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Exam Code: 300-610 Practice exam 2023 by Killexams.com team
300-610 Designing Cisco Data Center Infrastructure (DCID)

DCID 300-610

Certifications: CCNP Data Center, Cisco Certified Specialist - Data Center Design

Duration: 90 minutes



Exam Description

The Designing Cisco Data Center Infrastructure v1.0 (DCID 300-610) exam is a 90-minute exam associated with the CCNP Data Center and Cisco Certified Specialist - Data Center Design certifications. This exam certifies a candidate's knowledge of data center infrastructure design including network, compute, storage network, and automation. The course, Designing Cisco Data Center Infrastructure, helps candidates to prepare for this exam.



35% 1.0 Network Design

1.1 Evaluate options for Layer 2 connectivity

1.1.a Endpoint mobility

1.1.b Redundancy/high availability

1.1.c Convergence

1.1.d Services insertion

1.2 Evaluate options for Layer 3 connectivity

1.2.a IP mobility

1.2.b Redundancy / high availability (graceful restart, NSF)

1.2.c Convergence

1.2.d Services insertion (load balancing, security)

1.3 Evaluate data center technologies such as vPC/vPC+

1.4 Evaluate options for interconnecting data centers such as VXLAN EVPN and OTV

1.5 Evaluate options for device and routing virtualization

1.5.a VDC

1.5.b VRF (standard, VXLAN EVPN tenant)

1.6 Evaluate in-band and out-of-band options for management

1.7 Evaluate redundancy options such as active/active and disaster recovery site

25% 2.0 Compute Design

2.1 Evaluate options for Ethernet connectivity

2.1.a Redundancy / high availability

2.1.b Bandwidth (oversubscription)

2.1.c Fabric interconnect operation mode (switch mode, end host mode)

2.2 Evaluate options for storage connectivity

2.2.a Bandwidth (port-channels, oversubscription)

2.2.b Fabric interconnect operation mode (switch mode, end host mode)

2.2.c Direct-attached storage (appliance, FC storage, and FCoE ports)

2.3 Evaluate options for network device virtualization in a data center (Cisco VIC adapters)

2.3.a Number of interfaces vs. IOM uplinks

2.3.b vCon placement policies

2.3.c Ethernet adaptor policies

2.3.d Fibre Channel adapter policies

2.4 Evaluate options for hyperconverged infrastructure

2.4.a Cluster mode

2.4.b HX for virtual server

2.4.c Desktop virtualization

20% 3.0 Storage Network Design

3.1 Plan for iSCSI deployment in a data center (Multipathing and addressing schemes)

3.2 Evaluate QoS requirements in a data center

3.2.a Fibre Channel

3.2.b FCoE

3.2.c FCIP

3.2.d iSCSI

3.3 Determine FCoE/ Fibre Channel interface

3.3.a Dedicated and shared mode

3.3.b Port types

3.3.c ISL

3.3.d Oversubscription

3.4 Evaluate SAN topology options

20% 4.0 Automation Design

4.1 Evaluate options for network orchestration and automation

4.1.a DCNM

4.1.b Intersight

4.1.c NX-API

4.1.d Model-driven programmability

4.1.e Ansible

4.1.f Puppet

4.1.g Python

4.2 Evaluate options for compute orchestration and automation

4.2.a Service profile templates

4.2.b vNIC templates

4.2.c vHBA templates

4.2.d Global policies vs. local policies


Designing Cisco Data Center Infrastructure (DCID)
Cisco Infrastructure pdf
Killexams : Cisco Infrastructure pdf - BingNews https://killexams.com/pass4sure/exam-detail/300-610 Search results Killexams : Cisco Infrastructure pdf - BingNews https://killexams.com/pass4sure/exam-detail/300-610 https://killexams.com/exam_list/Cisco Killexams : Technical Report: Cisco Incident Control System Click Here To Download:
Technical Report: Incident Control

To combat the ever-increasing virus threats, Cisco Systems® and Trend Micro have embarked on a joint initiative to offer the industry a higher level of protection against network threats and a higher class of service, in the form of real-time threat mitigation. Through this joint effort, Cisco® and Trend Micro bring a powerful new solution to security professionals: the Cisco Incident Control System (ICS). At the core of the Cisco ICS solution is the Cisco ICS server, software that acts as the administrative and delivery center and allows Cisco customers to deploy rapid-response mitigation policies to a large variety of Cisco network devices. Cisco ICS effectively and rapidly allows these network devices to mitigate and prevent newly discovered outbreak-related threats from entering the network.

The Cisco ICS solution's holistic approach and awareness of the network, coupled with TrendLabs' unparalleled threat expertise and response capabilities, make Cisco ICS a valuable addition to the Cisco Services for IPS service offering. Cisco ICS is uniquely effective at preventing virus threats from entering and propagating across the network, as well as eradicating them in the event of limited incursion. Cisco ICS provides the entire network with near-immediate awareness and response capabilities to new threats, allowing a Cisco infrastructure of devices to act as mitigation points more quickly than ever before.

