View Future GrowthSunHydrogen 過去の業績過去 基準チェック /06SunHydrogenは6.8%の年平均成長率で業績を伸ばしているが、Semiconductor業界はgrowingで5%毎年増加している。売上は成長しており、年平均98.2%の割合である。主要情報6.80%収益成長率26.44%EPS成長率Semiconductor 業界の成長30.55%収益成長率98.17%株主資本利益率-16.74%ネット・マージン-445,046.16%前回の決算情報31 Mar 2026最近の業績更新更新なしすべての更新を表示Recent updatesお知らせ • Jul 15SunHydrogen Installs Upgraded 1.92 M² Hydrogen Modules At Austin Pilot DemonstrationSunHydrogen announced the installation of upgraded 1.92 m² hydrogen modules at the Company's pilot demonstration system at the University of Texas at Austin's Hydrogen ProtoHub. The newly installed modules incorporate multiple engineering improvements identified during initial outdoor operation, including revised reactor housing designed for inclined operation, improved catalyst integration, enhanced protective coatings, and expanded instrumentation. The upgrades represent the next phase in SunHydrogen's staged pilot program, which is designed to validate module performance while advancing manufacturability and system reliability under real-world operating conditions. The revised reactor housings are designed for operation at an approximately 30° fixed incline, close to Austin's latitude, providing a practical solar-field configuration for evaluating year-round sunlight capture and outdoor performance. The inclined configuration is also designed to support future improvements in gas collection and separation within the reactor housing. Future commercial installations may employ different mounting angles depending on geographic location, site constraints, structural design, and project requirements. Operating upgraded modules alongside earlier-generation units allows SunHydrogen to directly compare performance, durability, and operating characteristics under identical outdoor conditions. The resulting data will guide future module design, manufacturing methods, and system architecture. Temperature remains a key engineering focus of the Austin pilot. While laboratory testing allows temperature and illumination to be tightly controlled, outdoor operation exposes the system to continuously changing sunlight, ambient conditions, and wind throughout the day and across seasons. These temperature variations influence multiple parts of the reactor differently. Higher temperatures generally reduce semiconductor voltage while often improving catalyst reaction kinetics. The objective is therefore not simply to maximize or minimize operating temperature, but rather to enlarge the practical operating window in which the semiconductor absorber, catalysts, protective coatings, gas-management system, and balance-of-system components operate together with maximum efficiency, durability, and reliability. Data collected from the Austin pilot will be used to optimize future reactor designs for long-term outdoor deployment. SunHydrogen has also expanded the instrumentation and monitoring capabilities of the Austin pilot. Enhanced sensing and data-acquisition systems provide greater visibility into reactor performance, including gas composition monitoring to assess hydrogen output under real-world conditions, and enable higher-confidence analysis of long-term outdoor operation. Separately, additional upgraded semiconductor modules produced through SunHydrogen's manufacturing-development program with CTF Solar have arrived at the Company's Iowa facilities. These modules will be used to evaluate manufacturing reproducibility, production yield, and field performance across a larger population of manufactured modules. This evaluation includes the uniformity and repeatability of protective coatings across production runs. The work is intended to demonstrate that recent design improvements can be produced consistently and translated into scalable manufacturing processes. SunHydrogen will continue collecting long-term operating data from the Austin pilot throughout the coming months. Insights from the program will guide the next generation of module design, manufacturing processes, system integration and architecture as the Company advances toward larger-scale field demonstrations and commercial deployment.お知らせ • May 29SunHydrogen Installs Improved Hydrogen Modules At Austin Pilot with Early Field Performance Consistent with Lab-Validated ModulesSunHydrogen, Inc. announced the successful installation of hydrogen modules built with its latest design improvements at its pilot demonstration system at the University of Texas at Austin's Hydrogen ProtoHub. Hydrogen modules measuring 1.92 m² (20.7 ft²), built with SunHydrogen's latest catalyst integration and coating improvements, installed at UT Austin's Hydrogen ProtoHub, demonstrate efficiencies consistent with the Company's lab-validated 100 cm² and 1,200 cm² modules. A larger population of modules with improved absorber layouts now manufactured for upcoming reproducibility and yield testing. During a recent on-site visit to the Austin pilot, the SunHydrogen team expanded the installation with a new set of hydrogen modules, including modules incorporating advances in catalyst integration and coating strategies identified during the pilot's initial commissioning. These