DKARDU Mini Logic Analyzer

DKARDU Mini Logic Analyzer User Manual

Model: Mini Logic Analyzer (Part No. JK-US-680)

1. Introduzzjoni

The DKARDU Mini Logic Analyzer is an open-source hardware and software logic analyzer designed for efficient debugging and protocol analysis. It features a compact design, 8 channels, and supports a maximum sampling rate of 24MHz, along with over 100 types of protocol analysis. This device significantly enhances efficiency in scenarios involving complex systems with multiple components, timing analysis, and performance analysis.

This manual provides detailed instructions for setting up, operating, and maintaining your Mini Logic Analyzer.

DKARDU Mini Logic Analyzer with accessories

Image 1.1: The DKARDU Mini Logic Analyzer, including the main unit, USB-C cable, 10 female-to-female Dupont cables, and 10 test hook clips.

2. Kontenut tal-Pakkett

Jekk jogħġbok ivverifika li l-oġġetti kollha elenkati hawn taħt huma inklużi fil-pakkett tiegħek:

  • 1 x Mini Logic Analyzer Unit
  • 1 x USB għal Kejbil tat-Tip Ċ
  • 10 x Female-to-Female Dupont Cables
  • 10 x Test Hook Clips

3. Speċifikazzjonijiet

KaratteristikaSpeċifikazzjoni
Kompatibilità tas-Sistema OperattivaWindows, Linux, Mac, Android
Software AmbjentPolzView (Sigrok open-source community)
Sampling Channels8 Kanali
Massimu SampRata tal-linarda24MHz
Logic Level (Low)[-0.5V, 0.8V]
Logic Level (High)[2V, 5.25V]
Input Voltage Firxa[-0.5V, 5.25V]
DimensjonijietApproximately 3.9cm x 2.0cm (1.54in x 0.79in)
Piż50 g
Tip ta' KonnetturUSB Tip-Ċ
Quddiem u lura view of the Mini Logic Analyzer

Immaġni 3.1: Minn quddiem u minn wara views of the Mini Logic Analyzer, showing the DLA V2.1 marking on the back and channel labels (CH0-CH7, GND) on the front.

Dimensions of the Mini Logic Analyzer compared to a coin

Image 3.2: Physical dimensions of the Mini Logic Analyzer, measuring approximately 30mm (1.18in) in length and 19mm (0.74in) in width, shown next to a coin for scale.

4. Setup

4.1. Software Installation (PulseView)

The Mini Logic Analyzer uses PulseView software, which is part of the open-source Sigrok project. Follow these steps to install PulseView:

  1. Download PulseView: Obtain the appropriate installation package for your operating system (Windows, Linux, Mac, Android) from the official Sigrok website or the provided GitHub link: https://github.com/wuxx/nanoDLA/tree/master/software.
  2. Mexxi l-Installatur: Double-click the downloaded installation package and follow the on-screen instructions to complete the installation.
Screenshot of PulseView paġna download softwer

Image 4.1: Screenshot showing the PulseView software download options for various operating systems (Linux, Mac, Android, Windows).

4.2. Installazzjoni tas-sewwieq

After installing PulseView, you need to install the necessary drivers for the logic analyzer to be recognized by your computer. This process typically involves using the Zadig utility for Windows users.

  1. Qabbad l-Apparat: Plug the nanoDLA (Mini Logic Analyzer) into a PC USB port using the provided Type-C cable.
  2. Rikonoxximent Inizjali: Your PC's Device Manager may initially recognize the nanoDLA as an 'other device' or an unknown device.
  3. Launch Zadig: Fittex għal and open the Zadig utility on your PC. If you don't have it, download it from the Sigrok website or a reliable source.
  4. Agħżel Apparat: In Zadig, go to 'Options' and toggle on 'List All Devices'. From the dropdown menu, select the device named "fx2lafw" (or similar, look for USB ID 1D50:608C).
  5. Installa Driver: Ensure "WinUSB" is selected in the driver field, then click the "Install Driver" button.
Screenshot of Zadig utility for driver installation, step 2

Image 4.2: Screenshot illustrating the Zadig utility interface, showing the device list and the option to select 'other devices' for driver installation.

Screenshot of Zadig utility for driver installation, step 3

Image 4.3: Screenshot of the Zadig utility, highlighting the selection of "fx2lafw" (USB ID 1D50:608C) and the "WinUSB" driver for installation.

After successful driver installation, the nanoDLA should be recognized as a "Universal Serial Bus Device" in your Device Manager.

5. Istruzzjonijiet Operattivi

Once the software and drivers are installed, you can begin using your Mini Logic Analyzer with PulseView.

  1. Connect and Launch: Plug the nanoDLA into your PC's USB port and open the PulseView softwer.
  2. Configure Channels and SampRata tal-linarda: In PulseView, configure the desired channels (CH0-CH7) and set the sampling rate. The maximum sampling rate is 24MHz.
  3. Ibda Samplinarda: Click the "Run" button (usually located in the top-left corner) to begin sampling data.
Screenshot of PulseView interface showing sampling in progress

Image 5.1: Screenshot of the PulseView software interface, demonstrating how to configure channels and sampling rate, and initiate data samplipp.

