What We Mean by the gNexth Safe, Secure, and Comfortable Society
The future envisioned by Hitachi Industrial Control Solutions is one in which technology and people are in complete harmony\creating a society where everyone can live with joy and peace of mind.
As cutting-edge technologies such as AI, devices, sensors, and communications continue to evolve, we can expect a world where even human and object movements, human thoughts, and psychological states\still not fully digitized today\will become digital data.
In that world, people working on the front line will no longer have to adapt to machines. Instead, with support from machines, they will be able to work safely while reducing psychological burdens. Human behavior will be assessed based on information closer to the five senses\such as video\enabling the expansion of truly gsecureh environments beyond safety alone. Furthermore, autonomous on-demand mobility services will allow people, including older adults, to move freely and comfortably without hesitation or concern for others.
Hitachi Industry & Control Solutions is committed to making this gnexth safe, secure, and comfortable society a reality.
Our systems engineers are broadly divided into OT, IT, and Embedded Systems.
EOT (Operational Technology): Working in a variety of industries, they understand our customers' businesses and plan, design, and develop control systems that optimize the operation of machinery and equipment.
EIT (Information Technology): We plan, design and develop systems that solve our customers' management problems. We also perform engineering work such as data analysis using advanced information processing technology. Ultimately, we aim to become leaders in bringing systems and solutions together.
EEmbedded Systems: We support product development by proposing and delivering advanced technologies and functions required for our customersf products, and by designing, implementing, and evaluating embedded hardware and software.
The role of design and development is to incorporate evolving technologies into products and deliver new value to society. We take charge of everything from planning and developing equipment and systems to commercialization, responding swiftly to constantly changing market trends and societal needs. Across the Industrial Solutions, Social Infrastructure & Public Solutions, and Connected Engineering fields, we design and develop hardware and software for systems and products, as well as plant facilities\covering design, analytical simulations, and instrumentation and control design.
In addition to product quality assurance (inspection and pass/fail judgment) in each business, we are involved in design planning even before receiving an order, and conduct reviews and inspections from the customer's perspective in the entire development process. "Quality" is defined as "product perfection and service level that satisfies the customer," and functionality, reliability, maintainability, usability, etc. are checked from multiple perspectives. We will also create measures and mechanisms to continue to achieve high quality that meets the expectations of our customers.
You will be responsible for front-end customer engagement and/or system development for solutions in the power industry. This role contributes to the stable supply of electricity that underpins critical social infrastructure, and involves end-to-end work covering requirements definition, development, and testing.
You will design and develop monitoring and control systems that optimize the operation of water and wastewater infrastructure that supports everyday life. At municipal water and wastewater plants, you will create control software and design internal specifications to ensure optimal facility operation, and for electrical equipment, you will be involved in everything from control panel hardware design to the overall monitoring and control system design.
You will be responsible for end-to-end system development of monitoring and control systems primarily for railway operators, covering the full lifecycle from requirements definition, basic design, and detailed design through manufacturing, testing, and on-site commissioning.
EVisual Information System
EEquipment Status Monitoring System
You will be responsible for developing, operating, and maintaining core platform systems for railway operators.
EAsset & Maintenance Management / Train Operation Management Systems (Shinkansen / Conventional Lines)
You will also handle application development and infrastructure design/build for passenger-facing systems.
ETicketing terminals (e.g., IC) / Point Management Systems
You will design and develop monitoring and control systems for highway facilities such as lighting and information display boards, ensuring they can be used safely and reliably. You will handle the entire process end-to-end\from proposing systems to customers through upstream and detailed design, manufacturing, and on-site commissioning (delivery).
You will be involved in the design and development of information systems for public-sector and disaster prevention applications, as well as for commercial customers. You will work across a wide range of phases\from requirements definition through delivery to end users\and provide total disaster prevention solutions.
You will be engaged in end-to-end system development for information systems that support social infrastructure provided by government agencies and telecommunications carriers, covering the full lifecycle including requirements definition, basic and detailed design, development, testing, data/system migration, on-site commissioning, operation and maintenance, and project management support.
You will be responsible for end-to-end design and development of systems for financial institutions, covering the full scope of work including development proposals, design, development, testing, and maintenance.
You will be responsible for front-end engagement and/or development for defense systems. This role covers a wide range of work across the entire lifecycle\from development proposals, design, development, testing, and implementation to system build-out and maintenance\providing total solutions that contribute to critical social infrastructure.
You will be responsible for end-to-end system development for security systems that leverage video surveillance and analytics technologies, as well as automated detection systems for incidents and anomalies. This includes the full development lifecycle: requirements definition, basic design, detailed design, implementation, testing, and on-site commissioning/adjustment.
