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Digital Broadcasting & IP Infrastructure Course
More than 2 million students worldwide

Digital Broadcasting & IP Infrastructure Course

Master the full stack of modern broadcast engineering, from digital signal fundamentals to cloud-native production workflows. This course covers IP infrastructure, video transport protocols, facility design, and content delivery in one comprehensive program. Whether you're upgrading legacy systems or building greenfield IP facilities, you'll gain the technical depth to lead broadcast infrastructure projects with confidence.

Dedika for Business

What you will learn:

You will build a solid foundation in digital signal processing, broadcast standards, and IP networking before advancing to professional-grade topics. The course covers SMPTE ST 2110, adaptive bitrate streaming, CDN architecture, and cloud virtualization for broadcast workloads. You will also study broadcast facility infrastructure, including structured cabling, power systems, and disaster recovery design. Security and compliance frameworks specific to broadcast environments are addressed in detail. Supplementary chapters cover ATSC 3.0, remote production workflows, data analytics, and sustainability practices. By the end, you will have the technical knowledge and practical skills to design, operate, and secure modern broadcast and IP infrastructure systems.

How you study in practice Digital Broadcasting & IP Infrastructure Course

How you practise Digital Broadcasting & IP Infrastructure Course

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Course Content

8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of Digital Broadcasting

  • Lesson 1 • Broadcast Standards and Formats

    Surveys terrestrial, satellite, and cable broadcast standards worldwide. Connects standard selection to regulatory, geographic, and service requirements.

  • Lesson 2 • Compression Standards in Broadcasting

    Introduces MPEG-2, H.264, and H.265 compression and their roles in broadcast workflows. Explains how codec choice affects quality, latency, and bandwidth.

  • Lesson 3 • Analog vs. Digital Signal Basics

    Contrasts analog and digital signal properties, including bandwidth, noise immunity, and sampling. Provides the baseline vocabulary for all subsequent broadcast topics.

  • Lesson 4 • The Broadcast Signal Chain

    Maps the end-to-end path from content source to receiver, identifying each processing stage. Builds a mental model used throughout the course.

  • Lesson 5 • Digital Modulation Techniques

    Covers QAM, OFDM, and PSK modulation schemes used in broadcast systems. Links modulation choice to channel conditions and capacity requirements.

Chapter 2See details

IP Networking Fundamentals for Broadcasters

  • Lesson 1 • Quality of Service in IP Networks

    Explains QoS mechanisms including DSCP marking, traffic shaping, and queuing strategies for media. Prepares students to prioritize broadcast traffic over shared networks.

  • Lesson 2 • OSI and TCP/IP Models

    Explains the layered network models and maps broadcast protocols to each layer. Provides the framework for diagnosing and designing broadcast networks.

  • Lesson 3 • Switching and Routing Essentials

    Introduces Ethernet switching, VLANs, and IP routing protocols relevant to broadcast LANs and WANs. Connects network design to media flow requirements.

  • Lesson 4 • IP Addressing and Subnetting

    Covers IPv4 and IPv6 addressing, CIDR notation, and subnet design for broadcast facilities. Enables engineers to plan address spaces for media networks.

  • Lesson 5 • Multicast Networking for Media

    Details IP multicast principles, IGMP, and PIM routing used to distribute media streams efficiently. Directly supports later chapters on IP video transport.

Chapter 3See details

Video and Audio Signal Processing

  • Lesson 1 • Signal Processing Equipment

    Surveys frame synchronizers, proc amps, embedders, and de-embedders used in signal paths. Builds practical knowledge of equipment selection and signal chain design.

  • Lesson 2 • Signal Monitoring and Measurement

    Introduces waveform monitors, vectorscopes, and audio meters for verifying signal quality. Prepares students to identify and correct signal anomalies in live environments.

  • Lesson 3 • Synchronization and Timing

    Explains genlock, black burst, tri-level sync, and PTP timing for broadcast facilities. Ensures students can maintain synchronization across mixed signal environments.

  • Lesson 4 • Audio Standards in Broadcast

    Examines AES3, embedded audio, and loudness standards applied in broadcast facilities. Connects audio processing to regulatory loudness compliance requirements.

  • Lesson 5 • Video Signal Standards and Formats

    Covers SD, HD, UHD raster formats, frame rates, and color spaces used in broadcast. Establishes the signal parameters that drive equipment configuration.

Chapter 4See details

IP Video Transport Protocols

  • Lesson 1 • Timing and Synchronization over IP

    Applies PTP grandmaster and boundary clock configurations to ST 2110 environments. Ensures students can maintain sub-microsecond timing across IP broadcast networks.

  • Lesson 2 • RTP and UDP for Media Transport

    Explains RTP packet structure, sequence numbering, and timestamping for real-time media. Establishes the transport layer foundation for all IP video protocols.

  • Lesson 3 • SMPTE ST 2022 and NDI Protocols

    Covers compressed video transport via ST 2022-6 and NDI for contribution and production use. Compares protocol trade-offs in bandwidth, latency, and interoperability.

  • Lesson 4 • SMPTE ST 2110 Standard Suite

    Details the ST 2110 family for uncompressed video, audio, and ancillary data over IP. Connects each sub-standard to specific signal types in a production facility.

