to initiate a cloud centre of excellence to provide joint solution.
Conclusion
Edge computing holds tremendous promise for transforming healthcare delivery by enabling real-time data analysis, improving patient outcomes, and optimizing resource utilization. As healthcare organizations continue to embrace digital innovation, leveraging edge computing will be crucial in building a resilient and patient-centric healthcare ecosystem. By overcoming challenges and harnessing the power of edge computing, healthcare providers can usher in a new era of precision medicine and personalized care.
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Fintech Market Share, Growth, Industry Forecast 2024-2032
IMARC Group, a leading market research company, has recently releases report titled “Fintech Market: Global Industry Trends, Share, Size, Growth, Opportunity and Forecast 2024-2032” offers a comprehensive analysis of the industry, which comprises insights on the The global fintech market share. The global market size reached US$ 187.1 Billion in 2023. Looking forward, IMARC Group expects the market to reach US$ 764.4 Billion by 2032, exhibiting a growth rate (CAGR) of 17% during 2024-2032.
The increasing requirement for advanced solutions in the banking process to enhance efficiency, rising adoption of digital payment methods, and the growing demand for mobile-centric solutions are some of the major factors propelling the market.
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Factors Affecting the Growth of the Fintech Industry:
Increasing Consumer Demand:
People are increasingly looking for digital and hassle-free financial services. Fintech firms offer user-friendly apps and platforms for activities, such as online payments, budgeting, investing, and peer-to-peer lending, aligning with preferences of people for convenience and accessibility. Fintech companies use advanced data analytics to offer tailored financial services in the country. This personalization resonates with individuals who appreciate solutions that cater to their individual financial goals and circumstances. Fintech solutions often provide cost-effective alternatives to traditional banking services. People are attracted to lower fees, competitive interest rates, and transparent pricing models offered by many fintech providers.
Enhanced Tech Infrastructure:
The enhanced tech infrastructure allows people to have access to high-speed internet. This widespread connectivity ensures that fintech services can reach a broad audience, enabling seamless online interactions between consumers and financial platforms. The proliferation of smartphones and the availability of 4G and 5G networks are creating a mobile-friendly environment. Fintech companies leverage this trend by developing mobile apps and platforms, catering to people who prefer conducting financial transactions on their mobile devices.
Cybersecurity Awareness:
Rising awareness about cybersecurity instills trust and confidence among consumers and businesses when using fintech services. People are more conscious about the importance of data protection, and fintech companies are responding by implementing robust security measures. This includes encryption, secure authentication methods, and data encryption technologies to safeguard sensitive information. Cybersecurity awareness is leading to the introduction of stringent regulations in the fintech sector. Fintech companies are required to comply with cybersecurity standards and regulations, further enhancing the security of financial transactions and data.
Leading Companies Operating in the Global Fintech Industry:
Adyen N.V.
Afterpay Limited (Block Inc.)
Avant LLC
Cisco Systems Inc.
Google Payment Corp.
International Business Machines Corporation
Klarna Bank AB
Microsoft Corporation
Nvidia Corporation
Oracle Corporation
Paypal Holdings, Inc.
Robinhood Markets Inc.
SoFi Technologies Inc
Tata Consultancy Services
Fintech Market Report Segmentation:
By Deployment Mode:
On-premises
Cloud-based
On-premises represented the largest segment as some financial institutions and businesses prefer to maintain control over their data and infrastructure, especially for sensitive financial transactions.
By Technology:
Application Programming Interface
Artificial Intelligence
Blockchain
Robotic Process Automation
Data Analytics
Others
On the basis of technology, the market has been segmented into application programming interface, artificial intelligence, blockchain, robotic process automation, data analytics, and others.
By Application:
Payment and Fund Transfer
Loans
Insurance and Personal Finance
Wealth Management
Others
Payments and fund transfer exhibit a clear dominance in the market on account of the growing consumer demand for convenient and efficient payment solutions.
By End User:
Banking
Insurance
Securities
Others
Banking holds the largest market share as traditional banks increasingly collaborate with fintech companies to offer digital services.
Regional Insights:
North America (United States, Canada)
Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, Others)
Europe (Germany, France, United Kingdom, Italy, Spain, Russia, Others)
Latin America (Brazil, Mexico, Others)
Middle East and Africa
North America enjoys the leading position in the fintech market due to the growing number of fintech startups and financial institutions.
Global Fintech Market Trends:
Governing agencies of several countries are implementing open banking regulations, which allow people to share their financial data securely with third-party fintech providers. The adoption of digital payment solutions and mobile wallets is rising due to increasing consumer demand for convenient and contactless payment methods. Robo-advisors and wealthtech platforms are gaining traction, offering automated investment advice and portfolio management services. This trend aligns with consumers seeking simplified and cost-effective investment options.
Moreover, interest in cryptocurrencies and blockchain technology is growing, with fintech companies exploring applications beyond traditional finance, such as supply chain management and digital identity verification.
Other Key Points Covered in the Report:
COVID-19 Impact
Porters Five Forces Analysis
Value Chain Analysis
Strategic Recommendations
About Us
IMARC Group is a leading market research company that offers management strategy and market research worldwide. We partner with clients in all sectors and regions to identify their highest-value opportunities, address their most critical challenges, and transform their businesses.
IMARC Group’s information products include major market, scientific, economic and technological developments for business leaders in pharmaceutical, industrial, and high technology organizations. Market forecasts and industry analysis for biotechnology, advanced materials, pharmaceuticals, food and beverage, travel and tourism, nanotechnology and novel processing methods are at the top of the company’s expertise.
