- (5.0 Star)
CloudNet Certified IMS Pro
Professional Diploma Training
We offer instructor-led online live virtual training and physical classroom training delivered by certified trainers and experienced industry professionals
- Get Up to 25% discount
About Course
CloudNet Certified IMS Pro is a comprehensive 24-month professional diploma program designed to transform learners into industry-ready professionals in IT Infrastructure, Networking, Cloud Computing, Cybersecurity, and DevOps. The program is carefully structured to take students from core fundamentals to advanced enterprise-level skills, ensuring they are fully prepared for real-world IT and cloud roles.
Offered by CloudNet India, Kolkata, this diploma blends strong theoretical foundations with extensive hands-on практиcal training, live labs, case studies, and real-time projects. Students work with industry-standard tools and platforms used by global organizations, gaining exposure to on-premise systems, hybrid environments, public cloud platforms, automation, containerization, and security operations.
The curriculum is certification-aligned and job-oriented, focusing not only on passing international exams but also on building the practical skills employers demand. From designing secure networks and managing enterprise systems to deploying cloud infrastructure, automating workflows, and operating Kubernetes clusters, learners graduate with a full-stack infrastructure and cloud skillset.
With expert mentors, structured learning paths, and continuous career support, CloudNet Certified IMS Pro bridges the gap between education and employment, helping students confidently step into high-growth careers in Cloud, DevOps, and IT Infrastructure.
The course is structured in two phases:
Module I – Core Infrastructure & Security
Module II – Advanced Cloud, DevOps & Containerization
Students gain hands-on experience through labs, real-world projects, and certification-aligned training.
Certifications & Technologies Covered
Module I – Core & System Administration
- CompTIA A+
- CompTIA Network+
- Cisco CCNA
- CompTIA Security+
- Microsoft Hybrid System Administrator
- RHCE (RHEL 10 + Ansible Automation)
Module II – Advanced Cloud & DevOps
- AWS Solutions Architect – Associate
- Microsoft Azure Administrator – Associate
- HashiCorp Terraform – Associate
- Certified Kubernetes Administrator (CKA)
- Azure DevOps Engineer – Expert
- Azure Security Engineer – Associate
Who Can Join?
This program is ideal for:
- Students after 12th / Diploma / Graduation
- IT freshers and career switchers
- Network/System Admins upgrading to Cloud & DevOps roles
- Professionals looking to specialize in Cloud, Security, and Automation
No prior cloud experience is required — training starts from fundamentals.
Job Roles You Can Target
After completing this diploma, learners can apply for roles such as:
- Cloud Engineer / Cloud Administrator
- DevOps Engineer / Site Reliability Engineer (SRE)
- System Administrator / Infrastructure Engineer
- Network Engineer
- Cybersecurity / Cloud Security Associate
- Kubernetes / Platform Engineer
Placement & Career Support – CloudNet India, Kolkata
CloudNet provides strong placement assistance, including:
- Resume & LinkedIn profile building
- Mock interviews & technical grooming
- Live project experience
- Career mentoring & job referrals
Why Choose CloudNet Certified IMS Pro?
24 Months structured, industry-aligned training
Certification-focused curriculum
Hands-on labs & real projects
Expert trainers with real-world experience
Strong placement support from CloudNet India, Kolkata
Key Features
You will get 100% job Assurance and life time e-placement support
classed taken by globally certified trainers
You will get 3 year Dedicated placement support
Courses are globally recognized & accredited
Course Type:
Professional Diploma Training
Live virtual classroom:
₹ 120,000/-
₹ 150,00/-
Regular classroom:
₹ 120,000/-
₹ 150,000/-
- Duration:
24 Months
- Enrolled:
114 Learners
- Eligibility:
10+2 / Graduate any
- 5 Star:
42 Reviews
MODULE - I (Core)
CompTIA A+ Module-wise Training Structure (220-1101 & 220-1102)
Total Duration: 10–12 Weeks (80 Hours)
Training Mode: Classroom / Online / Hybrid
Level: Entry-Level IT Support
MODULE 1: IT Fundamentals & Professional Skills
- Introduction to IT support roles
- IT service environments
- Computer system overview
- Data representation basics
- Safety procedures and ESD precautions
- Professional communication skills
- IT documentation basics
Outcome: Strong foundation in IT concepts and workplace practices
MODULE 2: Computer Hardware Fundamentals
- Motherboard architecture
- Processor types and features
- Memory technologies
- Storage devices and interfaces
- Power supply units
- Cooling and form factors
- BIOS and UEFI concepts
Outcome: Ability to identify, install, and understand PC hardware
MODULE 3: Peripheral Devices & Printing Technologies
- Input and output devices
- Display technologies
- Expansion cards
- Printer types and components
- Printer installation and configuration
- Printer maintenance procedures
- Common printer issues and resolution
Outcome: Efficient handling of peripherals and printers
MODULE 4: Mobile Devices & Laptop Support
- Laptop hardware components
- Laptop display and battery technologies
- Mobile devices overview
- Mobile accessories and ports
- Mobile connectivity options
- Mobile operating system basics
- Mobile device troubleshooting
Outcome: Support and maintain laptops and mobile devices
