H

Hitachi

Diversified tech conglomerate delivering digital solutions

Quality Control Intern

Summer 2027
No salary listed
Internship
Bachelor's
Batesburg-Leesville, SC, USA
In Person

About the job

Requirements
  • Strong communication and organizational skills.
  • Proficiency with Microsoft Office Suite, particularly Excel, PowerPoint, and Word.
  • Ability to analyze data and identify trends.
  • Detail-oriented with strong problem-solving skills.
  • Ability to work independently and within a team environment.
  • Current student at a four-year university with a major in Quality Management or Engineering, including Industrial, Mechanical, Manufacturing, or a related field.
  • Ability to work in both office and manufacturing environments.
  • Ability to stand, walk, and occasionally lift up to 25 pounds.
  • Ability to use personal protective equipment as required in production areas.
  • English proficiency.
Responsibilities
  • Assist with quality inspections and verification activities for incoming materials, in-process production, and finished products.
  • Support investigation of quality issues and customer complaints.
  • Collect, analyze, and report quality performance data and key metrics.
  • Maintain quality records, reports, and documentation in accordance with company procedures.
  • Participate in internal audits and process reviews.
  • Assist with corrective and preventive action activities.
  • Support root cause analysis using quality tools such as 5 Why, Fishbone Diagram, and Pareto Analysis.
  • Help monitor supplier quality performance and documentation.
  • Participate in continuous improvement projects focused on quality, efficiency, and waste reduction.
  • Support compliance with applicable quality standards, regulatory requirements, and company policies.
  • Perform other duties and special projects as assigned.
Desired Qualifications
  • Familiarity with Quality Management Systems.
  • Exposure to Lean Manufacturing or Six Sigma concepts.
  • Knowledge of statistical analysis and quality tools.
  • Experience with Power BI, Minitab, SAP, or other business systems.

About the company

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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Simplify Jobs

Simplify's Take

What believers are saying

  • September 2026 FANUC and Agile Robots partnerships accelerate Physical AI commercialization.
  • September 2026 Mississippi transformer factory adds 700-plus jobs and doubles U.S. capacity by 2029.
  • September 2026 SMRT achieved 14% traction-energy savings with Hitachi Rail's Green CBTC.

What critics are saying

  • Hitachi's home appliance spinout with Nojima closes by March 2027, shrinking consumer scale.
  • Clever Devices integration and OKI ATM restructuring add execution risk during 2026-2027.
  • If HMAX loses to Nvidia, Microsoft, or Siemens platforms, Hitachi's software thesis collapses.

What makes Hitachi unique

  • Hitachi’s HMAX fuses OT data, AI, and domain knowledge across factories and infrastructure.
  • Hitachi Energy and Hitachi Rail sell mission-critical systems with long-lived contracts and installed bases.
  • FY2025 revenue reached ¥10.6 trillion across 606 subsidiaries, enabling global cross-selling.

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Benefits

Flexible Work Hours

Growth & Insights and Company News

Headcount

6 month growth

↑ 0%

1 year growth

↓ -4%

2 year growth

↓ -4%
IT Business Today
Sep 30th, 2026
Hitachi, FANUC partner to commercialize physical AI.

