York CZH024 THRU 060 warranty 9C*C20 HD48 LC*A12

Page 20

350154-YTG-C-0808

 

 

 

 

 

 

 

 

Variable Speed

Coil

T.C.

S.C.

KW

Furnace

 

 

 

 

P(C,V)9*C20

FC/MC/PC48D

0.99

0.99

1.03

P(C,V)9*C20

UC48D

0.99

0.99

1.03

P(C,V)9*D20

FC/MC/PC48D

0.99

0.99

1.02

P(C,V)9*D20

UC48D

0.99

0.99

1.02

PV8*C20

FC/MC62D

1.00

1.00

1.04

P(C,V)9*C20

FC/MC62D

1.00

1.00

1.03

P(C,V)9*D20

FC/MC62D

1.01

1.00

1.02

PV8*C16

HC42C

0.99

0.99

1.02

PV8*C20

HC42C

0.98

0.98

1.04

P(C,V)9*C16

HC42C

0.98

0.98

1.02

P(C,V)9*C20

HC42C

0.98

0.98

1.03

Y*(8,L)C*B12

FC/MC/PC35B

0.97

0.96

1.07

Y*9C*B12

FC/MC/PC35B

0.97

0.97

1.07

Y*(8,L)C*C16

FC/MC/PC35C

0.98

0.97

1.04

Y*(8,L)C*C20

FC/MC/PC35C

0.97

0.96

1.02

Y*9C*C16

FC/MC/PC35C

0.98

0.97

1.04

Y*9C*C20

FC/MC/PC35C

0.98

1.00

1.07

Y*(8,L)C*A12

FC/MC/PC36A

0.95

0.94

1.07

Y*(8,L)C*B12

FC/MC/PC36B

0.96

0.96

1.05

Y*9C*B12

FC/MC/PC36B

0.96

0.94

1.05

Y*(8,L)C*C16

FC/MC/PC36C

0.96

0.95

1.03

Y*(8,L)C*C20

FC/MC/PC36C

0.96

0.95

1.02

Y*9C*C16

FC/MC/PC36C

0.96

0.95

1.03

Y*9C*C20

FC/MC/PC36C

0.97

0.99

1.06

Y*(8,L)C*A12

FC/MC/PC37A

0.95

0.90

1.03

Y*(8,L)C*B12

FC/MC/PC42B

0.96

0.95

1.03

Y*9C*B12

FC/MC/PC42B

0.96

0.96

1.07

Y*(8,L)C*C16

FC/MC/PC42C

0.98

0.98

1.01

Y*(8,L)C*C20

FC/MC/PC42C

0.97

0.96

1.00

Y*9C*C16

FC/MC/PC42C

0.96

0.96

1.03

Y*9C*C20

FC/MC/PC42C

0.98

1.01

1.05

Y*(8,L)C*B12

FC/MC/PC43B

0.98

0.98

1.07

Y*9C*B12

FC/MC/PC43B

0.98

0.98

1.07

Y*(8,L)C*C16

FC/MC/PC43C

0.98

0.99

1.03

Y*(8,L)C*C20

FC/MC/PC43C

0.98

0.99

1.02

Y*9C*C16

FC/MC/PC43C

0.98

0.99

1.06

Y*9C*C20

FC/MC/PC43C

0.98

0.99

1.03

Y*(8,L)C*C16

FC/MC/PC48C

0.98

0.99

1.02

Y*(8,L)C*C20

FC/MC/PC48C

0.98

0.98

1.01

Y*9C*C16

FC/MC/PC48C

0.98

0.99

1.04

Y*9C*C20

FC/MC/PC48C

0.98

1.02

1.06

Y*(8,L)C*C16

HC42

0.98

0.98

1.03

Y*(8,L)C*C20

HC42

0.98

0.98

1.02

Y*9C*C16

HC42

0.98

0.98

1.06

Y*9C*C20

HC42

0.98

0.98

1.04

Y*(8,L)C*B12

HD48

0.98

0.98

1.05

Y*(8,L)C*C16

HD48

0.98

0.98

1.02

Y*(8,L)C*C20

HD48

0.98

0.97

1.01

Y*9C*B12

HD48

0.98

0.96

1.06

Y*9C*C16

HD48

0.98

0.98

1.03

Variable Speed

Coil

T.C.

S.C.

KW

Furnace

 

 

 

 

