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MOQ: | 10 |
Price: | USD 300~800/unit |
Standard Packaging: | Carton |
Delivery Period: | 30 days |
Payment Method: | T/T |
Supply Capacity: | 1000EU/M |
The cooling performance of a parking air conditioner directly impacts its energy consumption. Traditional parking air conditioners typically employ conventional compressors for cooling. However, NEWBASE's advanced high-efficiency cooling technology utilizes variable-frequency compressors. This variable-frequency technology automatically adjusts the compressor's operating frequency based on changes in the cabin temperature, enabling more precise temperature control. Not only does this approach facilitate rapid cooling, but it also reduces energy consumption once the set temperature is achieved, avoiding the energy waste associated with the frequent start-stop cycles of traditional compressors.
With advancements in technology, intelligent temperature control systems have found widespread application in parking air conditioners. Equipped with sensors to monitor both indoor and outdoor temperatures in real-time, these intelligent systems can automatically adjust the air conditioner's operating status in response to environmental changes. For instance, when the outdoor temperature is low, the system reduces the air conditioner's operating power to conserve energy. Some intelligent systems even offer remote control via mobile applications, allowing vehicle owners to activate the air conditioner before entering the vehicle, thereby avoiding prolonged high-energy-consumption operation.
During operation, traditional parking air conditioners often introduce external air into the cabin, which can increase energy consumption. By optimizing in-cabin air circulation, NEWBASE's parking air conditioners effectively reduce energy usage. Advanced systems employ air recirculation technology that recycles the cooled air within the cabin, minimizing the intake of external air and thus reducing the cooling load. Regular cleaning of the cabin's air filters also ensures proper air circulation, enhancing the overall efficiency of the air conditioning system.
Model No.
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|
NBEPAC-2.5A
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NBEPAC-2.5B
|
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Refrigerating Capacity
|
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2500Wats, 8600Btu/h
|
|
||
Refrigerant
|
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R134a/1.85LBS
|
|
||
Compressor
|
Displacement
|
13cc/rev
|
|
||
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Condensate oil
|
Zero Easter 68SL/100cc
|
|
||
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Speed
|
2000-5500 RPM
|
|
||
Evaporator |
Type
|
Copper tube aluminum fin
|
|
||
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Air flow rate
|
550m³/h
|
|
||
Condenser |
Type
|
Parallel flow
|
|
||
|
Air flow rate
|
1800m³/h
|
|
||
Weight(kg)
|
|
76 (condenser) ;16 (Evaporator)
|
|
||
Dimension
|
|
190*177.5*45 (Condenser)
82.5*107.5*37.5 (Evaporator) |
|
||
Temp. control range
|
|
15-30℃adjustable
|
|
||
Defrosting temp.
|
|
1-2℃
|
|
||
Blower speed
|
|
3- grades
|
|
||
Compound switch
|
|
off at 2.5Mpa
|
|
||
Pressure protection
|
|
off at 0.05Mpa
|
|
![]() |
MOQ: | 10 |
Price: | USD 300~800/unit |
Standard Packaging: | Carton |
Delivery Period: | 30 days |
Payment Method: | T/T |
Supply Capacity: | 1000EU/M |
The cooling performance of a parking air conditioner directly impacts its energy consumption. Traditional parking air conditioners typically employ conventional compressors for cooling. However, NEWBASE's advanced high-efficiency cooling technology utilizes variable-frequency compressors. This variable-frequency technology automatically adjusts the compressor's operating frequency based on changes in the cabin temperature, enabling more precise temperature control. Not only does this approach facilitate rapid cooling, but it also reduces energy consumption once the set temperature is achieved, avoiding the energy waste associated with the frequent start-stop cycles of traditional compressors.
With advancements in technology, intelligent temperature control systems have found widespread application in parking air conditioners. Equipped with sensors to monitor both indoor and outdoor temperatures in real-time, these intelligent systems can automatically adjust the air conditioner's operating status in response to environmental changes. For instance, when the outdoor temperature is low, the system reduces the air conditioner's operating power to conserve energy. Some intelligent systems even offer remote control via mobile applications, allowing vehicle owners to activate the air conditioner before entering the vehicle, thereby avoiding prolonged high-energy-consumption operation.
During operation, traditional parking air conditioners often introduce external air into the cabin, which can increase energy consumption. By optimizing in-cabin air circulation, NEWBASE's parking air conditioners effectively reduce energy usage. Advanced systems employ air recirculation technology that recycles the cooled air within the cabin, minimizing the intake of external air and thus reducing the cooling load. Regular cleaning of the cabin's air filters also ensures proper air circulation, enhancing the overall efficiency of the air conditioning system.
Model No.
|
|
NBEPAC-2.5A
|
NBEPAC-2.5B
|
||
Refrigerating Capacity
|
|
2500Wats, 8600Btu/h
|
|
||
Refrigerant
|
|
R134a/1.85LBS
|
|
||
Compressor
|
Displacement
|
13cc/rev
|
|
||
|
Condensate oil
|
Zero Easter 68SL/100cc
|
|
||
|
Speed
|
2000-5500 RPM
|
|
||
Evaporator |
Type
|
Copper tube aluminum fin
|
|
||
|
Air flow rate
|
550m³/h
|
|
||
Condenser |
Type
|
Parallel flow
|
|
||
|
Air flow rate
|
1800m³/h
|
|
||
Weight(kg)
|
|
76 (condenser) ;16 (Evaporator)
|
|
||
Dimension
|
|
190*177.5*45 (Condenser)
82.5*107.5*37.5 (Evaporator) |
|
||
Temp. control range
|
|
15-30℃adjustable
|
|
||
Defrosting temp.
|
|
1-2℃
|
|
||
Blower speed
|
|
3- grades
|
|
||
Compound switch
|
|
off at 2.5Mpa
|
|
||
Pressure protection
|
|
off at 0.05Mpa
|
|