Telecom & VoIP
OpenSIPS Engineering Practice
Deploying multi-tenant SIP proxies, carrier trunk routing engines, and high-concurrency SBCs with OpenSIPS.
Technical Value
Why Choose OpenSIPS?
Flexible routing script engine with native Lua and Python extensions
Advanced load balancing algorithms with health check telemetry
Integrated RTPProxy and RTPEngine support for NAT traversal
Deep Experience
Dialiqo Mastery & Specialization
OpenSIPS configuration scripting, multi-node clustering with distributed memory caches, call tracing, and STIR/SHAKEN attestation.
System Design
Architectural Highlights
Spec 01
Distributed OpenSIPS cluster with shared Redis memory state
Spec 02
Weighted round-robin and latency-aware SIP trunk load balancing
Spec 03
Real-time CDR generation and Fraud Detection module integration
Deployments
Featured Production Deployments
Production Project 01
Wholesale VoIP Trunking Route Engine
Deployed & Verified
Production Project 02
Enterprise Unified Communications Proxy
Deployed & Verified
Measurable Impact
Key Architectural Benefits
Microsecond Routing Latency
Blazing fast SIP header manipulation and routing execution.
Dynamic Carrier Failover
Automatic rerouting around degraded PSTN carrier links.
Tech FAQs
Frequently Asked Questions (OpenSIPS)
Both originated from the SER project. OpenSIPS focuses heavily on advanced multi-threading, custom module APIs, and flexible scripting syntax.
Enterprise Advisory & Architecture
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