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MiniSpace EC DX

Maximum cooling capacity with a minimal footprint

If you need precise, reliable and cost effective air conditioning for small equipment and server rooms, the MiniSpace EC series is an energy efficient and long-lasting series that fits the bill. The computer room cooling systems' units require little floor space, and their compact size means they can be integrated in existing server rooms without problem.

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Product Overview

At a glance Benefits Features Technical Data

Most important benefits

  • Maximum cooling capacity with a minimal footprint
  • Server room air conditioner enables high energy savings thanks to Direct Free Cooling
  • Precise regulation of room temperature and air humidity

Most important features

  • Available in 2 sizes
  • Available in 2 refrigeration systems

Most important technical data

  • Cooling capacity (kW): 6 – 32 kW
  • Air conduction: Upflow, Downflow, Downflow with frontal outlet
  • Server room ac unit with maximum cooling capacity with a minimal footprint
  • High energy savings thanks to Direct Free Cooling
  • High reliability under continuous load 24/7
  • EC fans for maximum energy efficiency
  • Precise regulation of room temperature and air humidity
  • Available in 2 sizes
  • Available in 3 refrigeration systems
  • Downflow and Upflow versions of units
  • Simple installation and maintenance via door on the front
  • Air filtering with filter class G 4
  • Filter control manager for a constant airflow
  • ModBus onboard for integration in the building services management system
Cooling capacity total (kW) 5.1 – 28.1
Airflow volume (m³/h) 2,000 – 7,000
Sizes 2
Air conduction Upflow, Downflow, Downflow with frontal outlet
Refrigerant

R407C (GWP: 1,774)

R134a (GWP: 1,430)

Cooling systems Air-cooled system (A), Water-cooled system (G)

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All details about MiniSpace EC DX

Climate. Customized.

From standard units to fully customized solutions

The ability to offer such a wide range to customers is the embodiment of our philosophy, "Climate. Customized.". Size, design, air conduction, system or control: MiniSpace EC is a model of adaptability and the room air conditioners can be precisely adapted to your individual requirements. In addition, a variety of options and equipment versions are available to achieve the optimum result.

Learn more about Climate. Customized.
 

Climate. Customized. MiniSpace EC DX

Precision and comfort air conditioners compared

Precision air-conditioning systems capable of regulating room temperature accurately were developed for equipment rooms. However, often comfort air conditioners are used there. Learn more about the reasons for better using a precision air-conditioning unit:

 

Highly sensible cooling capacity = Low operating costs?

The sensible part of the cooling capacity reduces the temperature, while the latent part dehumidifies the air. Comfort air conditioning units can use up to 50% of their energy for dehumidification, whereas precision units convert more than 95% of the energy used exclusively into cooling capacity. The technology required to achieve this pays off quickly in terms of lower operating costs.

Precision vs. comfort: sensible cooling capacity MiniSpace EC DX

Air Distribution, Heat Dissipation and Filtration

Precision air conditioning units from STULZ filter and circulate three times the amount of air as comfort units with the same rated capacity. They reliably dissipate isolated thermal loads even from distant corners of the room, while continuously monitoring and precisely controlling the temperature and air filtration.

Precision vs comfort air distribution MiniSpace EC DX

Controlled Temperatures

Information and communication technology only works reliably and without faults within a relatively narrow temperature range. STULZ precision air conditioning units ensure optimum temperature accuracy with maximum tolerances of +/- 1 °C, while comfort units can normally deviate from the set value by as much as +/- 3 °C.

Precision vs comfort - Controlled temperatures MiniSpace EC DX

Controlled Humidity

Unlike comfort air conditioning units, precision units feature strictly controlled and accurate dehumidification (tolerance +/- 5% relative humidity), as too much humidity can lead to condensation and corrosion, while too little can cause static charges, data loss and damage to hardware.

Precision vs comfort - Controlled humidity MiniSpace EC DX

Excellent Reliability

Comfort air conditioning units mainly operate in summer and only for a few hours each day. By contrast, precision units need to be available whenever the electronic equipment to be cooled is in operation. For most server room cooling systems, this is the case for 24 hours a day, 365 days a year.

This is why STULZ makes such high demands on the quality of their precision server room cooling units and is able to offer high availability systems with 99.999 % reliability.

Precision vs comfort - Excellent reliability MiniSpace EC DX

Related Article

Server cooling: Return air and room air conditioners compared

Learn more about the differences, advantages and disadvantages of comfort and precision air conditioning in data centers.

