La aplicación del OPAMP en circuitos osciladores
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Date
2021-11-05
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Universidad Nacional de Educación Enrique Guzmán y Valle
Abstract
El objetivo de este trabajo de investigación fue uno de los objetivos de la Universidad Nacional de Educación Enrique Guzmán y
Valle es generar nuevo conocimiento científico; aquí, la investigación en el campo
tecnológico tiene como objetivo la adquisición de nuevos conocimientos que no solo estén
destinados a resolver problemas, sino a la par permitan desarrollar las habilidades de
pensamiento crítico de los estudiantes. En base a una experiencia anterior se ha
demostrado que, en cuanto al funcionamiento de transistores, resistencias, amplificadores,
condensadores, diodos y algunas aplicaciones de modo individual actúan dentro de la
electrónica como elementos simples y básicos, sin embargo, si trabajan en sociedad se
transforman en dispositivos con funcionamiento de alto nivel en sus diversas
configuraciones. Para lograr la comprensión de estos dispositivos existe la posibilidad de
emplear programas informáticos. En lo referente al diseño y la construcción de una amplia
variedad de circuitos se debe de iniciar mediante el conocimiento y manejo de los
conceptos básicos, los cuales por lo general está compuesto por docenas de transistores
denominados amplificadores operacionales. Ejemplos de aplicaciones de amplificadores
operacionales incluyen controladores de nivel de entrada en piscinas, controladores
multivariables en procesos industriales y el control de brazos robóticos en líneas de
ensamblaje en serie y controles de vuelo en aviones de alta tecnología. Otra aplicación de
estos versátiles componentes electrónicos se encuentra en el campo de las
telecomunicaciones. Los elementos que amplifican la onda recibida por el receptor son
importantes para acelerar la transmisión de datos y la atenuación de la señal acompañante.
Cómo enviar la información. Así mismo, en la mencionada zona existe un filtro activo
que, en discrepancia a los filtros pasivos conocidos por parte de los usuarios, tiene un
ancho de banda que nos muestra mayor precisión y facilita la transmisión de radio,
televisión y datos a modo de señales moduladas. En cuanto al ruido es poco o nulo.
The objective of this research work was one of the objectives of the Enrique Guzmán National University of Education and Valle is to generate new scientific knowledge; here, research in the field technology has as its objective the acquisition of new knowledge that is not only intended to solve problems, but at the same time allow developing the skills of critical thinking of students. Based on previous experience, it has been demonstrated that, regarding the operation of transistors, resistors, amplifiers, capacitors, diodes and some single mode applications act within the electronics as simple and basic elements, however, if they work in society they transformed into devices with high-level performance in their various settings. In order to understand these devices, there is the possibility of use computer programs. Regarding the design and construction of a large variety of circuits should be initiated through knowledge and management of the basic concepts, which is usually made up of dozens of transistors called operational amplifiers. Amplifier Application Examples operational include entry-level controllers in swimming pools, controllers variables in industrial processes and the control of robotic arms in production lines. mass assembly and flight controls in high-tech aircraft. another application of these versatile electronic components are found in the field of telecommunications. The elements that amplify the wave received by the receiver are important for speeding up data transmission and attenuation of the accompanying signal. How to send the information. Likewise, in the mentioned area there is an active filter which, unlike the passive filters known to users, has a bandwidth that shows us greater precision and facilitates radio transmission, television and data as modulated signals. As for the noise, it is little or none.
The objective of this research work was one of the objectives of the Enrique Guzmán National University of Education and Valle is to generate new scientific knowledge; here, research in the field technology has as its objective the acquisition of new knowledge that is not only intended to solve problems, but at the same time allow developing the skills of critical thinking of students. Based on previous experience, it has been demonstrated that, regarding the operation of transistors, resistors, amplifiers, capacitors, diodes and some single mode applications act within the electronics as simple and basic elements, however, if they work in society they transformed into devices with high-level performance in their various settings. In order to understand these devices, there is the possibility of use computer programs. Regarding the design and construction of a large variety of circuits should be initiated through knowledge and management of the basic concepts, which is usually made up of dozens of transistors called operational amplifiers. Amplifier Application Examples operational include entry-level controllers in swimming pools, controllers variables in industrial processes and the control of robotic arms in production lines. mass assembly and flight controls in high-tech aircraft. another application of these versatile electronic components are found in the field of telecommunications. The elements that amplify the wave received by the receiver are important for speeding up data transmission and attenuation of the accompanying signal. How to send the information. Likewise, in the mentioned area there is an active filter which, unlike the passive filters known to users, has a bandwidth that shows us greater precision and facilitates radio transmission, television and data as modulated signals. As for the noise, it is little or none.
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Citation
Curi Alcantara, Yiye Aaron (2021). La aplicación del OPAMP en circuitos osciladores (Monografía de pregrado). Universidad Nacional de Educación Enrique Guzmán y Valle, Lima, Perú.