Hitachi, FANUC partner to commercialize physical AI. Last updated: September 30, 2026 10:06 am By combining Hitachi's AI, which enables short-term learning, with FANUC's AI-powered industrial robots, ITBusinessToday will build an advanced physical AI that can be immediately applied to complex tasks. Through a joint demonstration project using Hitachi Group factories as a "customer-free" environment, the physical AI will be further trained and evolved, and joint deployment will begin in fiscal year 2027, leveraging the global customer bases of both companies. Hitachi, Ltd. have entered into a strategic partnership to jointly commercialize the implementation of physical AI. In this partnership, the two companies will promote joint demonstration and joint deployment of physical AI that combines Hitachi's AI technology, represented by "HMAX Industry," with FANUC's AI-powered industrial robots. In the demonstration, Hitachi Group factories will be used as "customer zero" to allow the AI to continuously learn the site-specific rules of production activities. This will enable the practical application of physical AI that can flexibly and accurately respond to on-site challenges, which cannot be achieved through imitation learning or simulation in a virtual space (digital twin) alone. Leveraging the implementation and operational know-how of physical AI gained through joint demonstrations, the two companies will deploy the technology to customers starting in fiscal year 2027, utilizing their global installed bases across a wide range of industrial sectors, including semiconductors, pharmaceuticals, healthcare, high-performance materials, automotive, logistics, food, shipbuilding, and agriculture. By significantly accelerating the automation of tasks that currently rely on the experience and manual labor of skilled workers, such as setup changes when supplying parts or changing production varieties, they will contribute to solving customer challenges such as labor shortages and skills transfer.

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Sep 30th, 2026
Hitachi High-Tech and ZEISS accelerate joint development framework for next-generation multi-beam inspection tools

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Sep 30th, 2026
Hitachi and FANUC partner to commercialize Physical AI for industrial robots.

Hitachi and FANUC partner to commercialize Physical AI for industrial robots. Hitachi, Ltd. and FANUC CORPORATION have announced a strategic partnership toward the joint commercialization of Physical AI implementation, combining Hitachi's AI technologies with FANUC's industrial robots equipped with AI capabilities. The collaboration centers on HMAX Industry, Hitachi's AI platform, integrated with FANUC's advanced robotics and control systems. Under this agreement, Hitachi Group factories will serve as "Customer Zero" for joint validation, where AI will continuously learn site-specific production rules. This approach enables practical Physical AI that responds accurately to complex manufacturing issues, going beyond what imitation learning or digital twin simulations can achieve alone. As an initial step, Hitachi will utilize its manufacturing facilities in the Ibaraki region as the primary validation site, targeting the establishment of deployable Physical AI technologies by fiscal 2027. The collaboration will focus on applications such as picking parts of various shapes and performing rapid changeovers when production items change. The partners will evaluate recognition accuracy, robot motion, takt time, and quality effectiveness, while also validating the combination of Hitachi's edge AI semiconductor with FANUC's industrial robots. Toshiaki Tokunaga, President and CEO of Hitachi, Ltd., stated: "Hitachi has been working to transform social infrastructure by combining AI with the domain knowledge it has accumulated at social infrastructure sites. Through this strategic partnership with FANUC, we aim to innovate manufacturing sites that support people's lives and industries through the use of Physical AI. By combining FANUC's world-class advanced industrial robotics technologies with Hitachi's manufacturing expertise, production-line engineering capabilities, and digital technologies, we will accelerate the implementation of Physical AI at manufacturing sites." Beginning in fiscal 2027, the companies plan to jointly deploy these validated solutions to global customers across wide-ranging industries, including semiconductors, pharmaceuticals, healthcare, advanced materials, automotive, logistics, food, shipbuilding, and agriculture. The initiative seeks to autonomize tasks dependent on skilled manual labor, addressing global labor shortages and facilitating knowledge transfer. Kenji Yamaguchi, President and CEO of FANUC CORPORATION, stated: "By positioning Hitachi's manufacturing facilities as 'Customer Zero,' we will increase the development and deployment of practical Physical AI solutions that can operate reliably in real production environments. We believe this will provide a pathway toward autonomizing many production processes that manufacturers around the world face today."

CE Hub
Sep 29th, 2026
Hitachi develops ai-based quality assessment and degradation diagnosis for recycled plastics, targeting cross-industry use of recycled materials under Cabinet Office SIP program.

