Company Details
hitachienergy
30,514
1,320,151
22
hitachienergy.com
0
HIT_1593888
In-progress

Hitachi Energy Company CyberSecurity Posture
hitachienergy.comHitachi Energy is a global technology leader in electrification, powering a sustainable energy future with innovative power grid technologies with digital at the core. Over three billion people depend on our technologies to power their daily lives. With over a century in pioneering mission-critical technologies like high-voltage, transformers, automation, and power electronics, we are addressing the most urgent energy challenge of our time – balancing soaring electricity demand, while decarbonizing the power system. With an unparalleled installed base in over 140 countries, we co-create and build long-term partnerships across the utility, industry, transportation, data centers, and infrastructure sectors. Headquartered in Switzerland, we employ over 50,000 people in 60 countries and generate revenues of around $16 billion USD.
Company Details
hitachienergy
30,514
1,320,151
22
hitachienergy.com
0
HIT_1593888
In-progress
Between 750 and 799

Hitachi Energy Global Score (TPRM)XXXX

Description: Hitachi Energy reported a data breach. The Clop ransomware group obtained firm data by taking use of the most current GoAnywhere zero-day vulnerability. The business was the focus of an extensive effort that used the zero-day vulnerability to target GoAnywhere MFT devices all around the world. Hitachi Energy disconnected the affected machine and started an inquiry into the issue right away. Law enforcement authorities and a data protection monitor were notified by the corporation of the data leak. The business emphasised that neither the security of its customers' data nor the network operations were affected.


No incidents recorded for Hitachi Energy in 2025.
No incidents recorded for Hitachi Energy in 2025.
No incidents recorded for Hitachi Energy in 2025.
Hitachi Energy cyber incidents detection timeline including parent company and subsidiaries

Hitachi Energy is a global technology leader in electrification, powering a sustainable energy future with innovative power grid technologies with digital at the core. Over three billion people depend on our technologies to power their daily lives. With over a century in pioneering mission-critical technologies like high-voltage, transformers, automation, and power electronics, we are addressing the most urgent energy challenge of our time – balancing soaring electricity demand, while decarbonizing the power system. With an unparalleled installed base in over 140 countries, we co-create and build long-term partnerships across the utility, industry, transportation, data centers, and infrastructure sectors. Headquartered in Switzerland, we employ over 50,000 people in 60 countries and generate revenues of around $16 billion USD.

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By Kazuo Noguchi, Senior Manager, Security Innovation Lab, Hitachi America R&D. The United Nations General Assembly has endorsed the final report of the...
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Explore insights on cybersecurity incidents, risk posture, and Rankiteo's assessments.
The official website of Hitachi Energy is http://www.hitachienergy.com.
According to Rankiteo, Hitachi Energy’s AI-generated cybersecurity score is 756, reflecting their Fair security posture.
According to Rankiteo, Hitachi Energy currently holds 0 security badges, indicating that no recognized compliance certifications are currently verified for the organization.
According to Rankiteo, Hitachi Energy is not certified under SOC 2 Type 1.
According to Rankiteo, Hitachi Energy does not hold a SOC 2 Type 2 certification.
According to Rankiteo, Hitachi Energy is not listed as GDPR compliant.
According to Rankiteo, Hitachi Energy does not currently maintain PCI DSS compliance.
According to Rankiteo, Hitachi Energy is not compliant with HIPAA regulations.
According to Rankiteo,Hitachi Energy is not certified under ISO 27001, indicating the absence of a formally recognized information security management framework.
Hitachi Energy operates primarily in the Utilities industry.
Hitachi Energy employs approximately 30,514 people worldwide.
Hitachi Energy presently has no subsidiaries across any sectors.
Hitachi Energy’s official LinkedIn profile has approximately 1,320,151 followers.
Hitachi Energy is classified under the NAICS code 22, which corresponds to Utilities.
No, Hitachi Energy does not have a profile on Crunchbase.
Yes, Hitachi Energy maintains an official LinkedIn profile, which is actively utilized for branding and talent engagement, which can be accessed here: https://www.linkedin.com/company/hitachienergy.
As of December 21, 2025, Rankiteo reports that Hitachi Energy has experienced 1 cybersecurity incidents.
Hitachi Energy has an estimated 4,200 peer or competitor companies worldwide.
Incident Types: The types of cybersecurity incidents that have occurred include Data Leak.
Detection and Response: The company detects and responds to cybersecurity incidents through an containment measures with disconnected the affected machine..
Title: Hitachi Energy Data Breach
Description: Hitachi Energy reported a data breach. The Clop ransomware group obtained firm data by taking use of the most current GoAnywhere zero-day vulnerability. The business was the focus of an extensive effort that used the zero-day vulnerability to target GoAnywhere MFT devices all around the world. Hitachi Energy disconnected the affected machine and started an inquiry into the issue right away. Law enforcement authorities and a data protection monitor were notified by the corporation of the data leak. The business emphasised that neither the security of its customers' data nor the network operations were affected.
Type: Data Breach
Attack Vector: Zero-day vulnerability
Vulnerability Exploited: GoAnywhere MFT zero-day vulnerability
Threat Actor: Clop ransomware group
Common Attack Types: The most common types of attacks the company has faced is Data Leak.
Identification of Attack Vectors: The company identifies the attack vectors used in incidents through GoAnywhere MFT devices.

