المكونات القياسية

Power range: 695~720w
Power tolerance: 0~+3%
Highest component conversion efficiency: 23.2%
First-year decline: ≤ 1.0%
Attenuation over the years: ≤0.4%
Application: Large-scale ground-mounted power stations and distributed power stations
Warranty: 15 years
Dimensions of the component (LxWxH): 2384x1303x33 mm
Solar cells: N-type monocrystalline silicon
Number of battery cells: 132 (6*22)
The frame type: silver-white anodized aluminum profile
The glass thickness: 2.0+ 2.0mm
Cable length vertical installation:  (+)350 mm, (-)280 mm; Or customized;
Cable cross-sectional area (IEC/UL) 4 mm² / 12 AWG
Connector type (IEC/UL): HCB40 (Standard)/MC4-EVO2A (optional)
The component weighs: 38 kilograms

معلومات إضافية

Product Details

Standard Photovoltaic Components – High-Performance Utility-Scale Solutions

Next-Generation N-Type Monocrystalline Technology

لدينا standard photovoltaic components deliver industry-leading efficiency and reliability for utility-scale ground-mounted and distributed power generation projects. Engineered with advanced N-type monocrystalline silicon and precision manufacturing processes, these 695-720W panels provide exceptional power density and long-term performance stability for demanding commercial applications.

Advanced N-Type Silicon Cell Technology

Revolutionary Cell Architecture

  • N-Type Monocrystalline Silicon: Superior minority carrier lifetime and reduced light-induced degradation
  • 132-Cell Configuration: 6×22 cell matrix optimized for maximum power output and thermal management
  • Half-Cell Innovation: Enhanced reliability through reduced current flow and improved shade tolerance
  • Precision Cell Dimensions: Optimized silicon wafer geometry maximizes active area utilization

Superior Conversion Efficiency

  • Peak Efficiency Rating: 23.2% module conversion efficiency leads industry performance standards
  • Consistent Power Output: 695-720W range with 0~+3% positive power tolerance ensures predictable generation
  • Temperature Coefficient Excellence: Minimal performance degradation under high-temperature conditions
  • Low-Light Performance: Maintains high efficiency during dawn, dusk, and overcast conditions

Robust Construction & Materials

Premium Glass & Frame System

  • Double-Glass Construction: 2.0mm + 2.0mm tempered glass provides enhanced durability and moisture protection
  • Anodized Aluminum Frame: Silver-white anodized aluminum profile ensures 30+ year corrosion resistance
  • Lightweight Design: 38kg total weight optimizes installation efficiency and structural loading requirements
  • Compact Profile: 33mm thickness minimizes wind loading and transportation costs

Advanced Encapsulation Technology

  • High-Performance EVA: Premium encapsulant materials prevent delamination and moisture ingress
  • Junction Box Integration: IP67-rated electrical connections with marine-grade sealing
  • Cable Management: Optimized cable lengths for vertical installation – positive 350mm, negative 280mm
  • Connector Reliability: HCB40 standard or MC4-EVO2A optional connectors ensure long-term electrical integrity

Utility-Scale Application Optimization

Large-Scale Ground-Mounted Systems Specifically engineered for utility-scale solar farms requiring:

  • High Power Density: 720W maximum output reduces balance of system costs per MW installed
  • Installation Efficiency: Large format reduces module count and installation labor by 15-20%
  • Tracking System Compatibility: Optimized dimensions for single-axis and dual-axis tracker systems
  • Grid Code Compliance: Meets utility interconnection requirements for commercial power generation

Distributed Generation Excellence

  • Commercial Rooftop Applications: Industrial and commercial building installations up to 5MW capacity
  • Community Solar Projects: Shared solar installations serving multiple utility customers
  • Agricultural Applications: Agrivoltaic systems combining solar generation with farming operations
  • Remote Power Generation: Off-grid and microgrid applications for remote facilities

Performance Reliability & Longevity

Industry-Leading Degradation Rates

  • First-Year Decline: ≤1.0% initial degradation significantly below industry averages
  • Annual Degradation: ≤0.4% yearly decline ensures consistent long-term performance
  • 25-Year Performance: Guaranteed 85%+ output retention after 25 years of operation
  • Extended Service Life: Materials selected for 40+ year operational capability

Environmental Durability Testing

  • Thermal Cycling: 400 cycles from -40°C to +85°C without performance degradation
  • Humidity Freeze: 20 cycles at 85°C/85% RH followed by -40°C exposure
  • Mechanical Load: 5400 Pa positive and 2400 Pa negative pressure loading
  • Salt Mist Exposure: 1000-hour corrosion testing for coastal installations

Electrical Performance Specifications

High-Voltage System Integration

  • Operating Voltage: Optimized for 1000V and 1500V DC system configurations
  • Current Handling: 4mm²/12 AWG cable cross-section supports high-current applications
  • String Configuration: Long string capability reduces combiner box and DC disconnect requirements
  • Grounding Compliance: Meets NEC 2023 equipment grounding and bonding requirements

Grid Integration Excellence

  • Power Quality: Low harmonic distortion and reactive power consumption
  • Islanding Protection: Anti-islanding compliance for utility interconnection safety
  • Rapid Shutdown: NEC 2023 rapid shutdown capability for emergency response
  • Performance Monitoring: Individual module monitoring capability for fleet management