MODULE 5: Networking Essentials
- Network types and topologies
- Network cables and connectors
- IP addressing fundamentals
- Common ports and protocols
- Networking devices
- Wireless technologies
- Small office and home office networking
Outcome: Configure and troubleshoot basic networks
MODULE 6: Virtualization & Cloud Concepts
- Virtualization fundamentals
- Virtual machine concepts
- Hypervisor types
- Cloud computing overview
- Cloud service models
- Cloud deployment models
- Client-side virtualization use cases
Outcome: Understand modern IT infrastructure environments
MODULE 7: Hardware & Network Troubleshooting
- Structured troubleshooting approach
- Common hardware failures
- Storage and boot-related issues
- Network connectivity problems
- Preventive maintenance
- Safety and escalation procedures
Outcome: Diagnose and resolve hardware and network issues
MODULE 8: Operating Systems Fundamentals
- Operating system concepts
- Operating system installation methods
- System configuration tools
- Disk and file management
- System maintenance practices
- Cross-platform OS overview
Outcome: Manage and maintain operating systems effectively
MODULE 9: Command-Line & System Utilities
- Command-line interface concepts
- Common system utilities
- File and process management
- Disk and system monitoring tools
- Administrative utilities
Outcome: Confident use of system management tools
MODULE 10: Security Fundamentals
- Security concepts and principles
- Threats and vulnerabilities
- Malware types and prevention
- Authentication and access control
- Encryption basics
- Wireless and workstation security
Outcome: Secure systems and prevent common attacks
MODULE 11: Software & OS Troubleshooting
- Operating system startup issues
- Application errors and crashes
- Malware-related problems
- Mobile OS issues
- Performance optimization techniques
Outcome: Resolve software-related issues efficiently
MODULE 12: Operational Procedures & Job Readiness
- Change management concepts
- Backup and recovery principles
- Disaster recovery overview
- Workplace safety standards
- Environmental best practices
- Resume and interview preparation
Outcome: Job-ready IT support professional
Final Learning Outcomes
- Industry-ready IT support skills
- Strong troubleshooting capability
- Global certification alignment
- Entry-level IT job readiness
Career Opportunities
- Help Desk Technician
- Desktop Support Engineer
- IT Support Executive
- Field Support Technician
CompTIA Network+
Total Duration: 8–10 Weeks (50 Hours)
Training Mode: Classroom / Online / Hybrid
Level: Entry-Level to Intermediate Networking
MODULE 1: Networking Fundamentals
- Introduction to computer networking
- Network types and use cases
- Network topologies
- OSI and TCP/IP models
- Data transmission basics
- Network standards overview
Outcome: Strong foundation in networking concepts and models
MODULE 2: Network Cables, Ports & Interfaces
- Copper and fiber-optic cabling
- Cable standards and connectors
- Network interface cards
- Port numbers and services overview
- Transceivers and media types
Outcome: Ability to identify and work with network media
MODULE 3: IP Addressing & Subnetting
- IPv4 and IPv6 concepts
- Binary and decimal conversion
- Subnetting fundamentals
- CIDR notation
- Public vs private addressing
- Address assignment methods
Outcome: Understand IP addressing and basic subnetting
MODULE 4: Network Devices & Infrastructure
- Switches and routers
- Wireless access points
- Firewalls and security appliances
- Load balancers and proxies
- Network design basics
- On-premise vs cloud infrastructure
Outcome: Deploy and understand network infrastructure components
MODULE 5: Routing, Switching & Wireless Concepts
- Switching concepts
- Routing fundamentals
- Static and dynamic routing overview
- VLAN concepts
- Wireless standards and frequencies
- Wireless configuration basics
Outcome: Build and manage basic wired and wireless networks
MODULE 6: Network Services & Applications
- DNS, DHCP concepts
- Web and email services
- File and print services
- VoIP and collaboration tools
- Network management services
Outcome: Support common network services and applications
MODULE 7: Network Security Fundamentals
- Security concepts and principles
- Network threats and attacks
- Firewalls and access control
- VPN concepts
- Wireless security
- Network hardening basics
Outcome: Secure network environments against common threats
MODULE 8: Network Monitoring & Troubleshooting
- Network monitoring concepts
- Performance metrics
- Troubleshooting methodology
- Common network issues
- Network diagnostic tools overview
- Incident documentation
Outcome: Diagnose and resolve network problems efficiently
MODULE 9: Cloud, Virtualization & Modern Networking
- Virtual networking concepts
- Cloud networking basics
- Software-defined networking overview
- Network automation fundamentals
- Remote connectivity solutions
Outcome: Understand modern and cloud-based networking
MODULE 10: Operational Procedures & Job Readiness
- Network documentation
- Change management
- Disaster recovery concepts
- Compliance and policies
- Professional communication
- Resume and interview preparation
Outcome: Job-ready networking professional
Final Learning Outcomes
- Practical networking knowledge
- Strong troubleshooting skills
- Industry-aligned networking foundation
- Readiness for global certification
Career Opportunities
- Network Support Technician
- Network Administrator (Junior)
