flyinhawaiian01
New member
I've been meaning to do some quick tests to show what the actual requirements for an ARB fridge is when installed in a vehicle, finally found a few minutes to snap some photos and show what is required by these units.
Okay, here we go...
This is my ARB fridge and my test equipment, an Alinco power supply with ammeter:
This unit has been extremely reliable and accurate when comparing it to various equipment that I run off of it, mostly ham radio stuff and some R/C equipment.
For this test, I set the fridge to 0ºF, as you can see, it was at 27ºF for the test, so the unit was forced to turn the compressor on. Here's the full load:
Here's the voltage at specified load, ~13.0VDC:
Now, to simulate a lower voltage with a load on it, I've set it to 12VDC:
At 12.1VDC (or as close as I could get it), here's your current draw:
Now, it will run as much as it feels it needs to run, but once it hits the target temp, it will shut down completely, and drain is at 0 amps, basically just enough to keep the led display on and run its thermometer circuit.
These units will cycle on and off according to several things; ambient temp, amount of items placed in unit, target temp set for items and the amount of times the unit is opened. It is impossible to give a "one number covers all" prediction due to these variables, but with a general idea of current draw of no more than 6 amps and having it turn on for 10 minutes per hour for cooling, you're pulling ~1Ah from your battery!
Of course, a stock battery will not provide as much long-term current as a deep cycle AGM battery, as it is not built for deep cycles of charge-drain-charge-drain! This is why its recommended to upgrade the battery if you use an ARB fridge with the engine off for long periods of time. Its also why people see their stock batteries are dead after a few months of this type of current drain.
I've already run mine in my vehicle over a period of 4 days without starting the vehicle once. The fridge ran for 3 full days without issue, and the fourth day I noticed the warning light came on, meaning that the battery's voltage dropped below the threshold (which was set to "NED" which is medium setting for the ARB units). I then started the 4runner with no issues, and it did not require a jump start or battery charger to do so. It didn't even seem weak when it started, and because of this (and the fact that I have a jump pack with me at all times, especially if I'm going camping or wheeling), I've set the unit to the LOW setting, meaning that it can run the battery down even lower than before! Of course, I do have an Odyssey battery in my 4runner, as well as all my other vehicles, so I can run this in any of them without worrying too much about a dead battery.
So, there you have it! a MAX of 6 amps when its physically running the compressor at a minimum 12 volts, that really isn't much power consumption at all, especially when you realize that it doesn't constantly run 24/7!
My suggestions? Keep your AGM batteries topped off with a battery tender made for AGM batteries, especially if you're heading out for a long camping week or wheelin' trip.
Pack the ARB well and make sure to have it full, you'll have less fluctuation in temps if you have it fully packed, as the stuff in there will keep the temps level and regulated.
Don't keep opening the fridge! Leave it shut as much as possible to keep the cold air in!
Stop thinking that 2 AGM batteries and a full-on multi-battery charging circuit is necessary to run an ARB fridge! Unless you're in the desert for 2 or 3 days without ever starting your vehicle, and you head out there with no way to get a jump start from another vehicle or a jump pack, you'll be just fine with one good AGM battery and the stock charging system of the 4 runner!
Hard wire your 12VDC plug for the ARB directly to the battery using good 8AWG wiring at the very least. The smaller the wire gauge, as well as the longer the run, the more resistance the line will have, which equals more current required at the fridge, and that means you'll have more current used than necessary. Good wiring will almost eliminate this issue, so do it right and not worry about it!
:thumb:
Okay, here we go...
This is my ARB fridge and my test equipment, an Alinco power supply with ammeter:
This unit has been extremely reliable and accurate when comparing it to various equipment that I run off of it, mostly ham radio stuff and some R/C equipment.
For this test, I set the fridge to 0ºF, as you can see, it was at 27ºF for the test, so the unit was forced to turn the compressor on. Here's the full load:
Here's the voltage at specified load, ~13.0VDC:
Now, to simulate a lower voltage with a load on it, I've set it to 12VDC:
At 12.1VDC (or as close as I could get it), here's your current draw:
Now, it will run as much as it feels it needs to run, but once it hits the target temp, it will shut down completely, and drain is at 0 amps, basically just enough to keep the led display on and run its thermometer circuit.
These units will cycle on and off according to several things; ambient temp, amount of items placed in unit, target temp set for items and the amount of times the unit is opened. It is impossible to give a "one number covers all" prediction due to these variables, but with a general idea of current draw of no more than 6 amps and having it turn on for 10 minutes per hour for cooling, you're pulling ~1Ah from your battery!
Of course, a stock battery will not provide as much long-term current as a deep cycle AGM battery, as it is not built for deep cycles of charge-drain-charge-drain! This is why its recommended to upgrade the battery if you use an ARB fridge with the engine off for long periods of time. Its also why people see their stock batteries are dead after a few months of this type of current drain.
I've already run mine in my vehicle over a period of 4 days without starting the vehicle once. The fridge ran for 3 full days without issue, and the fourth day I noticed the warning light came on, meaning that the battery's voltage dropped below the threshold (which was set to "NED" which is medium setting for the ARB units). I then started the 4runner with no issues, and it did not require a jump start or battery charger to do so. It didn't even seem weak when it started, and because of this (and the fact that I have a jump pack with me at all times, especially if I'm going camping or wheeling), I've set the unit to the LOW setting, meaning that it can run the battery down even lower than before! Of course, I do have an Odyssey battery in my 4runner, as well as all my other vehicles, so I can run this in any of them without worrying too much about a dead battery.
So, there you have it! a MAX of 6 amps when its physically running the compressor at a minimum 12 volts, that really isn't much power consumption at all, especially when you realize that it doesn't constantly run 24/7!
My suggestions? Keep your AGM batteries topped off with a battery tender made for AGM batteries, especially if you're heading out for a long camping week or wheelin' trip.
Pack the ARB well and make sure to have it full, you'll have less fluctuation in temps if you have it fully packed, as the stuff in there will keep the temps level and regulated.
Don't keep opening the fridge! Leave it shut as much as possible to keep the cold air in!
Stop thinking that 2 AGM batteries and a full-on multi-battery charging circuit is necessary to run an ARB fridge! Unless you're in the desert for 2 or 3 days without ever starting your vehicle, and you head out there with no way to get a jump start from another vehicle or a jump pack, you'll be just fine with one good AGM battery and the stock charging system of the 4 runner!
Hard wire your 12VDC plug for the ARB directly to the battery using good 8AWG wiring at the very least. The smaller the wire gauge, as well as the longer the run, the more resistance the line will have, which equals more current required at the fridge, and that means you'll have more current used than necessary. Good wiring will almost eliminate this issue, so do it right and not worry about it!
:thumb: