[0001] The invention relates to a control unit for a drying device as set forth in the preamble
of claim 1.
[0002] The invention relates also to a drying device as set forth in claim 13.
[0003] In addition, the invention relates to a drying arrangement as set forth in claim
15.
[0004] An object of the invention is to enhance and simplify the operation and connection
of dryers in worksite conditions used in the drying of premises, parts of buildings.
[0005] Prior known, e.g. from Finnish patent application
Fl 20050121, is an air circulating flat surface dryer, comprising a targeting box sealed against
a surface to be dried, a fan inside the box, electrical resistances and a duct system.
An electrical connection for the fan and the electrical resistances is integrated
as a permanent part of the circulating air flat surface dryer.
[0006] A problem with prior known dryers, and with drying arrangements assembled by means
of the same, is the fact that all dryers are separate devices, each connected to a
mains electricity network by its own electrical connection. When there is a lot of
floor area or the like to be dried, it is necessary to set a large number of separate
dryers side by side and all these must be connected to mains electricity, involving
a lot of wires and thereby requiring a large number of socket-outlets.
[0007] An object of the invention is to eliminate the drawbacks associated with dryers of
the above type, i.e. drying devices and drying arrangements. Another object of the
invention is to provide a new drying arrangement, which is particularly apt for the
drying of premises, such as floors of premises, or generally for the drying of flat
surfaces in parts of a building.
[0008] A control unit of the invention for a drying device is characterized by what is presented
in claim 1. Preferred embodiments for the invention are presented in the dependent
claims.
[0009] The control unit according to the invention is designed for a drying device of the
type intended especially for the drying of fixed structures, said drying device including
most preferably a fan and an electrical resistance, and said control unit enabling
the drying device to be controlled and connected to and disconnected from an electric
power supply, most preferably a mains electricity network.
[0010] According to the invention, the control unit is arranged as a module, comprising:
- a plurality of connectors, particularly first connector components, by way of which
the control unit, especially its elements, is attachable to not less than two, most
preferably to a plurality of drying devices;
- a timer element and a first coupling element for timing the operation of the drying
devices attached to the connectors, and for connecting and disconnecting the same
to and from an electric power supply; and
- an electrical connection for coupling an electricity network or the like electric
power supply to the control unit, and further from the control unit, by way of the
connectors, to the drying devices.
[0011] The drying device according to the invention is intended for the drying of damp or
moisture-affected parts of a building or the like, and it comprises at least a fan
and an electrical resistance and is connectable to an electric power supply, most
preferably to a mains electricity network. According to the invention, the drying
device is provided with a connector, especially a second connector component, by way
of which it is connectable to a control unit as set forth in any of the claims directed
to a control unit, such as to a control unit as defined above.
[0012] The drying arrangement according to the invention is intended for the drying of damp
or moisture-affected parts of a building or the like, said drying arrangement comprising
a plurality of drying devices, such as flat surface dryers, including most preferably
a fan and an electrical resistance, and a control unit as set forth in any of the
claims directed to a control unit, such as a control unit as defined above, for controlling
the drying devices and connecting and disconnecting the same to and from an electric
power supply, most preferably an electricity network.
[0013] A benefit offered by the invention is that a single module of the invention enables
two or most preferably a plurality of drying devices to be connected thereto, said
devices being controlled within the extent of one and the same heating cycle or optionally
by alternating the heating cycles. Alternating the heating cycles of drying devices
offers the benefit of having a mains electricity network or the like subjected to
a load more consistent than in the case of just a single heating cycle. Another benefit
offered by the invention is that the module enables an external device to be connected
thereto for complementing a module control and monitoring.
[0014] Still another benefit of the invention is that possible fault alarms or the like
of the drying devices are capable of being centralized in the module and in such a
way that the supply of electricity at least to the electrical resistance of a drying
device is discontinued by means of a second coupling element of the module.