- NOC Engineer
- IT Infrastructure Support Engineer
CCNA
Total Duration: 10–12 Weeks (120–150 Hours)
Training Mode: Classroom / Online / Hybrid
Level: Entry-Level Networking
MODULE 1: Networking Fundamentals
- Introduction to computer networks
- Network components and roles
- Types of networks and topologies
- Data transmission concepts
- Network standards overview
Outcome: Understand how networks work and why they are used
MODULE 2: OSI & TCP/IP Models
- Purpose of layered models
- OSI model layers and functions
- TCP/IP model overview
- Data encapsulation and decapsulation
- Mapping OSI to TCP/IP
Outcome: Clear understanding of network communication models
MODULE 3: Network Media & Cabling
- Copper cabling types
- Fiber-optic cabling
- Cable standards and connectors
- Ethernet fundamentals
- Interface concepts
Outcome: Ability to identify and work with network media
MODULE 4: IP Addressing Concepts
- IPv4 addressing structure
- Binary and decimal basics
- Public and private IP addresses
- Addressing rules and formats
- Introduction to IPv6
Outcome: Understand IP addressing fundamentals
MODULE 5: Subnetting & Address Planning
- Purpose of subnetting
- Subnet masks and CIDR
- Subnet calculation basics
- Address planning concepts
- Common subnetting scenarios
Outcome: Create and understand subnetted networks
MODULE 6: Switching Concepts
- Ethernet switching overview
- MAC address learning
- Frame forwarding process
- VLAN concepts
- Inter-VLAN communication overview
Outcome: Understand how switches operate in LANs
MODULE 7: Routing Concepts
- Purpose of routing
- Router components and functions
- Static routing concepts
- Dynamic routing overview
- Default routing concepts
Outcome: Understand how data moves between networks
MODULE 8: Wireless Networking
- Wireless standards overview
- Wireless frequencies and channels
- Wireless devices and components
- Wireless security basics
- Wireless deployment concepts
Outcome: Configure and support wireless networks
MODULE 9: Network Services
- DNS concepts
- DHCP concepts
- NTP overview
- SNMP basics
- Network service roles
Outcome: Support essential network services
MODULE 10: Network Security Fundamentals
- Security principles
- Network threats and attacks
- Access control concepts
- Device hardening basics
- Firewall and security concepts
Outcome: Apply basic network security practices
MODULE 11: Automation & Programmability Basics
- Network automation concepts
- Software-defined networking overview
- Controller-based networking
- APIs and data formats overview
- Network management basics
Outcome: Understand modern network management approaches
MODULE 12: Network Troubleshooting & Operations
- Troubleshooting methodology
- Common network issues
- Connectivity problem analysis
- Network documentation
- Best practices and change management
Outcome: Diagnose and resolve common network problems
Final Learning Outcomes
- Strong networking fundamentals
- Practical switching and routing knowledge
- Awareness of network security and automation
- Readiness for entry-level networking roles
Career Opportunities
- Network Support Engineer
- Junior Network Administrator
- NOC Engineer
- IT Infrastructure Support Engineer
CompTIA Security+
Total Duration: 8–10 Weeks (50 Hours)
Training Mode: Classroom / Online / Hybrid
Level: Entry-Level to Intermediate Cybersecurity
MODULE 1: Cybersecurity Fundamentals
- Introduction to cybersecurity
- Importance of information security
- CIA triad concepts
- Security roles and responsibilities
- Types of security controls
Outcome: Understand core cybersecurity principles and objectives
MODULE 2: Threats, Attacks & Vulnerabilities
- Malware types and behavior
- Social engineering attacks
- Network-based attacks
- Application and web-based attacks
- Vulnerability concepts
- Threat intelligence basics
Outcome: Identify and understand common cyber threats and risks
MODULE 3: Network Security Concepts
- Secure network design principles
- Firewalls and network security devices
- Intrusion detection and prevention
- Secure network protocols
- Network segmentation concepts
Outcome: Protect and secure network infrastructures
MODULE 4: Identity & Access Management
- Authentication concepts
- Authorization models
- Accounting principles
- Identity federation concepts
- Access control methods
- Privileged access management
Outcome: Control and manage user access securely
MODULE 5: Cryptography & Public Key Infrastructure
- Encryption concepts
- Symmetric and asymmetric encryption
- Hashing concepts
- Digital certificates
- Public key infrastructure basics
- Secure communication principles
Outcome: Apply cryptographic concepts to secure data
MODULE 6: Secure Systems & Applications
- Secure system architecture
- Endpoint security concepts
- Secure application development basics
- Secure configuration principles
- Patch and vulnerability management
Outcome: Secure systems and applications agains
MODULE 7: Cloud, Virtualization & Wireless Security
- Cloud security fundamentals
- Shared responsibility model
- Virtualization security concepts
- Wireless security standards
- Mobile device security
Outcome: Secure modern and cloud-based environments
MODULE 8: Risk Management & Governance
- Risk assessment concepts
- Risk response strategies
- Security policies and procedures
- Compliance and regulatory concepts
- Security frameworks overview
Outcome: Manage and reduce organizational security risks
MODULE 9: Security Operations & Incident Response
