Was ist das eigentlich? Cyberrisiken verständlich erklärt

Es wird viel über Cyberrisiken gesprochen. Oftmals fehlt aber das grundsätzliche Verständnis, was Cyberrisiken überhaupt sind. Ohne diese zu verstehen, lässt sich aber auch kein Versicherungsschutz gestalten.

Beinahe alle Aktivitäten des täglichen Lebens können heute über das Internet abgewickelt werden. Online-Shopping und Online-Banking sind im Alltag angekommen. Diese Entwicklung trifft längst nicht nur auf Privatleute, sondern auch auf Firmen zu. Das Schlagwort Industrie 4.0 verheißt bereits eine zunehmende Vernetzung diverser geschäftlicher Vorgänge über das Internet.

Anbieter von Cyberversicherungen für kleinere und mittelständische Unternehmen (KMU) haben Versicherungen die Erfahrung gemacht, dass trotz dieser eindeutigen Entwicklung Cyberrisiken immer noch unterschätzt werden, da sie als etwas Abstraktes wahrgenommen werden. Für KMU kann dies ein gefährlicher Trugschluss sein, da gerade hier Cyberattacken existenzbedrohende Ausmaße annehmen können. So wird noch häufig gefragt, was Cyberrisiken eigentlich sind. Diese Frage ist mehr als verständlich, denn ohne (Cyber-)Risiken bestünde auch kein Bedarf für eine (Cyber-)Versicherung.

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Exam Number : MA0-103
Exam Name : McAfee Certified Product Specialist - DLPE
Vendor Name : McAfee
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MA0-103 exam Format | MA0-103 Course Contents | MA0-103 Course Outline | MA0-103 exam Syllabus | MA0-103 exam Objectives

Exam Title : McAfee Data Loss Prevention Endpoint (DLPe)

Product version(s): 9.3.2

Associated exam : MA0-103

Associated training 4 Days McAfee Data Loss Prevention Endpoint

Number of questions : 60

Exam duration : 140 Minutes

Passing score : 78%

The McAfee Certified Product Specialist certifications are designed for candidates who administer a specific McAfee product or suite of products, and have one to three years of experience with that product or product suite. This certification level allows candidates to demonstrate knowledge in these key product areas:

 Basic architecture

 Installation

 Configuration

 Management

 Troubleshooting

A minimum of one year of experience using the McAfee product. Recommended hands-on experience includes:

 Planning

 Design

 Installation

 Configuration

 Operations and management

Individuals who have passed a McAfee certification exam are granted access to the McAfee

Certification Program Candidate site. On the site, you will find:

 Your official McAfee Certification

Program transcript and access to the transcript sharing tool.

 The ability to obtain custom certification logos.

 Additional information and offers for McAfee-certified individuals

 Your contact preferences and profile

 News and promotions


 Networking technology theory, principles and practices

 Data networking standards and protocols

 LAN and WAN technologies

 Network administration

 Network and routing protocols

 Baseline conditions

 Perimeter security

 Internal network security

 Basic infrastructure

 Sniffing/network monitoring

 TCP/IP and NAT/PAT Systems

 Client/server technology

 Group policy overview and security templates

 Web permissions and authorization

 Redundancy/fault tolerance/ high availability

 Drive encryption

 System administration

 Virtual environments

 Processors (CPU)

