Eureka A-Frame Backpacking Gear Loft Price
Eureka A-Frame Backpacking Gear Loft Price
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Another feature seen a lot more on lanterns may be the use of rechargeable batteries. Most campers favor rechargeable lights because "if you utilize less 'normal' batteries, you'll cut back money".
Unfortunately, typically they're wrong!
Most rechargeable lanterns are fitted having a 6 volt sealed lead acid battery with 3 little lead plates (cells), each cell providing 2 volt. Basically this battery is really a scaled Eureka A-Frame Backpacking Gear Loft Price down version of your car battery. These batteries do not like to be drained 'flat' and left in a state of discharge. Unfortunately that's Eureka A-Frame how most campers treat their rechargeable lanterns. The lanterns are employed until the light goes dim. In order to avoid damage, these lanterns should be re-charged for a period of at least 12 hours, either on 240 volt or 12 volt. Yet when you're camping, 240 volt power is often not available (whether or not this was, would you use rechargeable appliances, do you?). To take the car for a drive for 12 hours to be able to re-charge the lantern is additionally not an option.
So the lantern is put aside, taken home and left in the garage waiting to become recharged (and often forgotten about) that is certainly where the damage occurs. If battery is left flat, layers of sulphur will adhere to the little lead plates inside which makes it harder for electrons to adhere to the plates. The other problem which will occur is sometimes the lead plates bend in the event the battery is left flat. If they bend far enough, one plate will touch another as well as a cell has become dropped, lowering the voltage by 2 volts. So now battery can only put out 4 volt, as opposed to 6. This is not enough to start out fluorescent lanterns, and also will cause LED lanterns to malfunction.
What happens then?
Every year hundreds and hundreds of rechargeable lanterns are ordered only to get thrown away inside a year since the rechargeable battery has seized. Many extra dollars are also wasted because some people believe the challenge lies using the fluorescent tubes and purchase replacement tubes which still won't work over a dead battery. The 6 volt lead acid batteries might be replaced on most models of lanterns at a cost, sometimes a lot more than what the lantern cost to start with.
Why don't manufacturers put better rechargeable batteries within their lanterns?
Manufacturers put lead acid batteries of their lanterns because they are CHEAP. In China, Tents where these types of lanterns are produced, these batteries are less costly than one dollar, therefore keeping the cost low, that is what most consumers want in camping equipment. The alternatives are a lot more expensive. A suitable NiMH battery system inside rechargeable lanterns would boost the retail price a few fold. Unfortunately most campers would refuse to pay $150 to $300 with an appliance they'd only use a few times 12 months.
So, what may be the most practical solution to this problem?
If about to catch sure whether you can actually recharge your lantern regularly, you may be far better off investing in a light that can run on alkaline, or better still, lithium Eureka A-Frame batteries. You can always carry a spare set along and once you've returned home you'll be able to remove these batteries to be able to extend their life. You will spend some dough on batteries and often will probably spend less money in the finish getting far more life through your lantern and it is far less frustrating.
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