[0015] The invention and other benefits thereof will now be described in more detail with
reference to the accompanying drawing, in which
fig. 1 shows one drying arrangement of the invention specifically in a block diagram,
fig. 2 shows a drying arrangement as installed on a site to be dried,
fig. 3 shows one control unit embodiment for a drying device, especially a plurality
of drying devices, in a circuit diagram,
fig. 4 shows one drying device of the invention,
fig. 5 shows an end view of one connector, basically both a female and a male connector
component, which is applicable to a control unit and/or a drying device,
fig. 6 shows another drying device of the invention and its alarm device, specifically
in a block diagram configuration,
fig. 7 shows one first and one second accessory attachable to a control unit, and
fig. 8 shows one third accessory attachable to a control unit.
[0016] In the figures, like reference numerals are used for like components.
[0017] The drying arrangement provided by the invention is intended particularly for the
drying of premises or parts of buildings. In the case of water damage incidents or
the like, it is especially the floors which soak plenty of moisture that must be removed
from the structures by an appropriate drying operation. Various flat surface dryers,
such as the one disclosed in the above-cited Finnish patent application
Fl-20050121, have been developed for the purpose.
[0018] The drying arrangement according to the invention comprises a plurality of drying
devices 1, such as flat surface dryers 10. The drying devices 1; 10 are adapted to
cover at least part of a water-logged, wetted floor area or the like LA (cf. fig.
2). The drying device 1; 10 of the invention comprises a fan 110 for the circulation
of air and at least one electrical resistance 120 for the heating of air (cf. fig.
4). The fan 110 and the electrical resistance 120 are accommodated in a targeting
box 130 provided with a suitable duct system 140. In communication with the drying
device 1; 10 is a control unit 2 for controlling the drying device and for connecting
and disconnecting the same to and from an electric power supply, most preferably an
electricity network 3.
[0019] The control unit 2, especially the control unit 2 according to the invention, is
designed as an independent module 20. The control unit 2 and the module 20 comprise
a plurality of connectors 5; 5
1, 5
2, 5
3,...,5
6, a timer element 21 and a first coupling element 22, as well as an electrical connection
4.
[0020] The module 20 is provided with a plurality of connectors 5; 5
1, 5
2, 5
3,...,5
6, especially first connector components 51, most preferably female connector components,
by way of which the control unit 2, especially the elements 21, 22, is connectable
to not less than two, most preferably to a plurality of drying devices 1; 1
1, 1
2, 1
3,.., 1
5, as illustrated specifically in fig. 3. Each drying device 1 is respectively provided
with a connecting wire 150 and with connectors, i.e. second connector components 52,
most preferably male connector components, compatible with the module's 20 connectors
5, i.e. the first connector components 51, for attaching the drying device 1 in a
detachable manner to the respective module, as revealed e.g. in fig. 4.
[0021] The first coupling element 22 comprises preferably a controlled on/off switch, such
as a relay, which comprises a control member 221 and a coupler 222 by which the drying
devices 1; 1
1, 1
2, 1
3,.., 1
5, coupled with the connectors 5; 5
1, 5
2, 5
3,...,5
6, are connected to an electric power supply (cf. fig. 3). The first coupling element
22 and the timer element 23 are interconnected with each other, such that the coupling
element 22, especially the coupler 222, is controlled by the timer element 23. This
enables timing the operation of the drying device 1; 1
1, 1
2, 1
3,.., 1
5 and connecting and disconnecting the same to and from an electric power supply in
response to a clock in the timer element.
[0022] The module 20 is provided with an electrical connection 4 for connecting an electricity
network 3 or the like electric power supply to the control unit 2, and further from
the control unit 2, by way of the connectors 5; 51, to one or more drying devices
1; 1
1, 1
2, 1
3,.., 1
5. The electrical connection 4 comprises most preferably a conventional electric wire
41 and an insertion plug 42 for coupling the control unit 2 to a socket-outlet 31
linked to the electricity network 3.
[0023] In a preferred embodiment of the invention, the first coupling element 22 of the
control unit 2 comprises, not a controlled on/off switch, but instead a controlled
changeover switch 222a (cf. fig. 3). At least two drying devices, or optionally drying
device groups 1A and 1B as in the exemplary embodiment of figs. 1 and 2, are connectable
and respectively disconnectable by way of respective connector groups 5A, 5B in an
alternating manner to and from the electrical connection 4 and thereby to and from
the electricity network 3. In this case, the changeover switch 222a is bi-positional,
i.e. it is provided with two changeover terminals 2221 and 2222, enabling a changeover
of connection therebetween. The changeover switch 222a further has its changeover
terminals connected by way of conductors to two connector groups, i.e. to the first
and second connector groups 5A, 5B, and to the respective drying device groups 1A,
1B connected thereby to the connectors 5; 5
1, 5
2, 5
3 and 5, 5
4, 5
5 of the connector groups.
