PVT Type E Solar Panels

1. High-Efficiency Power Generation Core, Stable and Reliable Power Output

2. Uniform Temperature Heat Collection Design, Dual Efficiency Upgrade

3. Super Strong Protection, Coping with Harsh Environments


Product Details

When traditional solar energy solutions fall into the dilemma of "sufficient power generation but insufficient heat utilization" — a large amount of heat generated by photovoltaic panels during power generation is wasted, and it even accelerates equipment aging; a single photothermal system cannot meet daily electricity demand. How to break through this bottleneck in energy utilization?

The PVT Type E Thermoelectric Twin Module provides a perfect answer! It innovatively integrates two major technologies: photovoltaic and photothermal. It is not only an "energy station" for stable power generation but also a "thermal plant" for efficient heat production. It pushes the comprehensive utilization rate of solar energy to a new dimension and builds a truly low-carbon and efficient energy core for various types of buildings.

PVT Type E Thermoelectric Twin Module

I. Choose PVT Type E, with Four Core Advantages Visible

1. Dual-Energy Synergy, No Wastage in Energy Utilization

Abandoning the traditional single energy conversion mode, it relies on the integrated coupling technology of photovoltaic and photothermal. While efficiently producing electricity, it fully recovers and reuses the waste heat generated during the operation of the module. Equipped with an intelligent temperature control system, it accurately controls the module temperature below 45°C, fundamentally solving the "hot spot effect" and high-temperature power attenuation problems of traditional photovoltaic panels. This not only ensures the stability of power generation but also significantly extends the service life of the equipment. According to actual measurements, its comprehensive solar energy utilization rate is as high as 60%. Compared with traditional single photovoltaic equipment, the overall energy output is increased by more than 50%, enabling every part of solar energy to be fully converted into practical value.

2. Vacuum Technology, More Powerful Thermal Output

Innovatively adopting the vacuum lamination process, it is like adding a layer of "high-efficiency heat-conducting armor" to the module. This greatly reduces the interface thermal resistance between the photovoltaic chip and the heat collection component, making heat transfer smoother. This process increases the thermal energy utilization efficiency by more than 40%, ensuring that the generated heat can be supplied immediately and efficiently. Whether it is for daily hot water demand or winter heating demand, it can be quickly met, avoiding the idle waste of thermal energy.

3. Intelligent Temperature Control, Dual Improvement of Benefits and Service Life

The intelligent temperature control system is like a "professional housekeeper" for the equipment. It monitors and accurately adjusts the surface temperature of the module in real time, controlling the temperature difference fluctuation within a very small range, and providing guarantee for the stable operation of the module. On the one hand, the stable working environment significantly extends the service life of the module and reduces the cost of equipment replacement. On the other hand, the thermal energy output can reach twice that of electrical energy, bringing users comprehensive economic benefits far exceeding those of pure photovoltaic systems, and realizing "one investment, double returns".

4. Intelligent Interconnection, More Worry-Free Operation, Maintenance and Energy Saving

The module has a built-in high-precision sensor and intelligent control unit, which can be easily connected to the building energy management platform to realize the intelligent linkage of "energy generation - power grid transmission - user energy consumption". According to the energy consumption rules of different scenarios such as office and daily life, it dynamically adjusts the heat collection power to accurately match the energy demand, avoiding energy surplus or shortage. At the same time, intelligent management significantly reduces the cost of manual operation and maintenance, with the operation and maintenance cost reduced by more than 35%, making the efficient energy system easy to use and cost-effective.

II. Multi-Scenario Adaptation, All-Round Energy Solution

• Office and Domestic Hot Water Supply: It does not rely on traditional electric or gas water heaters. It can stably supply hot water around the clock at low cost, meeting the centralized hot water demand of office buildings, residential communities, etc., and reducing energy consumption and use costs.

• Swimming Pool Constant Temperature Management: Aiming at the problem of high heating cost of swimming pools in spring and autumn, it greatly reduces the heating cost through efficient thermal energy supply, and at the same time extends the swimming pool usage season and improves the swimming pool operation efficiency.

