530.26-TG3YI

COOLING CAPACITIES (m3/s Air Flow) - 180 UNITS

 

Air On

Total

Power

 

 

 

Sensible Capacity1, kW

 

 

Evaporator Coil

1

2

 

 

Entering Dry Bulb Temp.,

°

C

 

 

 

 

Cap.

Input

 

 

 

 

m3/s

 

WB °C

kW

kW

32

30

 

28

26

 

24

22

 

 

 

 

@27°C Air Temperature on Condenser Coil

 

 

 

 

 

 

23

66.4

14.7

51

44

 

37

30

 

23

-

 

 

21

62.3

14.4

59

52

 

44

37

 

30

23

3.40

 

19

58.2

14.0

58

58

 

52

45

 

38

31

 

 

17

56.7

14.0

57

57

 

56

49

 

41

34

 

 

15

55.2

13.9

55

55

 

55

52

 

45

37

 

 

23

61.5

14.5

46

40

 

34

27

 

21

-

 

 

21

57.7

14.2

53

46

 

40

34

 

28

22

2.80

 

19

53.9

13.9

54

53

 

47

41

 

35

28

 

 

17

52.5

13.8

52

52

 

51

44

 

38

32

 

 

15

51.1

13.7

51

51

 

51

48

 

42

35

 

 

23

57.1

14.3

37

32

 

28

23

 

19

-

 

 

21

53.6

14.0

43

38

 

33

29

 

24

19

2.10

 

19

50.1

13.6

48

44

 

39

34

 

30

25

 

 

17

48.7

13.6

49

47

 

42

37

 

33

28

 

 

15

47.4

13.5

47

47

 

45

40

 

36

31

 

 

 

 

@35°C Air Temperature on Condenser Coil

 

 

 

 

 

 

23

60.7

15.9

50

43

 

36

29

 

22

-

 

 

21

57.2

15.5

57

50

 

43

36

 

29

22

3.40

 

19

53.7

15.2

54

54

 

51

43

 

36

29

 

 

17

52.3

15.1

52

52

 

52

47

 

40

32

 

 

15

51.0

15.0

51

51

 

51

47

 

40

33

 

 

23

56.3

15.9

44

38

 

32

25

 

19

-

 

 

21

53.1

15.6

51

44

 

38

32

 

26

20

2.80

 

19

49.8

15.2

50

50

 

45

39

 

32

26

 

 

17

48.6

15.1

49

49

 

48

41

 

35

29

 

 

15

47.3

15.0

47

47

 

47

44

 

38

32

 

 

23

51.9

15.6

36

31

 

27

22

 

17

-

 

 

21

48.9

15.3

41

37

 

32

27

 

23

18

2.10

 

19

45.9

14.9

46

42

 

38

33

 

28

24

 

 

17

44.7

14.8

45

45

 

40

35

 

31

26

 

 

15

43.6

14.7

44

44

 

43

38

 

33

29

 

 

 

 

@46°C Air Temperature on Condenser Coil

 

 

 

 

 

 

23

49.6

18.2

46

39

 

32

25

 

18

-

 

 

21

47.3

17.6

47

46

 

39

32

 

25

18

3.40

 

19

45.0

17.1

45

45

 

45

39

 

32

25

 

 

17

43.6

17.1

44

44

 

44

40

 

33

26

 

 

15

42.1

17.1

42

42

 

42

39

 

31

24

 

 

23

49.4

17.8

41

35

 

29

23

 

17

-

 

 

21

47.2

17.2

47

42

 

36

29

 

23

17

2.80

 

19

44.9

16.6

45

45

 

42

36

 

30

24

 

 

17

43.4

16.6

43

43

 

43

37

 

31

25

 

 

15

42.0

16.6

42

42

 

42

39

 

33

27

 

 

23

46.5

17.5

33

29

 

24

19

 

15

-

 

 

21

44.4

17.0

39

34

 

30

25

 

20

16

2.10

 

19

42.3

16.4

42

40

 

35

31

 

26

21

 

 

17

40.9

16.4

41

41

 

36

32

 

27

22

 

 

15

39.5

16.4

40

40

 

38

33

 

28

24

1These capacities are gross ratings. For net capacity, deduct the heat of the supply air blower motor. Refer to the appropriate Blower Performance Table for the kW of the supply air blower motor.

2These ratings include the condenser fan motors (Total 2.3 kW) and the compressor motors but not the supply air blower motor.

4

Unitary Products Group

Page 4
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York D3CE, D3CG manual Cooling Capacities m3/s Air Flow 180 Units

D3CG, D3CE specifications

York D3CE and D3CG are innovative air-cooled chillers developed to address the growing demands for energy-efficient cooling solutions in commercial and industrial settings. These models are part of York's comprehensive range of HVAC products, showcasing advanced engineering and cutting-edge technologies designed to optimize performance while reducing operational costs.

One of the standout features of the York D3CE and D3CG series is their high efficiency. These chillers utilize a variable speed drive (VSD) technology that allows the compressor to adjust its speed according to the cooling load. This capability enhances energy efficiency, particularly in varying load conditions, and can lead to substantial energy savings compared to traditional fixed-speed chillers.

In terms of environmentally friendly refrigerants, both the D3CE and D3CG models are designed to operate with refrigerants that have low global warming potential (GWP). This aspect not only supports sustainability initiatives but also aligns with international regulations aimed at reducing greenhouse gas emissions. This makes them an appealing choice for organizations committed to minimizing their environmental impact.

The York D3CE and D3CG chillers are engineered to ensure quiet operation, making them suitable for noise-sensitive applications such as urban environments, hospitals, and educational institutions. Sound-dampening technologies are integrated into the design to minimize operational noise, thus preserving the quality of the surrounding environment.

Another significant characteristic is the advanced control system tailored for these chillers. The intuitive controls interface allows for easy monitoring and adjustment of operating parameters, enabling facilities managers to optimize performance and maintain effective cooling without extensive training.

Durability and reliability are also hallmarks of the D3CE and D3CG series. Constructed with high-quality materials and robust components, these models are engineered to withstand harsh operating conditions and deliver consistent performance over time. Regular maintenance can be managed efficiently thanks to accessible service points, ensuring that these chillers can serve their intended lifespan and beyond.

In summary, the York D3CE and D3CG series stands out in the crowded HVAC market due to their high efficiency, environmentally friendly design, quiet operation, advanced control capabilities, and rugged reliability. These features make them a prudent choice for organizations looking to enhance their cooling systems while adhering to environmental and economic sustainability goals.