808bits

SafeZone FIPS Cryptographic Module

FIPS 140-2 certificate #3661 · Rambus Global Inc., Finnish branch · data as of 2026-08-28
Historical. SP 800-56Arev3 transition - replaced by certificate #4588. Federal agencies may reference historical validations for existing systems only, not for new procurement.
Caveat: When operated in FIPS mode. The module generates cryptographic keys whose strengths are modified by available entropy

Certificate

Certificate number3661
StandardFIPS 140-2
Statushistorical
Overall level1
Module typeSoftware
EmbodimentMulti-Chip Stand Alone
VendorRambus Global Inc., Finnish branch · website
Software versions1.2.0

Module description

Inside Secure FIPS Cryptographic Module is a FIPS 140-2 Security Level 1 validated software cryptographic module from INSIDE Secure. The module is a toolkit which provides the most commonly needed cryptographic primitives for a large variety of applications, including but not limited to, primitives needed for DAR, DRM, TLS, and VPN on mobile devices.

Security level exceptions

  • Physical Security: N/A
  • Mitigation of Other Attacks: N/A

Approved algorithms

AlgorithmCAVP certificate
AESC510
CKGvendor affirmed
CVLC510
DRBGC510
DSAC510
ECDSAC510
HMACC510
KBKDFC510
KDAvendor affirmed
KTS
KTSvendor affirmed
PBKDFvendor affirmed
RSAC510
SHA-3C510
SHSC510
Triple-DESC510

Allowed algorithms

Diffie-Hellman (CVL Cert. #C510 with SP 800-56C, vendor affirmed, key agreement; key establishment methodology provides between 112 and 200 bits of encryption strength); EC Diffie-Hellman (CVL Cert. #C510 with SP 800-56C, vendor affirmed, key agreement; key establishment methodology provides between 112 and 256 bits of encryption strength); MD5; NDRNG; RSA (key wrapping; key establishment methodology provides between 112 and 150 bits of encryption strength)

Tested configurations

  • Debian 9 Linux running on a Raspberry Pi 2 with an ARM Cortex-A7
  • Debian 9 Linux running on a ROCK64 with an ARM Cortex-A53 with PAA
  • Debian 9 Linux running on a ROCK64 with an ARM Cortex-A53 without PAA
  • Xubuntu 18.04.1 LTS running on a Lenovo MIIX 320 with an Intel Atom x5 (32-bit) with PAA
  • Xubuntu 18.04.1 LTS running on a Lenovo MIIX 320 with an Intel Atom x5 (32-bit) without PAA
  • Xubuntu 18.04.1 LTS running on a Lenovo MIIX 320 with an Intel Atom x5 (64-bit) with PAA
  • Xubuntu 18.04.1 LTS running on a Lenovo MIIX 320 with an Intel Atom x5 (64-bit) without PAA (single-user mode)

Validation history

DateTypeLab
2020-05-29InitialLeidos Accredited Testing & Evaluation (AT&E) Lab

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: 2020-05-29

Source documents