Smacq Technologies USB-5200 Series User Manual

Multifunctional data acquisition devices

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USB-5200 Series Multifunctional
Data Acquisition Devices
User Manual
Rev. C
Smacq
Beijing Smacq Technology Co., Ltd.
Smacq.com
Smacq.cn

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Summary of Contents for Smacq Technologies USB-5200 Series

  • Page 1 USB-5200 Series Multifunctional Data Acquisition Devices User Manual Rev. C Smacq Beijing Smacq Technology Co., Ltd. Smacq.com Smacq.cn...
  • Page 2: Statement

    Statement Copyright ©2018 Beijing Smacq Technology Co., Ltd. All rights reserved No content of this manual may be reproduced, modified or abridged without prior consent and written permission. Trademark information Smacq is a registered trademark of Beijing Smacq Technology Co., Ltd The names of the other products and companies mentioned in this document are trademarks or trade names of their respective companies.
  • Page 3: Safety Requirements

    Safety Requirements Warning Only the voltage within the specified range can be connected. Voltage exceeding the specified range may cause damage to the device, and even present a negative impact on personal safety. Check the product specification for detailed reference to the range of voltages that can be connected by each port.
  • Page 4: Measurement Categories

    Measurement Categories Warning For use in measurement category I (CAT I) only. Do not use in measurement category II/III/IV. Use this device to connect signals or make measurements. Measurement categories Note Measurement categories I (CAT I) means that measurements are made on a circuit that is not directly connected to the main power supply.
  • Page 5 Pollution degree description Pollution degree 1: No pollution, or only dry non-conductive pollution. This pollution degree has no effect. For example: a clean room or an air-conditioned office environment. Pollution degree 2: Generally only dry non-conductive pollution occurs. Temporary conduction can sometimes occur due to condensation. For example: General indoor environment.
  • Page 6: Table Of Contents

    CONTENT STATEMENT......................1 SAFETY REQUIREMENTS................... 2 MEASUREMENT CATEGORIES................... 3 ENVIRONMENT......................3 GETTING STARTED..................... 7 PRODUCT INTRODUCTION..................7 1.1. FUNCTION DIAGRAM..................8 1.2. PRODUCT SPECIFICATIONS................8 1.3. PRODUCT UNPACKING..................11 1.4. PRECAUTIONS......................11 CHECK THE PACKING LIST..................11 INSTALLATION....................12 CONNECTOR SIGNAL PINS DISTRIBUTION............12 2.1. 2.2. USB CABLE REINFORCEMENT DESIGN ..............13 DRIVER INSTALLATION..................14 2.3.
  • Page 7 IMMEDIATE OUTPUT....................24 HARDWARE TIMING....................24 FINITE NUMBER OUTPUT MODE ................24 INFINITE LOOP OUTPUT MODE................. 25 INFINITE NON-LOOP OUTPUT MODE................ 25 5.2. OUTPUT UPDATE RATE..................25 5.3. DO SAMPLING CLOCK..................25 5.4. TRIGGER......................26 CLEAR TRIGGER ....................... 27 SYNCHRONIZATION SYSTEM................28 6.1.
  • Page 8: Getting Started

    DLLs and support for mainstream development languages including VC++, VB, C#, LabVIEW, and MATLAB. USB-5200 series data acquisition device provides multiple models, in terms of function and performance. For detailed reference, please turn to Chapter 1.3 for specification description of each model.
  • Page 9: Function Diagram