EPropose and design specifications aligned with each customerfs operations, and implement the optimal system.
(Core enterprise systems such as ERP\mainly SAP\logistics, AI, and information systems)
EDevelop, implement, and maintain our proprietary software packages.
(Facility and asset management system gSmartFAM,h logistics solutions gNEUPLANETh series, and multi-contact center solution gTELEPHONYMASTERh)
Develop and implement manufacturing execution systems (MES) and equipment control/monitoring systems that support safe and reliable production at manufacturing plants and production facilities across industries such as pharmaceuticals, automotive, steel, processing and assembly, food, gas, chemicals, and airports.
(Manufacturing management system for the pharmaceutical and medical device industry gHITPHAMS,h data integrity platform gDI-PF,h MES for food/chemical/assembly manufacturing gProductNEO,h automotive process management system gNXAUTO,h production scheduler gAsprova(R) APS,h and integrated monitoring and control system gIntegrate SCADAh)
Develop and implement manufacturing execution systems (MES) that support safe and reliable production at manufacturing plants across industries such as pharmaceuticals, automotive, and processing/assembly.
(Manufacturing management system for the pharmaceutical and medical device industry gHITPHAMS,h quality event management system for the pharmaceutical industry gTrackWise,h GMP document management system gHITQUAA,h validation lifecycle management system giVal,h MES for processing and assembly manufacturing gMONOSOLEIL,h automotive process management system gNXAUTO,h and production scheduler gAsprova® APSh)
Design and develop embedded software for medical information systems installed in medical products.
E Medical information systems, primarily for medical imaging systems
E Systems that support healthcare professionals using AI
Design and develop embedded software, IT software, and cloud systems used in automotive and industrial equipment.
E Upstream design for in-vehicle information (automotive cockpit) systems
E Design and development of vehicle control systems (MBD-based application development)
E Sensing systems and connected systems (automotive, construction machinery, etc.)
E Embedded OS/platform development, cybersecurity measures, and video surveillance systems
E Manufacturing DX (including semiconductor manufacturing)
E AI agents (including the use of generative AI)
Design and develop embedded software installed in automotive and industrial equipment.
E In-vehicle information (automotive cockpit) systems and sensing systems
E Autonomous control systems (automotive, construction machinery, etc.) and embedded OS/platforms
E Cybersecurity functions, semiconductor manufacturing equipment, railway systems, medical devices, medical information systems, AUTOSAR, and industrial equipment
Design and evaluate internal semiconductor logic, including LSI/SoC.
E Logic design for semiconductor manufacturers
E Test design for semiconductor manufacturers
E FPGA design for industrial equipment
Design and develop hardware for automobiles and industrial equipment.
E In-vehicle information systems (automotive cockpit) and vehicle control systems (electrification functions)
E Functional safety & security, integrated analysis, and power electronics platforms
E Digital circuits and wireless solutions
Design specifications, develop circuits, and perform evaluation for embedded devices installed in automobiles, as well as for power and energy systems.
E Hardware development for railway systems
E Design of control devices for automobiles
E Power systems
Provide consulting for business IT systems (software selection and business application consulting), and handle end-to-end system development (requirements definition, basic design, detailed design, development, testing, and on-site adjustments).
Handle end-to-end software development (planning, basic design, detailed design, development, and testing) for solutions such as CAD, CAE, casting packages, and school lunch management systems, as well as system development using these solutions (requirements definition, basic design, detailed design, development, testing, and on-site adjustments).
Develop software for control and monitoring systems that support the safe and stable operation of power generation plants (nuclear and thermal). Responsibilities cover the full lifecycle from functional design and detailed design to implementation, testing, and on-site commissioning.
Perform overall system design of monitoring and control systems for power generation plants and power transmission/substation facilities based on customer requirements, as well as electrical circuit design for control equipment. You will also be responsible for a wide range of design work related to control panel manufacturing\from enclosure/structural design to component layout and wiring design.
You will be responsible for end-to-end design, development, deployment, and maintenance of image inspection systems for pharmaceuticals and beverages. These systems use imaging and AI technologies to inspect for foreign matter in containers, detect scratches or defects, and verify markings on beverage cans.
You will evaluate the safety and integrity of power plant facilities through design work and a range of simulation analyses (including safety analysis and seismic analysis, among others). You will also design systems to measure and control plant data to support safe and reliable operation.
You will inspect documents and programs related to information and control systems, and evaluate test results for systems such as manufacturing execution systems (MES) for industrial plants, monitoring and control systems for plant facilities, water and sewage monitoring and control systems for the social and public sector, and monitoring and control systems for road facilities. You will also conduct operational checks and trial runs after on-site delivery.
In the industrial fields of pharmaceuticals, food, automobiles, and steel plants, we support the development of high-efficiency, high-quality plants through the development of production control systems, in-house package product development, management system development, industrial information system construction, AI, big data analysis, and more.

