• Las Cruces Solar Panels 700watts HJT Shingled Mono Crystalline Photovoltaic Solar Panel for Solar Panels System NCQ System 1
  • Las Cruces Solar Panels 700watts HJT Shingled Mono Crystalline Photovoltaic Solar Panel for Solar Panels System NCQ System 2
  • Las Cruces Solar Panels 700watts HJT Shingled Mono Crystalline Photovoltaic Solar Panel for Solar Panels System NCQ System 3
Las Cruces Solar Panels 700watts HJT Shingled Mono Crystalline Photovoltaic Solar Panel for Solar Panels System NCQ

Las Cruces Solar Panels 700watts HJT Shingled Mono Crystalline Photovoltaic Solar Panel for Solar Panels System NCQ

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Loading Port:
SHANGHAI
Payment Terms:
TT OR LC
Min Order Qty:
10 pc
Supply Capability:
100 pc/month

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Specification

Material:
Monocrystalline Silicon
Max. Power(W):
700
Number of Cells(pieces):
132

Ø OPERATING PARAMETERSOPERATIN

Maximum System Voltage

1500V/DC(IEC)

Operating Temperature

-40°C-+85°C

Maximum Series Fuse

35A

Maximum Test Load,Push/Pull

5400Pa/2400Pa

Conductivity at Ground

≤ 0.1Ω

Safety Class

Resistance

≥100MΩ

Voc and Isc Tolerance

±3%

Bifaciality

80±5%

Ø MECHANICAL DATA

Solar Cell Type

Mono 210×105 mm(8.3×4.1 inches)

Number of Cells

132 [2 x (11 x 6) ]

Module Dimensions

2384×1303×35 mm(93.9×51.3×1.4 inches)

Weight

38.7 kg(85.3 lb)

Front Cover

High transmission, AR coated tempered glass, 2.0mm

Back Cover

High transmission, Tempered, White Grid Glass/AR coating(optional), 2.0mm

Frame

Silver, anodized aluminium alloy

J-Box

≥IP68

Cable

4.0 mm2 solar cable, ≥300 mm(11.8 inches)/customizable

Number of diodes

3

Connector

MC4 EVO2 compatible

Ø PACKAGING CONFIGURATION

Module per pallet 31 pieces

Module per 40'HQ container 17 pallets, 527 pieces

Ø QUALIFICATIONS & CERTIFICATES

ü IEC 61215, IEC 61730

ü ISO 9001: Quality Management System

ü ISO 14001: Environment Management System

ü ISO 45001: Occupational Health and Safety

ü IEC 62941: Design and Manufacture of Crystalline Silicon Photovoltaic Modules

Ø JETION SOLAR

As a member of CNBM - a Fortune 500 company, Jetion Solar provides various product solutions, global EPC service and financing. Its standard and high- efficiency product offerings are among the most powerful and cost-effective in the industry. Till now, Jetion Solar has cumulatively more than 10 GW module shipment and 1 GW global EPC track records.

 

Installation instruction must be followed.See the installation manual or contact our technical service department for further information on approved installation.

The specification and key features described in this data sheet may deviate slightly and are not guaranteed. Due to ongoing innovation, R&D enhancement, Jetion.

Solar (China) Co., Ltd. reserves the right to make any adjustment to the information described herein at any time without notice. Please always obtain the most.

recent version of the data sheet which shall be duly incorporated into the binding contract made by the parties governing all transactions related to the purchase and sale of the products described herein.

 


Ø FAQ

Q:How can we guarantee the products quality?

A:Always provide the esteemed buyer a pre-production sample before mass production; Always testing every product before despatching the shipments;

Q:What products we can supply you?

A:Solar Panel,Inverter,Mounting System,Battery,PV Cable,Distributor Box,Pv Connector,Etc

Q:Where is your Manufacturer located? How can I visit there?

A:Our factory located in 501, Building 1, No. 600, Tongjiang Middle Road, Changzhou City, Jiangsu Province,China

Q:Can the products pricing be cheaper?

A:Of course, you will be offered a a very good discount with large quantities.

Q: Can print our companys logo on the PV panels?

A:Yes! And we accept the OEM&ODM orders.


