---
title: Red Pitaya for test automatization or concept prototyping
description: "Red Pitaya has proved to be a valuable solution in the following industry segments: Automotive, Aerospace and defense, Advanced research, Quantum computing, Telecommunications and\nMedical"
---

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- Products 
    - [STEMlab 125-10](https://redpitaya.com/stemlab-125-10/)
    - [STEMlab 125-14](https://redpitaya.com/stemlab-125-14/)
    - [SIGNALlab 250-12](https://redpitaya.com/signallab-250-12/)
    - [SDRlab 122-16](https://redpitaya.com/sdrlab-122-16/)
    - [Accessories](https://redpitaya.com/accessories/)
    - [Industry](https://redpitaya.com/red-pitaya-in-industry/)
    - [Academia](https://redpitaya.com/red-pitaya-for-academia/)
    - [Research](https://redpitaya.com/red-pitaya-in-research/)
    - [Radio Amateurs](https://redpitaya.com/red-pitaya-for-radio-amateurs/)
- [Applications](https://redpitaya.com/applications/)
- Resources 
    - [Documentation](https://redpitaya.com/documentation/)
    - [Teaching materials](https://redpitaya.com/teaching-materials/)
    - [Case studies](https://redpitaya.com/case-studies/)
    - [User forum](https://forum.redpitaya.com/)
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# Red Pitaya in industry segments

Red Pitaya started with its development boards that have so far helped more than 30,000 enthusiasts, universities and companies around the world with their engineering projects.  Many companies across different industry segments use Red Pitaya STEMlab boards either for concept prototyping or test automatization.

Red Pitaya has proved to be a valuable solution in the following industry segments:

- Automotive
- Aerospace and defense
- Advanced research
- Quantum computing
- Telecommunications
- Medical

[![Aerospace and defence (1)](https://go.redpitaya.com/hs-fs/hubfs/Aerospace%20and%20defence%20(1).png?width=600&height=314&name=Aerospace%20and%20defence%20(1).png "Aerospace and defence (1)")](https://www.redpitaya.com/Catalog)

Red Pitaya can serve as a plug and play data acquisition tool across various industries since it is fully programmable and easy to integrate into existing software programming languages due to being open source. It serves as a core signal acquisition platform for high speed applications. With Red Pitaya you can get the greatest controlled signal accuracy in high speed signals.

Red Pitaya has an endless number of use cases, but here are just some examples of what our community is working on in different industry segments.

AUTOMOTIVE

- Red Pitaya allows integration with Lidar sensors and supports the development of new Lidar systems
- Suitable for debugging due to its all-in-one nature
- Allows in-house pre-compliance measurements and avoids additional costs
- Red Pitaya can optimize your HIL (hardware in the loop) process
- Can be used for monitoring the production of electrical cars
- Supports development of preventive maintenance systems or predictive maintenance equipment
- Helps you automate your test procedure (ECU testing)

AEROSPACE AND DEFENCE

- Red Pitaya provides speed, portability and form factor like no other instruments
- Affordable tool for over-the-horizon radar
- Providing a core signal acquisition platform for high speed (250Msps) signal aerospace applications
- Protect your systems with Red Pitaya by monitoring power usage
- Red Pitaya allows you to develop algorithms for signal identification
- Characterize the spectrum with Red Pitaya
- Monitor the RF spectrum in real time

ADVANCED RESEARCH

- Red Pitaya provides speed and precision with the astonishing performance of the ADC – 10-, 14- and 16-bit models that run from 125 to 250Msps
- Get the highest controlled signal accuracy in high speed signals
- Easily powered by batteries
- Red Pitaya allows you to analyse and calculate various energies and intensities of gamma rays
- Leverage the most complex quantum systems with the most affordable instrument

TELECOMMUNICATIONS

- All Red Pitaya boards can be used as an SDR platform
- Build your test setup with Red Pitaya
- Use Red Pitaya to research new protocols
- Fast signal processing
- High performance due to a gigabit ethernet interface
- Verify coverage and ensure network performance
- Easy to integrate as OEM in RF, wireless and microwave designs

MEDICAL

- Our test and measurement tools enable advances in healthcare by bringing medical product ideas to life
- A data acquisition platform for medical related sensors
- Optimize the RMI costs with Red Pitaya
- Easy to integrate in your software environment

In addition to the above points, Red Pitaya offers endless possibilities due to its versatility and ability to be [customized](https://www.redpitaya.com/n98/customize-red-pitaya). Here's our best picks for industry from the Red Pitaya [product family](https://www.redpitaya.com/Catalog). Don't forget that each product comes in different kit options, which offers you the possibility of choosing your own accessories.

