Academic literature on the topic 'Digital tachometer'

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Journal articles on the topic "Digital tachometer"

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A., Sriharsha Kumar, Venkatesh Ch., and V. Durga Prasad |. S. Balaji K. "Digital Tachometer using Aurdino." International Journal of Trend in Scientific Research and Development 3, no. 3 (2019): 1341–42. https://doi.org/10.31142/ijtsrd23223.

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A Digital RPM Meter is a measuring instrument which can measure the rotational speed of a rotary machine digitally. In industries we can use this type of digital tachometers which will reduce human effect. The industrial name of this instrument is "Tachometer". It is an important measuring device in the field of electrical engineering and widely used in industries and laboratorial work. Here we are going to design an Aurdino based digital tachometer using IR sensor module to detect object for count rotation of any rotating body and the programming is given by the FTDI programmer. As
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Priyanshu, Kumar Rouniyar, Shrestha Sashank, Raj poudel Ujjwal, Chaudhary Aashutosh, Chaudhary Aship, and Panta Paras. "Digital Tachometer." International Journal of Innovative Science and Research Technology 7, no. 12 (2023): 1104–7. https://doi.org/10.5281/zenodo.7508726.

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The measurement of instantaneous torque in terms of voltage displaying rotating speed in revolution per minute (RPM) of a rotating shaft is known as a digital tachometer. An infrared module is used as the input that senses the interruption in terms of beam of rays caused by rotating shaft, generating a pulse. The usual method of counting pulse coming from the encoder in a fixed period of time produces a high precision velocity estimate in the high-speed range. The encoded signal is latched and further sent to decoder that decodes the latched pulse i.e. speed displayed in 7 segment display. Thi
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Kumar, A. Sriharsha, Ch Venkatesh, and K. V. Durga Prasad S. Balaji. "Digital Tachometer using Aurdino." International Journal of Trend in Scientific Research and Development Volume-3, Issue-3 (2019): 1341–42. http://dx.doi.org/10.31142/ijtsrd23223.

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Maria, Putut Son, and Elva Susianti. "Implementasi Algoritma Kalkulasi Interupsi pada Rancang Bangun Tachometer Digital." Jurnal Teknik Elektro 10, no. 2 (2018): 47–53. http://dx.doi.org/10.15294/jte.v10i2.16350.

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Tachometer is an important tool for measuring the rotational speed of electro-mechanical machines and other rotating objects. In a closed-loop system, it should have a mechanism by which sensory instruments must be able to produce and deliver feedback values that can be fetched by the controller. Most commercial tachometers do not have such data communication features, making it difficult to be employed in closed loop systems. This study aims to develop a tachometer which is programmed using calculation on interrupt-based algorithm and has data communication capabilities as well. The algorithm
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Harsoyo, Imam Tri, Andi Kurniawan Nugroho, and Nuriman Nuriman. "RANCANG BANGUN TACHOMETER DIGITAL BERBASIS ARDUINO DILENGKAPI CHARGING DAN MODE PENYIMPAN DATA." Elektrika 11, no. 2 (2019): 6. http://dx.doi.org/10.26623/elektrika.v11i2.1692.

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A good and feasible centrifuge is needed in the world of health, therefore a digital tachometer is needed to calibrate a centrifuge. Digital tachometer is a measuring instrument used to measure the rotation speed of a motor. This tachometer will be tested to function by being compared to using Digital Laser Photo Tachometer. This tachometer will display the number of rotations per minute of a motor according to the speed setting on the centrifuge using the output of this E18-D80NK sensor which will later be processed by the Arduino Nano. As for this feature charger and data storage mode, so th
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Palanisamy, R., S. Vidyasagar, V. Kalyanasundaram, and R. Sridhar. "Contactless digital tachometer using microcontroller." International Journal of Electrical and Computer Engineering (IJECE) 11, no. 1 (2021): 293. http://dx.doi.org/10.11591/ijece.v11i1.pp293-299.