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Exploring the Benefits of Implementing Cisco Application Centric Infrastructure
Are you looking for an innovative and efficient way to manage your network infrastructure? Look no further than Cisco Application Centric Infrastructure (ACI). With ACI, you can achieve automation, scalability, security, and flexibility without compromising speed or performance. In this blog post, we will explore the many benefits of implementing Cisco Application Centric Infrastructure in your organization and how it can revolutionize the way you manage your network infrastructure.
How to Implement Cisco ACI Cisco Application Centric Infrastructure (ACI) is a revolutionary way to manage data center networks, and the 300-620 DCACI training labs provide a comprehensive introduction to this technology. Through hands-on practice in realistic virtual environments, students learn how to effectively design and implement ACI solutions that meet their organization’s needs.
If you’re looking to implement Cisco ACI in your network, here’s how you can do it:
1. Firstly, you’ll need to deploy the Cisco Nexus 9000 Series Switches in ACI mode. The Cisco Nexus 9000 Series offers high-density 10, 40, and 100 Gigabit Ethernet connectivity with exceptional scalability and features.
2. You’ll also need to install the APIC software on a server or virtual machine. The APIC provides a centralized point of control and management for your Cisco ACI deployment.
3. Once the APIC is up and running, you can then begin configuring your applications and services for use with Cisco ACI. For more information on how to do this, be sure to check out the Cisco documentation.
4. Finally, once your applications are configured, you can start using them on your newly created ACI infrastructure!
Conclusion Cisco Application Centric Infrastructure can be a great way to improve network performance and increase scalability. With its ability to centralize control of applications, automate policy enforcement and dynamically allocate resources, ACI is an excellent choice for organizations looking to simplify their IT infrastructure. By taking the time to get familiar with this technology, you will have all the tools necessary for making informed decisions about how best to implement it in your environment. We hope that our exploration of the benefits of implementing Cisco Application Centric Infrastructure has been informative and helpful.
For more information about Implementing Cisco Application Centric Infrastructure please visit the website.
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What COVID-19 Impacted on Zero Trust Security in Semiconductors & Electronics Industry ?

Impact of COVID-19 on Zero Trust Security in Semiconductors and Electronics Industry
With the rising cases of COVID-19 every day apparently states that we will be dealing with the COVID-19 pandemic for a while. This means that work from home has become a permanent solution to fulfil each and every professional requirements without commuting from the office site. Over the past few months in this COVID-19 scenario, enormous disruption has been faced in the work environment amongst circulated workforce and scattered schedules. This has made every organization to modernise and adopt high security models. As per our estimation, almost 90% of the companies have adopted work from home policy in which poor infrastructure or technology is considered to be the biggest loophole for working remotely. Moreover, many organizations were not prepared for the transformation into the cloud which made the IT security team to struggle while configuring network perimeters in order to access remotely. At the same moment, tech savvy hackers found this as an opportunity by targeting the government employees with fraudulent practices and attacks.
For instance,
· In April 2020, World Health Organization (WHO) has stated regarding the fivefold increase in the cyber-attacks. Thus, for an effective workflow, Zero Trust has been adopted to resolve the legacy security practices. Zero Trust security model permits the employees to access the applications via secure web-based gateway. It applies the least privilege ideologies and supports device security checks and multi-factor authentication. As compared to VPN, this solution can integrate with various single sign-on (SSO) platforms easily and is very affordable and scalable.
Thus, this model provides more scalability towards privileged access management infrastructure for network resource management. Implementation of the Zero Trust comprise of policy-based adaptive access, automation, intelligence and AI, strong authentication, data classification and protection.
IMPACT ON DEMAND AND SUPPLY CHAIN
COVID-19 has brought in a diverse change in trend of various industries and markets which now has resulted into work from home policy. Moreover, increase in the utilization of disrupting malware against critical infrastructure and COVID-19 based scam has widened the necessity of secured network. The U.S. Department of Homeland Security (DHS), United Kingdom’s National Cyber Security Centre (NCSC) and Cybersecurity and Infrastructure Security Agency (CISA) have alerted regarding the malicious activity.
For instance,
· About 18 million COVID-19-related malware and phishing google mails activity took place every day in April 2020 as stated by Google’s Threat Analysis Group (TAG).
· Cybercriminals have demanded ransom payment of USD 111,605.00 (increase up to 33% in first quarter of 2020). Phishing attempts have also exploded with Google’s Threat Analysis Group (TAG) noting 18 million COVID-19-related phishing and malware Gmail messages each day in April.
Development concerning the new normal of hybrid workplaces has led the organization to take business continuity measures and to direct the rising needs which can restore and enhance the level of productivity in the long term. This later ensures precise technological tools and infrastructure for its every employee along with advanced cyber hygiene controls. Increasing adoption of highly integrated Zero Trust solution mainly where remote access has become a necessity will allow every company to step upwards a higher security level.
According to CISA, the companies utilizing VPN results into data breach due to lack of patching and implementation of multi-factor authentication for accessing accounts remotely. The fear of susceptibility has forced varied companies to invest towards updated technologies which can boost the security level of distributed workforce while IT team have adapted a landscape of rapidly evolving threat. This in result has led to the mass adoption of Zero Trust solution and is currently grabbing the headlines as a new way of working. According to Okta, from 2019-2020, North American organizations has initiated to establish Zero Trust model in next 12 to 18 months which increases to 75% year-on-year from 60%.
