
AERIS-10 is an open-source, low-cost 10.5 GHz phased array radar system featuring Pulse Linear Frequency Modulated (LFM) modulation. Available in two versions (3km and 20km range), it's designed for researchers, drone developers, and serious SDR enthusiasts who want to explore and experiment with phased array radar technology. The AERIS-10 project aims to democratize radar technology by providing a fully open-source, modular, and hackable radar system. Whether you're a university researcher, a drone startup, or an advanced maker, AERIS-10 offers a platform for experimenting with beamforming, pulse compression, Doppler processing, and target tracking. 1. Waveform Generation - DAC creates LFM chirps 2. Up/Down Conversion - LTC5552 mixers handle frequency translation 3. Beam Steering - ADAR
AERIS-10 is an open-source, low-cost 10.5 GHz phased array radar system featuring Pulse Linear Frequency Modulated (LFM) modulation. Available in two versions (3km and 20km range), it's designed for researchers, drone developers, and serious SDR enthusiasts who want to explore and experiment with phased array radar technology.

The AERIS-10 project aims to democratize radar technology by providing a fully open-source, modular, and hackable radar system. Whether you're a university researcher, a drone startup, or an advanced maker, AERIS-10 offers a platform for experimenting with beamforming, pulse compression, Doppler processing, and target tracking.

The AERIS-10 main sub-systems are:
Power Management Board - Supplies all necessary voltage levels to the electronics components with proper filtering and sequencing (sequencing ensured by the microcontroller)
Frequency Synthesizer Board - Uses a high-performance Low Jitter Clock Generator (AD9523-1) that supplies phase-aligned clock references for:
Main Board containing:
16x Power Amplifier Boards - Used only for AERIS-10E version, featuring 10Watt QPA2962 GaN amplifier for extended range
Antenna Arrays:
Miscellaneous Components:

| Parameter | AERIS-10N (Nexus) | AERIS-10X (Extended) |
|---|---|---|
| Frequency | 10.5 GHz | 10.5 GHz |
| Max Range | 3 km | 20 km |
| Antenna | 8x16 Patch Array | 32x16 Slotted Waveguide |
| Beam Steering | Electronic (±45°) | Electronic (±45°) |
| Mechanical Scan | 360° (stepper motor) | 360° (stepper motor) |
| Output Power | ~1W×16 | 10W×16 (GaN amplifier) |
| Processing | FPGA + STM32 | FPGA + STM32 |
To keep the repository root clean and make artifacts easy to find, place generated files in the following locations:
docs/
docs/AERIS_Simulation_Report_v2.pdf5_Simulations/generated/
9_Firmware/9_2_FPGA/reports/
9_Firmware/9_2_FPGA/scripts/
Do not leave generated artifacts in the repository root.
/4_Schematics and Boards Layout/4_7_Production Files/4_Schematics and Boards Layout/4_7_Production Files/4_Schematics and Boards Layout/4_6_Schematics together with the production outputs above; a standalone assembly guide is not currently tracked/8_Utils/Mechanical_DrawingsThis project is open-source but uses different licenses for hardware and software to ensure proper legal coverage.
The hardware design files—including:
/4_Schematics and Boards Layout)are licensed under the CERN Open Hardware Licence Version 2 – Permissive (CERN-OHL-P) .
This is a hardware-specific license that:
You may use, modify, and sell products based on these designs, provided you:
The software components—including:
/9_Firmware)remain under the MIT License for maximum flexibility.
LICENSE fileOriginally, the entire project used the MIT license. The community (special thanks to gmaynez!) pointed out that MIT lacks legal protections needed for physical hardware. The switch to CERN-OHL-P ensures the project is properly protected while maintaining the same permissive spirit.
Comprehensive documentation is available in the /docs folder and served via GitHub Pages at https://NawfalMotii79.github.io/PLFM_RADAR/docs/:
We welcome contributions! Please see our Contributing Guidelines for details on repo layout, branch workflow, and basic PR checks.
Areas where help is especially appreciated:
I welcome serious inquiries from researchers, engineers, and potential collaborators. However, due to the high volume of interest in this project, please understand that I cannot guarantee a response to every message.

Star ⭐ this repository if you're interested in open-source radar technology!
Note: This is an active development project. Some features are still in progress. Check the issues page for known limitations and upcoming features.
This project started in a small workshop in Morocco. Today, 19,000 engineers on GitHub have starred it.
I am genuinely humbled.
What this tells me:
Thank you to everyone who starred, forked, opened issues, submitted PRs, and shared this project.
The work continues.
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“Adding LAN interface — Have you considered adding LAN interface? USB is kind of limiting factor here - radar has to be outside and USB cabling usually cannot be to long. I've had good experience with implementing https:/…”
“MCU scan sequence does not match documented 31-elevation / ±45° steering design — Problem The current MCU scan scheduler in `runRadarPulseSequence()` seems inconsistent with the documented radar scan design. Documentatio…”
“Cost? — It would be really helpful to understand what low-cost means, given that "cheap" in RADAR terms usually at least 5 figures still. An estimate of the per-unit build cost for each of the variants in the table would…”
“Project Updates — Hi all, I opened this issue to share with you the advancement of the project. First of all, I didn’t imagined that this project would reach hackers that much. When I created this repository and decided …”
“Beta tester — @JJassonn69 I want you to be the first beta tester.....”
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