EP1573257B1

Dual independent chamber ultra-low temperature freezer

Abstract

This record has no abstract on file.

EP1573257B1, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Expired 18 December 2023, 2.8 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

12 claims: 2 independent, 10 dependent

  1. 1
    A freezer comprising:a cabinet (5);a first freezer chamber (22) having insulated peripheral walls including a pair of side walls (13, 14), a rear wall, a top wall (17) and a bottom wall (18) disposed in a top portion of said cabinet (5);a second freezer chamber (24) having insulated peripheral walls including a pair of side walls (15, 16), a rear wall, a top wall (19) and a bottom wall (20) disposed in a bottom portion of said cabinet (5);an upper insulated door (7) hingedly secured to one of said side walls of said first freezer chamber (22);a lower insulated door (9) hingedly secured to one of said side walls of said second freezer chamber (24);said cabinet (5) further comprises outer vertical doors (8, 10) hingedly secured along said top and bottom portions, respectively;a refrigeration unit comprising a dual cascade system comprising first and second evaporators which independently cool said first and second freezer chambers;and means for independently controlling cooling of said first and said second freezer chambers via said refrigeration unit;characterized in that the refrigeration unit is adapted to cool said first and second freezer chambers (22, 24) to a substantially uniform temperature between -40 °C and -80 °C, and refrigerants R404a and R508b are used in a dual cascade system connected to said first freezer chamber (22) and said second freezer chamber (24).
  2. 11
    A method of controlling a freezer of any one of claims 1 to 10, comprising the steps of:providing a dual cascade system having a high-stage and a low-stage circuit, wherein said high-stage circuit includes a compressor (39, 48, 71), a condenser (38, 52, 72), and an expansion device (37, 49, 73));splitting a refrigerant stream after oil separation occurs into a first and a second low-stage circuit;passing the split refrigerant stream through a first and a second expansion device (34, 35;42, 43) and a first and a second evaporator (31, 32;50, 51), respectively;recombining the split refrigerant stream after passing through said first and said second evaporators (31, 32;50, 51);and compressing the recombined refrigerant stream with a refrigeration compression device (30;47).