İlgili Ürün

 

DVM S2

Küçük boyut, büyük kapasite,
verimlilik ve güvenilirlik.
Tüm ihtiyacınız tek sistemde.
 

DVM S Eco

Olağanüstü performans ile kompakt tasarım
 

DVM S Water

Enerji, alan ve maliyet tasarrufu yaparken
kusursuz konfor sağlar.

Enerji Tasarrufu

Büyütülmüş Isı Eşanjörü

Hızlı ısıtmak için fazla alan

Isı Eşanjörü hızlı ısıtmak için %36,2
fazla alana¹ sahiptir.
Two different sized conventional heat exchangers are compared to two DVM S2 heat exchangers. The 28kW DVM S2 has a 177.6 m² heat exchanger, 36.2% larger than the conventional 28kW model with 130.4 m². The 56kW DVM S2 has a 241.7 m² heat exchanger, 23.7% larger than the conventional 56kW model at 195.3 m². Two different sized conventional heat exchangers are compared to two DVM S2 heat exchangers. The 28kW DVM S2 has a 177.6 m² heat exchanger, 36.2% larger than the conventional 28kW model with 130.4 m². The 56kW DVM S2 has a 241.7 m² heat exchanger, 23.7% larger than the conventional 56kW model at 195.3 m².
Çentik Yapılı Fan

Hava direncini azaltın

Bir kartal baykuşunun kanadından esinlenerek tasarlanan bu ürün, elektriğin yalnızca %68'ini² tüketirken %11 daha fazla hava üretir.
A close-up of a fan blade indicates three-quarters is made with large serrations and one-quarter with small serrations. The tips of two fan blades are compared on the right. The conventional fan creates a large vortex, while the DVM S2 creates a minimal vortex for stable operation. A close-up of a fan blade indicates three-quarters is made with large serrations and one-quarter with small serrations. The tips of two fan blades are compared on the right. The conventional fan creates a large vortex, while the DVM S2 creates a minimal vortex for stable operation.
Aktif AI Basınç Kontrolü³

Yoğuşma basıncını otomatik olarak ayarlayın

Her kurulum ortamın durumuna uygun ve enerji kullanımını azaltacak şekilde ayarlanır.
Two meeting rooms are equipped with cassette air conditioners. The air conditioner at left blows a gentle stream of air with a 15% energy-saving arrow, and the air conditioner at right blows cool air with a 20% time-saving arrow. Two meeting rooms are equipped with cassette air conditioners. The air conditioner at left blows a gentle stream of air with a 15% energy-saving arrow, and the air conditioner at right blows cool air with a 20% time-saving arrow.

Aktif AI Teknolojileri

Gelişmiş Flaş Enjeksiyonu

Yeni bir tutarlı konfor çağını mümkün kılmak
Dünyanın büyük kapasitesini sağlar⁴.

Flaş Enjeksiyonu Üçlü Profil Kaydırma ve Optimum DSH Kontrolü ile birleştirir.
A close-up view of a compressor explains the Flash Injection system. Red arrows trace the flow of hot refrigerant returning to the compressor and then moving upward, while blue arrows follow cold refrigerant being injected back into the Triple Profile Scroll. Two line graphs contrast Conventional Control with Optimal Discharge Superheat (DSH) control. The x-axis represents outdoor temperature, and the y-axis represents the degree of DSH. As outdoor temperature rises, the degree of DSH for conventional control remains constant, while the DSH for optimal control decreases exponentially. A close-up view of a compressor explains the Flash Injection system. Red arrows trace the flow of hot refrigerant returning to the compressor and then moving upward, while blue arrows follow cold refrigerant being injected back into the Triple Profile Scroll. Two line graphs contrast Conventional Control with Optimal Discharge Superheat (DSH) control. The x-axis represents outdoor temperature, and the y-axis represents the degree of DSH. As outdoor temperature rises, the degree of DSH for conventional control remains constant, while the DSH for optimal control decreases exponentially.
Aktif AI Teknolojileri

Soğutmayı otomatik olarak optimize edin

Aktif AI Basınç Kontrolü³/Buz çözme/ Soğutucu Akışkan Analizinden oluşur,
soğutmayı otomatik olarak optimize eder.
A dataflow diagram of a Deep Learning Algorithm outlines four stages: Sensing, Hidden Layer 1, Hidden Layer 2, and Decision. Arrows from sensing points flow to hidden layers, then lead to the decision stage. Corrections are made at various points along the way. A dataflow diagram of a Deep Learning Algorithm outlines four stages: Sensing, Hidden Layer 1, Hidden Layer 2, and Decision. Arrows from sensing points flow to hidden layers, then lead to the decision stage. Corrections are made at various points along the way.

Dayanıklılık

Sağlam Çerçeve

Şok & titreşimden kaynaklanan hasarı önler

Yeni Sağlam Çerçeve güçlendirilmiş köşelere %25⁵ kalın kenarlara ve zarif bir şekle
sahiptir.
There is a cross-section of the DVM S2 unit. Next to it is a 3D square with four highlighted edges, representing its robust frame. The reinforced corners, thicker sides and a refined shape ensure incredible durability across the entire body. At the bottom, two frame types are compared: DVM S2 frames support 1.0T with 130% more stiffness than conventional frames that support 0.8T. There is a cross-section of the DVM S2 unit. Next to it is a 3D square with four highlighted edges, representing its robust frame. The reinforced corners, thicker sides and a refined shape ensure incredible durability across the entire body. At the bottom, two frame types are compared: DVM S2 frames support 1.0T with 130% more stiffness than conventional frames that support 0.8T.
Durafin™ Ultra

Kalıcı koruma, optimum performans Durafin™ Ultra

Isı Eşanjörünü pastan koruyan bir korozyon önleyici katmana ve bir hidrofilik katmana sahiptir.
The Samsung DVM S2 heat exchanger is shown next to a close-up of its Durafin™ Ultra's layers, detailing each materials used. The top hydrophilic layer is made of acrylic resin, the middle anti-corrosive layer is made of epoxy acrylic, and the base layer is made of raw aluminum material. The Samsung DVM S2 heat exchanger is shown next to a close-up of its Durafin™ Ultra's layers, detailing each materials used. The top hydrophilic layer is made of acrylic resin, the middle anti-corrosive layer is made of epoxy acrylic, and the base layer is made of raw aluminum material.

Çeşitli İç Üniteler

  1. Bir DVM S2 ve geleneksel dış mekân ünitesinin 33,6kW modellerinin karşılaştırılması sonucunda Samsung tarafından ölçülen değerlere dayanmaktadır.

  2. Tırtık ve normal kenarlar tarafından oluşturulan girdap.

  3. Kurulum koşullarına bağlı olarak isteğe bağlı kullanılabilir. Ayrıntılı bilgi için kurulum kılavuzuna bakın.

  4. Samsung 14.400cc/sn soğutucu döngüsü sağlarken (=90cc (yer değiştirme hacmi) x 160 rps (saniyedeki devir sayısı)), A Şirketi 12.480cc/sn (= 96cc x 130rps), B Şirketi 14.080cc/sn (= 88cc x 160rps) ve C Şirketi 12.320cc/sn (= 88cc x 140rps) soğutucu döngüsü sağlar.

  5. Siemens NX Nastran 1867 simülasyonu kullanılarak kurum içinde gerçekleştirilen bir teste dayanır.