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Ransomware victim Technology

Millensys

Listed by Medusalocker on · organisation based in Brazil

millensys.com

Disclosed
Oct 5, 2026
Leak-site listing date
Threat group
Medusalocker
77 victims listed
Country
Brazil
#7 most targeted
Sector
Technology

ThreatAI analysis

Compiled from this incident record and the threat intelligence profile for Medusalocker. Figures and technique mappings are quoted from the source data, not inferred.

Medusalocker listed Millensys on its dark web leak site on 5 October 2026. The Brazilian technology firm operates in the sector.

About the Medusalocker group

Medusa is a DDoS bot written in .NET 2.0. In its current incarnation its C&C protocol is based on HTTP, while its predecessor made use of IRC. Medusalocker has listed 103 victims since November 2021.

How Medusalocker is documented to operate

Parent PID Spoofing T1134.004 Stealth Privilege Escalation

Adversaries may spoof the parent process identifier (PPID) of a new process to evade process-monitoring defenses or to elevate privileges. New processes are typically spawned directly from their parent, or calling, process unless explicitly specified. One way of explicitly assigning the PPID of a new process is via the <codeCreateProcess</code API call, which supports a parameter that defines the PPID to use. This functionality is used by Windows features such as User Account Control (UAC) to correctly set the PPID after a requested elevated process is spawned by SYSTEM (typically via <codesvchost.exe</code or <codeconsent.exe</code) rather than the current user context.

MITRE ATT&CK reference

MITRE ATT&CK techniques attributed to Medusalocker across its recorded activity, not a finding about how Millensys was reached.

Incident analysis

Millensys was listed by Medusalocker ransomware, a group with 77 victims recorded in this database. The listing appeared on the group's leak site on October 5, 2026.

Millensys is based in Brazil and operates in the Technology sector. Brazil ranks #7 worldwide for ransomware disclosures, with 514 victims in this database.

Sector context. Technology companies hold intellectual property, customer data, and source code — all highly valuable assets. A successful ransomware attack can also put downstream customers at risk through supply chain exposure.

Medusalocker typically follows a double extortion model: data is exfiltrated from the victim's systems before files are encrypted, so the victim faces two demands at once — pay to restore access, and pay to keep stolen data unpublished. The leak site, where this listing appeared, is the lever for the second demand.

Frequently asked questions

Was Millensys attacked by ransomware?

Yes. Millensys was listed as a victim of the Medusalocker ransomware group on October 5, 2026. The organisation is based in Brazil and operates in the Technology sector. The disclosure appeared on the group's dark web leak site.

Which ransomware group attacked Millensys?

Millensys was attacked by Medusalocker ransomware. Medusalocker is one of the most active ransomware groups, having claimed 77 victims globally. The group typically employs a double-extortion model: encrypting the victim's files and threatening to publish stolen data.

When did the Millensys ransomware attack occur?

The ransomware attack on Millensys was disclosed on October 5, 2026. This date reflects when the victim was published on the threat group's leak site, which may differ from the actual date of initial compromise.

What data was stolen in the Millensys ransomware attack?

The specific data stolen from Millensys has not been independently verified by this platform. Ransomware groups typically exfiltrate data before encrypting systems and use the threat of publication to pressure victims. As a Technology organisation, Millensys likely held source code, intellectual property, and customer data.

How can organisations protect against Medusalocker attacks?

To defend against Medusalocker and similar threat actors, organisations should: maintain regular offline backups tested for restoration; implement network segmentation to limit lateral movement; deploy multi-factor authentication on all remote access; use endpoint detection and response (EDR) tools; conduct regular phishing and security awareness training; and monitor threat intelligence feeds for indicators of compromise (IOCs) associated with active groups.