LST IBSST-DR-P01 Base and accessories, Loop sounder/strobe without isolator, Base IP24, Base IP44

Page 2

Loop sounder/strobe without isolator

 

Current consumption from loop

max. 450µA (sounder and strobe off)

 

max. 4.1mA (low volume)

 

max. 5.4mA (medium volume)

 

max. 9.0mA (high volume)

Approval

VdS G206072

Order number

355166

Order name

Sounder Strobe with Base/200/White/Red/Multitone IBSST-DR-P01

Loop sounder/strobe with isolator

 

Current consumption from loop

max. 450µA (sounder and strobe off)

 

max. 4.3mA (low volume)

 

max. 5.6mA (medium volumel)

 

max. 9.2mA (high volume)

Approval

VdS G206076

Order number

355167

Order name

Sounder Strobe w.B./200ISM/White/Red/Multitone IBSST-DR-P02

Base and accessories

For surface mounting of the sounder/strobe, two different base types with protection classes IP24 or IP44 are available.

For surface mounted cabling with base LPBW, an optional mounting plate can be supplied.

Specifications

Base IP24

 

Order number

359040

Order name

Base Sounder & Strobe/IP24/White LPBW

Base IP44

 

Order number

359043

Order name

Base Sounder & Strobe/IP44/White SDBW

Mounting plate for surface mounted cabling with base LPBW, 5 Pieces

Order number

359049

Order name

Mounting Plate for Sounder/200/5 pcs. DBSPD/5

Building Safety. Building Security.

A

© LABOR STRAUSS SICHERUNGSANLAGENBAU GMBH • A-1231 WIEN • WIEGELESTRASSE 36 • TEL +43 1 52114-0 • FAX +43 1 52114-27

IBSST-DR-P0x_DBL_LST_EN_0804.PDF • PAGE 2

OFFICE@LST.AT • WWW.LST.AT • ALL RIGHTS RESERVED

 

Image 2
Contents IBSST-DR-P01, IBSST-DR-P02 Building Safety. Building SecuritySounder/Strobe DescriptionLoop sounder/strobe with isolator Base and accessoriesLoop sounder/strobe without isolator Base IP24

IBSST-DR-P02, IBSST-DR-P01 specifications

LST IBSST-DR-P02 and IBSST-DR-P01 are advanced technologies developed for high-efficiency and reliable energy conversion and management systems. These systems are particularly designed for applications in the energy sector, promoting sustainability and enhancing operational performance across various industrial domains.

The IBSST-DR-P02 is notable for its innovative design, featuring a robust structure that can operate under extreme conditions. It is equipped with state-of-the-art sensors and monitoring devices that ensure optimal performance and minimize downtime. One of its main features is the capability to seamlessly integrate with existing energy infrastructure, making it a versatile solution for modernization initiatives. The system's real-time data analytics allows for precise performance tracking and energy usage optimization, facilitating informed decision-making.

On the other hand, the IBSST-DR-P01 emphasizes modularity and scalability. This design characteristic permits customization according to specific industry requirements, ensuring that organizations can adapt the system to their unique operational needs. The P01 model incorporates cutting-edge energy storage technologies that enhance efficiency and reliability, providing uninterrupted power supply even in fluctuating energy conditions.

Both models utilize advanced algorithms for energy management, leveraging artificial intelligence and machine learning techniques to predict demand and adjust supply accordingly. This intelligent management significantly reduces wastage and costs while maximizing energy output. Furthermore, they support various renewable energy sources, reinforcing the push towards greener energy alternatives.

In terms of connectivity, the LST IBSST-DR-P02 and P01 feature extensive communication options, including IoT capabilities that enable remote monitoring and management. This connectivity allows operators to assess system health and performance from anywhere, ensuring prompt responses to potential issues. Built-in cybersecurity measures safeguard against potential threats, ensuring the integrity and security of data.

In summary, LST IBSST-DR-P02 and IBSST-DR-P01 stand out as exemplary models in energy management technologies. Their combination of reliability, scalability, and intelligent management not only enhances energy efficiency but also supports the transition towards a more sustainable energy future. As industries prioritize resilience and efficiency, these models represent a significant advancement in achieving operational excellence while mitigating environmental impact.