Schako VLV55, VLV65 Technical Documentation Manual

Page 1
TECHNICAL DOCUMENTATION
TESTS AND STANDARDS
VLV55|VLV65
Volumetric flow controller
Operating temperature: 10 - 50 °C Differential pressure range: 20 - 750 Pa Volumetric flow measurement range from 13 m
3
2195 m
/h
Minimum pressure difference 5 to 150 Pa
VLV55
for air velocity 0.5 to 5 m/s
VLV65
for air velocity 1 to 8 m/s
3
/h to
VDI 6022, Sheet 1: Hygienic requirements of ventila-
tion and air-conditioning systems
DIN EN 13779 (2007): Ventilation of non-residential
buildings
Leakage air: EN 1751 (2014-06)DIN EN 1751, class 4: Leakage with damper blade
closed
DIN EN 1751, class C: Housing leakage
APPROVALS AND CERTIFICATES
SPECIAL FEATURES
RoHS 2002/95/EC after moulded parts no inflow area required optimised for air velocities from 0.5 m/s high control accuracy at low pressures and air veloci-
ties
position-independent installation resistant to pollution due to the design
EMC 2004/108/EC
Low voltage 2006/95/EC
SCHAKO | Ferdinand Schad KG Telefon 0 7463-980-0 Steigstraße 25-27 Fax 0 7463-980-200 D-78600 Kolbingen www.schako.de | infoschako.de
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
Table of Contents
TABLE OF CONTENTS
Table of Contents ................................................................................................................... 2
Overview of product versions ................................................................................................ 3
Function ................................................................................................................................. 3
Areas of application ............................................................................................................... 4
Processing .............................................................................................................................. 4
Available sizes ........................................................................................................................ 5
Useable volumetric flow ranges ............................................................................................ 5
Accessories ............................................................................................................................ 6
Dimensions of accessories ..................................................................................................... 6
Available sizes of accessories ................................................................................................. 6
Static minimum pressure difference ..................................................................................... 7
VLV55 - flow generated noise ................................................................................................ 8
VLV55 - flow generated noise - relative sound spectrum ...................................................... 9
VLV55 - radiated noise ......................................................................................................... 10
VLV55 - radiated noise - relative sound spectrum ............................................................... 11
VLV65 - flow generated noise .............................................................................................. 12
VLV65 - flow generated noise - relative sound spectrum .................................................... 13
VLV65 - Radiated noise ........................................................................................................ 14
VLV65 - Radiated noise - relative sound spectrum .............................................................. 15
Duct silencer (-RS) - insertion loss ....................................................................................... 16
Controller selection ............................................................................................................. 17
Technical data of control components ................................................................................ 17
Circuit diagrams - Belimo ..................................................................................................... 18
Circuit diagrams - Gruner..................................................................................................... 21
Setting the operating potentiometers ................................................................................. 22
Technical data of controllers and motors ............................................................................ 24
Startup using PC-Tool .......................................................................................................... 26
Startup using the setting and diagnostic device ZTH EU (Belimo) ....................................... 27
Startup using the setting device GUIV-A ............................................................................. 28
Smartphone app - Belimo Assistant .................................................................................... 28
Prior to assembly and commissioning ................................................................................. 29
Installation information ....................................................................................................... 29
Maintenance and service ..................................................................................................... 29
Legend ................................................................................................................................. 29
Order code ........................................................................................................................... 30
Specification text ................................................................................................................. 31
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
Overview of product versions | Function
OVERVIEW OF PRODUCT VERSIONS
FUNCTION
VLV55|VLV65 with rubber lip seal
Round volumetric flow controller
Volumetric flow range 0.5-5 m/s (VLV55) or 1-8 m/s (VLV65) With rubber lip seal (-GD1)
VLV55|VLV65 with flat flange
Round volumetric flow controller
Volumetric flow range 0.5-5 m/s (VLV55) or 1-8 m/s (VLV65) With flat flange according to DIN 24154, class 5 (-FF1)
VLV55|VLV65 with METU flange
A volumetric flow controller is used for pressure-independent
volumetric flow regulation in ventilation and air-conditioning
systems. It serves to keep the volumetric flow either constant
within specified limits (CAV) or to control it variably (VAV).
The housing, measuring nozzle and the controller with pressure
sensor form a closed control loop with feedback, allowing de-
mand-dependent, energy-saving air-conditioning of the single
rooms or areas of air-conditioning systems also at low duct
pressures and air velocities. When suitable controller types are
used, room or duct pressure regulation can be achieved.
For the measurement of the effective pressure, SCHAKO is us-
ing its measuring method by means of a standardised Venturi
nozzle made of aluminium to DIN EN ISO 5167. In front of the
Venturi nozzle and in the nozzle neck, the volumetric flow con-
troller is fitted with openings for pressure take-off. The result-
ing differential pressure (effective pressure) is measured and
evaluated by a universal or compact controller. The VLV meas-
urement principle allows measurement of small volumetric
flows. In comparison with measuring rods, measuring crosses
or measuring orifices having fewer measuring points, this gives
higher accuracy, allowing the inflow area required in front of
the volumetric flow controller to be omitted. This also allows
smaller measurement tolerances to be achieved.
The volumetric flow controllers of the VLV type are insensitive
to dirt caused by dust and can be installed and used inde-
pendently of their position. The mounting instructions docu-
mented by the manufacturer must be adhered to, as otherwise
the correct functioning of the volumetric flow controller is not
guaranteed. The volumetric flow controllers type VLV are not
suitable for air containing sticky and greasy particles (e.g.
kitchen exhaust air).
Round volumetric flow controller
Volumetric flow range 0.5-5 m/s (VLV55) or 1-8 m/s (VLV65) With METU flange type AF, without tension ring (-MF1)
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
Areas of application | Processing
AREAS OF APPLICATION
PROCESSING
for supply and return air systems with low pressures
and low air velocity
for constant CAV or variable VAV installations for positive control VFor volumetric flow and linear pressure control at ambient temperatures 0° to +50°C,
requirement: measuring air 0...+50°C/5...95% rH, non-condensing
for regulating the air velocity in the duct in
the range of 0.5...8 m/s
VLV55 for air velocity 0.5 - 5 m/s VLV65 for air velocity 1 - 8 m/s Minimum pressure difference of 5 - 150 Pa
When using volumetric flow controllers in roof central units, in extreme cases, condensation can build up in the measuring pipes of the volumetric flow controller as a result of the large temperature differences between the air flowing through the volumetric flow controller and the surrounding air. This con­densation may affect or damage the sensor. This is why for this field of application care must be taken to insulate the housings of the volumetric flow controllers and the measuring hoses (to prevent condensation) and to mount the controllers in such a way that any condensate formed on the outside of the measur­ing hoses can run downward and be drained (without entering the sensor).
