Ac..or ? Summertime is just around the corner, with hotter weather on the horizon. Gord May "If you didn't have the time or money to do it right in the first place, when will you get the time/$ to fix it?" These units have varying plug types depending on how many amps they require. Yes they can be run on an inverter, but starting amps can be many times the run load, and that can depend on several factors such as the inverter's quality & the voltage it maintains during that surge...The inverter's Surge rating is as important as it's continuous wattage rating...And as with anything electronic... Over sizing is usually best for the life & performance of the product...Don't plan on just the minimum needed.Once started...How long your battery bank can run the A/C depends on a few things too...Size of the bank in amp-hours...Meaning size of each battery & how many batteries connected in parallel (Two 100 amp hour 12 volt batteries connected together in parallel provide for a 200 amp hour bank...4 would be 400 amp hours etc..) Length Of, and Wire Size, run...DC Voltage to the inverter tends to drop pretty quickly (length of run is measured as a total of both to & from batteries)The Longer the DC Voltage Run...The Larger the wire needs to be to limit voltage drop & overheating...(It's why Tesla won out with his AC voltage we now use over Einstein's DC voltage back in the day) Duty Cycle of the A/C (actual compressor run time to pull down to & maintain a given set point temp) Duty Cycle is usually figured as a compressor run percentage of overall time on...Then also figure the small draw of the fan & pump...Which may, or may not cycle with the compressor (Now days with the digital t-stats most pumps cycle with the compressor but the fan may not, or is selectable)Most battery manufactures recommend not running batteries below 50% charge state before re-charging (so figure battery amp hour rating 50% less than actual rating)As a general rule of thumb...It's a 10 x conversion for DC to AC amperage...10 amps of AC amp draw (uninterrupted) per hour is around 100 amp hours of DC removed from the batteries...So taking the 6.7 amp figure from the 10K unit above...Figure 67-70 DC amps being removed from the batteries (actually inverters are never 100% efficient and differ in ratings so YMMV but 10x is easy to figure)Basically, It takes a pretty large battery bank to get a full nights sleep...Then you must figure recharge time to replace that amperage used & the charging system...Alternator or Charger output rating determines that factor...But other questions are...How long do you have to run the engine to replace that energy ?Or how long do you typically run the engine a day, and is it enough ?To run that 10 K Dometic Turbo unit 9 hours (one hour pull down, 8 hrs sleeping) and I don't think you can find a similar sized unit that draws less...figure say...7.7 amps running (6.7 unit amps plus 1 amp for the pump) 7.7 x 10 (basic DC to AC conversion factor) 77 amps x 9 hours = 693 amp hours used...693 x .80 (80% duty cycle) equals 554 amp hours without loss thru wire, inverter efficiency, etc...Then double that for the 50% discharge factor the battery manufacturers recommend & you would need a battery bank capacity of 1,108.8 amp hours... Or you could use six pairs (12 batteries @ 225 Ah per pair) of 6 volt golf cart batteries for a capacity of 1350 amp hours...This should keep you above the 50% discharge for a full night of sleep in slightly less space than twelve 100 Ah 12 volt batteries that would only total 1200 Ah...Does the alternator have enough output to keep up with the draw without the battery bank loosing percentage of charge & are you taxing that alternator doing so ? Most RVs will have a 30amp or 50amp capacity. I installl them.on all my new boats.Shorepower doesn't care about inrush, only inverters and generators.Yes it does exceed the 15 amps even for a few seconds and you'll trip the breaker and of course then have no powerPlease support our sponsors and let them know you heard about their products on Cruisers Forums. 110O sq ft on one level. Power to this device for 8 hours you will need 3 group 27 batteries (or similar combination) totaling 270-315 amp hours. For many, that means it is time to get an air conditioner.One thing that many people shopping for an air conditioner forget to consider is the electrical component. Power up your air conditioner with your inverter. Depending on the BTU capacity amp requirements can range from 15 to 45 amps. These air conditioners draw 10 amps or more and must be plugged into a dedicated outlet. Because the voltage is higher, they generally draw less amperage than their 115 volt counterparts, but they also need a specific outlet to support their higher voltage needs. Small room-sized air conditioners typically draw between 5 and 6 amps. Because the amperage draw is low, other small household appliances can use the same socket as the air conditioner.Large room-size air conditioners are typically rated from 8,000 BTUs up to 12,000 BTUs, although some modern types may even reach 15,000 BTUs. The amperage draw on an air conditioner with a cooling capacity of 10,000 BTU/h, at 120 V should be approximately ± 0 Amps; at 220 V about ± 5 Amps. What is the power consumption of air conditioners electrical requirements for window air conditioners celiera 12 000 btu 1 ton ductless mini split air conditioner marine air conditioner 12000btu. 1hp Air Compressor: 1500: 4500: 8" Bench Grinder: 1400: 2500: 1/2" Hand Drill: 600 : High Pressure Washer 1 Horsepower: 1200: 3600: Circular Saw Heavy Duty 7-1/4 Inches: 1400: 2300: Electric Chainsaw 14", 2 Horsepower: 1100: 0: Table Saw - 10" 1800: 4500: 3/8" Drill, 4 amps: 440: 600: 1/2" Drill, 5.4 amps: 600: 900: Industrial Motors: Running Wattage Requirements Hunker may earn compensation through affiliate links in this story.

As for the other appliances, they might be able to draw the following amperage: Microwave - 12.8 amps All Rights Reserved. Your home's air conditioner needs to draw power from your electrical system in order to function properly. Some smaller capacity units only require 110/120 volts. And are the outlets in your home capable of delivering the electricity required for the unit? You can just use a condensate pump to pump away the water. Have gas furnace in basement.A drain is not required for a central air unit. It is available as a "Cool Only," Cool/Electric Heat," or Consider the range of power requirements between central air and window units, and how those differences in voltage can affect the outlet you will need. The owner of a Bertram 700 wanted to relax while at anchor in cool, quiet comfort.


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