• Thermal-Electric-Cooling Cogeneration for Single Buildings: Working in synergy with ground-source heat pumps and air-conditioning systems, it provides integrated electricity, heating and cooling services for single buildings such as villas and small commercial buildings, creating a comfortable and energy-saving indoor environment and realizing energy self-sufficiency.

• Low-Temperature Heating with Capillary Tube Network: It outputs stable and mild heat sources, which perfectly matches the capillary tube network radiation system. Through the radiant heating method, it creates a uniform and comfortable indoor temperature, with both energy-saving and comfort advantages.

• Cross-Season Heat Supplement for Shallow Geothermal Energy: In summer, the surplus thermal energy is stored in the underground shallow geothermal system; in winter, it supplements thermal energy for the ground-source heat pump system, realizing cross-season recycling of energy and improving the annual operation efficiency of the energy system.

III. Hardcore Technology, Consolidating the Foundation of Quality

1. High-Efficiency Power Generation Core, Stable and Reliable Power Output

Equipped with the industry-leading N-type TOPCon monocrystalline cell, it has ultra-high photoelectric conversion efficiency and a better temperature coefficient. Whether it is a sunny day with strong light irradiation or a cloudy day, early morning or evening with weak light environment, it can maintain strong and stable power output, ensuring uninterrupted energy supply.

2. Uniform Temperature Heat Collection Design, Dual Efficiency Upgrade

Adopting a high-purity aluminum plate heat transfer base plate and a precision flow channel design, it realizes the ultimate control of the temperature uniformity of the module surface within ±1°C. The uniform temperature distribution not only improves the heat collection efficiency but also further increases the power generation power through effective cooling, forming a dual efficiency upgrade where "power generation" and "heat collection" promote each other, making energy utilization more efficient.

3. Super Strong Protection, Coping with Harsh Environments

The frame is made of anodized 6063-T5 aluminum alloy material, with a tensile strength of up to 180MPa, and the structure is firm and durable, which can resist external impact. In terms of sealing, high-weather resistance sealing materials are used, with a protection level of IP65. Whether it is sandstorm invasion, rainy and snowy weather, or salt spray corrosion in coastal areas, it can be easily coped with. The product is designed for long service life, ensuring long-term stable operation in various harsh environments and minimizing the frequency and cost of maintenance.

The PVT Type E Thermoelectric Twin Module is more than just an energy equipment; it is a comprehensive low-carbon energy solution for the future. It breaks the limitations of traditional solar energy utilization, redefines the value of solar energy with technological innovation, and converts light and heat into tangible economic and environmental benefits. Choosing PVT Type E means choosing an efficient, energy-saving and sustainable future! Contact us now to obtain an exclusive full-effect solar energy utilization plan and start a new journey of green energy!

Ⅳ. Technical specifications

 class

Specific parameters

PVT-E Module Parameters

Physical Specifications

outline dimension (mm)

2279×1134×45

Glass size (mm)

2273×1128

weight (kg)

39.0

Electrical properties

Maximum power (STC) (W)

580

Cell type

Single-crystal multi-busbar N-type TOPCon

Number of cells

144(6×24)cells

working temperature (℃)

-40~85

Maximum system voltage (V)

1500(TUV)

Open circuit voltage (Voc) (V)

51.1

Maximum power point voltage (Vmp) (V)

44.45

Short-circuit current (Isc) (A)

14.31

Maximum power point current (Imp) (A)

13.05

component efficiency

22.44%

Thermal Properties

Peak solar thermal power (W)

1180

dielectric capacity (L)

1.2

Media type

Propylene glycol solution / ethylene glycol solution / water

Working pressure (MPa)

0.6

operate mode

Intersticial

Interface size and quantity

G1/2 external thread, 2

Heat exchanger structure

Piping

Heat exchanger material

red copper

other

Back Material

Painted Sheet

packing quantity

28 units per pallet, 616 units per 40-foot container

Application areas

Low-temperature radiant heating, pool heating, cross-season heat storage, and direct heating integrated with heat pumps


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