- Security monitoring concepts
- Incident response lifecycle
- Digital forensics basics
- Disaster recovery concepts
- Business continuity planning
Outcome: Respond effectively to security incidents
MODULE 10: Security Operations & Job Readiness
- Security documentation
- Change management
- Security awareness training
- Professional communication
- Resume and interview preparation
Outcome: Job-ready cybersecurity professional
Final Learning Outcomes
- Strong cybersecurity foundation
- Ability to identify and mitigate threats
- Practical understanding of security operations
- Industry-aligned security skills
Career Opportunities
- Security Analyst (Junior)
- SOC Analyst (Level 1)
- Cybersecurity Support Engineer
- Information Security Executive
Microsoft Hybrid System Administrator
Total Duration: 10–12 Weeks (80 Hours)
Training Mode: Classroom / Online / Hybrid
Level: Intermediate (System & Cloud Administration)
MODULE 1: Windows Server Administration Fundamentals
- Role of a system administrator
- Windows Server architecture overview
- Installation and initial configuration
- Server editions and features
- Core administrative tools
Outcome: Understand Windows Server environment and admin responsibilities
MODULE 2: Identity & Access Management
- Active Directory fundamentals
- Users, groups, and computers management
- Organizational units and delegation
- Group policy concepts
- Authentication and authorization basics
Outcome: Manage identities and access in on-premise environments
MODULE 3: DNS, DHCP & Core Network Services
- Domain Name System concepts
- DHCP configuration and management
- IP address management basics
- Network service integration
- Troubleshooting name resolution issues
Outcome: Configure and maintain essential network services
MODULE 4: File Services & Storage Management
- NTFS and share permissions
- File servers and access control
- Storage concepts and disk management
- Backup strategies
- Storage monitoring and optimization
Outcome: Secure and manage organizational data storage
MODULE 5: Windows Server Security
- Server security principles
- Patch and update management
- Windows Defender and endpoint protection
- Firewall configuration
- Security baselines and best practices
Outcome: Secure Windows Server systems against threats
MODULE 6: Virtualization with Hyper-V
- Virtualization fundamentals
- Hyper-V architecture
- Virtual machine creation and management
- Virtual networking concepts
- High availability basics
Outcome: Deploy and manage virtualized workloads
MODULE 7: Microsoft Azure Fundamentals
- Cloud computing concepts
- Azure architecture overview
- Resource management basics
- Azure virtual machines
- Azure networking fundamentals
Outcome: Understand core Azure services and administration
MODULE 8: Hybrid Identity & Azure Integration
- Hybrid identity concepts
- Directory synchronization principles
- Single sign-on concepts
- Hybrid authentication models
- Managing hybrid users and devices
Outcome: Integrate on-premise environments with Azure
MODULE 9: Azure Security & Compliance
- Identity protection concepts
- Role-based access control
- Security monitoring basics
- Compliance and governance concepts
- Secure hybrid workloads
Outcome: Secure and govern hybrid cloud environments
MODULE 10: Monitoring, Backup & Disaster Recovery
- Server monitoring tools
- Performance optimization
- Backup and restore strategies
- Disaster recovery planning
- Business continuity concepts
Outcome: Maintain system availability and reliability
MODULE 11: Automation & Administration Tools
- PowerShell fundamentals
- Task automation concepts
- Administrative scripting basics
- Managing systems at scale
Outcome: Improve efficiency using automation tools
MODULE 12: Operations & Job Readiness
- Change and incident management
- Documentation best practices
- Troubleshooting methodologies
- Professional communication
- Resume and interview preparation
Outcome: Job-ready hybrid system administrator
Final Learning Outcomes
- Strong Windows Server administration skills
- Practical hybrid cloud management knowledge
- Secure and maintain enterprise systems
- Industry-aligned system administration expertise
Career Opportunities
- System Administrator
- Windows Server Administrator
- Hybrid Cloud Administrator
- IT Infrastructure Engineer
RHCE (RHEL 10 + Ansible Automation)
Total Duration: 10–12 Weeks (60 Hours)
Training Mode: Classroom / Online / Hybrid
Level: Intermediate to Advanced Linux Administration
MODULE 1: Linux System Administration Fundamentals
- Role of a Linux system administrator
- Linux distributions and ecosystem
- RHEL architecture overview
- Installation concepts and system requirements
- Accessing and managing Linux systems
Outcome: Understand enterprise Linux environments and admin responsibilities
MODULE 2: File System & Storage Management
- Linux file system hierarchy
- File and directory permissions
- Ownership and access control
- Disk partitioning concepts
- Logical volume management basics
- Mounting and persistent storage
Outcome: Manage files, permissions, and storage effectively
MODULE 3: User, Group & Security Administration
- User and group management
- Password policies and authentication
- Privilege escalation concepts
- SELinux fundamentals
- Basic system security hardening
Outcome: Secure Linux systems and manage user access
MODULE 4: Package & Service Management
- Software package management concepts
- Managing repositories
- Installing and updating software