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Technical Report: Incident Control
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Killexams : Learn The Infrastructure Of The Internet With This Cisco Training Bundle

The modern world thrives on the internet, even if there are some bizarre unintended consequences from tying everything to an Ethernet cable or wireless signal. And as networks grow, the demand for people who know how to design, build, maintain, and protect them becomes even more important. The 2021 Cisco CCNA & CCNP Certification Training Bundle will get you the certifications you need to become a professional network engineer.

Both certifications were created by the networking company Cisco as they realized their products were becoming more complex, while educational materials weren't keeping up. For IT professionals, that's meant getting two key certifications, starting with the Cisco Certified Network Associate certification, or CCNA. Tied to the #200-301 exam, a CCNA certifies that you're able to set up, run, and maintain a network for a small or medium-sized business.

The first course in this bundle explores that in detail with 150 lectures across nearly 47 hours discussing routing protocols, WAN technology, device monitoring and management and security fundamentals. Whether you're new to IT or just want to update your skills, it's perfect for all levels.

Then the bundle turns to the Cisco Certified Network Professional certification, or CCNP. This expands on what you learned in the CCNA course to apply it to much larger networks, adding network architecture lessons, how to employ virtualization for users, and network infrastructure and assurance. Even if you're not going for your CCNP, it's information worth knowing for any IT professional or engineer who will deals with networks.

Courses are run by ITU Online Training, which has won a ton of industry awards, including honors at the Best in Biz Awards and the Cybersecurity Excellence Awards.

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Killexams : Wi-Fi 6 Market Size, Share with Focus on Emerging Technologies, Top Countries Data, Top Key Players Update, and Forecast 2028

"Cisco Systems Inc. (US), Qualcomm Technologies Inc. (US), Broadcom Inc (US), Intel Corporation (US), Huawei technologies (China), NETGEAR Inc (US), Juniper Networks Inc (US), Extreme Networks Inc. (US), Ubiquiti Inc. (US), Fortinet Inc. (US), Aruba Networks (US), NXP Semiconductors (Netherlands), AT&T (US), D–Link Corporation (Taiwan), Telstra (Australia)."

Wi-Fi 6 Market by Offering (Hardware, Solution, and Services), Location Type, Application (Immersive Technologies, IoT & Industry 4.0, Telemedicine), Vertical (Education, Media & Entertainment, Retail & eCommerce) and Region - Global Forecast to 2028

The global Wi-Fi 6 Market size is projected to grow from USD 5.7 billion in 2023 to USD 20.9 billion by 2028, at a Compound Annual Growth Rate (CAGR) of 29.3%. With the increasing numbers of internet users, the demand for Wi-Fi 6 and its services is expected to rise, driving market growth. Also, with the exponential growth of connected devices and data-intensive applications in business environments, the demand for higher data speeds and network capacity has surged. Wi-Fi 6 offers superior performance and efficiency, meeting these escalating data requirements.

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By Application, HD video streaming and video conferencing segment is estimated to account for the largest market share in 2023.

Wi-Fi 6 is used in video streaming to deliver video content to users over the internet. Wireless technology allows devices to communicate with each other without the need for a physical connection. Wi-Fi is a wireless technology that uses radio waves to transmit data. Wi-Fi 6 is essential for video streaming because it enables users to watch video content on any device with an internet connection. This includes smartphones, tablets, laptops, and smart TVs.

By Hardware, system on chip is expected to register the fastest growth rate during the forecast period.

A Wi-Fi System-on-Chip is a single chip that integrates all the necessary components for a Wi-Fi device. This includes the Wi-Fi radio, processor, memory, and other components. Wi-Fi SoCs enable a more compact and efficient design and improved performance and power efficiency. They are used in a variety of devices, such as smartphones, tablets, laptops, and smart home devices.

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Unique Features in Wi-Fi 6 Market:

The Wi-Fi 6 market featured distinctive qualities that were advancing wireless networking technology. Wi-Fi 6, commonly known as 802.11ax, provided greater throughput, enabling quicker data transfer rates for workloads requiring large amounts of bandwidth. Technologies like Multi-User MIMO (MU-MIMO) and Orthogonal Frequency Division several Access (OFDMA) increased channel utilisation and allowed simultaneous communication with several devices, lowering latency and increasing efficiency.

Target Wake Time (TWT) was integrated into Wi-Fi 6 to optimise power usage and increase battery life, which is especially advantageous for Internet of Things (IoT) devices. BSS colouring was also implemented to prevent interference in congested areas. Additionally, the technology boosted security with protocols like WPA3 and provided backward compatibility with earlier Wi-Fi standards.

