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1

Tian, Xiao Chun, Jie Li, Yu Bao Fan, Xi Ning Yu, and Jun Liu. "Design and Implementation of SPI Communication Based-On FPGA." Advanced Materials Research 291-294 (July 2011): 2658–61. http://dx.doi.org/10.4028/www.scientific.net/amr.291-294.2658.

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SPI (Serial Peripheral Interface) is a full-duplex serial communication interface bus. Now, many devices adopt SPI. However, in many other aspects, microcontroller and microprocessor have no SPI interface, data transmission is inconvenient. With the development of FPGA technology, the problem can be solved absolutely by the I/O port of FPGA. In this paper, after introducing the principle of SPI, we designed SPI interface with FPGA and implemented the communication between SPI interface and the device of CRG20 which has a SPI interface. The algorithm of design SPI interface through FPGA is implemented with VHDL. The results of simulation in Quartus II and FPGA simulation are also described. The SPI bus interface modules fulfill the goal demanded.
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2

Drndarevic, Vujo, Nenad Jevtic, and Radivoje Djuric. "USB-based radiation monitor." Nuclear Technology and Radiation Protection 21, no. 2 (2006): 73–78. http://dx.doi.org/10.2298/ntrp0602073d.

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The Universal Serial Bus has become a dominant interface for the connection of standard peripheral devices to a PC computer. This paper analyzes the possibilities of USB bus applications in the field of measurement and environmental monitoring. As a result, a gamma radiation monitor consisting of an USB-based universal peripheral device and a gamma probe with a GM counter, has been designed. For the interfacing monitor with the powerful and easy to use LabVIEW software package, an instrument driver as a set of virtual instruments has been developed. The proposed monitor is a flexible instrument which can be used for laboratory measurements, as an environ mental radiation monitor or for training purposes. Connected to the laptop computer, the monitor becomes a portable instrument suitable for field measurements. Basic measurements and functionality properties of the radiation monitor are presented here.
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Fu, Xiao Guang, and Xiao Jun Wang. "Design and Realization of the Data Collecting System Based on USB Bus Line." Key Engineering Materials 428-429 (January 2010): 440–43. http://dx.doi.org/10.4028/www.scientific.net/kem.428-429.440.

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Universal serial bus (USB) is a kind of new bus interface specification, whose characteristics are convenience, high speed, easiness to expand, low cost and low disturbance, etc. So it is extremely fit to be the communication interface between host computer and peripherals. This paper is mainly about the development of data collecting system based on of USB, including hardware design, firmware design, equipment driver programming and application software design based on Windows driver model (WDM). This system works stable. Both the sampling precision and the data transmission speed have reached expected effect.
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Xu, Chun Lei. "The Design of USB Protocol Layer Based on FPGA." Applied Mechanics and Materials 644-650 (September 2014): 3730–33. http://dx.doi.org/10.4028/www.scientific.net/amm.644-650.3730.

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Universal serial bus is put forward by seven corporations which are led by the Intel. It cost lowly, fast and easily expandable. USB is widely used in serial communication interface, widely used in computer peripherals and digital products. The USB protocol layer is the core unit of the USB device, which handles most of the contents of the USB protocol provides. This paper studies USB protocol layer design and implementation. Then USB protocol layer is completed based on FPGA.
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Mach, Vaclav, Milan Adámek, Jan Valouch, and Karla Barčová. "Control and indicating equipment communicating via the peripheral component interconnect express bus." Bulletin of Electrical Engineering and Informatics 9, no. 2 (April 1, 2020): 729–38. http://dx.doi.org/10.11591/eei.v9i2.1753.

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Nowadays, the Intruder Alarm system is commonly used to protect the life, health and the possession of people in big companies. However, these systems have limited options for managing and remote control. This lack is very often criticized by big companies which want to use the Intruder Alarm System with other applications like Access and Attendance control. The aim of this article is to design a Control and Indicating Equipment which can be implemented into commercially made Personal Computer as expansion card. The designed card provides the main function of the Intruder Alarm system which can be further extended by other applications. The system consists of external communication like Universal Serial Bus, Ethernet and General Packet Radio Service interface. Each individual part of the system is driven by a single microcontroller ATmega328P which can handle communication and evaluation of the current state obtained by devices connected to it. The design can offer all alarm and non-alarm visualization of smart control like irrigation, lights control, audio system, etc. The whole design is driven by the proper standardization and the design consists of every schematic which comes with the explanation
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6

Ebrahimi, Hassan, and Hans G. Kerkhoff. "A Digital On-Line Monitor for Detecting Intermittent Resistance Faults at Board Level." Journal of Circuits, Systems and Computers 28, supp01 (December 1, 2019): 1940003. http://dx.doi.org/10.1142/s0218126619400036.

