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Last Updated: Sep 05, 2025
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The focus of this domain is on the ability of the students to perform the following technical tasks: implementation of Fibre Channel (comprising switch fabric initialization, NPV & NPIV, port channels, CFS, FCID, zoning, device alias, FCNS, and VSAN); implementation of FCoE Unified Fabric (comprising FIP & DCB); description of NFS as well as NAS concepts; description of software updates and their effects (comprising disruptive/nondisruptive & EPLD); implementation of infrastructure monitoring.
To answer the questions related to this topic, the candidates need to show their proficiency in implementing routing protocols (OSPFv2, MP-BGP, OSPFv3, PIM, and FHRP); implementing switching protocols, such as LACP, RSTP+, and Vpc; implementing overlay protocols, including VXLAN EVPN and OTV; implementing the ACI concepts, such as fabric setup, VMM, access policies, and tenant policies. Besides that, the applicants are required to show that they possess the skills in analyzing packet flow (comprising multicast, unicast, and broadcast); analyzing Cloud service as well as deployment models (NIST 800-145); describing software updates as well as their impacts (comprising disruptive/nondisruptive, EPLD, and patches); implementing the management of network configuration; implementing infrastructure monitoring such as NetFlow as well as SPAN; describing the concepts of network assurance like streaming telemetry.
The aim of this exam section is to assess the competency of the professionals in implementing Cisco Unified Compute System Rack Servers. It also encompasses their expertise in implementing Cisco Unified Compute System Blade Chassis, comprising network management, primary setup, storage management, infrastructure management, as well as server management. Other abilities measured within this subject area include describing HyperFlex Infrastructure Concepts as well as their benefits; explaining software & firmware updates as well as their influence on B-Series & C-Series servers; implementing the management of compute configuration; implementing infrastructure monitoring such as SPAN and Intersight.
The last part of the Cisco 350-601 exam comprises of the application of network security (AAA & RBAC, DHCP snooping, ACI contracts & microsegmentation, CoPP, first-hop security features like dynamic ARP inspection, and port security); application of compute security (AAA & RBAC as well as keychain authentication); application of storage security (AAA & RBAC, port security, and fabric binding).
This module requires that the examinees possess the skills in implementing automation & scripting tools, such as EEM, scheduler, REST API, Bash Shell & Guest Shell for NX-OS, JSON & XML encodings. They should also be able to assess the automation & orchestration technologies, such as Ansible, UCSD, Puppet, POAP, Python, DCNM, and PowerShell.
The Cisco 350-601 exam, commonly known as Implementing and Operating Cisco Data Center Core Technologies is a popular choice for the CCNP Data Center, CCIE Data Center, and Cisco Certified Specialist-Data Center Core certifications. This test proves that a learner has sufficient knowledge to implement core data center technologies such as storage network, compute, network, security, and automation. It is the ace up your sleeve when you want to qualify for exciting IT roles in network designing, network administration, network engineering, systems engineering, data center engineering, consulting systems engineering, field engineering, and technical solutions architecture.
The Cisco 350-601 exam is presented to the candidates in a wide range of topics, which indicate the skills measured. Here they are:
In the last section, the examinees need to demonstrate their expertise in applying network security, including CoPP, ACI contracts, and micro-segmentation, AAA and RBAC, and first-hope security features, such as port security, DHCP snooping, and dynamic ARP inspection. In addition, the candidates will need to show that they can apply to compute security effectively. Last but not least, they will have to answer the questions related to the application of storage security in reference to AAA and RBAC, fabric binding, and port security.
In the framework of this topic, the individuals need to show their competency in implementing automation and scripting tools, including REST API, EEM, Scheduler, Guest Shell and Bash Shell for NX-OS, and JSON and XML encodings. Answering the questions within this domain, they also need to be able to evaluate automation as well as orchestration technologies. This means that they should be well conversant with UCSD, DCNM, POAD, PowerShell, Python, Ansible, and Puppet.
Answering the questions from this objective, the applicants have to show that they have the capability to implement Cisco Unified Compute System Rack Servers, implement infrastructure monitoring such as Intersight and SPAN, implement compute management configuration (restore and backup), describe software and firmware updates and their effects on C-Series and B-Series servers, and explain HyperFlex Infrastructure with its benefits (all-flash vs Edge and Hybrid Architecture). Besides, within this knowledge area, the learners’ ability to implement Cisco Compute System Blade Chassis is tested. This means that the students must have the skills needed to accomplish initial setup and infrastructure management. They should also demonstrate their knowledge of server management, storage management, and network management (pools and policies, VLANs, templates, QoS).
To answer the questions from this first topic, the test takers need to demonstrate that they have the skills and knowledge required to apply routing protocols (FHRP, PIM, MP-BGP, OSPFv2, OSPFv3), implement network configuration management, and implement infrastructure monitoring such as SPAN and NetFlow. This domain also comprises of skills such as describing software updates and their impacts, which means that the students should understand fabric setup, VMM, tenant policies, and access policies. Also, they will be required to answer the questions related to analyzing Cloud deployment and service models, analyzing packet flow (broadcast, multicast, and unicast), applying overlay protocols such as OTV and VXLAN EVPN, and applying switching protocols, for example, vPC, LACP, and RSTP+.
This subject area evaluates the candidates’ proficiency in describing software updates as well as their impacts (EPLD and disruptive/nondisruptive), implementing infrastructure monitoring, describing the NAS and NFS concepts, and implementing FCoE Unified Fabric (DCB and FIP). This topic also encompasses their proficiency in implementing Fiber Chanel. This means that the applicants must have a thorough understanding of zoning, VSAN, NPV and NPIV, device alias, FCNS, CFS, FCID, port channels, and switch fabric initialization.
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