Wi-Fi 6 is excellent for high-density settings like stadiums and airports since it effectively controlled a greater number of connected devices. Its ability to lower latency and support IoT devices demonstrated how flexible it is to meet contemporary connection expectations.

Major Highlights of the Wi-Fi 6 Market:

Significant developments in the Wi-Fi 6 industry revolutionised wireless networking. These included increased data throughput, which benefited applications with a high bandwidth requirement. Multi-device simultaneous communication was made possible with the introduction of OFDMA and MU-MIMO, increasing network efficiency.

With the help of BSS Colouring and Target Wake Time (TWT) for IoT devices, Wi-Fi 6 addressed interference issues in congested areas and reduced power consumption. Two major highlights were the expanded coverage area and cutting-edge security mechanisms like WPA3. Additionally, Wi-Fi 6's capacity to operate in high-density settings and compliance with current standards demonstrated how versatile it is for different connectivity requirements.

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Top Key Companies in Wi-Fi 6 Market:

Key and innovative vendors in the Wi-Fi 6 market include Cisco Systems Inc. (US), Qualcomm Technologies Inc. (US), Broadcom Inc (US), Intel Corporation (US), Huawei technologies (China), NETGEAR Inc (US), Juniper Networks Inc (US), Extreme Networks Inc. (US), Ubiquiti Inc. (US), Fortinet Inc. (US), Aruba Networks (US), NXP Semiconductors (Netherlands), AT&T (US), D–Link Corporation (Taiwan), Alcatel Lucent Enterprise (France), TP–Link Corporation Limited (China), MediaTek Inc. (Taiwan), Telstra (Australia), Murata Manufacturing Co., Ltd. (Japan), Sterlite Technologies Limited (India), Renesas Electronics (Japan), H3C Technologies Co., Ltd. (China), Keysight Technologies (US), LitePoint (US), Rohde & Schwarz (Germany), Cambium Networks, Ltd. (US), Senscomm Semiconductors Co., Ltd. (China), XUNISON (Ireland), Redway Networks Ltd. Company (England), VSORA SAS (France), WILUS Inc. (South Korea), Federated Wireless, Inc. (US), Actiontec Electronics (US), ADB Global (Switzerland), SDMC Technology (China), and Edgewater Wireless (Canada).

Cisco

Cisco specializes in designing and selling a broad range of technologies that power the internet. The company offers its products and technologies into the following categories: secure, agile networks; internet for the future; collaboration; end-to-end security; optimized application experiences; and other products. Also, it provides a broad range of service offerings, consisting of technical support and advanced services. It provides services to businesses of all sizes, public institutions, governments, and service providers, including large web-scale providers. The company also provides comprehensive advisory services focused on responsive, preventive, and consultative support of technologies for specific networking needs. It also offers support and maintenance services to help the customers ensure their products operate efficiently, remain available, and benefit from the most up-to-date system and application software. The services offered by the company help customers to protect their network investments, manage risk, and minimize downtime for systems running mission-critical applications. Cisco Meraki offers cloud-managed wireless solutions and services as its products in the global Wi-Fi 6 market. The company’s customers primarily operate in the following markets: enterprise, commercial, service provider, and public sector. It conducts business globally and has a presence across the Americas, Europe, Middle East, and Africa (EMEA), and Asia Pacific, Japan, and China (APJC).

QUALCOMM

Qualcomm is a global leader in developing and commercializing foundational technologies for the wireless industry. The technologies and products are used in mobile devices and other wireless products. They are sold across industries and applications beyond mobile handsets, including automotive and the Internet of Things (IoT) (which includes the industries and applications of consumer, industrial, and edge networking). The company's inventions have helped power the growth of smartphones, which have connected billions of people. Qualcomm is a leader in 3G (third generation), 4G (fourth generation), and 5G (fifth generation) wireless technologies. Most 5G devices include multimode support for 3G, 4G, and Wi-Fi 6 technologies, enabling service continuity. They also allow mobile operators to utilize existing 3G and 4G network infrastructure, enabling them to roll out 5G services over time while helping maximize previous-generation equipment investments.

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Killexams : Wireless Infrastructure Market to Reach USD 427.43 Billion by 2029 | At a CAGR of 11.27%

Key Companies Covered in Wireless Infrastructure Market are Capgemini Engineering (France) , Ciena Corporation (U.S.), Cisco Systems, Inc. (U.S.), D-Link Corporation (Taiwan), Fujitsu (Japan), Huawei Technologies co., Ltd. (China), NEC Corporation (Japan), NXP Semiconductor (Netherlands), Qualcomm Technologies Inc. (U.S.), ZTE Corporation (China), Telefonaktiebolaget LM Ericsson (Sweden), Nokia (Finland), SAMSUNG (South Korea), Mavenir (U.S.) and Other Key Player.