Trusted by:

![Apple-logo](https://go.redpitaya.com/hubfs/Trusted%20by%20logos/Apple-logo-grey-880x625.png "Apple-logo")

![Siemens-logo](https://go.redpitaya.com/hubfs/Trusted%20by%20logos/Siemens-Logo.png "Siemens-logo")

![CERN-logo](https://go.redpitaya.com/hubfs/Trusted%20by%20logos/CERN-logo.jpg "CERN-logo")

![bosch-logo-brand](https://go.redpitaya.com/hubfs/Trusted%20by%20logos/bosch-logo-brand.jpg "bosch-logo-brand")

![Infineon-Logo.svg](https://go.redpitaya.com/hubfs/Trusted%20by%20logos/Infineon-Logo.svg.png "Infineon-Logo.svg")

![NASA\_logo.svg](https://go.redpitaya.com/hubfs/Trusted%20by%20logos/1200px-NASA_logo.svg.png "NASA_logo.svg")

# Relevant products

### STEMlab 125-14

[![01\_RedPitaya-1](https://go.redpitaya.com/hs-fs/hubfs/01_RedPitaya-1.jpg?width=300&height=200&name=01_RedPitaya-1.jpg "01_RedPitaya-1")](https://www.redpitaya.com/Catalog/p20/stemlab-125-14-starter-kit?cat=c99)

### SDRlab 122.88-16

[![SDR shot](https://go.redpitaya.com/hs-fs/hubfs/SDR%20shot.jpg?width=100&height=150&name=SDR%20shot.jpg "SDR shot")](https://www.redpitaya.com/Catalog/p52/sdrlab-122-16-standard-kit?cat=c99)

### SIGNALlab 250-12

[![\_MG\_3039 (1)-1](https://go.redpitaya.com/hs-fs/hubfs/_MG_3039%20(1)-1.jpg?width=300&height=200&name=_MG_3039%20(1)-1.jpg "_MG_3039 (1)-1")](https://www.redpitaya.com/Catalog/p70/signallab-250-12?cat=c99)

[SHOP NOW](https://www.redpitaya.com/Catalog)

|  | [STEMlab 125-14](https://www.redpitaya.com/Catalog/p20/stemlab-125-14-starter-kit?cat=c99) | [SDRlab 122-16](https://www.redpitaya.com/Catalog/p52/sdrlab-122-16-standard-kit?cat=c99) | [SIGNALlab 250-12](https://www.redpitaya.com/Catalog/p70/signallab-250-12?cat=c99) |
| --- | --- | --- | --- |
| **Basic** |  |  |  |
| Processor + FPGA | Xilinx Zynq 7010 (Dual-Core ARM +FPGA) |  |  |
| RAM | 512MB (4Gb) | 512MB (4Gb) | 1GB (8Gb) |
| System memory | Micro SD up to 32GB | Micro SD up to 32GB | Micro SD up to 32GB |
| **Connectivity** |  |  |  |
| 1Gbit Ethernet, USB, WIFI (using USB dongle) |  |  |  |
| **RF Inputs** |  |  |  |
| Channels | 2 | 2 | 2 |
| Sample rate | 125MS/s | 122.88MS/s | 250MS/s |
| Full scale voltage range | ± 1V / ± 20V | ± 0.25V / -2 dBm | ± 1V / ± 20V |
| Bandwidth | DC-60 MHz | 300 kHz – 550 MHz | DC – 60 MHz |
| **RF outputs** |  |  |  |
| Channels | 2 | 2 | 2 |
| Sample rate | 125MS/s | 122.8MS/s | 250MS/s |
| Full scale voltage range | ± 1V | ± 0.5V / +4 dBm | ± 1V / ± 5V (into 50 ohm load) ± 2V / ± 10V (Hi-Z load) |
| Bandwidth | DC – 60MHz | 300 kHz – 60 MHz | DC – 50 MHz |
| **Extension connector** |  |  |  |
| I2C, UART, SPI, 16GPIOs, 4+4 SLOW ANALOG IOs |  |  |  |
| **Synchronization** |  |  |  |
| Trigger input | Through extension connector | Through extension connector | Through BNC connector |
| Daisy chain connection | N/A | Over SATA connection | Over eSATA connection |
| Ref. clock input | N/A | N/A | Through BNC connector |

