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Comparison Overview

NUS Department of Electrical and Computer EngineeringNUS Department of Electrical and Computer Engineering
VS
University of South FloridaUniversity of South Florida
NUS Department of Electrical and Computer Engineering

NUS Department of Electrical and Computer Engineering

4 Engineering Drive 3, Singapore, undefined, 117583, SG

Last Update: 01/04/2026

View Profile
Between 750 and 799
https://cde.nus.edu.sg/ece/
769/1000Fair

Department of Electrical Engineering (changed to Electrical and Computer Engineering in 2000) was established in 1969, as one of the three departments of the Faculty of Engineering (FoE), in the Singapore University (predecessor of the National University of Singapore) ...

NAICS:6113
NAICS Definition:Colleges, Universities, and Professional Schools
Employees:8
Subsidiaries:23
12-month incidents
0
Known data breaches
0
Attack type number
0
University of South Florida

University of South Florida

4202 East Fowler Ave, Address 2, Tampa, Florida, US, 33620-9951

Last Update: 01/04/2026

View Profile
Between 800 and 849
http://www.usf.edu
805/1000Good

The University of South Florida, a high-impact research university dedicated to student success and committed to community engagement, generates an annual economic impact of more than $6 billion. With campuses in Tampa, St. Petersburg and Sarasota-Manatee, USF serves ap...

NAICS:6113
NAICS Definition:Colleges, Universities, and Professional Schools
Employees:18,927
Subsidiaries:3
12-month incidents
0
Known data breaches
0
Attack type number
0

Compliance Ranges Comparison

Based On Specific Ai Models Category
NUS Department of Electrical and Computer Engineering

NUS Department of Electrical and Computer Engineering

-
ISO 27001Not verified
ISO 27001
-
SOC2 Type 1Not verified
SOC2 Type 1
-
SOC2 Type 2Not verified
SOC2 Type 2
-
GDPRNot verified
GDPR
-
PCI DSSNot verified
PCI DSS
-
HIPAANot verified
HIPAA
University of South Florida

University of South Florida

-
ISO 27001Not verified
ISO 27001
-
SOC2 Type 1Not verified
SOC2 Type 1
-
SOC2 Type 2Not verified
SOC2 Type 2
-
GDPRNot verified
GDPR
-
PCI DSSNot verified
PCI DSS
-
HIPAANot verified
HIPAA

Benchmark & Cyber Underwriting Signals

Incidents vs Higher Education Industry Avg (This Year)

No incidents recorded for NUS Department of Electrical and Computer Engineering in 2026.

Incidents

Incidents vs Higher Education Industry Avg (This Year)

No incidents recorded for University of South Florida in 2026.

Incidents

Incident History - NUS Department of Electrical and Computer Engineering (X = Date, Y = Severity)

NUS Department of Electrical and Computer Engineering cyber incidents detection timeline including parent company and subsidiaries.

R - Ransomware
C - Cyber Attack
D - Data Breach
V - Vulnerability

Incident History - University of South Florida (X = Date, Y = Severity)

University of South Florida cyber incidents detection timeline including parent company and subsidiaries.

No timeline data available
R - Ransomware
C - Cyber Attack
D - Data Breach
V - Vulnerability

Notable Incidents

Last Cyber / HR Incidents / Global...
NUS Department of Electrical and Computer Engineering

NUS Department of Electrical and Computer Engineering

Incidents
No explicit notable incidents reported.
University of South Florida

University of South Florida

Incidents
No explicit notable incidents reported.