STRATEGIC ADOPTION BY MANUFACTURERS OR STEPS TAKEN FOR ZERO TRUST
During the COVID-19 pandeamic, many companies provided their services either free or on extended trial tenure to its customers for testing Zero Trust security solutions.
For instance,
· Cisco offers free Duo Security Zero Trust and MFA platform to its new customers.
· Akamai provided its solution named Enterprise Application Access (EAA) as part of its Business Continuity Assistance Program with an extension trial of 60 days.
Adding to this, several companies have entered into different strategic decisions for offering the Zero Trust solution in order to enhance its revenue and to maximize its customer base.
For instance,
· In March 2021, Zscaler, Inc. and CrowdStrike Holdings, Inc. integrated for delivering end-to-end security protection solution from the endpoint to the application. Thus, this integration will enhance the security for joint customers by offering data-centric and identity-centric approach of zero trust which incorporates network, data, workload and device.
· In March 2021, McAfee entered into partnership with Appgate, Axis Security and TransientX for zero trust network access (ZTNA) which will help the organization to improve and develop security strategies with risk minimization along with less or no complexity.
CONCLUSION
Zero Trust security solution is the groundwork of a future-ready workforce. As employees continued to do work from home for predictable future, this approach will address the current distributed environment in a better way and surely will prove as a critical aspect for both secured and operational access. Efficient security is basically dependent on the method for managing the dependencies between the users, technology and processes by each organization. In the post COVID-19 scenario, the chances of focusing more on budget and investment regarding the Zero Trust security solution will be witnessed by the Chief Information Security Officer (CISO) due to the growing cyber security risk in order to adapt to a new normal.
#COVID-19 Impact Zero Trust Security#COVID-19 Impact on Price#COVID-19 Impact on Supply#COVID-19 Impact on Zero Trust Security Market#Zero Trust Security Market COVID-19 Impact
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Connected Enterprise Market Size, Share, Analysis, Forecast, Growth 2032: Investment Opportunities
The Connected Enterprise Market was valued at USD 475.2 Billion in 2023 and is expected to reach USD 6519.7 Billion by 2032, growing at a CAGR of 33.79% from 2024-2032.
The Connected Enterprise Market is experiencing rapid transformation as digital integration becomes a core strategic focus for organizations worldwide. With the convergence of operational and informational technologies, enterprises are evolving into intelligent ecosystems, driven by the adoption of IoT, AI, edge computing, and cloud platforms. This integration is unlocking new efficiencies, real-time decision-making, and collaborative workflows across value chains.
Connected enterprise market redefining the future of business operations by enabling seamless connectivity across departments, geographies, and stakeholders. As companies prioritize agility and automation, the market is witnessing a sharp pivot from legacy systems to interconnected platforms that support dynamic scalability, cybersecurity, and predictive insights.
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Market Keyplayers:
Cisco Systems, Inc. – Cisco IoT Control Center
IBM Corporation – IBM Maximo Application Suite
Siemens AG – Siemens MindSphere
Schneider Electric – EcoStruxure
Microsoft Corporation – Microsoft Azure IoT
Rockwell Automation, Inc. – FactoryTalk InnovationSuite
General Electric (GE) – GE Digital Predix
SAP SE – SAP Leonardo
Honeywell International Inc. – Honeywell Forge
Oracle Corporation – Oracle IoT Cloud Service
Bosch Software Innovations – Bosch IoT Suite
PTC Inc. – ThingWorx
Hitachi, Ltd. – Lumada
Amazon Web Services (AWS) – AWS IoT Core
Hewlett Packard Enterprise (HPE) – HPE Edgeline
Market Analysis
The connected enterprise market is characterized by aggressive digital adoption across multiple sectors, including manufacturing, healthcare, retail, and energy. Organizations are increasingly deploying smart sensors, data analytics, and cloud infrastructure to bridge operational silos and create unified digital frameworks. Enhanced network capabilities and 5G proliferation have further accelerated market dynamics, enabling more resilient and responsive enterprise models. Industry players are investing in integrated platforms that support both scalability and interoperability, thus transforming traditional business paradigms.
Strategic collaborations, mergers, and ecosystem partnerships are on the rise, with tech providers co-creating solutions that empower real-time operations and workforce connectivity. The demand for customized and secure integration solutions is propelling innovation, as enterprises seek end-to-end visibility across their entire digital footprint.
Market Trends
Rising demand for IoT-enabled business processes
Increased adoption of cloud-native applications
Accelerated implementation of AI-driven analytics
Growing emphasis on cybersecurity across enterprise networks
Expansion of edge computing for real-time data processing
Integration of digital twins for predictive maintenance
Shift toward zero-trust network architectures
Rapid growth of Industry 4.0 and smart manufacturing
Surge in remote and hybrid workforce collaboration tools
Investments in unified communication and workflow automation
Market Scope
The connected enterprise market spans a wide array of industries, including automotive, logistics, healthcare, utilities, and finance, among others. The scope extends to any organization seeking to digitally unify its operations, data, devices, and workforce. As businesses move toward data-centric strategies, the connected enterprise offers a comprehensive platform that supports seamless communication, asset management, and enterprise-wide intelligence. Solutions vary from network infrastructure to advanced analytics and from cybersecurity to cloud orchestration, demonstrating a holistic market landscape that caters to diverse organizational needs.
