Trusted Platform Module ST33KTPM2A / ST33KTPM2I

Certificate details

Certificate ID #5103
Status active
Validation dates 08.12.2025
Sunset date 07-12-2030
Standard FIPS 140-3
Security level 2
Type Hardware
Embodiment Single Chip
Caveat When installed, initialized and configured as specified in Section 11 of the Security Policy; When operated in approved mode
Exceptions
  • Operational environment: N/A
  • Physical security: Level 3
  • Non-invasive security: N/A
  • Mitigation of other attacks: N/A
Description The ST33KTPM2A and ST33KTPM2I Trusted Platform Modules are discrete security modules designed to be integrated into respectively automotive and industrial embedded electronic systems. The security module is used for cryptographic keys generation, keys storage, keys management and secure date storage for digital certificates.
Vendor STMicroelectronics http://www.st.com
Lab UL Verification Services, Inc.
References

This certificate's webpage directly references 0 certificates, transitively this expands into 0 certificates.

Security policy

Extracted keywords

Symmetric Algorithms
AES, AES-, CAST, HMAC
Asymmetric Algorithms
RSA 2048, ECDH, ECDSA, EdDSA, ECC
Post-quantum Algorithms
LMS
Hash functions
SHA-1, SHA1, SHA256, SHA3-256, SHA3-384, SHA-3
Schemes
MAC, Key agreement, Key Agreement
Randomness
DRBG, RNG, RBG
Libraries
NSS
Elliptic Curves
P-256, P-384, P-521, P-512, NIST P-256, Ed448
Block cipher modes
CBC

JavaCard API constants
X448
Trusted Execution Environments
PSP
Vendor
STMicroelectronics

Security level
Level 2, Level 1, Level 3

Automated analysis

Automated inference - use with caution

All attributes shown in this section (e.g., links between certificates, products, vendors, and known CVEs) are generated by automated heuristics and have not been reviewed by humans. These methods can produce false positives or false negatives and should not be treated as definitive without independent verification. This applies equally to the Cross-references section below. If you want to know more about how this data is computed and how reliable it is, see our documentation on automated analysis. If you believe any information here is inaccurate or harmful, please submit feedback.

No automatically derived data are available in this section.

Cross-references

No references are available for this certificate.

