SNAPfone

Certificate details

Certificate ID #609
Status historical
Historical reason RNG SP800-131A Revision 1 Transition
Validation dates 23.12.2005 , 13.01.2006 , 27.01.2006
Standard FIPS 140-2
Security level 2
Type Hardware
Embodiment Multi-Chip Stand Alone
Caveat None
Exceptions
  • Cryptographic Module Specification: Level 3
  • EMI/EMC: Level 3
Description SNAPfone is a compact encryption termination unit capable of securing voice communications over analog telephone lines. SNAPfone performs high level encryption process with a new key draw for each session using Asymmetric Public Key Cryptography (1024 bit Diffie-Hellman) for key exchanging and Symmetric block cipher (192-bit 3DES) algorithm for session encryption. SNAPfone requires minimum user intervention with seamless operation." "The Snapfone is a plug-n-play encryption device for securing communications over regular analog (POTS) or fax lines. Snapfone is designed for compatibility among major telephone and PBX brands. It can also be deployed as a shared resource device when connected to a PBX. Its small footprint and 1101220v connectivity allows for easy transport and maximum flexibility. The cryptographic core engines are optimized for minimal voice latency providing superior voice quality. Snapfones can also be configured as a distributed secure voice network solution among groups and between multiple locations.
Vendor [email protected] /cdn-cgi/l/email-protection
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
3DES
Asymmetric Algorithms
Diffie-Hellman, DH
Hash functions
SHA-1
Randomness
RNG

Security level
Level 2

Standards
FIPS 140-2, FIPS 186-2

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

Feed
  • The certificate data changed.
  • The certificate data changed.
  • The certificate data changed.
  • The certificate data changed.
  • The certificate data changed.
  • The certificate data changed.
  • The certificate data changed.
  • The certificate data changed.
  • The certificate data changed.
  • The certificate data changed.
  • The certificate data changed.
  • The certificate data changed.
  • The certificate data changed.
  • The certificate data changed.
  • The certificate was first processed.

Raw data

{
  "_type": "sec_certs.sample.fips.FIPSCertificate",
  "cert_id": 609,
  "dgst": "1f594da9b409f7f4",
  "heuristics": {
    "_type": "sec_certs.sample.fips.FIPSCertificate.Heuristics",
    "algorithms": {
      "_type": "Set",
      "elements": [
        "SHS#289",
        "Triple-DES#302",
        "RNG#53"
      ]
    },
    "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": {
        "FF": {
          "DH": {
            "DH": 5,
            "Diffie-Hellman": 7
          }
        }
      },
      "certification_process": {},
      "cipher_mode": {},
      "cplc_data": {},
      "crypto_engine": {},
      "crypto_library": {},
      "crypto_protocol": {},
      "crypto_scheme": {},
      "device_model": {},
      "ecc_curve": {},
      "eval_facility": {},
      "fips_cert_id": {
        "Cert": {
          "# 289": 1,
          "#302": 1,
          "#53": 1
        }
      },
      "fips_certlike": {
        "Certlike": {
          "SHA-1": 3
        }
      },
      "fips_security_level": {
        "Level": {
          "Level 2": 2
        }
      },
      "hash_function": {
        "SHA": {
          "SHA1": {
            "SHA-1": 3
          }
        }
      },
      "ic_data_group": {},
      "javacard_api_const": {},
      "javacard_packages": {},
      "javacard_version": {},
      "os_name": {},
      "pq_crypto": {},
      "randomness": {
        "RNG": {
          "RNG": 1
        }
      },
      "side_channel_analysis": {},
      "standard_id": {
        "FIPS": {
          "FIPS 140-2": 4,
          "FIPS 186-2": 1
        }
      },
      "symmetric_crypto": {
        "DES": {
          "3DES": {
            "3DES": 9
          }
        }
      },
      "tee_name": {},
      "tls_cipher_suite": {},
      "vendor": {},
      "vulnerability": {}
    },
    "policy_metadata": {
      "/Author": "Rose",
      "/CreationDate": "D:20051130083502-08\u002700\u0027",
      "/Creator": "PScript5.dll Version 5.2",
      "/ModDate": "D:20051130091135-08\u002700\u0027",
      "/Producer": "Acrobat Distiller 6.0 (Windows)",
      "/Title": "Microsoft Word - 83b - Snapfone Security Policy ver18.doc",
      "pdf_file_size_bytes": 75075,
      "pdf_hyperlinks": {
        "_type": "Set",
        "elements": []
      },
      "pdf_is_encrypted": true,
      "pdf_number_of_pages": 11
    }
  },
  "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": "cce0c88a1fb5935ccfd50f806b6ffc6dfe3f4a5e07d7aec97a5dd509da492e65",
      "txt_hash": "430c8a2f531bc6c4b60ae025f8289156f6b53e27931ed8db3614b1b0f49e7745"
    }
  },
  "web_data": {
    "_type": "sec_certs.sample.fips.FIPSCertificate.WebData",
    "caveat": "None",
    "certificate_pdf_url": "https://csrc.nist.gov/CSRC/media/projects/cryptographic-module-validation-program/documents/certificates/140crt609.pdf",
    "date_sunset": null,
    "description": "SNAPfone is a compact encryption termination unit capable of securing voice communications over analog telephone lines. SNAPfone performs high level encryption process with a new key draw for each session using Asymmetric Public Key Cryptography (1024 bit Diffie-Hellman) for key exchanging and Symmetric block cipher (192-bit 3DES) algorithm for session encryption. SNAPfone requires minimum user intervention with seamless operation.\" \"The Snapfone is a plug-n-play encryption device for securing communications over regular analog (POTS) or fax lines. Snapfone is designed for compatibility among major telephone and PBX brands. It can also be deployed as a shared resource device when connected to a PBX. Its small footprint and 1101220v connectivity allows for easy transport and maximum flexibility. The cryptographic core engines are optimized for minimal voice latency providing superior voice quality. Snapfones can also be configured as a distributed secure voice network solution among groups and between multiple locations.",
    "embodiment": "Multi-Chip Stand Alone",
    "exceptions": [
      "Cryptographic Module Specification: Level 3",
      "EMI/EMC: Level 3"
    ],
    "fw_versions": null,
    "historical_reason": "RNG SP800-131A Revision 1 Transition",
    "hw_versions": null,
    "level": 2,
    "mentioned_certs": {},
    "module_name": "SNAPfone",
    "module_type": "Hardware",
    "revoked_link": null,
    "revoked_reason": null,
    "standard": "FIPS 140-2",
    "status": "historical",
    "sw_versions": null,
    "tested_conf": null,
    "validation_history": [
      {
        "_type": "sec_certs.sample.fips.FIPSCertificate.ValidationHistoryEntry",
        "date": "2005-12-23",
        "lab": "UL Verification Services, Inc.",
        "validation_type": "Initial"
      },
      {
        "_type": "sec_certs.sample.fips.FIPSCertificate.ValidationHistoryEntry",
        "date": "2006-01-13",
        "lab": "",
        "validation_type": "Update"
      },
      {
        "_type": "sec_certs.sample.fips.FIPSCertificate.ValidationHistoryEntry",
        "date": "2006-01-27",
        "lab": "",
        "validation_type": "Update"
      }
    ],
    "vendor": "[email\u00a0protected]",
    "vendor_url": "/cdn-cgi/l/email-protection"
  }
}