Wireless Infrastructure Market

Wireless Infrastructure Market Size

Pune, India, Aug. 21, 2023 (GLOBE NEWSWIRE) -- The global wireless infrastructure market size was valued at USD 202.43 billion in 2022 and is projected USD 427.43 billion by 2029. This growth is expected to occur at an impressive Compound Annual Growth Rate (CAGR) of 11.27% during the forecast period. The research report, titled "Wireless Infrastructure Market, 2023-2029," conducted by Fortune Business Insights™, delves deeply into these insights.

The analysis underscores a surge in demand for high-speed data within both residential and commercial sectors. This, in turn, is expected to drive investments across economies at varying stages of development, spanning from emerging to advanced. A noteworthy trend is the increasing interest in satellite-based connectivity, particularly within the marine and defense sectors. This trend is poised to attract investments in this particular segment. Additionally, there is a positive outlook regarding investments in 5G technology, indicating promising growth prospects in the forthcoming years.

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List of Key Players Profiled in the Wireless Infrastructure Market Report:

  • Capgemini Engineering (France)

  • Ciena Corporation (U.S.)

  • Cisco Systems, Inc. (U.S.)

  • D-Link Corporation (Taiwan)

  • Fujitsu (Japan)

  • Huawei Technologies co., Ltd. (China)

  • NEC Corporation (Japan)

  • NXP Semiconductor (Netherlands)

  • Qualcomm Technologies Inc. (U.S.)

  • ZTE Corporation (China)

  • Telefonaktiebolaget LM Ericsson (Sweden)

  • Nokia (Finland)

  • SAMSUNG (South Korea)

  • Mavenir (U.S.)

Report Scope & Segmentation:

Report Coverage

Details

Forecast Period

2022-2029

Forecast CAGR

11.27%

2029 Value Projection

USD 427.43 Billion

Market Size in 2022

USD 202.43 Billion

Historical Data

2018-2020

No. of Pages

298

Report Coverage

Revenue Forecast, Company Profiles, Competitive Landscape, Growth Factors and Latest Trends

Segments Covered

Regions Covered

  • North America

  • Europe

  • Asia Pacific

  • South America

  • Middle East and Africa

Wireless Infrastructure Market Growth Drivers

Increase in Demand for High-speed Internet Connectivity to Drive the Market Growth

Growing Adoption of IoT-based Electronics Devices Boosts the Growth of the Market

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https://www.fortunebusinessinsights.com/wireless-infrastructure-market-102741

Segments

5G Connectivity to Remain Dominant with Rising Demand for High Speed

In terms of connectivity, the market is segregated into 3G, 2G, 4G & LTE, 5G, and satellite. The 5G segment will grow at a robust rate due to rising demand for broader connections, high speed, and low latency. Growing usage of smart devices will further propel the demand for 5G technology.

Macro-cell to be Sought-after to Boost IoT, Mobile Device Coverage

With respect to infrastructure, the market is segregated into small cell, mobile core, carrier Wi-Fi, macro-cells, SATCOM, Radio Access Network (RAN), Distributed Antenna System (DAS), cloud RAN, and backhaul. The macro-cells segment will observe a notable CAGR during the forecast period, largely due to the need to boost mobile device, smartphone, and IoT device coverage.

Government & Defense Sector to Exhibit Profound Demand with Rising Investments in Military Domain

On the basis of the platform, the market is classified into commercial and government & defense. The government & defense segment is further subdivided into homeland security, defense, and government institutions/agencies. The government & defense segment will grow due to soaring investments in the military and maritime sectors.

Russia-Ukraine War Impact

Strong Demand for Wireless Services Expedites Production

Demand for advanced telecommunication equipment became pronounced following Russia’s invasion of Ukraine. European countries exhibited an exponential demand for advanced telecommunication equipment for navigation and military communication services. Prominently, the demand for multi-platform anti-jamming antennas became noticeable to prevent intrusion and detection from enemies.

COVID-19 Impact

5G Deployment Witnessed Disruptions Amidst Pandemic

Supply chain disruptions across major economies had a telling impact on the 5G deployment. Leading companies postponed or canceled their projects. Meanwhile, robust policies favored the introduction of 5G and business automation. The expansion of wireless infrastructure became pronounced as companies strived to overcome challenges stemming from the COVID-19 pandemic.

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Report Coverage

The report offers a comprehensive perspective of the market size, share, revenue, and volume. It has deep-dived into SWOT analysis. Quantitative and qualitative assessments have provided a holistic view of the market. The primary interviews validate assumptions, findings, and prevailing business scenarios. The report also includes secondary resources, such as annual reports, press releases, white papers, and journals.