  • Lesson 5 • Network Design for IP Video

    Addresses spine-leaf topology, flow control, and buffer sizing for high-density video networks. Prepares students to design networks that meet broadcast latency and reliability targets.

Chapter 5See details

Broadcast Facility Infrastructure

  • Lesson 1 • Cooling and Environmental Controls

    Covers HVAC design, hot-aisle/cold-aisle containment, and environmental monitoring for equipment rooms. Links thermal management to equipment longevity and uptime.

  • Lesson 2 • Disaster Recovery and Redundancy

    Introduces N+1 redundancy, failover switching, and backup site strategies for broadcast continuity. Prepares students to design systems that meet broadcast uptime requirements.

  • Lesson 3 • Power and Grounding Systems

    Explains UPS design, PDU configuration, and grounding practices critical to broadcast reliability. Addresses power quality issues that cause signal interference.

  • Lesson 4 • Structured Cabling for Broadcast

    Details coaxial, fiber optic, and Cat6A cabling standards for broadcast environments. Ensures students can specify and verify cabling plants for video and data.

  • Lesson 5 • Facility Layout and Signal Routing

    Covers master control room design, router architecture, and signal flow planning. Connects physical layout decisions to operational efficiency and redundancy goals.

Chapter 6See details

Content Delivery and Distribution Networks

  • Lesson 1 • OTT Delivery Architecture

    Explains origin servers, edge caches, and CDN topology for over-the-top video delivery. Establishes the architecture that underpins streaming service design.

  • Lesson 2 • Contribution and Distribution Links

    Surveys satellite uplinks, fiber contribution circuits, and bonded cellular for content transport. Connects link selection to cost, latency, and reliability trade-offs.

  • Lesson 3 • Adaptive Bitrate Streaming Protocols

    Covers HLS, MPEG-DASH, and CMAF packaging for adaptive bitrate delivery. Connects protocol choice to device compatibility and latency requirements.

  • Lesson 4 • CDN Performance and Analytics

    Introduces CDN metrics, rebuffering ratio, and QoE measurement for delivery optimization. Prepares students to monitor and improve viewer experience at scale.

  • Lesson 5 • Content Packaging and Encryption

    Details MPEG-TS and fMP4 packaging, DRM integration, and CPIX key management. Ensures students can build secure, standards-compliant delivery pipelines.

Chapter 7See details

Broadcast Security and Compliance

  • Lesson 1 • Regulatory Compliance in Broadcasting

    Surveys broadcast content regulations, accessibility mandates, and data privacy obligations. Prepares students to align technical systems with compliance requirements.

  • Lesson 2 • Incident Response for Broadcast

    Defines incident classification, escalation procedures, and post-incident review for broadcast outages. Builds the operational readiness needed to minimize on-air disruption.

  • Lesson 3 • Content Protection and DRM

    Explains conditional access systems, DRM architectures, and watermarking for content protection. Ensures students can design end-to-end content security workflows.

  • Lesson 4 • Threat Landscape for Broadcast Systems

    Identifies attack vectors specific to broadcast infrastructure, including signal injection and stream hijacking. Frames the security challenges that drive subsequent control design.

  • Lesson 5 • Network Security Controls

    Covers firewall segmentation, IDS/IPS deployment, and zero-trust principles for broadcast networks. Connects control selection to the unique latency constraints of live media.

Chapter 8See details

Cloud and Virtualized Broadcast Workflows

  • Lesson 1 • Virtualization in Broadcast Infrastructure

    Introduces hypervisors, containers, and software-defined networking applied to broadcast workloads. Establishes the virtualization concepts that underpin cloud broadcast design.

  • Lesson 2 • Hybrid Cloud Broadcast Architecture

    Designs workflows that span on-premises and cloud resources with consistent latency and security. Prepares students to migrate broadcast functions incrementally to cloud environments.

  • Lesson 3 • Monitoring and Orchestration at Scale

    Applies orchestration platforms and observability tools to manage large-scale cloud broadcast deployments. Enables students to automate scaling and fault recovery in production environments.

  • Lesson 4 • Software-Defined Production Systems

    Covers COTS hardware, software video switchers, and IP-based production control systems. Demonstrates how software-defined tools replace dedicated broadcast hardware.

  • Lesson 5 • Cloud Platforms for Media Workloads

    Compares public cloud architectures and media-specific services for ingest, processing, and delivery. Connects cloud service selection to cost, latency, and compliance requirements.

Certification

Your valid completion certificate

This course is for you:

  • Broadcast technician: ready to move beyond analog and SDI workflows.

  • IT network engineer: transitioning into media and entertainment infrastructure roles.

  • Streaming platform operator: needing deeper knowledge of broadcast-grade delivery systems.

  • AV systems integrator: expanding into professional broadcast facility design and deployment.

  • Recent engineering graduate: pursuing a career in television or media technology.

  • Broadcast operations manager: seeking technical depth to lead infrastructure modernization projects.

What our students say

Your classes are perfect. I purchased the one-year package and finally have the opportunity to follow various topics of interest without needing to switch platforms... I thank you for everything you do, I've already recommended you to other people...
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Giulio CarloDigital Marketing Student
I like how the lessons are straight to the point and how I can change chapters and skip content I don't need.
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I like the content and the presentation style and video transcription, which speeds up the process!
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The platform is fast, simple to use. The diversity of content and complementary videos really help with learning.
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