Mbsmpro.com, ZB38, 5HP, R404, MBP

ZB38 5HP R404 MBP correspond à un compresseur scroll Copeland Emerson, modèle ZB38KQE ou ZB38KCE, puissance nominale 5 HP, conçu pour le fluide frigorigène R404A et destiné au service moyenne température (MBP = Medium Back Pressure).

Caractéristiques typiques:

  • Type: Scroll hermétique Copeland série ZB38 (Emerson).
  • Puissance: 5 HP, triphasé 380–400 V (suivant version TFD-551 / -558).
  • Fluide: optimisé pour R404A (souvent aussi compatible R507A, parfois R134a selon la plaque).
  • Application: réfrigération à température moyenne (MBP / MHBP), vitrines réfrigérées, chambres froides positives, etc.
  • Déplacement volumétrique: environ 14,4 m³/h; puissance frigorifique autour de 7–11 kW selon conditions (Te/Tc).

Signification de ton code:

  • ZB38 = série de compresseurs scroll réfrigération Copeland, taille « 38 ».
  • 5HP = puissance moteur nominale.
  • R404 = fluide R404A prévu pour ce modèle.
  • MBP = utilisation en température moyenne (évaporation typique -10 °C à +5 °C pour chambres froides positives, conservateurs…).

Si tu précises les conditions de travail (Te, Tc, sous-refroidissement, surchauffe), il est possible d’estimer la capacité frigorifique exacte et vérifier si ce compresseur est adapté à ta chambre froide ou ton évaporateur actuel.

In commercial refrigeration, the compressor is more than just a component; it is the engine that decides whether a cold room runs smoothly or becomes a constant source of service calls. The ZB38 5HP R404A MBP scroll compressor is one of those models that technicians encounter again and again in supermarkets, butcheries, bakeries and restaurant cold rooms. Its popularity comes from a balance of capacity, efficiency and robustness that fits the core needs of medium-temperature systems.

What ZB38 5HP R404A MBP Really Means

When technicians talk about “ZB38 5HP R404A MBP”, they are compressing a lot of technical information into a short code.

  • ZB38: Indicates a scroll refrigeration compressor series and displacement class, typically around 5 HP in the manufacturer’s lineup.
  • 5HP: The nominal motor power, placing it in the range commonly used for medium-sized cold rooms and supermarket display lines.
  • R404A: The main refrigerant for which the compressor is optimized, historically a standard in commercial refrigeration despite ongoing phase-down discussions in many markets.
  • MBP (Medium Back Pressure): Specifies that the compressor is designed for medium-temperature applications such as positive-temperature cold rooms, fresh products, dairy and beverages, rather than deep-freeze low-temperature duties.

This decoding matters because each part of the designation tells the technician where the compressor can work safely, which refrigerant is acceptable and what kind of evaporating temperatures the system can handle without pushing the compressor beyond its envelope.

Typical Applications in the Field

A 5HP R404A MBP scroll compressor naturally positions itself in the heart of medium-sized commercial installations.

  • Cold rooms for fresh meat, fruits and vegetables, where evaporating temperatures often range roughly between −10∘C−10∘C and +5∘C+5∘C, depending on the product and humidity control strategy.
  • Supermarket wall cases and island cabinets for dairy, delicatessen and beverages, where multiple evaporators may be connected to a single condensing unit based on the ZB38 platform.
  • Food-service equipment in hotels, central kitchens and bakeries, where reliability and quick recovery after door openings are more important than extreme low temperatures.

In these contexts, the ZB38 class compressor offers enough capacity to manage a significant thermal load while remaining compact, which is crucial when equipment must fit on rooftops, balconies or tight machine rooms in dense urban environments.

Why Scroll Technology Dominates This Segment

Scroll compressors like the ZB38 have progressively replaced many traditional reciprocating models in MBP applications.

  • Fewer moving parts reduce mechanical noise, vibration and wear, which in practice often means fewer mechanical failures and smoother operation.
  • The continuous compression process delivers stable mass flow, improving evaporator performance and temperature control inside cold rooms and cabinets.
  • The compact, hermetic construction simplifies installation, reduces the risk of leaks at mechanical joints and helps manufacturers build more compact condensing units.

For technicians, scrolls are often easier to handle: electrical connections are straightforward, and the absence of complex valve mechanisms or external crankcase components shortens installation and troubleshooting time when compared with older piston designs.

Key Operating Parameters Technicians Monitor

Working with a 5HP R404A MBP compressor requires attention to several practical parameters, even if the data sheet is not in hand.

