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solar mid clamp
solar mid clamp
solar mid clamp

Aluminum Solar Panel Clamp for Framed PV Modules

The aluminum solar panel mid clamp is a lightweight, corrosion-resistant solar mounting solution designed for framed PV modules on U-shaped carbon steel structures. Its edge-mount design ensures secure and even clamping without damaging the panel frame. Compatible with common frame sizes (1–4mm thickness, 30–50mm width). Anodized for durability and tested for 1000-hour salt spray, it performs reliably in harsh environments. With easy installation and torque-controlled fastening, it also supports system grounding, making it a safe and efficient choice for solar mounting systems.

  • Material:

    Aluminum alloy 6005-T5
  • Snow Load:

    1.4KN/㎡
  • Wind Load:

    60M/S
  • Panel Orientation:

    Portrait
  • Warranty:

    10 Years
  • Service Life:

    More than 20 Years

The Aluminum Alloy Solar Module Clamp is an edge-mount clamp specifically designed for use with U-shaped carbon steel solar mounting structures. It is used to securely fasten framed solar panels in photovoltaic (PV) systems. This pv panel clamp ensures strong fixation while minimizing the risk of panel frame damage. Made from corrosion-resistant aluminum alloy, the solar panel clamp is lightweight, highly compatible with various panel frames, and suitable for diverse environmental conditions.

 

pv panel clamps for sale

 

Core Advantages of Aluminum Alloy Solar Panel Clamps

 

Feature Aluminum Alloy Clamp Carbon Steel Clamp (for comparison)
Weight Light (Density: 2.7 g/cm³) Heavy (Density: 7.85 g/cm³)
Corrosion Resistance Natural oxide layer provides protection, no coating needed Requires hot-dip galvanizing or coating
Electrical Conductivity Excellent (grounding design required) Average
Cost Higher (approx. 2–3x the cost of carbon steel) More economical
Recommended Use Coastal areas, chemical zones, high-salinity environments Inland or dry regions

 

Key Product Highlights

 

1. Material

Type: High-strength anodized aluminum alloy

Features: Lightweight, corrosion-resistant, rust-free

Surface Treatment: Anodization with film thickness ≥15μm (AA20 grade)

Corrosion Test: Passed 1000-hour neutral salt spray test (GB/T 10125)

2. Structural Design

Clamp Type: Edge-mount clamp for framed PV modules

Compatibility: Suitable for frame thickness of 1–4mm and width of 30–50mm

Installation Method: Bolt and claw compression ensures strong grip and wide applicability

3. Mechanical Strength

Wind Load Resistance: Compliant with IEC 61215 and UL 2703 standards

Static Load Test: Withstands ≥5400Pa (equivalent to Category 12 wind force)

Dynamic Test: Simulated gust vibration testing passed

4. Corrosion Resistance

Material Advantage: Inherent rust-proof performance, no coating required

Surface Hardness: Enhanced via anodization for weather resistance

5. Installation & Maintenance

Pre-Installation Check: Ensure dimension compatibility with panel and mounting rail

Torque Control: Recommended tightening torque: 20–30N·m using a torque wrench

Electrical Grounding: Can be connected to the system’s grounding grid using copper braided straps; total resistance ≤4Ω

 

 

 

.Factory

 

mid clamp solar systemmid clamp solar mount

 

.FAQs

 

  • Q1: What type of solar panels is this clamp compatible with?
    A1: This clamp is suitable for framed solar panels with a thickness of 1–4mm and width of 30–50mm.
  • Q2: What material is used for the clamp?
    A2: It is made of high-quality anodized aluminum alloy, which is lightweight and corrosion-resistant.
  • Q3: Can the clamp endure strong wind conditions?
    A3: Yes, it is tested to withstand static wind pressure up to 5400Pa and passes dynamic wind vibration tests, complying with IEC 61215 and UL 2703 standards.
  • Q4: Is there a recommended torque setting for installation?
    A4: Yes, a torque setting of 20–30N·m is recommended to avoid over-tightening, which may deform the panel frame.
  • Q5: How is corrosion handled for installations in harsh environments?
    A5: The clamp undergoes an anodization process (film thickness ≥15μm) and passes a 1000-hour salt spray test for high corrosion resistance.
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