    1.2. Function Diagram Figure 1.1 shows the schematic diagram of USB-5200 series data acquisition device. Digital system Trigger source: Software trigger External trigger Din trigger USB bus Sampling clock source: Internal module sampling clock source External sampling clock source Digital I/O FIFI cache Figure 1.1 USB-5200 series data acquisition device functions...
  • Page 10 USB-5420/5421/5410/5411:12-bit kS/s/Ch,continuous USB-5211/5221: 500 USB-5210/5220: 250 kS/s/Ch,continuous Highest sampling rate USB-5611/5621: 500 kS/s/Ch,continuous kS/s/Ch,continuous USB-5610/5620: 250 USB-5411/5421: 500 kS/s/Ch,continuous USB-5410/5420: 250kS/s/Ch,continuous Timing resolution 10ns Channel synchronization ±10 V / ±5V Range Input coupling mode Input impedance 100 MΩ Small signal bandwidth 450 kHz (-3 dB)...
  • Page 11 DOUT highest 10 MS/s/Ch update rate 10 ns Timing resolution Channel synchronization Yes DIN software FIFO 2 MPts/Ch 2048 Pts/Ch DIN pre-trigger FIFO DOUT hardware FIFO 2048 Pts/Ch DIN capture mode Continuous acquisition mode and OneShot mode Direct output; onboard FIFO waveform periodic DOUT output mode generation;...
  • Page 12: Product Unpacking

    Bus interface USB2.0 High Speed interface Power supply requirements USB interface 4.5 V~5.5 V power supply Typical current 420 mA without load 600mA Maximum Load Physical properties Without connectors: 150*96*28 Size (mm) Connectors included: 150*112*28 Without connectors: about 185g Weight (g) Connectors included: about 230g I/O connectors Bolt terminals...
  • Page 13: Installation

    2. Installation This chapter describes signal connection and drive installation of USB-5200 series data acquisition device. 2.1. Connector signal pins distribution Figure 2.1 USB-5200 signal pins distribution Table 2.1, Signal pin allocation Notes Signal name Analog input 0 AI 0...
  • Page 14: Usb Cable Reinforcement Design

    CONV IN 2.2. USB cable reinforcement design USB cable connectors are prone to be pulled off during operation. USB-5200 series data acquisition devices provide a cable reinforcement design, with which a strap can be used to fix the USB cable to the device to prevent the accidents. Check Figure 2.2 for details.
  • Page 15: Driver Installation

    Figure 2.2 USB cable reinforcement design 2.3. Drive installation Smacq USB-5200 series data acquisition device support Microsoft Windows XP, Windows 7, Windows 8/8.1, and Windows 10, including all the 32-bit and 64-bit versions. To install the driver for USB-5200 devices, you need to turn off driver signature enforcement first.
  • Page 16: Analog Input (Ai)

    Figure 2.3 the Device Manager after the driver is correctly installed 3. Analog Input(AI) This chapter describes measuring the relevant content of analog input signals on USB-5200 series data acquisition devices. AI here is short for Analog Input. 15 |...
  • Page 17: Circuit Diagram

    Figure 3.1 analog input circuit 3.2. Signal Connection Mode The AI acquisition connection mode of the USB-5200 series data acquisition device supports grounding reference single-ended input. The positive end of the analog input signal is connected to the Ain port of the analog input port, and the negative end of the input signal is linked to the AGND port.
  • Page 18: Limited Number Acquisition Mode

    The set number of collection points cannot exceed 2MPts. 3.4. AI sampling clock The USB-5200 series data acquisition device has a rich collection timing option. The schematic diagram of the AI sampling clock is shown in Figure 3.2. AI timer...
  • Page 19: Trigger

    3.5. Trigger The USB-5200 series data acquisition device provides rich trigger options. The schematic diagram of the AI acquisition trigger options are shown in Figure 3.3. AiSoftTrig software trigger GlobalSoftTrig global software trigger Ext_Trig_IN external trigger input AI trigger signal...
  • Page 20 Figure 3.4 AI pre-trigger function When the pre-trigger point is set to 0, the data before the trigger signal is not stored, and the user will not be able to obtain the signal state before the trigger signal. When the pre-trigger signal is set to be larger than 0, for example, in Figure 3.4, the number of pre-trigger points is set to 3, then the data before the trigger signal will be stored, and when the stored quantity reaches 3, the newly acquired data will automatically remove the oldest data in the FIFO to ensure that the latest 3 data is...
  • Page 21: Digital Input (Di)