We provide control and information systems for the social and public sectors, including control and information systems for public and social fields such as water supply and sanitation, transportation, and electricity, as well as plant engineering that performs structural design.

We offer a wide range of advanced technologies for both consumer and industrial use, including in-vehicle information systems and vehicle control for automated driving, image processing, camera functions and circuit design, robotics, hardware products using image technology, and services that visualize factory conditions by making them IT-compatible and visual.

In addition to being responsible for quality assurance of products and services in all three business fields, we also conduct project management and project manager training, and work to maintain and improve our products and services from the design stage to shipment.
OT is the acronym for Operational Technology, which is the "control and operations technology" used to optimize the operation of equipment and systems in industries such as manufacturing and chemical plants, as well as social infrastructure such as railways and water and wastewater systems.
We will contribute to the creation of new value for our customers by combining "digital technology" such as AI-based image processing and data analysis with "OT technology" that Hitachi Industrial Control Solutions has cultivated over many years, and by DX-izing operations to suit the field.
We aim to be the only company in the "OT x digital" Division.

"PJ Jibun 2.0" is an initiative by the company to support each employee grow toward becoming the gperson they want to be,h with a clear awareness of their career goals and dreams, and to create a workplace where they can feel excited and motivated about their work.
You can freely choose from a wide range of learning programs (over 14,000 courses)\including Study Sapuri*, information processing exam preparation courses, and audiobooks\based on your career aspirations and learn proactively.
*Study Sapuri is a registered trademark of Recruit Co., Ltd.
We share career interviews with employees, as well as insights and messages from specialist engineers and colleagues who have obtained various certifications, to provide helpful tips for thinking about your own career.
To help broaden perspectives, we provide information on lectures and networking events focused on new technologies and skills.

Information on how to apply and the selection process is available on the gMynavi 2027h website and on the gEmployment Informationh page of our company website.
Even for open applications, we conduct recruitment by job type, so please select one of the job types and apply.
yJob typeszGeneral positions (technical) (no restrictions on academic background, some positions are only for science majors): system engineer/design and development/quality assurance
General career track (sales and administrative) (no distinction between arts and sciences): sales/management support
ŸThe company plans to conduct a document screening (entry sheet, aptitude test) and two interviews.