Model 3100, equipped with a high-range CO2 infrared (IR) sensor measuring 0 – 20%, is designed to be compatible with medical/ incubator applications, laboratory use, soil gas analysis, agriculture and horticulture applications.  The CO2 Portable Gas Analyzers have a powerful internal pump, new and improved operating software, the latest battery technology, USB data communications and flexible sensor options.  In addition to carbon dioxide detection and measurement, Model 3100 offers optional sensors including oxygen, temperature and relative humidity.
 
Infrared sensor technology is ideal for carbon dioxide detection as it offers accurate, reliable measurement with low maintenance costs.  The Bacharach CO2 Analyzer Model 3100 is ideal for incubator CO2 verification.  The analyzers accurately and quickly confirm the CO2, O2, relative humidity (RH) and temperature levels.
 
Features & Benefits
Stable infrared (IR) CO2 sensor provides better accuracy 
Internal pump draws 100cc/minute for fast response 
Large backlit LCD display with graphic icons is easy-to-read in any lighting condition 
Improved keypad with full numeric keys saves time 
User-adjustable settings for alarm and calibration setpoints via keypad (no PC required) 
User-ID code seeting for security and record-keeping 
Large data storage of 1,000 readings and 270 events viewable on screen 
User-friendly software and USB data download for data graphing and trend analysis (optional kit) 
Integrated Nafion tube for humidity reduction of sample gas ensures stable readings 
Continuous long-term operations using power supply 
All models have 2 temperature probe ports for T1-T2 calculation 
 
Measuring Ranges
| Measurement | Reading | Resolution | 
| CO2 (high) | 0-20% | 0.1% | 
| O2 | 0-100% | 0.1% | 
| Temperature* | 32°F - 122°F (0 - 50°C) | 0.1°F | 
| Relative Humidity* | 0-100% | 1% | 
*Optional. RH option must be chosen at the time of the order.
 
Applications
Incubators CO2 Verification 
Medical / Laboratory Use 
Soil Gas Analysis 
Agriculture 
Horticulture