DSBN96-445~465W High efficiency dual-glass bifacial N-type solar module

DSBN96-445~465W High efficiency dual-glass bifacial N-type solar module

Providing 5%-25% extra power frombackside in different scenarios. MBB and high-density interconnecttechnology improves power output andmodule efficiency. Dual-glass encapsulation and Al framefeatures better weather resistance andensures long-term power generation andprofit of the power station. Shingling technology is a promising approach to improve photovoltaic module efficiency and optimize its energy yield, because it allows an increase of module output power without introducing substantial modification in the cell fabrication process and in the module bill of materials (BOM). In a shingled module, c-Si PV cells are cut in smaller stripes (usually 3 to 6 stripe per cell, according to the layout) called “shingles” and assembled in strings by connecting the front of the leading edge of each shingle to the back of the tail edge of next one, in a similar way to tiles on a rooftop.
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Description
Technical Parameters

 

 

 

DSBN96-445~465W

High efficiency dual-glass bifacial N-type solar module

 

 

image - 2026-07-20T174922568

DSBN96-445~465W High efficiency dual-glass bifacial N-type solar module

 

Providing 5%-25% extra power frombackside in different scenarios.
MBB and high-density interconnecttechnology improves power output andmodule efficiency.
Dual-glass encapsulation and Al framefeatures better weather resistance andensures long-term power generation andprofit of the power station.

 

 

DS Technology
715W+ power output, bringing lower LCOE and BOS.

 

Up to 80% Bifaciality
Up to 80% bifacial factor gains 10%-30% extra genera-tion in different scenarios.

 

Sealing with PID
Lower LID and anti PID ensure long-term returns.

 

Suitable for Utility project

Optional G12R modules, Maximize the use of horizontalspace for modules in container High Cube

product-1232-772

 

 

CERTIFICATION

 

 

3

 

 

 

2024-08-12 092820

 

IEC 61215, IEC 61730, UL 61730 ISO9001:2015: ISO Quality Management System

ISO14001: 2015: ISO Environment Management System

ISO45001: 2018: Occupational Health and Safety

IEC62941: Guideline for module design qualification and type approval

 

 

MECHANICAL PARAMETERS

 

 

Cell (mm) 182 × 105 TOPCon
Dimensions (L×W×H) (mm) 1762 × 1134 × 30
Weight (kg) 24.1
Cable Cross Section Size (mm²) 4
No. of Cells & Connections 96 (6×16)
No. of Diodes 3
Frame Anodized Aluminium Alloy
Glass Thickness (mm) 2.0

 

 

QUALIFICATION

 

 

Temperature Cycling Range (°C) -40 ~ +85
Max. Series Fuse Rating (A) 35
Max. Wind Load / Max. Snow Load (Pa) 2400 / 5400
Fire Rating Class C
Junction Box & Connector Protection Grade IP68
Bifacial Factor (%) 80 ± 5

 

product-1310-1164

 

 

ELECTRICAL PARAMETERS

 

  DSBN445 DSBN450 DSBN455 DSBN460 DSBN465
STC Maximum Power (Pmpp) (W) 445 450 455 460 465
Power Tolerance (W) 0~+5 0~+5 0~+5 0~+5 0~+5
Maximum Power Voltage (Vmp) (V) 28.65 28.82 28.99 29.16 29.33
Maximum Power Current (Imp) (A) 15.54 15.62 15.7 15.78 15.86
Open Circuit Voltage (Voc) (V) 35.4 35.57 35.74 35.91 36.08
Short Circuit Current (Isc) (A) 16.24 16.32 16.4 16.48 16.56
Module Efficiency (%) 22.27 22.52 22.77 23.02 23.27
BNTI Maximum Power (Pmpp) (W) 493 499 504 510 515
Maximum Power Voltage (Vmp) (V) 28.65 28.82 28.99 29.16 29.33
Maximum Power Current (Imp) (A) 17.22 17.31 17.4 17.48 17.57
Open Circuit Voltage (Voc) (V) 35.4 35.57 35.74 35.91 36.08
Short Circuit Current (Isc) (A) 17.99 18.08 18.17 18.26 18.35
Module Efficiency (%) 24.68 24.95 25.23 25.51 25.79

 

 

PACKING CONFIGURATION

 

 

Modules Per Pallet 36
Pallets Per Container 26
Modules Per Container 736

 

 

TEMPERATURE COEFFICIENTS

 

 

Nominal Module Operating Temperature (NMOT) 43 ± 2°C
Temperature Coefficient Voltage (Voc) -0.250%/°C
Temperature Coefficient Current (Isc) +0.045%/°C
Temperature Coefficient Power (Pm) -0.290%/°C

 

 

 

 

 

 

 

【Product introduction】

 

Cell

Mono 156.75mmx31.2mm High   Efficiency Solar Cell

No. of cells

408(34×12)

Rated Maximum   Power(Pmax)

405W

Junction Box

IP67

Maximum System   Voltage

1000V/1500V DC(IEC)

Operating Temperature

-40℃~+85℃

Dimensions

1941mm×1048mm×40mm

Weight

23kg±3%

  

【Product description】

 

Novel 405W Monocrystalline Solar Pv Panel, 5-10% more module power is gain for the 34x12 layout shingled cut cells new design 405W eclipse mono solar Pv panel which is the result of application of conductive paste that enables novel interconnection technologies.

 

Shingling technology is a promising approach to improve photovoltaic module efficiency and optimize its energy yield, because it allows an increase of module output power without introducing substantial modification in the cell fabrication process and in the module bill of materials (BOM). 

 

In a shingled module, c-Si PV cells are cut in smaller stripes (usually 3 to 6 stripe per cell, according to the layout) called "shingles" and assembled in strings by connecting the front of the leading edge of each shingle to the back of the tail edge of next one, in a similar way to tiles on a rooftop. 

 

Electrically conductive adhesives (ECAs) are typically used to make the shingles interconnection while the bussing ribbons can be attached using ECA as well as traditional soldering. 

 

 

1 KEY FEATURES

34x12 Cut Cells 405W Solar Pv Panel Excel1

 

2 MECHANICAL DIAGRAMS

119

 

 

 

3 ELECTRICAL PARAMETERS at STC

 

Rated Maximum Power(Pmax) [W]

390

395

400

405

Open Circuit Voltage(Voc) [V]

44.71

44.91

45.12

45.32

Maximum Power Voltage(Vmp) [V]

36.80

37.01

37.21

37.41

Short Circuit Current(Isc) [A]

11.16

11.24

11.33

11.41

Maximum Power Current(Imp) [A]

10.60

10.67

10.75

10.82

Module Efficiency [%]

19.17

19.42

19.66

19.91

Power Tolerance

0~+5W

Temperature Coefficient of   Isc(α_Isc)

0.05%/℃

Temperature Coefficient of   Voc(β_Voc)

-0.275%/℃

Temperature Coefficient of   Pmax(γ_Pmp)

-0.368%/℃

STC

Irradiance   1000W/m², cell temperature 25℃, AM1.5G

 

 

 

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