Click here to read the full article

Related Article MiniSpace EC DX

Direct Free Cooling

Server room air conditioner with Eco-Cool option: Maximum potential savings

Thanks to Direct Free Cooling, MiniSpace EC units with Eco-Cool option provide up to 90 % more efficient air conditioning than conventional compressor cooling systems. To achieve this, applications with extended temperature and humidity tolerances are required. Direct Free Cooling exploits the potential of outside temperatures to air condition the data center directly using cool outside air. This way, the outside air is treated by filter systems and gets directly into the server room via the MiniSpace unit.

To maximize the huge potential savings offered by Direct Free Cooling, the MiniSpace EC with Free Cooling option features a pre-installed outside air and circulating air damper, and can be mounted directly on the wall. With this option, Free Cooling is automatically combined with compressor cooling in four variable stages to suit the outside temperature and cooling needs, ensuring that the server room air conditioner always exploits maximum savings to the full.

Learn more about Direct Free Cooling

 

MiniSpace EC DX Direct Free Cooling

1. Free Cooling

  • Outside air damper open
  • Outside air flows through the filter directly into the unit, then into the data center
  • Compressor off

 

2. Extended Free Cooling

  • Outside air damper open
  • The use of variable-speed fans keeps the cooling capacity constant by increasing the airflow, additionally extending the Free Cooling time
  • Compressor off

 

3. Mixed mode

  • Outside air damper open
  • Fans deliver the maximum airflow
  • Compressor is switched on

 

4. DX mode

  • Outside air damper closed
  • The unit works in compressor mode

EC technology

Better energy efficiency thanks to EC technology

  • High motor efficiency of up to 92 %, reaping obvious savings in running costs
  • Quiet running, long life, maintenance-free
  • Adjustment to the given conditions with pinpoint precision
MiniSpace EC DX EC technology

Cooling Systems

Server room air conditioner: Customized refrigeration systems

STULZ is the world's only manufacturer to offer such a huge bandwidth of configuration options, with the result that every unit can be adapted to project-specific requirements. The MiniSpace EC is available in two different systems, to help you achieve the ideal balance between investment, operating costs and energy efficiency during server room cooling.

 

 

Cooling Systems MiniSpace EC DX

Air-cooled system (A)

The compact standard solution with air-cooled condenser based on the direct evaporator principle

Heat is extracted from the room air as it flows through the evaporator, and is then transferred to the refrigerant. The air conditioning unit and condenser are connected to one another by a closed refrigerant circuit. The refrigerant emits the heat to the outside air via the air-cooled condenser.


 

MiniSpace EC DX Air-cooled system

Water-cooled system (G)

Simple heat dissipation via a water/glycol mixture

Our water-cooled system works like the air-cooled system, with one difference: the heat from the refrigerant circuit is transferred to a cooling water circuit by a brazed plate condenser integrated in the air conditioning unit, and is discharged into the outside air via an external dry cooler.


 

Water-cooled system MiniSpace EC DX

Control and monitoring

Precise control for maximum reliability

To ensure the highest possible standards in reliability and efficiency, the control system and air conditioning unit must work in perfect harmony. That is why here at STULZ we research and develop our controllers ourselves.

  • Project-specific software development and optimization
  • Compatible with all common BMS protocols
  • Runtime comparison and alarm switching ensure availability
  • Several air conditioning units can be operated in parallel across machines
  • Sophisticated warning and alarm system
     
Control and monitoring MiniSpace EC DX

Options

The variety of options and possible equipment enables you to perfectly adapt STULZ units to your requirements.

  • RS485 interface and further preinstalled data protocols for BMS integration
  • Communication via SNMP/HTTP IP protocols
  • Humidifier/heater
  • Air cooled condensers
  • Winter Start Kit
  • Smoke and fire alarms
  • Control of up to 20 air conditioning modules per data bus system
  • Eco-Cool with Direct Free Cooling
  • R134a high-temperature refrigerant
  • C7000 Advanced user interface with graphic LCD
Options for MiniSpace EC DX

Service and maintenance

As a company with locations across the globe, we offer everything you need in the extremely dynamic world of information technology - plus professional advice in the right place at the right time.

Our trained and experienced sales and service partners are located in over 140 countries. The resulting proximity to our customers allows fast response times. In addition, regular training courses and an active exchange of information ensure high quality and an extensive knowledge of all our products. This way, you can be sure your products are in the best hands and get the right maintenance – all over the world.

Locations worldwide

 

service and maintenance MiniSpace EC DX
Service and maintenance MiniSpace EC DX
Service and maintenance MiniSpace EC DX

Projects

Ideal room climate for smooth printing processes

STULZ optimizes production conditions at Albert Bauer PRINT!

