Siemens EN 50295 Design Order No K45F safe compact module 3RK1 205-0BQ00-0AA3, 3RK1 901-1KA01

Models: EN 50295

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AS-Interface

 

 

 

AS-Interface Safety at work

 

 

 

AS-Interface safe compact modules

 

 

 

 

 

Selection and Ordering data

 

 

 

 

 

 

 

 

 

Design

Order No.

 

 

 

 

 

 

 

K45F safe compact module 1)

3RK1 205-0BQ00-0AA3

 

 

2FE

 

 

3RK1 205-0BQ00-0AA3

 

K45 mounting plate

3RK1 901-2EA00

 

K60F safe compact module 1)

 

 

• 2FE/2A

 

 

3RK1 405-0BQ00-0AA3

 

• 2FE/2A with UAux

 

 

3RK1 405-1BQ00-0AA3

 

K60 mounting plate

3RK1 901-0CA00

 

Input bridge for K45/K60F

 

 

• Black version

 

 

3RK1 901-1AA00

 

• Red version

 

 

3RK1 901-1AA01

3RK1 901-1AA00

 

 

 

 

AS-Interface M12 sealing caps, protected against manipulation

For spare M12 sockets

(one packing contains ten sealing caps)

3RK1 901-1KA01

1) Modules supplied without mounting plate.

Dimensional drawings

 

31

60

29

4,5

80

 

152

 

5

 

NSA000026

3RK1901-0CA00

 

Sideviewwith

 

mountingplate

45

3RK1 901-1KA01

6

30

Mounting plate 3RK1901-2EA00

K60F safe module

K45F safe module

Siemens IK PI · 2004

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Siemens EN 50295 manual Design Order No K45F safe compact module 3RK1 205-0BQ00-0AA3, 3RK1 901-1KA01

EN 50295 specifications

Siemens EN 50295 is emerging as a pivotal standard in the domain of electrical safety and design, particularly relevant for the electrical industry and equipment manufacturing sectors. Primarily, this European Norm is geared towards ensuring the safety of electrical systems used in dry environments, which is essential for various industrial applications.

One of the main features of the EN 50295 standard is its comprehensive safety requirements which are aimed at mitigating the risks associated with electrical systems. This includes aspects like insulation resistance, protective earthing, and the management of electrical faults. By setting a benchmark for safety, Siemens EN 50295 assists manufacturers in maintaining compliance with national and international regulations, thus protecting both users and equipment.

The standard emphasizes the importance of safety measures in the design process. It outlines criteria for components, assembly methods, and system installation, ensuring that electrical equipment operates stably and gets rid of risks related to electrical failures. This involves rigorous testing of materials and components, which enhances their reliability and longevity while providing efficient overall operation.

Siemens EN 50295 also incorporates advancements in technology, acknowledging the significance of intellectual innovation in the industry. It encourages the integration of smart technologies and automation features into electrical systems, paving the way for enhanced operational efficiencies. Such technologies not only improve the performance of electric systems but also contribute to energy conservation, reducing the overall environmental footprint.

Another characteristic of the EN 50295 standard is its adaptability. The framework it provides can be customized depending on specific industry needs, making it versatile across various sectors such as manufacturing, construction, and transportation. This adaptability ensures that businesses can maintain high safety standards while still allowing room for innovation and modern practices.

In summary, Siemens EN 50295 presents a well-rounded approach to enhancing safety, reliability, and sustainability in electrical systems. Its features and characteristics are set to guide industries in making informed decisions regarding electrical configuration, ultimately fostering a safer and more efficient working environment. The incorporation of emerging technologies ensures that the standard remains relevant in a fast-evolving technological landscape, proving to be an invaluable asset for manufacturers and service providers alike.