  1. Decode Signals: After signals are sampled, you can use the built-in decoders to analyze them. For example, to decode UART sampled data:
    • Click the decoder menu.
    • Select the UART protocol.
    • Configure UART parameters such as channels, baud rate, data bits, and parity type.
    Is-sampled data will then be decoded and displayed.

Important Note on SampRata tal-linarda: While the logic analyzer supports up to 24MHz sampling, the actual achievable rate can vary depending on your PC's operating system, USB controller, USB bus status, and USB drivers. For optimal signal reconstruction, a sampling rate at least 5 times (and ideally 10 times) the original signal frequency is recommended. In practice, Linux systems often achieve 24MHz, while most Windows systems (Win7/Win10) typically achieve 16MHz.

6. Manutenzjoni

To ensure the longevity and optimal performance of your DKARDU Mini Logic Analyzer, follow these general maintenance guidelines:

  • Ħażna: Store the device in a dry, dust-free environment away from extreme temperatures.
  • Tindif: Uża drapp artab u niexef biex tnaddaf l-apparat. Evita li tuża prodotti tat-tindif likwidi jew solventi.
  • Immaniġġjar: Handle the device and its accessories with care to prevent physical damage. Avoid bending or stressing the connectors.
  • Kura tal-Cable: Inspect cables regularly for any signs of wear or damage. Replace damaged cables immediately.

7 Issolvi l-problemi

If you encounter issues with your Mini Logic Analyzer, consider the following troubleshooting steps:

  • Apparat Mhux Rikonoxxut:
    • Ensure the USB cable is securely connected to both the logic analyzer and your computer.
    • Verify that the drivers are correctly installed using the Zadig utility as described in Section 4.2.
    • Ipprova qabbad ma 'port USB differenti fuq il-kompjuter tiegħek.
    • Ibda mill-ġdid il-kompjuter tiegħek.
  • No Signal or Incorrect Readings:
    • Check the connections of the Dupont cables and test clips to your circuit. Ensure they are making good contact.
    • Verify that the correct channels are selected and configured in PulseView.
    • Aġġusta l-sampling rate. If the signal frequency is too high for the chosen sampling rate, the readings may be inaccurate. Remember the 5x-10x rule mentioned in Section 5.
    • Ensure the logic levels of your circuit are within the input voltage range of the logic analyzer ([-0.5V, 5.25V]).
  • Software Issues (PulseView):
    • Ensure you are using the latest version of PulseView.
    • Consult the PulseView documentation or community forums for specific software-related issues.

8. Garanzija u Appoġġ

8.1. Informazzjoni dwar Garanzija

Specific warranty details for this product may vary. Please refer to the purchase documentation or contact your retailer for information regarding warranty coverage.

8.2. Appoġġ Tekniku

For technical assistance, software updates, or additional documentation, please refer to the following resources:

If you require further assistance, please contact DKARDU customer support through your purchase platform.

Dokumenti Relatati - Mini Logic Analyzer

Preview Keysight 16800 Series Portable Logic Analyzers
Explore the Keysight 16800 Series portable logic analyzers, offering advanced measurement capabilities for digital applications with flexible configurations, deep memory, and high-speed timing analysis, all within budget. Learn about features, specifications, and ordering options.
Preview Acute Logic Analyzer: Comprehensive Protocol Decode and Bus Trigger Guide
Explore the advanced protocol decoding and bus triggering capabilities of Acute logic analyzers. This guide details support for numerous serial and parallel communication protocols, essential for embedded system development and debugging.
Preview Manwal tal-Utent tal-Analizzatur tal-Loġika IKA LOGIC: Gwida għas-Softwer u l-Apparat ScanaStudio
Manwal komprensiv għall-utent għall-analizzaturi loġiċi IKA LOGIC, li jkopri s-softwer ScanaStudio, l-installazzjoni tal-apparat, it-tħaddim, u s-soluzzjoni tal-problemi għal mudelli bħal SP209, is-serje SQ, u ScanaPLUS.
Preview Gwida għall-Utent tar-Rivelazzjoni tas-Softwer Radjanti tas-Semikondutturi tal-Kannizzata
Gwida komprensiva għall-utent għas-softwer Radiant ta' Lattice Semiconductor, li tiddeskrivi l-għodod Reveal Inserter u Reveal Analyzer għad-debugging tad-disinn tal-FPGA, l-analiżi tal-loġika, u t-traċċar tas-sinjali.
Preview Xilinx Vivado Design Suite User Guide: Programming and Debugging FPGA Designs
Comprehensive guide to programming and debugging FPGA designs using Xilinx Vivado Design Suite. Covers bitstream generation, hardware programming, in-system debugging, and logic analysis with ILA and ChipScope Pro.
Preview Acute PC-based T&M Instruments: 匯流排分析與觸發指南
探索 Acute PC-based T&M Instruments 的詳細指南,涵蓋各種匯流排分析與觸發功能,包括 1-Wire、CAN FD、I2C、SPI、USB 等多種協定。了解如何使用 Acute 儀器進行高效的訊號偵測與除錯。