[0024] Alternatively, the changeover switch 222a is multi-positional, i.e. the changeover
switch includes several, e.g. 3 pcs of changeover terminals, between which the connection
can be varied, and respectively several, such as 3 pcs of connector groups and respectively
drying device groups, which are thus in an alternating manner capable of being coupled
to and uncoupled from the electrical connection 4 and thereby to and from the electricity
network 3, respectively.
[0025] In a preferred embodiment of the invention, the module 20 further comprises a second
coupling element 23 for coupling and uncoupling the drying devices 1; 1
1; 1
2, 1
3,.., 1
5, coupled with the connectors 5; 5
1, 5
2, 5
3,...,5
6, to and from an electric power supply in response to a separate control message,
e.g. upon receiving a fault alarm or a separate control message from a drying device
or an accessory 70. It is beneficial to single out and reserve one terminal of the
connectors 5, especially a fault message terminal, by way of which, and by way of
conductors connected thereto, a fault alarm from the drying device 1 is communicated
to the module 20 and to the control unit 2, particularly to the second coupling element
23. The second coupling element 23 comprises also a controlled on/off switch, such
as a relay, which respectively comprises a control member 231 and a coupler 232. The
first and second coupling elements 22, 23, especially the controlled couplers 222
(222a), 232, are in this embodiment connected in series with each other.
[0026] In a preferred embodiment of the invention, the module 20 is accommodated in an enclosure
6; preferably a closed enclosure. This makes the module 20 a distinctively independent
and separate device. The module 20 has its connectors 5; 5
1, 5
2, 5
3,...,5
6, especially its first or female connectors 51, mounted on the enclosure walls, particularly
on side walls 61, 62. The electrical connection 4 has its electric wire 41 delivered
through a wall of the enclosure 6 and attached appropriately to elements of the module,
such as to the first and second coupling elements 21, 22. An advantage offered by
the enclosure 6 is the possibility of placing the module 20 outside the drying device/drying
devices and at a suitable distance therefrom. In addition, the enclosure 6 protects
the module 20.
[0027] In a preferred embodiment of the invention, the connectors 5; 5
1, 5
2, 5
3,...,5
6 of the module 20, especially its first or female connectors 51, and the respective
second or male connectors 52 of the drying devices 1, are multi-terminal connectors.
In this case, the connectors 5; 51, 52 have a number of terminals 5a, such as e.g.
six terminals 5a
1, 5a
2, 5a
3,..., 5a
6, and preferably also a protective earth terminal 5a
PE, by way of which the module 20 and the drying devices are attachable to each other
in a predetermined manner. In its physical form, the connector 5; 51, 52 is preferably
cylindrical in terms of its body and circular in its cross-section. In this case,
the connector has its terminals located on the body along the circumference in a peripheral
area of the connector, as specifically shown in fig. 5.
[0028] In a preferred embodiment of the invention, the control unit 2 and the module 20
further comprise a measuring instrument 7, such as an electrical energy measuring
element 71, for measuring the electrical energy spent by one or more drying devices
1 and hence for tracking the power consumption.
[0029] The embodiment of the invention shown in fig. 3 will now be discussed in detail.
[0030] Two terminals of each multi-terminal connector 5; 51, its first and second terminals
5a
1, 5a
2, have attached thereto a phase conductor (electrical conductor) 410 and an O-conductor
411 of the electrical connection, respectively. These terminals are principally intended
for electrically operated elements and equipment of the drying device 1;10 with the
exception of one more electrical resistances 120 intended for heating. In this case,
the electrical connection has its phase conductor 410 connected by way of the electrical
energy measuring element 71, such as a kWh meter 711, to the first terminal 5a
1. The electrical connection has its O-conductor 411 connected directly to the second
terminal 5a
2.
