Description | Details |
---|---|
Available Quantity | 10 |
Model | HLJ075T7LC6 |
Condition | New |
Manufacturer | Danfoss |
Asset Number | KSC1230 / 19 |
Guarantee or ASIS | 1. HIGH CONFIDENCE ITEM: We will offer a 100% 14 Day money back less S&H. |
Inspections - Yellow Tag | 1. New in Box |
Packaging Cost | 1.1 Cardboard $10 |
Asset #
KSC1230 / 19
Available Quantity
10
Inspections - Yellow Tag
1. New in Box
Condition
New
Guarantee or ASIS
1. HIGH CONFIDENCE ITEM: We will offer a 100% 14 Day money back less S&H.
The Danfoss Inverter Scroll Compressor HLJ075T7LC6 is part of Danfoss's innovative range of scroll compressors designed for commercial refrigeration and air conditioning applications. Danfoss has a history of over 80 years in providing energy-efficient solutions for the climate and refrigeration sectors. The HLJ series compressors are engineered to meet the demands of modern cooling applications, focusing on energy efficiency and reliability. The HLJ075T7LC6 model is particularly noted for its variable speed capability, allowing it to adjust its capacity according to the cooling load requirements. This feature enhances performance, reduces energy consumption, and minimizes wear and tear over time. The primary purpose of the HLJ075T7LC6 compressor is to provide consistent and efficient cooling in various environments, including supermarkets, cold storage warehouses, and commercial HVAC systems. Unique features of this compressor include: - Inverter technology for improved energy efficiency. - Quiet operation due to the scroll design. - High reliability and longer service life compared to traditional compressors. - Compact design facilitating easy installation in tight spaces. These attributes position the HLJ075T7LC6 as an ideal choice for industries that require efficient and reliable cooling solutions.
Cooling capacity: 7.5 kW Refrigerant: R410A Voltage: 230V Frequency: 50Hz Phase: Single-phase Weight: 80 kg Sound level: Low noise operation
Packaging Cost
1.1 Cardboard $10
Appraised Value
$695.00
Payment Methods