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 Prakash Linga
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Profile of Prakash Linga

CTO & Co-founder of Vera
News & Commentary Posts: 1

Prakash is the chief technology & product officer and co-founder of Vera. In this role, he oversees all products and technology, and is responsible for developing the overall product strategy and technical vision of the company.


Prakash is an entrepreneur who is passionate about building game-changing products. He most recently served as CTO and co-founder at RAPsphere, which was sold to AppSense in 2012. Prakash received his PhD from Cornell University and earned his Bachelors from IIT Madras, both in Computer Science.

Articles by Prakash Linga
COVID-19: Latest Security News & Commentary
Dark Reading Staff 8/3/2020
Pen Testers Who Got Arrested Doing Their Jobs Tell All
Kelly Jackson Higgins, Executive Editor at Dark Reading,  8/5/2020
New 'Nanodegree' Program Provides Hands-On Cybersecurity Training
Nicole Ferraro, Contributing Writer,  8/3/2020
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Enterprise Vulnerabilities
From DHS/US-CERT's National Vulnerability Database
CVE-2020-15058
PUBLISHED: 2020-08-07
Lindy 42633 4-Port USB 2.0 Gigabit Network Server 2.078.000 devices allow an attacker on the same network to elevate privileges because the administrative password can be discovered by sniffing unencrypted UDP traffic.
CVE-2020-15059
PUBLISHED: 2020-08-07
Lindy 42633 4-Port USB 2.0 Gigabit Network Server 2.078.000 devices allow an attacker on the same network to bypass authentication via a web-administration request that lacks a password parameter.
CVE-2020-15060
PUBLISHED: 2020-08-07
Lindy 42633 4-Port USB 2.0 Gigabit Network Server 2.078.000 devices allow an attacker on the same network to conduct persistent XSS attacks by leveraging administrative privileges to set a crafted server name.
CVE-2020-15061
PUBLISHED: 2020-08-07
Lindy 42633 4-Port USB 2.0 Gigabit Network Server 2.078.000 devices allow an attacker on the same network to denial-of-service the device via long input values.
CVE-2020-15062
PUBLISHED: 2020-08-07
DIGITUS DA-70254 4-Port Gigabit Network Hub 2.073.000.E0008 devices allow an attacker on the same network to elevate privileges because the administrative password can be discovered by sniffing unencrypted UDP traffic.