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The reliability of board-level data communications intensively depends on the reliability of interconnections on a board. One of the most challenging interconnections reliability threats is intermittent resistive faults (IRFs). Detecting such faults is a major challenge. The main reason is the random behavior of these faults. They may occur randomly in time, duration and amplitude. The occurrence rate can vary from a few nanoseconds to months. This paper investigates IRF detection at the board level by introducing a new digital in situ IRF monitor. Hardware-based fault injection has been used to validate the proposed IRF monitor. As case studies, two widely used on-board transmission protocols namely the Universal Asynchronous Receiver Transmitter (UART) and the Serial Peripheral Interface bus (SPI), have been used. In addition, one fault management framework, based on the IJTAG standard, has been implemented to collect and characterize information from the monitors. The experimental results show that the proposed monitor is effective in detecting IRFs at the board level.
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Zhu, Lei, Xiao Bo Huo, Jiang Yong Wu, and Hui Jun Wang. "Multifunction USB FM Radio Based on LabVIEW." Applied Mechanics and Materials 347-350 (August 2013): 1477–81. http://dx.doi.org/10.4028/www.scientific.net/amm.347-350.1477.

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In order to make common PC with the functions of receiving FM stereo broadcasting from the local FM radio station and collecting the temperature and humidity data in surrounding environment, a multifunction USB FM radio based on LabVIEW is presented in this paper. In the presented FM radio, the C8051F340 processor with on-chip universal serial bus (USB) peripherals is used as slave computer to control the Si4702 through I2C bus and the DHT11 through I/O port, and PC is designed to be host computer to get user instructions and connect and control the slave computer to finish the functions of receiving FM stereo broadcasting and collecting the temperature and humidity data by graphical user interface (GUI) programed by LabVIEW software and USB communication. Experimental results show that the presented USB FM radio has a friendly GUI and can be used feasibly and efficiently. Furthermore, new functions of the system can be extended by virtue of upgrading GUI program.
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8

Zhu, Lei, Hui Jun Wang, and Wei Wei Li. "Posture Correction Device Based on LabVIEW." Advanced Materials Research 765-767 (September 2013): 2555–58. http://dx.doi.org/10.4028/www.scientific.net/amr.765-767.2555.

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In order to protect the health of people who often use computer, a posture correction device based on LabVIEW is proposed in this paper. The posture correction device consists of host computer and slave computer. Host computer is composed by graphical user interface (GUI) programmed by LabVIEW software in PC. Slave computer is composed of the C8051F340 processor with on-chip universal serial bus (USB) peripherals, three ultrasonic sensors HC-SR04 installed on the top, left, right side of the computer display measuring distance between user and PC, and humidity & temperature sensor DHT11. Through GUI and USB communication, host computer can get user instructions and connect and control the slave computer to finish the functions of calculating the distance between user and PC and collecting the humidity and temperature data. Experimental results show that the presented posture correction device has a humanized GUI and can be used expediently and easily.
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9

Le, Nhan Trong, Nguyen Tran Huu Nguyen, and Pham Le Song Ngan. "Generic framework for industrial 4.0 applications based on internet of things." Science & Technology Development Journal - Engineering and Technology 3, SI1 (November 9, 2020): First. http://dx.doi.org/10.32508/stdjet.v3isi1.513.

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The Internet of Things (IoTs) is a network of interconnected devices, transportations, home appliances, and other devices. They are functionally embedded in electronics, software, sensors, actuators, and connectivity that allows them to connect and exchange information. On the basis of the IoT concept, implementations are gradually being proposed in a range of areas, ranging from smart house, smart office and smart agriculture. In this research paper, a generic framework for smart monitoring applications based on the IoTs network is proposed. In this framework, low-powered sensor nodes are based on the micro:bit platform, providing a multiple footprints for different sensor connections. The wireless capability on micro:bit provides a complete solution to deploy the system in such places that wire is impractical to draw. The data is wirelessly gathered by a basestation node that is powered by Android Things operating system provided by Google. This operating system is based on the Android platform for smart devices and Internet of Things products. The approach to this framework indicates a low cost and minimum setup and especially amenable for applications control. To support many applications with minimum modifications, the framework is designed for easy expansion by supporting popular serial connection ports, including the Universal Asynchronous Receiver/Transmitter and Serial Peripheral Interface. With these connections, on one line data bus, several sensors can be added to match the different application requirements. In this paper, our platform is validated for an automatic water monitoring in aquaculture based on the temperature, pH and dissolved oxygen sensory data. Through our framework, the data is uploaded to a cloud for remote monitoring and providing alarms for users whenever the data is out of a predefined safe domain.
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10

T, Irm. "USB (Universal Serial Bus)." Al-Khwarizmi: Jurnal Pendidikan Matematika dan Ilmu Pengetahuan Alam 1, no. 2 (August 19, 2018): 41–50. http://dx.doi.org/10.24256/jpmipa.v1i2.91.