When connecting SCHAKO components to customer installa­tions, any compatibility problems are beyond our scope of re­sponsibility and must be solved on site.
min
, V
, V
, "OPEN" or "CLOSED"
mid
max
Tests and standards
The volumetric flow controller VLV-… has been tested by the designated body in accordance with the following regulations:
Completed tests
VDI 6022, Sheet 1: Hygienic requirements of ventilation and
air-conditioning systems
DIN EN 1751: Ventilation for buildings - Air terminal devices -
Aerodynamic testing of damper and valves
DIN EN 13779 (2007): Ventilation of non-residential buildings
Applied standards
Leakage classification: DIN EN 1751 (2014-06) RoHS 2002/95/EC EMC 2004/108/EC
Housing
Galvanised sheet steel (-SV)
Galvanised sheet steel with DD coating (-DD)
Housing leakage according to DIN EN 1751, class C
Damper blade
Galvanised sheet steel (-SV)
Galvanised sheet steel with DD coating (-DD)
Damper axle
Passivated steel
Brass
Damper blade seal
made of EPDM, silicone-free, halogen-free
airtight sealing design to DIN-EN 1751, class 4
Ring chamber sealing
made of EPDM, silicone-free, halogen-free
Damper bearing
Plastic bearing
Measuring sensor
round Venturi nozzle made of aluminium
to DIN EN ISO 5167 (-SV)
round Venturi nozzle made of aluminium
to DIN EN ISO 5167 with DD coating (-DD)
Model
round model, for round ductwork connection to DIN EN 1506,
with damper blade seal for airtight sealing to DIN EN 1751,
class 4
VLV55 for air velocity 0.5 to 5 m/s
VLV65 for air velocity 1 to 8 m/s
Controller
LMV-D3-MP-SO, 5 Nm (-A001)
LMV-D3-MF-SO, 5 Nm (-A006)
227VM-024-05, 5 Nm (-A061)
Other controllers available on request
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
Available sizes | Useable volumetric flow ranges
AVAILABLE SIZES
USEABLE VOLUMETRIC FLOW RANGES
NW
[mm]
øD
[mm]
d (55) [mm]
d (65) [mm] L [mm]
Weight
[kg]
100 98 53 63 330 1.5 125 123 67 79 370 1.9 160 158 86 102 420 2.5 200 198 108 128 480 3.4 250 248 136 160 570 4.8 315 313 171 203 690 7.0
NW 100 - NW 315 sealing airtight to DIN-EN 1751, class 4.
Dimensions
VLV55 / VLV65
Detail X
VLV55 VLV65
NW V V
min
V
V
max
V
min
max
(mm) (0.5 m/s) (5 m/s) (1 m/s) (8 m/s)
m³/h 13 132 26 211
100
l/s 4 37 7 59
m³/h 21 210 42 334
125
l/s 6 58 12 93
m³/h 35 346 69 554
160
l/s 10 96 19 154
m³/h 55 546 109 874
200
l/s 15 152 30 243
m³/h 86 859 172 1374
250
l/s 24 239 48 382
m³/h 137 1372 274 2195
315
l/s 38 381 76 610
ATTENTION: Important for parameterisation of the VLV
The table corresponds to the complete measuring range.
When the air volume drops below V
ing of the volumetric flow controller is no longer guaranteed.
If only V
is specified in the order, a variable volumetric
max
flow controller will be delivered. The V the value specified in the catalogue.
If only one air volume is specified in the order (as V
), then the volumetric flow controller will be delivered as
stant
a constant volumetric flow controller. The volume specified in the order is set to the V
value, and the V
min
to 100%.
The air volumes V
min
and V
and the operating mode 0/2-10
max
V can be changed directly at the controller within the nomi­nal volumetric flow.
For the parameter setting of the control components, an air
density of 1.2 kg/m³ has been taken into account.
If no values are specified in the order, the controller will be
programmed with the values of the complete measuring range. The following calibration curves are taken into ac­count:
--- VLV55 ... 5 m/s;
--- VLV65 ... 8 m/s.
The first adjustment of the V
min
, V metric flows is done prior to delivery ex works in accordance with customer specifications (calibration for delivery address).
When these values are set, the functions of all volumetric flow controllers are also checked.
the correct function-
min,
value will be set to
min
and V
max
nenn
min
value is set
max
operating volu-
or V
kon-
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
Accessories | Dimensions of accessories
ACCESSORIES
Flat flange (-FF1), on both sides
to DIN 24154/5
METU flange (-MF1)
on both sides, duct flange type AF.
Flat flange (-FF1)
on both sides, according to DIN 24154/5.
Rubber lip seal (-GD1)
on both sides, special rubber.
Duct silencer (-RS)
Rubber lip seal (-GD1)
Rigid model Outer jacket and perforated sheet made of galvanised sheet
steel
mineral wool filling
DIMENSIONS OF ACCESSORIES
METU flange (-MF1)
Tension ring (provided by the customer) VLV Metu flange (-MF1) Counter flange (provided by the customer)
AVAILABLE SIZES OF ACCESSORIES
-FF - Flat flange
Detail X
Duct silencer (-RS)
-RS - Duct silencer
NW øD ød1 ød2 ød L LOA t
100 98 154 129 7 340 4 3
125 123 177 155 7 360 4 3
160 158 222 194 7 410 6 4
200 198 263 235 7 450 6 4
250 248 313 286 7 500 6 4
315 313 388 356 9.5 600 8 5
NW L øD øD2
50 100
100 340 98 200 300
125 360 123 225 325
160 410 158 260 360
200 450 198 300 400
250 500 248 350 450
315 600 313 415 515
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P (mm)
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
Static minimum pressure difference |
STATIC MINIMUM PRESSURE DIFFERENCE
VLV55
NW vk V V ∆p
(m/s) (m3/h) [l/s] (Pa) ±%
0.5 13
2 53 15 15 10
100
4 105 29 75 7
5 132 37 100 5
0.5 21
2 84 23 20 10
125
4 167 46 75 7
5 209 57 110 5
0.5 35
2 139 38 15 10
160
4 277 77 60 7
5 346 96 100 5
0.5 55
2 218 61 20 10
200
4 436 121 60 7
5 546 152 100 5
0.5 86
2 344 96 20 10
250
4 687 191 60 7
5 859 239 90 5
0.5 137
2 549 153 20 10
315
4 1097 305 65 7
5 1372 381 90 5
4 5 15
6 5 15
10 5 15
15 5 15
24 5 15
38 5 15
V
t min
VLV65
NW vk V V ∆p
(m/s) (m3/h) [l/s] (Pa) ±%
1 26
3 79 22 25 10
100
6 158 44 90 7
8 210 58 150 5
1 42
3 125 35 25 10
125
6 250 70 90 7
8 334 93 140 5
1 69
3 208 58 20 10
160
6 416 116 50 7
8 554 154 90 5
1 109
3 328 91 20 10
