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PlutoSky P1 AD9363 ZYNQ7010 Fully Compatible with ADALM-PLUTO Firmware, Software & Ecosystem

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$140.00 $0.00

1. FULLY COMPATIBLE WITH ADALM-PLUTO FIRMWARE & SOFTWARE ECOSYSTEM

PlutoSky-P1 is fully compatible with the original PlutoSDR firmware, drivers, and software environment. Users can directly run existing PlutoSDR applications, FPGA images, Linux firmware, MATLAB/Simulink workflows, and GNU Radio projects without changing their development process.

2. POWERFUL SDR PLATFORM WITH AD9363 RF TRANSCEIVER & ZYNQ7010 FPGA

Built with the AD9363 RF transceiver and Xilinx Zynq-7010 FPGA, PlutoSDR-P1 delivers a flexible software defined radio platform for wireless communication research, RF experimentation, signal processing, and custom SDR development.

3. PLUG-AND-PLAY REPLACEMENT FOR PLUTOSDR PROJECTS

Designed as a PlutoSDR-compatible hardware platform, PlutoSDR-P1 supports existing PlutoSDR tools, examples, and community resources. Easily migrate your current SDR projects while enjoying a robust hardware design optimized for development and experimentation.

4. OPEN SOURCE SDR DEVELOPMENT PLATFORM

Access a rich open-source SDR ecosystem with support for GNU Radio, MATLAB/Simulink, Python-based workflows, and FPGA customization. Ideal for engineers, researchers, students, and makers developing next-generation wireless applications.

5. VERSATILE RF APPLICATIONS FROM EDUCATION TO RESEARCH

Covering a broad range of SDR applications including spectrum analysis, amateur radio, IoT research, wireless protocol development, satellite communication experiments, and advanced RF algorithm testing. PlutoSDR-P1 provides a compact and powerful solution for both learning and professional projects.

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  • PlutoSky P1 AD9363 ZYNQ7010 Fully Compatible with ADALM-PLUTO Firmware, Software & Ecosystem
  • PlutoSDR-MIMO AD9363 ZYNQ7010 Compatible with ADALM-PLUTO
  • PlutoSDR-MIMO AD9363 ZYNQ7010 Compatible with ADALM-PLUTO
  • PlutoSDR-MIMO AD9363 ZYNQ7010 Compatible with ADALM-PLUTO
  • PlutoSDR-MIMO AD9363 ZYNQ7010 Compatible with ADALM-PLUTO
  • PlutoSDR-MIMO AD9363 ZYNQ7010 Compatible with ADALM-PLUTO
  • PlutoSky P1 AD9363 ZYNQ7010 Fully Compatible with ADALM-PLUTO Firmware, Software & Ecosystem
  • PlutoSDR-MIMO AD9363 ZYNQ7010 Compatible with ADALM-PLUTO
  • PlutoSDR-MIMO AD9363 ZYNQ7010 Compatible with ADALM-PLUTO
  • PlutoSDR-MIMO AD9363 ZYNQ7010 Compatible with ADALM-PLUTO
  • PlutoSDR-MIMO AD9363 ZYNQ7010 Compatible with ADALM-PLUTO
  • PlutoSDR-MIMO AD9363 ZYNQ7010 Compatible with ADALM-PLUTO
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  • PlutoSky P1 AD9363 ZYNQ7010 Fully Compatible with ADALM-PLUTO Firmware, Software & Ecosystem
  • PlutoSDR-MIMO AD9363 ZYNQ7010 Compatible with ADALM-PLUTO
  • PlutoSDR-MIMO AD9363 ZYNQ7010 Compatible with ADALM-PLUTO
  • PlutoSDR-MIMO AD9363 ZYNQ7010 Compatible with ADALM-PLUTO
  • PlutoSDR-MIMO AD9363 ZYNQ7010 Compatible with ADALM-PLUTO
  • PlutoSDR-MIMO AD9363 ZYNQ7010 Compatible with ADALM-PLUTO
  • Description
User Manual

Tutorial Blog

To be added later

Github Repo:

https://github.com/OpenSourceSDRLab/PlutoSky-P1

Hardware Schematic file:

https://github.com/OpenSourceSDRLab/PlutoSky-P1/tree/main/hardware

Tutorial Videos:

