Solar Cells

Image Part Number Description / PDF Quantity Rfq
750-00032

750-00032

Parallax, Inc.

MONOCRYSTLN SOLAR CELL 10W 21.6V

0

750-00030

750-00030

Parallax, Inc.

MONOCRYSTALIN SOLAR CELL 1W 6.9V

0

750-00044

750-00044

Parallax, Inc.

MONOCRYSTL SOLAR CELL 2.6W 600MV

0

750-00043

750-00043

Parallax, Inc.

MONOCRYSTL SOLAR CELL 2.6W 600MV

0

750-00036

750-00036

Parallax, Inc.

MONOCRY SLR CELL 2.6W 600MV 13PK

0

33000

33000

Parallax, Inc.

MONOCRYSTALLINE SOLAR CELL 30W

0

750-00042

750-00042

Parallax, Inc.

MONOCRYSTL SOLAR CELL 2.6W 600MV

0

750-00034

750-00034

Parallax, Inc.

MONOCRY SOLR CELL 2.6W 600MV 1PK

0

750-00035

750-00035

Parallax, Inc.

MONOCRY SOLR CELL 2.6W 600MV 6PK

0

750-00031

750-00031

Parallax, Inc.

MONOCRYSTALN SOLAR CELL 1W 10.4V

0

Solar Cells

Solar cells (photovoltaic cells) are semiconductor devices that convert sunlight directly into electricity through the photovoltaic effect. They serve as core components in renewable energy systems, enabling sustainable power generation. Modern advancements have expanded their applications from large-scale power plants to portable electronics, making them critical for reducing fossil fuel dependence.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Monocrystalline SiliconHigh efficiency (18-22%), long lifespan (>25 years), high costResidential rooftop systems, utility-scale farms
Polycrystalline SiliconModerate efficiency (15-18%), lower cost, blue reflective appearanceCommercial buildings, off-grid systems
Thin-Film (a-Si)Lightweight, flexible, lower efficiency (10-12%), temperature-resistantBuilding-integrated PV, portable chargers
CIGS (Copper Indium Gallium Selenide)12-14% efficiency, better low-light performanceFlexible solar panels, EV charging
Organic PVLow cost, transparent/colored options, shorter lifespanSmart windows, wearable devices
PerovskiteHigh theoretical efficiency (33.7% in tandem), low production costNext-gen solar farms, BIPV

3. Structure and Components

Typical crystalline silicon solar cell structure includes: - Anti-reflective coating (silicon nitride) - N-type silicon layer (emitter) - P-type silicon layer (base) - Front electrode grid (silver paste) - Back surface field (aluminum layer) - Encapsulation (EVA film, tempered glass, )

4. Key Technical Parameters

ParameterDescriptionImportance
Conversion EfficiencyPercentage of sunlight converted to electricityDirectly affects energy output and ROI
Open-Circuit Voltage (Voc)Maximum voltage at zero currentDetermines system voltage compatibility
Short-Circuit Current (Isc)Maximum current at zero voltageImpacts wire sizing and inverter selection
Temperature CoefficientPerformance change per C temperature riseAffects reliability in hot climates
LifetimeYears until 80% performance retentionKey economic factor

5. Application Fields

  • Utility-scale solar farms (e.g., 500MW Tengger Desert Solar Park)
  • Building-integrated PV (BIPV) systems
  • Consumer electronics (solar chargers, calculators)
  • Agricultural irrigation systems
  • Spacecraft power systems (e.g., ISS solar arrays)
  • Electric vehicle charging stations

6. Leading Manufacturers and Products

ManufacturerKey ProductKey Features
First SolarSeries 6 Thin-Film18% efficiency, cadmium-telluride technology
SunPowerMaxeon 322.8% efficiency, no degradation warranty
LONGi SolarHi-MO 4Monocrystalline PERC cells, 410W output
Hanwha Q CELLSQ.PEAK DUO19.8% efficiency, bifacial generation capability
TeslaSolar Roof V3Building-integrated solar tiles

7. Selection Recommendations

  • Prioritize conversion efficiency for space-constrained installations
  • Consider temperature coefficient for tropical/hot regions
  • Evaluate LCOE (Levelized Cost of Energy) over initial cost
  • Select appropriate form factor (rigid vs flexible)
  • Verify certifications (IEC 61215, UL 1703)

8. Industry Trends

Key developments include: - Tandem cells combining perovskite and silicon layers (potential 40% efficiency) - Bifacial modules capturing rear-side irradiance - AI-driven manufacturing for defect reduction - Transparent solar glass integration in skyscrapers - Recycling infrastructure development for end-of-life panels - Quantum dot solar cells for tunable bandgap properties

RFQ BOM Call Skype Email
Top