[0031] The electrical connection has its O-conductor 411 connected also to a third terminal
5a
3 by way of the series-connected second coupling element's 23 switch 232 and the first
coupling element's 22 switches 222. Optionally, the first coupling element 22 is provided
with a changeover switch 222a, whereby its first changeover terminal 2221 is connected
to a third terminal 5a
3 of the first connector group's 5A connectors 5; 51 and, respectively, its second
changeover terminal 2222 is connected to a third terminal 5a
3 of the second connector group's 5B connectors 5; 51. The third terminal 5a
3 is intended for the electrical resistance 120 of a drying device 1; 10. The connector
5 has a third terminal 5a
3 of its second connector component 52 attached by way of an appropriate conductor
in the connection wire 150 to a relevant electrical resistance 120. By way of this
terminal 5a
3, the electrical resistance of a drying device 1; 10 is controlled to switch on and
off, i.e. is coupled to and uncoupled from an electric power supply.
[0032] A fourth terminal 5a
4 of the connector 5; 51, 52 is a fault message terminal, which is reserved for fault
alarms, malfunction notifications or the like information coming from the drying device
1; 10. This will be discussed subsequently further in connection with figs. 6 and
8. Furthermore, a fifth terminal 5a
5 of the connector 5; 51, 52 is vacant, while a sixth terminal 5a
6 is reserved for disrupting the heating of a drying device 1; 10, i.e. for switching
off the power supply to the electrical resistances 120, said switching-off being particularly
implementable by means of a control external of the module 20, which control is obtainable
from an accessory 70 attachable to the module 20 by way of the connectors 5; 51, 52,
as will be subsequently described by way of example in reference to figs. 6 and 8.
Hence, the connector has its fifth terminal 5a
5 reserved for some appropriate extra application.
[0033] The module 20 has the fourth terminal 5a
4 of its connector 5; 51 attached by way of an indicator lamp 9, such as an LED lamp,
to the phase conductor 410. This terminal is adapted to function as a detector for
fault alarms or the like of the drying device 1; 10. The indicator lamp 9 is adapted
to switch on as a fault alarm is received from one or more drying devices.
[0034] One of the connector's 5 terminals, i.e. a seventh terminal 5a
PE, is reserved for protective earthing. The electric wire 41 has its protective earth
conductor 412 connected to the seventh terminal 5a
PE and at the same time, among other things, to the enclosure 6 of the module 20.
[0035] The drying device 1; 10 of the invention is provided with a fan 110 and an electrical
resistance 120. The electrical components of a drying device are connected to a wire
150, and to a connector 5 included therein, particularly to a second connector component
52, most preferably to a male connector component (cf. e.g. fig. 4). Thus, the fan
110 and the electrical resistance 120 are connected by way of appropriate conductors
to the connector's 5; 52 first and second terminals 5a
1, 5a
2 with which the phase conductor 410 and respectively the O-conductor 411 are set to
be attached as the second connector component 52 is attached to the first connector
component 51 and at the same time to the module 20 and to the control unit 2.
[0036] The drying device 1;10 according to the invention comprises an alarm element 11,
as specifically shown in fig. 6. The alarm element 11 includes at least one sensor
11a, an alarm controller 11b, having the sensor coupled therewith, and a coupling
element 11c. The sensor 11a is adapted to detect anomalies in the operation of a drying
device and/or in the drying process. The sensor 11a is e.g. a temperature sensor for
measuring temperature and for detecting thereby e.g. the exceeding of an allowed maximum
temperature, a pressure sensor for detecting pressure generated by the fan and for
monitoring thereby the operation of the fan 110. The alarm controller 11b is adapted
to receive messages of the sensor 11a and to analyze possible malfunctions or the
like. The coupling element 11c is most preferably established by a controlled on/off
switch, such as a relay, which comprises a control member 111 and a coupler 112. The
alarm controller 11b is connected to the coupling element 11c and it sets the coupling
element in active mode upon detecting a malfunction or the like in the drying device
and/or in the drying process.