The success of printing processes stands and falls with the room temperature and air humidity. At Albert Bauer PRINT! in Hamburg, a subsidiary of Albert Bauer Companies, STULZ direct room humidifiers and closed-circuit air conditioning units keep the printing paper in optimum condition and so ensure more cost-efficient print jobs.

Project story Albert Bauer PRINT!

MiniSpace EC DX Projects

Free Cooling for the GESIS Data Center in Cologne

100.000 kwh energy savings per year on a 75 m² data center:
A free cooling concept with STULZ Minispace and CyberAir units that pays off.

Project story GESIS

 

Projects MiniSpace EC DX

Test Center

In our state-of-the-art, 700-square-meter Test Center with its various climate chambers, we can perform a variety of tests on precision air conditioning units and chillers. During the development of the MiniSpace EC, we were able to test and optimize it under all climatic conditions encountered around the world.

In addition, we offer you the opportunity to book a witness test in our Test Center. This allows you to have the desired air conditioning system tested according to your exact specifications, creating transparency and providing you with information about your system’s performance and energy consumption.

Read more about our Test Centers

Test Center MiniSpace EC DX

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Åland Afghanistan Albania Algeria American Samoa Andorra Angola Anguilla Antarctica Antigua and Barbuda Argentina Armenia Aruba Australia Austria Azerbaijan Bahrain Bangladesh Barbados Belarus Belgium Belize Benin Bermuda Bhutan Bolivia Bonaire, Sint Eustatius and Saba Bosnia and Herzegovina Botswana Bouvet Island Brazil British Indian Ocean Territory British Virgin Islands Brunei Bulgaria Burkina Faso Burundi Cambodia Cameroon Canada Cape Verde Cayman Islands Central African Republic Chad Chile China Christmas Island Cocos (Keeling) Islands Colombia Comoros Congo Congo-Brazzaville Cook Islands Costa Rica Croatia Cuba Curaçao Cyprus Czech Republic Côte d’Ivoire Denmark Djibouti Dominica Dominican Republic Ecuador Egypt El Salvador Equatorial Guinea Eritrea Estonia Eswatini Ethiopia Falkland Islands Faroes Fiji Finland France French Guiana French Polynesia French Southern Territories Gabon Gambia Georgia Germany Ghana Gibraltar Greece Greenland Grenada Guadeloupe Guam Guatemala Guernsey Guinea Guinea-Bissau Guyana Haiti Heard Island and McDonald Islands Honduras Hong Kong SAR of China Hungary Iceland India Indonesia Iran Iraq Ireland Isle of Man Israel Italy Jamaica Japan Jersey Jordan Kazakhstan Kenya Kiribati Kosovo Kuwait Kyrgyzstan Laos Latvia Lebanon Lesotho Liberia Libya Liechtenstein Lithuania Luxembourg Macao SAR of China Madagascar Malawi Malaysia Maldives Mali Malta Marshall Islands Martinique Mauritania Mauritius Mayotte Mexico Micronesia Moldova Monaco Mongolia Montenegro Montserrat Morocco Mozambique Myanmar Namibia Nauru Nepal Netherlands New Caledonia New Zealand Nicaragua Niger Nigeria Niue Norfolk Island Northern Marianas North Korea North Macedonia Norway Oman Pakistan Palau Palestine Panama Papua New Guinea Paraguay Peru Philippines Pitcairn Islands Poland Portugal Puerto Rico Qatar Reunion Romania Russia Rwanda Saint Barthélemy Saint Helena, Ascension and Tristan da Cunha Saint Kitts and Nevis Saint Lucia Saint Martin Saint Pierre and Miquelon Saint Vincent and the Grenadines Samoa San Marino Saudi Arabia Senegal Serbia Seychelles Sierra Leone Singapore Sint Maarten Slovakia Slovenia Solomon Islands Somalia South Africa South Georgia and the South Sandwich Islands South Korea South Sudan Spain Sri Lanka Sudan Suriname Svalbard Sweden Switzerland Syria São Tomé e Príncipe Taiwan Tajikistan Tanzania Thailand The Bahamas Timor-Leste Togo Tokelau Tonga Trinidad and Tobago Tunisia Turkey Turkmenistan Turks and Caicos Islands Tuvalu Uganda Ukraine United Arab Emirates United Kingdom United States United States Minor Outlying Islands Uruguay US Virgin Islands Uzbekistan Vanuatu Vatican City Venezuela Vietnam Wallis and Futuna Western Sahara Yemen Zambia Zimbabwe
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