improvements were developed specifically to enhance module performance, effectiveness, and consistency as the Company advances toward commercial-scale production. Most significantly, the 1.92 m² modules (16 times larger than lab-scale) built with these latest improvements demonstrated efficiencies consistent with the 100 cm² and 1,200 cm² modules that SunHydrogen has previously validated and tested at its own laboratories and at partner facilities. This alignment between real-world field performance and lab-validated benchmarks is an important indicator that the Company's process improvements translate from controlled laboratory conditions to outdoor operation at scale. Separately, the Company, together with its partner CTF Solar GmbH, has manufactured more than 100 modules incorporating an improved absorber layout that more effectively converts incoming sunlight into usable power, increasing hydrogen production. The catalyst integration and coating strategies refined during the recent Austin installation will subsequently be applied to these modules. Over the coming months, the Company will test this larger population of modules to evaluate reproducibility, manufacturing yield, and performance predictability, critical requirements for scaling to commercial production volumes. Additional improved modules will also be installed at the Austin pilot as part of this effort. To support continued evaluation, the Austin pilot has been extended for an additional six months. The extension will allow SunHydrogen to gather additional real-world operating data on the improved modules and further refine its technology and manufacturing processes.収支内訳SunHydrogen の稼ぎ方とお金の使い方。LTMベースの直近の報告された収益に基づく。収益と収入の歴史MUN:1H3 収益、費用、利益 ( )USD Millions日付収益収益G+A経費研究開発費31 Mar 260-62431 Dec 250-63430 Sep 250-83430 Jun 250-82331 Mar 250-102331 Dec 240-122330 Sep 240-112330 Jun 240-102331 Mar 240-124331 Dec 230-63330 Sep 23016430 Jun 23016331 Mar 230175331 Dec 220215330 Sep 220413230 Jun 220903231 Mar 2201453131 Dec 2101192230 Sep 210-474230 Jun 210-974231 Mar 210-2163231 Dec 200-1963130 Sep 200-581130 Jun 200-581131 Mar 200-21131 Dec 19012130 Sep 19002130 Jun 19041131 Mar 19061031 Dec 180-101030 Sep 180-71030 Jun 180-100031 Mar 180-160031 Dec 17000030 Sep 17030030 Jun 17020031 Mar 17020031 Dec 16030030 Sep 16030030 Jun 16060031 Mar 16040031 Dec 150-100質の高い収益: 1H3は現在利益が出ていません。利益率の向上: 1H3は現在利益が出ていません。フリー・キャッシュフローと収益の比較過去の収益成長分析収益動向: 1H3は利益を出していないが、過去 5 年間で年間6.8%の割合で損失を削減してきた。成長の加速: 1H3の過去 1 年間の収益成長を 5 年間の平均と比較することはできません。現在は利益が出ていないためです。収益対業界: 1H3は利益が出ていないため、過去 1 年間の収益成長をSemiconductor業界 ( -32.5% ) と比較することは困難です。株主資本利益率高いROE: 1H3は現在利益が出ていないため、自己資本利益率 ( -16.74% ) はマイナスです。総資産利益率使用総資本利益率過去の好業績企業の発掘7D1Y7D1Y7D1YSemiconductors 、過去の業績が好調な企業。View Financial Health企業分析と財務データの現状データ最終更新日(UTC時間)企業分析2026/07/31 13:59終値2026/07/31 00:00収益2026/03/31年間収益2025/06/30データソース企業分析に使用したデータはS&P Global Market Intelligence LLC のものです。本レポートを作成するための分析モデルでは、以下のデータを使用しています。データは正規化されているため、ソースが利用可能になるまでに時間がかかる場合があります。パッケージデータタイムフレーム米国ソース例会社財務10年損益計算書キャッシュ・フロー計算書貸借対照表SECフォーム10-KSECフォーム10-Qアナリストのコンセンサス予想+プラス3年予想財務アナリストの目標株価アナリストリサーチレポートBlue Matrix市場価格30年株価配当、分割、措置ICEマーケットデータSECフォームS-1所有権10年トップ株主インサイダー取引SECフォーム4SECフォーム13Dマネジメント10年リーダーシップ・チーム取締役会SECフォーム10-KSECフォームDEF 14A主な進展10年会社からのお知らせSECフォーム8-K* 米国証券を対象とした例であり、非米国証券については、同等の規制書式および情報源を使用。特に断りのない限り、すべての財務データは1年ごとの期間に基づいていますが、四半期ごとに更新されます。これは、TTM(Trailing Twelve Month)またはLTM(Last Twelve Month)データとして知られています。詳細はこちら。分析モデルとスノーフレークこのレポートを生成するために使用した分析モデルの詳細は、当社のGitHubページでご覧いただけます。また、レポートの活用方法に関するガイドやYouTubeのチュートリアルも用意しています。シンプリー・ウォールストリート分析モデルを設計・構築した世界トップクラスのチームについてご紹介します。業界およびセクターの指標私たちの業界とセクションの指標は、Simply Wall Stによって6時間ごとに計算されます。アナリスト筋SunHydrogen, Inc. 0 これらのアナリストのうち、弊社レポートのインプットとして使用した売上高または利益の予想を提出したのは、 。アナリストの投稿は一日中更新されます。0
お知らせ • Jul 15SunHydrogen Installs Upgraded 1.92 M² Hydrogen Modules At Austin Pilot DemonstrationSunHydrogen announced the installation of upgraded 1.92 m² hydrogen modules at the Company's pilot demonstration system at the University of Texas at Austin's Hydrogen ProtoHub. The newly installed modules incorporate multiple engineering improvements identified during initial outdoor operation, including revised reactor housing designed for inclined operation, improved catalyst integration, enhanced protective coatings, and expanded instrumentation. The upgrades represent the next phase in SunHydrogen's staged pilot program, which is designed to validate module performance while advancing manufacturability and system reliability under real-world operating conditions. The revised reactor housings are designed for operation at an approximately 30° fixed incline, close to Austin's latitude, providing a practical solar-field configuration for evaluating year-round sunlight capture and outdoor performance. The inclined configuration is also designed to support future improvements in gas collection and separation within the reactor housing. Future commercial installations may employ different mounting angles depending on geographic location, site constraints, structural design, and project requirements. Operating upgraded modules alongside earlier-generation units