Market Forecast
The future of the connected enterprise market is defined by continual technological convergence, expanding digital maturity across sectors, and rising investment in smart infrastructure. As digital transformation becomes a necessity rather than a choice, enterprises will increase their reliance on integrated systems capable of driving agility, innovation, and business continuity. With the steady advancement of AI, machine learning, and edge computing, the market is expected to evolve into a robust, scalable environment for real-time enterprise management. Vendor differentiation will likely focus on seamless user experience, security, and industry-specific customization, shaping a competitive and innovation-driven future.
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Conclusion
As the digital revolution accelerates, the connected enterprise market emerges as a cornerstone of next-generation business strategies. Enterprises that embrace intelligent connectivity are poised to lead with agility, insight, and resilience. This market is not just a trend—it's a fundamental shift redefining the way organizations operate, collaborate, and compete. By integrating people, processes, and platforms into a cohesive digital fabric, connected enterprises are unlocking unparalleled value and setting new benchmarks for growth in the digital age.
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SNS Insider is one of the leading market research and consulting agencies that dominates the market research industry globally. Our company's aim is to give clients the knowledge they require in order to function in changing circumstances. In order to give you current, accurate market data, consumer insights, and opinions so that you can make decisions with confidence, we employ a variety of techniques, including surveys, video talks, and focus groups around the world.
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Fintech Market Share, Growth, Industry Forecast 2024-2032
IMARC Group, a leading market research company, has recently releases report titled “Fintech Market: Global Industry Trends, Share, Size, Growth, Opportunity and Forecast 2024-2032” offers a comprehensive analysis of the industry, which comprises insights on the The global fintech market share. The global market size reached US$ 187.1 Billion in 2023. Looking forward, IMARC Group expects the market to reach US$ 764.4 Billion by 2032, exhibiting a growth rate (CAGR) of 17% during 2024-2032.
The increasing requirement for advanced solutions in the banking process to enhance efficiency, rising adoption of digital payment methods, and the growing demand for mobile-centric solutions are some of the major factors propelling the market.
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Factors Affecting the Growth of the Fintech Industry:
Increasing Consumer Demand:
People are increasingly looking for digital and hassle-free financial services. Fintech firms offer user-friendly apps and platforms for activities, such as online payments, budgeting, investing, and peer-to-peer lending, aligning with preferences of people for convenience and accessibility. Fintech companies use advanced data analytics to offer tailored financial services in the country. This personalization resonates with individuals who appreciate solutions that cater to their individual financial goals and circumstances. Fintech solutions often provide cost-effective alternatives to traditional banking services. People are attracted to lower fees, competitive interest rates, and transparent pricing models offered by many fintech providers.
Enhanced Tech Infrastructure:
The enhanced tech infrastructure allows people to have access to high-speed internet. This widespread connectivity ensures that fintech services can reach a broad audience, enabling seamless online interactions between consumers and financial platforms. The proliferation of smartphones and the availability of 4G and 5G networks are creating a mobile-friendly environment. Fintech companies leverage this trend by developing mobile apps and platforms, catering to people who prefer conducting financial transactions on their mobile devices.
Cybersecurity Awareness:
Rising awareness about cybersecurity instills trust and confidence among consumers and businesses when using fintech services. People are more conscious about the importance of data protection, and fintech companies are responding by implementing robust security measures. This includes encryption, secure authentication methods, and data encryption technologies to safeguard sensitive information. Cybersecurity awareness is leading to the introduction of stringent regulations in the fintech sector. Fintech companies are required to comply with cybersecurity standards and regulations, further enhancing the security of financial transactions and data.
Leading Companies Operating in the Global Fintech Industry:
Adyen N.V.
Afterpay Limited (Block Inc.)
Avant LLC
Cisco Systems Inc.
Google Payment Corp.
International Business Machines Corporation
Klarna Bank AB
Microsoft Corporation
Nvidia Corporation
Oracle Corporation
Paypal Holdings, Inc.
Robinhood Markets Inc.
SoFi Technologies Inc
Tata Consultancy Services
Fintech Market Report Segmentation:
By Deployment Mode:
On-premises
Cloud-based
On-premises represented the largest segment as some financial institutions and businesses prefer to maintain control over their data and infrastructure, especially for sensitive financial transactions.
By Technology:
Application Programming Interface
Artificial Intelligence
Blockchain
Robotic Process Automation
Data Analytics
Others
On the basis of technology, the market has been segmented into application programming interface, artificial intelligence, blockchain, robotic process automation, data analytics, and others.
By Application:
Payment and Fund Transfer
Loans
Insurance and Personal Finance
Wealth Management
Others
Payments and fund transfer exhibit a clear dominance in the market on account of the growing consumer demand for convenient and efficient payment solutions.
By End User:
Banking
Insurance
Securities
Others
Banking holds the largest market share as traditional banks increasingly collaborate with fintech companies to offer digital services.
Regional Insights:
North America (United States, Canada)
Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, Others)
Europe (Germany, France, United Kingdom, Italy, Spain, Russia, Others)
Latin America (Brazil, Mexico, Others)
Middle East and Africa
North America enjoys the leading position in the fintech market due to the growing number of fintech startups and financial institutions.
Global Fintech Market Trends:
Governing agencies of several countries are implementing open banking regulations, which allow people to share their financial data securely with third-party fintech providers. The adoption of digital payment solutions and mobile wallets is rising due to increasing consumer demand for convenient and contactless payment methods. Robo-advisors and wealthtech platforms are gaining traction, offering automated investment advice and portfolio management services. This trend aligns with consumers seeking simplified and cost-effective investment options.