- Service management and system startup
- Scheduling tasks and logs overview
Outcome: Maintain system software and services reliably
MODULE 5: Networking & Firewall Management
- Network configuration concepts
- Managing network interfaces
- Hostname and name resolution
- Firewall fundamentals
- Network troubleshooting basics
Outcome: Configure and secure Linux network connectivity
MODULE 6: Process, Performance & System Monitoring
- Process management concepts
- System performance metrics
- Resource monitoring tools overview
- Log analysis basics
- Managing system performance issues
Outcome: Monitor and optimize Linux system performance
MODULE 7: Shell Scripting & Automation Basics
- Shell scripting fundamentals
- Variables and control structures
- Writing reusable scripts
- Task automation concepts
- Script troubleshooting
Outcome: Automate routine administrative tasks
MODULE 8: Ansible Fundamentals
- Automation concepts and benefits
- Ansible architecture overview
- Inventory management
- Modules and ad-hoc commands
- Playbook structure and execution
Outcome: Understand Ansible-based automation workflows
MODULE 9: Advanced Ansible Playbooks
- Variables and facts
- Conditionals and loops
- Roles and reusable content
- Templates and handlers
- Managing configurations at scale
Outcome: Build scalable and reusable automation solutions
MODULE 10: Managing Linux with Ansible
- Automating user and group management
- Automating package and service tasks
- Network and firewall automation
- Storage and system configuration automation
Outcome: Automate Linux administration using Ansible
MODULE 11: Security, Troubleshooting & Best Practices
- Secure automation practices
- Troubleshooting Ansible playbooks
- Error handling and debugging
- Backup and recovery concepts
- Operational best practices
Outcome: Maintain secure and reliable automated systems
MODULE 12: Enterprise Operations & Job Readiness
- Documentation standards
- Change and configuration management
- Real-world automation scenarios
- System administration case studies
- Resume and interview preparation
Outcome: Job-ready Linux and automation professional
Final Learning Outcomes
- Strong RHEL system administration skills
- Hands-on Ansible automation expertise
- Ability to manage and automate enterprise Linux systems
- Industry-aligned DevOps and automation foundation
Career Opportunities
- Linux System Administrator
- Linux Automation Engineer
- DevOps Engineer (Linux-focused)
- Infrastructure Engineer
MODULE - II (Advance)
AWS Solutions Architect – Associate
Total Duration: 8–10 Weeks (100–120 Hours)
Training Mode: Classroom / Online / Hybrid
Level: Associate (Cloud Architecture & Design)
MODULE 1: Cloud Computing & AWS Fundamentals
- Cloud computing concepts
- Benefits of cloud adoption
- Cloud service and deployment models
- Overview of AWS global infrastructure
- Shared responsibility model
Outcome: Understand cloud fundamentals and AWS ecosystem
MODULE 2: AWS Identity & Access Management
- Identity and access management concepts
- Users, groups, and roles
- Permissions and policies
- Secure access best practices
- Multi-factor authentication concepts
Outcome: Securely manage access to AWS resources
MODULE 3: Compute Services
- Virtual compute concepts
- Instance types and use cases
- Auto scaling concepts
- Load balancing fundamentals
- Serverless compute overview
Outcome: Design and manage scalable compute solutions
MODULE 4: Storage Services
- Object storage concepts
- Block and file storage basics
- Storage performance and durability
- Backup and archival concepts
- Data lifecycle management
Outcome: Choose appropriate storage solutions for workloads
MODULE 5: Database Services
- Relational database concepts
- Managed database services overview
- NoSQL database fundamentals
- Caching concepts
- Database availability and scalability
Outcome: Design reliable and scalable database architectures
MODULE 6: Networking & Content Delivery
- Virtual networking concepts
- Subnets and routing basics
- Internet gateways and NAT
- DNS concepts
- Content delivery fundamentals
Outcome: Design secure and efficient cloud networks
MODULE 7: Security & Compliance
- AWS security principles
- Network and data protection
- Encryption concepts
- Monitoring and logging basics
- Compliance and governance overview
Outcome: Build secure and compliant AWS architectures
MODULE 8: High Availability & Scalability
- Fault tolerance concepts
- High availability architectures
- Elasticity and scalability patterns
- Disaster recovery strategies
- Multi-region design principles
Outcome: Design resilient and highly available systems
MODULE 9: Monitoring, Automation & Cost Management
- Monitoring and alerting concepts
- Logging and observability
- Infrastructure automation basics
- Cost management and optimization
- Pricing and billing fundamentals
Outcome: Operate and optimize AWS environments efficiently
MODULE 10: Architecture Design & Best Practices
- Well-architected framework overview
- Designing for performance
- Designing for reliability
- Designing for security
- Real-world architecture scenarios
Outcome: Apply best practices to real-world AWS designs
Final Learning Outcomes
- Strong foundation in AWS cloud architecture
- Ability to design secure, scalable, and cost-effective solutions
- Practical understanding of AWS core services
- Industry-aligned cloud architecture skills
Career Opportunities
- AWS Solutions Architect (Associate)
- Cloud Engineer
- Cloud Support Engineer