Drivers and Restraints

The trend for IoT-based Electronic Devices to Drive Innovations

An exponential rise in data usage on defense vetronics and smartphones could spur the wireless infrastructure market share. Bullish demand for sensors, receivers, transmitters, and processors will augur well for the industry's growth. To illustrate, in October 2021, COMSovereign collaborated with Total Network Solutions (TNS) to explore how blockchain technology could Boost wireless network security in the U.S. Besides, soaring demand for advanced electronics devices in the aerospace and defense sector could expedite investments across the globe. However, prevailing concerns such as breaches of data privacy and network breach could impede the industry growth.

Regional Insights

North America to Provide Promising Opportunities with the Presence of Leading Companies

The U.S. and Canada could witness investments galore in the wake of the growing expansion of 5G networks and infusion of funds into the military and defense sectors. Increased demand for satellite connections will spur the demand for autonomous vehicle infrastructure will bode well for regional growth. Prominently, industrial automation could encourage leading companies to invest in North America.

Europe wireless infrastructure market growth will be pronounced with following the implementation of robust policies. Major companies, such as Deutsche Telekom, Ericsson, Inmarsat plc, and Three UK, are expected to expedite investments in advanced wireless infrastructure solutions.

The Asia Pacific market outlook will be strong on the back of the expansion of smartphone users across China, India, and Australia. Wireless communication devices are expected to be sought-after as the demand for higher-speed and low latency continues to surge across the region. It is worth noting that the digitalization of the maritime and defense sector will bode well for regional growth.

Competitive Landscape

Major Players Emphasize Meeting High Bandwidth Demand to Boost Portfolios

Leading companies are expected to invest in organic and inorganic strategies, including product launches, mergers & acquisitions, technological advancements, and R&D activities. Besides, major companies could invest in innovations and product offerings in the ensuing period.

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Detailed Table of Content:

  • Introduction

  • Executive Summary

  • Market Dynamics

    • Market Drivers

    • Market Restraints

    • Market Opportunities

  • Key Insights

    • Key Industry Developments –Mergers, Acquisitions and Partnerships

    • Latest technological Advancements

    • Porters Five Forces Analysis

    • Supply Chain Analysis

  • Quantitative Insights-Impact of COVID-19 Pandemic on Global Wireless Infrastructure Market

    • Impact of COVIC-19 Pandemic on the Global Wireless Infrastructure Market

    • Steps Taken by the Industry/Companies/Government to Overcome the Impact

    • Key Development in the Industry in Response to COVID-19 Impact

  • Global Wireless Infrastructure Market Analysis, Insights and Forecast, 2018-2029

    • Key Findings / Definitions

    • Market Analysis, Insights and Forecast – By Connectivity Type

      • 5G

      • 4G & LTE

      • 3G

      • 2G

      • Satellite

    • Market Analysis, Insights and Forecast – By Infrastructure Type

    • Market Analysis, Insights and Forecast – By Platform

      • Government & Defense

      • Commercial

    • Market Analysis, Insights and Forecast – By Region

      • North America

      • Europe

      • Asia pacific

      • The Middle East

      • Rest of the world

  • North America Wireless Infrastructure Market Analysis, Insights and Forecast, 2018-2029

    • Market Analysis, Insights and Forecast – By Connectivity Type

      • 5G

      • 4G & LTE

      • 3G

      • 2G

      • Satellite

    • Market Analysis, Insights and Forecast – By Infrastructure Type

    • Market Analysis, Insights and Forecast – By Platform

      • Government & Defense

      • Commercial

TOC Continued...!

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Key Industry Development

Read Related Insights:

Remote Sensing Satellite Market to Hit USD 29.19 Billion by 2030 | With a CAGR of 10.9%

Anti-Jamming Market Size Projected to Reach USD 8.28 Billion by 2029 | With a CAGR of 12.36%

Military Radar Market to Worth USD 22.06 Billion by 2028 | With 6.27% CAGR

About Us:

Fortune Business Insights™ delivers accurate data and innovative corporate analysis, helping organizations of all sizes make appropriate decisions. We tailor novel solutions for our clients, assisting them to address various challenges distinct to their businesses. Our aim is to empower them with holistic market intelligence, providing a granular overview of the market they are operating in.

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Killexams : Cisco AppDynamics: 85% of tech experts say application observability is a strategic priority for managing cloud complexity

Presented by Cisco AppDynamics


Cloud native technologies might have improved speed to innovation, and offer greater agility, reliability and scalability — but these modern application architectures are posing serious challenges for IT departments across industries, according to latest research by Cisco AppDynamics for its latest report, “The Age of Application Observability.

Technologists say that 49% of their new innovation initiatives are being delivered with cloud native technologies. Cloud adoption promises to be aggressive across industries, with IT leaders expecting this figure to climb to 58% over the next five years. That means that the majority of new digital transformation programs will be built on cloud native technologies by 2028.