[0037] When the drying device 1; 10 develops a fault, such as e.g. becomes overheated or
the heating is disrupted, this is detected by the alarm element 11, fig. 6, which
produces a fault alarm message. The sensor 11a is used for monitoring the condition
of a drying device and/or its immediate vicinity, such as the temperature of a spot
being dried. A message, such as e.g. a temperature value, is supplied from the sensor
to the alarm controller 11b. The alarm controller 11b is used for analyzing the sensor
message, such as a measured temperature value, e.g. by comparing it with preset limit
values for a measurement message, such as temperature. If an overstep/shortfall of
the activation limit value is detected, a fault alarm message will be emitted to the
coupling element 11c, particularly to its control member 111. In this case, as a fault
alarm message, the coupler 112 of the coupling element 11c is closed in response to
a command from the control member 111 and, by means of the coupler 112, the fourth
terminal 5a
4 of the connector 5; 51, 52 is connected to the second terminal 5a
2 and further thereby to the electrical connection's 0-terminal, i.e. to earth. As
a result, the indicator lamp 9 in the control unit 2 and in the module 20 switches
on ands indicates that a fault has occurred.
[0038] In a preferred embodiment of the invention, the control unit 2 and particularly the
module can be fitted, through the intermediary of a connector 5; 51, 52, with accessories
70, especially tracking and control elements, for monitoring and/or controlling the
drying devices 1 attached to the module 20. Such accessories include e.g. a temperature
measuring element 72, a moisture measuring element 73, and a communications element
8.
[0039] One accessory 70, attachable to the control unit 2 and especially to the module 20
by way of the connector 5, is a temperature measuring element 72 for tracking the
temperature of a presently dried project (cf. fig. 7). The temperature measuring element
72 is a separate element, which is detachably attachable by means of a connector 5,
particularly by means of a second male connector component 52, and by means of a wire
150a connected thereto, to one of the module's 20 connectors, particularly to a first
female connector component 51.
[0040] The temperature measuring element 72 comprises a temperature sensor 721 for tracking
the temperature of a presently dried project, and preferably also a coupling element
701 which includes a control member 702 and an on/off switch 703. The coupling element
701 is controlled by means of an appropriate limit temperature value, such as a maximum
value. The switch 703 is disposed between the first and sixth terminals 5a
1, 5a
6 of a connector 5; 52. Between the respective terminals in a connector 5; 51 of the
module is the first coupling element 21. When the temperature of a presently dried
project is discovered to exceed a set limit temperature value, the coupling element's
701 control member 702 is adapted to operate the switch 703, such that it closes an
electric circuit present between the first and sixth terminals 5a
1, 5a
6, as a result of which the control member 231 of the module's 20 second coupling element
23 receives such a command that the switch 232 disrupts the supply of power to the
electrical resistance 120 of a drying device 1; 10 and the heating is discontinued.
It should be noted that bringing out a temperature measurement value is also possible
by way of the terminal 5a
5 of a connector 5; 51, 52, which terminal has been left vacant in the application
of fig. 3.
[0041] Another accessory 70, attachable to the control unit 2 and especially to the module
20 by way of the connector 5, is a moisture measuring element 73 for tracking the
moisture condition, such as relative humidity, of a presently dried project (cf. also
fig. 7). The moisture measuring element 73 comprises a moisture sensor 731 for tracking
the moisture of a presently dried project, and preferably also a coupling element
701 which includes a control member 702 and an on/off switch 703. The coupling element
701 is controlled by means of an appropriate limit moisture value, such as a minimum
value. The construction and operation are analogous to those of the above-described
temperature measuring element 72. When the moisture condition of a presently dried
project is discovered to fall short of a set limit moisture value, the switch 703
is operated to close an electric circuit present between the first and sixth terminals
5a
1, 5a
6, as a result of which the control member 231 of the module's 20 second coupling element
23 receives such a command that the switch 232 disrupts the supply of power to the
electrical resistance 120 of a drying device 1; 10 and the heating is discontinued.
It should be noted in this case as well that bringing out a moisture measurement value
is also possible by way of the terminal 5a
5 of a connector 5; 51, 52, which terminal has been left vacant in the application
of fig. 3.
[0042] Alternatively, the accessory 70, particularly a temperature measuring element 72
and/or a moisture measuring element 73, is integrable with the control unit 2 and
the module 20. In this case, it is preferred that the actual measuring sensors, such
as a temperature sensor 721 and a moisture sensor 731, be attachable, along with possible
electronic sensor circuits thereof, by way of the connector 5; 51, 52 to the module
20 and to respective measuring elements integrated therewith.
