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[General] Exam 300-540 Topic, 300-540 Knowledge Points

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【General】 Exam 300-540 Topic, 300-540 Knowledge Points

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Cisco 300-540 Exam Syllabus Topics:
TopicDetails
Topic 1
  • Cloud Interconnect: This section of the exam measures the skills of Service Provider Network Engineers and covers how large networks interconnect with cloud platforms and carrier-neutral facilities. Candidates are expected to understand various connectivity options to cloud providers, customer sites, and other neutral facilities, as well as evaluate WAN connectivity models such as direct connect, MPLS or segment routing, and IPsec VPN links. The domain also includes the ability to troubleshoot advanced data center interconnect solutions, including EVPN VXLAN, EVPN over SR
  • MPLS, ACI-based connectivity, and pseudowire architectures supporting cloud-to-cloud and cloud-to-edge communication.
Topic 2
  • Security: This section of the exam measures the skills of Network Security Engineers and covers the implementation of infrastructure-level protection in cloud and NFVI ecosystems. It includes topics such as ACLs, uRPF, RTBH, router hardening, BGP flowspec, TACACS, and MACSEC. Candidates should understand DoS mitigation methods and apply security practices within NFVI, focusing on API protection, securing the control and management plane, and segmentation strategies in service provider cloud environments. The domain also evaluates basic knowledge of TLS, mTLS, and general cloud security solutions related to DNS protection, zero-day defenses, and malware detection.
Topic 3
  • Service Assurance and Optimization: This section of the exam measures the skills of Cloud Operations Engineers and covers assurance mechanisms used to maintain performance, stability, and visibility across NFVI environments. It includes network assurance concepts such as MANO frameworks, VNF workload monitoring, VIM control plane KPIs, and streaming telemetry with gRPC and gNMI. Candidates must understand cloud infrastructure performance monitoring tools, including SR-PM, NetFlow, IPFIX, syslog, SNMP traps, RMON, cloud agents, and automated fault management systems. The domain also touches on diagnosing NFVI-related errors and optimizing VNFs using techniques such as SR-IOV and software-accelerated virtual switching technologies like DPDK and VPP.
Topic 4
  • Virtualized Architecture: This section of the exam measures the skills of Cloud Network Engineers and covers the foundational concepts of virtualized infrastructures used in modern service provider and cloud environments. Candidates are expected to understand constraints in IaaS designs, determine appropriate cloud service models, and demonstrate awareness of container orchestration compared to traditional virtual machines. The exam also evaluates the ability to implement key virtualization functions such as NFV, VNF, NSO, and virtualized Cisco platforms. Learners must be able to deploy NFV with automation tools, manage VNF onboarding, work with NSO-driven orchestration, and use protocols like NETCONF, RESTCONF, REST APIs, and gNMI within automated cloud ecosystems. A general understanding of supporting platforms such as OpenStack also forms part of the required knowledge in this domain.
Topic 5
  • High Availability: This section of the exam measures the skills of Cloud Infrastructure Architects and covers the design and implementation of redundancy and resiliency mechanisms in virtualized network functions and distributed cloud platforms. It includes data plane redundancy for VNFs, high availability within a single VIM control plane, and resilient compute, vNIC, and top-of-rack switching. The exam requires an understanding of multi-homing, EVLAG configurations, virtual private cloud deployment, and ECMP strategies for NFVI integrations with physical routing protocols such as BGP, OSPF, and IS-IS. Candidates must also recommend suitable high-availability models involving DNS, routing, and load balancing.

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Cisco Designing and Implementing Cisco Service Provider Cloud Network Infrastructure Sample Questions (Q57-Q62):NEW QUESTION # 57
High availability design models often include:
  • A. DNS, routing, and load balancers
  • B. Single points of failure
  • C. Decreased focus on redundancy
  • D. Only physical redundancy
Answer: A

NEW QUESTION # 58
API security is crucial for protecting:
  • A. Physical devices only
  • B. Network cables
  • C. Data storage units
  • D. Software interfaces
Answer: D

NEW QUESTION # 59
ACI's approach to data center management is unique because it:
  • A. Is application-centric, not just network-centric
  • B. Requires manual configuration for all network devices
  • C. Focuses on physical infrastructure over software
  • D. Ignores the need for automation
Answer: A

NEW QUESTION # 60


Refer to the exhibit. An engineer is troubleshooting an issue where Cisco switch Switch_A fails to establish OTV connectivity to Cisco switch Switch_C. What is the cause of the issue?
  • A. The broadcast group must be 232.1.1.0.
  • B. The join interface must be g1/0.
  • C. The join interface must be e1/1.
  • D. The control group must be 232.1.1.0.
Answer: B
Explanation:
In Cisco Overlay Transport Virtualization (OTV), thejoin interfaceis the Layer 3 interface that connects the edge device to thetransport network(the routed core / WAN) where multicast groups (control, data, broadcast) are reachable.
From the topology:
* Interfaceg1/0on Switch_A is connected to the routed 20.20.20.0/30 link toward Switch_C (the transport
/ WAN).
* Interfaceg1/1is a trunk toward Switch_B and carries extended VLANs (101, 111), so it belongs to the internal site-facing side, not the transport.
In the show otv output, the join interface is incorrectly configured asg1/1 (20.20.20.2), which is an internal trunk and not the correct routed interface to the OTV transport network. Because the join interface does not face the multicast-enabled transport, OTV cannot establish adjacency and the VPN state remains DOWN.
Correct configuration should use:
otv join-interface GigabitEthernet1/0
Options A and C about group addresses are not the issue; addresses shown (224.x for control/broadcast and
232.x for data group range) are valid multicast ranges. Option D (e1/1) is also an internal access/trunk interface and not the WAN transport interface.

NEW QUESTION # 61
Virus detectors are used to:
  • A. Monitor network bandwidth
  • B. Encrypt traffic
  • C. Identify and eliminate malware
  • D. Manage user access
Answer: C

NEW QUESTION # 62
......
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