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USB device dibagi menjadi beberapa golongan kelas seperti Human Interface Device, Communication Device, Mass Strorage Device, Audio Device, Printing Device, dan lain sebagainya. Windows sebagai system operasi telah mengembangkan dan meningkatkan pelayanan kepada berbagai macam USB Device, terutama pada HID class device. perkembangan terkahir menunjukan bahwa Windows telah menangani HID USB device dengan baik. Dengan menggunakan interface Universal Serial Bus, maka sebuah UPS dengan Class HID dan subclass Power Device memiliki peluang yang sangat besar untuk diinterfacekan dengan Power Management pada system windows.
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11

Riedijk, Frank R., and Johan H. Huijsing. "Sensor Interface Environment Based on Serial Bus Interface." Measurement and Control 30, no. 10 (December 1997): 297–99. http://dx.doi.org/10.1177/002029409703001002.

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12

Kato, Junji. "Digital Interface; (The Last Chapter). Multimedia Interface. IEEE1394 High Performance Serial Bus." Journal of the Institute of Image Information and Television Engineers 51, no. 12 (1997): 2013–21. http://dx.doi.org/10.3169/itej.51.2013.

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13

Kong, Wei Peng, and Hui Bin Qin. "Design of the CY7C68013 Firmware Program for Data Collection and Parameter Control." Advanced Materials Research 337 (September 2011): 705–8. http://dx.doi.org/10.4028/www.scientific.net/amr.337.705.

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USB2.0 interface (Universal Serial Bus) is a commonly used high-speed Serial Bus interface. Its main characteristic is high-speed transmission, which can solve the problem of transferring magnanimous data between PC and Embedded system well. This paper designed a kind of CY7C68013 Firmware program for data collection and parameter control under the SLAVE mode. The experimental results show that the design can well satisfy the demand of uploading batch data rapidly and controlling parameters accurately.
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14

Fullem, T. Z., and C. D. Spencer. "A Universal Serial Bus interface for electronics projects and instruments." American Journal of Physics 70, no. 9 (September 2002): 972–74. http://dx.doi.org/10.1119/1.1477436.

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15

Kunzman, A. J., and A. T. Wetzel. "1394 high performance serial bus: the digital interface for ATV." IEEE Transactions on Consumer Electronics 41, no. 3 (1995): 893–900. http://dx.doi.org/10.1109/30.468067.

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16

Jain, Nivi, and Preet Jain. "Implementation of Serial Peripheral Interface Protocol for LCD." International Journal of Electronics and Communication Engineering 3, no. 8 (August 25, 2016): 129–30. http://dx.doi.org/10.14445/23488549/ijece-v3i8p133.

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17

RGowtham, Mr. "Generation of Graph For Serial Peripheral Interface Verification." International Journal on Recent and Innovation Trends in Computing and Communication 3, no. 3 (2015): 1513–16. http://dx.doi.org/10.17762/ijritcc2321-8169.1503134.

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18

Hu, Yue-li, Jun-liang Huang, and Jun Zhou. "Implementation of advanced peripheral bus interface for MV10 MCU." Journal of Shanghai University (English Edition) 15, no. 4 (August 2011): 287–91. http://dx.doi.org/10.1007/s11741-011-0738-2.

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19

Liu, Xi, Ruihai Dai, and Bifu Qian. "Synchronization Time Division Multiplexing Bus Communication Method Using Serial Communication Interface." MATEC Web of Conferences 100 (2017): 02008. http://dx.doi.org/10.1051/matecconf/201710002008.

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20

Liu, Na. "Research on Communication of Hongrun NHR5310 Regulator and KingSCADA." Applied Mechanics and Materials 685 (October 2014): 310–13. http://dx.doi.org/10.4028/www.scientific.net/amm.685.310.

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Through the computer’s RS232 serial port and RS485 communication port on Hongrun NH5310 regulator and MAX202E line driver/receiver, MAX3080 serial communication convert to RS485 bus chip as the hardware platform, achieve the Hongrun NH5310 regulator parameters centralized management and visual interface.
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21

Rajashekar Reddy, P., P. Sreekanth, and K. Arun Kumar. "Serial Peripheral Interface-Master Universal Verification Component using UVM." International Journal of Advanced Scientific Technologies in Engineering and Management Sciences 3, no. 6 (June 1, 2017): 27. http://dx.doi.org/10.22413/ijastems/2017/v3/i6/49102.

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22

Peng, Qian, Sheng Liu, Mark Robinson, Feng-gang Han, and Emmanuel Matsika. "A digital expression method for the module interface in a practical bus chassis modular design and case history." Concurrent Engineering 26, no. 4 (September 19, 2018): 355–66. http://dx.doi.org/10.1177/1063293x18799447.

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Modular design of products can effectively reduce product development cycle with the idea of concurrent engineering, the efficient management of module interface information in the design process is the premise and foundation for module sharing. This study aims to develop a methodology for interface information management in bus chassis modular design. The characteristics of module interfaces in mechanical design are first investigated by the comparison with Universal Serial Bus interfaces. A digital expression method is then proposed to describe the characteristics of interface geometry information using two matrices with mapping relationships. An encoding method is then developed for the interface information management in modular design. Finally, the implementation of the above method was illustrated with a case study of an electric bus chassis modular design. The results indicate that the digital expression method can represent the geometric information of the module interface precisely and provide a good foundation for the establishment of the modules database for the bus chassis. Novelty of the research is to provide a methodology to represent the characteristics of interface in mechanical design through digital expression.
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23

Tu, Li, Jun'an Liu, and Juan Juan Song. "Virtual Serial Port in the Construction of the CAN-Bus Network Technology Research." Advanced Materials Research 143-144 (October 2010): 698–702. http://dx.doi.org/10.4028/www.scientific.net/amr.143-144.698.

