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Comparison Overview

Richardson RFPDRichardson RFPD
VS
STMicroelectronicsSTMicroelectronics
Richardson RFPD

Richardson RFPD

1950 S Batavia Ave, Geneva, Illinois, 60134, US

Last Update: 30/12/2025

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755/1000Fair

Richardson RFPD, an Arrow Electronics company, is a global leader in the RF, wireless, IoT and power technologies markets. It brings relationships with many of the industry’s top radio frequency and power component suppliers. Whether it’s designing components or enginee...

NAICS:3344
NAICS Definition:Semiconductor and Other Electronic Component Manufacturing
Employees:301
Subsidiaries:50
12-month incidents
0
Known data breaches
0
Attack type number
0
STMicroelectronics

STMicroelectronics

39, Chemin du Champ des Filles, C. P. 21, Geneva, Switzerland, CH, CH 1228 Plan-Les-Ouates

Last Update: 14/09/2026

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807/1000Good

ST is a global semiconductor leader delivering intelligent and energy-efficient products and solutions that power the electronics at the heart of everyday life. ST’s products are found everywhere today, and together with our customers, we are enabling smarter driving an...

NAICS:3344
NAICS Definition:Semiconductor and Other Electronic Component Manufacturing
Employees:34,873
Subsidiaries:0
12-month incidents
2
Known data breaches
0
Attack type number
1

Compliance Ranges Comparison

Based On Specific Ai Models Category
Richardson RFPD

Richardson RFPD

-
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
STMicroelectronics

STMicroelectronics

-
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 Semiconductor Manufacturing Industry Avg (This Year)

No incidents recorded for Richardson RFPD in 2026.

Incidents

Incidents vs Semiconductor Manufacturing Industry Avg (This Year)

STMicroelectronics has 98.02% more incidents than the average of all companies with at least one recorded incident.

Incidents

Incident History - Richardson RFPD (X = Date, Y = Severity)

Richardson RFPD cyber incidents detection timeline including parent company and subsidiaries.

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

Incident History - STMicroelectronics (X = Date, Y = Severity)

STMicroelectronics cyber incidents detection timeline including parent company and subsidiaries.

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

Notable Incidents

Last Cyber / HR Incidents / Global...
Richardson RFPD

Richardson RFPD

Incidents
No explicit notable incidents reported.
STMicroelectronics

STMicroelectronics

Incidents
🔒 Incident : Vulnerability
NXPTHASTM1775572928
🔒 Incident : Vulnerability
ZERTHEESPSTMARD1783341911

FAQ

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

Latest Global CVEs

CVE-2026-105761
SUMMARY

Dify is an open-source LLM app development platform. Prior to 1.16.0, the PUT /console/api/apps/<app_id>/server endpoint in api/controllers/console/app/mcp_server.py used AppMCPServerController.put() to retrieve an AppMCPServer by the client-supplied server ID without verifying that the server belonged to the requested application and tenant. An authenticated workspace member could therefore change another application's MCP server status and parameters, potentially redirecting data or disabling the service. This issue is fixed in version 1.16.0.

PUBLISHED
Date2026-10-05
UPDATED
Date2026-10-05
RISK INFORMATION (Score: 7.1)
CVSS3
Base Score: 7.1
Complexity: LOW
CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:U/C:N/I:H/A:L
IMPACT SCORE
4.2
EXPLOITABILITY
2.8
CVE-2026-105760
SUMMARY

vLLM is an inference and serving engine for large language models. Prior to 0.30.0, a caller can use the request-level media_io_kwargs field to select the GLMGA video backend and supply large values for the fps and max_frames options without a strict work ceiling. GLMGA constructs and deduplicates an attacker-sized pre-decode frame-index list, allowing a compact request and tiny valid video to consume disproportionate CPU time and memory in the shared media-loading executor. This issue is fixed in version 0.30.0.

PUBLISHED
Date2026-10-05
UPDATED
Date2026-10-05
RISK INFORMATION (Score: 5.3)
CVSS3
Base Score: 5.3
Complexity: LOW
CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:L
IMPACT SCORE
1.4
EXPLOITABILITY
3.9
CVE-2026-105759
SUMMARY

vLLM is an inference and serving engine for large language models. Prior to 0.30.0, the Rust frontend's track_http_metrics middleware records the raw HTTP method token as a Prometheus label for requests reaching registered routes. An unauthenticated attacker can send unique arbitrary method tokens to unguarded routes such as /tokenize, causing Prometheus's Family::get_or_create function to permanently create counter and histogram label sets. Those label sets increase process memory usage and enlarge the /metrics response until the service or monitoring path is exhausted. This issue is fixed in version 0.30.0.

PUBLISHED
Date2026-10-05
UPDATED
Date2026-10-05
RISK INFORMATION (Score: 5.9)
CVSS3
Base Score: 5.9
Complexity: HIGH
CVSS:3.1/AV:N/AC:H/PR:N/UI:N/S:U/C:N/I:N/A:H
IMPACT SCORE
3.6
EXPLOITABILITY
2.2
CVE-2026-105758
SUMMARY

vLLM is an inference and serving engine for large language models. From 0.24.0 until 0.30.0, the Qwen2VLVideoBackend and Qwen3VLVideoBackend classes accept request-level values for the media_io_kwargs.video.max_frames and media_io_kwargs.video.fps fields without enforcing server-side ceilings. An unauthenticated caller can submit these values to the /tokenize endpoint, causing the sampler to decode every frame selected from attacker-controlled video input, consume disproportionate frontend memory, and potentially terminate the API process before scheduling or admission control. The Rust frontend is not affected because it rejects the media_io_kwargs field. This issue is fixed in version 0.30.0.

PUBLISHED
Date2026-10-05
UPDATED
Date2026-10-05
RISK INFORMATION (Score: 5.3)
CVSS3
Base Score: 5.3
Complexity: LOW
CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:L
IMPACT SCORE
1.4
EXPLOITABILITY
3.9
CVE-2026-105757
SUMMARY

vLLM is an inference and serving engine for large language models. Prior to 0.30.0, structured-output request failures can escape request-scoped validation and reach the EngineCore fatal-error path. A per-request backend mismatch can re-raise a grammar compilation exception, padding produced by the ngram_gpu speculative-decoding mode can pass a negative token to guidance validation, and the Rust frontend can admit empty structured-output values that the Python frontend rejects, allowing ordinary constrained-generation requests to terminate the shared engine. This issue is fixed in version 0.30.0.

PUBLISHED
Date2026-10-05
UPDATED
Date2026-10-05
RISK INFORMATION (Score: 6.5)
CVSS3
Base Score: 6.5
Complexity: LOW
CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H
IMPACT SCORE
3.6
EXPLOITABILITY
2.8