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Inductive Automation's Ignition SCADA Crack: Tips and Tricks for Optimizing Your SCADA System Perfor



This page contains detailed information about how to use the exploit/multi/scada/inductive_ignition_rce metasploit module. For list of all metasploit modules, visit the Metasploit Module Library.


Name: Inductive Automation Ignition Remote Code ExecutionModule: exploit/multi/scada/inductive_ignition_rceSource code: modules/exploits/multi/scada/inductive_ignition_rce.rbDisclosure date: 2020-06-11Last modification time: 2021-08-27 17:15:33 +0000Supported architecture(s): -Supported platform(s): Unix, WindowsTarget service / protocol: http, httpsTarget network port(s): 80, 443, 3000, 8000, 8008, 8080, 8088, 8443, 8880, 8888List of CVEs: CVE-2020-10644, CVE-2020-12004




inductive automation's ignition scada crack



Oil and gas pipelines are important ties to connect the production, transportation, and marketing as the transportation tool of petroleum and natural gas. Petroleum and natural gas both belong to state key supervision hazardous chemicals, which are inflammable, explosive, and toxic substances. Hence, it is easy for them to cause the accident of fire and explosion upon leakage and ignition source. In addition, the oil and gas pipeline used for transporting oil and gas resources are a major hazard because of the long pipeline, high pressure, and changeable environment. Hence, the safety management, detection, and protection of oil and gas pipelines are key technologies that are involved in the prevention and control of national production accidents. In the leakage and explosion accidents of oil and gas pipeline, one of the most critical risk factors affecting its safety is the cracking of the pipe weld. Many catastrophic accidents originate from the rapid expansion of the crack under the internal pressure of the pipeline fluid, and the cracking of the pipeline is a dynamic process. Therefore, the research on detecting and evaluating the in-service inspection of weld crack propagation is very important in the field of engineering practice. Besides, the magnetic flux leakage (MFL) technology which was originated from 1960s integrates nondestructive testing, magnetic physics, and metallography and has been widely used to detection in the storage tank and pipelines because of its high accuracy, reliability, and easy automation [1, 2]. 2ff7e9595c


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