200
6 655 182 65 7
8 874 243 100 5
1 172
3 515 143 15 10
250
6 1031 286 55 7
8 1374 382 85 5
1 274
3 823 229 20 10
315
6 1646 457 55 7
8 2195 610 90 5
7 5 15
12 5 15
19 5 15
30 5 15
48 5 15
76 5 15
V
t min
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
VLV55 - flow generated noise |
VLV55 - FLOW GENERATED NOISE
VLV55
NW
100
125
160
200
250
315
--- = value below the static minimum pressure difference
VK
(m/s) V (m3/h) V [l/s]
0.5 13 4
2 53 15
4 105 29
5 132 37
0.5 21
2 84 23
4 167 46
5 209 57
0.5 35
2 139 38
4 277 77
5 346 96
0.5 55 15
2 218 61
4 436 121
5 546 152
0.5 86 24
2 344 96
4 687 191
5 859 239
0.5 137
2 549 153
4 1097 305
5 1372 381
6
10
38
∆pt = 50 Pa LWA [dB(A)]
29 33
44 50
44 54
--- 56
35 38
49 54
47 58
--- 56
38 45
51 57
50 60
--- 58
41 45
49 59
49 59
--- 59
42 50
50 59
51 60
--- 63
44 48
52 60
53 61
--- 63
∆pt = 100 Pa
LWA [dB(A)]
∆pt = 150 Pa
LWA [dB(A)]
36 41 43
54 56 58
59 62 64
61 65 67
43 45 48
58 59 61
63 65 67
63 67 69
46 50 51
60 62 63
64 67 68
65 68 71
47 49 51
59 66 68
64 67 70
65 68 71
56 60 62
63 66 69
64 67 70
65 68 71
52 54 57
64 66 69
65 69 71
67 70 72
∆pt = 200 Pa
LWA [dB(A)]
∆pt = 250 Pa
LWA [dB(A)]
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
VLV55 - flow generated noise - relative sound spectrum |
VLV55 - FLOW GENERATED NOISE - RELATIVE SOUND SPECTRUM
NW100
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL -6 -8 -6 -1 -4 -13 -18 -25
NW125
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL -8 -9 -5 -1 -3 -12 -19 -26
Size 160
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL -6 -7 -3 -1 -4 -9 -17 -27
NW200
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL -6 -5 -1 0 -7 -11 -18 -26
NW250
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL -1 -2 1 -1 -7 -10 -18 -28
Size 315
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL -3 -1 3 -1 -6 -10 -18 -28
Differential pressure range: 0 - 300 Pa Air velocity: 0.5 - 5.0 m/s KL= correction value; relative sound power level, relative to LWA KLW = LWA + {KL}
C A L C U L A T I O N E X A M P L E
VLV55 design data
NW 160 mm | V=247 m³/h | p=100 Pa | L
Hz 63 125 250 500 1000 2000 4000 8000 KL -6 -7 -3 -1 -4 -9 -17 -27
Calculate sound values according to formula
K
LW(relativ)
gives
Hz 63 125 250 500 1000 2000 4000 8000 LWA 60 60 60 60 60 60 60 60 KL -6 -7 -3 -1 -4 -9 -17 -27 KLW 54 53 57 59 56 51 43 33
= 60 dB(A)
WA
= LWA + {KL}
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
VLV55 - radiated noise |
VLV55 - RADIATED NOISE
VLV55
NW
100
125
160
200
250
315
--- = values below 25 dB(A)
VK
(m/s)
0.5 13 4
2 53 15
4 105 29
5 132 37
0.5 21
2 84 23
4 167 46
5 209 57
0.5 35 10
2 139 38
4 277 77
5 346 96
0.5 55 15
2 218 61
4 436 121
5 546 152
0.5 86 24
2 344 96
4 687 191
5 859 239
0.5 137 38
2 549 153
4 1097 305
5 1372 381
V
(m3/h) V [l/s]
6
∆pt = 50 Pa LWA [dB(A)]
--- ---
--- ---
--- 27
--- 32
--- ---
--- 25
25 28
--- 33
--- ---
--- 28
--- 34
--- 38
--- ---
--- 33
--- 41
--- 43
--- ---
--- 34
--- 40
--- 41
--- 33
--- 45
--- 45
--- 44
∆pt = 100 Pa
LWA [dB(A)]
∆pt = 150 Pa
LWA [dB(A)]
--- --- ---
25 28 30
30 33 34
34 36 38
--- --- ---
--- 29 30
32 33 36
35 38 42
--- --- 25
31 33 36
37 39 40
40 42 44
--- 25 26
36 39 41
45 47 49
46 49 52
--- 27 31
36 39 41
43 45 47
43 46 48
35 38 40
46 48 50
47 48 50
46 50 52
∆pt = 200 Pa
LWA [dB(A)]
∆pt = 250 Pa
LWA [dB(A)]
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VLV55 - radiated noise - relative sound spectrum |
VLV55 - RADIATED NOISE - RELATIVE SOUND SPECTRUM
NW100
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL 1 -1 -9 -8 -7 -5 -9 -11
NW125
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL 4 2.4 -7 -3 -7 -7 -9 -14
Size 160
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL 3 2 -3 -5 -6 -8 -9 -10
NW200
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL -3 -4 -8 -6 -7 -6 -7 -9
NW250
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL 2 0 -2 -5 -8 -6 -8 -11
Size 315
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL -3 -4 -2 -4 -8 -7 -7 -18
Differential pressure range: 0 - 300 Pa Air velocity: 0.5 - 5.0 m/s KL= correction value; relative sound power level, relative to LWA KLW = LWA + {KL}
C A L C U L A T I O N E X A M P L E
VLV55 design data
NW 160 mm | V=247 m³/h | p=100 Pa | L
Hz 63 125 250 500 1000 2000 4000 8000 KL 3 2 -3 -5 -6 -8 -9 -10
Sound values calculated according to formula
K
LW(relativ)
gives
Hz 63 125 250 500 1000 2000 4000 8000 LWA 34 34 34 34 34 34 34 34 KL 3 2 -3 -5 -6 -8 -9 -10 KLW 37 36 31 29 28 26 25 24
= 34 dB(A)
WA
= LWA + {KL}
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VLV65 - flow generated noise |
VLV65 - FLOW GENERATED NOISE
VLV65
NW
VK
(m/s)
V
(m3/h) V [l/s]
1 26 7
3 79 22
∆pt = 50 Pa
[dB(A)]
L
WA
38 43
48 53
∆p
L
100
5 130 35
8 210 58
1 42
12
3 125 35
48 57
--- ---
41 45
50 58
125
5 210 60
8 334 93
1 69
19
3 208 58
47 59
--- ---
45 49
50 58
160
5 345 95
8 554 154
1 109 30
3 328 91
51 59
--- 61
46 52
49 59
200
5 545 150
8 874 243
1 172 48
3 515 143
51 60
--- 60
49 54
49 59
250
5 860 240
8 1374 382
1 274
76
3 823 229
52 60
--- 62
50 55
52 60
315
5 1370 380
8 2195 610
54 62
64 67
--- = value below the static minimum pressure difference
= 100 Pa
t
[dB(A)]
WA
∆p
= 150 Pa
t
L
WA
[dB(A)]
∆p
= 200 Pa
t
[dB(A)]
L
WA
∆p
= 250 Pa
t
[dB(A)]
L
WA
46 48 51
57 59 61
62 65 66
62 66 69
49 51 53
61 63 64
63 67 70
65 69 71
53 54 57
63 65 67
64 67 69
65 68 71
54 57 58
63 66 68
64 67 69
67 69 72
56 59 61
63 66 68
64 67 69
67 69 71
58 60 62
64 67 70
65 68 70
69 72 74
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VLV65 - flow generated noise - relative sound spectrum |
VLV65 - FLOW GENERATED NOISE - RELATIVE SOUND SPECTRUM
NW100
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL -7 -8 -5 -2 -3 -12 -18 -25
NW125