Moreover, interest in cryptocurrencies and blockchain technology is growing, with fintech companies exploring applications beyond traditional finance, such as supply chain management and digital identity verification.
Other Key Points Covered in the Report:
COVID-19 Impact
Porters Five Forces Analysis
Value Chain Analysis
Strategic Recommendations
About Us
IMARC Group is a leading market research company that offers management strategy and market research worldwide. We partner with clients in all sectors and regions to identify their highest-value opportunities, address their most critical challenges, and transform their businesses.
IMARC Group’s information products include major market, scientific, economic and technological developments for business leaders in pharmaceutical, industrial, and high technology organizations. Market forecasts and industry analysis for biotechnology, advanced materials, pharmaceuticals, food and beverage, travel and tourism, nanotechnology and novel processing methods are at the top of the company’s expertise.
Contact US
IMARC Group
134 N 4th St. Brooklyn, NY 11249, USA
USA: +1-631-791-1145 | Asia: +91-120-433-0800
Email: [email protected]
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Iot Analytics Market Is Expected To Register Highest CAGR Of 16.2% During The Forecast Period 2017 to 2025-Persistence Market Research
Internet of things (IoT) analytics assists users in combining operative information with data and generation intelligent analytics. Adoption of IoT-based technologies is witnessing a surge owing to its benefits including better efficiency, reduced operation costs, and infrastructure optimization. Rapid growth in IoT-centric business application is fuelling demand for PaaS, aiding implementation of IoT to a large extent.
Global internet of things (IoT) analytics market is projected to exhibit a staggering 16.2% CAGR during the forecast period 2017 to 2025, according to a report by Persistence Market Research (PMR). PMR’s report projects revenue from global IoT analytics market to increase from US$ 19,415.1 Mn in 2017 to surpass US$ 60,000 Mn by 2025-end. This growth is primarily attributed to continuous launching of IoT analytics offerings, coupled with emergence of niche players in the market.
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Software to be the Most Attractive Component of IoT Analytics by 2025-End
Software is anticipated to be the most attractive component of IoT analytics by 2025. Revenue amassed from software component of IoT analytics will surpass US$ 10,000 Mn in 2017; by 2025 this number is estimated to reach nearly US$ 40,000 Mn. In addition, service component of IoT analytics is projected to witness fastest expansion at over 20% CAGR through 2025.
North America is pegged to hold the highest share of the market, with revenue pegged to account for around US$ 50,000 Mn by 2025. North America is estimated to exhibit highest CAGR in the global IoT analytics market. In addition, Europe is expected to account for over 10% market share, to stand second in the global market by 2025. In contrast, Middle East & Africa will register a comparatively low CAGR in the market during the forecast period.
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On-Premise Deployment of IoT Analytics to Create an Incremental Opportunity of US$ 27,278.7 Mn between 2017 & 2025
On-premise deployment of IoT analytics will remain sought-after in the market. This deployment type segment is projected to create an incremental opportunity of US$ 27,278.7 Mn between 2017 and 2025. In addition, SaaS will remain fastest growing deployment type of IoT analytics, expanding at 18.5% through 2025.
Although healthcare will remain largest vertical in the global IoT analytics market, Retail is expected to witness fastest growth in demand for IoT analytics. Healthcare is projected to account for over 70% share of market value by 2025. Transportation & logistics is expected to exhibit second-highest CAGR in the market. In contrast, energy & utilities vertical for IoT analytics will witness a comparatively low CAGR during the forecast period.
Robust Adoption of IoT Analytics by Healthcare Sector to Drive Market Growth in North America
Number of connected devices is witnessing a surge owing to soaring demand for IoT services in North America. This growth of IoT ecosystem is prompting companies for developing platforms and services will result into better prediction, management and optimization of business operations and processes. This further helps in improving efficiency and profitability, and resolving threats. In addition, there has been a robust adoption of IoT analytics by healthcare sector in North America. IoT adoption, coupled with digitization helps to easily collect data for patient records, population health data, and various other databases. These factors are expected to drive demand for IoT analytics in North America.
Implementation of large number of projects utilizing IoT tools and data sets has led to a surge in demand for IoT analytics tools & technologies by various enterprises in Europe. Adoption of IoT analytics is comparatively higher among large enterprises which have data support systems and adequate capital. Significant investments are being made by leading enterprise companies in IoT analytics tools, implementation, and applications. Such factors are estimated to propel market growth in Europe by 2025-end.
Key market players identified in PMR’s report include IBM Corporation, Microsoft Corporation, Intel Corporation, Cumulocity GmbH, Tableau Software, Cisco System Inc., Oracle Corporation, Aeris Communication, Accenture PLC.
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CCNP Data Center Certification 300-630 DCACIA Dumps
300-630 DCACIA exam is the new code replacement of 600-600 DCACIA,passing 300-630 Implementing Cisco Application Centric Infrastructure-Advanced exam will towards CCNP Data Center certification.PassQuestion new released CCNP Data Center Certification 300-630 DCACIA Dumps with 60 practice exam questions and answers to ensure that you can pass Cisco 300-630 exam successfully. They have verified all the 300-630 exam questions and answers, which cover the Cisco 300-630 exam objectives to ensure your success in CCNP Data Center certification 300-630 Exam in the first try.
