Installing the IP-Module

IP-Module fixing

The IP-Module features two apertures through which you can feed the cables:

An aperture in the base

An aperture in the side

If you wish to use the side aperture:

Loosen the fixing screw (9) inside the IP-Module.

Remove the blanking screw from the side cable aperture and screw this into the cable aperture in the base of the unit.

1.Use the drilling template to drill two holes in the ceiling/wall and insert the wall plugs.

2.If IP66 installation is required, use silicone sealant to seal the joint at the base of the IP-Module.

3.Mount the IP-Module to the ceiling/wall.

4.If vandal-proof installation is required, protect the feed cables using suitable protective conduits. Make sure you use a suitable 3/4" conduit on the cable infeed. Seal the threads as required.

You can use the cable infeed arrangement supplied (illustration C) for other applications.

5.Pass the cables (RJ45 LAN cable, electrical supply cable and BNC cable) through the desired cable infeed (side aperture or base aperture).

6.Connect the LAN cable to the RJ45 socket (6).

7.Connect the Y cable supplied to the connector socket (3) in the IP-Module.

8.Connect the electrical supply to the connector socket (4).

9.If an analog video output is required, connect the outgoing BNC cable to the BNC connection line (5).

Installation and connection of the dome camera 10.Open the dome housing (illustration D).

11.Gently pull the dome cables (electrical supply cable and BNC cables) out of the dome camera.

12.Connect the Y cable lead (12) to the dome camera video output.

13.Connect the Y cable lead (13) to the dome camera video input.

14.Connect the (12 V DC / 24 V AC) electrical supply to the electrical supply cable connection terminal (10).

WARNING

Ensure correct polarity if using a 12 V DC supply, as incorrect connection may

damage the dome camera or cause the unit to operate abnormally.

 

 

 

15.Place the camera body on the IP-Module and screw both units together using the two screws supplied (7).

16.Establish communication with the device for the first time. See section 7: Establishing initial communication with the device.

17.A test monitor can be connected to the BNC socket (11) when configuring the camera.

18.Configure the dome camera as required. Refer to the dome camera manual for set-up instructions.

19.Place the dome back on the camera and screw it in position.

Clean the dome after installation using a soft, lint-free cloth to remove dust and greasy finger marks.

13

Siemens Building Technologies

Fire Safety & Security Products

Page 13
Image 13
Siemens CFVA-IP user manual IP-Module fixing

CFVA-IP specifications

Siemens CFVA-IP is an advanced control system designed for industrial automation, combining performance, flexibility, and reliability to meet the diverse demands of modern manufacturing processes. This system is engineered to operate seamlessly across various industries, including automotive, food and beverage, and pharmaceuticals.

One of the primary features of the CFVA-IP is its integration capability with existing infrastructure. It supports a wide array of communication protocols, allowing for easy connection with legacy systems and new components alike. This ensures a smooth transition and interoperability within the industrial ecosystem, reducing downtime and enhancing productivity.

The CFVA-IP utilizes state-of-the-art technologies, such as Ethernet and IP-based communication, to facilitate high-speed data transfer and real-time control. This enables operators to monitor processes and make informed decisions quickly. The system is equipped with advanced diagnostic tools that provide insights into operational performance, helping to identify potential issues before they escalate into significant problems.

A notable characteristic of the Siemens CFVA-IP is its modular design. This allows for easy customization and scalability, enabling manufacturers to expand their systems as needed without significant overhauls. Users can select from various input/output modules, communication interfaces, and power supplies to tailor the system to their specific applications and requirements.

Additionally, the CFVA-IP features comprehensive safety measures, including built-in redundancy and support for safety protocols. It complies with international safety standards, ensuring that operations can continue securely even in critical scenarios. This feature is particularly essential in industries where safety and regulatory compliance are paramount.

Another significant advantage of the Siemens CFVA-IP is its user-friendly interface. The system includes intuitive software tools designed to ease programming and control. The graphical interface simplifies configuration and monitoring, allowing even less technically inclined users to operate the system efficiently. Moreover, training tools and extensive documentation are available, ensuring that staff can quickly adapt to the new system.

In conclusion, Siemens CFVA-IP stands out as a versatile and robust solution for industrial automation. Its combination of integration capability, advanced technologies, modular design, safety features, and user-friendly interface makes it an ideal choice for companies looking to modernize their manufacturing processes while maintaining efficiency and reliability. The CFVA-IP not only meets current automation needs but is also poised to adapt to future challenges in the ever-evolving industrial landscape.