  • Evaporating temperature: Usually in the medium range, technicians watch suction pressure to ensure it stays within the recommended envelope, avoiding both overloading and poor oil return.
  • Condensing temperature: Condenser cleanliness, ambient temperature and fan control directly impact discharge pressure, compressor current and overall energy consumption.
  • Superheat and subcooling: Correct expansion valve setting and a stable liquid line temperature help prevent liquid slugging at start-up and maintain the right mass flow through the evaporator.

In practice, a well-adjusted system keeps the compressor within its design envelope during the hottest days of summer, which is often where installations in Mediterranean climates are pushed to their limits.

Installation and Start-Up Best Practices

Even the most robust compressor can fail prematurely if basic installation guidelines are ignored.

  • Cleanliness: Piping must be brazed with nitrogen purging and thoroughly evacuated to remove moisture and contaminants that can degrade oil and valves.
  • Oil management: Proper piping design, especially at the suction line and oil traps on vertical risers, ensures oil returns reliably to the compressor shell.
  • Electrical checks: Before energizing, technicians confirm supply voltage, phase sequence and proper overload protection, including verification of contactor and breaker sizing.

A disciplined start-up procedure—monitoring pressures, temperatures and compressor current over the first hour—usually reveals whether the system is healthy or if there are hidden issues like undersized condensers or incorrect charge.

Maintenance and Diagnostic Considerations

In daily practice, maintenance teams use a few key indicators to assess the health of a scroll compressor like the ZB38.

  • Noise and vibration: Changes in sound signature can announce mechanical damage, liquid return or severe gas under-cooling at the compressor.
  • Discharge line temperature: Excessive discharge temperature often points to high condensing pressure, low refrigerant charge or poor suction gas cooling.
  • Oil color and level (if visible through an indicator): Darkened or acidic oil is a clear warning that the system has experienced overheating or contamination, and that deeper corrective action is required.

Regular cleaning of condensers, checking fan operation and verifying that defrost cycles are effective in evaporators can significantly extend compressor life by keeping operating conditions within design limits.

Where This Technology Is Heading

Although R404A has long been the standard for MBP commercial applications, environmental regulations are pushing the market toward lower-GWP alternatives and redesigned compressors.
Manufacturers are gradually adapting similar 5HP scroll platforms to new blends with different pressures and glide characteristics, while technicians increasingly need to be familiar with multiple refrigerants and their specific charge and oil requirements.
For users and contractors, this transition highlights the importance of good documentation, training and practical feedback from the field—an area where communities of technicians, independent platforms such as mbsmgroup.tn and projects like mbsm.pro, mbsmgroup and mbsmpro.com can play a useful role in sharing real-world experience and solutions.

Suggested exclusive images for this topic (you can create or photograph them yourself):

  • A close-up of a 5HP scroll compressor label showing model code, refrigerant and electrical data.
  • A medium-temperature cold room condensing unit with the compressor, condenser and control box visible on a rooftop or service balcony.
  • A technician’s hand holding clamp meter and manifold gauges connected to a running MBP R404A condensing unit.
  • A clean, well-lit cold room interior with product on shelves, showing air coolers on the ceiling and neat piping.
  • A side-by-side photo of a scroll compressor and an older reciprocating unit on a workshop floor, demonstrating the difference in size and design.



Mbsm.pro, Comprehensive Guide to Danfoss Compressors: Specifications, Applications, and Selection Tips

Danfoss compressors are widely recognized for their reliability and efficiency in various refrigeration and air conditioning systems. This article provides a detailed overview of the specifications of different Danfoss compressor models, focusing on capillary length, oil quantity, horsepower, and their respective applications.

Introduction to Danfoss Compressors

Danfoss is a global leader in engineering solutions, particularly in the field of refrigeration and air conditioning. Their compressors are designed to meet the demanding requirements of both commercial and residential applications. The compressors are known for their durability, energy efficiency, and low noise levels.

Key Specifications

The following table outlines the key specifications of various Danfoss compressor models:

