York D2EB030 manual Electrical Data Cooling / Electric Heat

Page 12

 

 

 

 

 

 

 

 

 

 

 

 

 

360101-XTG-B-0508

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

TABLE 10: ELECTRICAL DATA

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

VOLTAGE

COMPRESSOR

COND.

SUPPLY

MINIMUM

MAX.

MAX.

UNIT

 

 

 

MODEL

POWER

LIMITATIONS1

 

 

FAN

AIR

FUSE2

HACR

TRANSFORMER

 

DEB

SUPPLY

 

 

 

 

MOTOR,

BLOWER

CIRCUIT

SIZE,

BREAKER

POWER

SIZE (VA)

 

MIN.

MAX.

RLA

LRA

MOTOR

AMPACITY

SIZE,

FACTOR

 

 

 

 

 

 

 

FLA

FLA

 

AMPS

AMPS

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

30

208/230-1-60

187

253

14.7

73

1.1

2.6

22.1

30

30

0.96

40

 

 

36

208/230-1-60

187

253

17.3

94

1.1

3.5

26.2

35

35

0.96

40

 

 

42

208/230-1-60

187

253

15.5

86

1.1

3.5

23.9

30

30

0.96

40

 

 

48

208/230-1-60

187

253

24.4

140

1.3

4.0

35.8

45

45

0.96

40

 

 

60

208/230-1-60

187

253

28.9

165

1.3

4.0

44.4

60

60

0.96

40

 

 

36

208/230-3-60

187

253

10.9

78.0

1.1

3.5

18.2

25

25

0.96

75

 

 

42

208/230-3-60

187

253

11.5

88.0

1.1

3.5

19.0

25

25

0.96

75

 

 

48

208/230-3-60

187

253

14.1

105.0

0.7

4.0

22.3

30

30

0.96

75

 

 

60

208/230-3-60

187

253

16.0

125.0

1.3

7.0

28.3

40

40

0.96

75

 

 

36

460-3-60

414

504

5.8

40.0

0.6

1.8

9.6

15

15

0.96

75

 

 

42

460-3-60

414

504

5.8

42.0

0.6

1.8

9.7

15

15

0.96

75

 

 

48

460-3-60

414

504

7.1

55.0

0.6

2.0

11.5

15

15

0.96

75

 

 

60

460-3-60

414

504

8.0

67.0

0.7

3.5

14.2

20

20

0.96

75

 

 

36

575-3-60

518

630

4.5

32.0

0.4

1.5

7.6

15

15

0.96

75

 

 

42

575-3-60

518

630

5.8

44.0

0.4

1.5

9.1

15

15

0.96

75

 

 

48

575-3-60

518

630

5.6

44.0

0.6

1.6

9.3

15

15

0.96

75

 

 

60

575-3-60

518

630

6.4

50.0

0.6

2.8

11.4

15

15

0.96

75

 

1.Rated in accordance with ARI Standard 110, utilization range “A”.

2.Dual element, time delay type.

 

NOMINAL VOLTAGE

VOLTAGE

KW CAP.

ELECTRIC HEAT

MULTIPLIER

 

 

 

240

208

.75

CORRECTION

230

.92

FACTORS

 

 

 

 

480

460

.92

 

 

 

 

 

 

600

575

.92

 

 

 

 

TABLE 11: ELECTRICAL DATA (COOLING / ELECTRIC HEAT)

 

 

 

 

COND. FAN

SUPPLY

 

 

 

 

 

 

 

 

MODEL

POWER

COMPRESSOR

AIR

ELECTRIC HEAT ACCESSORY

MCA

MAX FUSE/

MAX HACR

2

MOTORS

BLOWER

SIZE1

 

DEB

SUPPLY

 

 

 

MOTOR

 

 

 

 

(AMPS)

(AMPS)

BREAKER SIZE

 

 

 

 

 

 

 

 

 

 

 

 

 

 

RLA

LRA

FLA

FLA

MODEL NO.

STAGE

KW

TOTAL AMPS

 

 

 

 

 

 

 

 

 

 

2NH04500506

1

3.8/5.0*

18.1/20.8

25.8/29.3

30/30

30/30

 

030

208/230-1-60

12.0

73.0

1.1

2.6

2NH04500706

2

5.6/7.5*

27.3/31.3

37.1/42.3

40/45

40/45

 

2NH04501006

2

7.5/10.0*

36.1/41.7

48.4/55.3

50/60

50/60

 

 

 

 

 

 

 

 

 

 

 

 

 

 

2NH04501506

2

11.3/15.0*

54.2/62.5

71.0/81.4

80/90

80/90

 

036

208/230-1-60

17.3

94.0

1.1

3.5

2NH04501006

2

7.5/10.0*

36.1/41.7

49.5/56.5

50/60

50/60

 

2NH04501506

2

11.3/15.0*

54.2/62.5

72.1/82.5

80/90

80/90

 

 

 

 

 

 

 

 

 

 

 

 

 

 

2NH04500506

1

3.8/5.0*

18.1/20.8

26.9/30.4

35/35

35/35

 

042

208/230-1-60

15.5

86.0

1.1

3.5

2NH04500706

2

5.6/7.5*

27.1/31.3

38.2/43.4

40/45

40/45

 