Processing updates

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Raw data

{
  "_type": "sec_certs.sample.fips.FIPSCertificate",
  "cert_id": 5103,
  "dgst": "fb7fb643eff7a6fe",
  "heuristics": {
    "_type": "sec_certs.sample.fips.FIPSCertificate.Heuristics",
    "algorithms": {
      "_type": "Set",
      "elements": [
        "AES-CFB128A5356",
        "HMAC-SHA-1A5355",
        "EDDSA SigGenA5359",
        "RSA SigVer (FIPS186-5)A5357",
        "RSA KeyGen (FIPS186-5)A5357",
        "SHA2-384A5353",
        "KAS-ECC Sp800-56Ar3A5358",
        "RSA Decryption Primitive Sp800-56Br2A5357",
        "ECDSA SigGen (FIPS186-4)A5358",
        "EDDSA SigVerA5359",
        "EDDSA KeyVerA5359",
        "EDDSA KeyGenA5359",
        "HMAC-SHA3-256A5355",
        "AES-ECBA5356",
        "SHA3-384A5352",
        "HMAC-SHA2-384A5355",
        "AES-OFBA5356",
        "ECDSA KeyGen (FIPS186-4)A5358",
        "SHA2-256A5353",
        "HMAC-SHA2-512A5355",
        "SHA-1A5353",
        "LMS SigVerA5360",
        "RSA SigGen (FIPS186-5)A5357",
        "ECDSA SigVer (FIPS186-4)A5358",
        "SHA2-512A5353",
        "ECDSA KeyVer (FIPS186-4)A5358",
        "HMAC-SHA2-256A5355",
        "HMAC-SHA3-384A5355",
        "AES-CTRA5356",
        "SHA3-256A5352",
        "KDF SP800-108A5354",
        "Hash DRBGA5351",
        "KTS-IFCA5357",
        "AES-CBCA5356"
      ]
    },
    "cpe_matches": null,
    "direct_transitive_cves": null,
    "extracted_versions": {
      "_type": "Set",
      "elements": [
        "-"
      ]
    },
    "indirect_transitive_cves": null,
    "module_processed_references": {
      "_type": "sec_certs.sample.certificate.References",
      "directly_referenced_by": null,
      "directly_referencing": null,
      "indirectly_referenced_by": null,
      "indirectly_referencing": null
    },
    "module_prunned_references": {
      "_type": "Set",
      "elements": []
    },
    "policy_processed_references": {
      "_type": "sec_certs.sample.certificate.References",
      "directly_referenced_by": null,
      "directly_referencing": null,
      "indirectly_referenced_by": null,
      "indirectly_referencing": null
    },
    "policy_prunned_references": {
      "_type": "Set",
      "elements": []
    },
    "related_cves": null,
    "verified_cpe_matches": null
  },
  "pdf_data": {
    "_type": "sec_certs.sample.fips.FIPSCertificate.PdfData",
    "keywords": {
      "asymmetric_crypto": {
        "ECC": {
          "ECC": {
            "ECC": 82
          },
          "ECDH": {
            "ECDH": 2
          },
          "ECDSA": {
            "ECDSA": 25
          },
          "EdDSA": {
            "EdDSA": 5
          }
        },
        "RSA": {
          "RSA 2048": 1
        }
      },
      "certification_process": {},
      "cipher_mode": {
        "CBC": {
          "CBC": 2
        }
      },
      "cplc_data": {},
      "crypto_engine": {},
      "crypto_library": {
        "NSS": {
          "NSS": 3
        }
      },
      "crypto_protocol": {},
      "crypto_scheme": {
        "KA": {
          "Key Agreement": 2,
          "Key agreement": 3
        },
        "MAC": {
          "MAC": 53
        }
      },
      "device_model": {},
      "ecc_curve": {
        "Edwards": {
          "Ed448": 7
        },
        "NIST": {
          "NIST P-256": 4,
          "P-256": 62,
          "P-384": 22,
          "P-512": 2,
          "P-521": 12
        }
      },
      "eval_facility": {},
      "fips_cert_id": {
        "Cert": {
          "#1": 4,
          "#10": 2,
          "#11": 2,
          "#12": 2,
          "#2": 2,
          "#3": 1,
          "#4": 1,
          "#5": 1,
          "#6": 1,
          "#7": 2,
          "#8": 1,
          "#9": 1
        }
      },
      "fips_certlike": {
        "Certlike": {
          "AES - 128 / 192 / 256 128 / 192 / 256": 1,
          "AES CBC 128": 2,
          "DRBG 512": 1,
          "HMAC SHA-1": 1,
          "HMAC-SHA-1": 6,
          "HMAC-SHA1": 2,
          "PKCS1-v1_5": 1,
          "RSA 2048": 1,
          "RSASSA-PKCS1-v1_5": 2,
          "SHA-1": 15,
          "SHA-3": 1,
          "SHA1": 1,
          "SHA2- 384": 1,
          "SHA2-256": 17,
          "SHA2-384": 6,
          "SHA2-512": 7,
          "SHA256": 2,
          "SHA3- 256": 1,
          "SHA3-256": 4,
          "SHA3-384": 4
        }
      },
      "fips_security_level": {
        "Level": {
          "Level 1": 1,
          "Level 2": 10,
          "Level 3": 1
        }
      },
      "hash_function": {
        "SHA": {
          "SHA1": {
            "SHA-1": 15,
            "SHA1": 1
          },
          "SHA2": {
            "SHA256": 2
          },
          "SHA3": {
            "SHA-3": 1,
            "SHA3-256": 4,
            "SHA3-384": 4
