Unigas E140X Manual Of Installation - Use - Maintenance page 6

Lmv 2x/3x microprocessor controlled gas burners
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PART I: SPECIFICATIONS
Burner model identification
Burners are identified by burner type and model. Burner model identification is described as follows.
Type
E115X
(1)
1
BURNER TYPE
2
FUEL
3
OPERATION (Available versions)
BLAST TUBE AND AIR INLET CONFIGURATION
4
(see the figure on page 5)
5
DESTINATION COUNTRY
6
BURNER VERSION
7
EQUIPMENT
8
GAS CONNECTION
see Specifications
9
MICRO-PROCESSOR CONTROL
Fuel
The burner technical specifications, described in this manual, refer to natural gas (calorific net value Hi = 9.45 kWh/Stm
3
0.717 Kg/Stm
) and LPG (calorific net value Hi = 26.79 kWh/Stm
biogas, multiply the values of flow and pressure by th corrective factors shown in the table below.
Fuel
Town gas
Biogas
LPG
For example, to obtain the flow and pressure values for the biogas:
Q
=
Q
1 478
biogas
naturalGas
3 5 
p
=
p
biogas
naturalGas
ATTENTION! The combustion head type and the settings depend on the fuel. The burner must be used only for its
intended purpose specified in the burner data plate .
ATTENTION: the corrective factors in the above table depend on the gas composition, so on the calorifc value and
the density of the gas. The above value can be taken only as reference.
Model
M-.
MD. SR.
(2)
(3)
(4)
Hi (KWh/Stm
6,395
26,79
*.
A.
1.
80.
(5)
(6)
(7)
(8)
E115X, E140X, E190X
M - Natural gas
L - LPG
B - Biogas
C - Town gas
PR - Progressive
MD - Fully modulating
SR = Standard blast tube + ABS polymer (silenced) air intake
SP = Standard blast tube + aluminium air intake
LR = Extended blast tube + ABS polymer (silenced) air intake
LP = Extended blast tube + aluminium air intake
* - see data plate
A - Standard
Y - Special
0 = 2 gas valves
1 = 2 gas valves + gas proving system
7 = 2 gas valves + maximum gas pressure switch
8 = 2 gas valves + gas proving system + maximum gas pressure switch
32 = Rp1
1/4
40 = Rp1
50 = Rp2
1/2
65 = DN65
80 = DN80
100 = DN100
EA = micro-processor control, without inverter
EB = micro-processor control, with inverter
3
, density ρ = 2.151 Kg/Stm
3
)
ρ (kg/Stm
4,88
6
EA
(9)
3
). For different fuel such as town gas and
f
3
)
Q
0,6023
1,936
1,1472
1,478
2,151
0,353
3
, density ρ =
f
p
3,3
3,5
0,4

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E115xE190x

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