LST WMSOU-xx-P01, WMSOU-xx-P02 Base and accessories, Loop sounder without isolator, red

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Loop sounder without isolator, red

 

Current consumption from loop

max. 450µA (sounder off)

 

max. 2.5mA (low sound level)

 

max. 4.4mA (medium sound level)

 

max. 7.1mA (high sound level)

Approval

VdS G206072

Order number

355160

Order name

Sounder/WM/200/Red/Multitone/100dB WMSOU-RR-P01

Loop sounder with isolator, red

 

Current consumption from loop

max. 450µA (sounder off)

 

max. 2.7mA (low sound level)

 

max. 4.6mA (medium sound level)

 

max. 7.3mA (high sound level)

Approval

VdS G206076

Order number

355161

Order name

Sounder/WM/200ISM/Red/Multitone/100dB WMSOU-RR-P02

Loop sounder without isolator, white

 

Current consumption from loop

max. 450µA (sounder off)

 

max. 2.5mA (low sound level)

 

max. 4.4mA (medium sound level)

 

max. 7.1mA (high sound level)

Approval

VdS G206072

Order number

355168

Order name

Sounder/WM/200/White/Multitone/100dB WMSOU-WW-P01

Loop sounder with isolator, white

 

Current consumption from loop

max. 450µA (sounder off)

 

max. 2.7mA (low sound level)

 

max. 4.6mA (medium sound level)

 

max. 7.3mA (high sound level)

Approval

VdS G206076

Order number

355169

Order name

Sounder/WM/200ISM/White/Multitone/100dB WMSOU-WW-P02

Base and accessories

For wall mounting of the sounder, various base types with protection classes IP24, IP44 or IP65 are available in white and red.

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

Building Safety. Building Security.

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Contents Description SpecificationsLoop sounder with isolator, red Base and accessoriesLoop sounder without isolator, red Loop sounder without isolator, whiteBase IP65, red not illustrated Base IP24Base IP44, red Base IP44, white

WMSOU-xx-P02, WMSOU-xx-P01 specifications

The LST WMSOU-xx-P01 and WMSOU-xx-P02 are cutting-edge Low-Temperature Superconducting (LST) wireless management systems designed for diverse applications in advanced electronics, telecommunications, and scientific research. These systems represent a significant leap in technology by utilizing the unique properties of superconductors to enhance performance and reliability across various industries.

One of the standout features of the WMSOU-xx-P01 and -P02 models is their ability to operate at cryogenic temperatures, which is crucial for minimizing electrical resistance and maximizing efficiency. The superconducting components used in these systems enable them to exhibit virtually no energy loss during operation, leading to lower operational costs and extending the lifespan of electronic components. This capability makes them particularly effective in environments where high energy efficiency and thermal management are paramount.

The systems are equipped with advanced wireless communication technologies that facilitate seamless data transmission and device control. Using state-of-the-art protocols, they ensure robust connectivity and interoperability with other devices, enabling real-time monitoring and management. This feature is particularly beneficial in complex applications such as quantum computing and high-energy physics experiments, where precise control and monitoring of equipment are essential.

In terms of connectivity, the WMSOU-xx-P01 and -P02 incorporate multiple interface options, including Ethernet, USB, and various wireless standards, allowing them to integrate effortlessly into existing infrastructure. The high scalability of these systems means they can be customized to fit specific requirements, making them suitable for both large-scale and compact applications.

Additionally, both models come with intuitive software tools that facilitate user interaction, data analysis, and system configuration. These applications are designed with user-friendliness in mind, providing users with the ability to visualize data in real-time and make informed decisions swiftly. The software also supports advanced analytics, helping operators optimize performance and preemptively identify maintenance needs.

In conclusion, the LST WMSOU-xx-P01 and WMSOU-xx-P02 represent a new era in wireless management systems, pushing the boundaries of what is possible in low-temperature superconductivity. With their unique features, advanced technologies, and user-centric design, they are poised to play a transformative role across various high-tech fields, ultimately contributing to innovations that will shape the future of electronics and communication technology.