

Hi-MO X10 Scientist Series Solar Panels
The Hi-MO X10 Scientist Series Solar Panels are a cutting-edge photovoltaic solution designed for high efficiency, reliability, and economic returns in distributed solar applications.
Advanced HPBC 2.0 Technology
Utilizes Hybrid Passivated Back Contact (HPBC 2.0) cells, achieving a record-breaking 24.8% module efficiency and 670W maximum power output, surpassing mainstream TOPCon modules by over 30W.
Enhanced double-sided composite passivation reduces current loss and improves energy conversion under diverse conditions.
Optimized Performance in Shading
Proprietary bypass diode structure minimizes power loss by >70% during partial shading and reduces hotspot temperatures by 28%, ensuring safer operation.
Durable and Low-Degradation Design
N-type silicon wafers enhance mechanical strength and reduce defects, contributing to long-term stability.
30-year power warranty with only 1% first-year degradation and 0.35% annual linear decline, outperforming conventional modules.
Economic Advantages
Delivers 9.1% higher lifetime profit over 25 years compared to TOPCon modules, with a 6.2% IRR improvement and 0.2-year shorter payback period.
Aesthetic Integration
Grid-free front surface and simplified back-side design ensure seamless architectural compatibility for residential and commercial use.
Electrical Performance Parameters of Hi-MO X10 Scientist Series Solar Panel Sub-Models Under Two Testing Conditions: STC (Standard Test Conditions) and NOCT (Nominal Operating Cell Temperature).
Version LR7-54HVH
LR7-54HVH-495M
STCNOCT- Maximum power (Pmax/W):495377
- Open-circuit voltage (Voc/V):40.6438.62
- Short circuit current (Isc/A):15.4312.40
- Peak power voltage (Vmp/V):33.6231.95
- Peak power current (Imp/A):14.7311.81
- Module efficiency (%):24.3
LR7-54HVH-500M
STCNOCT- Maximum power (Pmax/W):500381
- Open-circuit voltage (Voc/V):40.7538.72
- Short circuit current (Isc/A):15.5312.48
- Peak power voltage (Vmp/V):33.7332.06
- Peak power current (Imp/A):14.8311.89
- Module efficiency (%):24.5
LR7-54HVH-505M
STCNOCT- Maximum power (Pmax/W):505384
- Open-circuit voltage (Voc/V):40.8538.82
- Short circuit current (Isc/A):15.6212.55
- Peak power voltage (Vmp/V):33.8432.16
- Peak power current (Imp/A):14.9311.96
- Module efficiency (%):24.7
Mechanical Parameters
- Layout: 108 (6×18)
- Junction box: Split junction box, IP68, 3 diodes
- Weight: 21.6kg
- Size: 1800×1134×30mm
- Packaging: 36 pcs./pallet; 216 pcs./20GP; 864 pcs./40HC;

Version LR7-72HVH
LR7-72HVH-655M
STCNOCT- Maximum power (Pmax/W):655499
- Open-circuit voltage (Voc/V):54.0051.32
- Short circuit current (Isc/A):15.3712.34
- Peak power voltage (Vmp/V):44.6642.44
- Peak power current (Imp/A):14.6711.76
- Module efficiency (%):24.2
LR7-72HVH-660M
STCNOCT- Maximum power (Pmax/W):660502
- Open-circuit voltage (Voc/V):54.1051.42
- Short circuit current (Isc/A):15.4512.41
- Peak power voltage (Vmp/V):44.7642.54
- Peak power current (Imp/A):14.7511.82
- Module efficiency (%):24.4
LR7-72HVH-665M
STCNOCT- Maximum power (Pmax/W):665506
- Open-circuit voltage (Voc/V):54.2051.51
- Short circuit current (Isc/A):15.5212.47
- Peak power voltage (Vmp/V):44.8642.63
- Peak power current (Imp/A):14.8311.88
- Module efficiency (%):24.6
LR7-72HVH-670M
STCNOCT- Maximum power (Pmax/W):670510
- Open-circuit voltage (Voc/V):54.3051.61
- Short circuit current (Isc/A):15.6012.53
- Peak power voltage (Vmp/V):44.9642.73
- Peak power current (Imp/A):14.9111.94
- Module efficiency (%):24.8
Mechanical Parameters
- Layout: 144 (6×24)
- Junction box: Split junction box, IP68, 3 diodes
- Weight: 28.5kg
- Size: 2382×1134×30mm
- Packaging: 36 pcs./pallet; 144 pcs./20GP; 720 pcs./40HC;

Load Capacity
- Maximum static load on the front (such as snow and wind): 5400Pa
- Maximum static load on the back (such as wind): 2400Pa
- Hail test: Diameter 25 mm, impact speed 23 m/s
Temperature Coefficient (STC test)
- Temperature coefficient of short circuit current (Isc): +0.050%/℃
- Temperature coefficient of open circuit voltage (Voc): -0.200%/℃
- Temperature coefficient of peak power (Pmax): -0.260%/℃