 Baseline conditions

 System access and navigation

 Multi-server environments

 Operating systems


 Databases

 Redundancy

 Web protocols

 Baseline conditions

Policies and Procedures

 Permissions, delegation & auditing

 Policies governing user access

 Role permissions

 Systems testing procedures

 Endpoint protection policies

 Exceptions policies

 Proactive Protection Scan policy

 Antivirus and antispyware protection policies

 Network password procedures

 Company security policies

 Device usage policies

 Change control procedures

 Product specific maintenance procedures

 Incident response procedures

 Role specific escalation procedures

 Corporate security controls

 Corporate security strategy

 Device access control

Best Practices

 Level of security required

 Backup and recovery

 Security monitoring

 Problem isolation tools/practices

 Industry security standards

Security Foundation

 Firewall

 Computer viruses, spyware, and malware

 Network threat prevention technologies

 Spyware protection

 Firewall technologies and intrusion prevention

 Heuristic-based protection

 Authentication

 Vulnerabilities and remediation techniques

 Malware incidents

 Internal threats and attacks

 External threats and attacks

 Security protocols

 Cryptography

 Network security policies

 Network access control

 Common threats and vulnerabilities

Operations and Administration

 Password management

 Network and support management tools and procedures

 Patch management

 Security alerts, front-line analysis and escalation

 Intrusion detection systems

 Monitoring tools

 Problem determination

 Incident and issue categorization

 Basic product functions

 Product policy configuration

 Product report generation

 Version controls

 Detailed product functions

 Protected materials

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McAfee DLPE Cheatsheet


McAfee Expands Machine Learning, Automation Capabilities to Strengthen Human-Machine Teams

McAfee, one of the world’s leading cybersecurity companies, today announced several new innovations that expand machine learning and automation capabilities to strengthen human-machine teams. Plus, McAfee announces support of OpenDXL.com, a new, independent collaboration portal that offers forums, free apps and more, giving OpenDXL users easy access to ideas and resources available for application integrations. These new advances build upon the company’s commitment to innovation, collaboration and trust, bringing McAfee’s mantra ‘Together is Power’ to life.

“Today’s security teams are facing 244 new cyber threats every minute, amid a serious talent shortage. Siloed security, without automation, managed by overwhelmed teams is not a sustainable defense strategy,” said Raja Patel, Vice President and General Manager, Corporate Security Products, McAfee. “Expanded machine learning and integrated analytics are part of McAfee’s vision for a fundamental shift in the way humans and machines work together to secure their digital world. By aligning the strengths of humans and machines, organizations elevate their operational maturity to better defend against the cyber threats they face today—and tomorrow.”

Machine Learning and Automation

McAfee technology seeks to Strengthen the way humans and machines work together to protect the digital enterprise, through implementation of an intelligent security platform, that takes advantage of powerful new technologies, such as machine learning and automation. McAfee Advanced Threat Defense (ATD) software now joins the growing portfolio of McAfee products that incorporate machine learning, including McAfee Endpoint Security with Real Protect and McAfee Global Threat Intelligence (GTI).

The newly released McAfee® ATD v4.0 software introduces an innovative deep learning technique to enhance detection and expands advanced analysis capabilities within email attachments, resulting in more comprehensive protection across the network as new threat intelligence and reputation updates are shared throughout the ecosystem. New capabilities include:

  • Enhanced Machine Learning Detection: Machine learning now bolsters McAfee ATD detection capabilities, resulting in an expanded ability to identify malicious markers that may be hidden, or not fully executed.
  • Expanded, Closed-Loop Detection-to-Protection for Email: McAfee ATD Email Connector now enables email security gateways to forward suspicious attachments to McAfee ATD for analysis, preventing malware from spreading on internal networks. 
  • New enhancements for McAfee Enterprise Security Manager (ESM) include integrated, patented countermeasure-aware risk analysis to help security operations teams identify threats and assess the impact of new vulnerabilities, as well as new support for critical SOC use cases.

  • Accurate Insight into Exposure and Risk: McAfee® ESM now improves risk exam by factoring in active, relevant countermeasures and priority guidance from McAfee GTI, providing a more accurate understanding of exposure and potential impact. The new Asset Threat Risk Content Pack 2.0 feature delivers security configuration, compliance posture and patch exam in a single view
  • Rapid Use Case Deployment: The new McAfee Connect content portal simplifies access to freely available, simple to deploy use cases and solution integrations. Through the portal, McAfee customers can find tools to activate monitoring, detection and incident management tasks, including user behavior analysis and detection of malware exploits and reconnaissance
  • Effortlessly Monitor and Analyze Cloud Activity: Easy incorporation of Microsoft Office 365 actions and events enables monitoring and analysis of user activity within cloud services
  • Fully Unified Data Loss Prevention

    McAfee Data Loss Prevention (DLP) Endpoint, DLP Prevent, DLP Discover and DLP Monitor are now fully unified. New capabilities include:

  • Improved Business Efficiency: Unified policy management across network and endpoint DLP built upon a common classification engine, dictionaries, regular expression engine and syntax
  • Faster Investigation and Remediation: Simplified incident and case management speeds investigation and remediation of risk or suspicious user behavior by line-of-business data stewards, and information security professionals alike
  • Consistent Event Analysis: Common file, email, web traffic and database analysis across endpoint and network DLP ensure consistent enforcement of corporate data usage policies
  • Dynamic Endpoint Protection

