Infrastructures critiques et gestionnaires de réseau
Power platforms for unattended communications, utility, transport, and control assets where uptime, surge protection, autonomy, and service access matter.
Remote solar applications
Explore application-specific power systems for monitoring, communications, security, transport, agriculture, and off-grid use—sized from the real load, environment, autonomy target, and mounting constraints.
Find your use case
Start with the operating environment and equipment type. Each solution page explains the load profile, design constraints, reference architecture, and the information needed for accurate sizing.
Power platforms for unattended communications, utility, transport, and control assets where uptime, surge protection, autonomy, and service access matter.
Remote energy for flood, weather, fire, and agricultural monitoring nodes designed around seasonal solar input, event loads, and difficult field access.
Flexible, rigid, and portable solar solutions for vehicles, boats, cabins, camping systems, and other installations beyond fixed grid power.
Compact and integrated power for sensors, cameras, gateways, access systems, and other devices that must operate continuously at remote sites.
New solution guides
Use these guides to compare continuous and peak loads, battery autonomy, site conditions, protection, mounting, and maintenance before requesting a project-specific configuration.
Environmental monitoring
Plan continuous sensing and telemetry alongside storm-mode sirens, strobes, cameras, and faster reporting intervals.
Remote surveillance
Size optical, thermal, PTZ, edge-processing, and communications loads for exposed sites and smoke-reduced solar input.
Critical infrastructure
Build from 24-hour consumption, worst-month solar input, battery autonomy, voltage architecture, wind, shading, and lightning exposure.
Transport systems
Power counters, ANPR cameras, road-weather sensors, and work-zone equipment under vibration, salt spray, and winter constraints.
Field monitoring
Separate low-duty sensor nodes from cellular, valve, camera, and heated loads, then size each node for its real operating profile.
Industrial telemetry
Define continuous RTU and instrument loads, communications states, actuation peaks, autonomy, undervoltage, and restart behaviour.
From requirement to rollout
LinkSolar helps integrators turn device datasheets and site conditions into a practical solar, battery, enclosure, output, and mounting specification.
Translate device datasheets, duty cycles, peak events, and worst-month solar data into a defendable daily energy budget and battery target.
Specify system voltage, regulated and fused outputs, charge control, low-voltage protection, connectors, surge protection, and restart behaviour.
Match the panel, enclosure, mounting, cable support, fasteners, and corrosion protection to wind, vibration, salt, dust, heat, cold, and access.
Start with samples or a low-volume pilot, verify fit and field behaviour, then standardize the bill of materials and quality checks for repeat orders.
Need a project-specific answer?
Share the equipment datasheets, operating schedule, installation location, autonomy target, quantity, and any size or mounting limits. We will review the power budget and recommend the next sizing step.