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JA Solar 710W n-type Double Glass Bifacial Modules (33 panels/pallet)

$7,999.99 $11,999.99
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  • Model: JAM66D46-710/LB
  • Rated Maximum Power (Pmax): 710 W
  • Open-Circuit Voltage (Voc): 48.60 V
  • Maximum Power Voltage (Vmp): 40.80 V
  • Short-Circuit Current (Isc): 18.51 A
  • Maximum Power Current (Imp): 17.40 A
  • Module Efficiency: 22.9%
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    Description

    JAM66D46-710/LB — 710W High-Efficiency Monocrystalline Solar Module

    JAM66D46-710/LB is a high-power 710W monocrystalline solar module engineered for maximum energy yield, compact power density and long-term reliability. Built for residential, commercial and utility-scale applications, this module delivers strong performance per square meter and is ideal where roof or ground area is at a premium.

    Key Electrical Parameters (STC)

    • Model: JAM66D46-710/LB
    • Rated Maximum Power (Pmax): 710 W
    • Open-Circuit Voltage (Voc): 48.60 V
    • Maximum Power Voltage (Vmp): 40.80 V
    • Short-Circuit Current (Isc): 18.51 A
    • Maximum Power Current (Imp): 17.40 A
    • Module Efficiency: 22.9%
    • Power Tolerance: 0 ~ +3% (positive tolerance)
    • System Voltage Rating: typically used in modern high-voltage string/1500V systems (check datasheet for exact rating)

    Temperature Coefficients (Performance Stability)

    • Isc coefficient (α_Isc): +0.045% / °C
    • Voc coefficient (β_Voc): −0.250% / °C
    • Pmax coefficient (γ_Pmp): −0.290% / °C

    Performance & Design Advantages

    1. High power density (710W): reduces the number of modules required, lowers mounting and balance-of-system (BOS) costs, and is ideal for constrained roof or ground areas.
    2. Excellent conversion efficiency (22.9%): generates more energy per m² vs lower-efficiency modules — beneficial for both rooftop and utility applications.
    3. Optimized thermal behavior: competitive temperature coefficients help limit power loss in hot operating conditions, improving year-round energy yield.
    4. Positive power tolerance: guaranteed output at or above rated power ensures stronger first-year production estimates.
    5. Robust electrical characteristics: balanced Vmp / Imp values make string design straightforward and compatible with modern string and central inverters.

    Typical Applications

    • Residential rooftops aiming to maximize output with limited roof area
    • Commercial and industrial rooftop installations
    • Large ground-mounted and utility-scale PV farms where BOS savings matter
    • Hybrid systems paired with battery storage and inverters for backup or self-consumption

    Specification Table

    Parameter Value
    Model JAM66D46-710/LB
    Rated Maximum Power (Pmax) 710 W
    Open Circuit Voltage (Voc) 48.60 V
    Maximum Power Voltage (Vmp) 40.80 V
    Short Circuit Current (Isc) 18.51 A
    Maximum Power Current (Imp) 17.40 A
    Module Efficiency 22.9%
    Power Tolerance 0 ~ +3%
    Temperature Coefficients Isc: +0.045%/°C • Voc: −0.250%/°C • Pmax: −0.290%/°C
    STC Reference Irradiance 1000 W/m², cell temperature 25°C, AM1.5G

    Installation & Compatibility Notes

    • Verify inverter MPPT and Voc limits when designing strings — the module Voc (48.60 V) and system voltage influence string size.
    • BIFACIAL / rear-side gain (if applicable) depends on site albedo — higher reflectance (white gravel, concrete, snow) increases rear-side contribution.
    • Use appropriate mounting hardware and follow torque specs; consult the mechanical datasheet for wind and snow load ratings.
    • Consider temperature derating and local irradiance when modeling expected energy output.

    Why Choose JAM66D46-710?

    For projects that require high output per module and lower installed cost per watt, the JAM66D46-710/LB offers an excellent balance of high rated power, strong conversion efficiency and stable thermal performance. It is particularly effective for roof-constrained installations and large-scale arrays seeking BOS savings and higher energy yield.

    Note: Data above are measured under Standard Test Conditions (STC). Actual system production will vary with site irradiance, temperature, shading and system design. Always consult the full module datasheet and a qualified engineer for final system design and warranty details.

