3.Web Control

3.1Projector Web Control (continued)

3.1.5 Mail Settings

Displays and configures e-mail addressing settings.

Item

Description

 

 

 

Click the [Enable] check box to use the e-mail function.

Send Mail

Configure the conditions for sending e-mail under the Alert

 

Settings.

 

Configures the address of the mail server in IP format.

 

• The address allows not only IP address but also domain

SMTP Server Address

name if the valid DNS server is setup in the Network

 

Settings. The maximum length of host or domain name is up

 

to 255 characters.

Sender E-mail address

Configures the sender e-mail address.

The length of the sender e-mail address can be up to 255

 

alphanumeric characters.

 

Configures the e-mail address of up to five recipients. You

Recipient E-mail address

can also specify the [TO] or [CC] for each address. The

 

length of the recipient e-mail address can be up to 255

 

alphanumeric characters.

Click the [Apply] button to save the settings.

NOTE • You can confirm whether the mail settings work correctly using the [Send Test Mail] button. Please enable Send mail setting before clicking the

[Send Test Mail].

If you connect the projector to an existing network, consult a network administrator before setting server addresses.

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Dukane 8755N, 8937, 8931W, 8930, 8929W Mail Settings, Displays and configures e-mail addressing settings, Send Test Mail

8929W, 8930, 8755N, 8931W, 8937 specifications

Dukane is a significant player in the field of ultrasonic plastic welding, offering a range of models designed for various industrial applications. Among its notable products are the Dukane 8937, 8931W, 8755N, 8930, and 8929W. Each of these models comes with unique features, technologies, and characteristics that set them apart in the market.

The Dukane 8937 is renowned for its robust construction and reliability. It incorporates advanced ultrasonic technology, which enables precise welding of thermoplastic materials. One of its standout features is the ability to deliver high power output, which facilitates quick and efficient welding processes, significantly reducing cycle times. The 8937 is also equipped with an intuitive user interface, allowing operators to easily program and monitor the welding parameters.

Next in the lineup is the Dukane 8931W, which boasts wireless capabilities. This feature allows for remote operation and monitoring, enhancing flexibility on the factory floor. The 8931W incorporates smart technology that enables real-time data collection and analysis, ensuring optimal welding conditions and increasing production efficiency. Its ergonomic design also makes it user-friendly, promoting better operator comfort during prolonged use.

The Dukane 8755N is a compact and lightweight model ideal for tight spaces. It is engineered with durability in mind, making it suitable for high-demand environments. This model features a high-frequency ultrasonic generator that provides consistent power output, ensuring high-quality welds with minimal defects. Additionally, the 8755N supports a range of ultrasonic tooling options, allowing for versatility in various applications.

The Dukane 8930 is designed for applications requiring high precision. With its advanced control systems, this model ensures repeatability and consistency in each weld. The 8930’s integrated monitoring systems provide real-time feedback, which helps in adjusting parameters on the fly and maintaining high-quality standards throughout the production process.

Lastly, the Dukane 8929W combines advanced features with a user-friendly interface. It supports a wide range of materials, making it adaptable to different manufacturing needs. The model includes an automated calibration feature, optimizing the welding process by adjusting settings according to material thickness and type.

In summary, the Dukane 8937, 8931W, 8755N, 8930, and 8929W each present exceptional characteristics and technologies that cater to a variety of industrial requirements. With their focus on efficiency, reliability, and precision, these models contribute significantly to the evolution of automated manufacturing processes, ensuring high-quality production standards in the plastics industry.