“These cloud native technologies are enabling IT teams to scale, to be able to take on more customers, to grow faster, and still maintain an optimized experience for the end user,” says Joe Byrne, executive CTO at Cisco AppDynamics. “But the rapid pace of adoption means technologists have been faced with challenges from both the tech front and the people front, and they’re struggling.”

A look at the challenge landscape

Attack surfaces are expanding, complexity is skyrocketing, and data keeps pouring in. Seventy-eight percent of technologists said the increased volume of data from multi-cloud and hybrid environments has made manual monitoring virtually impossible. The rigorous pace of adoption and the technical issues that follow in its wake has also meant tension in the IT department as silos form, and stress and higher churn is becoming increasingly common.

“The goal of the application observability report was to underscore the need for technologists to adapt to this new hybrid world,” Byrne says. “And the report was designed to provide a resource to these technologists first to let them know they’re not alone – these are common issues. But more importantly, to find solutions and next steps in managing and mitigating these issues going forward.”

Managing the fragmented IT state

The cloud and on-premises, hybrid nature of modern architectures means that traversing that entire ecosystem is crucial. As a result, new teams are formed to help manage the complexity – a cloud operations team to work with the network operations team, and both operations teams working separately from security.

But to effectively manage what is essentially a fragmented IT estate, 85% of technologists say that observability has to be a strategic priority for the organization going forward – a way to pull this telemetry together, correlate it, and deliver organizations insight into the crucial backend of their business. Bridging that gap takes not only tools and technology, but people and process changes and a cultural shift.

“Everybody needs to be on the same page when producing an application or an experience for the end user, who expects an optimized experience, whether that’s B2C or B2B,” Byrne says. “There’s a business KPI behind all software. Our goal is to ensure the software helps our customers achieve their goals, and thus helps the business achieve its KPIs. So, everyone must own a piece.”

Why these challenges are so intractable

“It’s new technology and new expectations bringing new problems,” Byrne says. “The old methodology of just validating that something is up and running isn’t good enough anymore. The idea of looking at the architecture as separate, isolated parts is not enough anymore. Now, it’s all about how is it all performing together, and what does the end result look like in terms of the experience? It’s a very different way of thinking. And it’s hard to get your head around it.”

It’s also the fact that the technology is moving at a rapid pace, as are the expectations of users, but processes and culture have always changed far more slowly. As a result, 36% of technologists said these issues are already contributing to a loss of their IT talent, which hamstrings teams and puts change on the backburner, in favor of firefighting – and 46% predict that churn is just going to increase if they don’t figure out a way to break down these silos and shift to a focus on observability, versus a monitoring solution.

Breaking down silos and obstacles

The goal of most organizations is to build an application that’s always on, can be used on any device, whenever and wherever the customer wants to use it — but that’s what is creating these challenges for technologists. It requires new technology, it requires rapid adoption and acceleration of digital initiatives, and it leaves skill gaps, a Frankenstein management and reporting structure made up of the old and new, a lack of shared vision and objectives, and a lack of unified data and technology that’s reinforcing these silos.

“IT leaders need to implement new ways of working across departments, and incentivizing and driving people to change their actions is an important one,” Byrne says, “whether it’s shared goals, shared bonuses, or increased compensation. But tool consolidation is also crucial.”

Bringing in unified tools that are integrated tightly and able to work together, versus every team using a completely different tool, can not only save the organization money, but also means each team is looking at the same charts and data points, speaking the same language, using the same methodologies.

“Then they start to understand how important it is to work together, how easy it can be,” he explains. “Then those silos start to get broken down.”

The people-centered value of application observability

Application observability serves as what should be a single source of truth. It brings together application information, network, infrastructure, performance, security and business data — and links that all together to deliver technologists the overall health of the application, and the ability to generate insights into the business transactions of users. For instance, in a retail application that might be a user logging in, searching, adding to cart, checking out, which together makes up the business journey.

“Understanding how those are related, what technologies are involved for each of those transactions that complete that journey, is important,” Byrne says. “We found that 88% of technologists say that observability with business context is really what’s going to enable them to become more strategic and spend more time on innovation.”

For example, the business data that comes from monitoring applications can be aggregated and elevated, so that you can build a dashboard showing the average sales per day, the average number of customers, conversions and other business metrics. With that data, technologists see how their optimization directly impacts the business. That could include a change in the code that auto-populates some data, or enables the task to use less data to minimize friction for purchases. And now instead of being seen this application observability as a cost center, the value of the work IT is doing is tied directly to the business.

“If you release code and then see that happen in a business dashboard, the technologists can say, my code, my application, my infrastructure did that, and now they understand how they directly impact business,” Byrne says. “With the ability to link what they’re doing, how they’re doing it, the performance of their teams along with code and architectures, to a business metric, comes pride of ownership. They feel like they have a seat at the table now, a bigger voice, and can help advance the business. That’s a huge opportunity.”