Y*9C*C20

HD48

0.98

1.01

1.06

Y*(8,L)C*A12

UC36A

0.94

0.92

1.07

Y*(8,L)C*B12

UC36B

0.95

0.94

1.05

Y*9C*B12

UC36B

0.95

0.93

1.04

Y*(8,L)C*C16

UC36C

0.95

0.93

1.03

Y*(8,L)C*C20

UC36C

0.95

0.93

1.02

Y*9C*C16

UC36C

0.95

0.93

1.03

Y*9C*C20

UC36C

0.96

0.98

1.06

Y*(8,L)C*B12

UC42B

0.96

0.95

1.03

Y*9C*B12

UC42B

0.95

0.95

1.07

Y*(8,L)C*C16

UC42C

0.97

0.96

1.01

Y*(8,L)C*C20

UC42C

0.97

0.95

1.00

Y*9C*C16

UC42C

0.96

0.95

1.03

Y*9C*C20

UC42C

0.98

0.99

1.05

Y*(8,L)C*C16

UC48C

0.98

0.99

1.02

Y*(8,L)C*C20

UC48C

0.98

0.98

1.01

Y*9C*C16

UC48C

0.98

0.99

1.03

Y*9C*C20

UC48C

0.98

1.02

1.06

G*9V*B12

FC/MC/PC35B

0.97

0.97

1.07

G*9V*C16

FC/MC/PC35C

0.98

0.97

1.04

G*9V*C20

FC/MC/PC35C

0.98

1.00

1.07

G*9V*A12

FC/MC/PC36A

0.95

0.94

1.08

G*9V*B12

FC/MC/PC36B

0.96

0.94

1.05

G*9V*C16

FC/MC/PC36C

0.96

0.95

1.03

G*9V*C20

FC/MC/PC36C

0.97

0.99

1.06

G*9V*A12

FC/MC/PC37A

0.96

0.94

1.06

G*9V*B12

FC/MC/PC42B

0.96

0.96

1.07

G*9V*C16

FC/MC/PC42C

0.96

0.96

1.03

G*9V*C20

FC/MC/PC42C

0.98

1.01

1.05

G*9V*B12

FC/MC/PC43B

0.98

0.98

1.07

G*9V*C16

FC/MC/PC43C

0.98

0.99

1.06

G*9V*C20

FC/MC/PC43C

0.98

0.99

1.03

G*9V*C16

FC/MC/PC48C

0.98

0.99

1.04

G*9V*C20

FC/MC/PC48C

0.98

1.02

1.06

G*9V*C16

HC42

0.98

0.98

1.06

G*9V*C20

HC42

0.98

0.98

1.04

G*9V*B12

HD48

0.98

0.96

1.06

G*9V*C16

HD48

0.98

0.98

1.03

G*9V*C20

HD48

0.98

1.01

1.06

G*9V*A12

UC36A

0.94

0.93

1.07

G*9V*B12

UC36B

0.95

0.93

1.04

G*9V*C16

UC36C

0.95

0.93

1.03

G*9V*C20

UC36C

0.96

0.98

1.06

G*9V*B12

UC42B

0.95

0.95

1.07

G*9V*C16

UC42C

0.96

0.95

1.03

G*9V*C20

UC42C

0.98

0.99

1.05

G*9V*C16

UC48C

0.98

0.99

1.03

G*9V*C20

UC48C

0.98

1.02

1.06

20

Johnson Controls Unitary Products

Image 20
Contents Technical Guide Physical and Electrical Data ModelJohnson Controls Unitary Products Cooling Capacity With Air Handler Coils PH 18 Seer AC with MVCooling Capacity CZH02411 With Variable Speed Furnaces Total Sensible PH 18 Seer AC with Variable Speed FURNACES2UC36B Cooling Capacity CZH03611With Variable Speed Furnaces FC/MC/PC36C UC36C 35.2 24.5 12.75 9V*C16 Cooling Capacity CZH04811With Variable Speed Furnaces UC60C Cooling Capacity CZH06011 With Variable Speed Furnaces Sound Power Ratings Cooling Performance Data LOW CFM 1-STAGE Operation Cooling Performance Data High CFM 2-STAGE Operation CZH03611 LC*C16 HC42 LC*C20 9C*C16 9C*C20 LC*B12 HD48 9C*B12 1100 1200 1300 9C*C20 HD48 LC*A12 CZH04811 9C*D20 HC60 LC*C16 HD48 LC*C20 9C*C16 9C*C20 1500 1600 1700 Variable Speed Coil Furnace CZH06011 Johnson Controls Unitary Products York Drive Norman, OK

CZH024 THRU 060 specifications

The York CZH024 THRU 060 series represents a pinnacle of engineering in the field of commercial and industrial air conditioning solutions. Designed to meet the dynamic demands of demanding environments, this series combines cutting-edge technology with robust construction, ensuring reliable performance and exceptional energy efficiency.

One of the standout features of the York CZH024 THRU 060 units is their advanced scroll compressor technology. This type of compressor offers superior efficiency and quieter operation compared to traditional reciprocating compressors. By utilizing a scroll design, these units minimize vibration and reduce operational noise, which is particularly beneficial in applications requiring a low-noise environment.

The CZH series is equipped with a range of innovative control technologies, including the York intuitive unit controller, which facilitates straightforward operation and management. This controller allows for flexible scheduling, real-time monitoring, and diagnostics, making it easier for operators to optimize performance and maintain energy efficiency. Additionally, the controller can integrate effortlessly with building management systems, ensuring seamless operation within larger HVAC setups.

Energy efficiency is a key characteristic of the York CZH024 THRU 060 models. They are designed to operate with high SEER (Seasonal Energy Efficiency Ratio) ratings, which translate to lower energy consumption and reduced operating costs for users. The integration of variable speed technology further enhances efficiency by allowing the system to adjust its cooling output based on real-time demand, thus optimizing performance while minimizing energy usage.

Durability and easy maintenance are also focal points of this series. The units are constructed with high-quality materials, including corrosion-resistant finishes and robust insulation, ensuring longevity even in harsh environments. Additionally, maintenance features have been thoughtfully designed to facilitate quick and easy access to components, minimizing downtime and service costs.

In summary, the York CZH024 THRU 060 series stands out for its combination of advanced technologies, high-energy efficiency, and durable construction. With features like scroll compressors, intuitive control systems, and a design oriented toward easy maintenance, these units are well-suited for a variety of commercial and industrial applications. They exemplify York's commitment to providing reliable, eco-friendly, and effective climate control solutions.