Capillary Length (Feet) Capillary Length (cm) Capillary NO Oil Hp (Horsepower) Compressor No
4 Feet 121.92 cm 0.26 150 ml 1/14 TL2A
4 Feet 121.92 cm 0.26 150 ml 1/12 TL2.5A
4 Feet 121.92 cm 0.26 150 ml 1/12 TL2.5B
4 Feet 121.92 cm 0.26 150 ml 1/14 PW3K6
4 Feet 121.92 cm 0.26 150 ml 1/12 PW3K7
6 Feet 182.88 cm 0.26 175 ml 1/10 PW3.5K7
6 Feet 182.88 cm 0.26 175 ml 1/10 TL3B
7.5 Feet 228.6 cm 0.28 200 ml 1/8 TL4B
7.5 Feet 228.6 cm 0.28 200 ml 1/8 TL4A
7.5 Feet 228.6 cm 0.28 200 ml 1/8 PW4.5K9
7.5 Feet 228.6 cm 0.28 200 ml 1/8 PW4.5K7
7.5 Feet 228.6 cm 0.28 200 ml 1/8 PW4.5K11
7.5 Feet 228.6 cm 0.28 200 ml 1/8 TFS4AT
9 Feet 274.32 cm 0.31 250 ml 1/6 TL5A
9 Feet 274.32 cm 0.31 250 ml 1/6 PW5.5K11
9 Feet 274.32 cm 0.31 250 ml 1/6 PW5.5K9
9 Feet 274.32 cm 0.31 250 ml 1/6 TFS5AT
9 Feet 274.32 cm 0.31 250 ml 1/6 FR6B
10 Feet 304.8 cm 0.31 275 ml 1/5 FR7.5A
10 Feet 304.8 cm 0.31 275 ml 1/5 FR7.5B
10 Feet 304.8 cm 0.31 300 ml 1/4 FR8.5A

Detailed Analysis

  1. Capillary Length: The capillary length varies from 4 feet (121.92 cm) to 10 feet (304.8 cm). The length of the capillary tube is crucial as it affects the refrigerant flow and system efficiency.
  2. Capillary Number: This parameter indicates the internal diameter of the capillary tube, which influences the refrigerant flow rate. The capillary number ranges from 0.26 to 0.31.
  3. Oil Quantity: The oil quantity in the compressors ranges from 150 ml to 300 ml. Proper oil levels are essential for lubrication and cooling of the compressor components.
  4. Horsepower (Hp): The horsepower of the compressors varies from 1/14 Hp to 1/4 Hp. This indicates the power output and suitability for different cooling capacities.
  5. Compressor Number: Each compressor model has a unique identifier, such as TL2A, PW3K6, etc. These numbers help in identifying the specific model and its application.

Applications

Danfoss compressors are used in a variety of applications, including:

  • Commercial Refrigeration: Models like TL2A and TL2.5A are commonly used in small commercial refrigeration units.
  • Residential Air Conditioning: Compressors such as PW3K6 and PW3K7 are suitable for residential air conditioning systems.
  • Industrial Cooling: Higher capacity models like FR7.5A and FR8.5A are used in industrial cooling applications.

Conclusion

Danfoss compressors offer a wide range of models to meet diverse refrigeration and air conditioning needs. Understanding the specifications, such as capillary length, oil quantity, and horsepower, is essential for selecting the right compressor for your application. With their robust design and efficient performance, Danfoss compressors continue to be a preferred choice in the industry.

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Bitzer, Compressor, S6F-30.2Y-40P, Compressor Selection, Semi-hermetic Reciprocating, 1450 min-1 , 101,1 (LP) , 30hp

BITZER is raising the bar in terms of technology and capacity for expanded low temperature applications with the 2nd generation of 2-stage compressors. This series is the result of extensive research on the basis of years of experience in the construction of highly efficient and solid reciprocating compressors. The gas flow control and working valves are specially adapted for low temperature applications.

  • Displacement at 1450 min-1 : 101,1 (LP) 50,5 (HP)
  • Number of cylinders : 6
  • Oilcharge : 4,75 dm3

Displacement (1450 RPM 50Hz):101.10 / 50.50 m^3/h Displacement (1750 RPM 60Hz):122.02 / 60.95 m^3/h

