IP23/IP55 Side mounted industrial electric cabinet air cooler

1.Side-mounted industrial cabinet air cooler, 2.Flexible installation, 3.With digital temperature controller - details see: https://www.machineto.com/ip23-ip55-side-mounted-industrial-electric-cabinet-air-cooler-10223094
Condition:NewType:Cabinet Air ConditionerPlace of Origin:Jiangsu China (Mainland)Brand Name:Langji
Model Number:SAS130-1,SAS135-1Operating Voltage:OtherMounting:side mountingCertification:CE
After-sales Service Provided:Overseas service center availableRated Voltage:220VAC±15% 50Hz/60HzCooling Working Temperature:+20~+55 Degrees CelsiusHeating Working Temperature:-40~+15 Degrees Celsius
Cooling Capacity:3000W~3500WWeight:54Kgs/66KgsColor:RAL7035IP Grade:IP23/IP55
Noise:56dB~60dBDimension(W*H*D):555*1370*225mm  
IP23/IP55 Side mounted industrial electric cabinet air cooler
contact supplier for IP23/IP55 Side mounted industrial electric cabinet air cooler


Side Mounted Industrial Cabinet Air Conditioner

Features:

Scope: electric equipment control box, battery compartment, and telecommunication equipment and other pertinent equipments, enclosed area climate control such as wireless communication cabinet, battery cabinet, industry control cabinet etc.

Installation instruction:

Parameter Table:

Design Diagram:

Mass Production:

Application:

Related Products:

Certification:

How to Determine Correct Model of Cabinet cooler

Key Point---Calculating Heat Load for your Enclosure
To determine the correct model for your application, it is first necessary to determine thetotal heat loadto which the control panel is subjected. This total heat load is the combination of two factors — heat dissipated within the enclosure and heat transfer from outside into the enclosure.

Steps of Calculating Btu/hr.:
1. First, determine the approximate watts of heat generated within the enclosure. Watts x 3.41 = Btu/hr.

2. Then, calculate outside heat transfer as follows:
a. Determine the area in square feet exposed to the air, ignoring the top of the cabinet.
b. Determine the temperature differential between maximum surrounding temperature and desired internal temperature. Then, using the Temperature Conversion Table (below), determine the Btu/hr./ft.2for that differential. Multiplying the cabinet surface area times Btu/hr./ft.2provides external heat transfer in Btu/hr.

3. Add internal and external heat loads to get total heat load.

Temperature Conversion Table

Temperature
Differential ° F
Btu/hr/ft.2
51.5
103.3
155.1
207.1
259.1
3011.3
3513.8
4016.2


Example:
Internal heat dissipation: 650 Watts or 2216 Btu/hr.
Cabinet area: 40 ft.2
Maximum outside temperature: 110°F
Desired internal temperature: 95°F
The conversion table (above) shows that a 15°F temperature differential inputs 5.1 Btu/hr./ft.2

40 sq. ft. x 5.1 Btu/hr./ft.2= 204 Btu/hr. external heat load.

Therefore, 204 Btu/hr. external heat load plus 2216 Btu/hr. internal heat load = 2420 Btu/hr. total heat load or Btu/hr. refrigeration required to maintain desired temperature.
In this example, the correct choice is a 2500 Btu/hr. Cabinet Cooler System.

More details, pls Do Not Hesitate to contact us !

IP23/IP55 Side mounted industrial electric cabinet air cooler
Packaging Detail:1 PC/Carton with foam
Delivery Detail:25 Days After Deposit

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