          }
        }
      },
      "ic_data_group": {},
      "javacard_api_const": {
        "curves": {
          "X448": 6
        }
      },
      "javacard_packages": {},
      "javacard_version": {},
      "os_name": {},
      "pq_crypto": {
        "LMS": {
          "LMS": 9
        }
      },
      "randomness": {
        "PRNG": {
          "DRBG": 27
        },
        "RNG": {
          "RBG": 2,
          "RNG": 2
        }
      },
      "side_channel_analysis": {},
      "standard_id": {
        "BSI": {
          "AIS31": 1
        },
        "FIPS": {
          "FIPS 140-3": 19,
          "FIPS 180-4": 8,
          "FIPS 186-4": 4,
          "FIPS 186-5": 7,
          "FIPS 198-1": 6,
          "FIPS 202": 3,
          "FIPS PUB 140-3": 2,
          "FIPS PUB 202": 1,
          "FIPS186-4": 11,
          "FIPS186-5": 11
        },
        "ISO": {
          "ISO/IEC 13239": 2,
          "ISO/IEC 19790": 8,
          "ISO/IEC 19790:2012": 1,
          "ISO/IEC 24759": 16
        },
        "NIST": {
          "SP 800-108": 1,
          "SP 800-208": 1,
          "SP 800-38A": 5,
          "SP 800-56A": 1,
          "SP 800-56B": 2,
          "SP 800-90A": 1
        },
        "RFC": {
          "RFC5639": 3
        },
        "X509": {
          "X.509": 1
        }
      },
      "symmetric_crypto": {
        "AES_competition": {
          "AES": {
            "AES": 6,
            "AES-": 43
          },
          "CAST": {
            "CAST": 30
          }
        },
        "constructions": {
          "MAC": {
            "HMAC": 33
          }
        }
      },
      "tee_name": {
        "AMD": {
          "PSP": 4
        }
      },
      "tls_cipher_suite": {},
      "vendor": {
        "STMicroelectronics": {
          "STMicroelectronics": 99
        }
      },
      "vulnerability": {}
    },
    "policy_metadata": {
      "/Author": "Hawes, David J. (Fed)",
      "/CreationDate": "D:20251202114721-05\u002700\u0027",
      "/Creator": "Microsoft\u00ae Word for Microsoft 365",
      "/ModDate": "D:20251202114721-05\u002700\u0027",
      "/Producer": "Microsoft\u00ae Word for Microsoft 365",
      "/Title": "FIPS 140-3 Non-Proprietary Security Policy",
      "pdf_file_size_bytes": 1316625,
      "pdf_hyperlinks": {
        "_type": "Set",
        "elements": []
      },
      "pdf_is_encrypted": false,
      "pdf_number_of_pages": 96
    }
  },
  "state": {
    "_type": "sec_certs.sample.fips.InternalState",
    "module": {
      "_type": "sec_certs.sample.document_state.DocumentState",
      "convert_ok": true,
      "download_ok": true,
      "extract_ok": true,
      "json_hash": null,
      "source_hash": null,
      "txt_hash": null
    },
    "policy": {
      "_type": "sec_certs.sample.document_state.DocumentState",
      "convert_ok": true,
      "download_ok": true,
      "extract_ok": true,
      "json_hash": null,
      "source_hash": "dc9961c5ac96ca9968c5406642258389dc83b38a9064b7ece68caeb8adf86503",
      "txt_hash": "dda8e5871f676b38801014d7ab27c803257b10a12c6c77d2543e7bac08bd0c3c"
    }
  },
  "web_data": {
    "_type": "sec_certs.sample.fips.FIPSCertificate.WebData",
    "caveat": "When installed, initialized and configured as specified in Section 11 of the Security Policy; When operated in approved mode",
    "certificate_pdf_url": "https://csrc.nist.gov/CSRC/media/projects/cryptographic-module-validation-program/documents/certificates/December 2025_230126_1053.pdf",
    "date_sunset": "2030-12-07",
    "description": "The ST33KTPM2A and ST33KTPM2I Trusted Platform Modules are discrete security modules designed to be integrated into respectively automotive and industrial embedded electronic systems. The security module is used for cryptographic keys generation, keys storage, keys management and secure date storage for digital certificates.",
    "embodiment": "Single Chip",
    "exceptions": [
      "Operational environment: N/A",
      "Physical security: Level 3",
      "Non-invasive security: N/A",
      "Mitigation of other attacks: N/A"
    ],
    "fw_versions": null,
    "historical_reason": null,
    "hw_versions": null,
    "level": 2,
    "mentioned_certs": {},
    "module_name": "Trusted Platform Module ST33KTPM2A / ST33KTPM2I",
    "module_type": "Hardware",
    "revoked_link": null,
    "revoked_reason": null,
    "standard": "FIPS 140-3",
    "status": "active",
    "sw_versions": null,
    "tested_conf": null,
    "validation_history": [
      {
        "_type": "sec_certs.sample.fips.FIPSCertificate.ValidationHistoryEntry",
        "date": "2025-12-08",
        "lab": "UL Verification Services, Inc.",
        "validation_type": "Initial"
      }
    ],
    "vendor": "STMicroelectronics",
    "vendor_url": "http://www.st.com"
  }
}