Implementing Cisco Application Centric Infrastructure – Advanced (300-630)
Implementing Cisco Application Centric Infrastructure – Advanced v1.0 (DCACIA 300-630) is a 90-minute exam associated with the Cisco Certified Specialist – ACI Advanced Implementation certification. This exam tests a candidate's advanced knowledge and skills of Cisco switches in ACI mode including configuration, implementation, management, and troubleshooting.
The 600-600 DCACIA exam has been renumbered to 300-630 DCACIA. This is an exam number change only. The exam name and blueprint is not affected by this change. As of September 1, 2020 the 300-630 DCACIA exam will count towards CCNP Data Center certification.
300-630 DCACIA Exam Topics1.0 ACI Packet Forwarding 20%
1.1 Describe packet forwarding between leafs (VxLAN) 1.2 Implement server NIC teaming with ACI 1.3 Implement endpoint learning optimizations (local/remote endpoint, limit IP subnet, enforce subnet check, IP dataplane leaning option in VRF, loop detection, and rogue EP)
2.0 Advanced ACI Policies and Integrations 25%
2.1 Implement Layer 3 out transit routing 2.2 Utilize common tenant 2.3 Implement VRF route leaking 2.4 Implement Layer 3 out VRF route leaking 2.5 Implement contracts (pcTag, global pcTab, contract priorities, taboo, and deny filter) 2.6 Implement Layer 4 through Layer 7 PBR (including use cases)
3.0 Multipod 20%
3.1 Implement IPN 3.2 Describe packet flow between pods 3.3 Describe firewall and load balancer design with multipod 3.4 Implement service graph with multipod
4.0 Multisite 20%
4.1 Implement Multi-Site Orchestrator 4.2 Implement ISN 4.3 Describe stretched component options 4.4 Describe communication across sites
5.0 Traditional network with ACI 15%
5.1 Describe network-centric and application-centric designs 5.2 Describe STP BPDU handling in ACI (FD-VNID and VLAN pool consideration) 5.3 Describe migration considerations
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Cloud Professional Services Market by Service Type (Consulting, Integration and Optimization, Implementation and Migration, Application Development and Modernization), Organization Size, Deployment Model, Vertical, and Region - Global Forecast to 2026 published on
https://www.sandlerresearch.org/cloud-professional-services-market-by-service-type-consulting-integration-and-optimization-implementation-and-migration-application-development-and-modernization-organization-size-deployment-mo.html
Cloud Professional Services Market by Service Type (Consulting, Integration and Optimization, Implementation and Migration, Application Development and Modernization), Organization Size, Deployment Model, Vertical, and Region - Global Forecast to 2026
Increasing inclination of organizations towards cloud-based deployments to overcome on-premises limitations
The global cloud professional services market size is expected to grow at a Compound Annual Growth Rate (CAGR) of 17.2% during the forecast period, to reach USD 37.0 billion by 2026 from USD 14.2 billion in 2020. Most organizations are increasingly adopting cloud-based models by distributing their computing resources across several environments. Cloud adoption gaining popularity as it provides flexibility, scalability, and low-cost benefits. It also helps organizations centrally analyze data generated from various locations and collect data from different assets, making it easy to gather and analyze data. Due to the transition to cloud, cloud providers are aggressively adding new products and services in their portfolio to have competitive advantage.
The consulting segment holds the largest market size during the forecast period.
Consulting is a professional services practice for enterprise infrastructure that involves advising customers for managing organization’s IT infrastructure and improving infrastructure performance, including security and workflow processes. The cloud professional service vendors offer consulting services to users that have limited awareness related to the upgradation of current enterprise infrastructure. Users wishing to upgrade their infrastructure can harness the expertise of cloud professional service providers specializing in the deployment of cloud-based systems across industry-specific use cases, which helps in implementing the right mix of services. The implementation of cloud-based systems can be a costly process for some companies; therefore, it is of utmost importance that end users’ companies are aware of the exact business requirements.
The Banking, financial services and insurance vertical expected to hold largest market share in 2020.
Cloud helps customers easily connect, store, and enable transactions anytime and anywhere, resulting in reduced efforts and time for customers to complete the process. Cloud professional services help BFSI vendors to focus more on the customer-centric model by creating a multi-channel relationship with customers at every step of service offered by them. The BFSI vertical is adopting the digitalization initiatives at a rapid pace to meet the rising customer expectations; hence, adopting cloud professional services for the right solution mix. These services are enabling BFSI to reduce its CAPEX and Operational Expenditure (OPEX) by selecting the right mix of services. There is always a risk associated with data in the BFSI sector, and selecting the right services is always an integral part of the business process. Cloud professional service vendors allow the BFSI vertical to select solutions that offer high data security standards. It also enables BFSI enterprises to comply with the regulations related to the cloud.
North America to hold the largest market size and Asia Pacific (APAC) to grow at a higher rate during the forecast period
APAC is one of the fastest-growing regions in terms of technology adoption, and the demand for digitization is driven by various initiatives carried out by different governments and large enterprises in the region. Countries such as China, Japan, Australia, Singapore, India, and Indonesia are leading this technology adoption, which includes embracing new-age technologies such as AI, edge, IoT, analytics, and cloud. The region houses a large number of enterprises related to manufacturing, energy and utilities, transportation and logistics, chemicals, and aerospace, which is further expected to drive the demand for cloud professional services. Rapid advancements in telecommunications, cloud computing, and IoT have led several organizations to adopt cloud-based strategies.