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This paper Introduces a simple and reliable method to connect an ordinary twisted pair RS-232 up to 2048 devices and transmit the communication data more than 10 kilometers by using ZLGCAN interface card, CAN232MB converters and other equipment. The virtual serial port server makes use of CAN-bus network for data communications, guaranteeing the reliability of communic-ation, improving the RS-232 transmission distance, and simplifying the wiring process. Meanwhile user’s operation of the virtual serial port and a standard PC are compatible with the basic serial port operation. However, if there is a large number of continuous transmission of data to the case, the ac-tual serial data transfer rates is determined by the number of virtual serial port.
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Luo, Feng, Hui Yan Feng, and Chu Liu. "Automotive CAN Bus Diagnostic Device Development." Applied Mechanics and Materials 457-458 (October 2013): 1303–9. http://dx.doi.org/10.4028/www.scientific.net/amm.457-458.1303.

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This paper presents a universal CAN Bus diagnostic device that is developed based on the Freescale 32-bit microcontroller MCF51JM128, which complies with OBD-II standard. Specific OBD-II diagnostic services can be performed through the USB request commands from PC software, which is built by Embarcadero Delphi XE; the diagnostic data are collected by the diagnostic device hardware and transferred to the PC for diagnostic result display. Besides, wireless and remote OBD diagnostics can be achieved through the serial interface connection with other communication devices.
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Wang, Wei Jie, Wei Guo Qian, Xiang Hong Kong, and Ming Xia Yang. "Design of the Centralized Control Circuit for Large Ship Borne Squid Jigging Machine." Advanced Materials Research 787 (September 2013): 867–75. http://dx.doi.org/10.4028/www.scientific.net/amr.787.867.

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Squid jigging machine is an important equipment in the oceanic squid jigging fisheries. Now, we have used the intelligent squid fishing machine, though, we have to guard the machine one by one. To reduce the labor on deck, we designed a serial interface circuit between PC and Single Chip Microcomputer (SCM) for the communication within multiple squid jigging machines by the way of RS-485 bus, realizing centralized control of machines. For hardware, we converted TTL level to 485 level by serial interface conversion chip so that SCM could achieve RS-485 interface communication; For software, we customized instruction sets, data package format, communication protocol format. We designed RS-485 bus interface circuit for PC and SCM by simulation software Proteus. Through tests in the field, we knew the circuit makes the connection of centralized control network simple, and signal transmission reliable. We will pay particular attention to the design of communication protocols software, which can provide new thinking of designing about communication within multiple machines for the researchers.
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Marinkovic, Stevan J., and Emanuel M. Popovici. "Nano-Power Wireless Wake-Up Receiver With Serial Peripheral Interface." IEEE Journal on Selected Areas in Communications 29, no. 8 (September 2011): 1641–47. http://dx.doi.org/10.1109/jsac.2011.110913.

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27

Yang, Shu Yi, Cheng Huang, and Yan Fang He. "NC Machine Tool Control System Design Based on CAN Bus." Applied Mechanics and Materials 48-49 (February 2011): 730–33. http://dx.doi.org/10.4028/www.scientific.net/amm.48-49.730.

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With the development of computer network and automation technology, network production of NC machine tool has become trend in enterprise. Aim at communicate interface of NC machine tool, a NC machine tool control system design based on CAN bus was presented. Asynchronism serial communication software between DNC host computer with NC system and hardware realization of CAN bus communication and the key technologies for realizing system were discussed in detail.
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Suresh, K., B. K. Panigrahi, and K. G. M. Nair. "Development of a universal serial bus interface circuit for ion beam current integrators." Review of Scientific Instruments 78, no. 8 (August 2007): 086113. http://dx.doi.org/10.1063/1.2768937.

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29

Chen, Ding. "Design and Innovation of Asynchronous Serial Communication Interface Conversion System of Field Bus." Journal of Physics: Conference Series 1792, no. 1 (February 1, 2021): 012069. http://dx.doi.org/10.1088/1742-6596/1792/1/012069.

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30

Xu, Jin, and Hong Wei Lu. "The Research on Port Loop Detection Method of IEEE1394 Physical Layer." Applied Mechanics and Materials 556-562 (May 2014): 2607–10. http://dx.doi.org/10.4028/www.scientific.net/amm.556-562.2607.

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IEEE1394 is a high performance serial bus, which physical layer directly to transmit and receive data with other nodes. when the ports of physical layer connect to other nodes, The connection which is not allowed may be activated. so there may be a loop formed in a bus topology ,which may influence the normal work of system. This paper analyzes the causes of the physical layer interface to form a loop, and introduces the method of port loop detection.
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31

P, Naga Gayathri, and Naga Koushil Reddy K. "Design and Verification of Serial Peripheral Interface Protocol Using Questa Sim." Journal of Advanced Research in Dynamical and Control Systems 11, no. 0009-SPECIAL ISSUE (September 25, 2019): 313–18. http://dx.doi.org/10.5373/jardcs/v11/20192573.