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL -9 -8 -5 -2 -3 -10 -17 -25
Size 160
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL -7 -7 -3 -1 -4 -9 -17 -26
NW200
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL -5 -3 0 -1 -6 -11 -18 -27
NW250
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL -4 -2 1 -2 -6 -9 -16 -25
Size 315
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL -1 0 1 -2 -5 -9 -16 -27
Differential pressure range: 0 - 300 Pa Air velocity: 0.5 - 5.0 m/s KL= correction value; relative sound power level, relative to LWA KLW = LWA + {KL}
C A L C U L A T I O N E X A M P L E
VLV65 design data
NW 200 mm | V=545 m³/h | p=100 Pa | L
Hz 63 125 250 500 1000 2000 4000 8000 KL -5 -3 0 -1 -6 -11 -18 -27
Sound values calculated according to formula
K
LW(relativ)
gives
Hz 63 125 250 500 1000 2000 4000 8000 LWA 60 60 60 60 60 60 60 60 KL -5 -3 0 -1 -6 -11 -18 -27 KLW 55 57 60 59 54 49 42 33
= 60 dB(A)
WA
= LWA + {KL}
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VLV65 - Radiated noise |
VLV65 - RADIATED NOISE
VLV65
NW
VK
(m/s)
V
(m3/h) V [l/s]
1 26 7
3 79 22
100
5 130 35
8 210 58
1 42
3 125 35
125
5 210 60
8 334 93
1 69
3 208 58
160
5 345 95
8 554 154
1 109 30
3 328 91
200
5 545 150
8 874 243
1 172 48
3 515 143
250
5 860 240
8 1374 382
1 274
3 823 229
315
5 1370 380
8 2195 610
--- = values below 25 dB(A)
12
19
76
∆pt = 50 Pa
[dB(A)]
L
WA
∆p
= 100 Pa
t
[dB(A)]
L
WA
--- ---
--- ---
--- 25
--- ---
--- ---
--- ---
--- 30
--- 38
--- ---
--- 33
--- 39
--- 44
--- 25
--- 35
--- 38
--- 43
--- 26
--- 37
--- 40
--- 45
--- 26
--- 38
--- 40
--- 47
∆p
= 150 Pa
t
L
WA
[dB(A)]
∆p
= 200 Pa
t
[dB(A)]
L
WA
∆p
= 250 Pa
t
[dB(A)]
L
WA
--- --- ---
26 28 30
30 32 35
35 39 40
--- --- ---
26 29 30
33 34 36
40 41 42
25 28 31
36 38 40
41 43 45
46 47 48
29 32 34
38 40 42
42 44 46
46 48 50
30 34 36
40 42 44
43 45 47
47 49 51
29 35 38
42 42 44
44 44 47
50 50 51
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
VLV65 - Radiated noise - relative sound spectrum |
VLV65 - RADIATED NOISE - RELATIVE SOUND SPECTRUM
NW100
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL 1 0 -8 -6 -5 -5 -10 -13
NW125
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL 2 1 -5 -2 -8 -7 -9 -12
Size 160
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL 0 -1 -6 -4 -7 -7 -8 -10
NW200
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL 0 -2 -6 -4 -7 -7 -7 -11
NW250
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL -1 -2 -5 -6 -9 -6 -7 -12
Size 315
Relative sound spectrum (dB)
Correction value KL
Frequency (Hz)
Hz 63 125 250 500 1000 2000 4000 8000
KL 0 -2 -2 -6 -8 -6 -7 -19
Differential pressure range: 0-300 Pa Air velocity: 0.5 – 5.0 m/s KL= correction value; relative sound power level, relative to LWA KLW = LWA + {KL}
C A L C U L A T I O N E X A M P L E
VLV65 design data
NW 200 mm | V=545 m³/h | p=100 Pa | LWA = 38 dB(A)
Hz 63 125 250 500 1000 2000 4000 8000 KL 0 -2 -6 -4 -7 -7 -7 -11
Sound values calculated according to formula
K
gives
= LWA + {KL}
LW(relativ)
Hz 63 125 250 500 1000 2000 4000 8000 LWA 38 38 38 38 38 38 38 38 KL 0 -2 -6 -4 -7 -7 -7 -11 KLW 38 36 32 34 31 31 31 27
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
Duct silencer (-RS) - insertion loss |
DUCT SILENCER (-RS) - INSERTION LOSS
L1=500
(dB/Okt)
D
P=50 - f
125
250
m
500
NW
63
100 3 6 10 16 22 30 14 13 5 13 15 19 33 31 25 15
125 3 5 9 14 20 24 12 11 4 10 13 18 29 25 18 12
160 2 4 7 12 18 19 10 9 3 9 11 16 26 19 14 10
200 1 3 6 10 16 15 7 6 3 7 9 15 25 17 11 9
250 1 2 4 9 15 11 4 3 2 6 8 14 23 15 9 7
315 1 1 3 8 12 8 3 2 2 4 7 13 20 12 7 5
e
(Hz) P=100 - fm (Hz)
63
125
250
500
1000
2000
4000
8000
1000
2000
L1=950
(dB/Okt)
D
P=50 - f
125
250
m
500
NW
63
100 5 12 23 36 50 50 34 21 7 19 28 40 50 50 50 32
e
(Hz) P=100 - fm (Hz)
63
125
250
500
1000
2000
4000
8000
1000
2000
L1=1450
(dB/Okt)
D
P=50 - f
250
m
500
NW
63
4000
8000
100 8 22 44 50 50 50 46 28 - - - - - - - -
125 7 20 39 50 50 50 39 25 - - - - - - - -
160 6 14 27 42 48 42 26 18 6 17 30 47 50 49 30 18
200 4 6 15 29 42 30 17 14 5 14 26 42 50 46 28 16
250 3 4 10 20 37 24 13 11 4 12 22 36 46 43 25 14
315 2 4 8 16 34 19 10 7 2 8 15 27 35 32 17 9
125
e
(Hz) P=100 - fm (Hz)
63
125
250
500
1000
2000
4000
8000
1000
2000
4000
8000
L1=1950
(dB/Okt)
D
P=50 - f
250
m
500
NW
63
4000
8000
100 9 30 50 50 50 50 50 38 - - - - - - - -
125
e
(Hz) P=100 - fm (Hz)
63
125
250
500
1000
2000
4000
8000
1000
2000
4000
8000
125 4 11 21 33 50 50 32 19 6 17 25 34 49 50 36 22
160 3 8 15 23 34 9 18 14 5 12 18 28 41 48 26 16
200 2 5 11 18 30 24 14 11 4 10 15 24 35 41 22 13
250 2 4 9 15 27 18 11 9 3 8 13 20 31 35 20 11
315 1 3 6 12 24 14 7 6 2 6 8 15 26 7 14 8
P = packing thickness in mm
125 8 26 50 50 50 50 50 33 - - - - - - - -
160 - - - - - - - - 8 23 39 50 50 50 41 25
200 - - - - - - - - 7 19 34 50 50 50 37 21
250 - - - - - - - - 6 16 29 48 50 49 33 18
315 - - - - - - - - - - - - - - - -
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
Controller selection | Technical data of control components
control to a minimum volumetric flow
V
CONTROLLER SELECTION
Type Size Controller Product
LMV-D3-MP NW100 - 315 Compact Belimo
LMV-D3-MF NW100 - 315 Compact Belimo
227VM-024-05 NW100 - 315 Compact Gruner
Other controllers available on request. Make Belimo, Gruner, Sauter, Siemens and Delta Controls possible.
TECHNICAL DATA OF CONTROL COMPONENTS
Measured value collection and control function
The volumetric flow controllers of the Belimo make, type LMV­D3-MP/-MF Compact and the Gruner make, type 227VM Com­pact are delivered by SCHAKO as standard with the operating mode (Y signal, U5 signal) 2-10 V DC. When activated by 2 V DC,
volume is controlled, the smallest possible V
the V
min
that can be controlled can be seen from the "Volumetric Flow Range" tables.
