Full-Time
Posted on 6/13/2026
Diversified tech conglomerate delivering digital solutions
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Remote in UK
Remote
Remote within the United Kingdom.
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Hitachi is a global conglomerate that provides energy solutions, digital transformation services, home appliances, and infrastructure projects to governments, businesses, and consumers. Its offerings turn data into insights to optimize operations and support sustainable development, with Hitachi Energy focusing on renewable energy and grid solutions. It differentiates itself through an integrated portfolio across hardware, software, and services, backed by a long history and a focus on societal impact. Its goal is to build a sustainable society by using data and technology to improve energy efficiency, infrastructure resilience, and quality of life.
Company Size
10,001+
Company Stage
IPO
Headquarters
Tokyo, Japan
Founded
1910
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Hitachi's 240x AI claim and its own 30% target. Hitachi says AI agents hit 240x productivity in requirements definition - then set a 30% companywide goal. Here's how to read AI productivity claims. Hitachi announced an AI platform yesterday with two numbers in it, and the gap between them is the whole story. On July 24 the company unveiled its Agentic AI Integration Platform, claiming up to 240x productivity in requirements definition and roughly 200x from design through testing. In the same announcement, Hitachi set its actual corporate goal: 30% productivity improvement across system integration by fiscal 2027. Both figures are true. Only one is a forecast anybody is accountable for. What actually happened. The platform applies task-specific AI agents across the full system integration lifecycle - external environment analysis, planning, requirements definition, design, coding, testing, and operations. It combines Hitachi's own integration expertise with frontier models from Anthropic, Google Cloud, and OpenAI, and its distinguishing feature is a knowledge base Hitachi calls "enterprise context": customer-specific operating know-how and decision criteria, accumulated and updated as projects move through development and into operations. Target sectors are finance, public administration, energy, and railways - places with a lot of legacy code and a shrinking supply of engineers who understand it. Hitachi is unusually straight about the caveat, and the Japanese coverage carries it: the 200x and 240x results were measured under specific internal conditions, and effect varies with project scale and characteristics. That's a vendor telling you its own headline number is a ceiling from a controlled setting. So the honest read is that a company with world-class integration talent, three frontier model vendors, and a purpose-built agent platform expects a 30% productivity gain company-wide - and it needs 18 months to get there. Why it matters for your business. Every AI productivity number you will read this year comes in one of these two flavors, and telling them apart is a skill worth developing. The 240x kind measures one narrow step under favorable conditions - often a step that was slow because it was waiting on a human's calendar, not because it was hard. Agents are genuinely spectacular at collapsing wait states. The 30% kind measures the whole pipeline, which still contains review, approval, rework, integration testing, and the meeting where someone says the requirement was wrong. You are buying the 30%. Price accordingly. Practically: before you adopt an AI coding or workflow tool, measure your own baseline on your own work - cycle time from ticket opened to merged and deployed, plus rework rate. Then run the tool for a month and compare the same two numbers. Not tokens, not lines generated, not developer vibes. If a vendor's pilot doesn't produce a before-and-after on a metric you already track, it produced a demo. And note what Hitachi built alongside the agents: the enterprise context layer. The reason their platform is worth anything is the accumulated institutional knowledge feeding it - decision criteria, operating know-how, why the system works the way it does. That's the part you can't buy. It's also the part most small businesses have never written down anywhere except in one person's head. Start there and the agents get better on their own. Key takeaways * Hitachi's Agentic AI Integration Platform, announced July 24, claims up to 240x productivity in requirements definition and ~200x from design through testing * Those figures were measured under specific internal conditions and vary by project - Hitachi says so directly * The company's actual accountable target is 30% across all system integration processes by fiscal 2027 * Narrow-step multipliers mostly collapse wait states; whole-pipeline gains land in the double digits, not the hundreds * Measure cycle time and rework rate before and after any AI dev tool - a pilot without a before-and-after is a demo Trying to figure out what an AI tool is actually worth to you? Rush Commerce benchmark your current process first, then build against that number - so the gain is provable, not promotional. Model it with its ROI calculator or bring Rush Commerce your numbers. * #ai-productivity * #ai-coding * #ai-agents * #benchmarks * #software-development Tommy Rush - Founder, Rush Commerce Operator turned builder. 15+ years running operations - now shipping the systems businesses run on. More Get The Rush Report weekly - one email, zero fluff.