- Infrastructure Engineer
Microsoft Azure Administrator – Associate
Total Duration: 8–10 Weeks (60 Hours)
Training Mode: Classroom / Online / Hybrid
Level: Associate (Cloud Administration)
MODULE 1: Cloud Computing & Azure Fundamentals
- Cloud computing concepts
- Cloud service and deployment models
- Azure global infrastructure
- Core Azure architecture components
- Shared responsibility model
Outcome: Understand cloud fundamentals and Azure platform basics
MODULE 2: Azure Identity & Access Management
- Identity concepts in Azure
- Users, groups, and roles
- Role-based access control
- Authentication and authorization concepts
- Secure access best practices
Outcome: Manage identities and access to Azure resources
MODULE 3: Azure Subscriptions & Resource Management
- Azure subscriptions and management groups
- Resource groups and tagging
- Azure Resource Manager concepts
- Access and governance basics
Outcome: Organize and manage Azure resources effectively
MODULE 4: Azure Compute Services
- Virtual machine concepts
- VM deployment and management
- Availability options
- Scale sets overview
- Containers and serverless overview
Outcome: Deploy and manage Azure compute workloads
MODULE 5: Azure Storage Services
- Storage account concepts
- Blob, file, queue, and table storage
- Data redundancy options
- Secure storage access
- Backup and recovery concepts
Outcome: Configure and manage Azure storage solutions
MODULE 6: Azure Networking
- Virtual networks and subnets
- IP addressing concepts
- Network security groups
- Load balancing concepts
- DNS and connectivity basics
Outcome: Design and manage Azure networking components
MODULE 7: Azure Security & Compliance
- Azure security principles
- Secure networking and workloads
- Encryption concepts
- Security monitoring basics
- Compliance and governance overview
Outcome: Secure Azure environments and workloads
MODULE 8: Monitoring, Backup & Recovery
- Monitoring and logging concepts
- Performance and health monitoring
- Backup strategies
- Disaster recovery basics
- Business continuity concepts
Outcome: Maintain availability and reliability of Azure resources
MODULE 9: Automation & Administration Tools
- Automation concepts
- Infrastructure as code overview
- Administrative scripting basics
- Managing resources at scale
Outcome: Improve efficiency through automation
MODULE 10: Azure Operations & Job Readiness
- Operational best practices
- Change and incident management
- Troubleshooting methodologies
- Documentation standards
- Resume and interview preparation
Outcome: Job-ready Azure administrator
Final Learning Outcomes
- Strong Azure administration skills
- Ability to manage compute, storage, and networking
- Secure and monitor Azure environments
- Industry-aligned cloud administration expertise
Career Opportunities
- Azure Administrator
- Cloud Administrator
- Cloud Support Engineer
- Infrastructure Engineer
HashiCorp Terraform – Associate
Total Duration: 6–8 Weeks (50 Hours)
Training Mode: Classroom / Online / Hybrid
Level: Associate (Infrastructure as Code)
MODULE 1: Infrastructure as Code Fundamentals
- Traditional infrastructure vs IaC
- Benefits of Infrastructure as Code
- Declarative vs imperative approaches
- Overview of Terraform ecosystem
- Use cases in modern IT and DevOps
Outcome: Understand why and how IaC is used in cloud environments
MODULE 2: Terraform Core Concepts
- Terraform workflow overview
- Providers and resources concepts
- Configuration files structure
- State file concepts
- Terraform initialization and lifecycle
Outcome: Understand how Terraform works internally
MODULE 3: Terraform Configuration Language Basics
- Configuration syntax fundamentals
- Blocks and arguments
- Variables and outputs concepts
- Input variable types
- Local values overview
Outcome: Write clear and reusable Terraform configurations
MODULE 4: Managing Resources with Terraform
- Resource creation concepts
- Dependency management
- Resource lifecycle rules
- Meta-arguments overview
- Handling configuration changes
Outcome: Manage infrastructure resources safely and efficiently
MODULE 5: Terraform State Management
- Purpose of state management
- Local vs remote state concepts
- State locking basics
- State security considerations
- State troubleshooting basics
Outcome: Manage and protect Terraform state files
MODULE 6: Modules & Reusability
- Purpose of Terraform modules
- Module structure and usage
- Input and output handling in modules
- Reusable infrastructure design
- Module versioning concepts
Outcome: Build scalable and reusable Terraform solutions
MODULE 7: Terraform with Cloud Platforms
- Using Terraform with cloud providers
- Managing networking resources
- Compute and storage automation
- Multi-environment concepts
- Best practices for cloud automation
Outcome: Automate real-world cloud infrastructure
MODULE 8: Terraform Security & Best Practices
- Securing Terraform configurations
- Managing secrets safely
- Access control concepts
- Policy and governance overview
- Common Terraform pitfalls
Outcome: Apply secure and reliable Terraform practices
MODULE 9: Terraform Operations & Troubleshooting
- Planning and change review concepts
- Debugging Terraform configurations
- Handling errors and failures
- Collaboration workflows
- Documentation standards
Outcome: Operate Terraform effectively in team environments
MODULE 10: DevOps Integration & Job Readiness
- Terraform in CI/CD pipelines
- Infrastructure automation workflows
- Real-world use case scenarios