    4. Digital Input(DI) This chapter introduces the digital input signal acquisition on USB-5200 series data acquisition devices. DI is the abbreviation of Digital Input here. Figure 4.1 is a schematic diagram of the digital input circuit. Figure 4.1 digital input circuit Figure 4.1.
  • Page 22: Sampling Rate

    The number of set collection points cannot exceed 2MPts. 4.2. Sampling rate For USB-5200 series of data acquisition devices, the DI sampling rate is up to10 Msa/s/ch. This is parallel simultaneous sampling of all channels, with each channel able to achieve this highest sampling rate.
  • Page 23: Clear Trigger

    DiSoftTrig software trigger GlobalSoftTrig global software trigger Ext_Trig_IN external trigger input DI trigger signal Din_0 edge trigger Din_1 edge trigger DI acquisition tigger DO acquisition trigger Figure 4.3 DI trigger options The DI acquisition uses the DiSoftTrig software trigger as the trigger source by default. The DI acquisition can use other trigger sources via software settings to achieve the synchronization of each function.
  • Page 24 Figure 4.4 DI pre-trigger function When the pre-trigger point is set to 0, the data before the trigger signal is not stored, and the user will not be able to obtain the signal state before the trigger signal. When the pre-trigger signal is set to be larger than 0, for example, in Figure 4.4, the number of pre-trigger points is set to 3, then the data before the trigger signal will be stored, and when the stored quantity reaches 3, the newly acquired data will automatically remove the oldest data in the FIFO to ensure that the latest 3 data is...
  • Page 25: Digital Output

    5. Digital Output(DO) This chapter introduces the digital signal output for the USB-5200 series data acquisition device. The digital input is referred to as DO here, the abbreviation of Digital Output. Figure 5.1 is a schematic diagram of the digital output circuit.
  • Page 26: Infinite Loop Output Mode

    DO output level state will remain at the level defined by the last point. 5.2. Output update rate USB-5200 series data acquisition device DO output update rate can reach up to 10MSa/s/Ch. This means parallel simultaneous sampling of all channels, while each channel can achieve this highest sampling rate.
  • Page 27: Trigger

    See the "Synchronization System" chapter for details on the external clock. 5.4. Trigger The USB-5200 series of data acquisition devices provide a rich set of trigger options, as shown in Figure 5.3, which describes trigger options for the DO output. DoSoftTrig software trigger...
  • Page 28: Clear Trigger

    Clear trigger The DO trigger status can be reset to an untriggered state via software settings. 27 |...
  • Page 29: Synchronization System

    Figure 6.2 Sampling clock output circuit 6.2. External trigger The pins of external trigger input and output are used to trigger the USB-5200 series acquisition device in synchronization with an external device. Each function trigger source of the acquisition device can select the external trigger input pin Ext_Trig_In as the trigger source.
  • Page 30 The external trigger input circuit diagram is shown in Figure 6.3. Figure 6.3 External trigger input circuit When the trigger signal of the specified function is set as the output source, the Ext_Trig_Out pin will output a high level pulse for 1us while the function is triggered. The circuit diagram of the external trigger output Ext_Trig_Out is shown in Figure 6.4.
  • Page 31: Service And Warranty

    7. Service and Warranty Beijing Smacq Technology Co., Ltd. is committed to its products during the warranty period, if the product fails under normal use in warranty, we will repair or replace defected parts for free. Please refer to the warranty explanation in the box for detailed instructions.
  • Page 32: Ordering Information

    8. Ordering Information Host Model Notes 16-bit, 16-AI(500 kSa/s) 2-DI 2-DO USB-5221 16-bit, 16-AI(250 kSa/s) 2-DI 2-DO USB-5220 USB-5211 16-bit, 8-AI(500 kSa/s) 8-DI 8-DO USB-5210 16-bit, 8-AI(250 kSa/s) 8-DI 8-DO 14-bit, 16-AI(500 kSa/s) 2-DI 2-DO USB-5621 14-bit, 16-AI(250 kSa/s) 2-DI 2-DO USB-5620 14-bit, 8-AI(500 kSa/s) 8-DI...

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