Academic literature on the topic 'Monostable multivibrator'

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Journal articles on the topic "Monostable multivibrator"

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MUQAFFI, FAATIH RIFQI, BAMBANG MUKTI WIBAWA, and DARMAWAN HIDAYAT. "Pembangkitan Pulsa Orde Nanodetik Berbasis Mikrokontroler Untuk Eksitasi Transduser Ultrasonik." ELKOMIKA: Jurnal Teknik Energi Elektrik, Teknik Telekomunikasi, & Teknik Elektronika 8, no. 1 (January 31, 2020): 229. http://dx.doi.org/10.26760/elkomika.v8i1.229.

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ABSTRAK Makalah ini melaporkan suatu teknik pembangkitan pulsa lebar orde nanodetik (ns) repetitif yang terprogram berbasis mikrokontroler untuk keperluan eksitasi transduser ultrasonik. Pembangkitan pulsa dan pengaturan jarak antar pulsa dilakukan melalui operasi timer mikrokontroler. Sebuah monostable multivibrator mengubah lebar pulsa dari mikrokontroler dalam orde nanodetik melalui pengaturan komponen pewaktuan resistor-kapasitor (RC) dengan cara pengaturan nilai R yang dibuat dari sebuah potensiometer digital. Hasil pengujian menunjukkan bahwa mikrokontroler membangkitkan pulsa repetitif dengan interval terprogram dalam orde 1 detik dan lebar pulsa minimum 1,25 ms. monostable multivibrator dapat mengubah lebar pulsa tersebut menjadi sekitar 140 ns. Berdasarkan hasil pengujian, dapat disimpulkan bahwa sistem berfungsi sesuai rancangan, sistem dapat membangkitkan pulsa repetitif dengan lebar pulsa hingga 140 ns dengan parameter interval dan lebar yang dapat diprogram. Kata kunci: generator pulsa, lebar pulsa singkat, mikrokontroler, monostable multivibrator, eksitasi transduser ultrasonik ABSTRACT This paper reports a repetitive, programmable, microcontroller-based pulse width generation technique for the purpose of ultrasonic transducer excitation. Pulse generation and distance adjustment between pulses is done through the microcontroller timer. A monostable multivibrator changes the pulse width of the microcontroller in the order of nanoseconds by adjusting the resistor-capacitor time constant which are done by adjusting the R value made from a digital potentiometer. The test results show that the microcontroller generates repetitive pulses with programmed intervals in order of 1 second and pulse width of 1.25 ms. A monostable multivibrator converts the pulse width to ca. 140 ns. Based on the test results, it can be concluded that the system functions according to the design as the system can generate repetitive pulses with pulse widths up to 140 nanoseconds with programmable interval and width parameters. Keywords: pulse generator, short-width pulse, microcontroller, monostable multivibrator, ultrasonic transducer excitation
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Chien, Hung-Chun. "Dual-Mode Controlled Pulse Width Monostable Multivibrator Using DVCCs." Journal of Circuits, Systems and Computers 24, no. 09 (August 27, 2015): 1550143. http://dx.doi.org/10.1142/s0218126615501431.

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This paper proposes a dual-mode controlled pulse width monostable multivibrator used for analogue signal processing applications that employs two differential voltage current conveyors (DVCCs), four passive components and an analogue switch. Unlike the traditional operational-amplifier-based monostable multivibrators, the proposed circuit contributes a dual-mode controlled scheme for adjusting the output pulse width through a voltage source and a grounded resistor. This paper discusses several previous designs and presents the circuit operations, related governing formulas, non-ideal effect problems, design considerations, and experimental examples of the proposed circuit. A prototype circuit was implemented, and commercially integrated circuits and discrete passive components were used to execute the experimental tests. The features of the proposed circuit are discussed, and the experimental results indicated that the circuit is feasibly used in dual-mode controlled pulse width for the output pulse and were consistent with those of the theoretical analyses.
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Won-Sup Chung, Hyeong-Woo Cha, and Hee-Jun Kim. "Current-controllable monostable multivibrator using OTAs." IEEE Transactions on Circuits and Systems I: Fundamental Theory and Applications 49, no. 5 (May 2002): 703–5. http://dx.doi.org/10.1109/tcsi.2002.1001963.