In the process of determining and verifying the market size for several segments and subsegments gathered through secondary research, extensive primary interviews were conducted with the key people. The breakup of the profiles of the primary participants as follows:
By Company Type: Tier I: 37%, Tier II: 25%, and Tier III: 38%
By Designation: C-Level: 22%, D-Level: 33%, and Others: 45%
By Region: North America: 42%, Europe: 25%, APAC: 18%, and RoW: 15%
The report profiles the following key vendors:
• Accenture (Ireland)
• IBM (US)
• Deloitte (UK)
• EY (UK)
• PwC (UK)
• HPE (US)
• Wipro (India)
• HCL (India)
• TCS (India)
• Capgemini (France)
• Atos (France)
• Cisco (US)
• Cognizant (India)
• DXC (US)
• Hitachi Vantara (US)
• Infosys (India)
• LTI (India)
• NTT Data (Japan)
• Rackspace (US)
• T-Systems (Germany)
• AWS (US)
• Google (US)
• Microsoft (US)
• Fujitsu (Japan)
• Alibaba Cloud (China)
Research Coverage
The report segments the global cloud professional services market by Service Type, Consulting, Application Development and Modernization, Implementation and Migration, and Integration and Optimization. By the deployment model, the cloud professional services market has been segmented into public cloud and private cloud. Based on organization size, the market has been classified into Small and Medium-sized Enterprises (SMEs) and large enterprises. By vertical, the cloud professional services market has been classified into BFSI; Manufacturing; Healthcare and Lifesciences; IT and ITES; Government; Telecommunications; Retail and Consumer Goods; Energy and utilities and others. By region, the market has been segmented into North America, Europe, APAC, MEA, and Latin America.
Key Benefits of Buying the Report
The report will help the market leaders/new entrants in the cloud professional services market with information on the closest approximations of the revenue numbers for the overall cloud professional services market and the sub segments. The report will help stakeholders understand the competitive landscape and gain more insights to better position their businesses and to plan suitable go-to-market strategies. The report also helps stakeholders understand the pulse of the market and provides them with information on key market drivers, restraints, challenges, and opportunities.
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Cisco 300-620 Practice test: A Best Preparation Material [2021]
Cisco 300-620 Practice test 2021 - According to Latest Exam Syllabus
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Exam Code: 300-620
Exam Name: Implementing Cisco Application Centric Infrastructure
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Cisco ACI and SDN: The Perfect Combination for Modern Networks
In today’s rapidly evolving digital landscape, businesses are increasingly relying on agile, scalable, and automated network infrastructures. Cisco ACI (Application Centric Infrastructure) and SDN (Software-Defined Networking) offer the perfect combination to meet these demands.
Cisco ACI provides a policy-driven approach to networking, while SDN enhances flexibility and centralized control. Together, they enable efficient network management, improved performance, and enhanced security.
For professionals looking to master these technologies, Cisco ACI training is essential to gain the skills needed to implement and manage these powerful solutions in modern data centers and network environments.
1 . What is Cisco ACI?
Cisco ACI is a data center networking solution that enables application-centric automation and policy-driven networking. It provides a unified architecture to manage network infrastructure, applications, and policies efficiently.
Key components of Cisco ACI include:
APIC (Application Policy Infrastructure Controller): Centralized controller that automates network policy deployment and enforces security policies.
Leaf and Spine Architecture: Scalable and efficient architecture that enables high-performance data transfer.
ACI Fabric: A network fabric that connects physical and virtual devices for seamless communication.
2 . What is SDN (Software-Defined Networking)?
Software-Defined Networking (SDN) is an approach to networking that allows the control plane (the brain of the network) to be separated from the data plane (where the actual data traffic flows). This separation enables greater flexibility and control over the network, making it more programmable and easier to manage.
Key features of SDN include:
Centralized Control: SDN controllers provide a single point of control for the entire network.
Network Virtualization: The ability to create virtual networks independent of the physical infrastructure.
Automated Provisioning: SDN allows for network resources to be provisioned on demand.
Policy-Based Management: Networks can be managed based on policies that are easily configured and modified.
3 . How Cisco ACI and SDN Work Together
When combined, Cisco ACI and SDN form a robust and agile network infrastructure that can scale to meet the demands of modern applications. Here’s how they complement each other:
Automation and Simplified Management:
Cisco ACI leverages SDN principles to automate network provisioning, reducing the manual configuration efforts typically required in traditional networks.
SDN provides a centralized controller to manage both Cisco ACI’s physical and virtual network components from a single point. This reduces operational complexity and enhances consistency across the network.
Application-Centric Networking:
Cisco ACI allows network policies to be application-centric, meaning policies can be designed based on the needs of specific applications.
SDN helps achieve better control over how applications interact with the network, enabling more granular control of data flow and performance.
Scalability and Flexibility:
Cisco ACI’s leaf-and-spine architecture offers horizontal scalability, ensuring that the network can grow as business needs evolve.
SDN provides flexibility by enabling software-defined policies and automation across the entire network fabric, whether it’s on-premises or in the cloud.
Enhanced Security:
Cisco ACI enforces security policies across the network, ensuring that only authorized applications and devices can communicate with each other.
SDN integrates security into the control plane, enabling more dynamic and real-time security enforcement to protect against threats.
4 . Benefits of Combining Cisco ACI with SDN
Increased Agility and Speed
By combining Cisco ACI’s application-centric approach with SDN’s programmability, network administrators can quickly adapt to business changes and deploy new services faster.
Network configurations can be automated, reducing time-to-market for new applications and services.