    McAfee’s dynamic endpoint protection collaborates across products, allowing new technology to easily integrate without a complete architecture rebuild, and leverages machine learning to Strengthen detection capabilities. New capability includes:

  • Integrated Cloud Threat Detection: New integration between McAfee Cloud Threat Detection (CTD) and McAfee Threat Intelligence Exchange (TIE) enables McAfee Endpoint Security (ENS) to forward suspicious samples to a cloud sandbox for in-depth analysis.
  • Continued Commitment to Open Source and Industry Collaboration

    McAfee believes that no one person, product or organization can fight cybercrime alone, which is why McAfee announced the OpenDXL initiative in 2016, launching an open industry standard for all developers to increase integration flexibility, simplicity and opportunity. McAfee has now expanded its commitment to open source through support of a new, independent open source community, OpenDXL.com. This vibrant, collaborative portal includes: 

  • Community Innovation Forum: A place for participants to connect, get ideas, exchange questions and solve new problems
  • Freely Available App Marketplace: Created for sharing, the app marketplace features new, creative use cases for OpenDXL, packaged and ready for implementation
  • “Bootstrapper” to Simplify Integration: Makes it even easier to create OpenDXL integrations with a “bootstrapper” toolkit, which helps developers and integrators create API service wrappers in a few easy steps.

  • McAfee Finds Teenagers Use Tech to Cheat in School

    For K–12 schools, technologies in the classroom can expand access to innovative information and add layers of protection to the digital learning experience. But today’s digital native students might be so savvy with technology that they use it to break the rules.

    About one-third of students aged 14 to 18 report they have gone around schools’ online safeguards to access banned content, and another 29 percent indicate that they’ve used digital tools to cheat in school, reports a new survey from security firm McAfee.

    Roughly 62 percent of students say they’ve witnessed a friend using a connected device to cheat. eSchool News reports that the students surveyed say that using a mobile device to take a photo of notes or test answers is easy to do.

    While these students are tech savvy, some educators believe that the students might not even be aware when their tech use counts as cheating.

    “They share information because it’s just available to them,” says Joe Fuertsch, assistant principal at Eleanor Roosevelt High School in Calif., in a U.S. News and World Report article about the survey.

    Fuertsch recommends that teachers have proactive conversations about cheating and plagiarism and where technology fits into that. Other teachers in the article suggest that educators regularly search the internet for new ways that students might be able to cheat on tests, and teachers should design tests that encourage critical thinking instead of a simple right or wrong answer.

    When best practices can’t cut it, technology can help to thwart inappropriate tech use.

    Digital tools can be particularly effective in addressing attempts to access banned and inappropriate content.

    GoGuardian, the company behind content-filtering apps that many schools use, released Admin 2.0, a new tool that applies machine learning to more efficiently flag content.

    Using the updated content filter, administrators can set up personalized messages for students trying to access banned content. Instead of just putting up a blocked page, the tool gives students a “you know better” type of message, which has helped to limit the amount of explicit or inappropriate content accessed.

    Cheating and accessing banned content aren’t the only cybersecurity issues that schools have to deal with when students become more technologically sophisticated. At Miami-Dade County Public Schools, students conducted repeated distributed denial of service attacks, which flooded schools’ networks with malicious traffic to stop the schools from issuing a standardized test.

    The district tells EdTech that now it’s using more network monitoring tools and establishing rules on its routers, switches and firewalls to spurn this kind of bad traffic.

    Data Loss Prevention (DLP) Solutions Market 2023 Strategic Assessment - McAfee, NortonLifeLock, Trend Micro, Broadcom

    The "Data Loss Prevention (DLP) Solutions" Market report offers qualitative and quantitative insights and a detailed analysis of market size & growth rate for all segments in the market. The Global Data Loss Prevention (DLP) Solutions Industry presents a market overview, product details, classification, and market concentration. The report also provides an in-depth review of key players in the market which is based on various competitive intelligence parameters like company profiles, product picture and specification, capacity, price, cost, revenue, and contact information. The Data Loss Prevention (DLP) Solutions Market report provides an in-depth study of SWOT analysis i.e. Strength, Weakness, Opportunities, and Threat to the organization.