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CAMPOS-CANTÓN, E., R. FEMAT, J. G. BARAJAS-RAMÍREZ, and I. CAMPOS-CANTÓN. "A MULTIVIBRATOR CIRCUIT BASED ON CHAOS GENERATION." International Journal of Bifurcation and Chaos 22, no. 01 (January 2012): 1250011. http://dx.doi.org/10.1142/s0218127412500113.

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We present a parameterized method to design multivibrator circuits via piecewise-linear (PWL) chaotic systems, which can exhibit double-scroll oscillations. The circuit is conformed exploiting a parametric modulation that manipulates the equilibrium stability of each linear subsystem. Chua's oscillator is used as benchmark to illustrate the effectiveness of the proposed method to design multivibrator circuits. Thus, our proposal allows the design of the three configurations of a multivibrator: monostable, astable, and bistable. Potential applications are illustrated designing a pulse generator and a full S-R flip flop device based on our all-in-one multivibrator circuit.
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Wan, Meilin, Yin Zhang, Ming Zhang, and Haoshuang Gu. "An On-Chip Digital Monostable Multivibrator Using Inverter-based Delay Chains." Journal of Circuits, Systems and Computers 28, no. 04 (March 31, 2019): 1920001. http://dx.doi.org/10.1142/s0218126619200019.

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Monostable multivibrator or one-shot timer is widely used in signal processing. In this paper, a simple and useful way to realize retriggerable monostable multivibrator by using digital logic gates is presented. The basic circuit is composed of one D flip-flop, one NAND gate, one inverter (INV) and two inverter-based delay chains. The width of the output pulse is adjusted through tuning the delay of the inverter-based delay chain. The retriggerable characteristic is realized by resetting all the delayed signals when new triggering occurs in the current monostable period. The basic circuit is designed and fabricated on-chip using a 180[Formula: see text]nm standard CMOS process with effective area less than 1200[Formula: see text][Formula: see text]m2. The retriggerable version is realized in a FPGA platform. Both simulated and measured results are in agreement with the theoretical analysis.
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Lo, Yu-Kang, and Hung-Chun Chien. "Current-controllable monostable multivibrator with retriggerable function." Microelectronics Journal 40, no. 8 (August 2009): 1184–91. http://dx.doi.org/10.1016/j.mejo.2009.03.007.

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Sasaki, Hirofumi, Mitsutoshi Yahara, and Fumio Ueno. "Frequency Multiplier Based on Integral Type SC Monostable Multivibrator." IEEJ Transactions on Electronics, Information and Systems 113, no. 8 (1993): 583–90. http://dx.doi.org/10.1541/ieejeiss1987.113.8_583.

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GONG, Jun-jun, Jun-jun CHEN, and Jin-zhou FU. "ICONE19-43092 SINGLE CHANNEL PULSE HEIGHT DISCRIMINATION CIRCUIT IMPLEMENTED BY DUAL MONOSTABLE MULTIVIBRATOR." Proceedings of the International Conference on Nuclear Engineering (ICONE) 2011.19 (2011): _ICONE1943. http://dx.doi.org/10.1299/jsmeicone.2011.19._icone1943_33.

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CHIEN, HUNG-CHUN. "A NOVEL CURRENT-TUNABLE MONOSTABLE MULTIVIBRATOR USING SINGLE DISO-OTA." Journal of Circuits, Systems and Computers 22, no. 02 (February 2013): 1250089. http://dx.doi.org/10.1142/s0218126612500892.

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This paper proposes a novel monostable multivibrator featuring compact topology and current-tunable property. The proposed circuit was composed of a single differential input single output operational transconductance amplifier (DISO-OTA) with a few passive components. It was operated by a negative-edge triggering signal to generate an output pulse. The pulse height and width were tunable by the bias current of DISO-OTA and the external resistors. The proposed scheme is more compact than the existing topologies. This paper presents the circuit operations and a discussion of the non-ideal issues and design considerations. To demonstrate the feasibility of the proposed circuit, a prototype circuit built with commercially available DISO-OTA IC was used to execute the experimental tests. Is-Spice simulation and experimental results were consistent with theoretical analysis.
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Sasaki, Hirotoshi, Amphawan Julsereewong, Hiroshi Isoguchi, Mitsutoshi Yahara, Kuniaki Fujimoto, and Hirofumi Sasaki. "A Study on Differential Type Monostable Multivibrator Using CMOS-XOR/XNOR Gate." IEEJ Transactions on Electronics, Information and Systems 131, no. 5 (2011): 1079–80. http://dx.doi.org/10.1541/ieejeiss.131.1079.