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32

Wang, Xiao Kun, Yu Bao Niu, Li Juan Zhang, Feng Feng, and Ping Wang. "Design of Motion Control Card on PXI Bus." Applied Mechanics and Materials 203 (October 2012): 449–53. http://dx.doi.org/10.4028/www.scientific.net/amm.203.449.

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The article introduces the design scheme of a motion control card on PXI bus. A detailed description of PCI interface module, FPGA module, DSP module, serial transceiver module and analog acquisition module is also given in this paper. Tests of data transfer rate between host and motion control card are adopted, the results suggest that the PXI local bus can get a high-rate communication. The motion control card is applied to control the two-dimensional turntable of an optoelectronic imaging and tracking system. The experiments indicate that the motion control card based on PXI can meet the requirements of real-time control. The performance of control is also acceptable.
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Mi, Liang, Keng Feng, Huan Liang Li, and Li Fu Shao. "The Fault Detection and Diagnosis System of Hydraulic Excavator Based on PXI Interface Technology." Applied Mechanics and Materials 268-270 (December 2012): 1440–43. http://dx.doi.org/10.4028/www.scientific.net/amm.268-270.1440.

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The fault detection and diagnosis system, which uses dedicated interface adapter unit and PXI interface modules to perform signal excitation and parameter testing, is introduced in this paper. Its firmware consists of PXI-bus control computer, display control unit, dedicated interface adapter unit, connection cable and power supply unit. The dedicated interface adapter unit (IAU) is the core of hardware platform, and is composed of chassis, I2C-bus data acquisition board, adapter and military aviation sockets. It carries out analog to digital, digital to analog, digital I/O transformation as well as serial communication and CAN-bus communication. The software of the fault detection system is of hierarchical modular structure with integration of system management control, fault detection and circuit hardware driver modules together with repair and diagnosis database. The software provides functions of human-machine interaction, equipment fault detection, fault diagnosis and analysis, repair guidance and data storage. Therefore, this system can implement fault detection of hydraulic excavator on replaceable circuit board and block of the hydraulic system or electrical system. And it can help equipment repairmen and operator perform quick repairs and maintenance to the electrical system and hydraulic circuit of the excavator.
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Baskoro, Farid, Miftahur Rohman, and Aristyawan Putra Nurdiansyah. "SERIAL PERIPHERAL INTERFACE (SPI) COMMUNICATION APPLICATION AS OUTPUT PIN EXPANSION IN ARDUINO UNO." INAJEEE Indonesian Journal of Electrical and Eletronics Engineering 3, no. 2 (August 28, 2020): 63. http://dx.doi.org/10.26740/inajeee.v3n2.p63-69.

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Serial Peripheral Interface (SPI) is a synchronous serial communication whose data or signal transmission involves Chip Select (CS) or Slave Select (SS) pins, Serial Clock (SCK), Master Out Slave In (MOSI), and Master In Slave Out (MISO). In the Arduino Uno, there are four pins that allow Arduino Uno to perform SPI communication. In this research, SPI communication is implemented to expand the output of the Arduino Uno by using the features of the MCP23S17 IC so that the Arduino Uno, which initially has 20 output pins, can expand to 36 output pins.The results of the research show that the Arduino Uno manages to control 36 output pins. 16 output pins from the MCP23S17, 16 output pins from the Arduino Uno, and 4 pins are used for the SPI communication line. The results of this study also show the form of the SPI communication signal from Arduino Uno in declaring 21 registers on MCP23S17, declaring the MCP23S17 pin register as output, and implementing the output using LEDs.
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Ning, C. G., J. K. Deng, G. L. Su, H. Zhou, and X. G. Ren. "A multiparameter data acquisition system based on universal serial bus interface for electron momentum spectrometer." Review of Scientific Instruments 75, no. 9 (September 2004): 3062–64. http://dx.doi.org/10.1063/1.1781384.

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36

DHURY, S. CHOU, G. K. SINGH, and R. M. ME HRA. "Design and Verification Serial Peripheral Interface (SPI) Protocol for Low Power Applications." International Journal of Innovative Research in Science, Engineering and Technology 03, no. 10 (October 15, 2014): 16750–58. http://dx.doi.org/10.15680/ijirset.2014.0310048.

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37

Méndez-Ramírez, Rodrigo, Adrian Arellano-Delgado, César Cruz-Hernández, Fausto Abundiz-Pérez, and Rigoberto Martínez-Clark. "Chaotic digital cryptosystem using serial peripheral interface protocol and its dsPIC implementation." Frontiers of Information Technology & Electronic Engineering 19, no. 2 (February 2018): 165–79. http://dx.doi.org/10.1631/fitee.1601346.

