Comparison Overview

Flinchbaugh Engineering, Inc.

VS

Metalphoto: photosensitive anodized aluminum

Flinchbaugh Engineering, Inc.

4387 Run Way, York, PA, 17406, US
Last Update: 2025-11-27

Flinchbaugh Engineering is an employee-owned contract manufacturing company located in York, Pennsylvania serving select vertical markets in the capital goods sector -- heavy equipment, energy, transportation, petrochemical, rail, bearings, heat exchanger and agriculture. For more than 30 years, we have consistently delivered value to major corporate clients through innovative sourcing solutions. Flinchbaugh Engineering enables clients to achieve strategic business objectives by providing non-traditional alternatives to in-house manufacturing of quality critical precision machined parts and product lines. Our manufacturing campus includes four buildings each focused on the requirements of specific applications. Within these buildings, our team of highly skilled employee owners operate the best machine tool technology in a cellular work structure characterized by Lean Six Sigma and TPM. We take great pride in employee ownership and the level of engagement this drives across all areas of our business. The commitment to Kaizen and customer satisfaction sets us apart as an industry leader. A visit to Flinchbaugh Engineering will quickly reveal that our employee owners are our greatest competitive advantage.

NAICS: None
NAICS Definition:
Employees: 92
Subsidiaries: 0
12-month incidents
0
Known data breaches
0
Attack type number
0

Metalphoto: photosensitive anodized aluminum

18531 S Miles Rd, None, Cleveland, Ohio, US, 44128
Last Update: 2025-11-27
Between 750 and 799

For over 70 years, engineers have specified Metalphoto® photosensitive anodized aluminum where permanent product or asset identification is critical. Metalphoto’s durability comes from its image – which is sealed inside of the anodized aluminum, providing outstanding resistance to corrosion, sunlight degradation, abrasion, high-temperatures and chemical exposure. Beyond durability, Metalphoto's unique imaging process allows for the efficient production of many one-of-a-kind items such as asset tracking barcode labels, serialized nameplates, architectural signage and anti-counterfeit printing. Metalphoto is used in a wide variety of applications with operationally critical equipment or assets such as defense, aerospace, energy/utility, transportation, facility management and healthcare.

NAICS: None
NAICS Definition: Others
Employees: None
Subsidiaries: 0
12-month incidents
0
Known data breaches
0
Attack type number
0

Compliance Badges Comparison

Security & Compliance Standards Overview

https://images.rankiteo.com/companyimages/flinchbaugh-engineering-inc..jpeg
Flinchbaugh Engineering, Inc.
ISO 27001
ISO 27001 certification not verified
Not verified
SOC2 Type 1
SOC2 Type 1 certification not verified
Not verified
SOC2 Type 2
SOC2 Type 2 certification not verified
Not verified
GDPR
GDPR certification not verified
Not verified
PCI DSS
PCI DSS certification not verified
Not verified
HIPAA
HIPAA certification not verified
Not verified
https://images.rankiteo.com/companyimages/metalphoto.jpeg
Metalphoto: photosensitive anodized aluminum
ISO 27001
ISO 27001 certification not verified
Not verified
SOC2 Type 1
SOC2 Type 1 certification not verified
Not verified
SOC2 Type 2
SOC2 Type 2 certification not verified
Not verified
GDPR
GDPR certification not verified
Not verified
PCI DSS
PCI DSS certification not verified
Not verified
HIPAA
HIPAA certification not verified
Not verified
Compliance Summary
Flinchbaugh Engineering, Inc.
100%
Compliance Rate
0/4 Standards Verified
Metalphoto: photosensitive anodized aluminum
0%
Compliance Rate
0/4 Standards Verified

Benchmark & Cyber Underwriting Signals

Incidents vs Mechanical Or Industrial Engineering Industry Average (This Year)

No incidents recorded for Flinchbaugh Engineering, Inc. in 2025.

Incidents vs Mechanical Or Industrial Engineering Industry Average (This Year)

No incidents recorded for Metalphoto: photosensitive anodized aluminum in 2025.

Incident History — Flinchbaugh Engineering, Inc. (X = Date, Y = Severity)

Flinchbaugh Engineering, Inc. cyber incidents detection timeline including parent company and subsidiaries

Incident History — Metalphoto: photosensitive anodized aluminum (X = Date, Y = Severity)

Metalphoto: photosensitive anodized aluminum cyber incidents detection timeline including parent company and subsidiaries

Notable Incidents

Last 3 Security & Risk Events by Company

https://images.rankiteo.com/companyimages/flinchbaugh-engineering-inc..jpeg
Flinchbaugh Engineering, Inc.
Incidents

No Incident

https://images.rankiteo.com/companyimages/metalphoto.jpeg
Metalphoto: photosensitive anodized aluminum
Incidents

No Incident

FAQ

Metalphoto: photosensitive anodized aluminum company demonstrates a stronger AI Cybersecurity Score compared to Flinchbaugh Engineering, Inc. company, reflecting its advanced cybersecurity posture governance and monitoring frameworks.

Historically, Metalphoto: photosensitive anodized aluminum company has disclosed a higher number of cyber incidents compared to Flinchbaugh Engineering, Inc. company.

In the current year, Metalphoto: photosensitive anodized aluminum company and Flinchbaugh Engineering, Inc. company have not reported any cyber incidents.