FAQ

Between NUS Department of Electrical and Computer Engineering company and University of South Florida company, which one has the best AI Cybersecurity Score ?
Between NUS Department of Electrical and Computer Engineering company and University of South Florida company, which one has experienced more cyber incidents in the past ?
Between NUS Department of Electrical and Computer Engineering company and University of South Florida company, which one has experienced more cyber incidents this year ?
Between NUS Department of Electrical and Computer Engineering company and University of South Florida company, which one has experienced at least one ransomware attack ?
Between NUS Department of Electrical and Computer Engineering company and University of South Florida company, which one has experienced at least one data breach ?
Between NUS Department of Electrical and Computer Engineering company and University of South Florida company, which one has experienced at least one targeted cyberattack ?
Between NUS Department of Electrical and Computer Engineering company and University of South Florida company, which one has experienced at least one vulnerability ?
Between NUS Department of Electrical and Computer Engineering company and University of South Florida company, which one holds the most compliance certifications ?
Between NUS Department of Electrical and Computer Engineering company and University of South Florida company, which one holds the fewest compliance certifications ?
Between NUS Department of Electrical and Computer Engineering company and University of South Florida company, which one has the most subsidiaries ?
Between NUS Department of Electrical and Computer Engineering company and University of South Florida company, which one has the largest number of employees ?
Between NUS Department of Electrical and Computer Engineering and University of South Florida, which company holds both SOC 2 Type 1 certifications ?
Between NUS Department of Electrical and Computer Engineering and University of South Florida, which company holds both SOC 2 Type 2 certifications ?
Which company is ISO 27001 certified - NUS Department of Electrical and Computer Engineering or University of South Florida ?
Which company is PCI DSS compliant - NUS Department of Electrical and Computer Engineering or University of South Florida ?
Between NUS Department of Electrical and Computer Engineering and University of South Florida, which company complies with HIPAA regulations for healthcare data ?
Between NUS Department of Electrical and Computer Engineering and University of South Florida, which company complies with GDPR requirements ?

Latest Global CVEs

CVE-2026-18577
SUMMARY

An incomplete patch for CVE-2026-18556 allows for authentication bypass and account takeover in N-central Versions through 2026.3.1

PUBLISHED
Date2026-08-02
UPDATED
Date2026-08-02
RISK INFORMATION (Score: )
CVSS4
Base Score: 8.2
Complexity: HIGH
CVSS:4.0/AV:N/AC:H/AT:N/PR:N/UI:N/VC:H/VI:N/VA:N/SC:L/SI:L/SA:L/E:A/CR:X/IR:X/AR:X/MAV:X/MAC:X/MAT:X/MPR:X/MUI:X/MVC:X/MVI:X/MVA:X/MSC:X/MSI:X/MSA:X/S:X/AU:X/R:X/V:X/RE:X/U:X
IMPACT SCORE
NA
EXPLOITABILITY
NA
CVE-2026-10848
SUMMARY

The OCPP 1.6 client in subsys/net/lib/ocpp parsed inbound WAMP RPC frames in parse_rpc_msg() (subsys/net/lib/ocpp/ocpp_j.c) using a hand-rolled helper, extract_string_field(), that copied the message's uid and action fields with strncpy(out_buf, token + 1, outlen - 1) and then scanned the result with strchr(out_buf, '"'). Because strncpy does not NUL-terminate the destination when the source is at least outlen - 1 (127) bytes long, the subsequent strchr reads past the 128-byte destination buffer into adjacent stack memory; if a " byte is found beyond the buffer, a one-byte out-of-bounds NUL write also occurs. A related defect in extract_payload() runs strchr/strrchr over the receive buffer, which may not be NUL-terminated when a maximal-length frame fills it. The parsed bytes come directly from the OCPP central-system server over a websocket: the reader thread fills recv_buf via websocket_recv_msg() and calls parse_rpc_msg() on each inbound DATA frame (subsys/net/lib/ocpp/ocpp.c). A malicious or compromised central server, or an on-path attacker (OCPP is commonly deployed over plain ws://), can send an RPC frame whose uid or action field is 127+ bytes with no closing quote, triggering the out-of-bounds access. The primary impact is a remotely triggerable denial of service: the unbounded scan can fault on an unmapped page, and the stray NUL write can corrupt adjacent stack state. The over-read data is not reflected to the peer, so disclosure is limited. The feature is EXPERIMENTAL and must be explicitly enabled (CONFIG_OCPP). The fix replaces the manual parser with the bounds-respecting json_mixed_arr_parse() and copies the extracted uid with an explicitly NUL-terminated buffer, eliminating both over-reads.

