
Open source resources include code, documentation, and testbenches for all six original CADC chips.
When you purchase through links on our site, we may earn an affiliate commission. Here’s how it works .
Fridays are for demos. We recreated the F14 CADC, it seemed only right we could test it with the actual swing wing feature. So we created a 3D printed F14 its first test. https://t.co/UUvebMIXei pic.twitter.com/3Mfcvo7Pnq July 24, 2026
We wrote about the F-14 Tomcat’s CADC last year after discussions erupted on social media about whether this flight computer was actually powered by the "world’s first microprocessor." The brains behind the CADC were provided by the MP944 . This chip lived in the shadows for quite some time, though. Despite the MP944 microprocessor beginning service in June 1970, over a year before Intel’s legendary 4004 would become available (November 1971) it was an official secret until 1998. Thus, the Intel 4004 managed to steal the limelight from the true first microprocessor , say those in the MP944 camp.
To recap, the MP944 was a 20-bit, pipelined, parallel multi-microprocessor melded with state-of-the-art MOS technology and ran at 375 kHz, executing 9,375 instructions per second. The flight-system powering chip, designed by Steve Geller and Ray Holt and a 25-strong team, also passed stringent ruggedness tests and was capable of running in temperatures spanning -55 to +125 degrees Celsius.
The MP944 worked as part of a six-chip system in the CADC, for the real-time calculation of flight parameters such as altitude, airspeed, and Mach number – and was a key innovation to enable the Tomcat’s articulated sweep-wing system. So it had to be performant, and some chip architecture enthusiasts assert that the MP944 was actually “8x faster than the Intel 4004.” Remember though, the Intel chip was originally designed for a far more humble desktop calculator.
Getting back to Adam Taylor’s recent achievement, and we now have a full open source set of VHDL source code, documentation, and testbenches for an FPGA recreation of the F‑14’s CADC. The GitHub repo says the FPGA used was a Spartan-7 based SoM, part of the Adiuvo Embedded System Tile. The resource isn’t just the MP944 logic, Taylor includes complete synthesizable VHDL implementations for all six original CADC chips.
US Navy is flight-testing 3D printed fighter jet parts that cut repair times in half
Intel's new space-grade Starfire chip is a Panther Lake SoC that puts an 18A CPU into orbit
Follow Tom's Hardware on Google News , or add us as a preferred source , to get our latest news, analysis, & reviews in your feeds.
Get Tom's Hardware's best news and in-depth reviews, straight to your inbox.
Key considerations
- Investor positioning can change fast
- Volatility remains possible near catalysts
- Macro rates and liquidity can dominate flows
Reference reading
- https://www.tomshardware.com/pc-components/cpus/SPONSORED_LINK_URL
- https://www.tomshardware.com/pc-components/cpus/3d-printed-f-14-tomcat-uses-an-fpga-recreation-of-the-worlds-first-microprocessor-cadcs-mp944-chip-controls-the-fighters-swing-wing-system-among-other-things#main
- https://www.tomshardware.com/subscription
- Dell 14S review: High-class design and 20+ hour battery life
- AMD exec was ‘very happy’ to see Nvidia‘s Vera performance results – ‘I actually thought we were beating them by smaller numbers’
- Geekom A9 Max 2026 review: Gorgon Point in a compact Mini PC
- AOC U32G4 32-inch 4K Dual-Refresh gaming monitor review: Solid performance and value
- At AI Summit, South Korea Outlines Its AI Future With NVIDIA and Partners
Informational only. No financial advice. Do your own research.