Implementing an application observability solution also means that engineers are spending more time writing code – what they want to be doing – and less time bug fixing or refactoring. Team members get to the root causes more quickly, are able to measure performance more easily, before code ever goes into production, which means fewer errors are sent out into the wild.

“What these technologists need is that solution, like Cisco’s full-stack observability (FSO) offering – that brings a broad range of telemetry together and making it understandable and usable in terms of fixing issues and moving forward,” he says. “That’s what’s so needed.”

Dig deeper: Read the full “The Age of Application Observability Report” here.


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Mon, 31 Jul 2023 01:20:00 -0500 VB Staff en-US text/html https://venturebeat.com/data-infrastructure/cisco-appdynamics-85-of-tech-experts-say-application-observability-is-a-strategic-priority-for-managing-cloud-complexity/
Killexams : Mind the Infrastructure Gap

Infrastructure is the backbone of any economy and is critical to unlocking a country’s growth. Fuelled by rapid urbanisation and population growth, Asia is facing a growing infrastructure deficit between what is needed and what is available.

Estimates by the Asian Development Bank point to a US$459 billion a year(1) financing gap in the region, similar to the GDP of Thailand.(2) And if these needs are not met, this gap, and the inequality it stokes, will only widen.

Currently in Southeast Asia, 50.9% of the population lives in urbanised areas, with the UN expecting this figure to rise to an average of 66.4% by 2050. Aggravating this movement towards cities is Asia’s population growth. By 2050 Asia’s population is expected to increase by 142 million(3) compared to Europe, where the population is expected to shrink by more than 25 million over the same period.

Because of this, throughout Southeast Asia, there has been a tremendous push towards improving infrastructure. Indonesian President Joko Widodo’s government is planning to spend US$327 billion(4) on a pipeline of 265 projects, and Philippine President Rodrigo Duterte has earmarked US$180 billion for railways, roads and airports.(5) Yet with the improvements that need to be made, and the complexity of infrastructure development, regional cooperation through the likes of the Association of Southeast Asian Nations (ASEAN) is key.

“I think ASEAN is definitely making progress in this space, in order to draw together their economies, specifically in infrastructure, and to combine that with the services of infrastructure, such as logistics,” says Jordan Schwartz, World Bank’s director for infrastructure, PPPs and Guarantees.

Through strategies such as the Master Plan on ASEAN Connectivity 2025, countries have been united in a vision towards building a network, and are working together on priority projects such as the ASEAN Highway Network and the Singapore-Kunming Rail Link.

“There are very different priorities across the different markets,” says Mark Rathbone, PwC’s Asia Pacific Capital Projects & Infrastructure Leader. “If you’re looking at a country like Thailand, their big focus is to boost their own manufacturing capabilities and connectivity between the different economic centres. Meanwhile, in Laos or Cambodia it’s a far more basic infrastructure need, around building roads, railways and power stations, as well as housing and healthcare.”

The ability of ASEAN countries to continue growing at their current rates will depend largely on how much infrastructure they can deliver in the coming years. From power generation, clean water, effective utility networks and improvements in transportation networks – these are all essential to ensuring that Southeast Asia is able to fulfil its potential.

With this in mind, there is a necessity for developed countries in the region to contribute according to their strengths and lay important groundwork.

“The primary goal for developed countries is example setting and certain resource mobilisation,” says World Bank’s Schwartz. “I can see the need for a one-stop-shop, where the technical skills can be brought together with the financing, the legal expertise and the economics. That coordination effort can be really important.”

Singapore can play a unique role as a facilitator to infrastructure development in the region, says Kow Juan Tiang, Deputy Executive Director of Infrastructure Asia.

“Singapore has a strong track record of delivering infrastructure projects on the ground, whether it is our sea ports, airports or our entire utility infrastructure,” says Kow. Singapore also has “an entire ecosystem with different expertise required for a complex sector like infrastructure from engineering and technical aspects, to financing and structuring abilities and a robust legal framework.”

For many of these reasons, the World Bank Group chose Singapore as its first and only Infrastructure and Urban Development Hub,(6) employing around 200 people with teams dedicated to energy, water transport, public private partnerships and urban development to name just a few.

Another example of collaboration between Singapore and its neighbours include the 225-megawatt gas fired power plant in Myanmar’s Myingyan, near Mandalay. Singapore-listed energy company Sembcorp will spend around US$300 million building and operating the power plant for 22 years, after which the facility will be transferred to the Myanmar government.

While many tend to think of infrastructure as the physical assets, the World Bank’s Schwartz is desparate to highlight that the first step towards cooperation often lies on the negotiating table.