Q:What happens to solar panels during extreme weather conditions?
During extreme weather conditions, such as hurricanes or hailstorms, solar panels can be damaged. Strong winds can cause them to be torn off or destroyed, while hail can crack or break the glass surface of the panels. Additionally, heavy snowfall can cover the panels, reducing their ability to generate electricity. However, most solar panels are designed to withstand various weather conditions, and manufacturers often perform rigorous testing to ensure their durability and resistance.
Q:in a solar panel, i know that the electrons are knocked loose and used as energy, what happens to the protons?
silicon based photovoltaic cells used some boron as dopant. i dont understand if that helps supress proton pastime, the way they be conscious boron on supressing run away nuclear reaction.... im clueless as you
Q:Photo-Voltaic solar panels are very expensive. Most of a home's energy needs are for heating water, heating and air-conditioning. All of these can be met with thermal solar collectors which are much less expensive. The thermal solar panels would heat water stored in a hot water tank which then can be used as hot water, to heat the home, or as the heat source to a Lithium Bromide Absorption chiller to air-condition a home. With the base line needs met without expensive panels and without inefficient energy conversions, only a small Photo-Voltaic array would be needed for the remaining power needs and since those needs are variable, there would still be power to sell to the grid.
you completely nailed it!! speaking about large buildings, it would benefit one to do a little more research. my company just installed a 640 collecter system on a million sq foot building. it consists of a absorption chiller (which uses no coolant, just water a silica gel beds, runs of the power of its controller, thats it) 27,000 gallon tank. chiller feeds 2 rotation units and 2 large office spaces for heat and cool. payback expected at less than 5 years. we will expand this system another 200 collectors. residential installs, if tax credits used, achieve 5-7 year payback pending domestic hot water only or dhw and space heating. thermal collectors actually produce more energy than pv panels do, therefore more bang for your buck, also as i hope you all know, pv has around 25% eff, thermal has 95%. also to say the tech part is gone, we use flowmeters that calculate carbon offsets, energy saved, money saved etc...all located in a wireless monitor for the consumer to enjoy.
Q:Can solar panels be used for powering a data center?
Yes, solar panels can be used to power a data center. Solar energy can be harnessed and converted into electricity, which can then be used to power the various components of a data center, including servers, cooling systems, and networking equipment. By utilizing solar panels, data centers can reduce their reliance on traditional grid power and lower their carbon footprint. Additionally, advancements in solar technology have made it more efficient and cost-effective, making it a viable option for powering data centers.
Q:how does solar panels work?
Solar panels collect solar radiation from the sun and actively convert that energy to electricity. Solar panels are comprised of several individual solar cells. These solar cells function similarly to large semiconductors and utilize a large-area p-n junction diode. When the solar cells are exposed to sunlight, the p-n junction diodes convert the energy from sunlight into usable electrical energy. The energy generated from photons striking the surface of the solar panel allows electrons to be knocked out of their orbits and released, and electric fields in the solar cells pull these free electrons in a directional current, from which metal contacts in the solar cell can generate electricity. The more solar cells in a solar panel and the higher the quality of the solar cells, the more total electrical output the solar panel can produce. The conversion of sunlight to usable electrical energy has been dubbed the Photovoltaic Effect. The photovoltaic effect arises from the properties of the p-n junction diode, as such there are no moving parts in a solar panel.
Q:Can solar panels be used in areas with high levels of bird droppings?
Yes, solar panels can be used in areas with high levels of bird droppings. However, regular cleaning and maintenance may be required to ensure optimal performance of the panels.
Q:hi guys, i need help, okay lets say i decide to put solar panels near a place where its inhabitated by people, what kinda of environmental factors should i consider? Will the solar panels cause any damage to the enviromnent around it? Will it affect the plant and animals around it? should i consider the weather? its for my class so if u guys can help thankx.
You would need to consider how much sun your area gets on average. You would need to do a cost/benefit analysis to decide if you will be saving money eventually. Environmentally, it would not affect the plants or animals around it, except those it might block the sun from. Meaning, the grass growing in the shade of the panels will probably die out, but that goes for anything that would cast shade for the majority of the time. Solar panels are simply rechargers for the batteries it's hooked up to. No different than a cell phone charger affects the area, people or plants around it. If it is a worry, make some orgonite and place it around the panels. :)
Q:Plz also label the price for the panel. I want a small panel but can produce a sufficent amount of energy. thank you :)
You might try Lowes Home Improvement. Or the yellow pages. Or Solar Panels R US.
Q:Can solar panels be used in commercial buildings or industrial settings?
Yes, solar panels can be used in commercial buildings or industrial settings. In fact, they are increasingly being incorporated into such environments to offset energy costs, reduce carbon footprint, and promote sustainability. Solar panels can be installed on rooftops, parking lots, or even as part of building facades to generate clean electricity that can power various operations in commercial or industrial facilities.
Q:What is the average cost of solar panel installation?
The average cost of solar panel installation can vary depending on various factors such as the size of the system, location, type of panels, and any additional equipment or services required. However, as of 2021, the average cost in the United States ranges from $15,000 to $25,000. It is important to note that there may be additional incentives, tax credits, and financing options available that can help reduce the overall cost.

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