Solar RoadGuide
A low-level solar road lighting system that directs front-facing LEDs toward the roadway, without a tall lighting pole.
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A low-level solar road lighting system that directs front-facing LEDs toward the roadway, without a tall lighting pole.
A street-light platform combining roadway illumination and two bullet cameras, with project-specific PTZ and video-network options.
A field-side lighting control and status node that connects street lights to the BLE Mesh network and SmartAdmin workflow.
An aggregation and uplink device for the GSL lighting-control network, connecting BLE Mesh field nodes to a server over LTE.
A solar street-light architecture with the battery housed inside the pole for a more protected and serviceable installation.
Three LED roadway-lighting models with comparable power, luminous output and weight specifications.
An embedded solar road stud that charges in daylight and uses LEDs to guide road boundaries and routes in low ambient light. It provides active delineation, not full roadway illumination.
A technology-partner video-management platform for CCTV viewing, recording, events and operator workflows in GSL public-safety projects.
A map-based lighting-management interface for viewing street-light locations and operating status from the GSL control network.
A lighting distribution and control package supplied with GSL street-light projects, including protection and automatic switching provisions.
Combine road lighting, electrical protection and a dedicated lighting-data network into a maintainable project.
Connect lighting-integrated cameras and a project-sized video-management system.
Choose solar road lighting and delineation according to the task: illuminating an area, lighting a road edge or defining a route.
Plan solar input, an inverter and battery storage around the actual energy demand of field infrastructure.
Keep low-bandwidth lighting control and bandwidth-intensive CCTV video on purpose-designed network paths.
Urban street lighting, CCTV-integrated lighting and associated electrical distribution supplied across multiple project phases.
A demonstration of GSL lighting-state monitoring and GIS-based visibility for Valenzuela project discussions.
A lighting-control workflow from the field terminal to operator decisions.
Two communication layers with a clear lighting-only purpose.
Geographic information gives lighting status a usable location context.
A separate video path from the camera to recording and control.
Energy balance starts with actual operating demand, not a battery label.
Coordinate the luminaire, power distribution and protection devices as a system.