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38

Zhang, Chao, Jian Zhao, and Qiang Wei. "Application of Multi-Computer Communication among Single-Chip Microcomputers on Distributed Data Acquisition." Applied Mechanics and Materials 513-517 (February 2014): 951–55. http://dx.doi.org/10.4028/www.scientific.net/amm.513-517.951.

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A distributed data acquisition system based on multi-computer communication among Single-chip Microcomputers is proposed in this paper. The AT89S52 is used as the control core, and multi-computer communication is realized by bus RS485. The hardware construction of the system is introduced. Circuits of each module including the microcomputer, temperature sensor, communication interface and voice alarming are designed. Process of multi-computer communication is described. Programs of master serial transmission and slave serial receiving are written and compiled. Experiments are conducted on temperature measure and acquisition. The results show that a satisfied effectiveness is obtained. A reliable performance can be achieved.
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Wang, Dai Zhuang, Peng Yi, and Yun Peng Li. "Design of Monitoring System for Electric Vehicle Battery Controller." Advanced Materials Research 694-697 (May 2013): 1296–300. http://dx.doi.org/10.4028/www.scientific.net/amr.694-697.1296.

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Designed a monitoring system for Electric Vehicle battery controller to calibrate the parameters and detect the faults. The Monitoring System consists of host monitoring software and USB (Universal Serial Bus) 2.0 interface module. Programmed by C#, host monitoring software provides a UI (User Interface) to display the status of the battery controller and send the command to it. USB 2.0 interface module uses the chip Cy7C68013A to transfer data between the host monitoring software and battery controller. Tests showed that the monitoring system supported hot Plug and Play, high speed mode and easy portability. This system greatly reduces the user operating difficult, and improves the battery efficiency.
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40

Wang, Lei. "Design of Remote Monitoring System of Temperature and Humidity Based on Internet of Things Technology." Advanced Materials Research 989-994 (July 2014): 3415–18. http://dx.doi.org/10.4028/www.scientific.net/amr.989-994.3415.

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Design a things related technology based on remote monitoring system of temperature and humidity, sampling using SHT10 digital temperature and humidity sensors, temperature and humidity variables, and data transmission through the RS485 serial bus interface, using AVR kernel 8 bit chip for processing, resulting in a host computer display temperature and humidity changes, the indoor multi node the environment through the test, system has stable function, good display data change, relatively low cost advantages.
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Zhi, You, Chen Shu-zhen, and Huang Ji-wu. "Serial peripheral interface communication between MCU EM78P447A and RF reader IC MF RC530." Wuhan University Journal of Natural Sciences 10, no. 3 (May 2005): 550–54. http://dx.doi.org/10.1007/bf02831143.

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42

Feng, Ke, Ben Sheng Lu, Huan Liang Li, and Jun Han. "Portable Fault Testing Device of Electronic Instrument Based on PC 104 Bus." Applied Mechanics and Materials 128-129 (October 2011): 661–64. http://dx.doi.org/10.4028/www.scientific.net/amm.128-129.661.

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A fault testing device for the electronic instrument of certain type military equipment is developed in this paper. The PC104 bus, modular instrumentation and signal processing technology are integrated in the device. It consists of PC104 bus peripheral system, signal condition circuit, electric distribution cabinet, interface unit, connection cables and peripheral dedicated signal fixture. Based on Windows CE embedded operation system, the application program is implemented with Visual C++ programming language. The device could detect and locate the fault on replaceable unit of modular board and functional block, and could also assist serviceman and technical support personnel in performing quick fault testing and equipment maintenance.
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43

Fang, Chia-Hao, I.-tao Lung, and Chih-Peng Fan. "Absolute Difference and Low-Power Bus Encoding Method for LCD Digital Display Interfaces." VLSI Design 2012 (December 6, 2012): 1–6. http://dx.doi.org/10.1155/2012/657897.

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Power dissipation has been an inevitable problem of LCD systems for years. To ease the problem, many encoding methods have been developed, such as the methods of transition minimized differential signaling, the most popular one in use for DVI to date, chromatic encoding, and limited intraword transition. In this paper, the authors present the absolute difference and low-power encoding method for the serial transmission of LCD digital DVI display interface. In regard to the LCD digital display interface with UMC 90 nm technology, the proposed method minimizes the architectural complexity and reduces the power dissipation by about 67% and 12%, respectively, compared with the transition minimized differential signaling and limited intraword transition. In short, the proposed method is an efficient bus encoding method to largely decrease the dynamic and total power dissipation of the LCD digital display interfaces.
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Tang, Ming Xin, and Jue Xiu Xu. "USB Communication Interface Design Based on the PDIUSBD11." Applied Mechanics and Materials 268-270 (December 2012): 1570–73. http://dx.doi.org/10.4028/www.scientific.net/amm.268-270.1570.