    SPECIFICATIONS

    710W Bifacial Solar Panel Specification Details
    Power Output 710W
    Module Efficiency 22.64%
    Type N-Type Mono-Crystalline
    Facial Bifacial
    Connection Type MC4 Compatible
    Front Load 5400 Pa
    Rear Load 2400 Pa
    Frame Colour Anodized Aluminum (Black/Silver)
    Backsheet Transparent
    Pallet Quantity 31 Modules per Pallet
    Thickness 35mm
    Weight 29 ± 1 kg (Approx. 64 lbs)
    Width 1134mm
    Height 2278mm
    Depth 35mm

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    ROCKSOLAR

    JA Solar 710W n-type Double Glass Bifacial Modules (33 panels/pallet)

    $7,999.99 $11,999.99

    JAM66D46-710/LB — 710W High-Efficiency Monocrystalline Solar Module

    JAM66D46-710/LB is a high-power 710W monocrystalline solar module engineered for maximum energy yield, compact power density and long-term reliability. Built for residential, commercial and utility-scale applications, this module delivers strong performance per square meter and is ideal where roof or ground area is at a premium.

    Key Electrical Parameters (STC)

    • Model: JAM66D46-710/LB
    • Rated Maximum Power (Pmax): 710 W
    • Open-Circuit Voltage (Voc): 48.60 V
    • Maximum Power Voltage (Vmp): 40.80 V
    • Short-Circuit Current (Isc): 18.51 A
    • Maximum Power Current (Imp): 17.40 A
    • Module Efficiency: 22.9%
    • Power Tolerance: 0 ~ +3% (positive tolerance)
    • System Voltage Rating: typically used in modern high-voltage string/1500V systems (check datasheet for exact rating)

    Temperature Coefficients (Performance Stability)

    • Isc coefficient (α_Isc): +0.045% / °C
    • Voc coefficient (β_Voc): −0.250% / °C
    • Pmax coefficient (γ_Pmp): −0.290% / °C

    Performance & Design Advantages

    1. High power density (710W): reduces the number of modules required, lowers mounting and balance-of-system (BOS) costs, and is ideal for constrained roof or ground areas.
    2. Excellent conversion efficiency (22.9%): generates more energy per m² vs lower-efficiency modules — beneficial for both rooftop and utility applications.
    3. Optimized thermal behavior: competitive temperature coefficients help limit power loss in hot operating conditions, improving year-round energy yield.
    4. Positive power tolerance: guaranteed output at or above rated power ensures stronger first-year production estimates.
    5. Robust electrical characteristics: balanced Vmp / Imp values make string design straightforward and compatible with modern string and central inverters.

    Typical Applications

    • Residential rooftops aiming to maximize output with limited roof area
    • Commercial and industrial rooftop installations
    • Large ground-mounted and utility-scale PV farms where BOS savings matter
    • Hybrid systems paired with battery storage and inverters for backup or self-consumption

    Specification Table

    Parameter Value
    Model JAM66D46-710/LB
    Rated Maximum Power (Pmax) 710 W
    Open Circuit Voltage (Voc) 48.60 V
    Maximum Power Voltage (Vmp) 40.80 V
    Short Circuit Current (Isc) 18.51 A
    Maximum Power Current (Imp) 17.40 A
    Module Efficiency 22.9%
    Power Tolerance 0 ~ +3%
    Temperature Coefficients Isc: +0.045%/°C • Voc: −0.250%/°C • Pmax: −0.290%/°C
    STC Reference Irradiance 1000 W/m², cell temperature 25°C, AM1.5G

    Installation & Compatibility Notes

    • Verify inverter MPPT and Voc limits when designing strings — the module Voc (48.60 V) and system voltage influence string size.
    • BIFACIAL / rear-side gain (if applicable) depends on site albedo — higher reflectance (white gravel, concrete, snow) increases rear-side contribution.
    • Use appropriate mounting hardware and follow torque specs; consult the mechanical datasheet for wind and snow load ratings.
    • Consider temperature derating and local irradiance when modeling expected energy output.

    Why Choose JAM66D46-710?

    For projects that require high output per module and lower installed cost per watt, the JAM66D46-710/LB offers an excellent balance of high rated power, strong conversion efficiency and stable thermal performance. It is particularly effective for roof-constrained installations and large-scale arrays seeking BOS savings and higher energy yield.

    Note: Data above are measured under Standard Test Conditions (STC). Actual system production will vary with site irradiance, temperature, shading and system design. Always consult the full module datasheet and a qualified engineer for final system design and warranty details.

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