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Tachometer is a device that used for counting or for the measuring purpose of the number of revolutions (that is the total number rotations made by the device in unit of measuring time) of an object in unit time. It is expressed in the unit of RPS or RPM, the model uses a set of infrared transducer receiver to count the RPM pulses, and the Arduino microcontroller is used for the implementation of the project. The individual pulses are counted by the microcontroller to give the final output of the RPM.
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R., Palanisamy, Vidyasagar S., Kalyanasundaram V., and Sridhar R. "Contactless digital tachometer using microcontroller." International Journal of Electrical and Computer Engineering (IJECE) 11, no. 1 (2021): 293–99. https://doi.org/10.11591/ijece.v11i1.pp293-299.

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Tachometer is a device that used for counting or for the measuring purpose of the number of revolutions (that is the total number rotations made by the device in unit of measuring time) of an object in unit time. It is expressed in the unit of RPS or RPM, the model uses a set of infrared transducer receiver to count the RPM pulses, and the Arduino microcontroller is used for the implementation of the project. The individual pulses are counted by the microcontroller to give the final output of the RPM.
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Ferdous, Shah Muhammad, Mohammad Rokonuzzaman, Enaiyat Ghani Ovy, and Md Ashraful Hoque. "Design and Implementation of a Linear IC Based Low Cost Digital Tachometer for Laboratory and Industrial Application." Advanced Materials Research 201-203 (February 2011): 1368–72. http://dx.doi.org/10.4028/www.scientific.net/amr.201-203.1368.

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Any adjustable speed drives uses an incremental shaft encoder or a sensor and an electronic circuit for rpm as well as velocity estimation. The usual method of counting pulses generated by encoder or sensor in a fixed period of time produces a high precision velocity or rpm estimation in the high speed range. Tachometer plays a vital role in measurement of rpm of any rotating device and it is essential for any control system especially in servomechanism. Most of the controllers employed in the industry to control industrial process use a tachometer which gives the provision of feedback in a co
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Ovaska, S. J. "Multistage digital prefiltering of noisy tachometer signals." IEEE Transactions on Instrumentation and Measurement 37, no. 3 (1988): 466–68. http://dx.doi.org/10.1109/19.7478.

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Bakibillah, ASM, Muhammad Athar Uddin, and Shah Ahsanul Haque. "Design, Implementation and Performance Analysis of a Low-cost Optical Tachometer." IIUC Studies 7 (October 19, 2012): 107–16. http://dx.doi.org/10.3329/iiucs.v7i0.12263.

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Electrical and mechanical machineries are used in industrial and domestic applications. Measurement of speed of revolving machineries is necessary for their proper functioning and controlling. Tachometer is an instrument which is used to measure the speed of revolving shaft, gear and pulley. This paper describes the basic construction of a low cost optical tachometer and analyzes its performance. The basic tachometer circuit consists of two stages. In the first stage monostable wired around IC NE555 is used, and in the second stage a digital counter based 4-digit counter IC 74C926 is used for
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Book chapters on the topic "Digital tachometer"

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Sun, Jingrui, Mingcheng Liu, Jincheng Wu, and Li Zhou. "Design of Infrared Digital Tachometer." In The Proceedings of the Second International Conference on Communications, Signal Processing, and Systems. Springer International Publishing, 2013. http://dx.doi.org/10.1007/978-3-319-00536-2_136.

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Kukharchuk, Vasyl, Oleksandr Vasilevskyi, Roman Trishch, Volodymyr Holodiuk, and Andriy Koval. "Adaptive Algorithms for Quantization Error Normalization of Digital Encoder-Based Tachometers." In Lecture Notes on Data Engineering and Communications Technologies. Springer Nature Switzerland, 2024. http://dx.doi.org/10.1007/978-3-031-71801-4_19.

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"Car digital tachometer." In Auto Electronics Projects. Elsevier, 1995. http://dx.doi.org/10.1016/b978-0-08-049963-5.50009-4.

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Conference papers on the topic "Digital tachometer"

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Gonzalez-Duarte, Sergio, Jorge Antonio Cardona-Soto, Carlos Omar Seanez-Hernandez, Esteban Rubio-Ochoa, and Jessica Hieraldin Aguirre-Fernandez. "Characterization and Validation of Telemetric Digital Tachometer based on Hall Effect Sensor." In International Electronic Conference on Sensors and Applications. MDPI, 2014. http://dx.doi.org/10.3390/ecsa-1-g010.

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Asakura, Itaru, Ami Tanaka, Hisashi Nishikawa, and Takakuni Douseki. "Self-powered wireless digital tachometer scheme without sensors for measuring spin of Yo-yo." In 2013 IEEE Sensors. IEEE, 2013. http://dx.doi.org/10.1109/icsens.2013.6688526.

