HJT Photovoltaic Module 650W-700W

Highjoule’s HJT-PV series PV module is a highly efficient and durable solar module. Using monocrystalline silicon cells, it can achieve better energy output even under low light conditions.

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HJT Photovoltaic Module 650W-700W
HJT Photovoltaic Module 650W-700W
HJT Photovoltaic Module 650W-700W
HJT Photovoltaic Module 650W-700W
HJT Photovoltaic Module 650W-700W
HJT Photovoltaic Module 650W-700W
HJT Photovoltaic Module 650W-700W
HJT Photovoltaic Module 650W-700W
HJT Photovoltaic Module 650W-700W
HJT Photovoltaic Module 650W-700W
HJT Photovoltaic Module 650W-700W

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  • Highly efficient energy conversion

    High purity monocrystalline silicon cells are used to maximize energy generation

  • Durable construction

    Rugged, weather-resistant frame encapsulation to withstand harsh environmental conditions

  • Enhanced low-light performance

    Good power generation efficiency under low-light or cloudy conditions

  • Anti-Reflection Coating

    Reduces light reflection, improves light absorption and increases energy efficiency

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Parameters

Electrical Data(STC)

Electrical Data(STC)
Maximum Power Pmax(W) 675 680 685 690 695 700
Maximum Power Voltage Vmp(V) 39.4 39.6 39.8 40.1 40.3 40.5
Maximum Power Current Imp(A) 17.12 17.16 17.19 17.23 17.25 17.28
Open Circuit Voltage Voc(V) 47.2 47.4 47.7 47.9 48.3 48.6
Short Circuit Current Isc(A) 18.14 18.18 18.21 18.25 18.28 18.32
Module Efficiency (%) 21.7 21.9 22.1 22.2 22.4 22.5
Output Power Tolerance (W) 0~+5
STC: 1000W/m2 Irradiation,25°C Module Temperature and and AM 1.5g Spectrum

Electrical Characteristics with different power bin

Electrical Characteristics with different power bin(reference to 10% Irradiance ratio
Total equivalent Power – Pmax(W) 729 734 740 745 751 756
Maximum Power Voltage Vmp(V) 39.4 39.6 39.8 40.1 40.3 40.5
Maximum Power Current Imp(A) 18.49 18.53 18.57 18.61 18.63 18.66
Open Circuit Voltage Voc(V) 47.2 47.4 47.7 47.9 48.3 48.6
Short Circuit Current Isc(A) 19.59 19.63 19.67 19.71 19.74 19.78

Electrical Data(NOCT)

Electrical Data(NOCT)
Maximum Power Pmax(W) 514 517 521 526 530 534
Maximum Power Voltage Vmp(V) 37 37.2 37.3 37.7 37.8 38
Maximum Power Current Imp(A) 13.89 13.91 13.94 13.96 14.02 14.04
Open Circuit Voltage Voc(V) 44.7 44.9 45.2 45.4 45.8 46
Short Circuit Current Isc(A) 14.62 14.65 14.67 14.71 14.73 14.76

Mechanical Characteristics

Mechanical Characteristics
Number of Cells(Half-cut) 132(12×11)
Dimension LxWxH(mm) 2384x1303x33(93.86×51.30×1.30 inch)
Weight(kg) 38.3(84.5lb)
Front Glass High Transmission,Low Iron,Tempered ARC Glass
Back-sheet Heat Strengthened Glass(White Grid Glass)
Frame Silver White,Anodized Aluminum Alloy
Junction Box IP68 Rated
Cable TUV,1x4mm2;Anode:350mm,Cathode:230mm
Number of Diodes 3
Wind/Snow Load 2400Pa/5400Pa
Connectors MC Compatible

Temperature Ratings

Temperature Ratings
Nominal Operating Cell Temperature(NOCT) 45±2°C
Temperature Coefficient of Isc +0.04%/°C
Temperature Coefficient of Voc -0.25%/°C
Temperature Coefficient of Pmax -0.30%/°C

Maximum Ratings

Maximum Ratings
Operating Temperature -40 to +85°C
Maximum System Voltage 1500V DC
Maximum Series Fuse Rating 30A
Limiting Reverse Current 30A

Note: Specifications are subject to change without prior notice for product improvement. Data Sheet / Get your free product catalog and the latest pricing!

FAQ

1. How do I choose the right capacity for my home energy storage system?

Capacity depends on your daily electricity consumption, number of rooms, and appliances. For a typical 3-bedroom home, 10–15 kWh is usually sufficient, while larger villas or farms may require 30 kWh or more.

2. What capacity and inverter size are recommended for different home types?

Home Type Daily Consumption (kWh) Recommended Battery Capacity Recommended Inverter Power
Small Apartment 8 – 12 5 – 10 kWh 3 – 5 kW
Medium Home 12 – 20 10 – 15 kWh 5 – 8 kW
Villa 20 – 35 15 – 30 kWh 8 – 12 kW
Farm / Rural Home 25 – 60 30 – 60 kWh 10 – 15 kW

3. How can a home energy storage system support backup during outages?

For basic backup like lighting and refrigeration, a 5–10 kWh battery can provide 6–12 hours of power. Whole-home backup with HVAC and appliances typically requires 15–30 kWh capacity.

4. Can I start small and expand my energy storage system later?

Yes. Modular battery systems allow starting with 5 kWh and expanding to 30 kWh or more as your energy needs grow.

5. What configuration is recommended for farms or rural homes?

A setup with 30–60 kWh battery capacity, 10–15 kW inverter, and 10–20 kW solar array reliably powers farm equipment, irrigation pumps, and household loads.

  • Battery Capacity: 30–60 kWh
  • Inverter Power: 10–15 kW
  • Solar Array: 10–20 kW

6. What are typical power consumption and daily energy use of household appliances?

Appliance Power (W) Daily Usage (h) Daily Energy (kWh)
Refrigerator 150 24 3.6
Air Conditioner 1500 6 9.0
Washer/Dryer 2000 1.5 3.0
LED Lighting 300 6 1.8
TV + Router 200 5 1.0

7. How does climate affect my choice of energy storage system?

In sunny regions, smaller capacities (5–10 kWh) may suffice, while cloudier or colder areas should consider larger capacities (15–30 kWh) for reliable power.

8. How do I balance solar self-consumption and grid backup?

A hybrid system with 5–15 kW solar, 5–10 kW inverter, and 10–20 kWh storage maximizes solar use and provides backup during outages.

9. Can homes go fully off-grid with these systems?

Yes, with battery capacities above 30 kWh and proper load management, fully off-grid homes are achievable.

10. What is Depth of Discharge (DoD), and why is it important?

DoD indicates how much battery capacity can be safely used. LFP batteries support ≥90% DoD, improving usable capacity and battery life.

11. How to choose the right inverter power for my home?

  • Inverter power should cover peak simultaneous loads.
  • Select inverter rated 1.2–1.5 times your max household load.
  • Larger inverter power is better if many heavy appliances run simultaneously.

12. What other factors affect system configuration?

  • Existing solar PV installation
  • Frequency and duration of power outages
  • Load stability and fluctuations
  • Available installation space and cooling conditions
  • Budget and plans for future expansion

Application

Residential rooftop solar systems
Commercial buildings for sustainable energy integration
Industrial facilities looking to offset electricity costs
Off-grid applications in remote locations requiring reliable power

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Find Your Solar + Battery Storage Specialist Now!

* Fill out this form and our experts will help you find the perfect solar storage solution for your home or business.


* Required fields.
Accurate info ensures faster contact.