PARA PROGRAMAR LOS TIMBRES PARA

CONTESTAR

Esta función se utiliza para programar el aparato a contestar después de un número específico de timbres.

El aparato anuncia los timbres para contestar. Para cambiar, oprima los botones “NEXT” o “PREVIOUS”. Para programar y continuar al siguiente menú, oprima el botón “SET”.

1.Oprima y suelte los botones “NEXT” o “PREVIOUS” hasta que el aparato anuncie y muestre el número correcto de timbres para que el contestador levante la llamada.

2.Una vez que el número de timbres esté programado, oprima el botón “SET”. El aparato anuncia el número de timbres para contestar, y después pasa al menú de duración de mensajes entrantes.

AHORRADOR DE CARGOS

El ahorrador de cargos es la última programación dentro del menú de Timbres para Contestar. Esta función le permite saber si usted tiene nuevos mensajes cuando llama al contestador desde un teléfono remoto. Si usted tiene mensajes nuevos, el aparato timbrará dos veces antes de contestar. Si usted no tiene mensajes, timbrará cuatro veces. Esto le permite colgar antes de que el contestador levante la llamada y así usted no tendrá que pagar cargos.

NOTA: El contador de mensajes muestra 00 para el ahorrador de cargos. saver.

Botón para

Programar (“SET”)

 

 

 

 

 

 

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VOICE

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SET

 

 

 

 

 

 

 

 

 

 

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MESSAGES

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

PREVIOUS

 

NEXT

 

 

 

 

 

 

 

 

M

 

 

 

 

 

 

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PLAY

 

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OXES

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TO

 

 

 

 

 

 

 

 

Botón para

Botón para pasar al

regresar al

siguiente (“NEXT”)

previo

 

 

 

 

 

 

 

 

 

 

 

 

 

 

(“PREVIOUS”)

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Image 33
GE 29869 manual Para Programar LOS Timbres Para Contestar, Regresar al, Previous

29869 specifications

The GE 29869 is a semiconductor device that has garnered significant attention in the electronics market due to its advanced features and remarkable performance capabilities. Designed primarily for use in industrial applications, this component is renowned for its efficiency, durability, and versatility.

One of the standout features of the GE 29869 is its robust design that allows it to operate under harsh environmental conditions. It is engineered to withstand high temperatures and resist moisture, making it an ideal choice for outdoor applications and industrial settings where reliability is paramount. The device also incorporates a high insulation resistance, which protects against electrical leakage and short circuits.

In terms of technology, the GE 29869 utilizes cutting-edge advancements in semiconductor manufacturing. It is built on a silicon carbide (SiC) substrate, which enhances its thermal conductivity and allows for higher power density compared to traditional silicon devices. This means that the GE 29869 can manage larger currents and voltages, which is essential for powering heavy machinery and other high-demand systems.

Another significant characteristic is its fast switching capability. The device features a high-speed operation that minimizes switching losses, leading to improved efficiency and performance in power electronics applications. This rapid switching capability is particularly beneficial in applications such as inverters, converters, and motor drives, where precise control of power flow is critical.

The GE 29869 also boasts a compact design, making it easy to integrate into existing systems without requiring extensive modifications. Its small footprint is complemented by a modular structure, allowing for simplified scaling in various applications. This versatility extends to compatibility with multiple standard interfaces, ensuring that it can be seamlessly incorporated into a wide array of electronic systems.

Additionally, the GE 29869 is designed with safety features that prioritize user protection. Built-in overvoltage and overcurrent protection are key attributes that help prevent damage to both the device and the systems it interfaces with. This makes it not only an efficient choice but also a safe one for critical operations.

In summary, the GE 29869 stands out in the semiconductor landscape due to its durability, advanced technology, compact design, and safety features. Its application spans various industries, highlighting its role as a vital component in the evolution of modern electronic systems.