NOTE: When the air volume drops below the V
min
table, the correct functioning of the volumetric flow controller is no longer guaranteed!
Positive control damper "CLOSED"
Airtight sealing to DIN EN 1751 is achieved on site either via a positive control "CLOSED" by means of a switch or a relay, or via an actuator signal of 0 V DC applied to the input Y (all Com­pact controllers equipped with the operating mode 2-10V DC). Accordingly, the drive will likewise close the flap in operating range 2 - 10 V DC (however, this does not apply to the operat­ing range 0-10 V DC), and the VAV control will be inactive. To do so, it must be ensured that the actuator signal is < 0.1 V DC. This is why in rooms where defined pressures are active (e.g. la­boratories), the damper should be closed via a digital on site switching contact.
If the Compact controllers of the Belimo make must be deliv­ered with the operating mode 0-10V DC on customer request, please note that a positive control "CLOSED" can only be ef­fected via a switching contact with diode.
If the compact controllers of the Belimo make are used to­gether with the type VRP-VFP-300 in the master/slave mode or in parallel mode, then only the 2-10 V DC operating mode is usually possible.
Positive control damper "OPEN"
Supports smoke extraction or is used as a safety position. The volumetric flow controller is in this case inactive, and the damper is driven to the mechanical open position.
volume
min
shown in the
min
Depending on requirement or by not assigning them, individual areas can be set to stand-by operation. In this way, minimum room flushing with greatly reduced energy expenditure is achieved.
V
control to a maximum volumetric flow
max
Individual or several rooms are supplied for a short period with a maximum volumetric flow. This allows, for example, a room through-ventilation or efficient heating to be effected.
Continuous operation
As a function of the continuous driving signal and the pro­grammed operating range (0-10 V DC or 2-10 V DC), the volu­metric flow controller will regulate the volumetric flow linearly
...V
between the setpoint values V
min
max
.
Constant operation
If terminal 3 (Y driving signal) has not been assigned, the air vol­ume set on the V
potentiometer will be set to a constant vol-
min
ume.
Two-stage volumetric flow rate control
Stage 1: If terminal 3 (Y command signal) has not been
assigned, the air volume set on the V
potenti-
min
ometer will be set to a constant volume.
Stage 2: If AC 24 V is applied to terminal 3 (Compact con-
troller) or terminal 7 (VRD3-SO, VRP-VFP-300), the VSR will keep the value set on the V
max
po­tentiometer constant. With a switch or a contact in a connection line a "secondary volume flow control" is possible.
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VLV55|VLV65 - Volumetric flow controller
}
TECHNICAL DOCUMENTATION
Circuit diagrams - Belimo |
CIRCUIT DIAGRAMS - BELIMO
Circuit diagram - standard - controller Compact controller - Belimo make - LMV-D3-MP / LMV-D3-MF
VAV with analogue command signal VAV with lock (CLOSED) MP bus activation with integrated
DC AC
switch- Model 2-10V DC (LMV-D3-MP only)
DC AC
VAV command signal
DC AC
VAV command signal
on site
Cable designations
CLOS
ED MP / actual value sig­nal
PC tool
No. Designation Wire colour Function
1
2
3
5
-
black
〦
+ ~ red ~ + AC/DC 24 V
Y white VAV / CAV command signal
U orange - Actual value signal
〦
CLOSED / VAV mode
VAV
switchover
MP / actual value sig­nal
on site
-
- MP bus connection
PC tool
Feed
e.g. window contact
MP address: 1…8
on site
PC tool
Lock mode (CLOSED): In the 2…10 V mode, the following function can be car­ried out with a 0 - 10 V signal.
Com-
nal Y
Volumetric
flow
Operating stage
min
... V
min
mand sig-
< 0.1 V ** 0 Damper CLOSED,
0.2...2 V V
2...10 V V
Function
VAV control inac-
tive
active
V
min
continuous opera-
max
tion
v
... V
min
max
**Attention: Controller/DDC must be able to pull the command signal to 0 V.
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
Circuit diagrams - Belimo |
CAV operation / positive contacts CAV function for …-MV-D3-MP/-MF
DC
AC
VAV command signal
MP / actual value sig­nal
on site
Note: Please ensure mutual locking of the contacts!
PC tool
Mode
setting
Signal
Function 33 3 3 3
Damper CLOSED
V
...V
min
max
CAV - V
min
Damper OPEN e) OPEN*
CAV - V
max
--- 0...10 V 0...10 V
2...10 V 2...10 V 2...10 V
0...10 V
⊥
- 2...10 V +
a) CLOSED c) CLOSED*
b) VAV
everything open - V
∼
Contact closed, function active Contact closed, function active, in mode 2...10 V only Contact open * not available for 24 V DC supply
min
0...10
0...10 V
V
2...10
2...10 V
V
∼
active
d) V
max
∼
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VLV55|VLV65 - Volumetric flow controller
)
TECHNICAL DOCUMENTATION
Circuit diagrams - Belimo |
LED table of functions for LMV-D3-MP / LMV-D3-MF
Application
N1 operation Status display - 24 V power supply o.k.
S1 service function Synchronisation Synchronisation started by:
S2 service function Adaptation Adaptation started by:
Function
Description / action
- VAV-Compact ready for operation
a) Operating / service unit b) Manual trigger device at the VAV-Compact c) Power ON behaviour
a) Operating / service unit b) Key on the VAV-Compact
LED pattern
LED 1
LED 2
LED 1
LED 2
LED 1
LED 2
Adaptation Address
Start
Start
⊕
LED 1 power LED 2 status
⊕
1.) →
→
2.
V1 VAV service VAV service
B1 bus operation Addressing via MP
B2 bus operation Addressing via MP
B3 bus operation communication
active
Lack of air Damper opens as actual volume is too low LED 1
Target volume reached
Air excess Damper closes as actual volume is too high LED 1
master (Acknowledge­ment at the VAV­Compact)
master (with se­rial number)
MP-PP display Communication
green LED (power) is lit yellow LED (status) is lit yellow LED (status) is flashing
1.) Synch time
2.) Adaptation time
a) Press both keys «Adaptation» & «Address» simultaneously b) VAV service will be activated:
- until 24 V supply is switched off
- until both keys are pressed again
- after 2 hours have passed
Control circuit balanced
a) Addressing has been triggered at the MP master
b) Press addressing key LED will switch to the communication display as soon as the addressing process is complete.
Addressing at the MP master was triggered, LED will switch to the communication display as soon as the addressing process is complete.
Communication display via MP master or oper­ating / service unit
LED 1
LED 2
LED 2
LED 1
LED 2
LED 2
LED 1
LED 2
LED 1
LED 2
LED 1
LED 2
LED 1
LED 2
On event
Not address.
MP communication
MP communication
MP communication
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
Circuit diagrams - Gruner |
CIRCUIT DIAGRAMS - GRUNER
227VM-024-05 Compact
Connection diagram and positive control
Connection
Edit
The selector value allows values to be changed. The position of the arrow shows the set value. The changes are displayed as soon as the selector is moved ± 10 ° out of its position.
Flow / Unit
To set the required actual volumetric flow unit in m3/h and l/s.
V
min
To set the required min. volumetric flow (setpoint value Y = 0V / 2V)
V
max
To set the required max. volumetric flow (setpoint value Y = 10V).
