What is the CMT200 CO Transmitter and How Does it Work?

What is the CMT200 CO Transmitter and How Does it Work?

In today's world, safety and environmental concerns have become paramount in various industries. One critical aspect of ensuring safety is the monitoring of hazardous gases, such as carbon monoxide (CO), in enclosed spaces. Underground parking garages, vehicle maintenance facilities, and mechanical rooms are prime examples of areas where CO can accumulate to dangerous levels. Fortunately, the Dwyer CMT200 Carbon Monoxide Transmitter is here to provide a solution to this problem. In this blog post, we'll delve into the features, applications, and specifications of the Dwyer CMT200 CO Transmitter and explore how it plays a crucial role in enhancing safety.

Features that Set it Apart:

The Dwyer CMT200 CO Transmitter boasts a range of impressive features that make it a standout choice for gas monitoring applications:

  1. Field Selectable Outputs: One of the key features of the CMT200 is its field-selectable current or voltage outputs. This flexibility allows users to choose the output type that best suits their monitoring and control systems.

  2. Replaceable Sensor: The transmitter is equipped with a field-replaceable electrochemical sensor, which has a typical lifespan of four years. This feature makes maintenance straightforward and cost-effective, ensuring long-term reliability.

  3. Field Calibration Kits: The CMT200 offers 15-turn span and zero adjustment potentiometers for calibration. This ease of calibration allows users to maintain accurate readings over time, contributing to the overall effectiveness of the monitoring system.

Applications:

The versatility of the Dwyer CMT200 CO Transmitter makes it a valuable tool in various applications, including:

  1. Garage Ventilation: Underground parking garages are notorious for accumulating CO emissions from vehicles. The CMT200 can help facility managers monitor CO levels and trigger ventilation systems when necessary to ensure a safe environment for both vehicles and pedestrians.

  2. Mechanical Room Monitoring: Mechanical rooms in industrial facilities often house equipment that generates CO as a byproduct. With the CMT200, maintenance personnel can keep a close eye on CO levels to prevent any potential health hazards.

  3. Building Automation Systems (BAS): The CMT200 is compatible with Building Automation Systems, making it a valuable component in larger building management systems. It seamlessly integrates into existing systems for comprehensive gas monitoring and control.

Specifications that Matter:

The technical specifications of the Dwyer CMT200 CO Transmitter highlight its robust performance:

  • Sensor Lifespan: The field-replaceable electrochemical sensor typically lasts for four years, minimizing downtime and maintenance costs.

  • Coverage Area: The transmitter can cover an area ranging from 5000 to 7000 square feet, making it suitable for a wide range of applications.

  • Accuracy: With an accuracy of ±2% of reading at the time of calibration, you can trust the CMT200 to provide reliable and precise measurements.

  • Output Drift: The transmitter exhibits minimal output drift (<5% per year in air), ensuring that the readings remain consistent over time.

 

In the quest for safety and environmental responsibility, the Dwyer CMT200 CO Transmitter emerges as a reliable and versatile tool for monitoring carbon monoxide levels in critical areas like underground parking garages, mechanical rooms, and more. Its field-selectable outputs, replaceable sensor, and user-friendly calibration options make it an ideal choice for professionals who prioritize safety and precision in their operations. By investing in this innovative device, businesses and facility managers can take a proactive approach to gas monitoring and create safer environments for everyone.

Explore the Dwyer CMT200 CO Transmitter, now available at our shop: 
https://tecnologiashop.com.au/products/cmt200rfc

 

Leave a comment

Please note, comments need to be approved before they are published.