Air conditioning system
A direct current power supply generates a power supply voltage being a direct current voltage. A communication circuit is drivable by the power supply voltage generated by the direct current power supply. The communication circuit communicates with another communication circuit with a communication method using a radio frequency signal through a communication line. The communication line is a core wire included in a cable including a shield. The shield is connected to a ground of the communication circuit at two ends of the cable.
1 . An air conditioning system, comprising:
a plurality of air conditioners; and
a communication line interconnecting the plurality of air conditioners, wherein
the communication line is a core wire included in a cable including a shield,
each of the plurality of air conditioners includes
a direct current power supply to generate a power supply voltage being a direct current voltage,
a communication circuit drivable by the power supply voltage generated by the direct current power supply,
a terminal block to connect the communication line to the communication circuit, and
a metal housing accommodating the terminal block and a portion of the cable in which the core wire is not covered with the shield,
the communication circuit communicates with another communication circuit with a communication method using a radio frequency signal through the communication line,
the shield is connected to a ground of the communication circuit at each of two ends of the cable, and
the metal housing has no opening longer than a length threshold corresponding to a wavelength of the radio frequency signal.
2 . The air conditioning system according to claim 1 , wherein
the shield is earthed at the two ends of the cable, and
at each of the two ends of the cable, an impedance between the ground of the communication circuit and earth at a frequency of the radio frequency signal is less than or equal to a predetermined impedance threshold.
3 . The air conditioning system according to claim 2 , wherein
at each of the two ends of the cable, the ground of the communication circuit is earthed through a capacitor with a capacitance greater than or equal to a capacitance threshold corresponding to the frequency of the radio frequency signal.
4 . The air conditioning system according to claim 1 , wherein
the direct current power supply generates the power supply voltage from power supplied from an external power supply, and
each of the plurality of air conditioners includes a filter circuit to remove a radio frequency wave between the external power supply and an output portion of the direct current power supply.
5 . The air conditioning system according to claim 1 , wherein
the radio frequency signal has a frequency greater than or equal to 1 MHz.
6 . The air conditioning system according to claim 2 , wherein
the direct current power supply generates the power supply voltage from power supplied from an external power supply, and
each of the plurality of air conditioners includes a filter circuit to remove a radio frequency wave between the external power supply and an output portion of the direct current power supply.
7 . The air conditioning system according to claim 3 , wherein
the direct current power supply generates the power supply voltage from power supplied from an external power supply, and
each of the plurality of air conditioners includes a filter circuit to remove a radio frequency wave between the external power supply and an output portion of the direct current power supply.
8 . The air conditioning system according to claim 2 , wherein
the radio frequency signal has a frequency greater than or equal to 1 MHz.
9 . The air conditioning system according to claim 3 , wherein
the radio frequency signal has a frequency greater than or equal to 1 MHz.
10 . The air conditioning system according to claim 4 , wherein
the radio frequency signal has a frequency greater than or equal to 1 MHz.