[0043] In a preferred embodiment of the invention, the control unit 2, and especially the
module 20, can be fitted, by way of a connector 5; 51, 52, with a communications element
8 for communicating information between the drying device 1; 1
1, 1
2, 1
3,.., 1
5 and the user (fig. 8). The communications element 8 comprises a wireless transceiver
unit 81, which preferably operates in a radio frequency range. The wireless transceiver
unit 81 comprises most preferably a mobile communicator, such as a GSM mobile communicator.
The transceiver unit 81 is coupled between the first and second terminals 5a
1, 5a
2 of a connector 5, particularly a male connector component 52, by way of which terminals
it receives electric power from the module 20 and further from the electric power
supply 3 by way of the electrical connection 4. The communications element has its
first coupling unit 82, which is established by a relay or the like, disposed between
the first and fourth terminals 5a
1, 5a
4. The coupling unit 82 has its control member 821, such as a relay winding, engaged
with the discussed terminals, and its switch 822 fitted in the input of the transceiver
unit 81.
[0044] In principle, the communications element 8 works most preferably as follows. When,
in response to a fault alarm or fault alarm message, the fourth terminal 5a of a connector
5; 51 has been engaged with the O-conductor, the first coupling element's 82 control
member 821, such as a relay winding, operates and closes the switch 822, whereby the
transceiver unit's 81 input is supplied with an appropriate message, such as a change
of voltage level, which is detected. This change is interpreted as an alarm message
and transmitted in an appropriate mode, such as in a voice, text or data message,
forward to a predetermined destination, such as to a specific subscriber number in
the case of a mobile communicator.
[0045] In a preferred additional embodiment of the invention, the communications element
8 further comprises a second coupling element 83, established by a relay or the like,
having its switch 832 disposed between the first and sixth terminals 5a
1, 5a
6. The second coupling element 83 has its control member 831, such as a relay winding,
coupled with an appropriate output of the transceiver unit 81. When an appropriate
message, such as a text message, is received by the transceiver unit 81, the second
coupling element 83 has its control member 831 adapted to supply the switch 832 with
a control command for closing an electric circuit present between the first and sixth
terminals 5a
1; 5a
6, whereby the control member 231 of the module's 20 second coupling element 23 receives
such a control command that the switch 232 disrupts the supply of power to the electrical
resistance 120 of a drying device 1; 10 and the heating is discontinued. Respectively,
the heating can be activated with an appropriate second message, such as a second
text message, which is received by the transceiver unit 81. Hence, the second coupling
element's 83 control member 831 is adapted to supply the switch 832 with a control
command for opening an electric circuit present between the first and sixth terminals
5a
1, 5a
6, whereby the control member 231 of the module's 20 second coupling element 23 receives
such a control command that the switch 232 closes and allows again the supply of power
to the electrical resistance 120 of a drying device 1; 10.
[0046] Optionally, the communications element 8 is integrable with the control unit 2 and
with the module 20. This enables applying the same procedure which is used for integrating
an electrical energy measuring element 71, fig. 3, with the actual module 20.
[0047] The invention relates also to a drying arrangement, which is particularly intended
for the drying of premises, such as moist or wetted parts of a building or the like.
The drying arrangement, such as an arrangement as shown in figs. 1 and 3, comprises
a plurality of drying devices 1; 1
1, 1
2, 1
3,.., 1
5, such as flat surface dryers 10. Each drying device 1; 10 is most preferably provided
with a fan 11 and at least one electrical resistance 12. In addition, the drying arrangement
comprises a control unit 2 as set forth in any of the preceding embodiments, which
has been configured as a module 20, for controlling the drying devices 1 and for connecting
and disconnecting the same to and from an electric power supply, most preferably the
electricity network 3, as well as for tracking the operation of the drying device.
[0048] The invention is not limited to concern just the foregoing exemplary embodiment,
but a multitude of modifications are possible while remaining within the scope of
an inventive concept defined in the claims.
