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  Trane Company (The)   UniTrane Fan-Coil  

UniTrane Fan-Coil - Page 18

   

UniTrane Fan-Coil

Performance Data           ARI

ARI cooling performance is based on 80/67 F (27/19 C) entering air temperature, 45 F (7 C) entering chilled water temperature with a 10 F (5.5 C) AT.

Heating performance is based on 70 F (21 C) entering air temperature, 180 F (82 C) entering hot water temperature with a 30 F (17 C) AT.

All performance measured on high speed tap, 11 5 V, zero ESP, with a throwaway filter. See page 14 for performance groupings.

Table PD-9 - Free Discharge Motor, Four-Pipe, Group 3

    Cooling Heating      
    CFM TMBH SMBH GPM WPD TMBH   GFM WPD 115V 230V 277V
FC Coil (L/s) (TkW) (SkW) (L/S) (kPa) (TkW) O/ITD (L/s) (kPa) Watt Watt Watt
2 2ClH 188 (89) 4.7 (1.4) 3.5 (1.0) 0.97 (0.06) 5.4(16.2) 7.6 (2.2) .07 0.51(0.03) 0.6 (1.9) 60 95 66
  2C2H 177(84) 4.5 (1.3) 3.4 (1.0) 0.93 (0.06) 5.1(15.1) 12.7 (3.7) .12 0.85 (0.05) 3.2 (9.7) 60 95 65
  3ClH 177(84) 6.3 (1.8) 4.3 (1.3) 1.29 (0.08) 13.4 (40.1) 7.3 (2.1) .07 0.48 (0.03) 0.6 (1.8) 60 95 65
3 2ClH 260(123) 6.1 (1.8) 4.5 (1.3) 1.28 (0.08) 9.8 (29.2) 10.4 (3.1) .09 0.69 (0.04) 1.3 (3.8) 85 89 101
  2C2H 242 (114) 5.9 (1.7) 4.3 (1.3) 1.23 (0.08) 9.1 (27.2) 17.2 (5.1) .16 1.15 (0.07) 6.2 (18.6) 85 89 101
  3ClH 242 (114) 6.9 (2.0) 5.1 (1.5) 1.45 (0.09) 3.4 (10.2) 9.9 (2.9) .09 0.66 (0.04) 1.2 (3.4) 85 89 101
4 2ClH 320 (151) 7.7 (2.2) 6.0 (1.8) 1.60 (0.10) 3.4 (10.1) 13.5 (4.0) .12 0.90 (0.06) 2.3 (7.0) 100 107 166
  2C2H 304(144) 7.4 (2.2) 5.8 (1.7) 1.55 (0.10) 3.2 (9.5) 21.4 (6.3) .19 1.43 (0.09) 2.3 (6.9) 100 107 106
  3ClH 304(144) 10.3 (3.0) 7.2 (2.1) 2.12 (0.13) 7.7 (23.1) 13.1 (3.8) .12 0.87 (0.05) 2.2 (6.6) 100 107 106
6 2ClH 508(240) 13.4 (3.9) 9.9 (2.9) 2.76 (0.17) 11.0 (32.8) 21.6 (6.3) .20 1.44 (0.09) 6.9 (20.6) 125 130 124
  2C2H 483(228) 13.0 (3.8) 9.6 (2.8) 2.68 (0.17) 10.4 (31.1) 34.3 (10.0) .31 2.28 (0.14) 6.5 (19.4) 125 130 124
  3ClH 483(228) 14.4 (4.2) 10.7 (3.1) 2.97 (0.19) 3.8 (11.5) 20.8 (6.1) .19 1.39 (0.09) 6.5 (19.4) 125 130 124
8 2ClH 623(294) 14.1 (4.1) 11.3 (3.3) 2.90 (0.18) 3.2 (9.7) 27.2 (8.0) .25 1.81 (0.11) 12.5 (37.5) 120 123 133
  2C2H 596(282) 13.7 (4.0) 11.0 (3.2) 2.81 (0.18) 3.1 (9.2) 41.6 (12.2) .38 2.77 (0.17) 2.7 (8.1) 120 123 133
  3ClH 596(282) 18.6 (5.5) 13.1 (3.8) 3.80 (0.24) 6.8 (20.2) 26.4 (7.7) .24 1.76 (0.11) 11.9 (35.5) 120 123 133
10 2ClH 835(394) 20.6 (6.0) 15.8 (4.6) 4.27 (0.27) 7.4 (22.1) 36.2 (10.6) .33 2.41 (0.15) 25.2 (75.3) 225 237 230
  2C2H 796(376) 20.0 (5.9) 15.2 (4.5) 4.15 (0.26) 7.0 (20.9) 55.8 (16.3) .51 3.72 (0.23) 5.2 (15.4) 225 237 230
  3ClH 796(376) 25.6 (7.5) 17.8 (5.2) 5.28 (0.33) 13.9 (41.4) 35.1 (10.3) .32 2.34 (0.15) 23.8 (71.0) 225 237 230
12 2ClH 923(436) 24.6 (7.2) 18.1 (5.3) 5.06 (0.32) 10.9 (32.5) 41.1 (12.0) .37 2.74 (0.17) 35.9 (107.2) 220 230 239
  2C2H 876(413) 23.8 (7.0) 17.6 (5.1) 4.91 (0.31) 10.3 (30.7) 63.0 (18.5) .57 4.20 (0.26) 6.9 (20.6) 220 230 239
  3ClH 876(413) 28.1 (8.2) 19.8 (5.8) 5.76 (0.36) 10.0 (29.7) 39.6 (11.6) .36 2.64 (0.17) 33.6 (100.4) 220 230 239

