808bits

Extron FIPS Module

FIPS 140-2 certificate #3714 · Extron Electronics · data as of 2026-08-28
Historical. Moved to historical list due to sunsetting. Federal agencies may reference historical validations for existing systems only, not for new procurement.
Caveat: When operated in FIPS mode (built, installed, protected and initialized as assumed by the Crypto Officer role and as specified in the provided Security Policy). Appendix A of the provided Security Policy specifies the actual distribution tar file containing the source code of this module. There shall be no additions, deletions or alterations to the tar file contents as used during module build. The distribution tar file shall be verified as specified in Appendix A of the provided Security Policy. Installation and protection shall be completed as specified in Appendix A of the provided Security Policy. Initialization shall be invoked as per Section 4 of the provided Security Policy. Any deviation from specified verification, protection, installation and initialization procedures will result in a non FIPS 140-2 compliant module

Certificate

Certificate number3714
StandardFIPS 140-2
Statushistorical
Overall level1
Module typeSoftware
EmbodimentMulti-Chip Stand Alone
VendorExtron Electronics · website
Software versions2.0.9 or 2.0.10

Module description

The Extron FIPS Module is a cryptographic module whose purpose is to provide FIPS 140-2 validated cryptographic functions.

Security level exceptions

  • Roles, Services, and Authentication: Level 2
  • Physical Security: N/A
  • Design Assurance: Level 3
  • Mitigation of Other Attacks: N/A

Approved algorithms

AlgorithmCAVP certificate
AES3090, 3264, C1924
CVL372, 472, C1924
DRBG607, 723, C1924
DSA896, 933, C1924
ECDSA558, 620, C1924
HMAC1937, 2063, C1924
RSA1581, 1664, C1924
SHS2553, 2702, C1924
Triple-DES1780, 1853, C1924

Allowed algorithms

EC Diffie-Hellman (CVL Certs. #372, #472 and #C1924, key agreement; key establishment methodology provides between 112 and 256 bits of encryption strength); RSA (key wrapping; key establishment methodology provides between 112 and 256 bits of encryption strength)

Tested configurations

  • Android 4.4 32-bit running on Intel Atom Z3735F (x86) (gcc Compiler Version 4.8)
  • Android 5.0 32-bit running on Qualcomm APQ8084 (ARMv7) with NEON (gcc Compiler Version 4.9)
  • Android 5.0 32-bit running on Qualcomm APQ8084 (ARMv7) without NEON (gcc Compiler Version 4.9)
  • Android 5.0 64-bit running on SAMSUNG Exynos7420 (ARMv8) with NEON and Crypto Extensions (gcc Compiler Version 4.9)
  • Android 5.0 64-bit running on SAMSUNG Exynos7420 (ARMv8) without NEON and Crypto Extensions (gcc Compiler Version 4.9)
  • BAE Systems STOP 8.2 64-bit running on BAE XTS-600-W-T with PAA (gcc Compiler Version 4.8.5)
  • BAE Systems STOP 8.2 64-bit running on BAE XTS-600-W-T without PAA (gcc Compiler Version 4.8.5)
  • Debian 7.9 running on Marvell Mohawk (ARMv5TE) (gcc Compiler Version 4.4.5)
  • FreeBSD 10.2 running on Intel Xeon E5-2430L (x86) with PAA (clang Compiler Version 3.4.1)
  • FreeBSD 10.2 running on Intel Xeon E5-2430L (x86) without PAA (clang Compiler Version 3.4.1)
  • iOS 8.1 32-bit running on Apple A7 (ARMv8) with NEON (clang Compiler Version 600.0.56)
  • iOS 8.1 32-bit running on Apple A7 (ARMv8) without NEON (clang Compiler Version 600.0.56)
  • iOS 8.1 64-bit running on Apple A7 (ARMv8) with NEON and Crypto Extensions (clang Compiler Version 600.0.56)
  • iOS 8.1 64-bit running on Apple A7 (ARMv8) without NEON and Crypto Extensions (clang Compiler Version 600.0.56)
  • Linux 3.14 running on ARM Cortex A9 (ARMv7) with NEON (gcc Compiler Version 4.8.2)
  • Linux 3.14 running on ARM Cortex A9 (ARMv7) without NEON (gcc Compiler Version 4.8.2)
  • Linux 3.16 running on Atmel ATSAM9G45 (ARMv5TEJ) (gcc Compiler Version 4.8.3)
  • Linux 3.16 running on Atmel ATSAMA5D35 (ARMv7) (gcc Compiler Version 4.8.3)
  • Linux 4.14.0 running on an Extron E 101 with a Zynq Ultrascale+ Cortex A53 with PAA (gcc Compiler 7.2.1)
  • Linux 4.14.0 running on an Extron E 101 with a Zynq Ultrascale+ Cortex A53 without PAA (gcc Compiler 7.2.1)
  • Linux 4.14.0 running on an Extron SD 101 with a Zynq Ultrascale+ Cortex A53 with PAA (gcc Compiler 7.2.1)
  • Linux 4.14.0 running on an Extron SD 101 with a Zynq Ultrascale+ Cortex A53 without PAA (gcc Compiler 7.2.1)
  • Linux 4.4 running on ARM926EJS (ARMv5) (gcc Compiler Version 4.8.3)
  • Linux 4.9.11 running on an Extron NAVigator with an iMX.6 Cortex A9 with PAA (gcc Compiler 7.2.1)
  • Linux 4.9.11 running on an Extron NAVigator with an iMX.6 Cortex A9 without PAA (gcc Compiler 7.2.1)
  • LMOS 7.2 running on Intel Xeon E3-1231 (x86) with PAA (gcc Compiler Version 4.8.4)
  • LMOS 7.2 running on Intel Xeon E3-1231 (x86) without PAA (gcc Compiler Version 4.8.4)
  • LMOS 7.2 under Vmware ESXi 6.5 running on Intel Xeon E5-2430L (x86) with PAA (gcc Compiler Version 4.8.4)
  • LMOS 7.2 under Vmware ESXi 6.5 running on Intel Xeon E5-2430L (x86) without PAA (gcc Compiler Version 4.8.4)
  • Timesys 2.6 running on PowerPC 440 (PPC) (gcc Compiler Version 4.6.3)
  • TS-Linux 2.4 running on Arm920Tid (ARMv4) (gcc Compiler Version 4.3.2)
  • Ubuntu 12.04 running on Compulab CM-FX6 Cortex-A9 (ARMv7) (gcc Compiler Version 4.6.3)
  • uClibc 0.9 running on ARM922T (ARMv4T) (gcc Compiler Version 4.8.1)
  • uClibc 0.9 running on ARM926EJS (ARMv5TEJ) (gcc Compiler Version 4.8.1)
  • uClibc 0.9 running on Marvell PJ4 (ARMv7) (gcc Compiler Version 4.8.1)
  • uClinux-dist-5.0 running on Marvell Armada 370 (ARMv7) (gcc Compiler Version 4.8.3)
  • uClinux-dist-5.0 running on Marvell Feroceon 88FR131 (ARMv5TE) (gcc Compiler Version 4.8.3)
  • VxWorks 6.9 running on Freescale P2020 (PPC) (gcc Compiler Version 4.3.3)
  • Yocto Linux 3.10 running on Freescale i.MX6 (ARMv7) with NEON (gcc Compiler Version 4.8.1)
  • Yocto Linux 3.10 running on Freescale i.MX6 (ARMv7) without NEON (gcc Compiler Version 4.8.1) (single-user mode)

Validation history

DateTypeLab
2020-09-28InitialUL Verification Services, Inc.

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: 2020-09-28

Source documents