N210AG20D1 F186R198
Negotiable
China
15F, Building 1, GCL Plaza, Industrial Park, Suzhou City, Jiangsu Province
18291400004
Online Contact
Favorite
Product Introduction

Photo-induced attenuation is "0"

Superior anti-PID performance

Lower encapsulation loss, more suitable for high-efficiency modules

Relative conversion efficiency ≥92% under 200W/㎡ low light

High conversion efficiency, front-side efficiency ≥25%, bifaciality ≥80%

Product Parameters

Product Features

Product Model

210 Single Crystal Bifacial Cell (N210AG20D1)

Dimensions

210mm×210±0.5mm,Φ295mm±0.5mm

Battery thickness

130μm ± 13μm

Front

20 main grid, 12 sections, 186 grid, main grid width 0.036mm ± 0.02mm

Back

20 main grid, back 12 sections, 198 grid, main grid width 0.036mm ± 0.02mm

Electrical Properties

Efficiency (%)

Power (W)

Maximum power voltage (V)

Maximum power current (A)

Open circuit voltage (V)

Short circuit current (A)

Fill factor (%)

26.0

11.46

0.654

17.53

0.731

18.42

85.12

25.9

11.42

0.652

17.53

0.731

18.42

84.88

25.8

11.38

0.649

17.52

0.730

18.41

84.59

25.7

11.33

0.647

17.52

0.730

18.41

84.31

25.6

11.29

0.645

17.50

0.730

18.41

84.02

25.5

11.24

0.643

17.49

0.729

18.41

83.75

25.4

11.20

0.641

17.48

0.729

18.40

83.46

25.3

11.16

0.639

17.45

0.728

18.40

83.26

25.2

11.11

0.637

17.44

0.728

18.40

82.98

25.1

11.07

0.637

17.38

0.727

18.40

82.77

25.0

11.02

0.635

17.37

0.726

18.40

82.52

24.9

10.98

0.633

17.33

0.724

18.39

82.44

24.8

10.94

0.631

17.33

0.723

18.39

82.20

24.7

10.89

0.630

17.30

0.723

18.39

81.94

24.6

10.85

0.629

17.25

0.722

18.39

81.70

24.5

10.80

0.627

17.24

0.721

18.39

81.49

24.4

10.76

0.626

17.18

0.721

18.39

81.20

24.3

10.72

0.624

17.16

0.720

18.38

80.99

24.2

10.67

0.622

17.15

0.719

18.38

80.73

24.1

10.63

0.620

17.13

0.719

18.38

80.42

Temperature Coefficient

0.045%/K

Current temperature coefficient

-0.30%/K

Power temperature coefficient

-0.25%/K

Voltage temperature coefficient