EMI specifications S2H System Performance, Hspf C.O.P

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S2H System Performance

WLH

WLH

S2H

S2H / WLH System Performance

MODEL

COOLING

HEATING

 

 

 

S2H

(Outdoor)

Indoor Units

Btuh

SEER SHR EER

Btuh

HSPF C.O.P.

9900

WLH09 + WLH09

18,600

13.0

.80

12.2

16,000

7.7

3.3

2200

WLH12 + WLH12

22,600

13.0

.72

11.9

20,000

7.7

3.3

9200

WLH09 + WLH12

20,600

13.0

.76

12.0

18,000

7.7

3.3

CAH

CAH

S2H

S2H / CAH System Performance

MODEL

COOLING

HEATING

 

 

 

S2H

(Outdoor)

Indoor Units

Btuh

SEER SHR EER

Btuh

HSPF C.O.P.

9900

CAH12 + CAH12

18,600

13.0

79

11.7

15,700

7.7

3.1

2200

CAH12 + CAH12

22,600

13.0

.75

11.6

20,000

7.7

3.2

9200

CAH12 + CAH12

20,600

13.0

.77

11.6

18,000

7.7

3.1

Enviromaster International LLC

Web: http://www.enviromaster.com

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Contents At i o ns and Performance Specifications may change without notice S2H dimensions and specificationsHspf C.O.P S2H System PerformanceUNH S2H Condensers EMI’s High Seer Product Line

S2H specifications

EMI S2H is a state-of-the-art satellite communication system designed to enhance global connectivity and deliver superior services for various applications. This innovative technology has garnered attention for its versatility, reliability, and efficiency, catering to both government and commercial sectors.

One of the standout features of the EMI S2H is its high-throughput satellite capabilities, which enable it to deliver significant data bandwidth. This is particularly beneficial for applications that require real-time data transmission, such as video conferencing, live broadcasting, and emergency response communications. With its advanced frequency reuse technology, EMI S2H can efficiently utilize available bandwidth, thereby maximizing the amount of data transmitted while minimizing latency.

In terms of technologies, EMI S2H is built on a robust architecture that integrates various advanced components. The system employs multi-beam technology, allowing it to cover wide geographical areas while focusing on specific regions with high demand. This targeted approach not only improves service quality in densely populated areas but also ensures that remote regions receive stable connectivity.

Another key characteristic of EMI S2H is its adaptability. The system supports a range of frequency bands, including Ku-band and Ka-band, which enhances its capability to deliver services tailored to specific customer requirements. This flexibility makes it suitable for a diverse array of applications, from maritime and aviation communications to broadband internet access in rural areas.

Security is also a prominent feature of EMI S2H, with built-in encryption protocols to protect sensitive data. This is particularly critical for governmental and military operations, where secure communications are paramount. The system’s resilience against interference and signal jamming further enhances its reliability, ensuring continuous connectivity even in challenging environments.

Moreover, EMI S2H is environmentally conscious, designed with energy-efficient technologies that reduce its overall carbon footprint. This aligns with global efforts toward sustainable practices in the telecommunications industry.

In conclusion, EMI S2H represents a significant leap forward in satellite communication technology, offering high throughput, versatile applications, robust security measures, and an environmentally friendly design. Its innovative features make it a preferred choice for organizations seeking reliable and efficient satellite communication solutions. As the demand for connectivity continues to grow, systems like EMI S2H are pivotal in bridging the digital divide and promoting global connectivity.