Comparison Overview
Electrical Engineering Department, Sharif University of Technology

Electrical Engineering Department, Sharif University of Technology
Azadi Ave., Tehran, undefined, undefined, IR
Last Update: 18/12/2025
The Electrical Engineering Department of Sharif University of Technology (SUT) was founded in 1967, one year after the establishment of Sharif University of Technology, in order to address the technical needs of the Iranian industry. While initially offering an undergra...

Stanford University
450 Jane Stanford Way, Stanford, CA, US, 94305
Last Update: 08/05/2026
Stanford is a place of discovery, creativity and innovation located in the San Francisco Bay Area on the ancestral land of the Muwekma Ohlone Tribe. Dedicated to our founding mission—benefitting society through research and education—we are working toward a sustainable ...
Compliance Ranges Comparison

Electrical Engineering Department, Sharif University of Technology







Stanford University






Benchmark & Cyber Underwriting Signals
Incidents vs Higher Education Industry Avg (This Year)
No incidents recorded for Electrical Engineering Department, Sharif University of Technology in 2026.
Incidents vs Higher Education Industry Avg (This Year)
Stanford University has 191.26% more incidents than the average of all companies with at least one recorded incident.
Incident History - Electrical Engineering Department, Sharif University of Technology (X = Date, Y = Severity)
Electrical Engineering Department, Sharif University of Technology cyber incidents detection timeline including parent company and subsidiaries.
Incident History - Stanford University (X = Date, Y = Severity)
Stanford University cyber incidents detection timeline including parent company and subsidiaries.
Notable Incidents

Electrical Engineering Department, Sharif University of Technology

Stanford University
FAQ
Latest Global CVEs
Buffer Overflow vulnerability in Systerel S2OPC 1.7.3 allows a remote attacker to cause a denial of service via the Alarm/Conditions wrapper when processing PublishResponse EventNotificationList data
- https://github.com/gff-cw/information/issues/18
- https://github.com/systerel/S2OPC/blob/S2OPC_Toolkit_1.7.3/src/ClientServer/address_space/sopc_event_manager.c
- https://github.com/systerel/S2OPC/blob/S2OPC_Toolkit_1.7.3/src/ClientServer/frontend/client_wrapper/alarm_conditions/libs2opc_client_alarm_conditions.c
- https://github.com/systerel/S2OPC/blob/S2OPC_Toolkit_1.7.3/src/ClientServer/frontend/client_wrapper/internal/state_machine.c
- https://gitlab.com/systerel/S2OPC/-/work_items/1781
Buffer Overflow vulnerability in Systerel S2OPC 1.7.3 allows a remote attacker to cause a denial of service via the LockedStaMac_ProcessMsg_DeleteMonitoredItemsResponse and SOPC_StaMac_NewDeleteMonitoredItems in the client wrapper DeleteMonitoredItems path
- https://github.com/gff-cw/information/issues/16
- https://github.com/systerel/S2OPC/blob/master/samples/ClientServer/client_wrapper/examples/subscribe.c
- https://github.com/systerel/S2OPC/blob/master/src/ClientServer/frontend/client_wrapper/internal/state_machine.c
- https://gitlab.com/systerel/S2OPC/-/work_items/1780
In open62541 1.5.5, a server-side use-after-free exists in the local MonitoredItem callback path. The issue occurs when UA_Subscription_localPublish continues to use the current UA_Notification after a callback invokes UA_Server_deleteMonitoredItem for the current local MonitoredItem. This allows a remote attacker to cause a denial of service.
H5Z__filter_nbit in H5Znbit.c in HDF5 through 2.3.0 dereferences cd_values[0] through cd_values[4] without validating that cd_values is non-NULL or that cd_nelmts is at least 5, the fixed size of the filter's header. This allows attackers to cause a denial of service via a crafted HDF5 file that stores the N-Bit filter pipeline message with zero client-data values, opened and read via H5Dread, e.g. by the h5ls or h5repack tools.
H5O__layout_decode in H5Olayout.c in HDF5 through 2.3.0 does not validate that a chunked dataset's stored chunk-layout dimensionality matches its dataspace rank when an existing dataset is opened, whereas this check is performed only at dataset-creation time. This allows attackers to cause a denial of service (divide-by-zero and application crash in H5S__hyper_iter_get_seq_list in src/H5Shyper.c) via a crafted HDF5 file with mismatched chunk/dataspace ranks that is opened and read via H5Dopen2 and H5Dread, e.g. by the h5repack tool.