Simplified Network Operations
Traditional networks require manual intervention for configuration and management. Cisco ACI with SDN allows for network automation, reducing the complexity of managing multiple devices and network components.
With centralized control through SDN, administrators can streamline troubleshooting, configuration, and monitoring tasks.
Better Network Efficiency and Performance
Cisco ACI’s fabric architecture and SDN’s automated traffic management enhance overall network efficiency and performance.
Networks become more resilient and adaptable to traffic surges, ensuring that applications always receive the resources they need.
Cost Savings
Automation and simplified management reduce the need for manual labor, which can lead to significant cost savings.
Efficient resource allocation ensures that businesses make the best use of their networking investments, reducing hardware and operational costs.
Improved Security and Compliance
Both Cisco ACI and SDN can enforce consistent security policies across the network.
Real-time monitoring and policy enforcement help organizations maintain compliance and protect sensitive data from potential threats.
5 . Use Cases for Cisco ACI and SDN
Cloud Data Centers:
Cisco ACI combined with SDN is ideal for managing cloud environments. It helps in efficiently connecting various cloud services while ensuring high availability and performance.
Multi-Cloud Environments:
Organizations utilizing hybrid or multi-cloud strategies benefit from Cisco ACI and SDN’s ability to seamlessly integrate on-premises and cloud-based resources.
DevOps and Application Deployment:
Cisco ACI allows application developers to define networking policies that align with application requirements. SDN enables the quick provisioning of network resources needed to deploy applications in a DevOps environment.
Conclusion
In conclusion, the combination of Cisco ACI and SDN is revolutionizing network management, offering unparalleled automation, scalability, and flexibility. By integrating Cisco ACI's application-centric approach with SDN’s centralized control, businesses can streamline network operations, enhance security, and optimize performance.
For professionals looking to master these technologies, enrolling in a Cisco ACI course provides valuable knowledge and hands-on experience to excel in modern networking environments. Embracing Cisco ACI and SDN is essential for staying competitive in the ever-evolving world of IT infrastructure.
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IoT Platform Market Trends, Forecasts, Key Company Profiles and Industry Size, Share Analysis
Market Highlights
The global IoT platform market, according to the reports by Market Research Future (MRFR), is slated to expand at a substantial 28.5% CAGR over the review period, with a significant market valuation of 74.74 billion in 2023.
Drivers and Restraints
Growing demand for data storage over the cloud is a significant factor driving the growth of the enterprise IoT platform market. The growing number of connected devices in an IoT ecosystem has led to the need for downloading, transferring, and uploading large volumes of data, which is done by the enterprise data centers. This boosts companies to improve their capabilities in terms of expertise, speed, and agility to manage IoT data resources. The demand for cloud data storage is slated to upsurge owing to augmented data traffic. Major companies and service providers are touted to increase their backup servers and lessen risks while guaranteeing uptime, system availability, and speed.
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Segmentation:
The global market for IoT platforms has been segmented on the basis of deployment, platform, application, end-user, and region.
Based on the platform, the global IoT platform market has been segmented into a hardware-specific software platform, IaaS backend, connectivity/M2M platform, and consumer/enterprise software extension. The connectivity/M2M platform segment is slated to account for the largest share, while the hardware-specific software platform segment is touted to register the highest CAGR of 31.5% over the forecast period.
Based on deployment, the market has been categorized into cloud, on-premises, and hybrid. The on-premises segment accounts for the largest market share of more than 38.5%, whereas the hybrid segment is poised to register the highest CAGR over the assessment period.
Application-based segmentation of the IoT platform market includes database management, device management, analytics, and processing. The device management segment accounts for the largest market share, while the analytics segment is slated to register the maximum CAGR of 32.7% over the foreseeable future.
segmentation of the IoT platform market based on the end-user consists of smart cities & homes, manufacturing, healthcare, retail, and others. The manufacturing segment accounted for the maximum market share of more than 28.0% and smart cities & homes segment poised to register the highest CAGR of 29.6% and expected to reach USD 19.20 billion over the review period.
Regional Analysis
Geographically, the global market for IoT platforms has been segmented into Europe, North America, Asia-Pacific, the Middle East & Africa, and South America.
North America is anticipated to be the largest regional market for IoT platform and is touted to remain dominant during the forecast period. The enterprises in the region have implemented cloud technology to a large extent over other regions in the world. Also, robust cloud infrastructure, a growing number of connected devices, and developments in artificial intelligence and machine learning technologies are projected to drive the market growth during the assessment period. There is a higher concentration of market players in the region that are continuously investing in research and development ability to develop IoT platforms with improved functionality.
Europe accounts for the second-largest market in the IoT platform market. Major country-wise markets in the region are the UK, France, Germany, and the rest of Europe. the UK is slated to gain the highest market share, followed by Germany, France, and the rest of Europe. Some of the factors responsible for the market growth include an increasing number of IoT-compatible and intelligent devices. Many businesses are employee-centric and provide flexible work options for their employees. The speedy adoption of bring your own device (BYOD) and corporate-owned personally enabled (COPE) devices has improved enterprise mobility to a fair degree. Eastern European countries are observing higher adoption of cloud technology due to the adoption of stringent regulations to streamline and secure data storage.
Competitive Analysis
The key market players of the global IoT platform market are Amazon Web Services (US), IBM Corporation (US), Microsoft Corporation (US), Huawei Technologies Co. Ltd (China), AT&T Inc. (US), Google (US), Cisco Systems, Inc. (US), General Electric (US), Intel Corporation (US), and Wipro Ltd (India)
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