10 Ton Hvac Unit Electrical Load

Precedent 3 to 10 Tons Trane customers demand products that provide exceptional reliability, meet stringent performance requirements, and are competitively priced. Trane delivers with Precedent. Trane rooftop units range from 3 to 10 tons. product is available in gas/electric, cooling with electric heat orTrane customers have been instrumental in setting the standard for a product that provides exceptional reliability, meets stringent performance requirements and is competitively priced. Trane rooftop units, Precedent, feature cutting edge technologies: reliable compressors, Trane engineered ReliaTel™ controls, computer-aided run testing, and Integrated Comfort™ Systems. For Technical Specifications, please refer to the Catalog or Installation documents on the Literature tab. Drawings Terms and Conditions Trane, in offering the Trane Product Templates, accepts no responsibility or liability: for any use made of the Product Templates including any modification thereto made by the user, for the design of buildings and related systems made using the Product Templates, or for the accuracy of the Product Templates or any data resulting from the use thereof.

While Trane strives to ensure that its Product Templates are accurate, this accuracy is not guaranteed. The user is responsible to review the Product Template and to determine if use of the Product Template is appropriate to and meets the requirements of the user's application. In accordance with its policy of continuous improvement, Trane reserves the right to modify its Product Templates at any time without notice. Trane makes no warranty whatsoever, express or implied and including, but not limited to, any warranty of merchantability or fitness for a particular purpose with respect to the Trane Product Templates or their use and in no event shall Trane be liable for any incidental or consequential damages relating to such Product Templates or their use.
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Cooling and Gas/Electric, 60 Hz Heat Pump, 60 Hz 5 to 10 Ton, 50 Hz Tracer™TD-5 Display for ReliaTel™ Controller Cooling and Gas/Electric, Standard Efficiency Cooling and Gas/Electric, High Efficiency The system simplifies air conditioning technology and delivers more than 100% energy savings vs. a conventional system. Understand your savings with the BeCool™ unit We believe that innovation begins with the customer’s needs and is followed by a solution that exceeds their expectations.
Cheap Bedroom Sets In Odessa TxOur state-of-the-art BeCool™ air conditioner delivers the best in HVAC performance and goes a step further to produce electricity that the customer uses to power their building. The value of the electricity produced is higher than the cost of natural gas consumed, turning energy savings into energy earnings. The BeCool™ unit is a cogeneration system that produces electricity, heating and air conditioning (A/C).

Take a tour of our BeCool™ prototype Learn how the BeCool™ system works Applying the Air Conditioner to Your Building We believe that innovation begins with an approach to the customer's needs and is followed by a solution that exceeds their expectations. Be Power Tech will enter the commercial building market in 2019. Field trials are expected to begin in 2018. We are now accepting applications for field trial partners. For more information, submit an inquiry. Protects and Restores the Environment Each BeCool™ unit installed has the same environmental impact as buying 5 electric cars. Assumptions: San Diego, CA typical meteorological year (TMY3), 10 ton cooling load, 5 kW average building electrical load (non-A/C), US grid average displaced emission rates Benefits of Air Conditioner Reduces building energy cost by more than 67% Produces 5 kW of high quality electricity to power your building or sell back to the grid Cooling or heating mode

Peak electricity demand reduced by more than 70% Easy to install packaged rooftop system (direct replacement for standard 10 ton unit) No harmful chemicals (uses NO refrigerant) Protects and restores the environment by reducing and eliminating harmful emissions Water neutral (no hook up or condensate drain lines required)Home Air Conditioning/Refrigeration & Heating If you pick this article, You will be able understand; → Why AC rated in Tons, Not in kW?→ Definition of Ton Click image to enlarge TT RT RT 3.516 kW. T T RT T PPT PP(RT) T PT P θ = 0.95 in Single Phase AC system… θ = Power factor θ = 0.85 in Three Phase AC system… LL 2 Tons 25kVA Class “C” Type MCBs are suitable for installations with high inrush of current at the starting switching time. in other words, equipment and devices having inductive loads such as air-conditioners, induction motors, fluorescent lamps, transformersetc. Click image to enlarge EasyEDA: A Powerful Free Circuit, Simulation & PCB Design Tool Check Also Power Distribution in Industries – Everything You Need to Know Today we are intended to …

Gas Heating / Electric Cooling 3 to 27.5 Nominal Tons 48TC WEATHERMAKER® rooftop units were designed by customers for customers. With a gauge plug, centralized control center, plug & play accessory board, “no-strip screw” collars, and handled access panels, we’ve made the unit easy to install, easy to maintain, and easy to use. Units are pre-wired and pre-charged with environmentally sound Puron® (R-410A) refrigerant at the factory. The units are factory tested in both heating and cooling modes. See how the Dual-Stage Relief Economizer works Dual Stage Relief Economizer See how to get additional building pressure relief without electricity. A short demonstration and detailing of the hardware and components of the dual stage relief economizer are highlighted in this video.Energy efficiency is an important consideration for users of all types of HVAC equipment. compare equipment and systems, there are five ways to measure the energy efficiency of HVAC units,

including air handlers, chillers, roof top units (RTUs) etc. The various methods typically apply to different types of systems and provide HVAC professionals and customers with an understanding of how a particular HVAC unit can be expected to perform. This is the ratio of cooling output in Btu to the energy in Wh to operate system. measured at fixed indoor (80˚F) and outdoor (95˚F) conditions and it is used for units 10 tons and over. There are two formulas to determine EER: EER = Btu of cooling output/Wh of electric input EER = Btu/hr of cooling output/W of electric input AC unit provides 10,000 Btu/hr of cooling and consumes 1,200 watts of electricity o EER = 10,000 Btu/hr / 1,200 W o EER = 8.33 The Integrated Energy Efficiency Ratio (IEER) is used to measure part load values (PLV) for commercial packaged units >65,000 Btu/hr. This measure uses a sliding ambient temperature scale to account for the variance in loads.

SEER is a measure of the total heat removed from a space in Btu during the annual cooling season divided by electric energy consumed in watts–per-hour. SEER is designed to account for typical variations in outdoor temperature during the year. The number is higher than EER and it is used for units 10 tons and under, so this is the rating that is typically used for residential HVAC units. COP measures the heat removed from cold space or delivered to hot space and is typically used for heatThe COP formula to determine the energy required to operate a system looks like this: Here is an example of how to determine COP: *1 watt will produce 3.412 Btu per hour (Because units in numerator and denominator have to be the same, we must use conversion factor of 3.412) . kW per ton of cooling is typically used with larger HVAC units, such as chillers. It expresses the ratio of electric input in kW to tons of cooling provided. Remember that kW per ton describes full load operation of the HVAC unit, not a partial load.

Integrated Part Load Value (IPLV) is a weighted average efficiency at part-load capacities. IPLV is used to describe chiller performance in kW/ton at various part-load operating capacities, such asAHRI Standard 550/590 sets testing conditions that apply. HSPF is used to measure cold-season performance of electric heat pumps. It is the ratio of heat output in Btu during heating season to Wh of energy input. A typical electric heat pump may have an HSPF of 8.65, and a SEER 11.6. There are equivalences between these performance measures, so you can compare apples to apples. The following formulas illustrate the relations between performance measures: *1 watt will produce 3.412 Btu per hour The Air Conditioning Heating & Refrigeration Institute (AHRI) and the International Organization for Standardization (ISO) have each developed testing procedures for HVAC Performance measures. procedures 210/240 measure the performance of packaged units under 65,000 Btu, while procedures