808bits

CEP100, CEP100 VSE, CEP100-XSA, CEP1000, CEP1000-DP and CEP1000 VSE

FIPS 140-2 certificate #1799 · Certes Networks, Inc. · data as of 2026-09-12

CEP100, CEP100 VSE, CEP100-XSA, CEP1000, CEP1000-DP and CEP1000 VSE, from Certes Networks, Inc., holds FIPS 140-2 certificate #1799 at overall level 2. The validation is historical: agencies may keep the module in existing systems but not buy it new. Below are its validation history, algorithm certificates and security policy, drawn from the NIST CMVP entry.

Historical. RNG SP800-131A Revision 1 Transition. Federal agencies may reference historical validations for existing systems only, not for new procurement.
Caveat: When operated in FIPS mode

Certificate

Certificate number1799
StandardFIPS 140-2
Statushistorical
Overall level2
Module typeHardware
EmbodimentMulti-chip standalone
VendorCertes Networks, Inc. · website
Hardware versions[CEP100, A], [CEP100 VSE, A], [CEP100-XSA, A], [CEP1000, A], [CEP1000-DP, A] and [CEP1000 VSE, A]
Firmware versions2.1

Module description

Quoted from the NIST CMVP entry for this certificate.

The Certes Networks CEP VSE encryptors are a family of high performance network encryption appliances that offer line rate multi-layer encryption at speeds from 10 Mbps up to 10 Gbps for Ethernet, IP, and MPLS networks. The CEP VSE family can be centrally managed with the simple drag-and-drop interface of Certes TrustNet Manager. TrustNet Manager provides centralized policy and key management, logging and auditing for the entire network. The CEP100 VSE and CEP1000 VSE provide data confidentiality, data integrity and data authentication for network traffic at bit rates from 75 Mbps to 1 Gbps.

Security level exceptions

  • Cryptographic Module Specification: Level 3
  • Roles, Services, and Authentication: Level 3
  • EMI/EMC: Level 3
  • Design Assurance: Level 3

Approved algorithms (7)

AlgorithmCAVP certificates
AES465, 762, 1932
DSA615
HMAC416, 417, 1166
RNG1017
RSA998
SHS1697
Triple-DES482, 667, 1258

Other algorithms

MD5; HMAC-MD5-96; Diffie-Hellman (key agreement; key establishment methodology provides between 112 and 150 bits of encryption strength; non-compliant less than 112 bits of encryption strength); RSA (key wrapping; key establishment methodology provides between 112 and 150 bits of encryption strength; non-compliant less than 112 bits of encryption strength)

Validation history

DateTypeLab
2012-09-04InitialCGI Information Systems & Management Consultants Inc
2013-03-08Update

Status timeline

As observed by this tracker's snapshots. NIST publishes no dates for list moves; observation began 2026-08-21, so earlier changes carry no date.

  • 2026-08-21: first observed by this tracker, status historical
  • Validation dates on record: 2012-09-04, 2013-03-08

Source documents