Yeah, I needed the charger. I have some nice chargers, but none that "Slide" that short.
Well, the charger is ... not great. I wasn't expecting much, for sure, but wow it feels flimsy.
We'll see how the batteries perform....
Yeah, I needed the charger. I have some nice chargers, but none that "Slide" that short.
Yep. Same experience. Charged them up and put one in the Muyshondt on my Keychain. Used it a bit when the power went out in the office. I'll post that in whatcha use it for today thread.Well, the charger is ... not great. I wasn't expecting much, for sure, but wow it feels flimsy.
We'll see how the batteries perform....
A little late to the game, the lowest I have ever gotten light out of a cell was a sofirn C01, 0.4v.The Manker E02ii has a low operating voltage of 0.7
Curious about the Eiger or any other AAA lights that will work with a lower voltage than that.
I dug up an old ARC clone that I haven’t fully tested yet. It will light up at 0.6A little late to the game, the lowest I have ever gotten light out of a cell was a sofirn C01, 0.4v.
I had two, but sold one a year or two ago. As someone had mentioned in the thread previously, I had been using the one I have as a cell drainer. But I found a lot of pressure built up in the tube when the cell was exhausted, to the point it was difficult to open the light to remove the cell. Also a loud pop when I got it open. No more cell draining duty for my C01.If I could find a C01 or an E01 I’d jump on one. I imagine there are a lot in junk drawers that are way less useable for people in comparison to what is available now.
I really like mine!
This is why the next big jump in flashlight technology may come from battery research.I've been mostly an HDS Rotary user for probably about a dozen years now, but I always dream of going back to nothing but AAA lights once they've made enough progress in UI, brightness levels and runtime.
That's a really weird sentiment because CR123A batteries are so bad, and disposable, when I think 99.9% of the people here are probably using Eneloops. The cost of operation for an Eneloop is dang near free.Come back in 30 years, and AAA-format lights may be able to do what CR123 lights can do now. But until the battery tech changes, AAA-format lights are not going to be able to offer enough output or runtime.
Could you imagine containing fusion in a 10440? "DO NOT DROP OR ABUSE IN ANY MANNER, POTENTIAL TO VAPORIZE A SQUARE ACRE. FOR SANCTIONED INDUSTRIAL USE ONLY"This is why the next big jump in flashlight technology may come from battery research.
LED's and lithium-ion batteries have created the current wave -- let's say 1995-2026 -- of miracles. LED's and lithium-ion batteries made possible new outputs and runtimes that were never possible with incans and alkaline batteries, or even NiMH.
LED's are getting close to the theoretical maximum output for lumens/watt. They offered an order-of-magnitude improvement over hot wires, but no new technology is going to offer the same jump over LEDs. (Maybe we're around 50% of theoretical max now, so LED's have a little room for improvement. But the improvement will be only a doubling, at best.)
Lithium-ion batteries are small, light, and power-packed. But there is room for improvement. And there is a lot of research on batteries right now, for good reasons. Battery tech is going to be part of the picture of moving to an energy-abundant future with solar, wind, and other alternative-generation technologies coming on line.
So, there's a lab somewhere right now -- it may be in Amsterdam or Shenzhen or Boulder -- where someone is cooking up a new chemistry for batteries that are even more energy-dense, can pack more watt-hours into a smaller, lighter package.
Come back in 30 years, and AAA-format lights may be able to do what CR123 lights can do now. But until the battery tech changes, AAA-format lights are not going to be able to offer enough output or runtime.
(And by the way -- the new batteries, with even more energy density than lithium-ion chemistry, may also be some scary little beasts. We know that lithium-ion cells have the potential to cause burns, shocks, and booms, much more so than pokey old alkaline chemistry. Any technology with higher energy-density, and the ability to release it on demand, may be that much touchier.)
Well that’s the paradox, right? High energy density means more lumen-hours in a small package. But it also means more boom packed in your pocket.Could you imagine containing fusion in a 10440? "DO NOT DROP OR ABUSE IN ANY MANNER, POTENTIAL TO VAPORIZE A SQUARE ACRE. FOR SANCTIONED INDUSTRIAL USE ONLY"
Is that a 32140 cell in your pocket, or are you just happy to see me?But it also means more boom packed in your pocket.
Hahah, this is why I just carry NiMH batteries in my pocket.Well that’s the paradox, right? High energy density means more lumen-hours in a small package. But it also means more boom packed in your pocket.