DSHB132 Solar Panel HJT 700-735W

DSHB132 Solar Panel HJT 700-735W
Product Introduction:
DSHB132 is a high-performance bifacial HJT solar module featuring advanced 0BB technology and B-O-free cell architecture to eliminate LID and ensure long-term power stability. With doped µ-SiO₂ for over 26% cell efficiency, cryogenic laser cutting for lower power loss, and a symmetrical design delivering up to 95% bifaciality, this module is engineered for optimal energy yield. Its durable dual-glass structure and PIB edge sealing meet IEC salt-mist Level 8 standards, making it ideal for utility-scale projects seeking lower LCOE and higher ROI.
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Description
Technical Parameters

 

 

 

DSHBSolar Panel HJT 132 700W-735W

Bifacial Half Cell Double-glass Solar Module

 

DSHB132 700-735

 

 

DSHB132 HJT Bifacial Solar Module – Precision Engineering for Maximum Power

LID-Free Performance with B-O-Free Design
Built with a boron-oxygen-free structure, the DSHB132 eliminates light-induced degradation (LID), ensuring consistent, long-term power generation.

 

Cryogenic Laser Cutting – Enhanced Accuracy, Reduced Loss
Advanced cryogenic cutting techniques minimize micro-cracks and power loss, enhancing module durability and manufacturing precision.

 

Optimized Light Management – Reduced Silver Usage
Improved light-trapping structure boosts sunlight absorption and lowers silver paste consumption, supporting efficient, cost-effective production.

 

Doped µ-SiO₂ for Superior Cell Efficiency
Enhanced with doped micro-silicon dioxide, the cell architecture reaches conversion efficiencies above 26%, pushing the limits of performance.

 

Next-Generation Technologies for Utility Applications

0BB (Zero Busbar) Technology – Sleek, Efficient, Powerful
The zero-busbar design shortens current paths, minimizes resistive losses, and improves aesthetics while increasing cell efficiency.

 

DS Technology – High Power with Low Loss
Combines gettering treatment and µc-Si (microcrystalline silicon) layering to purify the cell structure, enhancing overall energy output.

 

Up to 95% Bifaciality – More Energy from Both Sides
Symmetric bifacial design ensures excellent rear-side energy gain, maximizing output in reflective ground conditions.

 

Durable PIB Sealing + Double Glass Build
With robust polyisobutylene sealing and integrated coated frames, the module withstands harsh conditions and meets IEC salt-mist Level 8 standards.

 

Designed for Utility-Scale Solar Projects

 

Perfect for high-performance solar farms, the DSHB132 offers:

Lower Balance of System (BOS) Costs

Reduced Levelized Cost of Energy (LCOE)

Reliable Output and Long-Term ROI

 

 

CERTIFICATION

 

2024-08-12 092820

 

IEC61215, IEC61730

ISO9001: 2015 Quality Management System

ISO14001: 2015 Environment Management System

ISO45001: 2018 Occupational Health and Safety

IEC62941: 2019 Terrestrial photovoltaic (PV) modules-Quality

system for PV module manufacturing

 

QUALITY ASSURANCE

 

2024-08-16 175023

 

MECHANICAL PARAMETERS

 

Cell (mm)

210*105 Bifacial Mono
Dimensions (L*M*H) (mm) 2382*1134*33
Weight (kg) 37.9
Cable Cross Section Size (m㎡) 4
No. of Cells & Connections 132(6*22)
No. of Diodes 3

 

QUALIFICATION

 

Max. System Voltage (V DC) DC1500V (IEC)
Temperature Cycling Range (℃) -40~+85
Max. Series Fuse Rating (A) 35
Tolerance of Pmax 0~+3%
Max. Wind Load / Max. Snow Load (Pa) 2400 / 5400
Hot Spot Rate 100% Free
Connector Type MC4 Compatible
Fire Rating Class II
Junction Box & Connector Protection Grade IP68
Bifacial Factor (%) 90±5

 

DSHB132 700-735W

 

ELECTRICAL PARAMETERS

 

DSHB132-700 DSHB132-705 DSHB132-710 DSHB132-715 DSHB132-720 DSHB132-725 DSHB132-730 DSHB132-735

STC

AM1.5, 1000W/㎡

Cell Temperature 25℃

Max. Power at STC (Pmpp/W) 700 705 710 715 720 725 730 735
Max. Power Voltage (Vmp/V) 41.78 41.87 41.96 42.05 42.14 42.23 42.32 42.41
Max. Power Current (Imp/A) 16.76 16.84 16.93 17.02 17.10 17.18 17.26 17.34
Open Circuit Voltage (Voc/V) 49.77 49.87 49.97 50.07 50.17 50.27 50.37 50.47
Short Circuit Current (Isc/A) 17.81 17.90 17.99 18.08 18.17 18.26 18.35 18.44
Module Efficiency (%) 22.5

22.7

22.9 23.0 23.2 23.3 23.5 23.7

NOCT

AM1.5, 800W/㎡,

Ambient Temperature 20℃,

Wind Speed 1m/s

Max. Power at NOCT (Pmpp/W) 534 538 542 545

549

553 557 561
Max. Power Voltage (Vmp/V) 39.90 40.00 40.07 40.14 40.23 40.32 40.41 40.50
Max. Power Current (Imp/A) 13.39 13.46 13.53 13.60 13.67 13.73 13.79 13.86
Open Circuit Voltage (Voc/V) 47.50 47.60 47.69 47.79 47.88 47.98 48.08 48.17
Short Circuit Current (Isc/A) 14.23 14.31 14.38 14.45 14.52 14.59 14.67 14.74

BSTC

AM1.5, 800W/㎡,

135W/㎡,25℃

Max. Power at BSTC (Pmpp/W) 785 790 796 801 807 813 818 824
Max. Power Voltage (Vmp/V) 41.92 42.02 42.11 42.20 42.29 42.38 42.47 41.46
Max. Power Current (Imp/A) 18.73 18.82 18.91 19.00 19.10 19.19 19.28 17.18
Open Circuit Voltage (Voc/V) 49.94 50.04 50.14 50.24 50.34 50.44 50.54 49.60
Short Circuit Current (Isc/A) 19.97 20.07 20.18 20.28 20.38 20.48 20.58 20.68

 

PACKING CONFIGURATION

 

Container (High cube)
Modules Per Pallet 33
Pallets Per Container 18
Modules Per Container 594

 

TEMPERATURE COEFFICIENTS

 

Temperature Coefficient Voltage (Voc) -0.22 %/℃
Temperature Coefficient Current (Isc) 0.04 %/℃
Temperature Coefficient Power (Pm) -0.24 %/℃

 

I-V CURVE

 

2024-08-20 110029

 

 

 

 

 

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