Concord Horizon is an AI native contract platform built from a complete rewrite of Concord’s technology, applying ten years of experience to a modern architecture for faster and more accurate contract work.
The redesigned interface offers light and dark mode, collapsible navigation, full screen focus, custom columns, advanced filtering, and consistent tables across modules.
AI Copilot supports natural language questions, contract summaries, key point extraction, and fast portfolio insights, while AI Search adds lexical and semantic search with improved performance and multi actions on results.
MCP brings contract intelligence into AI tools like ChatGPT and Claude for summaries, tables, or automated monitoring. Concord applies a strict zero data retention policy with AI partners and never uses customer data to train AI models .
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RouteGenie is non-emergency medical transportation software for operations running 25 to 500+ vehicles. It combines NEMT scheduling software and route optimization with native multiload, real-time NEMT dispatch software, Medicaid and broker billing with CMS 1500 and claim scrubbing, and fleet compliance in one single-tenant platform. Multi-site operators run every location in one instance with role-based access and a full audit trail on every trip change. ImportGenie automates trip intake and status return across 28 live broker and payer integrations, including ModivCare, MTM, Veyo, Verida, SafeRide Health, Alivi, New York MAS, Uber Health and transit authorities. Subcontractor vehicles are visible on the same live map as owned fleet. SAML2 SSO (Entra ID, Okta, OneLogin, Google Workspace), SOC 2 Type 1, open REST API, iOS and Android driver apps, passenger app, and a payer and facility portal. Flat per-vehicle pricing with unlimited trips and unlimited users. 600+ fleets, 20,000+ vehicles, ~50,000 trips daily.
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Odyssey
Odyssey-2 represents a cutting-edge interactive video technology that allows for immediate and real-time video generation that users can engage with. Simply enter a prompt, and the system promptly starts streaming several minutes of video that reacts to your input. This innovation transforms video from a traditional playback experience into a responsive, action-sensitive stream: the model operates in a causal and autoregressive manner, crafting each frame based on previous frames and your actions instead of adhering to a set timeline, which enables a seamless adaptation of camera perspectives, environments, characters, and narratives. The platform efficiently begins video streaming nearly instantaneously, generating new frames approximately every 50 milliseconds (around 20 frames per second), ensuring that you don’t have to wait long for content but instead immerse yourself in an evolving narrative. Beneath its surface, the model employs an advanced multi-stage training process that shifts from generating fixed clips to creating open-ended interactive video experiences, granting you the ability to type or voice commands while exploring a world crafted by AI that responds in real-time. This innovative approach not only enhances engagement but also revolutionizes the way viewers interact with visual storytelling.
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GWM-1
GWM-1 is Runway’s first family of General World Models created to interact dynamically with simulated reality. Built on Gen-4.5, the model produces real-time, action-conditioned video rather than static imagery alone. GWM-1 allows users to control environments through camera motion, robotics commands, events, and speech inputs. It generates coherent visual scenes that persist across movement and time. The model supports synchronized video, image, and audio generation for immersive simulation. GWM-1 is designed to learn from interaction and trial-and-error rather than passive data consumption. It enables realistic exploration of both physical and imagined worlds. Runway positions GWM-1 as foundational technology for robotics, training, and creative systems. The model scales across multiple domains without manual environment design. GWM-1 marks a shift toward experiential AI systems.
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