- Resume and interview preparation
Outcome: Job-ready Infrastructure as Code professional
Final Learning Outcomes
- Strong understanding of Infrastructure as Code
- Ability to automate cloud infrastructure using Terraform
- Knowledge of Terraform best practices and workflows
- Industry-aligned DevOps and cloud automation skills
Career Opportunities
- DevOps Engineer (Junior)
- Cloud Engineer
- Infrastructure Automation Engineer
- Site Reliability Engineer (Associate)
Certified Kubernetes Administrator (CKA)
Total Duration: 8–10 Weeks (50 Hours)
Training Mode: Classroom / Online / Hybrid
Level: Intermediate to Advanced (Container & Kubernetes Administration)
MODULE 1: Containerization Fundamentals
- Evolution of application deployment
- Virtual machines vs containers
- Container concepts and architecture
- Container images and registries
- Container lifecycle overview
Outcome: Understand container-based application deployment
MODULE 2: Kubernetes Fundamentals
- Kubernetes architecture overview
- Control plane and worker node components
- Kubernetes objects and concepts
- Cluster communication basics
- Kubernetes use cases
Outcome: Understand how Kubernetes works internally
MODULE 3: Kubernetes Installation & Cluster Setup
- Kubernetes installation concepts
- Cluster initialization basics
- Node configuration concepts
- Cluster networking overview
- Accessing and managing clusters
Outcome: Deploy and access Kubernetes clusters
MODULE 4: Pods & Workload Management
- Pod concepts and lifecycle
- Multi-container pods
- Workload types overview
- Replica management
- Rolling updates and rollbacks
Outcome: Deploy and manage container workloads
MODULE 5: Scheduling & Resource Management
- Scheduler concepts
- Node selection mechanisms
- Resource requests and limits
- Namespace management
- Cluster resource optimization
Outcome: Efficiently allocate and manage cluster resources
MODULE 6: Networking in Kubernetes
- Kubernetes networking model
- Services and service types
- Ingress concepts
- DNS in Kubernetes
- Network troubleshooting basics
Outcome: Enable and manage application networking
MODULE 7: Storage & Persistence
- Persistent storage concepts
- Volumes and volume types
- Persistent volume management
- Storage classes overview
- Data protection basics
Outcome: Provide persistent storage for applications
MODULE 8: Security in Kubernetes
- Cluster security principles
- Authentication and authorization concepts
- Role-based access control
- Pod and workload security
- Secrets and configuration management
Outcome: Secure Kubernetes clusters and workloads
MODULE 9: Monitoring, Logging & Troubleshooting
- Observability concepts
- Monitoring cluster health
- Logging fundamentals
- Troubleshooting workloads and nodes
- Performance issue analysis
Outcome: Monitor and troubleshoot Kubernetes environments
MODULE 10: Maintenance, Backup & Upgrades
- Cluster maintenance concepts
- Node maintenance procedures
- Backup and restore concepts
- Upgrade strategies
- High availability overview
Outcome: Maintain and upgrade Kubernetes clusters safely
MODULE 11: Kubernetes Operations & Best Practices
- Operational best practices
- Configuration management
- Multi-environment management
- Disaster recovery concepts
- Documentation standards
Outcome: Operate Kubernetes in production environments
MODULE 12: Real-World Scenarios & Job Readiness
- Production use case scenarios
- Hands-on troubleshooting labs
- Kubernetes administration case studies
- Resume and interview preparation
Outcome: Job-ready Kubernetes administrator
Final Learning Outcomes
- Strong Kubernetes administration skills
- Ability to deploy, manage, and troubleshoot clusters
- Secure and scalable container orchestration knowledge
- Industry-aligned cloud-native expertise
Career Opportunities
- Kubernetes Administrator
- Cloud Native Engineer
- DevOps Engineer
- Site Reliability Engineer
Azure DevOps Engineer – Expert
Total Duration: 10–12 Weeks (80 Hours)
Training Mode: Classroom / Online / Hybrid
Level: Advanced (DevOps & Cloud Engineering)
MODULE 1: DevOps Fundamentals & Azure Overview
- DevOps culture and principles
- Agile and DevOps collaboration
- CI/CD concepts
- Azure cloud overview for DevOps
- DevOps roles and responsibilities
Outcome: Understand DevOps mindset and Azure DevOps ecosystem
MODULE 2: Source Control & Collaboration
- Version control concepts
- Git fundamentals
- Branching and merging strategies
- Repository management
- Code review and collaboration practices
Outcome: Manage source code effectively in team environments
MODULE 3: Continuous Integration Concepts
- Build automation concepts
- Build agents and pipelines overview
- Dependency management basics
- Artifact creation and management
- Build optimization practices
Outcome: Implement reliable and repeatable build processes
MODULE 4: Continuous Delivery & Release Management
- Release management concepts
- Deployment strategies
- Environment management
- Configuration management basics
- Approval and gating concepts
Outcome: Deliver applications consistently across environments
MODULE 5: Infrastructure as Code on Azure
- Infrastructure automation concepts
- Declarative infrastructure principles
- Environment provisioning strategies
- Resource lifecycle management
- Infrastructure versioning concepts
Outcome: Automate Azure infrastructure provisioning
MODULE 6: Configuration Management & Automation
- Configuration management concepts
- Desired state configuration overview
- Automation workflows