The Bitzer Compressor is high quality!
Displacement (1450 RPM 50Hz):101.10 / 50.50 m^3/h
Displacement (1750 RPM 60Hz):122.02 / 60.95 m^3/h
No. of cylinder x bore LP/HP x stroke:6+6 x 82/ 82 mm x 55 mm
Max. pressure (LP/MP/HP):19 / 19 / 28 bar
Connection suction line:42 mm – 1 5/8 inch
Connection discharge line:35 mm – 1 3/8 inch
Oil type R404A/R507A:BSE32 (Standard)
Oil type R448A/R449A:BSE32 (Standard)
Oil type R22:B5.2 (Option) We can also provide the following models
4JTE-15K
GYD80485VAYB4
GED60235VLB332
GMD60137VBYR632
GED60485VBYR3-1
CSH7573-70Y-40P
GYD80182VLYB632
GYD60385VLYR2-2
GED80154VLR332
GYU80295VLR4-2
GSU60120VLB6-2
GED60137VAYB3-1
GUU60154VLR532
GUD80295VLR232
GSD80295VLR6-1
GTU60137VLYB3-1
GUD60137VBYR5-1
GYD80235VBYB332
GYD60421VAYR332
GMD60295VBR3-1
GED80154VBYB6
4NEH-14-40S
GMU60154VLY
GYD60154VAB4-2
GYD80182VAYR4-2
GYD80421VBR5-1
GYD60385VLYR4-1
4TE-9.F3Y-40S
GMD60182VBYB3-2
GMD80120VLR232
GUD60120VBYR5-2
GSD60154VAYR232
GMD60154VBYR632
44EES-12-40S
GMD60154VBB432
GUD80421VWR4-2
GYD80385VAYR2-2
GTD60385VLB632
GED60235VLB2
GED60154VAYR4
GSD80421VWR5-2
GUD60421VBR5
GYD80182VBYB5-1
GED60295VBB5
GED80421VAR4-1
GED60385VLYB3
GYU80421VLR2
GSD80485VBB5-1
GED60120VLB2
GUD60421VBR332
GTD60154VAB4-2
GED60421VAYB6-1
GMD60485VBB5-1
GSD60485VAYR4
GED80295VLYR6-1
GSD60235VAYB232
GTD60385VBYR3-1
GUD60154VBB3-2
GUD80295VWB6-2
GED60421VAR5
GMD80421VBR4
GED80182VLR532
GSD60154VBYB6-1
GTD80421VBYR332
GSD60182VAYB4-1
GUD80485VWYR5-2
GSU80295VLYR6-1
GSD80182VLYR2-2
GSU80385VLB432
GED80295VAY
GED80295VAB3-2
GYD60120VAR4

With liquid subcooling 50Hz (R404A/R507A)

Compressor type Cond.temp. Qo / Pe Evaporating temperature °C
[°C] -25 -30 -35 -40 -45 -50 -55 -60 -65 -70
S6F-30.2Y 30 Qo 43400 37400 31750 26500 21700 17420 13690 10540 7920 5800
Pe 2,53 0,65 8,78 16,94 15,15 13,42 11,77 10,20 8,74 7,40
35 Qo 42500 36600 31050 25900 21200 17030 13420 10340 7780 5680
Pe 3,85 1,86 9,89 7,94 6,04 4,21 12,45 10,78 9,23 7,80
40 Qo 41500 35700 30300 25300 20700 16680 13170 10150 7590
Pe 25,20 23,10 21,01 18,96 16,95 15,00 13,14 11,37 9,72
45 Qo 40450 34800 29550 24700 20300 1660 12930 9920
Pe 26,59 24,37 22,16 19,98 17,86 15,80 13,83 11,96
50 Qo 39500 34000 28850 24100 19870 16060 12650
Pe 28,07 25,69 23,33 21,01 18,75 6,57 14,49
55 Qo 38800 33250 28200 23600 19490 15740
Pe 29,64 27,06 24,51 22,03 19,63 17,32

Qo – Cooling capacity [Watt], Pe – Power consumption [kW]

Without liquid subcooling 50Hz (R404A/R507A)

Compressor type Cond.temp. Qo / Pe Evaporating temperature °C
[°C] -25 -30 -35 -40 -45 -50 -55 -60 -65 -70
S6F-30.2Y 30 Qo 38050 31700 26050 21000 16620 12880 9790 7280 5300 3760
Pe 1,26 18,81 16,61 14,64 12,90 11,37 10,02 8,86 7,85 7,00
35 Qo 36000 29950 24500 19710 15570 12070 9180 6840 4980 3510
Pe 22,11 19,66 17,41 15,37 13,53 11,88 10,42 9,13 8,02 5,72
40 Qo 33800 28000 22900 18390 14530 11280 8590 6400 4620
Pe 22,95 20,53 18,26 16,15 14,20 12,42 10,82 9,41 8,18
45 Qo 31450 26050 21250 17080 13510 10500 8000 5920
Pe 23,82 21,42 19,12 16,94 14,89 13,00 11,26 9,71
50 Qo 28950 24000 19590 15770 12490 9710 7370
Pe 24,72 22,31 19,98 17,74 15,61 13,61 11,76
55 Qo 26400 21900 17890 14430 11440 8880
Pe 25,67 23,19 20,80 18,52 16,34 14,27

Qo – Cooling capacity [Watt], Pe – Power consumption [kW]

Compressor typeDisplacement at 1450 min-1Number of cylindersOil chargeWeightPipe connectionsMotorMax. operating currentMax. power consumptionStarting current(lockedrotor)LPHPDLSLdm3KgmmpoucemmpouceAmpkWAmp. Y/YYS6F-30.2Y101,150,567.752343513/842
5415/8
21/8380 ..420YY/3/50
440 ..480 YY/3/605131,9135/220