Mode (to set the direction of rotation) 0-n…0-10 V normal 2-n…2-10 V normal 0-i…0-10 V inverse 2-i…2-10 V inverse
Diag (diagnostics menu) oP - opens the damper blade cL - closes the damper blade Hi - activates Vmax Lo - activates Vmin on - diagnostic mode is on, motor is off oFF - diagnostic mode is off, display Y setpoint
V
nom
To set the volumetric flow according to VAV box
NOTE Further information can be found in the GRUNER technical doc­umentation: Data sheet 227VM-024-05
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
Setting the operating potentiometers |
SETTING THE OPERATING POTENTIOMETERS
with calculation formulas
Set value for V
EW
V
max
The required volumetric flow that is to flow at the 10 V DC com­mand signal at terminal 3 (w/Y) or with positive control V set in % at the V device or PC-Tool. This value refers to the set V umetric flow.
Set value for V
EW
=
V
min
The required volumetric flow that is to flow at the 0 V DC com­mand signal (operating mode 0-10 V DC) or at the 2 V DC driv­ing signal (operating mode 2 - 10 V DC) at terminal 3 (wY) or with positive control V of the controller, the ZTH EU device or PC-Tool. This value re­fers to the set V troller type).
Information regarding the set value V
in the following controllers, V
Product Type
Belimo LMV-D3-MP/LMV-D3-MF Gruner 227VM-024-05
Calculation of the U5 voltage value
=
V
V
V
nenn
max
nenn
max
x 100 %
potentiometer of the controller, the ZTH EU
max
nenn
min
V
min
V
nenn
x 100%
max
is set in % at the V
min
or V
volumetric flow (depending on con-
max
refers to V
min
min
nenn
min
:
potentiometer
is
max
nominal vol-
Actual value measurement feedback signal U
: voltme-
5
ter / PC-Tool
LMV-D3-MP / LMV-D3-MF
Supply voltage: 24 V AC/DC (terminals 1+2) Measurement output 2 - 10 V DC (terminals 1+5) Measurement output 0 - 10 V DC (terminals 1+5)
The actual value signal U5 is a real feedback of the volumetric flow actual value for monitoring and controlling the air throughput volume.
227VM-024-05
Supply voltage: 24 V AC/DC (terminals 1+2) Measurement output 2 - 10 V DC (terminals 1+4) Measurement output 0 - 10 V DC (terminals 1+4)
Operating mode: 2 - 10 V DC:
V
max
U5=
U5=
V
nenn
V
min
V
nenn
x 8V+2V
x 8V+2V
V
V
max
min
values
values
Operating mode: 0 - 10 V DC:
V
max
U5=
U5=
Calculation of the V
V
x 10V
V
nenn
V
min
x 10V
V
nenn
= EK x F x 3600
nenn
values
V
max
V
values
min
volumetric flow
nenn
Attention
The V
value changes as a function of the set calibration curve.
nenn
EW (%) = Set value EK (m/s) = Calibration curve U
(V DC) = U5 signal
5
F (m2) = Surface
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TECHNICAL DOCUMENTATION
Setting the operating potentiometers |
U5 signal 0-10 V DC
Example
Assume: Measurement output signal U5 =
6.3 V DC see calibration value VRA-E = 12 m/sec
Measured va­lue:
Air volume: Duct velocity x area m² x 3600 =
Duct velocity = 7.6 m/s
m³/h
U5 signal 2-10 V DC
Example
Assume: Measurement output signal U5 =
6.3 V DC see calibration value VRA-E = 12 m/sec
Measured value: Duct velocity = 3.6 m/s
Air volume: Duct velocity x area m² x 3600 =
m³/h
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VLV55|VLV65 - Volumetric flow controller
°
TECHNICAL DOCUMENTATION
Technical data of controllers and motors |
TECHNICAL DATA OF CONTROLLERS AND MOTORS
Controller standard
LMV-D3-MP (make BELIMO)
Dynamic pressure sensor, digital VAV controller and damper drive as communication-capable VAV-Compact solution.
Measuring principle: Pressure reading with volumetric flow Measuring range sen­sor: Supply voltage: AC 24 V 50/60 Hz; DC 24 V Functional range: AC 19.2…28.8 V; DC 21.6…28.8 V Power consumption: 2 W Dimensioning: 3.5 VA Torque: min. 5 Nm at the rated voltage Control function: VAV/CAV/Open-Loop;
Setting range V
:
min/Vmax
Command variable w/Y: (Input resistance min. 100 kΩ)
Setting range Actual value signal U MP bus function Address in bus mode: LONWORKS®/EIB­Konnex/MODBUS RTU/BACnet: DDC controller: DDC controller / PLC from different manu-
Fan Optimiser: with BELIMO Optimiser COU24-A-MP Sensor connection: Passive (Pt1000, Ni1000, etc.) and active
Protection class: III (safety extra low voltage) Protection type: IP 54 (hose-connected) EMC: CE according to 39/336/EEC Measuring air and ambient tempera­tures: Storage temperature: -20 °C… + 80 °C Sound power level: max. 35 dB(A) Operation and ser­vice: Communication: PP/MP bus, max. DC 15V, 1200 baud Connection: cable, 4x0.75 mm2, terminals Weight: approx. 500 g
2…∼450 PA
Supply/return air or stand-alone opera­tion; master/slave parallel circuit; Mixing box control
=0…100% of set V
V
min
V
=20…100% of set V
max
DC 2-10 V (4…20mA with 500 Ω input resistance) DC 0-10 V (0…20mA with 500 Ω input resistance) adjustable DC 0…10 V DC 2…10 V
:
DC 0…10 V
5
1 … 8 (standard operation: PP)
with BELIMO interface UK24LON / UK24EIB, 1 …8 BELIMO MP devices (VAV / damper drive / valve)
facturers, with integrated MP interface
sensors (0…10 V), for example tempera­ture, humidity, 2-point signal (switching power 16 mA 24 V), for example switch, presence detector
0° C…+50 °C, 5…95% rH, non-condensing
plug-in via service socket / PC-Tool (from V3.1) / ZTH EU
volumetric flow
nenn
volumetric flow
nenn
LMV-D3-MF (make BELIMO)
Dynamic pressure sensor, digital actuator as VAV-Compact solution
Measuring principle: Pressure reading with volumetric flow Measuring range sen­sor: Supply voltage: AC 24 V 50/60 Hz; DC 24 V Functional range: AC 19.2…28.8 V; DC 21.6…28.8 V Power consumption: 2 W Dimensioning: 3.5 VA Torque: min. 5 Nm at the rated voltage Control function: VAV/CAV/Open-Loop;
Setting range
:
V
min/Vmax
Command variable w/Y: (Input resistance min. 100 kΩ)
Setting range actual value signal U Sensor connection: Passive (Pt1000, Ni1000, etc.) and active sensors
Protection class: III (safety extra low voltage) Protection type: IP 54 (hose-connected) EMC: CE according to 39/336/EEC Measuring air and ambient tempera­tures: Storage temperature: -20°C…+80 °C Sound power level: max. 35dB(A) Operation and ser­vice: Communication: PP, max. DC 15 V, 1200 baud Connection: cable, 4x0.75 mm2, terminals Weight: approx. 500 g
2…∼450 PA
Supply/return air or stand-alone operation; master/slave parallel circuit; Mixing box control V
=0…100 % of set V
min
=20…100 % of set V
V
max
DC 2-10 V (4…20 mA with 500 Ω input resistance) DC 0-10 V (0…20 mA with 500 Ω input resistance) adjustable DC 0…10 V DC 2…10 V
:
DC 0…10 V
5
(0…10 V), for example temperature, humidity, 2­point signal (switching power 16 mA 24 V), for example switch, presence detector
C…+50° C, 5…95 % rH, non-condensing
0
plug-in via service socket / PC-Tool (from V3.1) / ZTH EU
volumetric flow
nenn
volumetric flow
nenn
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
Technical data of controllers and motors |
227VM-024-05 (make GRUNER) Dynamic pressure sensor, digital VAV controller and damper drive as communication-capable VAV-Compact solution.