“For the most part, laying cables and paving roads, even putting tracks down, is only the first step of connectivity through infrastructure,” says Schwartz. “The way in which we address the regulations and the policies such as the rules of trade or open skies, these are probably as important, and in some cases, maybe even more important, than the physical infrastructure. Collective action is required.”

This piece of content is brought to you by Enterprise Singapore andInfrastructure Asia

Fri, 19 Oct 2018 13:34:00 -0500 en-us text/html https://www.reuters.com/plus/mind-the-infrastructure-gap
Killexams : What is the Mac Evaluation Utility tool? No result found, try new keyword!Mac Evaluation Utility is an application Apple built to help organizations integrate Macs more effectively within existing environments. Fri, 18 Aug 2023 01:37:00 -0500 en text/html https://www.computerworld.com/ Killexams : Oppenheimer Reiterates Cisco Systems (CSCO) Outperform Recommendation No result found, try new keyword!Fintel reports that on August 17, 2023, Oppenheimer reiterated coverage of Cisco Systems (NASDAQ:CSCO) with a Outperform recommendation. Analyst Price Forecast Suggests 7.17% Upside As of August 2, ... Thu, 17 Aug 2023 01:21:17 -0500 en-us text/html https://www.msn.com/ Killexams : Security News This Week: US Energy Firm Targeted With Malicious QR Codes in Mass Phishing Attack

At the Defcon security conference in Las Vegas last weekend, thousands of hackers competed in a red-team challenge to find flaws in generative AI chat platforms and help better secure these emerging systems. Meanwhile, researchers presented findings across the conference, including new discoveries about strategies to bypass a latest addition to Apple’s macOS that is supposed to flag potentially malicious software on your computer. 

Kids are facing a massive online scam campaign that targets them with fake offers and promotions related to the popular video games Fortnite and Roblox. And the racket all traces back to one rogue digital marketing company. The social media platform X, formerly Twitter, has been filing lawsuits and pursuing a strategic legal offensive to oppose researchers who study hate speech and online harassment using data from the social network.

On Thursday, an innovation agency within the US Department of Health and Human Services announced plans to fund research into digital defenses for health care infrastructure. The goal is to rapidly develop new tools that can protect US medical systems against ransomware attacks and other threats.

But wait, there’s more! Each week, we round up the stories we didn’t cover in depth ourselves. Click the headlines to read the full stories. And stay safe out there.

A large phishing campaign that’s been active since May has been targeting an array of companies with malicious QR codes in attempts to steal Microsoft account credentials. Notably, researchers from the security firm Cofense observed the attacks against “a major Energy company based in the US.” The campaign also targeted organizations in other industries, including finance, insurance, manufacturing, and tech. Malicious QR codes were used in nearly a third of the emails reviewed by researchers. QR codes have disadvantages in phishing, since victims need to be compelled to scan them for the attack to progress. But they make it more difficult for victims to evaluate the trustworthiness of the URL they’re clicking on, and it’s more likely that emails containing a QR code will reach their target, because it’s more difficult for spam filters to assess QR images included in an attachment like a PDF.

It’s common practice for attackers—both criminal actors and state-backed hackers—to scam or otherwise lure victims from a starting point of mainstream services like email, photo sharing, or social media. Now, research from the security firm Recorded Future attempts to categorize the types of malware most often distributed from these various jumping-off points, and which strategies are most common. The goal was to deliver defenders deeper insight into the services they need to prioritize securing. The review found that cloud platforms are the most used by attackers, but communication platforms like messaging apps, email, and social media are also widely abused. Pastebin, Google Drive, and Dropbox were all popular among attackers, as are Telegram and Discord.

In response to the “Downfall” Intel processor vulnerability disclosed by Google researchers last week, organizations have been releasing tailored fixes for the flaw. The bug could be exploited by an attacker to grab sensitive information like login credentials or encryption keys. Amazon Web Services, Google Cloud, Microsoft Azure, Cisco, Dell, Lenovo, VMWare, Linux distributions, and many others have all released guidance on responding to the vulnerability. Prior to public disclosure, Intel spent a year developing fixes to distribute across the industry and coordinating to encourage widespread patch release from individual vendors. 

Sat, 19 Aug 2023 01:00:00 -0500 en-US text/html https://www.wired.com/story/qr-codes-phishing-attack/
Killexams : Cisco Announces Innovations, Investments In Security Infrastructure; Expands Data Center Footprint In India No result found, try new keyword!Cisco has announced security innovations and investments in security infrastructure in the country to help organisations become more resilient and tackle cybersecurity risks in a hybrid world. Mon, 20 Mar 2023 02:02:00 -0500 en-US text/html https://www.outlookindia.com/business/cisco-announces-innovations-investments-in-security-infrastructure-expands-data-center-footprint-in-india-news-271687
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