HackBook

HackBook Contact information, map and directions, contact form, opening hours, services, ratings, photos, videos and announcements from HackBook, Software Company, 33 W 17th Street, New York, NY.

HackBook is an Industry 4.0 (OT, ICS, IoT) company that provides solutions to streamline operations, reduce downtime, and improve efficiency across the industrial environment.

We’re attending Startup Boston Week! Come say hi and meet us on Wednesday, September 16th from 2:30-4:30 at Boston Unive...
08/31/2026

We’re attending Startup Boston Week! Come say hi and meet us on Wednesday, September 16th from 2:30-4:30 at Boston University.

Implement HackBook's strategic framework for isolating critical infrastructure and operational technology (OT) from exte...
08/27/2026

Implement HackBook's strategic framework for isolating critical infrastructure and operational technology (OT) from external networks to ensure service continuity during cyberattacks. It outlines a six-step critical path that includes identifying vital systems, mapping interconnections, and establishing physical or cryptographic separation points.

08/24/2026

FakeLogonScreen is a pentesting tool used to harvest Windows credentials. The tool displays a deceptive login interface that mimics the authentic operating system environment to trick users into revealing their passwords.

The PMKID attack is a wireless pe*******on testing methodology developed by Team Hashcat that targets WPA and WPA2 secur...
08/21/2026

The PMKID attack is a wireless pe*******on testing methodology developed by Team Hashcat that targets WPA and WPA2 security protocols.
In traditional wireless cracking, an attacker must wait for a target device to connect to the network or actively force a disconnect using a de-authentication attack to capture a full 4-way handshake. In contrast, the PMKID attack is a "client-less" attack. It allows an attacker to communicate directly with the Access Point (AP) to obtain the security material needed to crack the network password, eliminating the need for any legitimate users to be active on the network.

08/12/2026

Securing the modern smart grid is often described as a scalability nightmare because of the immense physical footprint and digital complexity of today’s electrical infrastructure. When utilities attempt to implement comprehensive cybersecurity monitoring across their operational technology (OT) networks, they immediately run into several staggering hurdles.

To overcome these scalability challenges, HackBook's Cyber Digital Twin utilizes three main strategies:

1) Hierarchical Architecture: Instead of sending raw traffic to the SOC, Local Management Consoles (LMCs) are deployed at individual substations to aggregate and filter data locally. They only forward compiled alerts and critical statuses over the WAN to a Central Management Console (CMC), protecting valuable bandwidth.

2) Auto-Provisioning: The Cyber Digital Twin supports automated provisioning with standardized, common configurations to enable rapid, large-scale deployments without manual overhead.

3) Intelligent One-Phase Learning: The Cyber Digital Twin use a dynamic, single-phase learning model that automatically transitions to protection mode on a per-segment basis without requiring operator intervention

HackBook's Cyber Digital Twin platform, helps protect vital national security and critical infrastructure assets by prov...
08/07/2026

HackBook's Cyber Digital Twin platform, helps protect vital national security and critical infrastructure assets by providing comprehensive visibility, risk management, and automated threat mitigation in the following ways:

1) Ultimate Asset Visibility: Digital twins continuously see, assess, and mitigate all known and "shadow" assets at any scale, as fast as they are added. This provides security teams with an objective, centralized, and holistic view of their IT assets, which is the crucial first step to establishing a strong cybersecurity posture.

2) Rogue Device Discovery and Behavior Analytics: Digital twins can detect rogue devices operating over networks or USB interfaces, even when those devices fully impersonate legitimate human interface devices (HIDs) to bypass traditional security alarms. They combine this discovery with behavior analytics to provide alerts for security threats.

3) Physical Layer Analysis: Rather than relying on easily manipulated profile perceptions or behavioral assumptions, cyber digital twins leverage data at the physical layer to generate an objective profile for every asset. This ensures they are not deceived by spoofed devices or network implants.

4) Continuous Risk Prioritization: The technology automatically assigns an Asset Risk Factor (ARF) score to every asset. By continuously monitoring the asset infrastructure for behavioral changes or anomalies, the digital twin updates these scores in real-time to prioritize high, medium, and low risks, helping teams proactively manage their attack surface and identify regulatory compliance gaps.

5) Automated Policy Enforcement and Mitigation: When an asset breaches preset rules or is recognized as a known attack vector, the digital twin platform can immediately block the asset or enforce granular hardware usage policies, enabling instant and automated risk mitigation.

6) Safe, Non-Disruptive "Read-Only" Operations: A cyber digital twin can operate with "read-only" network access privileges. This means it can monitor the network without the risk of altering, disrupting, or changing anything within the critical system itself.

7) Seamless Integration with Existing Security Ecosystems: To optimize security investments, digital twins integrate with and supply vital visibility to existing tools, such as Security Information and Event Management (SIEM), Network Access Control (NAC), Endpoint Detection and Response (EDR), XDR, and Zero Trust solutions

Recent reports indicate that cybersecurity threats have targeted water and wastewater facilities across at least twelve ...
08/06/2026

Recent reports indicate that cybersecurity threats have targeted water and wastewater facilities across at least twelve states, raising concerns about the safety of critical infrastructure. While investigators suspect Iranian involvement, federal authorities have not yet officially confirmed the origin of these digital intrusions. The attacks primarily aim to disable alarms and manipulate access credentials. In response, the FBI is advising utility providers to sever internet connections for sensitive equipment and prepare for manual operation if automated systems fail. State agencies are closely monitoring the situation and collaborating with federal investigators to secure municipal networks. This ongoing investigation highlights the urgent need for enhanced protective measures to safeguard the nation’s essential water supplies from foreign interference.

08/05/2026

In this video, we explain how hackers are exploiting internet-connected OT devices such as PLCs across multiple critical infrastructure sectors. As a result of these cyber attacks, multiple organizations experienced disruptions through malicious interactions with PLC project files and the manipulation of data displayed on human machine interface (HMI) and supervisory control and data acquisition (SCADA) displays. In a few cases, this activity caused operational disruption and financial loss.

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33 W 17th Street
New York, NY
10011

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