Systems Affected: GoAnywhere MFT devices

Entity Name: Hitachi Energy
Entity Type: Corporation
Industry: Energy

Containment Measures: Disconnected the affected machine
Handling of PII Incidents: The company handles incidents involving personally identifiable information (PII) through by disconnected the affected machine and .

Ransomware Strain: Clop

Investigation Status: Investigation started

Entry Point: GoAnywhere MFT devices
Last Attacking Group: The attacking group in the last incident was an Clop ransomware group.
Most Significant System Affected: The most significant system affected in an incident was GoAnywhere MFT devices.
Containment Measures in Most Recent Incident: The containment measures taken in the most recent incident was Disconnected the affected machine.
Current Status of Most Recent Investigation: The current status of the most recent investigation is Investigation started.
Most Recent Entry Point: The most recent entry point used by an initial access broker was an GoAnywhere MFT devices.
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n8n is an open source workflow automation platform. Versions starting with 0.211.0 and prior to 1.120.4, 1.121.1, and 1.122.0 contain a critical Remote Code Execution (RCE) vulnerability in their workflow expression evaluation system. Under certain conditions, expressions supplied by authenticated users during workflow configuration may be evaluated in an execution context that is not sufficiently isolated from the underlying runtime. An authenticated attacker could abuse this behavior to execute arbitrary code with the privileges of the n8n process. Successful exploitation may lead to full compromise of the affected instance, including unauthorized access to sensitive data, modification of workflows, and execution of system-level operations. This issue has been fixed in versions 1.120.4, 1.121.1, and 1.122.0. Users are strongly advised to upgrade to a patched version, which introduces additional safeguards to restrict expression evaluation. If upgrading is not immediately possible, administrators should consider the following temporary mitigations: Limit workflow creation and editing permissions to fully trusted users only; and/or deploy n8n in a hardened environment with restricted operating system privileges and network access to reduce the impact of potential exploitation. These workarounds do not fully eliminate the risk and should only be used as short-term measures.
FastAPI Users allows users to quickly add a registration and authentication system to their FastAPI project. Prior to version 15.0.2, the OAuth login state tokens are completely stateless and carry no per-request entropy or any data that could link them to the session that initiated the OAuth flow. `generate_state_token()` is always called with an empty `state_data` dict, so the resulting JWT only contains the fixed audience claim plus an expiration timestamp. On callback, the library merely checks that the JWT verifies under `state_secret` and is unexpired; there is no attempt to match the state value to the browser that initiated the OAuth request, no correlation cookie, and no server-side cache. Any attacker can hit `/authorize`, capture the server-generated state, finish the upstream OAuth flow with their own provider account, and then trick a victim into loading `.../callback?code=<attacker_code>&state=<attacker_state>`. Because the state JWT is valid for any client for \~1 hour, the victim’s browser will complete the flow. This leads to login CSRF. Depending on the app’s logic, the login CSRF can lead to an account takeover of the victim account or to the victim user getting logged in to the attacker's account. Version 15.0.2 contains a patch for the issue.
FileZilla Client 3.63.1 contains a DLL hijacking vulnerability that allows attackers to execute malicious code by placing a crafted TextShaping.dll in the application directory. Attackers can generate a reverse shell payload using msfvenom and replace the missing DLL to achieve remote code execution when the application launches.
LDAP Tool Box Self Service Password 1.5.2 contains a password reset vulnerability that allows attackers to manipulate HTTP Host headers during token generation. Attackers can craft malicious password reset requests that generate tokens sent to a controlled server, enabling potential account takeover by intercepting and using stolen reset tokens.
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