                              

                              

[SHOP NOW](https://www.redpitaya.com/Catalog)

![Signallab at EW](https://go.redpitaya.com/hubfs/Signallab%20at%20EW.jpg "Signallab at EW")

# Would you like to be a part of our Industry segment and receive all relevant updates?

We will only send you industry specific information, and we promise not to spam you :)

## [LATEST BLOG POSTS](https://content.redpitaya.com/blog/?hsLang=en)

[![](https://go.redpitaya.com/hs-fs/hubfs/blog%20featured%20image%20-%202026-09-17T104035.026.jpg?width=767&name=blog%20featured%20image%20-%202026-09-17T104035.026.jpg)](https://content.redpitaya.com/blog/non-invasive-gerd-detection-radiofrequency-spectrophotometry?hsLang=en)

29.09.2026

### [Non-Invasive GERD Detection: Continuous Esophageal Monitoring via Radiofrequency Spectrophotometry](https://content.redpitaya.com/blog/non-invasive-gerd-detection-radiofrequency-spectrophotometry?hsLang=en)

 Diagnosing gastroesophageal reflux disease (GERD) traditionally relies on catheter-based impedance monitoring, esophageal manometry, or upper endoscopy—procedures that are often uncomfortable for.

[![](https://go.redpitaya.com/hs-fs/hubfs/blog%20featured%20image%20-%202026-09-17T131400.982-3.jpg?width=767&name=blog%20featured%20image%20-%202026-09-17T131400.982-3.jpg)](https://content.redpitaya.com/blog/open-source-mri-console-ocra-marcos-red-pitaya?hsLang=en)

22.09.2026

### [How a $500 Open-Source MRI Console Sparked a Global Research Ecosystem](https://content.redpitaya.com/blog/open-source-mri-console-ocra-marcos-red-pitaya?hsLang=en)

 From MIT Classroom Tabletop to MaRCoS and Clinical-Style Low-Field MRI Workflows Conventional Magnetic Resonance Imaging (MRI) consoles are expensive, closed systems. Proprietary spectrometer.

[![](https://go.redpitaya.com/hs-fs/hubfs/blog%20featured%20image%20-%202026-09-17T130509.363.jpg?width=767&name=blog%20featured%20image%20-%202026-09-17T130509.363.jpg)](https://content.redpitaya.com/blog/zephyr-rtos-nordic-logic-analyzer-workshop-eestec-ljubljana?hsLang=en)

17.09.2026

### [Probing the Wire: Red Pitaya & Zephyr RTOS Workshop with EESTEC](https://content.redpitaya.com/blog/zephyr-rtos-nordic-logic-analyzer-workshop-eestec-ljubljana?hsLang=en)

 Connecting Embedded Software Abstractions, Physical Bus Signals, and Connected BLE Systems with EESTEC LC Ljubljana In embedded systems development, serial console logging via printk or Segger RTT is.

[![](https://go.redpitaya.com/hs-fs/hubfs/blog%20featured%20image%20-%202026-08-25T134239.841.jpg?width=767&name=blog%20featured%20image%20-%202026-08-25T134239.841.jpg)](https://content.redpitaya.com/blog/open-source-mri-control-system-sdrlab/?hsLang=en)

15.09.2026

### [MaRCoS: An Open-Source MRI Control System Built with Red Pitaya SDRlab 122-16](https://content.redpitaya.com/blog/open-source-mri-control-system-sdrlab/?hsLang=en)

 MaRCoS, short for MAgnetic Resonance COntrol System, is an open-source MRI control platform built around the Red Pitaya SDRlab 122-16. The project combines FPGA-based hardware and open-source.

[![](https://go.redpitaya.com/hs-fs/hubfs/blog%20featured%20image%20-%202026-08-24T092005.711.jpg?width=767&name=blog%20featured%20image%20-%202026-08-24T092005.711.jpg)](https://content.redpitaya.com/blog/scalable-compact-fast-neutron-detection-red-pitaya-sipm?hsLang=en)

08.09.2026

### [Scalable and Portable Fast Neutron Detection: Dual-Channel SiPM Readout with Red Pitaya FPGA DAQ](https://content.redpitaya.com/blog/scalable-compact-fast-neutron-detection-red-pitaya-sipm?hsLang=en)

 How researchers at Justus Liebig University Giessen combined plastic scintillators, dual SiPM geometries, and Red Pitaya’s FPGA platform to replace bulky photomultiplier tubes for in-situ 𝒏/𝜸.

