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Found 48 Websites with content related to this domain, It is result after search with search engine

Welcome To The Red Pitaya Documentation. — Red Pitaya 0.97   DA: 24 PA: 11 MOZ Rank: 35

  • Welcome to the Red Pitaya documentation
  • What do I need before I start? 1.2

3.2.4. Red Pitaya OS — Red Pitaya 0.97 Documentation   DA: 24 PA: 40 MOZ Rank: 65

  • And it executes which installs additional Debian packages (mostly libraries) needed by Red Pitaya applications
  • also extracts ecosystem*.zip (if one exists in the current directory) into the FAT partition
  • Optionally (code can be commented out) also executes and which provide additional

Red Pitaya Distributor Mouser   DA: 14 PA: 25 MOZ Rank: 41

  • Red Pitaya is an open-source measurement and control tool that can replace many expensive laboratory instruments
  • Red Pitaya is at the heart of an ecosystem that consists of Bazaar, a marketplace where downloadable applications are available within a single click, and Backyard, an organized repository containing the corresponding open-source code, documentation and …

Red Pitaya (hardware)   DA: 16 PA: 27 MOZ Rank: 46

  • Red Pitaya is a project intended to be alternative for many expensive laboratory measurement and control instruments
  • It is known as open-source, though the hardware design is proprietary
  • It has two 125MS/s RF input and two 125MS/s RF outputs

RedPitaya V1.1 Board FPGA Red   DA: 12 PA: 14 MOZ Rank: 30

  • Red Pitaya is an open-source-software measurement and control tool that consists of easy-to-use visual programming software and free of charge, ready-to-use open-source, web-based test and measurement instruments.

4.1. Simple LED Blinker — Red Pitaya Learning FPGA 0.97   DA: 38 PA: 34 MOZ Rank: 77

  • Finally, we are ready to program the FPGA with our own bitstream file located in the /root/ folder on Red Pitaya
  • To program the FPGA simply execute the following line in the Linux console on your Red Pitaya (use Putty): cat /root/Led_blink.bit > /dev/xdevcfg
  • Now, you should see the 0th LED blink
  • Don’t worry, you did not destroy your Red

RedPitaya セットアップ レビュー   DA: 17 PA: 32 MOZ Rank: 55

  • RedPitaya セットアップ レビュー
  • この記事では、日本でも発売となった プログラマブル小型計測ボードRed Pitaya のセットアップをレビューしたいと思います。
  • Red Pitaya (901-0302) はもともとKickstarterでうまれた計測ボードで、アプリを新たにインストールする

Red Pitaya FPGA Project 4 – Frequency Counter » Anton   DA: 17 PA: 17 MOZ Rank: 41

  • To start off download the project from the github
  • First, build the necessary custom IP cores by navigating to /redpitaya_guide base folder in Vivado’s tcl console and execute
  • This will create all custom IP cores in the /redpitaya_guide/tmp/cores folder
  • In this project we will use axis_red_pitaya_adc and axis_red

PyRedPitaya · PyPI   DA: 8 PA: 21 MOZ Rank: 37

  • Logging onto the redpitaya using ssh, one can start the ipython shell and run : from PyRedPitaya.board import RedPitaya redpitaya = RedPitaya() print redpitaya.ams.temp # Read property = 0b10101010 # Write property

Easy FPGA Project With Red Pitaya   DA: 21 PA: 39 MOZ Rank: 69

  • redpitaya> cat /tmp/fpga.bin >/dev/xdevcfg
  • Congratulations the led should be blinking and you implemented the project in the FPGA
  • Testing a new exercise at the JSI TRIGA reactor - Cherenkov radiation-based power meter.

RedPitayaを使ったSDR構成のまとめ   DA: 26 PA: 26 MOZ Rank: 62

RedPitayaに追加が必要なハードはコネクタ類 E1, E2、IN1, IN2, OUT1, OUT2と接続されるのでRedPitayaの上部にユニバーサル基板を置く配置とした。E1、E2は2列26ピンでeBayでも販売されているが入手はあまり楽でない。

Synchronize A Cluster Of Red Pitayas Koheron   DA: 15 PA: 35 MOZ Rank: 61

  • Synchronize a cluster of Red Pitayas
  • In its standard configuration, the Red Pitaya uses an on-board 125 MHz crystal to feed the 125 MSPS ADC and the 125 MSPS DAC
  • In this post, we present how to synchronize the outputs of multiple Red Pitayas on the same clock using the SATA connector (daisy-chain) available on the Red Pitaya.