Table PD-10 - Free Discharge Motor, Four-Pipe, Gr-oup 4

Cooling Heating
    CFM TMBH SMBH GPM WPD TMBH   GPM AM 115V
FC Coil (L/s) (TkW) (SkW) (L/s) (kPa) (TkW) Q/ITD (L/s) (kPa) Watt
3 2C1H 270(128) 6.3 (1.9) 5.0 (1.5) 1.26 (0.08) 2.2 (6.6) 12.0 (3.5) .11 0.80 (0.05) 1.9 (5.7) 86
2C2H 250(118) 5.9 (1.7) 4.7 (1.4) 1.18 (0.07) 2.0 (5.8) 18.3 (5.4) .17 1.22 (0.08) 1.7 (5.1) 86
3C1H 250(118) 7.3 (2.1) 5.1 (1.5) 1.46 (0.09) 4.0 (11.9) 11.3 (3.3) .10 0.75 (0.05) 1.7 (5.1) 86
4 2ClH 350(165) 10.0 (2.9) 7.1 (2.1) 1.99 (0.13) 6.1 (18.2) 16.3 (4.8) .15 1.09 (0.07) 4.2 (12.6) 98
2C2H 320(151) 9.2 (2.7) 6.5 (2.0) 1.83 (0.12) 5.2 (15.7) 24.4 (7.2) .22 1.63 (0.10) 3.5 (10.5) 98
3C1H 320(151) 8.9 (2.6) 6.6 (1.9) 1.79 (0.11) 1.5 (4.5) 15.1 (4.4) .14 1.01 (0.06) 3.7 (11.1) 98
6 2C1H 570(270) 12.6 (3.7) 10.3 (3.0) 2.52 (0.16) 2.5 (7.5) 25.6 (7.5) .23 1.70 (0.11) 11.2 (33.5) 105
2C2H 530(250) 11.7 (3.4) 9.6 (2.8) 2.35 (0.22) 2.2 (6.6) 37.9 (11.1) .34 2.53 (0.160) 2.3 (6.8) 105
3C1H 530(250) 15.3 (4.5) 10.8 (3.2) 3.07 (0.19) 4.5 (13.6) 24.2 (7.1) .22 1.61 (0.10) 10.2 (30.5) 105

 Note:

  1. Medium and low speed capacities are approximately 80 percent and 60 percent respectively of the high speed capacity.
  2. Q/ITD = MBH (kW)/(Entering water temperature - Entering air temperature) when delta T and GPM (L/s) remain constant. To determine heating capacities at a different entering water temperature or entering air temp, compute the new ITD and multiply it by the O/ITD shown.

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