Kigaz 150 Technical Features
GAS
Ambient CO max
CO flue gas
Interchangeablesensors : O2 and CO compensated H2
Excess air Losses
Efficiency > 100 percent
PRESSURE
Differential pressure measurement
Draft measurement
TEMPERATURE
Ambient temp.
Flue gas temp.
Delta Temperature
DHW temp.
Dew point temp.
OTHER FUNCTIONS
15 programmed combustibles
Adding 5 combustibles by the user
Automatic measurements
Opacity index
Ext. water trap
Combustible list - Sahara / Fos sur Mer Nat. Gas, Natural Gas (Groningen), North Sea / Russia Nat. Gas, LPG, Propane, Butane, Heavy Oil, Light Oil, Coke gas, Bituminous coal, Hard coal, Bio fuel 5 percent, Wood 20%, Wood chip 21%, Pellet 8% Specifications
Kigaz 150 Measuring Range
Parameter
Sensor
Measuring range
Resolution
Accuracy*
T90 response time
O2
Electro-chemical
from 0 percent - 21 percent
0.1 percent vol.
+/-0.2 percent vol.
30 s
CO(with H2Compensation)
from 0 - 8000 ppm
1 ppm
0 - 200 ppm : +/-10 ppm 201 - 2000 ppm : +/-5 percent of the measured value 2001 - 8000 ppm : +/-10 percent of the measured value
K thermocouple
from -100 - 1250 deg. C
0.1 deg. C
+/-1 deg. C
45 s
Internal NTC
-20 - 120 deg. C
Pt100 (1/3 Din external probe)
-50 - 250 deg. C
+/-0.3 percent of the measured value +/-0.25 deg. C
Calculated **
0 - 99 deg. Ctd
DHW temp
(external probe) TcK
-200 - 1300 deg. C
Differential pressure Draft
Semiconductor
-20 000 - 20 000 Pa
1 Pa
-20 000 - -751 Pa : +/-(-0.5 percent measured value 4.5 Pa) 750 - -61 Pa : +/-(-0.9 percent measured value 1.5 Pa) -60 - 60 Pa : +/-2 Pa 61 - 750 Pa : +/-(0.9 percent measured value 1.5 Pa) -60 - 60 Pa : +/-2 Pa 61 - 750 Pa : +/-(0.9 percent measured value 1.5 Pa) 751 - 20 000 Pa : +/-(0.5 percent measured value 4.5 Pa)
Losses
0 - 100 percent
0.1 percent
Excess air (Λ)
1 - 9.99
0.01
Lower efficiency (ηs)
(ηt) High efficiency (condensing)
0 - 120 pct.
0.1 pct.
Ext. instrument
0 - 9
*Accuracies indicated were stated laboratory conditions & are guaranteed for all measurements executed out in congruent conditions, or required compensation.**Calculation is made based on the measured values by the analyzer.
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