Measuring principle: Pressure reading with volumetric flow
Measuring range sen­sor: Supply voltage: AC 24 V 50/60 Hz, DC 24 V
Functional range: AC 19…29 V, DC 19…29 V
Power consumption: 2.5 W (5 Nm)
Dimensioning: 4.0 VA (5 Nm)
Torque: min. 5 Nm at the rated voltage
Control function: VAV/CAV
Setting range:
to V
max
V
min
Command variable Y/Z (inherent resistance
min. 100 kΩ
)
Setting range:
(actual value signal
U/PP) DCC controller: DCC controller or PLC
Sensor integration: passive or active sensor (0-10 V)
Protection class: III (Safety extra low voltage)
Protection type: IP54 (measuring hoses connected)
Measuring air and ambient temperature
Storage temperature: -20 °C to +80 °C
Sound power level: <35 dB(A)
Operation and service: using the display by means of a screw-
Connection: cable 1000 mm, 4 x 0.75 mm
Dimensions:: 115 x 65 x 61 mm
Weight: approx. 435 g
Maintenance: maintenance-free
0…∼250 PA (bursting pressure 1 bar)
(10 Nm, 15 Nm, optional)
Supply/return air or stand-alone opera­tion; master/slave parallel circuit V
=0…100% of V
min
V
=0…100% of V
max
V
=0…100% of V
konst.
nom
nom
nom
DC 0-10 V (0-20 mA min. 500 Ω inherent resistance) DC 2-10 V (4-20 mA min. 500 Ω inherent resistance) DC 0-10 V DC 2-10 V
for example, humidity, temperature 2-point signal (switching power 16 mA 24 V), for example switch, motion detec­tor
0-70 °C (medium), 5-95 °C relative 0-50 °C (environment), humidity non-condensing
driver directly at the device or via the feedback signal with PC software
2
(halogen-free), terminals
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VLV55|VLV65 - Volumetric flow controller
TECHNICAL DOCUMENTATION
Startup using PC-Tool |
STARTUP USING PC-TOOL
Direct connection to switch cabinet or socket (traditional application)
ZTH EU as MP level converter
Description
The ZTH EU is also a potential-free interface between the USB port of a PC and the Belimo MP bus. It is used to connect the Belimo PC-Tool directly to the MP bus or directly to a program­mable MFT drive.
Power supply
The ZTH EU is supplied with power by the USB port. The MP bus voltage is obtained internally by means of DC/DC converter. This is why no external power supply is necessary.
Driver
To be able to work with the ZTH EU, a suitable driver must be installed on the PC. The driver can be downloaded from the Belimo website (download section). After installation of the driver, the ZTH EU device will log in to the PC as a virtual COM interface.
Note
For connection to USB ports of PCs and BELIMO 24 V drives only (to safety extra low voltage SELV or US class 2 feeds)
Connection diagram 1
…A-MF …A-MP …D3-MP …ALON …D3LON
Local connection via a service socket of the MF/MP or LON drive using a ZK1-GEN cable.
Connection diagram 2
1.)
…MFT(2) A-AF …A-MP …D3-MP
…LON …ALON …D3LON
Local connection via a connecting cable of the MF/MP or LON drive using a ZK2-GEn cable.
1.) white = GND green = MP blue = not connected
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TECHNICAL DOCUMENTATION
Startup using the setting and diagnostic device ZTH EU (Belimo) |
STARTUP USING THE SETTING AND DIAGNOSTIC DEVICE ZTH EU (BELIMO)
Keys / Display
Short description
The VAV setting device ZTH EU allows efficient testing of VAV and CAV installations. Installations fitted with the Belimo VAV controller can be simply adapted to the room and user require­ments. The VAV setting device ZTH EU replaces the previous setting device ZTH-GEN (2007-2014).
All standard Belimo VAV controllers with integrated PP commu­nication (from 1992) that are sold in the EU can be set using the ZTH EU.
Specifications
easy, quick setting of the VAV boxes parameters diagnostic function one tool for all VAV units voltage supplied by VAV controllers - no batteries required! service socket VAV / CR24 controller, PP connection includes connecting cable RJ12 6/4, 6-pin plug New generation, MP bus tester for functional test of MP bus backward compatible with all Belimo PP / MP units from
1992
efficient handling, can be operated with one hand Selection of stages for test (OPEN/CLOSE/MIN/MAX/STOP) Damper position indicator for diagnostics Display of the setpoint / actual volume and V
m³/s (l/s).
min/max
setting in
2 x 16-digit LCD with background lighting
Forwards / Backwards
Change value / status OK Confirm input ESC Cancel input /
i shows additional information if available
Connection
Locally via service socket
Dimensions
85x65x23 (WxHxD)
Leave submenu / Discard changes
Connection and supply
Stand-alone operation
Connection including supply takes place via the service socket at the VAV controller or via the terminals.
Bus operation
The ZTH EU can be used in the following units while the bus is running if it is connected via the local service socket: VAV­Compact L/N/SMV-D3-MP, NMVAX-D3-MP, L/NMV-D3LON.
With the VRP-M, L/NMV-D3-M and NMVAX-D3-MP, the MP-Bus must be disconnected when the service socket is used.
Restriction
Direct connection in an MP network or via an MP-Bus master is not possible.
The ZTH EU comes with a quick start guide in German and Eng­lish to be affixed to the back of the unit.
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TECHNICAL DOCUMENTATION
Startup using the setting device GUIV-A | Smartphone app - Belimo Assistant
STARTUP USING THE SETTING DEVICE GUIV-A
SMARTPHONE APP - BELIMO ASSISTANT
Application
The setting device GUIV-A is used by the startup or service per­sonnel in order to carry out simple settings to the equipment or to check the actual values. The controller type 227VM does not have any operating ele­ments such as switches or setpoint potentiometers. To program the operating modes and the operating parameters V V
, the setting device GUIV-A is required, which can also be
max
min
and
used to switch from 2 - 10 V DC to 0 - 10 V DC.
Connection
The GUIV-A can be connected electrically to 227 V via the U/PP connection by direct on site or remote control, for example in a switch cabinet.
Structure and operation
The relevant parameters can be set and queried in the individ­ual menu items, while the operating parameters programmed in-factory can be queried under menu item 10.
Note
As long as the U/PP connector is connected to the GUIV-A, the output signal U does not correspond to the actual value.
Connection diagram
The NFC antenna area of the VAV Compact is located between the Belimo or OEM logo and the NFC label. Align NFC-capable android smartphone with loaded Assistant app on the VAV-Compact such that the two antennae are above one another.
The Belimo Assistant app can be downloaded from the Google Play Store.