    Get a trial Copy of This Report:


    Top Leading Companies of Global Data Loss Prevention (DLP) Solutions Market are - McAfee, NortonLifeLock, Trend Micro, Broadcom, IBM, Trustwave, Digital Guardian, Zecurion, Proofpoint, Microsoft, Fortinet, Check Point and others.

    Scope Of the Report:

    The Data Loss Prevention (DLP) Solutions Market is divided based on the product portfolio, application domain, and regional distribution. Market share, growth rate, and valuation information are also given for each industry, area, and nation. Additionally, the research includes future trends, stumbling blocks, and motivating elements that are expected to promote revenue input by category and area during the following few years.

    Drivers and Restraints:

    The Data Loss Prevention (DLP) Solutions Market drivers were acknowledged for their ability to describe how their efforts will affect the market's overall growth over the forecast period. A comprehensive exam of the relevance of the driving forces and potential obstructions that market participants may face in the Data Loss Prevention (DLP) Solutions Market is performed in order to predict anticipated future developments in the sector. The constraints of the Data Loss Prevention (DLP) Solutions Market could highlight issues that might impede the development of the conventional market. Understanding the negative aspects of the Data Loss Prevention (DLP) Solutions Market should enable businesses to broaden their approaches to issue solving, increasing their capacity to upend the pessimistic outlook.

    Market Opportunities:

    The Data Loss Prevention (DLP) Solutions Market Research Report also offers opportunities that business owners may take advantage of by applying the appropriate strategies. The study's prospects help stakeholders and report buyers make wise investment decisions and increase their profitability.

    Detailed Segmentation:

    On the Basis of Types, the Global Data Loss Prevention (DLP) Solutions Market is segmented into: -

    Enterprise DLP Solutions

    Integrated DLP Solutions

    On the Basis of Application, the Global Data Loss Prevention (DLP) Solutions Market is segmented into: -


    Telecom and IT


    Aerospace and Defense

    Retail & Logistics

    Government and Public Utilities


    Regional Outlook:

    The report's primary insights into various regions and the major companies involved in each one is provided in this section. When evaluating a regions or country's growth, economic, social, environmental, technological, and political issues have all been taken into account. Additionally, each countries and region's revenue and sales information for the years 2018 through 2029 will be made available to readers.

    The market has been divided into four key regions: North America, Europe, Asia-Pacific, and South America. The regional part will include a thorough analysis of important nations like the United States, Germany, the United Kingdom, Italy, France, China, Japan, South Korea, Southeast Asia, and India. Data will be provided for the market estimations using 2022 as the base year, followed by estimates for 2023 and a forecast value for 2029.

    COVID-19 and Russia-Ukraine War (2022) Influence Analysis:

    The section's readers will understand how the Data Loss Prevention (DLP) Solutions market scenario altered around the world during the pandemic, post-pandemic, and Russia-Ukraine War. The analysis is conducted with changes in demand, consumption, transportation, consumer behavior, supply chain management, export and import, and manufacturing in mind. The essential elements that will assist players find chances and stabilize the business as a whole in the upcoming years have also been underlined by the industry experts.

    The impact of the Data Loss Prevention (DLP) Solutions market report:

    - Comprehensive exam of all opportunities and risk in the Data Loss Prevention (DLP) Solutions market. - Data Loss Prevention (DLP) Solutions market latest innovations and major events. - Detailed study of business strategies for growth of the Data Loss Prevention (DLP) Solutions market-leading players. - Conclusive study about the growth plot of Infrared Imaging market for forthcoming years. - In-depth understanding of Data Loss Prevention (DLP) Solutions market-particular drivers, constraints and major micro markets. - Favourable impression inside vital technological and market latest trends striking the Data Loss Prevention (DLP) Solutions market.