- Managing configuration drift
- Operational automation use cases
Outcome: Maintain consistent and automated environments
MODULE 7: Containerization & Kubernetes on Azure
- Container concepts recap
- Container image management
- Kubernetes architecture overview
- Deploying applications on managed Kubernetes
- Container security basics
Outcome: Deploy and manage containerized workloads on Azure
MODULE 8: Monitoring, Logging & Observability
- Monitoring strategy design
- Application and infrastructure monitoring
- Log collection and analysis concepts
- Alerting and incident response
- Performance optimization basics
Outcome: Monitor, analyze, and improve system reliability
MODULE 9: Security & Compliance in DevOps
- DevSecOps principles
- Secure CI/CD pipelines
- Identity and access management concepts
- Secrets and configuration security
- Compliance and governance overview
Outcome: Build secure and compliant DevOps pipelines
MODULE 10: Testing, Quality & Reliability
- Automated testing concepts
- Test integration in pipelines
- Performance and load testing basics
- Reliability engineering concepts
- Release quality assurance
Outcome: Improve application quality and reliability
MODULE 11: Optimization, Cost & Best Practices
- Cost management concepts
- Performance optimization strategies
- Scaling and capacity planning
- DevOps best practices
- Operational excellence principles
Outcome: Optimize DevOps workflows for cost and performance
MODULE 12: Enterprise Scenarios & Job Readiness
- Real-world DevOps case studies
- End-to-end pipeline design
- Troubleshooting CI/CD issues
- Documentation standards
- Resume and interview preparation
Outcome: Job-ready Azure DevOps Engineer
Final Learning Outcomes
- End-to-end Azure DevOps implementation skills
- Ability to design, build, and manage CI/CD pipelines
- Secure, scalable, and automated cloud operations
- Industry-aligned DevOps expertise
Career Opportunities
- Azure DevOps Engineer
- Senior DevOps Engineer
- Cloud Automation Engineer
- Site Reliability Engineer
Azure Security Engineer – Associate
Total Duration: 8–10 Weeks (60 Hours)
Training Mode: Classroom / Online / Hybrid
Level: Intermediate to Advanced (Cloud Security)
MODULE 1: Cloud Security Fundamentals & Azure Overview
- Cloud security shared responsibility model
- Core security principles (CIA triad)
- Azure global infrastructure overview
- Azure security architecture basics
- Roles and responsibilities of a cloud security engineer
Outcome: Understand Azure cloud and foundational security concepts
MODULE 2: Identity & Access Management
- Identity concepts and authentication methods
- Azure identity services overview
- User, group, and role management
- Role-Based Access Control (RBAC)
- Privileged access concepts
Outcome: Secure access to Azure resources using identity controls
MODULE 3: Network Security in Azure
- Azure virtual network security concepts
- Network segmentation and isolation
- Network security groups and traffic filtering
- Azure firewall and routing basics
- Secure connectivity design principles
Outcome: Design and implement secure Azure network architectures
MODULE 4: Compute & Workload Security
- Securing virtual machines
- Secure configuration baselines
- Workload isolation concepts
- Container and platform security basics
- Patch and update management
Outcome: Protect Azure compute resources and workloads
MODULE 5: Data Security & Protection
- Data classification and sensitivity
- Encryption concepts (at rest & in transit)
- Key and secret management concepts
- Secure storage access
- Backup and recovery security considerations
Outcome: Protect data and sensitive information in Azure
MODULE 6: Security Management & Threat Protection
- Security posture management concepts
- Threat detection and prevention basics
- Vulnerability assessment principles
- Security recommendations and remediation
- Incident investigation fundamentals
Outcome: Identify, assess, and mitigate security threats
MODULE 7: Monitoring, Logging & Incident Response
- Security monitoring strategy
- Log collection and analysis concepts
- Alerting and event correlation
- Incident response lifecycle
- Forensics and investigation basics
Outcome: Monitor Azure environments and respond to security incidents
MODULE 8: Governance, Compliance & Policy
- Governance models in Azure
- Policy enforcement concepts
- Compliance standards overview
- Risk management principles
- Auditing and reporting basics
Outcome: Maintain compliance and governance in Azure environments
MODULE 9: DevSecOps & Automation Basics
- DevSecOps principles
- Security in CI/CD pipelines
- Infrastructure security automation concepts
- Secure configuration management
- Continuous security improvement
Outcome: Integrate security into DevOps workflows
MODULE 10: Enterprise Scenarios & Job Readiness
- Real-world Azure security case studies
- End-to-end security architecture design
- Troubleshooting common security issues
- Documentation and best practices
- Resume and interview preparation
Outcome: Job-ready Azure Security Engineer
Final Learning Outcomes
- Secure Azure identities, networks, workloads, and data
- Implement monitoring, threat protection, and incident response
- Apply governance, compliance, and DevSecOps principles
- Industry-ready cloud security expertise
Career Opportunities
- Azure Security Engineer
- Cloud Security Engineer
- Security Operations Engineer
- DevSecOps Engineer
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