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Saatvik

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Saatvik Solar is the “India’s premier Solar Pv Module manufacturers” dedicated to driving sustainable energy solutions for a brighter future. Established with a vision to revolutionize the solar industry, we pride ourselves on being pioneers in the field, with a state-of-the-art manufacturing facility strategically located in Ambala, Haryana. Saatvik manufacturing facility and modules adhere to the highest global standards, holding certifications from esteemed bodies such as Bureau Veritas, UL, and TUV Rheinland. These certifications serve as a testament the unwavering commitment to excellence and sustainability.

MONO PERC - 144 Cells

525 Wp | 530 Wp | 535 Wp | 540 Wp | 545 Wp | 550 Wp SGE XXX-144 MHC (XXX-525-550 Wp)

Key Features

  • High Module Conversion Efficiency Module efficiency up to 21.48% achieved through advanced cell technology and manufacturing process.
  • Advanced Technology MBB- Multi Busbar (10BB) / Halfcut MONOPERC; cells /Ga Doped Wafers.
  • Positive Tolerance Power output with a positive tolerance.
  • Excellent performance in low light Superior output in low irradiance Increased power production even in low-light environments.
  • Extended Wind and Snow load Tests Certified to withstand: wind load (2400 Pascal) and snow load (5400 Pascal).
  • Excellent PID Resistance Excellent Anti-PID performance and certified for up-to 288 Hrs.
  • Withstanding a Harsh Environment Reliable quality leads to better sustainability, even in harsh environments such as deserts, farms, coastal and the areas with ammonia exposure.

21.29%

High Module Conversion Efficiency

10 BB

Advanced Technology

288 Hrs

Excellent PID Resistance

100%

I-V Measurement

21.29%

High Module Conversion Efficiency

10 BB

Advanced Technology

288 Hrs

Excellent PID Resistance

100%

I-V Measurement

BIFACIAL – MONO PERC – 144 Cells

525 Wp | 530 Wp | 535 Wp | 540 Wp | 545 Wp SGE XXX-144 MBHC (XXX-525-545 Wp)

Key Features

  • High Module Conversion Efficiency Module efficiency up to 21.29% achieved through advanced cell technology and manufacturing process.
  • Advanced Technology MBB- Multi Busbar (10BB) / Halfcut MONOPERC cells /Ga Doped Wafers.
  • Positive Tolerance Power output with a positive tolerance.
  • Excellent performance in low light Superior output in low irradiance Increased power production even in low-light environments.
  • Extended Wind and Snow load Tests Certified to withstand: wind load (2400 Pascal) and snow load (5400 Pascal).
  • Excellent PID Resistance Excellent Anti-PID performance and certified for up-to 288 Hrs
  • Withstanding a Harsh Environment Reliable quality leads to better sustainability, even in harsh environments such as deserts, farms, coastal and the areas with ammonia exposure.

21.10%

High Module Conversion Efficiency

70±5%

Bifaciality factor

5400

Extended Wind and Snow load Tests

10 BB

MBB-Multi Bus-bar

21.10%

High Module Conversion Efficiency

70±5%

Bifaciality factor

5400

Extended Wind and Snow load Tests

10 BB

MBB-Multi Bus-bar

BIFACIAL – N TOPCon 144 CELLS (DUAL GLASS)

525 Wp | 530 Wp | 535 Wp | 540 Wp | 545 Wp | 550 Wp SGE XXX-144 MHC (XXX-525-550 Wp)

Key Features

  • N-Type with Very Low LID Resulting in higher power generation.
  • Positive Tolerance Power output with a positive tolerance.
  • Excellent performance in low light Superior output in low irradiance Increased power production even in low-light environments.
  • Better Temperature coefficient (-0.30%/°C) Higher power generation under higher ambient temperature conditions.
  • Higher Module Efficiency Module Efficiency Up-to 22.84%.
  • 10-30% more power generation When compared with the P-type module.
  • Advanced technology MBB-Multi Bus-bar (16BB) Half-cut N-TOPCon cell.
  • Extended Wind and snow loads Wind Load (2400 Pascal) and Snow Load (5400 Pascal).
  • Withstanding a harsh environment Reliable quality leads to better sustainability, even in harsh environments such as deserts, farms, coastal and the areas with ammonia exposure.

22.84%

High Module Efficiency

80±5%

Bifaciality factor

-0.30/˚C

Better Temperature coefficient

16 BB

MBB-Multi Bus-bar

22.84%

High Module Efficiency

80±5%

Bifaciality factor

-0.30/˚C

Better Temperature coefficient

16 BB

MBB-Multi Bus-bar

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