Panasonic HIT 330W N-Type 96 Cell Solar Panel, VBHN330SA17

Panasonic 330W Image
CS Part #: 
cs-302717
Mfr. Part #: 
VBHN330SA17
Manufacturer: 
Min Qty: 
4
Bundle Size: 
1
Unit Price: 
$363.00
Ext Price: 
$1,452.00
$/W: 
$1.100
Description

Panasonic HIT 330W N-Type 96 Cell Solar Panel, VBHN330SA17

The 96-cell high-efficiency HIT N330 solar panel provides a powerful combination of immediate energy savings, long-term performance, and sleek beauty. A remarkably low-temperature coefficient of -0.258%/°C helps generate greater electricity output even on the hottest days. Panasonic home solar panels are backed by an industry-leading parts and performance warranty that guarantees minimum power output of 90.76% after 25 years.

Features:

  • Enhanced New Frame Design (40mm)
  • Pyramid cell structure design for optimal sunlight capture
  • A low-temperature coefficient of -0.258%/°C produces higher power output at high temperatures
  • Heterojunction technology with ultra-thin amorphous silicon layers reduce electron loss
  • Water drainage frame design prevents rain accumulation, eliminates water stains from the panel surface
  • Complete 25-year warranty on linear power output, parts, and product workmanship
Mechanical Data & Components
Module Technology: 
HIT
Dimensions: 
62.6 × 41.5 × 1.6 in
Weight: 
40.81 lb
Cells Per Module: 
96
Module Frame Material: 
Clear Aluminum
Module Frame Thickness: 
40mm
Module Backsheet Material: 
White
Module Connector: 
MC4
Module Output Cables: 
PV Wire
Electrical Characteristics
Module Watts STC: 
330 Watts
Max Power Voltage (Vmpp): 
58.00 Volts
Max Power Current (Impp): 
5.70 Amps
Open Circuit Voltage (Voc): 
69.70 Volts
Short Circuit Current (Isc): 
6.07 Amps
Max System Voltage: 
600.00 Volts
Series Fuse Rating: 
15 Amps
Module Efficiency: 
19.70%
Temp Coefficient (Pmpp): 
-0.2580%
Temp Coefficient (Voc): 
-0.1600%
Datasheets & Collateral
Document Type Published Date
Data Sheet
Support Articles
How Heat Affects Solar Panel Efficiency

Excessive heat can significantly reduce the output of a PV system. This article gives some pointers on avoiding unexpected energy loss in an array.

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