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Based on the widely used USB communication technology, when the speed requirement is not too high using USB controller chip with I2C bus develops USB interface, you can reduce the use of pin microcontroller ATmega8, simplify connection circuit. This article describes the design method of a Philips company with I2C interface USB interface chip PDIUSBD11, as well as the peripheral hardware circuit connection and USB HID class program design method. The test results show that can reliably achieve communication function between USB and computer, and has good application value.
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SUSANA, RATNA, MUHAMMAD ICHWAN, and SAVERO AL PHARD. "Penerapan Metoda Serial Peripheral Interface (SPI) pada Rancang Bangun Data Logger berbasis SD card." ELKOMIKA: Jurnal Teknik Energi Elektrik, Teknik Telekomunikasi, & Teknik Elektronika 4, no. 2 (March 14, 2018): 208. http://dx.doi.org/10.26760/elkomika.v4i2.208.

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ABSTRAKSerial Peripheral Interface (SPI) adalah protokol komunikasi yang dapat digunakan sebagai interface komunikasi antara mikrokontroler dengan SD Card. Dengan menerapkan metoda SPI pada data logger berbasis SD Card, maka dapat diketahui karakteristik protokol komunikasi SPI antara mikrokontroler dengan SD Card. SD Card diformat dengan tipe FAT 16, dan data di dalam SD Card berupa sekumpulan paket data sensor yang diambil secara periodik dan disimpan dalam bentuk file dengan format.csv. Berdasarkan format paket data sensor yang dibuat, dapat dihitungwaktu perekaman data yang diperlukan agar kapasitas SD Card terisi penuh oleh data sensor. Hasil penelitian menunjukkan,bahwa metoda SPI yang diterapkan pada penelitian ini memiliki sifat akan melakukan pemeriksaan berulang pada pin MISO terhadap command yang dikirimkan oleh mikrokontroler melalui pin MOSI. Proses read/write data pada SD Card data logger memiliki keberhasilan 100%, karena SD Card telah terinisialisasi dalam mode SPI melalui perintah reset dan init SD Card. Komunikasi ini dapat dilakukan dengan menggunakan crystal 4 Mhz – 20 Mhz. Untuk pengujian konfigurasi SPI, hanya Independent Slave Configuration yang dapat digunakan pada komunikasi SPI dengan 2 SD card sebagai slave. Kata kunci: Serial Peripheral Interface (SPI), Data Logger, SD card, FAT16ABSTRACTSerial Peripheral Interface (SPI) is a communication protocol that can be applied as a communication interface between microcontroller to SD Card. By implementing the SPI method to a data logger based on SD Card, it can be known the characteristics of the SPI communications protocol between microcontroller to SD Card. SD Card formatted in FAT 16 type, and data on the SD Card is the form of sensor data packets collection which be captured periodically and saved in .csv format file. Based on the sensor data packet format is created, it can be calculated recording time data required so that the SD Card capacity completely filled by the sensor data. Research results show, that the SPI method applied in this study has the properties will do repeated testing on MISO pin to the command sent by the microcontroller through the MOSI pin. The read / write data on the SD Card data logger has a 100% success, because the SD Card has been initialized in SPI mode through the reset and init SD Card command. This communication can be established using crystal 4 Mhz - 20 Mhz. At SPI configuration testing, only the Independent Slave Configuration can be used in SPI communication with 2 SD card as a slave.Keywords: Serial Peripheral Interface (SPI), Data Logger, SD card, FAT16
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46

Fung, Larry S. K., Mohammad O. Sindi, and Ali H. Dogru. "Multiparadigm Parallel Acceleration for Reservoir Simulation." SPE Journal 19, no. 04 (January 6, 2014): 716–25. http://dx.doi.org/10.2118/163591-pa.

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Summary With the advent of the multicore central-processing unit (CPU), today's commodity PC clusters are effectively a collection of interconnected parallel computers, each with multiple multicore CPUs and large shared random access memory (RAM), connected together by means of high-speed networks. Each computer, referred to as a compute node, is a powerful parallel computer on its own. Each compute node can be equipped further with acceleration devices such as the general-purpose graphical processing unit (GPGPU) to further speed up computational-intensive portions of the simulator. Reservoir-simulation methods that can exploit this heterogeneous hardware system can be used to solve very-large-scale reservoir-simulation models and run significantly faster than conventional simulators. Because typical PC clusters are essentially distributed share-memory computers, this suggests that the use of the mixed-paradigm parallelism (distributed-shared memory), such as message-passing interface and open multiprocessing (MPI-OMP), should work well for computational efficiency and memory use. In this work, we compare and contrast the single-paradigm programming models, MPI or OMP, with the mixed paradigm, MPI-OMP, programming model for a class of solver method that is suited for the different modes of parallelism. The results showed that the distributed memory (MPI-only) model has superior multicompute-node scalability, whereas the shared memory (OMP-only) model has superior parallel performance on a single compute node. The mixed MPI-OMP model and OMP-only model are more memory-efficient for the multicore architecture than the MPI-only model because they require less or no halo-cell storage for the subdomains. To exploit the fine-grain shared memory parallelism available on the GPGPU architecture, algorithms should be suited to the single-instruction multiple-data (SIMD) parallelism, and any recursive operations are serialized. In addition, solver methods and data store need to be reworked to coalesce memory access and to avoid shared memory-bank conflicts. Wherever possible, the cost of data transfer through the peripheral component interconnect express (PCIe) bus between the CPU and GPGPU needs to be hidden by means of asynchronous communication. We applied multiparadigm parallelism to accelerate compositional reservoir simulation on a GPGPU-equipped PC cluster. On a dual-CPU-dual-GPGPU compute node, the parallelized solver running on the dual-GPGPU Fermi M2090Q achieved up to 19 times speedup over the serial CPU (1-core) results and up to 3.7 times speedup over the parallel dual-CPU X5675 results in a mixed MPI + OMP paradigm for a 1.728-million-cell compositional model. Parallel performance shows a strong dependency on the subdomain sizes. Parallel CPU solve has a higher performance for smaller domain partitions, whereas GPGPU solve requires large partitions for each chip for good parallel performance. This is related to improved cache efficiency on the CPU for small subdomains and the loading requirement for massive parallelism on the GPGPU. Therefore, for a given model, the multinode parallel performance decreases for the GPGPU relative to the CPU as the model is further subdivided into smaller subdomains to be solved on more compute nodes. To illustrate this, a modified SPE5 (Killough and Kossack 1987) model with various grid dimensions was run to generate comparative results. Parallel performances for three field compositional models of various sizes and dimensions are included to further elucidate and contrast CPU-GPGPU single-node and multiple-node performances. A PC cluster with the Tesla M2070Q GPGPU and the 6-core Xeon X5675 Westmere was used to produce the majority of the reported results. Another PC cluster with the Tesla M2090Q GPGPU was available for some cases, and the results are reported for the modified SPE5 (Killough and Kossack 1987) problems for comparison.
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47