Hitachi develops ai-based quality assessment and degradation diagnosis for recycled plastics, targeting cross-industry use of recycled materials under Cabinet Office SIP program. Circular Economy Hub Editorial Team, 29 September 2026 Hitachi, Ltd. announced on September 24, 2026 that it is participating in the Cabinet Office-led Strategic Innovation Promotion Program (SIP; a national program that funds cross-ministerial research from basic research through to social implementation) Phase 3 theme "Building a Circular Economy System," working to research and develop quality improvement methods and quality evaluation devices to expand the use of recycled materials. The company will develop technology that uses AI to analyze sensor data collected from recycled plastic production lines together with material analysis data, in order to assess variability in quality and the degree of degradation. SIP is a national project that promotes research and development spanning from basic research to social implementation, transcending the boundaries of government ministries and academic fields. This particular theme is being pursued over a five-year period from fiscal year 2023 through fiscal year 2027, and Hitachi will take part starting in fiscal year 2026, covering the final two years of the program. In Europe, the End-of-Life Vehicles (ELV) Regulation, which came into effect in August 2026, will require that at least 25% of the plastic used in new vehicle models receiving type approval from September 2036 onward be made from recycled materials. Meeting this kind of demand will require utilizing recycled materials not only from end-of-life vehicles but also from other sectors, such as home appliances and containers and packaging. At the same time, the quality of recycled plastics - including strength, flowability, and degree of degradation - tends to vary depending on the source of collection, usage history, and manufacturing process. To use recycled materials from different industries in high-quality applications such as automobiles and home appliances, it is essential to understand their quality and characteristics and select materials according to the intended use. However, the sampling-based inspection methods that have traditionally been mainstream make it difficult to fully capture quality variability across an entire lot. The research and development effort is built around three pillars. The first is a quality evaluation AI that predicts quality variability based on manufacturing conditions and in-line sensor data collected during the process of converting used plastic into pellet-form raw material (re-pelletizing). Because in-line sensors can take continuous measurements without stopping the production process, the aim is to comprehensively assess variability within a lot at the manufacturing stage itself. The second pillar is a degradation diagnosis AI that analyzes material analysis data and property evaluation data collected offline to identify the causes of degradation and quality variation. Diagnostic results are fed back into the inference AI to continuously refine the quality prediction model. The third pillar involves building a sorting mechanism that uses the outputs of both AIs to classify recycled materials by quality and characteristics, supporting appropriate use of materials for appropriate applications. Hitachi stated that it will draw on its expertise in materials informatics - which combines material data with AI to predict material properties - as well as its measurement and analysis technologies, data analysis capabilities, and physical AI, which understands and predicts the state of real-world objects from collected data. In terms of the implementation structure, Tohoku University and the National Institute for Materials Science (NIMS) will be responsible for conducting detailed analyses using facilities such as synchrotron radiation sources and running tests under various environmental conditions, in order to clarify why recycled plastics degrade and why quality varies. Hitachi will be responsible for developing measurement technology based on these findings, as well as an in-line measurement system that can assess the state of materials without stopping the production line. Building on this, NIMS and Hitachi will jointly develop technology to evaluate the quality of recycled materials and diagnose their degree of degradation, using tracer technology, a digital analysis platform, and physical AI. Aida Shokai Co., Ltd. will provide materials and equipment to support data collection and technology demonstration in real-world settings, verifying the effectiveness of the research outcomes. Going forward, Hitachi will proceed with developing and verifying the accuracy of the quality evaluation AI from fiscal year 2026 through fiscal year 2027, and from fiscal year 2027 onward will work on developing the degradation diagnosis AI using accumulated data. Initially, the effort will focus on recycled materials derived from in-factory manufacturing processes, where quality variability is low, with future consideration given to expanding application to recycled materials derived from used plastics. Hitachi noted that the technology combining in-line measurement with AI is also expected to find applications in the development of new materials and in scaling up mass production. Circular Economy Hub Editorial Team

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Sep 29th, 2026
Hitachi enters strategic co-creation partnership with Agile Robots to develop the intelligence for AI robotics

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