Hitachi and Intel have launched a silicon quantum computing project. Hitachi said on Thursday it has launched a government-backed research project with Intel K.K. and Japan's National Institute of Advanced Industrial Science and Technology (AIST) to develop silicon-based quantum computing technologies, as the country seeks to build domestic capabilities in next-generation computing. The project, backed by Japan's New Energy and Industrial Technology Development Organization (NEDO), will run through March 2029 and focus on technologies needed to manufacture, package and operate large-scale silicon quantum computers. The initiative expands a strategic collaboration announced in June between Hitachi and Intel and aims to move silicon quantum computing from laboratory research toward industrial-scale manufacturing. The partners will develop 100-qubit silicon quantum chip designs, manufacturing toolkits, three-dimensional integration technologies for future 1,000-qubit systems and a cloud platform that will allow researchers remote access to experimental quantum hardware. Hitachi said it plans to launch an initial cloud service in fiscal 2027, demonstrate a prototype 100-qubit fault-tolerant quantum computing system using quantum error-correcting codes in fiscal 2028 and reach a 1,000-qubit prototype milestone by fiscal 2030. The effort comes as governments and technology companies race to develop practical quantum computers capable of solving problems beyond the reach of today's conventional systems. Silicon-based quantum computers have attracted interest because they could be manufactured using processes already common in the semiconductor industry. Shigetoshi Samejima, Hitachi's chief technology officer, said the technology could help address growing computing demands driven by artificial intelligence while tackling problems beyond the capabilities of conventional computers. "With the advancement of AI, demand for computing that supports society and industry is expanding rapidly. At the same time, challenges are becoming more apparent, including rising power consumption in computing infrastructure such as data centers, as well as optimization issues in drug discovery, materials development, energy systems, logistics, and supply chains that are difficult to address with conventional computing alone," Samejima said. "Hitachi positions quantum computers as a strategic technology that can break through the limits of computation itself and support future social infrastructure and industrial systems." "By bringing together the collective knowledge of industry, government, and academia around the world, Hitachi aims to contribute to the early realization of FTQC (fault-tolerant quantum computing)." Makoto Ohno, president of Intel K.K., said the collaboration combines Intel's semiconductor expertise with Hitachi's quantum research. "Quantum computing holds tremendous promise to help solve scientific and industrial challenges that are beyond the reach of classical computing. Realizing that promise will require chips, manufacturing processes and system technologies designed for an entirely new model of computing," Ohno said. "Through this collaboration, Intel and Hitachi are bringing together Intel's advanced semiconductor process and design expertise with Hitachi's quantum R&D capabilities to help establish the foundational chip design, manufacturing and packaging technologies needed to move silicon quantum computing from research demonstration toward scalable industrial application." Masahiro Horibe, deputy director at AIST's Global Research and Development Center for Business by Quantum-AI Technology (G-QuAT), said the institute would provide cloud-based experimental environments for researchers. "G-QuAT, AIST is equipped with evaluation capabilities for quantum devices and a demonstration environment for a fusion computing platform combining quantum computers and supercomputers," Horibe said. "We believe that this new silicon quantum computing initiative at G-QuAT, AIST will accelerate the formation and expansion of the ecosystem, and we will continue to contribute to market formation through quantum technology." Stay ahead of the stories shaping its world. Subscribe to Impact Newswire for timely, curated insights on global tech, business, and innovation all in one place. Dive deeper into the future with the Cause Effect 4.0 Podcast, where Impact Newswire explore the ideas, trends, and technologies driving the global AI conversation. Got a story to share? Pitch it to Impact Newswire at [email protected] and reach the right audience worldwide Faustine Ngila is the AI Editor at Impact Newswire, based in Nairobi, Kenya. He is an award-winning journalist specializing in artificial intelligence, blockchain, and emerging technologies. He previously worked as a global technology reporter at Quartz in New York and Digital Frontier in London, where he covered innovation, startups, and the global digital economy. With years of experience reporting on cutting-edge technologies, Faustine focuses on AI developments, industry trends, and the impact of technology on society. Loading...
Hitachi launches R&D on silicon quantum computers in collaboration with Intel K.K. and AIST to accelerate the shift from academic demonstration to industrial application. Innovation & R&D, Digital & AI, Financial & Public Sector, Energy, Manufacturing & Industry, Healthcare
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