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Loewen, Erwin G., and Geoff Portas. "Nanometer digital control for a grating ruling engine." In OSA Annual Meeting. Optica Publishing Group, 1987. http://dx.doi.org/10.1364/oam.1987.wg1.

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The MIT-B 400-mm grating ruling engine has been partially rebuilt mechanically and equipped with a new interferometer displacement measuring system using a He-Ne frequency stabilized laser, polarization beam splitters, and four-phase silicon detector systems. Both translation and rotation are measured and used in feedback correction loops to compensate for lead screw and residual yaw error of the grating carriageways. The signals are digitized with a bit size of 0.088 nm and processed with a high-speed microprocessor designed to handle all control functions, including the cumulative effects of
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Calhoun, Sean A., Bhumil Diwanji, Philip K. Panicker, and Frank K. Lu. "Acquiring Torque and Rotational Speed Data From a Stationary Bicycle for Undergraduate Teaching." In ASME 2007 International Mechanical Engineering Congress and Exposition. ASMEDC, 2007. http://dx.doi.org/10.1115/imece2007-43429.

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A laboratory module was recently developed for an introductory experimental course for sophomore mechanical and aerospace engineering students. The goal of this laboratory is to provide the students with an understanding of digital data acquisition systems for measuring torque and angular velocity in real time. The laboratory comprises of a stationary exercise bicycle, adapted to house a torquemeter on its front axle, an optical tachometer, the data acquisition system and software which converts a computer into a virtual instrument. A group of two or three students is rotated through the labor
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Oke, A., C. Diji, and N. Osayande. "Lean Energy Consideration of a Nigerian Sawmill Facility." In 2019 African Institute for Science Policy and Innovation International Biennial Conference. Koozakar LLC, 2019. http://dx.doi.org/10.69798/11893505.

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Leanness can be defined as minimization of waste. Waste depletes resources but does not have any improvement on the values of the products. It can occur in many forms and in many places. Lean methods help to reduce waste. Waste can be minimised by isolating and eliminating those activities that have no value adding effect on products. Lean programs create a cultural and people-oriented transformation by educating entire organizations on how to identify hidden wastes and empowering each employee to enhance the quality of production. Lean energy can be achieved by exposing the aspects that contr
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Kavanagh. "Signal processing techniques for improved digital tachometry." In Proceedings of the IEEE International Symposium on Industrial Electronics ISIE-02. IEEE, 2002. http://dx.doi.org/10.1109/isie.2002.1026342.

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Reports on the topic "Digital tachometer"

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คุณพนิชกิจ, ชัยโรจน์, та วิบูลย์ แสงวีระพันธุ์ศิริ. การควบคุมแบบย้อนกลับของหุ่นยนต์อุตสาหกรรมชนิดสามแกนหมุน. จุฬาลงกรณ์มหาวิทยาลัย, 1988. https://doi.org/10.58837/chula.res.1988.23.

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การควบคุมตำแหน่งของปลายแขนหุ่นยนต์อุตสาหกรรมเป็นหัวใจของการออกแบบระบบควบคุมทั้งหมด โดยจะพิจารณาการเคลื่อนที่ที่ปลายแขนในลักษณะจุดต่อจุดหรอ Point-to-Point เป็นหลัก ระบบควบคุมแบบย้อนกลับหรือแบบปิดที่จะนำมาควบคุมการเคลื่อนที่ที่ปลายแขนของหุ่นยนต์อุตสาหกรรมจะเป็นระบบควบคุมชนิด พี ไอ ดี (PID, Proportional-Integral-Derivative) การออกแบบระบบควบคุมนี้จะอาศัยแบบจำลองทางคณิตศาสตร์ของแขนหุ่นยนต์อุตสาหกรรมที่ได้ทำการปรับให้เป็นเชิงเส้นแล้ว (Linearization) และการเคลื่อนที่ที่ของแต่ละจ้อต่อก็อิสระไม่มีผลต่อกัน (Decoupling) ภายใต้เงื่อนไขที่ว่าความเร็วในการเคลื่อที่ของแต่ละข้อต่อของแขนหุ่นยนต์อุตสาหรรมนั้นไม
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