XW3000 sensing cables detect the presence of liquid hydrocarbon fuel at any point along their length. Installed with a alarm and locating module, the cable senses liquid hydrocarbon fuel (oil) intrusion,
XW3000sensing cables detect the presence of liquid hydrocarbon fuel at any point along their length.
Installed with a alarm and locating module,
the cable senses liquid hydrocarbon fuel (oil) intrusion, triggers an alarm, and pinpoints
the location.
The internal structure of the cable
is similar to that of the water and acid and alkali sensing cable, but the outer surface of the cable is wrapped by a conductive polymer
sheath, and the outermost layer is also a fluoropolymer textile layer, which is
widely used in the petrochemical industry, and is of great significance for
energy conservation and environmental protection.
Distributed
sensing
XW3000
sensing cables provide distributed leak detection and location over a wide
range of areas. The cable is available in a variety of lengths
to provide as much coverage as needed.
Design flexibility
XW3000
sensing cable can be supplied with factory-installed
plastic connectors that plug together. The measuring circuit does not depend on the conductivity of the
leaking liquid. Therefore, the same cable can detect various types of liquid hydrocarbon fuel without any special design consideration or calibration. The cable is designed for the leakage
detection of various liquid hydrocarbon fuels and widely used for leakage detection of equipment area,
pipeline, storage tank and trench. The
cable is small, lightweight, and flexible, allowing easy
installation.
Advanced
technology
The conductive-polymer technology and fluoropolymer construction make XW3000
sensing cable mechanically strong and resistant to
corrosion and abrasion.
The cable is constructed of two sensing wires, an alarm signal
wire, and a continuity wire embedded in a
fluoropolymer carrier
rod. The alarm module constantly
monitors the sensing cable for continuity.
Working Principle
When the sensing cable is in
contact with liquid hydrocarbon fuel, it penetrates into the conductive rubber
layer through the outer textile sheath,
making it shrink. The sensing
wires originally in parallel with spiral inside are all short circuited because
they shrink close to the conductive rubber layer (after reaction, they can not
be inverted, so XW3000 is
a one-time product ),
causing the change of current. According to the proportional relationship
between resistance and conductor length, the controller can
deal with it quickly and provide
the specific leakage location.
Cable Characteristics
Cable
diameter 7.0 mm nominal
Conductive
rubber layer 0.7mm
Continuity
and signal wires 2 x 26 AWG with insulation of ?uoropolymer
Sensing
wires 2 x 30 AWG with jacket of
conductive ?uoropolymer
Carrier
Fluoropolymer
Technical
Information
Abrasion
resistance >65 cycles per UL 719
Maximum
continuous operating temperature 70°C
Maximum
exposure temperature 80°C
Breaking
strength Cable only: 90 kg
Performance
Data
Leak
size to alarm 30
mm maximum at any point
along sensing cable
Reaction time
At room temperature of 20°C: gasoline (15 minutes),
eq \o\ac(○,1)1Sensing cable should be kept dry and clean during installation.
eq \o\ac(○,2)2Please pay attention to the pin sequence of male and female
connectors during the docking process of the sensing cable, insert it slightly
in line with the hole position, and then lock the screw ring clockwise (unlock
it anticlockwise).
eq \o\ac(○,3)3Sensing cable laying area should avoid electrostatic
interference.
eq \o\ac(○,4)4Sensing cable is is a one-time product, please replace it in
case of leakage alarm.
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