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Dissertations / Theses on the topic "Monostable multivibrator"

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Zamir, Lee. "A resonant tunneling diode based monostable multivibrator." Thesis, Massachusetts Institute of Technology, 1996. http://hdl.handle.net/1721.1/43492.

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Marathe, Vikrant A. "Analog Single Sideband-Pulse Width Modulation Processor for Parametric Acoustic Arrays." DigitalCommons@CalPoly, 2019. https://digitalcommons.calpoly.edu/theses/2056.

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Parametric acoustic arrays are ultrasonic-based loudspeakers that produce highly directive audio. The audio must first be preprocessed and modulated into an ultrasonic carrier before being emitted into the air, where it will self-demodulate in the far field. The resulting audio wave is proportional to the double time-derivative of the square of the modulation envelope. This thesis presents a fully analog processor which encodes the audio into two Pulse Width Modulated (PWM) signals in quadrature phase and sums them together to produce a Single Sideband (SSB) spectrum around the fundamental frequency of the PWM signals. The two signals are modulated between 8% and 24% duty cycle to maintain a quasi-linear relationship between the duty cycle and the output signal level. This also allows the signals to sum without overlapping each other, maintaining a two-level output. The system drives a network of narrowband transducers with a center frequency equal to the PWM fundamental. Because the transducers are voltage driven, they have a bandpass frequency response which behaves as a first-order integrator on the SSB signal, eliminating the need for two integrators in the processor. Results show that the “SSB-PWM” output wave has a consistent 20-30dB difference in magnitude between the upper sideband and lower sideband. In simulation, a single tone test shows higher total harmonic distortion for lower frequencies and higher modulation depth. A two-tone test creates a 2nd order intermodulation term that increases with the frequencies of the input signals.
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Conference papers on the topic "Monostable multivibrator"

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Tuwanut, Panwit, Jeerasuda Koseeyaporn, and Paramote Wardkein. "A Novel Monostable Multivibrator Circuit." In TENCON 2005 - 2005 IEEE Region 10 Conference. IEEE, 2005. http://dx.doi.org/10.1109/tencon.2005.300946.

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Ji-Zhong Shen, Zhi-Gang Zhu, and Mo Zhu. "The general structure and design method of ternary monostable multivibrator." In 2003 5th International Conference on ASIC Proceedings (IEEE Cat No 03TH8690) ICASIC-03. IEEE, 2003. http://dx.doi.org/10.1109/icasic.2003.1277617.

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Rajput, Dheeraj Singh, and Rohit Singh. "Timer circuit using OTRA and its application as astable and Monostable multivibrator." In 2015 2nd International Conference on Electronics and Communication Systems (ICECS). IEEE, 2015. http://dx.doi.org/10.1109/ecs.2015.7124739.

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Phothi, Kaewnapha, Jeerasuda Koseeyaporn, and Paramote Wardkein. "Independent rise and fall edge dead time generator based on monostable multivibrator circuit." In 2012 9th International Conference on Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTI-CON 2012). IEEE, 2012. http://dx.doi.org/10.1109/ecticon.2012.6254153.

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Kang, Junsu, Donghyeon Lee, Young Jin Heo, and Wan Kyun Chung. "On-chip automation of sequential flow switching with serially connectable fluidic monostable multivibrator." In 2016 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS). IEEE, 2016. http://dx.doi.org/10.1109/iros.2016.7759774.

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Czernik, Pawel. "Hardware random number generator base on monostable multivibrators dedicated for distributed measurement and control systems." In Photonics Applications in Astronomy, Communications, Industry, and High-Energy Physics Experiments 2013, edited by Ryszard S. Romaniuk. SPIE, 2013. http://dx.doi.org/10.1117/12.2035402.

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