Wholesales NSPV Solar Industrial 1500V DC Combiner Box PV 100A Fuse Holder
The NSPV Solar PV Plug 1500V DC 100A Fuse Connector represents a critical advancement in solar photovoltaic (PV) system safety and efficiency, specifically engineered for modern high-voltage string architectures. This integrated component combines the essential functions of a robust DC connector and an in-line fuse holder within a single, compact unit, addressing key challenges in large-scale solar installations.
| Type | Solar Inverter AC connectors | Application | Electricity power |
| Gender | Male & Female | Place of Origin | Guangdong, China |
| Brand Name | NSPV | Model Number | 4F2-2258100A |
| Insulation material | PC/PA | Rated current | 100A |
| Rated voltage | 1500V DC | Test voltage | 4kv(50Hz,Imin) |
| Contact resistance | Less than 0.35mΩ | Contact material | Copper,Tin Plated |
| Rated Impulse voltage | 16kV | Maximum voltage(with fuse) | 1575V |
| Ambient temperature | -40℃...+90℃(IEC) | Rated current(Without | 80A(With 16/25sqmm) |
Core Function & Purpose:
Designed primarily for string combiner boxes (SCBs) or central inverters, this connector serves as the crucial interface point for PV strings. Its primary purpose is twofold:
Secure Connection: It provides a reliable, touch-safe, and easily connectable/disconnectable path for the DC current generated by a PV string.
Overcurrent Protection: It integrates a fuse holder designed specifically to accommodate standard DC PV fuses (typically cylindrical gPV/gR/gF type, e.g., 10x38mm or 14x51mm). This fuse is the dedicated overcurrent protection device (OCPD) for its associated PV string, safeguarding against damaging fault currents arising from issues like short circuits, ground faults, or reverse currents.
Key Technical Specifications & Features:
Voltage Rating: 1500V DC - This high voltage rating is essential for modern utility-scale and large commercial solar systems operating at 1000V, 1100V, or 1500V DC string levels, enabling longer strings, reduced cabling costs (copper savings), and lower balance-of-system (BOS) expenses.
Current Rating: 100A Continuous - Capable of handling the maximum continuous current (Imp/Isc) output of high-power PV strings, providing ample headroom for safety and future module upgrades.
Integrated Fuse Holder: Specifically designed for PV DC fuses, ensuring correct fuse type selection, secure mounting, and optimal heat dissipation for reliable protection. Simplifies installation compared to separate fuse holders and connectors.
Touch-Safe Design: Features shrouded contacts and finger-safe housings to prevent accidental contact with live DC parts during handling, installation, or maintenance, significantly enhancing personnel safety.
Robust Construction: Utilizes high-quality, UV-resistant, flame-retardant thermoplastics (often meeting UL94 V-0) capable of withstanding harsh outdoor environments, extreme temperatures, humidity, and chemical exposure.
Reliable Contact System: Precision-engineered metal contacts (often tin-plated copper alloy) ensure low contact resistance, minimal power loss, and long-term reliability under high current flow.
IP Rating: Typically rated IP65 or IP68, providing excellent protection against dust ingress and water jets, making it suitable for outdoor use in combiner boxes or enclosures.
Easy Installation: Features user-friendly designs such as screw terminals or captive screws for secure conductor termination (often accommodating conductors like 10 AWG to 6 AWG). Clear polarity markings (Positive/Negative) prevent wiring errors.
Visual Indicator (Optional): Some models incorporate a fuse status indicator window, allowing for quick visual confirmation of fuse integrity without disassembly.
Critical Safety Role:
In PV systems, DC arcs are highly energetic and persistent. The integrated fuse within the NSPV Plug is the first line of defense. It rapidly interrupts excessive fault currents within its protected string, preventing catastrophic damage to wiring, connectors, combiner boxes, inverters, and mitigating the risk of fire caused by sustained DC arcing. Its placement directly at the string input point localizes protection.
Compliance & Certifications:
Reputable NSPV connectors undergo rigorous testing to meet international safety standards crucial for PV applications, including:
UL 6703: Standard for Connectors for Use in Photovoltaic Systems.
IEC 62852: Connectors for DC-application in photovoltaic systems - Safety requirements and tests.
TÜV Rheinland / TÜV SÜD: Common regional certifications confirming compliance with relevant standards.
RoHS Compliance: Restriction of Hazardous Substances.
Applications:
This connector-fuse combination is indispensable in:
String Combiner Boxes (SCBs): As the primary input connection point for individual PV strings.
Central Inverters: Providing fused inputs directly into the inverter DC section.
DC Distribution Panels: Within larger system configurations.
Battery Energy Storage Systems (BESS): For DC-coupled battery strings requiring fused disconnects.
Operational Benefits:
Enhanced Safety: Integrated touch-safe design and essential string-level overcurrent protection significantly reduce electrical hazards.
Simplified Installation & Maintenance: Combines two critical components into one, saving space in enclosures, reducing wiring complexity, and speeding up installation. Easier fuse replacement.
System Reliability: Robust construction and reliable contacts ensure long-term performance under demanding conditions, minimizing downtime.
Cost Efficiency: Reduces material costs (one component vs. two), labor costs (faster install), and potential damage costs through effective fault isolation.
Supports High-Voltage Systems: Enables the cost and efficiency advantages of 1500V DC architectures.
Conclusion:
The NSPV Solar PV Plug 1500V DC 100A Fuse Holder is not merely a connector; it is a vital safety and integration component for modern, high-voltage solar power plants. By seamlessly merging reliable DC connectivity with essential string-level fuse protection in a compact, robust, and touch-safe package, it plays a fundamental role in ensuring the safety, efficiency, and longevity of large-scale photovoltaic installations. Its design directly addresses the critical needs for overcurrent protection and secure interconnection within the demanding DC environment of solar arrays.
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