The 19th (2026) International Photovoltaic Power Generation and Smart Energy Conference & Exhibition (SNEC) grandly opens today at the National Exhibition and Convention Center (Shanghai), drawing global new energy industry attention to Shanghai once again. At this top-tier industry event, Jiangyin Jinghao New Energy, a subsidiary of Shanghai Geoharbour Construction Group Co., Ltd. (605598.SH), makes its stunning debut with landmark achievements. Its core flexible perovskite modules have successfully passed the highest-grade tests under the international standard IEC TS 63163:2021 issued by TÜV Rheinland of Germany, and the two sides have reached a strategic cooperation targeting space photovoltaic testing.

As the world’s first international specification dedicated to terrestrial photovoltaic modules for consumer products, IEC TS 63163:2021 is widely known as the industry’s "golden passport". Over months of progressive R&D breakthroughs, Jinghao New Energy advanced steadily from Category 1 to Category 3 and successfully passed all test items. This achievement verifies that its modules have reached world-class standards in mechanical durability, environmental adaptability and electrical safety.This certification not only delivers authoritative endorsement of Jinghao New Energy’s philosophy — "Make perovskite thinner, more flexible and more reliable" — but also underpins the company’s confident debut at this top-tier industry event. At its first SNEC appearance, Jinghao will fully showcase its complete certification progression roadmap to the whole sector. Having attained the highest Category 3 certification with robust technical strength, the company marks the formal entry of flexible perovskite modules into the top tier of international standard benchmarks.

Technical reliability always stands the test of extreme environments. As of May 2026, Jinghao New Energy has delivered 6 batches of aerospace-grade perovskite modules, realizing coordinated payload deployment across four satellites. The longest on-orbit powered operation has reached 15 months with stable performance maintained.
This in-orbit space verification not only serves as the highest proof of the team’s technical prowess, but also delivers rigorous reliability validation for Jinghao New Energy’s ground-based products. The company’s full compliance certification under IEC TS 63163 marks the perfect success of transferring aerospace-grade reliability to civilian products.
Under Jinghao New Energy’s development blueprint, photovoltaic products are far more than power-generating panels — they act as the energy foundation for space-air orbital computing networks.
Backed by profound expertise in commercial aerospace energy system solutions from its group affiliate Fuxin Xinkong, we are building an integrated system featuring deep fusion of energy, data and computing power. At SNEC 2026, we will unveil this coordinated space computing strategy for the first time: how flexible photovoltaic modules deliver efficient power supply for LEO satellites and near-space HAPS drones. Jinghao New Energy strives to become a pioneer of new productive forces providing Space-Air-Ground Integrated (SAGIN) solutions.

Leveraging over 70 global core patents, Jinghao New Energy transfers space-borne technologies to civilian ground scenarios and launches four flagship product lines: Prem, Invis, Aero and Dome, redefining the application boundaries of photovoltaics.

Prem · Micron-level Ultra-Thin Flexible Modules
Built on fully self-developed micron-level ultra-thin structure, the modules feature a thickness below 0.8 mm and a minimum bending radius of 1 mm. Their weight is merely 1/30 of crystalline silicon products. They can be seamlessly attached to any curved building surface to realize the concept of "Buildings as Power Stations".
Light transmittance adjustable from 30% to 70% with customizable colors. The products perfectly integrate power generation with architectural aesthetics and bring vitality to urban glass curtain walls.
Aero · Irradiation-Resistant Modules
Adopting lightweight design, the modules resist high-energy particle irradiation and withstand extreme alternating temperature environments. Tailored for space and near-space applications, they deliver an outstanding power-to-mass ratio and serve as the optimal energy solution for future LEO satellite constellations.
Dome · Low-Light Modules
Boasting excellent low-light power generation performance, they can generate power from indoor scattered light, enabling unlimited battery life for IoT devices and consumer electronics.