    Browse Full Report at:


    Some of the important features of the report:

    - Detailed overview of the Data Loss Prevention (DLP) Solutions market - Changing market dynamics of the industry - In-depth market segmentation by Type, Application, etc. - Historical, current, and projected market size in terms of volume and value - latest industry trends and developments - Competitive landscape of the Data Loss Prevention (DLP) Solutions market - Strategies of key players and product offerings - Potential and niche segments/regions exhibiting promising growth - A neutral perspective towards Data Loss Prevention (DLP) Solutions market performance - Must-have information for market players to sustain and enhance their market footprint

    The research includes historic data from 2018 to 2023 and forecasts until 2029 which makes the report an invaluable resource for industry executives, marketing, sales, and product managers, consultants, analysts, and stakeholders looking for key industry data in readily accessible documents with clearly presented tables and graphs.

    We Offer Customization on Report Based on Specific Client Requirement:

    - Country Level analysis for any 5 countries of your choice.

    - Competitive analysis of any 5 key market players.

    - 40 analyst hours to cover any other data point.

    - 15% customization equal to 60 analyst hours.

    About Us:

    MarketInsightsReports provides syndicated market research on industry verticals including Healthcare, Information, and Communication Technology (ICT), Technology and Media, Chemicals, Materials, Energy, Heavy Industry, etc. MarketInsightsReports provides global and regional market intelligence coverage, a 360-degree market view which includes statistical forecasts, competitive landscape, detailed segmentation, key trends, and strategic recommendations.

    Contact Us:

    Irfan Tamboli (Head of Sales) Market Insights Reports

    Phone: + 1704 266 3234 | +91-750-707-8687

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    © 2023 Benzinga.com. Benzinga does not provide investment advice. All rights reserved.


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    Warum sind Cyberrisiken so schwer greifbar?

    Als mehr oder weniger neuartiges Phänomen stellen Cyberrisiken Unternehmen und Versicherer vor besondere Herausforderungen. Nicht nur die neuen Schadenszenarien sind abstrakter oder noch nicht bekannt. Häufig sind immaterielle Werte durch Cyberrisiken in Gefahr. Diese wertvollen Vermögensgegenstände sind schwer bewertbar.

    Obwohl die Gefahr durchaus wahrgenommen wird, unterschätzen viele Firmen ihr eigenes Risiko. Dies liegt unter anderem auch an den Veröffentlichungen zu Cyberrisiken. In der Presse finden sich unzählige Berichte von Cyberattacken auf namhafte und große Unternehmen. Den Weg in die Presse finden eben nur die spektakulären Fälle. Die dort genannten Schadenszenarien werden dann für das eigene Unternehmen als unrealistisch eingestuft. Die für die KMU nicht minder gefährlichen Cyber­attacken werden nur selten publiziert.

    Aufgrund der fehlenden öffentlichen Meldungen von Sicherheitsvorfällen an Sicherheitsbehörden und wegen der fehlenden Presseberichte fällt es schwer, Fakten und Zahlen zur Risikolage zu erheben. Aber ohne diese Grundlage fällt es schwer, in entsprechende Sicherheitsmaßnahmen zu investieren.

    Erklärungsleitfaden anhand eines Ursache-Wirkungs-Modells

    Häufig nähert man sich dem Thema Cyberrisiko anlass- oder eventbezogen, also wenn sich neue Schaden­szenarien wie die weltweite WannaCry-Attacke entwickeln. Häufig wird auch akteursgebunden beleuchtet, wer Angreifer oder Opfer sein kann. Dadurch begrenzt man sich bei dem Thema häufig zu sehr nur auf die Cyberkriminalität. Um dem Thema Cyberrisiko jedoch gerecht zu werden, müssen auch weitere Ursachen hinzugezogen werden.

    Mit einer Kategorisierung kann das Thema ganzheitlich und nachvollziehbar strukturiert werden. Ebenso hilft eine solche Kategorisierung dabei, eine Abgrenzung vorzunehmen, für welche Gefahren Versicherungsschutz über eine etwaige Cyberversicherung besteht und für welche nicht.

    Die Ursachen sind dabei die Risiken, während finanzielle bzw. nicht finanzielle Verluste die Wirkungen sind. Cyberrisiken werden demnach in zwei Hauptursachen eingeteilt. Auf der einen Seite sind die nicht kriminellen Ursachen und auf der anderen Seite die kriminellen Ursachen zu nennen. Beide Ursachen können dabei in drei Untergruppen unterteilt werden.

