Updated:2023-10-27
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Thermal Conductivity Technology in Safe or Hazardous Areas
Features
Suitable for use in ATEX, UKCA, IECEx, TR CU Ex & cQPSus certified Hazardous Areas
Optional status LEDs following NAMUR standard
Compact and rugged design with an EExd enclosure and 4...20 mA output
Touch-screen display allows calibration or adjustment without the need for a hot works permit
Accuracy of better than ±2 % full scale
IP66 rated enclosure
Low cost of ownership due to minimal maintenance
Typical ranges available: 0...5 % up to 0...100 % (others gas dependent)
Stability ±0.5 % per month (of range)
A robust, linear and stable thermal conductivity analyzer for measurement of binary gas mixes such as air in hydrogen, nitrogen, argon, helium or carbon-dioxide. The sensor is housed in a rugged casing, making it suitable for a wide range of applications. The analyzer can be supplied explosion-proof and suitable for hazardous areas.
Specifications
Performance | |
Measurement Technology | Thermal Conductivity sensor |
Measured Gases | Air, Ar, CH4, CO2, H2, He or N2 |
Gas Requirements | Non-condensing sample with particles <3μm |
Measurement Range |
Selectable from 0...5 up to 0...100 % 50...100 % up to 90...100 % |
Measurement Range (H2 & He) |
Selectable from 0...1 % up to 0...100 % 50...100 % up to 99...100 %* |
Display Resolution | 0.1 % |
Display Type | Backlit LCD |
Intrinsic Error (Accuracy) | < ±2 % of range** |
Response Time (T90) | Standard < 20 seconds** |
Repeatability | ±0.2 % of range |
Linearity | ±1 % range |
Zero Stability | ±0.5 % of range per month |
Range Stability | ±0.5 % of range per month |
Sample Flow Rate | 100...500 ml/min (0.2...1.27 scfh) |
Sample Flow Rate(Ex) | 270...330 ml/min (0.54...0.66 scfh)) |
Sample Flow Effect (calibrated at 300 ml/min) |
< 1 % of range for flows: 100...500 ml/min |
Sample Pressure | Analyzers are callibrated at atmospheric pressure and must be operated with an atmospheric vent, unless otherwise stated |
Maximum Safe Pressure | 4 barg (58 psig) |
Sample Temperature | A constant temperature of +5...+45/+55 °C (+41...+113/+131 °F) |
Sample Cell Temperature | +50/+60 °C (+122/+140 °F) |
Electrical Specifications | |
Analog Inputs |
2 off 4...20 mA inputs One for an external sensor that can be displayed on the screen One to act as an active compensation for the process conditions |
Analog Outputs | 2 off 4...20 mA outputs |
Output Ranges |
Primary range is set to the calibrated range of the instrument The second is user selectable |
Alarms | 2 off single pole changeover (SPCO) relays (250 V, 5 A max) |
Datalogging |
The user can use the digital communications to log the output from the analyzer The unit will store 40 alarm points and the min/max O2 concentrations with date and time stamp |
Digital Communications | Modbus RTU over RS485 |
Power Supply | 24 V DC; 1.0 A max |
Operating Conditions | |
Ambient Temperature |
+5...+60 °C (+41 °F...+140 °F) +5...+50 °C (+41...+122 °F) cQPSus |
Mechanical Specifications | |
Warm Up Time | < 25 minutes |
Stabilization Time | 5 minutes |
Dimensions | 234 x 234 x 172 mm (w x d x h) |
Weight | 9.7 kg |
Wetted Materials | 316 stainless steel, boroscillicate glass, platinum, (plus O-ring) |
O-Ring Materials | Viton, Silicone or Ekraz |
Gas Connection | 1/4" NPT female (GP 1), 1/8" NPT female (Ex & GP2) |
Ingress Protection | IP66, NEMA 4 |
Hazardous Area Classification | |
ATEX/UKCA |
II 2 G D Ex db IIB +H2 T6 Gb Ex tb IIIC T85 °C Db IP66 |
IECEx |
Ex db IIB +H2 T6 Gb Ex tb IIIC T85°C Db IP66 |
Temperature ranges for ATEX/UKCA and IECEx as per O-ring type |
Silicon: Ta = -40 °C...+60 °C (+50 °C for N. America, +55 °C for TR CU Ex (EAC)) Viton: Ta = -15 °C...+60 °C (+50 °C for N. America, +55 °C for TR CU Ex (EAC)) Ekraz: Ta = -10 °C...+60 °C (+50 °C for N. America, +55 °C for TR CU Ex (EAC)) |
cQPSus |
Class I, Division 1, Groups B,C,D T6 Class I, Zone 1 AEx db IIB+H2 T6 Gb / Ex db IIB+H2 T6 Gb |
TR CU Ex | 1Ex d IIB+H2 T6 Gb |
*Ranges 98-100 % and 99-100 % (for H2 and HE only) will require a flowing
reference and selection of the 4-port model. reference and selection of the 4-port model. **The typical intrinsic error and response time will be as above. Certain gas combinations and/or ranges may have different specifications. Please consult Michell Instruments for specific cases. For example, CO2 / N2 would be < 50 seconds for T90. Note: If the 4-port version is selected then a reference gas with a flow rate of 300 ml/min is required |
Suitable Applications
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