– Overvoltage > 30 V
– Valve slide sticks
– Temperature of the solenoid coil ≥ 100 °C
(The error detection remains on until the temperature is < 80 °C.)
– Internal software error
Reset fault
1. Rectify the cause of the error.
2. Acknowledge error (set DIn1 to 1).
If the error cannot be acknowledged via DIn1, switch supply voltage off and back
on again.
è
The driver is switched back on via a rising edge at the digital input. The flow
control valve controls to the specified flow setpoint value again.
12
Technical data
Max. flow 6 bar variant
Max. flow 10 bar variant
1
1
Min. inlet pressure
Fig. 14 Maximum flow qn dependent on the inlet pressure p1 with flow against the
atmosphere
Depending on the deviation of the ambient temperature from the standard
value (20 °C), the actual flow of the valve differs from the measured or
specified flow (
è
Fig. 15).
Deviation from the measured/hidden flow dependent on flow and ambient
temperature (medium temperature 25 °C ± 4 °C)
Valve type
Flow
Measured
value
[l/min.]
Linear
deviation
[l/min pro °C]
Max. deviation
[l/min.]
At ambient temperature
0 °C
+50 °C
VPCF-6-L-8-G38-6-...
(6 bar variant)
100
0.2
–5
+5
500
0.1
–2.5
+2.5
VPCF-6-L-8-G38-10-...
(10 bar variant)
100
0.32
–8
+8
500
0.14
–3.5
+3.5
900
0.11
–2.75
+2.75
Fig. 15
Characteristic
Specification/value
Mounting position
any
Operating medium
Compressed air in accordance with
ISO 8573-1:2010 [6:4:4]
Note on the operating medium
Lubricated operation not possible,
Maximum particle size 5 μm
Nominal pressure
VPCF-6-L-8-G38-6-...
[bar]
6
VPCF-6-L-8-G38-10-...
[bar]
10
Maximum permissible inlet pressure
VPCF-6-L-8-G38-6-...
[bar]
6.2
VPCF-6-L-8-G38-10-...
[bar]
10.2
Supply pressure range
VPCF-6-L-8-G38-6-...
[bar]
1 … 6
VPCF-6-L-8-G38-10-...
[bar]
1 … 10
Flow control range
1)2)
VPCF-6-L-8-G38-6-...
[l/min.]
50 … 1000
VPCF-6-L-8-G38-10-...
[l/min.]
75 … 1500
1)
The specified accuracies in table Fig. 17 refer to the specified flow control range.
2)
Regulation takes place starting with 20 l/min (6 bar variant) or 30 l/min (10 bar variant); below this
value, the flow control valve switches to exhaust.
Fig. 16
Characteristic
Specification/value
Accuracies
(Measurement conditions: ambient temperature 23 °C ± 4 °C, medium temperature 25 °C ± 4 °C,
air pressure 970 mbar ± 10 mbar)
Repeat accuracy
[%]
± 0.5 FS (Full scale)
Hysteresis
[%]
< 0.8 FS (full scale)
Absolute accuracy
[%]
< 3 FS (full scale)
Dynamic, setpoint value = 75 … 1425 l/min
Actual value = 10 … 90 % in 23 ms
C value
[l/(min*bar)]
255
Degree of protection
IP65 (completely mounted)
Permissible temperature range
Environment
[°C]
0 … +50
Medium
[°C]
+15 … +35
Storage
[°C]
–20 … +70
CE marking
(Declaration of conformity
è
www.festo.com/sp)
In accordance with EU EMC Directive
1)
In accordance with EU Explosion
Protection Directive (ATEX)
Nominal operating voltage
[V DC]
24
Operating voltage range
[V DC]
20.4 … 30
Permissible residual ripple of operating
voltage
[%]
5
Maximum current consumption
[A]
1.2 (momentary)
Digital input
Version according to
IEC 61131-2:2007-07, PNP
Digital outputs
Version according to
IEC 61131-2:2007-07, PNP
Fuse protection D
OUT
(short circuit)
Internal electronic fuse
Nominal current load D
OUT
[mA]
100 per output
Analogue input
2)
4 … 20 mA or 0 … 10 V
Analogue output
2)
4 … 20 mA or 0 … 10 V
Resistance to vibration/resistance to shocks
(In accordance with IEC 60068)
Severity level (SL)3
)
Vibration (part 2 - 6)
SL 2
Continuous shock (part 2 – 27)
SL 2
Materials
Housing
Wrought aluminium alloy (anodised)
Screws
Steel (galvanised)
Seals
HNBR, FPM
Piston
Aluminium (Ematal coated)
Drive
HNBR, steel, copper
Dimensions
Width
[mm]
75
Height without connector plug
[mm]
138
Height with connector plug
[mm]
149
Length
[mm]
42
Weight
[g]
Approx. 900 (without connections)
1)
The product is intended for use in industrial environments. Outside of industrial environments, e.g. in
commercial and mixed-residential areas, actions to suppress interference may have to be taken.
2)
The sensor of the flow control valve is calibrated at the factory to the physical standard conditions in
accordance with DIN 1343.
3)
Explanation of the severity level
è
Fig. 18 … Fig. 20
Fig. 17
Vibration load
Frequency range [Hz]
Acceleration [m/s
2
]
Deflection [mm]
SL1
SL2
SL1
SL2
SL1
SL2
2 … 8
2 … 8
–
–
±3.5
±3.5
8 … 27
8 … 27
10
10
–
–
27 … 58
27 … 60
–
–
±0.15
±0.35
58 … 160
60 … 160
20
50
–
–
160 … 200
160 … 200
10
10
–
–
Fig. 18
Shock load
Acceleration [m/s
2
]
Duration [ms]
Shocks per direction
SL1
SL2
SL1
SL2
SL1
SL2
±150
±300
11
11
5
5
Fig. 19
Continuous shock load
Acceleration [m/s
2
]
Duration [ms]
Shocks per direction
±150
6
1000
Fig. 20