allows SunHydrogen to directly compare performance, durability, and operating characteristics under identical outdoor conditions. The resulting data will guide future module design, manufacturing methods, and system architecture. Temperature remains a key engineering focus of the Austin pilot. While laboratory testing allows temperature and illumination to be tightly controlled, outdoor operation exposes the system to continuously changing sunlight, ambient conditions, and wind throughout the day and across seasons. These temperature variations influence multiple parts of the reactor differently. Higher temperatures generally reduce semiconductor voltage while often improving catalyst reaction kinetics. The objective is therefore not simply to maximize or minimize operating temperature, but rather to enlarge the practical operating window in which the semiconductor absorber, catalysts, protective coatings, gas-management system, and balance-of-system components operate together with maximum efficiency, durability, and reliability. Data collected from the Austin pilot will be used to optimize future reactor designs for long-term outdoor deployment. SunHydrogen has also expanded the instrumentation and monitoring capabilities of the Austin pilot. Enhanced sensing and data-acquisition systems provide greater visibility into reactor performance, including gas composition monitoring to assess hydrogen output under real-world conditions, and enable higher-confidence analysis of long-term outdoor operation. Separately, additional upgraded semiconductor modules produced through SunHydrogen's manufacturing-development program with CTF Solar have arrived at the Company's Iowa facilities. These modules will be used to evaluate manufacturing reproducibility, production yield, and field performance across a larger population of manufactured modules. This evaluation includes the uniformity and repeatability of protective coatings across production runs. The work is intended to demonstrate that recent design improvements can be produced consistently and translated into scalable manufacturing processes. SunHydrogen will continue collecting long-term operating data from the Austin pilot throughout the coming months. Insights from the program will guide the next generation of module design, manufacturing processes, system integration and architecture as the Company advances toward larger-scale field demonstrations and commercial deployment.
お知らせ • May 29SunHydrogen Installs Improved Hydrogen Modules At Austin Pilot with Early Field Performance Consistent with Lab-Validated ModulesSunHydrogen, Inc. announced the successful installation of hydrogen modules built with its latest design improvements at its pilot demonstration system at the University of Texas at Austin's Hydrogen ProtoHub. Hydrogen modules measuring 1.92 m² (20.7 ft²), built with SunHydrogen's latest catalyst integration and coating improvements, installed at UT Austin's Hydrogen ProtoHub, demonstrate efficiencies consistent with the Company's lab-validated 100 cm² and 1,200 cm² modules. A larger population of modules with improved absorber layouts now manufactured for upcoming reproducibility and yield testing. During a recent on-site visit to the Austin pilot, the SunHydrogen team expanded the installation with a new set of hydrogen modules, including modules incorporating advances in catalyst integration and coating strategies identified during the pilot's initial commissioning. These improvements were developed specifically to enhance module performance, effectiveness, and consistency as the Company advances toward commercial-scale production. Most significantly, the 1.92 m² modules (16 times larger than lab-scale) built with these latest improvements demonstrated efficiencies consistent with the 100 cm² and 1,200 cm² modules that SunHydrogen has previously validated and tested at its own laboratories and at partner facilities. This alignment between real-world field performance and lab-validated benchmarks is an important indicator that the Company's process improvements translate from controlled laboratory conditions to outdoor operation at scale. Separately, the Company, together with its partner CTF Solar GmbH, has manufactured more than 100 modules incorporating an improved absorber layout that more effectively converts incoming sunlight into usable power, increasing hydrogen production. The catalyst integration and coating strategies refined during the recent Austin installation will subsequently be applied to these modules. Over the coming months, the Company will test this larger population of modules to evaluate reproducibility, manufacturing yield, and performance predictability, critical requirements for scaling to commercial production volumes. Additional improved modules will also be installed at the Austin pilot as part of this effort. To support continued evaluation, the Austin pilot has been extended for an additional six months. The extension will allow SunHydrogen to gather additional real-world operating data on the improved modules and further refine its technology and manufacturing processes.