NFC-capable devices:
- LMV-D3-MP, NMV-D3-MP, SMV-D3-MP and LHV-D3-MP with
printed NFC label.
Non-NFC-capable devices
- All devices without NFC label
- LMV-D3-MF
- LMV-D3-LON and NMV-D3-LON
1 Earth, neutral 2 Supply voltage 24 V AC 3 Setpoint value signal Y and positive control Z input 227VM,
GUAC
4 Output communication signal PP and actual volumetric flow
U
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TECHNICAL DOCUMENTATION
Prior to assembly and commissioning | Legend
PRIOR TO ASSEMBLY AND COMMISSIONING
LEGEND
An instruction leaflet containing information on safety, transport dis­posal, installation commissioning and maintenance is enclosed with each SCHAKO prod­uct. For safety reasons, this instruction leaflet must
e read under all circumstances and
completely adhered to.
These devices are NOT suitable for use in zones where there is a risk of explosion according to ATEX 94/9/EC. The operating safety of the devices is only guaranteed when used in accord­ance with their designated use.
Disposal
The devices have been prepared in accordance with the RoHS directive restricting the use of certain hazardous substances in electrical and electronic equipment (2002/95/EC). After its final decommissioning, the volumetric flow controller must be properly disposed of.
INSTALLATION INFORMATION
De [dB/Okt] = Insertion loss EK (m/s) = Calibration curve fm (Hz) = Octave band centre frequency V
(m³/h) [l/s] = Minimum volumetric flow
min
V
(m³/h) [l/s] = Maximum volumetric flow
max
Hz (fm) = Hertz KL (-) = Correction value; relative
sound power level, relative to LWA
(-)
K
Lw
LOA (-) = Number of holes in flat flange P (mm) = Packing thickness duct silencer NW (mm) = Nominal width U
5
V (m3/h) [l/s] = Air volume V [%] = Tolerance for the volumetric flow setpoint
vK (m/s) = Duct velocity øD (-) = Hydraulic diameter
∆p (Pa) = Pressure difference ∆p ∆pt (Pa) = Pressure loss
(V) DC = Measurement output (electric voltage)
(Pa) = Minimum static pressure difference
t min
= Relative sound spectrum
value
Installation and commissioning
Installation with horizontal or vertical damper axle possible position-independent direct connection to moulded parts, such as bend or T-piece
possible
MAINTENANCE AND SERVICE
Service and maintenance instructions
Assemble in a way to allow inspection maintenance-free, as there is no wear not suitable for air containing sticky and oily particles For maintenance, service, retrofitting, etc., inspection open-
ings in sufficient number and size must be provided on site.
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TECHNICAL DOCUMENTATION
Order code |
ORDER CODE
01 02 03 04 05 06 07 08
Type Size Material
Example
VLV55 -100 -SV -A001 -0 0020 -0100 -GD1
VLV65 -200 -DD -A061 -2 0150 -0600 -MF1
SAMPLE – VLV55
VLV55-100-SV-A001-0020-0100-GD1
Volumetric flow controller type VLV55, size 100 mm, galvanised sheet steel, with compact controller Belimo LMV-D3-MP-SO, mode 0 - 10 V, setting values 20 - 100 m³/h, with rubber lip seal
ORDER DETAILS
01 - Type
VLV55 = version with diameter ratio 55, 0.5 - 5 m/s VLV65 = version with diameter ratio 65, 1 - 8 m/s (STANDARD)
02 - Size
100 = NW 100 mm 125 = NW 125 mm 160 = NW 160 mm 200 = NW 200 mm 250 = NW 250 mm 315 = NW 315 mm
03 - Material
SV = galvanised sheet steel (STANDARD) DD = DD coating
04 - Attachment assembly
A001 = LMV-D3-MP-SO, 5 Nm - (STANDARD) A006 = LMV-D3-MF-SO, 5 Nm A061 = 227VM-024-05, 5 Nm other controllers available on request
Attachment as­sembly
Mode
Volumetric flow Vmin
SAMPLE – VLV65
VLV65-200-DD-A061-0150-0600-MF1
Volumetric flow controller type VLV65, size 200 mm, galvanised sheet steel, with DD coating, with compact controller GRUNER 227VM-024-05, setting values 150 - 600 m³/h, with METU flange
05 - Mode
0 = 0 - 10 V 2 = 2-10 V (STANDARD)
06 - Volumetric flow set value V
0000 = ex works, see table p. 5 1234 = 4-digit customer value in m³/h
07 - Volumetric flow set value V
0000 = ex works, see table p. 5 1234 = 4-digit customer value in m³/h
08 - Duct connection: GD or flange
KA0 = without rubber lip seal/without flange GD1 = with rubber lip seal (STANDARD) FF1 = flat flange, galvanised sheet steel MF1 = METU flange, galvanised sheet steel Either with GD or flange. Combination is not possible!
Volumetric flow Vmax
min/Vkonst
max
Duct connection
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Specification text |
SPECIFICATION TEXT
VLV55 | VLV65
Volumetric flow controller in round design, for round ductwork connection, for use in supply and return air systems for con­stant or variable volumetric flow regulation.
Measurement of the volumetric flows according to the Venturi principle. Standardised Venturi nozzle with measuring points for differential pressure measurement in front of the nozzle and in the nozzle neck. This ensures high control accuracy at low air velocities, duct pressures and any inflow conditions.
Nozzle and differential pressure sensor are resistant to pollu­tion. Connecting pipe is suitable for air ducts to DIN EN 1506. Position of the control damper is visible from outside. Leakage at the damper blade to DIN EN 1751, class C. Housing leakage to DIN EN 1751, class 4.
Special features
designed for use at low air velocities and duct pressures position-independent installation possible high controlling precision with any inflow resistant to pollution
Materials of housing and internal parts
Housing made of galvanised sheet steel (-SV) Damper blade seal made of EPDM, silicone- and halogen-free Ring chamber sealing made of EPDM, silicone- and halogen-
free
Venturi nozzle made of aluminium, with attached measuring
points for determining average values to DIN EN ISO 5167.
Technical data
Nominal sizes 100 - 315 mm Volumetric flow range 13 - 2195 m³/h (4 - 610 l/s) approx. 10
- 100 % of nominal volumetric flow
Minimum pressure difference of 5 - 150 Pa Allowed static differential pressure range: 20 - 750 Pa Allowed ambient temperature 0 - 50 °C For use with duct velocities of 0.5 - 8 m/s (depending on the
nozzle variant)
Add-on parts
Electronic compact controller suitable for individual control or connection to a building control system. If required, in BUS­capable design (LON, Modbus RTU, KNX, BACnet).
Supply voltage 24 V AC/DC, 50/60 Hz wired and parameterised ex works controller with potentiometer and display for subsequent ad-
justment on request
, V
possible positive controls: CLOSED, VIt is possible to subsequently adjust the manufacturer set op-
eration volumetric flow.
Product: SCHAKO type VLV
Housing, damper blade and measuring sensor at an extra
charge with DD coating (-DD)
min
max
, OPEN
Accessories (at an extra charge)
METU flange (-MF1), on both sides, duct flange type AF. Flat flange (-FF1), on both sides, to DIN 24154/5. Rubber lip seal (-GD1), on both sides, made of special rubber. Duct silencer (-RS), rigid design, casing and perforated sheet
made of galvanized sheet steel with mineral wool filling
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