Communication control system for air conditioner

Refrigeration – Automatic control – Diverse – cascade or compound refrigeration-producing system

Reexamination Certificate

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C062S230000, C236S051000

Reexamination Certificate

active

06625996

ABSTRACT:

BACKGROUND OF THE INVENTION
1. Field of the Invention
The present invention relates to a communication controller, and more particularly to a technique for a communication control system.
2. Description of the Related Art
There has been known a communication control system for an air conditioner in which plural units (for example, outdoor units, indoor units, a remote controller for setting operating environments of these units, etc.) are connected to one another through a pair of control signal lines to transmit/receive communication data among these units through the pair of control signal lines, and also power supply from a unit having a DC power source to a unit having no DC power is carried out through the pair of control signal lines (Japanese Laid-open Patent Application No. Sho-56-155326). According to this type of air conditioner, the pair of control signal lines for connecting the units to one another functions not only as a communication line through which communication data formed of tone burst signals are transmitted/received, but also as a power supply line for supplying power.
Further, in order to avoid occurrence of troubles due to failure of a wiring work or the like, any unit having no DC power source is provided with a circuit for depolarizing the polarity of signals supplied thereto. Accordingly, the non-polarized and bi-directional data communication can be performed while the power supply is carried out from a unit having a DC power source to a unit having no DC power source.
Since the above conventional communication control system uses tone burst signals as communication signals for data communication between units, a high frequency circuit for tone burst signals must be equipped to each unit, and thus the circuit construction is very complicated. In order to solve this problem, a communication controller for an air conditioner that needs no high frequency circuit for tone burst signals has been proposed (Japanese Laid-open Patent Application No. Hei-8-251680).
The communication controller for the air conditioner disclosed in the above publication is shown in FIG.
1
.
In this communication controller, a master unit
1
that is connected to the main body
3
of an air conditioner and equipped with a power source and a monitoring controller for controlling the monitoring of the air conditioner is connected to plural slave units
2
through a pair of control signals (communication lines)
4
, and each of the master unit
1
and the slave units
2
is equipped with a signal polarity incidence circuit (signal depolarizing circuit) comprising bridged diodes to make the signals of these units coincident in polarity.
The master unit
1
is equipped with a device for superposing an ON/OFF signal (communication signal) having a predetermined amplitude level on a predetermined DC voltage level under the control of the monitoring controller and then transmitting the superposed signal thus obtained to the communication line
4
, and also receiving signals from each slave unit
2
through the signal polarity coincidence circuit. Further, each slave unit
2
is equipped with a device for receiving the superposed signal from the master unit through the signal polarity coincidence circuit, separating the superposed signal into the ON/OFF signal having the predetermined amplitude level and the DC voltage having the predetermined level which will be used as a power source for the slave unit concerned, and also transmitting an ON/OFF signal having a predetermined amplitude level under the control of a controller through the signal polarity coincidence circuit to the master unit.
Accordingly, in the communication controller described above, the communication line is also used as the power supply line and the non-polarized and bi-directional communication data can be transmitted/received between the master unit
1
and each slave unit
2
without using any high frequency circuit for tone burst signals while the power supply is carried out from the master unit
1
to each slave unit
2
.
In the conventional communication controller disclosed in the Japanese Laid-open Patent Application No. Hei-8-251680, a power supply source having a power source must be determined and fixed in advance (in this case, the master unit is set and fixed as the power supply source). Therefore, when various individual systems are required to be established in accordance with users' requirements, the system construction and the circuit construction must be changed every time. Further, when the master unit serving as the power supply source is disabled due to some trouble, the power supply to the slave units is stopped and thus the system itself must be stopped. In addition, it is impossible to supply power to the slave units until the master unit is completely repaired or a work of exchanging it with a new one is completed, and this is a critical obstruction to the operation of the system.
SUMMARY OF THE INVENTION
Therefore, the present invention has been implemented in view of the foregoing problems of the prior arts, and has an object to provide a communication control system for an air conditioner which enables a system construction satisfying various users' requirements with a simple circuit construction and in low cost.
Another object of the present invention is to provide a communication control system for an air conditioner in which even when power supply is stopped due to short-circuiting of a communication line, failure of a power supply source or the like, another power supply source is automatically selected and thus the operation of the air conditioning system can be continuously carried out.
In order to attain the above objects, according to the present invention, a communication control system for an air conditioner including at least one outdoor unit, plural indoor units and control equipment such as a remote controller, etc. which are connected to one another through a communication line to mutually carry out data communication through the communication line, is characterized in that at least two indoor units of the plural indoor units are equipped with power supply means, and non-polarized and bi-directional data communication is carried out between the plural indoor units and the control equipment while the power supply means of any one of the at least two indoor units supplies a power source voltage of a main power source to the communication line to the control equipment.
In the communication control system, the power supply means includes a communication superposing unit for superposing communication data on the power source voltage, a switching unit for ON/OFF-controlling the supply of the power source voltage from the main power source to the communication superposing unit, and a polarity coincidence unit for passing therethrough the output of the communication superposing unit to the communication line and depolarizing the power source voltage through the communication line from another indoor unit functioning as a power supply source.
In the communication control system, the communication superposing unit includes a transistor to which ON/OFF signals of communication signals are input, and at least two resistors that are connected to each other in series and divides the power source voltage from the main power source in accordance with the ON/OFF operation of the transistor to superpose the communication signals on the power source voltage.
In the communication control system, the switching unit is disposed between the main power source and the communication superposing unit, and equipped with a transistor for ON/OFF-controlling the supply of the power source voltage from the main power source to the communication superposing unit on the basis of the ON/OFF operation thereof.
In the communication control system, the polarity coincidence unit includes bridged diodes for converting the polarity of signals from the external, and a transistor for bypassing the output signal of the communication superposing unit without passing the output signal through the bridged di

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