2NH04501006

2

7.5/10.0*

36.1/41.7

49.5/56.5

50/60

50/60

 

 

 

 

 

 

 

 

 

 

 

 

 

 

2NH04501506

2

11.3/15.0*

54.2/62.5

72.1/82.5

80/90

80/90

 

 

 

 

 

 

 

2NH04501006

2

7.5/10.0*

36.1/41.7

50.1/57.1

60/60

60/60

 

048

208/230-1-60

24.4

140.0

1.3

4.0

2NH04501506

2

11.3/15.0*

54.2/62.5

72.1/83.1

80/90

80/90

 

2NH04502006

2

15.0/20.0*

72.2/83.3

95.3/109.2

100/110

100/110

 

 

 

 

 

 

 

 

 

 

 

 

 

 

2NH04502506

2

18.8/25.0*

90.3/104.2

117.8/135.2

125/150

125/150

 

 

 

 

 

 

 

2NH04501006

2

7.5/10.0*

36.1/41.7

53.9/60.8

70/70

70/70

 

060

208/230-1-60

38.0

165.0

1.3

7.0

2NH04501506

2

11.3/15.0*

54.2/62.5

76.5/86.9

80/90

80/90

 

2NH04502006

2

15.0/20.0*

72.2/83.3

99.0/112.9

100/125

100/125

 

 

 

 

 

 

 

 

 

 

 

 

 

 

2NH04502506

2

18.8/25.0*

90.3/104.2

121.6/139.0

125/150

125/150

 

036

208/230-3-60

10.9

78.0

1.1

3.5

2NH04501025

1

7.5/10.0*

20.8/24.1

30.4/34.4

35/35

35/35

 

2NH04501525

1

11.3/15.0*

31.3/36.1

43.5/49.5

45/50

45/50

 

 

 

 

 

 

 

 

12

Johnson Controls Unitary Products

Image 12
Contents Standard Features / Benefits 9.4 EER Export only DescriptionTable of Contents Standard FEATURES/BENEFITS FIELD-INSTALLED AccessoriesUnit Cutaway Physical Data Ratings ARICooling Capacities 2-1/2 TON DEB030 Outdoor CoilCooling Capacities 3 TON DEB036 Cooling Capacities 3-1/2 TON DEB042 Cooling Capacities 4 TON DEB048 Cooling Capacities 5 TON DEB060 Side and Bottom Supply AIR Blower Performance Additional Static ResistanceElectrical Data Electrical Data Cooling / Electric Heat042 208/230-3-60 11.5 88.0 2NH04501025 Unit Dimensions Unit Weights Center of GravityTypical Slab on Ground Installation Typical ApplicationsRoof Curb Application Typical Wiring Diagram 208/230-1-60 Power Supply DEB Models Typical Wiring Diagram Notes Typical Wiring Diagram Legend Typical Wiring Diagram 208/230-3-60 Power Supply DEB ModelsXTG-B-0508 Mechanical Specifications Indoor Evaporator FAN AssemblyOutdoor Condenser FAN Assembly Unit CabinetUnit Operating Characteristics Electric Heating SectionElectrical Requirements XTG-B-0508 Johnson Controls Unitary Products Johnson Controls Unitary Products York Drive Norman, OK

D2EB030 specifications

The York D2EB030 is a prominent model in the realm of commercial climate control systems, specifically designed to cater to medium to large-scale applications. This equipment stands out due to its high efficiency and reliability, ensuring optimal thermal comfort in various settings, from office buildings to warehouses.

One of the main features of the York D2EB030 is its capacity. With a nominal cooling capacity of around 30 tons, it is well-suited for substantial cooling demands. This makes it an excellent choice for facilities that require consistent and effective temperature management. Additionally, it offers variable refrigerant flow (VRF) operation, which allows for simultaneous heating and cooling in different zones, providing enhanced comfort and flexibility.

The D2EB030 is equipped with advanced inverter technology. This feature allows the compressor to modulate its speed based on the cooling or heating needs of the environment, leading to significant energy savings. By adjusting the refrigerant flow and maintaining more stable indoor temperatures, the inverter-driven compressor reduces operational costs and energy consumption compared to traditional systems.

Additionally, the unit boasts a range of control options. It can be integrated with smart building management systems, allowing for remote monitoring and control through mobile devices or computers. This connectivity enables facility managers to optimize operation schedules, perform maintenance checks, and respond quickly to any issues, enhancing overall efficiency.

In terms of build quality, the York D2EB030 showcases robust construction, designed to withstand the rigors of commercial use. Its corrosion-resistant materials ensure longevity and reduce maintenance requirements. The system is also designed with sound-dampening features, resulting in quieter operation—a crucial aspect in noise-sensitive environments.

Among its environmental considerations, the unit utilizes refrigerants that are compliant with global regulations, contributing to lower greenhouse gas emissions. Moreover, its design promotes higher energy efficiency ratios (EER) and seasonal energy efficiency ratios (SEER), which are critical for reducing the overall carbon footprint.

In summary, the York D2EB030 stands out in the market for its combination of robust features, advanced technologies, and energy efficiency, making it a top choice for commercial climate control solutions. With its capacity, smart technology integration, and environmental considerations, this model is tailored to meet the dynamic needs of modern facilities while ensuring cost-effectiveness and sustainability.