Neither Metalphoto: photosensitive anodized aluminum company nor Flinchbaugh Engineering, Inc. company has reported experiencing a ransomware attack publicly.

Neither Metalphoto: photosensitive anodized aluminum company nor Flinchbaugh Engineering, Inc. company has reported experiencing a data breach publicly.

Neither Metalphoto: photosensitive anodized aluminum company nor Flinchbaugh Engineering, Inc. company has reported experiencing targeted cyberattacks publicly.

Neither Flinchbaugh Engineering, Inc. company nor Metalphoto: photosensitive anodized aluminum company has reported experiencing or disclosing vulnerabilities publicly.

Neither Flinchbaugh Engineering, Inc. nor Metalphoto: photosensitive anodized aluminum holds any compliance certifications.

Neither company holds any compliance certifications.

Neither Flinchbaugh Engineering, Inc. company nor Metalphoto: photosensitive anodized aluminum company has publicly disclosed detailed information about the number of their subsidiaries.

Neither Flinchbaugh Engineering, Inc. nor Metalphoto: photosensitive anodized aluminum holds SOC 2 Type 1 certification.

Neither Flinchbaugh Engineering, Inc. nor Metalphoto: photosensitive anodized aluminum holds SOC 2 Type 2 certification.

Neither Flinchbaugh Engineering, Inc. nor Metalphoto: photosensitive anodized aluminum holds ISO 27001 certification.

Neither Flinchbaugh Engineering, Inc. nor Metalphoto: photosensitive anodized aluminum holds PCI DSS certification.

Neither Flinchbaugh Engineering, Inc. nor Metalphoto: photosensitive anodized aluminum holds HIPAA certification.

Neither Flinchbaugh Engineering, Inc. nor Metalphoto: photosensitive anodized aluminum holds GDPR certification.

Latest Global CVEs (Not Company-Specific)

Description

Angular is a development platform for building mobile and desktop web applications using TypeScript/JavaScript and other languages. Prior to versions 19.2.16, 20.3.14, and 21.0.1, there is a XSRF token leakage via protocol-relative URLs in angular HTTP clients. The vulnerability is a Credential Leak by App Logic that leads to the unauthorized disclosure of the Cross-Site Request Forgery (XSRF) token to an attacker-controlled domain. Angular's HttpClient has a built-in XSRF protection mechanism that works by checking if a request URL starts with a protocol (http:// or https://) to determine if it is cross-origin. If the URL starts with protocol-relative URL (//), it is incorrectly treated as a same-origin request, and the XSRF token is automatically added to the X-XSRF-TOKEN header. This issue has been patched in versions 19.2.16, 20.3.14, and 21.0.1. A workaround for this issue involves avoiding using protocol-relative URLs (URLs starting with //) in HttpClient requests. All backend communication URLs should be hardcoded as relative paths (starting with a single /) or fully qualified, trusted absolute URLs.

Risk Information
cvss4
Base: 7.7
Severity: LOW
CVSS:4.0/AV:N/AC:L/AT:N/PR:N/UI:N/VC:N/VI:N/VA:N/SC:H/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
Description

Forge (also called `node-forge`) is a native implementation of Transport Layer Security in JavaScript. An Uncontrolled Recursion vulnerability in node-forge versions 1.3.1 and below enables remote, unauthenticated attackers to craft deep ASN.1 structures that trigger unbounded recursive parsing. This leads to a Denial-of-Service (DoS) via stack exhaustion when parsing untrusted DER inputs. This issue has been patched in version 1.3.2.

Risk Information
cvss4
Base: 8.7
Severity: LOW
CVSS:4.0/AV:N/AC:L/AT:N/PR:N/UI:N/VC:N/VI:N/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
Description

Forge (also called `node-forge`) is a native implementation of Transport Layer Security in JavaScript. An Integer Overflow vulnerability in node-forge versions 1.3.1 and below enables remote, unauthenticated attackers to craft ASN.1 structures containing OIDs with oversized arcs. These arcs may be decoded as smaller, trusted OIDs due to 32-bit bitwise truncation, enabling the bypass of downstream OID-based security decisions. This issue has been patched in version 1.3.2.

Risk Information
cvss4
Base: 6.3
Severity: LOW
CVSS:4.0/AV:N/AC:L/AT:P/PR:N/UI:N/VC:N/VI:L/VA:N/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
Description

Suricata is a network IDS, IPS and NSM engine developed by the OISF (Open Information Security Foundation) and the Suricata community. Prior to versions 7.0.13 and 8.0.2, working with large buffers in Lua scripts can lead to a stack overflow. Users of Lua rules and output scripts may be affected when working with large buffers. This includes a rule passing a large buffer to a Lua script. This issue has been patched in versions 7.0.13 and 8.0.2. A workaround for this issue involves disabling Lua rules and output scripts, or making sure limits, such as stream.depth.reassembly and HTTP response body limits (response-body-limit), are set to less than half the stack size.

Risk Information
cvss3
Base: 7.5
Severity: LOW
CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H
Description

Suricata is a network IDS, IPS and NSM engine developed by the OISF (Open Information Security Foundation) and the Suricata community. In versions from 8.0.0 to before 8.0.2, a NULL dereference can occur when the entropy keyword is used in conjunction with base64_data. This issue has been patched in version 8.0.2. A workaround involves disabling rules that use entropy in conjunction with base64_data.

Risk Information
cvss3
Base: 7.5
Severity: LOW
CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H