System pressure actuated charge compensator
A system pressure actuated charge compensator for use with a heat pump having a liquid service valve and a vapor service valve. The charge compensator comprises a holding tank having first and second ports, a first pressure tap coupled to the first port and removeably coupleable to the vapor service valve, and a second pressure tap coupled to the second port and removeably coupleable to the liquid service valve. A heat pump system and a method of manufacturing a charge compensator are also provided.
1. A method of manufacturing a charge compensator, comprising:
providing a holding tank having first and second ports;
coupling a first pressure tap to said first port, said first pressure tap removeably coupleable to a vapor service valve of an outdoor heat exchanger of a heat pump system, said first pressure tap having a first auxiliary port therein, wherein said first auxiliary port permits evacuation of a vapor line connected to said vapor service valve without disconnecting said first pressure tap from said vapor service valve and
coupling a second pressure tap to said second port, said second pressure tap removeably coupleable to a liquid service valve of said outdoor heat exchanger, and further including interposing a check valve between said first pressure tap and said first port, wherein said check valve permits a refrigerant located in said holding tank to travel to said vapor line when said heat pump is in a cooling mode.
2. The method as recited in claim 1 , wherein said first and second ports open into an interior of said holding tank.
3. The method as recited in claim 1 , wherein said first pressure trap is located between said vapor service valve and said first port.
4. A method of manufacturing a charge compensator, comprising:
providing a holding tank having first and second ports;
coupling a first pressure tap to said first port, said first pressure tap removeably coupleable to a vapor service valve of an outdoor heat exchanger of an external unit of a heat pump system, said first pressure tap having a first auxiliary port therein, wherein said first auxiliary port permits evacuation of a vapor line connected to said vapor service valve without disconnecting said first pressure tap from said vapor service valve; and
coupling a second pressure tap to said second port, said second pressure tap removeably coupleable to a liquid service valve of said outdoor heat exchanger, and further including interposing an expansion device between said second pressure tap and said second port, wherein said expansion device permits a refrigerant to travel from said outdoor heat exchanger to said holding tank when said heat pump is in a heating mode.
5. The method as recited in claim 4 , wherein said expansion device includes a thermostatic expansion valve.
6. The method as recited in claim 5 , further including coupling a sensing bulb to said thermostatic expansion valve and mechanically coupling said sensing bulb to an exterior surface of said vapor line.
7. The method as recited in claim 4 , wherein said first pressure trap is located between said vapor service valve and said first port.