MIME-Version: 1.0 Content-Type: multipart/related; boundary="----=_NextPart_01C3B353.24787F40" This document is a Web archive file. If you are seeing this message, this means your browser or editor doesn't support Web archive files. For more information on the Web archive format, go to http://officeupdate.microsoft.com/office/webarchive.htm ------=_NextPart_01C3B353.24787F40 Content-Location: file:///C:/D17AB083/triac.htm Content-Transfer-Encoding: quoted-printable Content-Type: text/html; charset="us-ascii" Control proporcional de Tiempo
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APLICACIÓN DEL TRIAC<= /p>

 

Control proporcional de Tiempo

 

Esta técnica modula la potencia consumida por una carga proporcionándole grupos de periodos enteros, Por este motivo está particularmente adaptada a la variación y a la regulación de calefacción.=

 

 

1) Variador pa= ra placa de cocción con el SL443A

 

Este variador puede alimenta= r una placa de 1.5 Kw., es decir, una intensidad nominal de 6.8 A. Es un variador= de tren  de ondas cuyo  periodo  de conmutación  es de alrededor  de 22.5 S. Por tanto, es muy super= ior al período mínimo normalizado que es de 10 S para 1600W. Esto lo realiza el SL443A de GEC-Pressey, y el esquema se puede ver en la figura 4.= 1. El triac utilizado es un BTA 16-400, que disipa 7.5 W para  7A. El variador podrá traba= jar, con este disparador, hasta a 50° C con 7A, o bien soporta una sobre intensidad de 8.8 A 25° C, lo cual es necesario dadas las condiciones de utilización en las proximidades de una placa de cocción.=

 

Material para el CIRCUITO.

 =

Tipo

Matricula

Tipo

Matricula

R1

10kΩ

TR1

BTA16-400

R2

MOV 96 J 250 V

L

0.1mH 7ª

R3

150 Ω 1/4W

P1

100 kΩ

C1

1.5ηF

F

Fusible 8ª 250V<= /p>

C2

470ηF

1

Porta fusible

C3

220 μF 25V

1 zapata

4 bornes

C4

10ηF 400Vcc<= /span>

1 zapata

3 bornes

 

 

 El valor de potenciómetro de= fine el periodo de la señal en diente de sierra y la posición del cursor la potencia proporcionada a la carga. El valor de P1 fija la corrien= te de carga del condensador C2, y el potencial de la entrada 8, que es también la entrada del comparador interno, puede variar de 0 a 0.7 V. Cuando el potencial de la rampa supera el de la patilla 8, se genera un imp= ulso al siguiente paso por cero de la tensión de red. La carga está sometida a la tensión de red hasta el final de la rampa de tensi&oac= ute;n, y a cada paso por cero se genera un impulso de puerta.

 

(Figura 4.2)Potencia proporcionada por la carga en función de la tensi&oacut= e;n

 

El período  del diente de sierra está calculado con la relación T=3D2xRP1xC2xU donde RP1 <= /sub>es el valor del potenciómetro que debe ser 18kΩ<RP1&= lt;140kΩ, y U el valor de la tensión de red. Los valores de C1 y de R1 se calc= ulan como para los del relé estático.

 

 

La realización de este variador es sencilla y requiere muy pocos componentes. Es suficiente verificar las pola= ridades de C3 y de CI1 con la realización del circuito y aplicar grasa a pas= ta de evacuación  té= ;rmica en el triac antes de su montaje. Las pistas del circuito impreso se facilit= an en la figura 4.4.

No se precisa ningún ajuste en su = puesta en servicio, el variador funciona espontáneamente y no está aislado de la red por lo que se tomaran las precauciones habituales al respecto.

 

 

 

2) Regulado de temperatura con el UAA1016

 

Este regulador de temperatura construido = en torno al UAA1016 de motorota tiene un margen de trabajo entre  -10 y +35° C. Su margen de regulación proporcional es del orden de ±0.5° C con los valores indicados pero puede ser más pequeño si se desea. Su diagrama sinóptico, que se muestra en la siguiente figura 4.5 permite descubrir todas las posibilidades del UAA1016

 

 

 

 

 

 

 

 

El estudio del esquema de la= figura pasada nos muestra como se utilizan estas posibilidades. C1 fija el periodo= de regulación en unos 40 S, lo cual es ampliamente compatible con un radiador de 2kW. La resistencia R8 fija la duración del impulso en u= nos 280 μs.

Puesto que la resistencia R9 autoriza una corriente media disponible de unos 7mA, quedan 4mA para el res= to del montaje, lo cual es suficiente. La tensión en diente de sierra disponible en la patilla 1 es sumada al potencial del puente  formado por R3 y R4 por medio de R= 5 y R6 (aumentando, por tanto, el margen de regulación) por debajo de la mi= tad de los valores indicados no es recomendable ya que la corriente máxi= ma suministrada en la patilla 1 es de 1mA y, a esta intensidad de diente de si= erra ya no, es lineal.

El fabricante  aconseja 40 μA para una buena linealidad, lo que corresponde a R5=3D1.4 M Ω y R6=3D 180 kΩ. En = este caso, la sensibilidad del montaje  p= uede resultar demasiado elevada. No obstante, se pueden  utilizar estos valores si conviene= n a la aplicación particular.

El circuito de seguridad pue= de actuar si la temperatura es bajaron relación al ajuste de p1, ya que= el valor de la resistencia CTN lleva el potencial de la patilla 3 a un valor superior a -0.7V, el regulador se bloquea, interpretándose como una ruptura en el censor. Basta entonces con aumentar el valor de P1 hasta aque= l en el que  el regulador proporcio= na de nuevo impulsos de puerta. El diodo D2 permite indicar la presencia de los impulsos de puerta.

 

Tabla de compo= nentes

 

Tipo

Matricula

C2

100μF 25V

R1

1.5kΩ ¼ W=

C3

22ηF 400V

R2

CNT 22 kΩ

C4

10ηF 400V

R3, R4, R6

22 kΩ ¼ W=

D1

IN4005

R5, R8

220 kΩ ¼ W

D2

Leed 3mm

R7

100Ω ¼ W<= /p>

CI1

UAA1016

R9

18 kΩ 2W

TR1

BTA-400

R10

150 Ω ¼ W=

1L

0.2 mH 10ª

R11

MOV 96J 250V

1Fusible

10ª 250V

P1

100 kΩ

1

disparador 4° C/W=

C1

47 μF 50V

1

Porta fusibles

 

Se presenta el comportamient= o del regulador en función de la temperatura y de los potenciales de las patillas 3 y 4. Como ya se ha visto, la carga puede tener una potencia máxima de 2kW el triac BTA16-400 que la controla  debe ser enfriado y entonces disip= a 14.3 W para una intensidad de 12 A. Esta corresponde a una sobre carga permanent= e de 1.3In (sobreintencidad de más de 1 s de duración al aplicar tensión a un radiador). Un disipador de 4° C/W permite mantener el radiador a una temperatura inferior a los 120°C bajo una temperatura ambiente de los 25°C.

 

 

<= o:p> 

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