Manufacturing Quality & Certification

Advanced Production Technology

  • Automated Manufacturing: Robotic cell handling and precision assembly minimize human error
  • In-Line Quality Control: 100% electrical testing and visual inspection before shipment
  • Batch Tracking: Complete traceability from silicon ingot to final installation
  • Statistical Process Control: Real-time monitoring ensures consistent product quality

Comprehensive Certifications

  • IEC 61215: Crystalline silicon terrestrial photovoltaic modules design qualification
  • IEC 61730: Photovoltaic module safety qualification requirements
  • UL 1703: Flat-plate photovoltaic modules and panels safety standard
  • CE Marking: European conformity for global market acceptance

Project Economics & Financial Performance

Optimized Levelized Cost of Energy (LCOE)

  • High Power Output: 720W maximum reduces $/W installation costs for utility projects
  • Extended Warranty: 15-year product warranty reduces long-term replacement costs
  • Proven Reliability: Low failure rates minimize maintenance and replacement expenses
  • Financing Advantages: Tier-1 module qualification enables optimal project financing terms

Installation Cost Reduction

  • Reduced Module Count: High-wattage modules decrease installation labor by 15-20%
  • Simplified Logistics: Fewer modules reduce transportation and handling costs
  • Standard Dimensions: 2384×1303×33mm fits standard racking and tracking systems
  • Quick Installation: Optimized design reduces field assembly time and complexity

Technical Support & Service

Professional Engineering Support

  • System Design Services: Layout optimization and electrical design for utility-scale projects
  • Performance Modeling: Detailed energy yield analysis using industry-standard software
  • Code Compliance: Electrical and structural engineering stamps for permitting
  • Commissioning Support: Field testing and system acceptance verification

Global Service Network

  • Technical Hotline: 24/7 technical support for installation and troubleshooting
  • Field Service: On-site support for large-scale installations and commissioning
  • Replacement Parts: 15-year availability guarantee for warranty and maintenance parts
  • Performance Analytics: Remote monitoring and diagnostic services for fleet management

Comprehensive Warranty Coverage

Industry-Leading Protection

  • 15-year product warranty: Complete protection against materials and workmanship defects
  • 25-year linear power warranty: Guaranteed minimum 85% output after 25 years
  • Manufacturing defect coverage: Comprehensive protection against design and production flaws
  • Field failure support: Rapid replacement and technical support for system downtime minimization

الأسئلة الشائعة

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N-type silicon offers superior performance characteristics including higher efficiency potential, reduced light-induced degradation (LID), and better temperature coefficients. Our N-type cells eliminate boron-oxygen defects that cause power loss in P-type cells, resulting in first-year degradation ≤1.0% compared to 2-3% typical for P-type modules. The superior minority carrier lifetime in N-type silicon also enables higher conversion efficiency, with our modules achieving 23.2% compared to 20-21% typical for P-type alternatives. Additionally, N-type technology maintains better performance under partial shading conditions due to reduced current mismatch sensitivity.

High-wattage utility modules provide significant advantages over residential-size panels for large-scale installations. The 720W maximum output reduces module count by 40-50% compared to 400W residential modules, decreasing installation labor, racking materials, and electrical connections proportionally. This translates to $0.10-0.15/W savings in balance of system costs for utility-scale projects. The larger format also improves land utilization efficiency, reducing site preparation and civil works costs per MW installed. However, the 38kg weight and 2384×1303mm dimensions require specialized handling equipment unsuitable for residential applications.

The 132-cell (6×22) configuration requires careful consideration of string sizing and electrical design. Maximum string length depends on system voltage (1000V or 1500V) and temperature coefficients, typically allowing 18-28 modules per string. The large format requires mechanical lifting equipment for installation and must be handled carefully to prevent cell cracking. Racking systems must accommodate the 2384mm length with adequate structural support points. The +350mm/-280mm cable lengths are optimized for vertical installation orientation, reducing the need for extension cables and minimizing electrical losses in large arrays.

Double-glass construction provides superior durability for 25-30 year utility installations compared to glass-backsheet alternatives. The symmetric glass structure eliminates thermal expansion mismatch that can cause delamination, while providing enhanced protection against moisture ingress, UV degradation, and mechanical damage. In utility environments with potential for hail, debris, and severe weather, double-glass construction reduces breakage risks and maintains electrical safety through retained structural integrity. The design also enables bifacial operation where ground reflection can increase energy yield by 5-15% depending on installation conditions.

Utility-scale installations require sophisticated monitoring systems to track performance across thousands of modules. String-level monitoring is typically sufficient for utility applications, though module-level monitoring may be specified for critical installations. Maintenance protocols include annual electrical testing, torque checking of grounding connections, and visual inspections for cracking or soiling. The large module size requires specialized cleaning equipment for optimal performance, typically automated systems for utility-scale installations. Replacement procedures must account for the 38kg weight and specialized lifting equipment, with module-level replacement possible without system shutdown through proper electrical isolation procedures.

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At Jia Mao Bipv Tech, we understand that every project is unique, and our goal is to provide the best customized solutions for each customer.

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