Red Pitaya Scripting Summary (Basics)   DA: 13 PA: 50 MOZ Rank: 75

izi jcf jupyter redpitaya [email protected]­f052a6:/home# cd jcf [email protected]­f052a6:/home/jcf# If not done already, this is the moment to install mc: sudo apt-get install mc After that, mcedit can be used to write the script from redpitaya.overlay.mercury import mercury as FPGA overlay = FPGA() LED = FPGA.led

Upgrading Red Pitaya's Software   DA: 21 PA: 35 MOZ Rank: 69

  • Users can also check for updates manually
  • Open Red Pitaya desktop using your WEB browser
  • Click on the upgrade alert or on the ecosystem version label in bottom right corner
  • Select ecosystem version and start OS updater
  • Follow the steps in the OS updater app in order to install new OS
  • OS upgrade might cause your Red Pitaya desktop to freeze

RedPitaya STEMlab 125-14   DA: 21 PA: 50 MOZ Rank: 85

RedPitaya STEMlab 125-14 is the 21st Century "Swiss Army Knife for Engineers" – Here is an incredibly innovative 'do-it-all' circuit board with a FPGA (Field Programmable Gate Array), ARM processor, low power and high-speed dual-channel simultaneous sampling ADC (analog-to-digital converter) and DAC (digital-to-analog converter), onboard RAM, SMA Inputs and Outputs, extension connectors

Pyrpl.redpitaya — Pyrpl Documentation   DA: 20 PA: 40 MOZ Rank: 75

  • All keyword arguments may be specified in the branch 'redpitaya' of this config file
  • Alternatively, they can be overwritten by keyword arguments at the function call
  • 'config=None' specifies that no persistent config file is saved on the disc
  • Possible keyword arguments and their defaults are: hostname='', # the ip or hostname of

STEMlab 122.88-16 SDR Kit Basic   DA: 10 PA: 43 MOZ Rank: 69

REDPITAYA – Tailored for HF+50MHz SDR & other RF applications – Comes with two 16 bit ACDs 50 ohm inputs; 14 bit DACs 50 ohm outputs – Three times bigger dual core ARM Cortex A9 + Xilinx Zynq 7020 FPGA

RedPitaya SDRlab 122-16   DA: 21 PA: 50 MOZ Rank: 88

  • Find RedPitaya SDRlab 122-16 and get Free Shipping on Most Orders Over $99 at DX Engineering! RedPitaya SDRlab 122-16 is a rigorously upgraded version of their revolutionary STEMlab board, redesigned specifically for SDR and other RF applications
  • It is capable from well below HF, with an emphasis on all of HF through the 6 meter band using popular SDR software.

Red Pitaya Hardware Specifications V1.1   DA: 20 PA: 50 MOZ Rank: 88

17,600 LUTs 28k Logic Cells 80 DSP slices Dual ARM® Cortex™­A9 Memory: 4 Gb DDR3 SDRAM (512 MB) SD card:

Newest 'redpitaya' Questions   DA: 17 PA: 27 MOZ Rank: 63

  • The RedPitaya is a great looking instrument, but I'm afraid that I'll kill my new (expensive) device by stray voltage or ESD off my bench, within a few days
  • Is it planned to make an optional " printing 3d-model oscilloscope redpitaya

DF4IAH RadioBox Application For The Red Pitaya   DA: 16 PA: 20 MOZ Rank: 56

  • DF4IAH RadioBox application for the Red Pitaya Transmitter and Receiver add-ons for the Red Pitaya View on GitHub Download .zip Download .tar.gz The RadioBox application This repository enhances the Red Pitaya hardware and the ecosystem-0.94 by adding these function blocks as the radiobox contributed application:

Redpitaya RED Pitaya V 1.1   DA: 14 PA: 36 MOZ Rank: 71

  • Reviews Terms & Conditions Rating Guidelines
  • Conrad - your technology specialist
  • More than 550,000 products for professionals
  • 95 years of experience in electronics, information technology, mea HELPDESK

API — Red Pitaya Jupyter 0.97 Documentation   DA: 32 PA: 11 MOZ Rank: 65

  • class redpitaya.drv.uio.uio(uio: str) [source] ¶
  • UIO class provides user space access to UIO devices
  • When instantiating this class the next steps are performed: The provided UIO device file is first opened
  • An attempt is made to exclusively lock the device file.

Tutorial And Package For The Redpitaya Scope/generator   DA: 21 PA: 20 MOZ Rank: 64

  • Starting from this post I finally got something with this RedPitaya board using the redPitaya SCPI server and string commands through TCP/IP connection
  • This is a cross post of a post I put here on the Mathematica StackExchange
  • SCPI server works ways faster than the serial port access
  • Below is a tutorial I built while experimenting with the board and SCPI commands and existing examples.

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