Jiang, Shuang, Shibin Liu, Chenguang Guo, Xu Fan, Teng Ma, and Prayag Tiwari. "Implementation of ARINC 659 Bus Controller for Space-Borne Computers." Electronics 8, no. 4 (April 16, 2019): 435. http://dx.doi.org/10.3390/electronics8040435.

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As one of the key technologies of Honeywell, the aeronautical radio incorporated (ARINC) 659 bus is popular in current space-borne computers. However, Honeywell does not design ARINC 659 bus controller separately, and there are only a few papers about FPGA-based ARINC 659 bus controllers. Accordingly, to promote the extremely high performance needs of space-borne computers, this paper designs an ARINC 659 bus controller chip which integrates two independent bus interface units (BIUs), one 8-bit MCU, and several peripheral interfaces (i.e., UART, SPI, and I2C). Because the two BIUs are identical and mutually checked, the symmetry problem is emphatically dealt with in the design of this bus controller, and effective timing convergence is realized, which makes the bus controller work reliably and stably. In addition, due to the circuit’s large scale, design for testability (DFT) is also considered. Accordingly, on-chip clock (OCC) and scanning compression test technique are used to realize the at-speed test and shorten the test time, respectively.
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48

Wang, Li Jun, Dong Fei Wang, Xu Hu Wang, and Shu Heng Shi. "The Design of High-Precision Capacitance Micro-Displacement Sensor." Advanced Materials Research 217-218 (March 2011): 1797–801. http://dx.doi.org/10.4028/www.scientific.net/amr.217-218.1797.

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This paper presents a design method of capacitance micro-displacement sensor, based on the programmable capacitance-digital converter AD7746. AD7746 is controled by Single-Chip Microcomputer which gathers the variation of capacitance from the plates and converts it to the digital quantity.The SCM PIC16F877 connecting with AD7746 through the I²C bus reads the digital quantity converted by AD7746 through software programming, then transmits the data into PC through serial interface,in which the whole high-precision capacitance displacement sensor design is accompished.
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49

Zhang, Yan, and Ru Lin Wang. "Underground Sensor Interaction Technique Based on DSP." Advanced Materials Research 488-489 (March 2012): 1429–33. http://dx.doi.org/10.4028/www.scientific.net/amr.488-489.1429.

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In the underground data gathering and processing system, TMS320VC55X acquires signal and send it to display correctly on the LCD. The related hardware and software design of system is introduced in this paper. System adopts MzLH01-12864 display module with serial peripheral interface to realize graphic & text display. On the basis of the hardware interface circuit, SPI working mode of DSP multi-channel buffer serial port, software protocol and sequential flow are recommended. System realizes to display signal on LCD correctly, to demonstrate multiple menu of character and graphics and to implement the human-computer interaction.
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Su, Jianbo, and Yanjun Zhang. "Integration of a plug-and-play desktop robotic system." Robotica 27, no. 3 (May 2009): 403–9. http://dx.doi.org/10.1017/s0263574708004815.

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SUMMARYThis paper describes the development of a desktop robotic system that enables the plug-and-play function through the USB (universal serial bus) port of a personal computer (PC). Thus a new kind of desktop PC peripheral is invented that has programmable manipulability. The robotic system is realized on an internally distributed control structure that facilitates higher system reliability. A PID control algorithm is implemented on a prototype of the proposed system, to demonstrate the system's ability to implement feedback control. Experimental results show the performance and properties of the proposed system.
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