To be added later

Production Description

PlutoSky P1 is based on the official ADALM-PLUTO, designed for RF education, wireless prototyping, amateur radio, spectrum monitoring and signal algorithm development. The core components of PlutoSky P1 are all the same as ADALM-PLUTO (i.e., PlutoSDR), and it is fully compatible with the official analogdevicesinc/plutosdr-fw firmware. Built around the integrated AD9363 RF agile transceiver paired with Xilinx Zynq Z-7010 SoC (Dual ARM A9 + FPGA), PlutoSky P1 offers 2 receive channels and 2 transmit channels which can be operated in full duplex, capable of generating or measuring RF analog signals from 70 to 6000 MHz (after hacking the AD9363 to AD9361), at up to 61.44 Mega Samples per Second (MSPS) with a 20 MHz bandwidth. The PlutoSky P1 is entirely type C USB powered with the default firmware. With support for Windows, and Linux. Wide application scenarios include FM radio reception, ADS-B aircraft tracking, spectrum analysis, 2.4G WiFi signal testing, amateur satellite communication, simple cognitive radio prototyping and basic radar signal simulation.

  • Ultra-compact pocket-sized design with integrated protective plastic enclosure, lightweight & easy to carry
  • Native full-duplex 2TX+2RX independent channel, simultaneous transmit & receive support
  • Built-in Zynq Z-7010 FPGA + AD9363 high-performance RF chip, stable RF performance
  • Cross-platform USB 2.0 bus-powered, plug-and-play without external power adapter
  • Full open-source firmware, schematic
  • Native compatibility with MATLAB, Simulink, GNU Radio, GQRX, SDRangel and mainstream SDR applications
  • Low learning curve, ideal for university teaching and beginner SDR learning

 

Core Chips and Hardware Parameters


Hardware Component

Specific Model / Specification

Description

RF Transceiver

Analog Devices AD9363

Highly integrated RF agile transceiver, responsible for core RF signal transmission, reception, modulation, and demodulation.

Main SoC (FPGA)

Xilinx Zynq Z-7010

(Specific model: XC7Z010)

The core processing unit integrating an ARM processor system (PS) with an FPGA programmable logic (PL) array. (Full Part Number is XC7Z010-1CLG225C).

CPU Core

Single-core ARM Cortex-A9

Runs at 667 MHz, used to operate the embedded Linux system and handle USB communication.

FPGA Logic Cells

28,000 Logic Cells

Used for custom Digital Signal Processing (DSP) and high-speed logic acceleration.

DSP Slices

80

Provides hardware-level efficient digital signal processing capabilities.

RAM

512 MB (4 Gb) DDR3L

Provides sufficient system running memory and data buffering.

Flash Memory

32 MB (256 Mb) QSPI Flash

Used to store the U-Boot bootloader and the default Linux-based firmware.

USB Interface

USB 2.0 PHY (On-the-Go)

Micro-USB interface, supports data transfer and device cascading (e.g., external network adapters).

RF Interfaces

SMA Female (50 Ω)

Equipped with 1 independent Receive (Rx) and 1 Transmit (Tx) antenna connector.

Clock Oscillator

40 MHz

Provides the base reference clock for the AD9363 RF chip.



Features and Performance Specifications



Parameter

Specification

Additional Information

RF Coverage

70 MHz to 6000 MHz

Covers a large number of mainstream wireless communication bands.

Number of Channels

2 Tx + 2 Rx

Supports independent operation, allowing for half-duplex or full-duplex operation.

Instantaneous Bandwidth

Up to 20 MHz

Instantaneous processing bandwidth for complex I/Q signals.

ADC/DAC Sample Rate

65.2 kSPS to 61.44 MSPS

The sampling rate supports flexible configuration and adjustment.

Conversion Resolution

12 bits

The precision of both the ADC (Analog-to-Digital) and DAC (Digital-to-Analog) converters.

Frequency Accuracy

±25 ppm

The accuracy of the internal system clock.

Power Supply

4.5 V - 5.5 V DC input

Fully powered via the USB interface, requiring no additional power adapter.

Software Ecosystem

Cross-platform (Windows / Linux / macOS)

Supports MATLAB, Simulink, and GNU Radio; provides C/C++/C#/Python APIs based on libiio.


Block Diagram





RF performance measurement and comparison



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