EP1562011A2

Digital controller for scroll compressor condensing unit

Abstract

A cooling system controller controls the capacity of a variable capacity compressor based upon the temperature of a housing being cooled, the suction pressure of the compressor or both of these criteria. The cooling system controller is capable of controlling either single-evaporator or multiple-evaporator refrigeration systems. The multiple-evaporator systems can have evaporators of similar temperatures or of mixed temperatures. The controller also allows the use of one or more condenser fans that are operated in a lead/lag fashion to control the cooling capability of the system.

EP1562011A2, drawing sheet 1
Sheet 1 of 20

Term

Term ended

Projected expiry passed 15 January 2022, 4.7 years ago.

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  2. Filed
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12 claims: 9 independent, 3 dependent

  1. 1
    A cooling system comprising:a housing;an evaporator disposed in said housing;a condenser coupled in fluid communication with said evaporator;a compressor coupled in fluid communication with said evaporator and said condenser, said compressor being a pulse-width modulated variable capacity compressor;a temperature sensor disposed in said housing, said temperature sensor operable to read a temperature within said housing;a system controller responsive to said temperature sensor and coupled to said compressor for providing a variable duty cycle control signal to said compressor whereby said compressor is modulated between a first capacity state and a second capacity state while operating to thereby adjust the operating capacity of said compressor based on said temperature within said housing to maintain a specified temperature in said housing.
  2. 2
    A cooling system comprising:a housing;an evaporator disposed in said housing;a condenser coupled in fluid communication with said evaporator;a pulse-width modulated variable capacity compressor coupled in fluid communication with said evaporator and said condenser;a temperature sensor disposed in said housing and operable to read a temperature within said housing;anda system controller including a manual operating mode and an automatic operating mode, said system controller receiving an input from said temperature sensor and providing a variable duty cycle control signal to said compressor.
  3. 5
    The cooling system according to any one of the preceding claims, further comprising a first and a second condenser fan, said controller being coupled to said condenser fans to control said fans based upon a temperature sensed by said temperature sensor, percent duty cycle, and a calculated minimum pressure differential.
  4. 6
    The cooling system according to any one of the preceding claims, wherein said compressor compresses a gas between a suction pressure and a discharge pressure, and said cooling system further comprises a pressure sensor for sensing said suction pressure, said system controller being coupled to said pressure sensor for controlling said capacity of said compressor based on said suction pressure and said temperature within said housing.
  5. 7
    The cooling system according to any one of the preceding claims, wherein said compressor is a scroll compressor.
  6. 8
    The compressor control system according to any one of the preceding claims, wherein said compressor has two mechanical elements separated by a seal, said mechanical elements being movable relative to one another to develop fluid pressure and wherein said compressor includes mechanism to selectively break said seal in response to said control signal to thereby alter said fluid pressure developed while allowing said mechanical elements to maintain substantially constant relative movement with one another.
  7. 10
    The cooling system according to any one of the preceding claims, wherein said system controller determines an average suction pressure over a specified period of time within each control cycle time.
  8. 11
    The cooling system according to any one of the preceding claims, further comprising a plurality of housings each having a respective evaporator disposed therein, said temperature sensor being disposed in at least one of said housings.
  9. 12
    The cooling system according to any one of the preceding claims, further comprising a plurality of housings, each having an evaporator, an evaporator controller, and a temperature sensor in each of said plurality of housings, each said temperature sensor connected to said evaporator controller in said each of said plurality of housings, each said evaporator controller communicating temperature sensor and demand loading state values to said system controller.