Regional sports networks and venues sit at the intersection of multiple rights holders, multiple production teams, and multiple delivery requirements — all on the same infrastructure. An arena that hosts three resident teams and four broadcast partners can’t afford four parallel SDI plants. The venues winning these contracts are the ones whose underlying broadcast architecture is built for multi-tenant, IP-native operation.
ST 2110 IP Broadcast Infrastructure
Design and integrate full SMPTE ST 2110 broadcast environments with PTP timing, NMOS control, leaf-spine networking, and ST 2022-7 hitless protection.
Multi-Tenant Production Systems
Build infrastructure that supports multiple resident teams, broadcast partners, and event productions on a single coherent platform, with sport-specific permissioning and tenant isolation.
REMI & Remote Production Workflows
Operationalize at-home and remote production for traveling rights holders and away-game productions, with the network engineering and signal integrity that REMI demands.
Discovery & Design Before the Build
Document current systems, map tenant workflows, identify the constraints, and create a phased roadmap that aligns with rights-cycle and event-calendar realities.
Systems Integration Across Multiple Rights Holders
Connect production, distribution, archive, and tenant-specific workflows into a coherent venue platform — without forcing every tenant onto one rigid workflow.
Service Level Agreements with Event-Day Response
Keep venue-critical broadcast systems running with proactive maintenance, defined response tiers, and event-day-aware processes.

Run SMPTE ST 2110 infrastructure that carries you through the next rights cycle and the next.

Support multiple tenants and rights holders on the same infrastructure without compromising any of them.

Operationalize REMI workflows that reduce on-site crew requirements without sacrificing broadcast quality.

Consolidate what used to be parallel SDI plants into a single IP-native platform that every tenant can use.

Phase the SDI-to-IP transition so productions continue while the infrastructure changes underneath them.

Designed for the reliability, signal integrity, and timing precision that live sports broadcast demands.

Built to support multiple resident teams and rights holders on shared infrastructure without compromising any of them.

Engineered around SMPTE ST 2110, PTP, NMOS, and leaf-spine networking as the foundation — not bolted on.

Connected across production, distribution, archive, and tenant workflows.

Structured around the operational reality of live events where failure shows up on national television.
CHESA works collaboratively with sports networks and venues to understand how your operation runs today, where current infrastructure is creating constraints, and what your next rights cycle and event calendar require.
Whether you are starting with a discovery engagement, planning a full SDI-to-ST 2110 transition, operationalizing REMI workflows, integrating new tenant requirements, or building an ongoing support strategy, CHESA can help you move forward with clarity.

Design and implementation of SMPTE ST 2110 IP broadcast infrastructure with PTP, NMOS, and ST 2022-7 hitless protection.

Cloud, hybrid, and managed media workflow solutions for archive, distribution, and tenant-facing content delivery.

Strategic guidance across broadcast engineering, business continuity, technology planning, and rights-cycle infrastructure roadmaps.

Workflow documentation, infrastructure mapping, and phased roadmaps that align with rights-cycle and event-calendar timing.

Expert integration of IP broadcast, control, monitoring, and tenant-specific workflows on multi-tenant infrastructure.

Design, deployment, and management of Apple-based creative and production environments inside venue and network facilities.

Proactive and reactive support designed to keep venue-critical broadcast systems running through events, seasons, and rights-cycle transitions.
CHESA can architect multi-tenant infrastructure that supports every rights holder without forcing them onto a single rigid workflow.
CHESA can design a phased transition to SMPTE ST 2110 IP broadcast that maintains operations through the current season while modernizing for the next.
CHESA can design network engineering and signal-integrity architectures that make REMI workable for your specific event calendar and rights-holder mix.
CHESA can audit your PTP grandmaster, boundary clock, and network design, and resolve the drift with proven SMPTE 2059-2 implementation patterns.
CHESA can plan the 4K HDR infrastructure upgrade — bandwidth, color science, transcode, and delivery — without breaking the existing rights-holder workflows.
CHESA operates at the intersection of broadcast engineering and rights-holder coordination, with reference customers across pro sports, networks, and venues.
Fill out the form and a CHESA specialist will follow up to learn more about your goals, challenges, and current technology environment.

At CHESA, we dont bring a pre-packaged answer in search of a question. Our primary mission is to first understand your unique challenges and needs, and then architect the optimal solutions tailored to you.




