| 1 | Hot, humid, or tropical locations | UV-resistant, halogen-free insulating material; sealed construction; corrosion-resistant contacts; compatible cable seals. | Look for an outdoor-rated design and an ingress-protection rating suitable for the installation. IP65 provides dust protection and protection against water jets; higher ratings may be selected where the connector is exposed to more severe conditions. | Heat, moisture, salt, and ultraviolet radiation can accelerate insulation aging, corrosion, and loss of sealing performance. | Confirm UV exposure testing, operating-temperature range, sealing design, contact-plating details, and salt-mist or corrosion-test documentation where applicable. |
| 2 | Cold climates, high-altitude sites, or winter installation | Low-temperature-flexible cable jackets, impact-resistant housings, and seals that remain elastic below the expected minimum temperature. | Select a connector and cable with a certified operating range that covers the project minimum and maximum temperatures. Many photovoltaic cables are specified for approximately -40°C to +90°C or higher, but the exact rating must be checked in the product documentation. | Cold materials can become less flexible and more brittle, increasing the risk of cracking, poor mating, or damaged seals during installation. | Check minimum installation temperature, minimum operating temperature, impact resistance, cable flexibility, and derating requirements at altitude. |
| 3 | Coastal, marine, or industrial environments | Corrosion-resistant metal contacts, robust sealing, UV-stable housing, and materials selected for salt spray and chemical exposure. | Use documented corrosion or salt-mist test results when the site is near seawater or corrosive emissions. The connector should also be suitable for the applicable photovoltaic wiring standard and enclosure requirements. | Salt and pollutants can increase contact resistance and cause heat generation or unreliable electrical continuity. | Request contact-material information, corrosion-test conditions, sealing details, cleaning guidance, and compatibility with the project cable. |
| 4 | High-voltage DC photovoltaic strings | A connector with a DC voltage rating equal to or greater than the system maximum voltage, plus adequate current rating and touch protection. | Common utility and commercial PV systems may use maximum system voltages of 1,000 V DC or 1,500 V DC. The connector rating must match the complete system design, including temperature and configuration. | DC arcs do not naturally extinguish at current zero as they do in AC systems, so correct voltage ratings and secure mating are critical. | Verify rated voltage, rated current, temperature derating, creepage and clearance, DC safety certification, and compatibility with the inverter and module circuit design. |
| 5 | Large arrays with high current or parallel strings | Low-contact-resistance design, suitable conductor cross-section, strong crimp connection, and current rating based on the actual operating and fault conditions. | A connector rated for 30 A, for example, should not automatically be used at 30 A in every ambient condition; temperature derating and conductor size must be considered. | Loose or poorly crimped contacts can create localized resistance, overheating, insulation damage, and potential fire hazards. | Confirm current rating at the intended ambient temperature, approved cable sizes, crimp-tool requirements, pull-force test data, and inspection procedures. |
| 6 | Rooftops, open fields, and mechanically demanding installations | Positive locking, vibration resistance, strain relief, suitable cable routing, and protection against unsupported cable weight or repeated bending. | The connector should be installed according to its specified mating and cable-management instructions. Connectors should not be used to support cable weight or left hanging in standing water. | Wind, vibration, thermal cycling, and mechanical stress can loosen connections or damage the cable entry and sealing system. | Check locking confirmation, vibration and mechanical-load data, minimum bend radius, clip spacing guidance, and requirements for avoiding connector contact with the roof surface. |
| 7 | Global procurement, mixed components, and field maintenance | Use the same connector system or explicitly approved mating components; maintain full traceability and avoid unverified cross-mating. | Connector appearance alone does not prove electrical, mechanical, or sealing compatibility. Certification applies to specific connector combinations and installation methods. | Unapproved combinations may have different contact dimensions, tolerances, materials, or sealing forces, creating resistance and water-ingress risks. | Record part numbers, cable sizes, certification scope, batch information, approved mating combinations, torque or crimp settings, and replacement procedures. |