1. A control unit for a drying device (1; 10) of the type intended particularly for the
drying of fixed structures, said drying device being most preferably provided with
a fan (11) and an electrical resistance (12), and said control unit being used for
controlling the drying device and connecting and disconnecting the same to and from
an electric power supply, most preferably an electricity network (3),
characterized in that the control unit (2) is arranged as a module (20), comprising:
- a plurality of connectors (5; 51, 52, 53,...,56), particularly first connector components (51), by way of which the control unit
(2), especially its elements (21, 22), is attachable to not less than two, most preferably
to a plurality of drying devices (1; 11, 12, 13,.., 15);
- a timer element (21) and a first coupling element (22) for timing the operation
of the drying devices (1; 11, 12, 13,.., 15) attached to the connectors (5; 51, 52, 53,...,56), and for connecting and disconnecting the same to and from an electric power supply;
and
- an electrical connection (4) for coupling an electricity network (3) or the like
electric power supply to the control unit (2), and further from the control unit (2),
by way of the connectors (5; 51, 52, 53,...,56), to the drying devices (1; 11, 12, 13,.., 15).
2. A control unit as set forth in claim 1, characterized in that the first coupling element (22) comprises a changeover switch (222a), by means of
which at least two drying device groups (1A and 1B) are connectable and respectively
disconnectable, by way of respective connector groups (5A, 5B), in an alternating
manner to and from an electrical connection (4) and thereby to and from the electricity
network (3), respectively.
3. A control unit as set forth in claim 1 or 2, characterized in that the module (20) further comprises a second coupling element (23) for connecting and
disconnecting, in response to a separate control message, the drying devices (1; 11, 12, 13,.., 15), attached to the connectors (5; 51, 52, 53,...,56), to and from an electric power supply.
4. A control unit as set forth in claim 1, 2 or 3, characterized in that the module (20) is accommodated in an enclosure (6) which has the connectors (5;
51, 52, 53,...,56) provided on its walls.
5. A control unit as set forth in any of the preceding claims, characterized in that the connectors (5; 51, 52, 53,...,56) are multi-terminal connectors.
6. A control unit as set forth in any of the preceding claims, characterized in that the module (20) further comprises a measuring instrument (7), such as an electrical
energy measuring element (71).
7. A control unit as set forth in any of the preceding claims, characterized in that attachable to the module (20), through the intermediary of a connector (5; 51, 52, 53,...,56), are accessories, especially tracking and control equipment (70; 72; 73, 8).
8. A control unit as set forth in claim 7, characterized in that the accessory (70) is at least one of the following: a temperature measuring element
(72) and a moisture measuring element (73).
9. A control unit as set forth in any of the preceding claims, characterized in that the module (20) comprises a communications element (8) for communicating information
between the drying devices (1; 11, 12, 13,.., 15) and the user.
10. A control unit as set forth in any of preceding claims 1-8, characterized in that attachable to the module (20), through the intermediary of a connector (5; 51, 52, 53,...,56), is a communications element (8) for communicating information between the drying
devices (1; 11, 12, 13,.., 15) and the user.
11. A control unit as set forth in claim 9 or 10, characterized in that the communications element (8) houses a wireless transceiver unit (81).
12. A drying device (1, 10), which is intended for the drying of damp or moisture-affected
parts of a building or the like and which comprises at least a fan (110) and an electrical
resistance (120) and which is connectable to an electric power supply; most preferably
to a mains electricity network (3), characterized in that the drying device is provided with a connector (5; 51, 52, 53,...,56), especially a second connector component (52), by way of which it is connectable
to a control unit (2) as set forth in any of the preceding claims.
13. A drying device as set forth in claim 12, characterized in that the drying device comprises an alarm element (11), from which is obtained a fault
alarm message upon a malfunction of the drying device, said fault alarm message being
communicated to the control unit (2) by way of a fault alarm terminal (5a4) of the connector (5; 52).
14. A drying arrangement, which is intended for the drying of damp or moisture-affected
parts of a building or the like, said drying arrangement comprising a plurality of
drying devices (1), such as flat surface dryers (10), including most preferably a
fan (11) and an electrical resistance (12), and a control unit (2) as set forth in
any of preceding claims 1-11 for controlling the drying devices and connecting and
disconnecting the same to and from an electric power supply, most preferably an electricity
network (3).
15. A drying arrangement as set forth in claim 14, the drying devices of which are such
as set forth in claim 12 or 13.