This inventor holds 2 USPTO granted patents. Top assignee: Bank of America Corporation. Active years: 2020-2022.
Company Filing History:
Years Active: 2020-2022
Title: Innovations of Jonathan Michael Nauss
Introduction
Jonathan Michael Nauss is an accomplished inventor based in Charlotte, NC (US). He has made significant contributions to the field of network management and security through his innovative patents. With a total of 2 patents, Nauss has developed technologies that enhance the monitoring and management of network components.
Latest Patents
Nauss's latest patents include the "Exception Remediation Acceptable Use Logic Platform" and the "Exception Remediation Logic Rolling Platform." The first invention focuses on monitoring network components to identify vulnerabilities. It implements remediation plans and allows for remediation suppression based on user requests or organizational policies. This invention ensures that while vulnerabilities are monitored, appropriate actions can be taken when necessary.
The second patent, the "Exception Remediation Logic Rolling Platform," also addresses network vulnerabilities. It automates the process of associating network component exceptions with components that meet specific custom criteria. This innovation prevents unnecessary vulnerability actions from being taken, thereby streamlining network management.
Career Highlights
Jonathan Michael Nauss is currently employed at Bank of America Corporation, where he applies his expertise in network management. His work contributes to the security and efficiency of the bank's network infrastructure.
Collaborations
Nauss collaborates with notable colleagues, including Peter Jordan Langsam and Julia A Ward. Their combined efforts in the field of network management have led to advancements that benefit their organization.
Conclusion
Jonathan Michael Nauss is a prominent inventor whose work in network management has resulted in valuable patents. His contributions continue to influence the industry and enhance the security of network systems.