[![](https://go.redpitaya.com/hs-fs/hubfs/blog%20featured%20image%20-%202026-08-12T152830.130.jpg?width=767&name=blog%20featured%20image%20-%202026-08-12T152830.130.jpg)](https://content.redpitaya.com/blog/sub-100ms-automated-laser-relocking-red-pitaya-trapped-ion-quantum?hsLang=en)

01.09.2026

### [Autonomous Sub-100ms Laser Relocking in Trapped-Ion Quantum Experiments: Scaling the BLOOD Lockbox Architecture with Red Pitaya SoCs](https://content.redpitaya.com/blog/sub-100ms-automated-laser-relocking-red-pitaya-trapped-ion-quantum?hsLang=en)

 How ETH Zurich’s Trapped Ion Quantum Information Group integrated on-chip XADC sensing and dynamic FPGA sweep generators to achieve robust, hands-free Pound–Drever–Hall lock recovery.

[![](https://go.redpitaya.com/hs-fs/hubfs/blog%20featured%20image%20-%202026-04-22T113002.718.jpg?width=767&name=blog%20featured%20image%20-%202026-04-22T113002.718.jpg)](https://content.redpitaya.com/blog/experimenting-red-pitaya-stemlab-gen2-elektor-book-summary?hsLang=en)

26.08.2026

### [Experimenting with Red Pitaya STEMlab Gen 2: A Practical Look Beyond Traditional Instruments](https://content.redpitaya.com/blog/experimenting-red-pitaya-stemlab-gen2-elektor-book-summary?hsLang=en)

 Most test and measurement setups grow incrementally—oscilloscopes, generators, analyzers—each solving a specific task. The approach behind Red Pitaya STEMlab Gen 2 is structurally different:.

[![](https://go.redpitaya.com/hs-fs/hubfs/blog%20featured%20image%20-%202026-08-19T125530.795.jpg?width=767&name=blog%20featured%20image%20-%202026-08-19T125530.795.jpg)](https://content.redpitaya.com/blog/femtosecond-beam-stabilization-digital-llrf?hsLang=en)

20.08.2026

### [Femtosecond-Level Beam Stabilization With FPGA-Based Digital LLRF Feedback](https://content.redpitaya.com/blog/femtosecond-beam-stabilization-digital-llrf?hsLang=en)

 The evolution of FPGA development boards and control electronics over the last two decades has enabled the implementation of FPGA-based Low Level Radio Frequency (LLRF) feedback and feedforward.

[![](https://go.redpitaya.com/hs-fs/hubfs/blog%20featured%20image%20-%202026-08-03T145340.671.jpg?width=767&name=blog%20featured%20image%20-%202026-08-03T145340.671.jpg)](https://content.redpitaya.com/blog/edge-processing-optical-test-systems-reducing-data-bottlenecks?hsLang=en)

18.08.2026

### [Edge Processing in Optical Test Systems: How to Eliminate Data Bottlenecks in High-Speed Measurements](https://content.redpitaya.com/blog/edge-processing-optical-test-systems-reducing-data-bottlenecks?hsLang=en)

 Modern high-speed optical systems—such as hyperspectral imaging, interferometry, and spectroscopy—generate data faster than traditional centralized servers can process, creating massive bandwidth and.

[![](https://go.redpitaya.com/hs-fs/hubfs/blog%20featured%20image%20-%202026-07-27T130917.383.jpg?width=767&name=blog%20featured%20image%20-%202026-07-27T130917.383.jpg)](https://content.redpitaya.com/blog/all-instrumentation-industry-fpga-test-measurement-interview?hsLang=en)

11.08.2026

### [All Instrumentation Industry: How FPGA-Based Platforms Are Redefining Test and Measurement](https://content.redpitaya.com/blog/all-instrumentation-industry-fpga-test-measurement-interview?hsLang=en)

 In an interview published in the April 2026 issue of All Instrumentation Industry magazine, Red Pitaya CEO Mateja Lampe Rupnik discusses how compact, FPGA-based and software-defined instrumentation.

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