    Nicht kriminelle Ursachen

    Höhere Gewalt

    Häufig hat man bei dem Thema Cyberrisiko nur die kriminellen Ursachen vor Augen. Aber auch höhere Gewalt kann zu einem empfindlichen Datenverlust führen oder zumindest die Verfügbarkeit von Daten einschränken, indem Rechenzentren durch Naturkatastrophen wie beispielsweise Überschwemmungen oder Erdbeben zerstört werden. Ebenso sind Stromausfälle denkbar.

    Menschliches Versagen/Fehlverhalten

    Als Cyberrisiken sind auch unbeabsichtigtes und menschliches Fehlverhalten denkbar. Hierunter könnte das versehentliche Veröffentlichen von sensiblen Informationen fallen. Möglich sind eine falsche Adressierung, Wahl einer falschen Faxnummer oder das Hochladen sensibler Daten auf einen öffentlichen Bereich der Homepage.

    Technisches Versagen

    Auch Hardwaredefekte können zu einem herben Datenverlust führen. Neben einem Überhitzen von Rechnern sind Kurzschlüsse in Systemtechnik oder sogenannte Headcrashes von Festplatten denkbare Szenarien.

    Kriminelle Ursachen


    Hackerangriffe oder Cyberattacken sind in der Regel die Szenarien, die die Presse dominieren. Häufig wird von spektakulären Datendiebstählen auf große Firmen oder von weltweiten Angriffen mit sogenannten Kryptotrojanern berichtet. Opfer kann am Ende aber jeder werden. Ziele, Methoden und auch das Interesse sind vielfältig. Neben dem finanziellen Interesse können Hackerangriffe auch zur Spionage oder Sabotage eingesetzt werden. Mögliche Hackermethoden sind unter anderem: Social Engineering, Trojaner, DoS-Attacken oder Viren.

    Physischer Angriff

    Die Zielsetzung eines physischen Angriffs ist ähnlich dem eines Hacker­angriffs. Dabei wird nicht auf die Tools eines Hackerangriffs zurückgegriffen, sondern durch das physische Eindringen in Unternehmensgebäude das Ziel erreicht. Häufig sind es Mitarbeiter, die vertrauliche Informationen stehlen, da sie bereits den notwendigen Zugang zu den Daten besitzen.


    Obwohl die Erpressung aufgrund der eingesetzten Methoden auch als Hacker­angriff gewertet werden könnte, ergibt eine Differenzierung Sinn. Erpressungsfälle durch Kryptotrojaner sind eines der häufigsten Schadenszenarien für kleinere und mittelständische Unternehmen. Außerdem sind auch Erpressungsfälle denkbar, bei denen sensible Daten gestohlen wurden und ein Lösegeld gefordert wird, damit sie nicht veröffentlicht oder weiterverkauft werden.

    Ihre Cyberversicherung sollte zumindet folgende Schäden abdecken:


    • Soforthilfe und Forensik-Kosten (Kosten der Ursachenermittlung, Benachrichtigungskosten und Callcenter-Leistung)
    • Krisenkommunikation / PR-Maßnahmen
    • Systemverbesserungen nach einer Cyber-Attacke
    • Aufwendungen vor Eintritt des Versicherungsfalls

    Cyber-Drittschäden (Haftpflicht):

    • Befriedigung oder Abwehr von Ansprüchen Dritter
    • Rechtswidrige elektronische Kommunikation
    • Ansprüche der E-Payment-Serviceprovider
    • Vertragsstrafe wegen der Verletzung von Geheimhaltungspflichten und Datenschutzvereinbarungen
    • Vertragliche Schadenersatzansprüche
    • Vertragliche Haftpflicht bei Datenverarbeitung durch Dritte
    • Rechtsverteidigungskosten


    • Betriebsunterbrechung
    • Betriebsunterbrechung durch Ausfall von Dienstleister (optional)
    • Mehrkosten
    • Wiederherstellung von Daten (auch Entfernen der Schadsoftware)
    • Cyber-Diebstahl: elektronischer Zahlungsverkehr, fehlerhafter Versand von Waren, Telefon-Mehrkosten/erhöhte Nutzungsentgelte
    • Cyber-Erpressung
    • Entschädigung mit Strafcharakter/Bußgeld
    • Ersatz-IT-Hardware
    • Cyber-Betrug