PUBLISHED
Date2026-08-02
UPDATED
Date2026-08-02
RISK INFORMATION (Score: 7)
CVSS3
Base Score: 7.0
Complexity: HIGH
CVSS:3.1/AV:N/AC:H/PR:N/UI:N/S:U/C:L/I:L/A:H
IMPACT SCORE
4.7
EXPLOITABILITY
2.2
CVE-2026-9856
SUMMARY

A vulnerability in huggingface/transformers versions <=5.8.0.dev0 allows an attacker to perform arbitrary file writes via path traversal. The issue resides in the `save_pretrained()` methods of `PreTrainedTokenizerBase` and `ProcessorMixin`, where keys from the `chat_template` dictionary are used directly as filenames without proper validation. An attacker can exploit this by publishing a malicious Hugging Face Hub repository with a crafted `tokenizer_config.json` file. When a victim downloads and saves the tokenizer or processor, the attacker-controlled keys can escape the intended save directory, enabling arbitrary file writes with attacker-controlled content. This vulnerability affects multiple processors inheriting from `ProcessorMixin`, including Idefics, Florence, Gemma, Phi, and Qwen-VL.

PUBLISHED
Date2026-08-02
UPDATED
Date2026-08-02
RISK INFORMATION (Score: 7.1)
CVSS3
Base Score: 7.1
Complexity: LOW
CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:N/I:H/A:L
IMPACT SCORE
4.2
EXPLOITABILITY
2.8
CVE-2026-65321
SUMMARY

PyAthena prior to 3.35.4 contains a sql injection vulnerability that allows unauthenticated attackers to inject arbitrary SQL by exploiting improper quote-escaping in DefaultParameterFormatter.format(), which routes DELETE and CTAS statements to the _escape_hive function that backslash-escapes single quotes rather than doubling them. Because Athena and Trino do not treat backslashes as escape characters inside string literals, attacker-supplied input such as a single quote followed by SQL syntax causes the parser to terminate the string literal prematurely, enabling data exfiltration via UNION SELECT, execution of destructive statements, and attacker-controlled CTAS destination and content.

PUBLISHED
Date2026-08-02
UPDATED
Date2026-08-02
RISK INFORMATION (Score: 9.8)
CVSS3
Base Score: 9.8
Complexity: LOW
CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
CVSS4
Base Score: 9.3
Complexity: LOW
CVSS:4.0/AV:N/AC:L/AT:N/PR:N/UI:N/VC:H/VI:H/VA:H/SC:N/SI:N/SA:N/E:X/CR:X/IR:X/AR:X/MAV:X/MAC:X/MAT:X/MPR:X/MUI:X/MVC:X/MVI:X/MVA:X/MSC:X/MSI:X/MSA:X/S:X/AU:X/R:X/V:X/RE:X/U:X
IMPACT SCORE
5.9
EXPLOITABILITY
3.9
CVE-2026-10774
SUMMARY

Zephyr's Bluetooth Mesh subnet key management leaks one PSA Crypto key slot on every subnet-key teardown. In subsys/bluetooth/mesh/subnet.c, net_keys_create() imports the Private Beacon Key into a PSA key slot under CONFIG_BT_MESH_PRIV_BEACONS (enabled by default), but subnet_keys_destroy() guarded the matching psa_destroy_key() with CONFIG_BT_MESH_V1d1. That Kconfig symbol was removed when explicit Mesh 1.0.1 support was dropped, so the destroy branch became permanently dead code and the import is never balanced by a destroy. The imbalanced teardown is reached every time subnet keys are destroyed: deleting a subnet (Config Server NetKey Delete), completing a Key Refresh Procedure (which retires the old key set), and resetting/re-provisioning the node. The over-the-air triggers are processed only under the node's device key, so they are exercisable by the provisioner or network administrator that owns the node, reachable over the Bluetooth Mesh network. With the default CONFIG_MBEDTLS_PSA_KEY_SLOT_COUNT of 16, repeated add/delete or key-refresh cycles exhaust the shared PSA key-slot pool after roughly a dozen rounds. Once exhausted, bt_mesh_private_beacon_key() and thus subnet creation fail: the node can no longer add subnets or complete key refresh, and other PSA crypto consumers on the device may be starved, until the device is rebooted. The fix aligns the destroy guard with the import guard (CONFIG_BT_MESH_PRIV_BEACONS) so each slot is freed.

PUBLISHED
Date2026-08-02
UPDATED
Date2026-08-02
RISK INFORMATION (Score: 2.4)
CVSS3
Base Score: 2.4
Complexity: LOW
CVSS:3.1/AV:A/AC:L/PR:H/UI:N/S:U/C:N/I:N/A:L
IMPACT SCORE
1.4
EXPLOITABILITY
0.9