Test/review of Charger Xtar MC6 Queen Ant

HKJ

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[size=+3]Charger Xtar MC6 Queen Ant[/size]

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Xtar line of small chargers has got a large member, the Queen ant. It can charge up to 6 LiIon batteries at a time and is usb powered.



The cardboard box lists lot of specifications, battery types and features.

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The box contains the charger, two usb cables, a instruction sheet, a warranty card and a welcome note.

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There is a good reason for two usb cables, the charger has two usb power inputs, either of them will power the charger, but only some slots will work. For all slots to work the charger need two 2.1A or 2.4A usb power supplies. A multi output usb charger with enough current can also be used.

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The charger only has a display for user interface, current selection is done with slots.

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Each slot has an symbols to show it is active and show current.
Current will vary depending on slot, number of batteries and usb power supply. It is not possible to select 0.2A as charging current.

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Here the slots are charging at normal current. If one of the usb chargers/power supplies are a bit weak or the cables are long, the current may be lower this is indicated on the display.

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The slots uses the usual construction and works well. They can handle batteries from 30.5mm to 72 mm long.

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The charger can only handle two 26xxx battery at a time.
The charger can easily handle 70 mm long batteries, inclusive flat top cells.



[size=+2]Measurements[/size]


  • Discharges with less than 0.07mA when not connected to power
  • Between 0V and 2.9V it will charge with 100mA on 1A channels and 40mA on the two 0.5A channels
  • Above 2.9V it will apply regular charging.
  • Discharges with less than 0.05mA when LiIon battery is full.
  • Will restart if battery voltage drops below 4.06 volt.
  • Charge will restart charging after power loss, but not on battery insertion with a nearly full battery.
  • Idle current consumption from usb (Both together) is 0.04mA
  • The charger will reduce charge current if the voltage drops to about 4.5V
  • Using only slots: #1, #2, #5 and #6 will charge with 1A
  • Slot #3 or #4 will charge with 0.5A.
  • The total for slot #2, #3, #4 and #5 is limited to 2A, due to this slot #2 and #5 may drop to 0.5A when #3 or #4 is used.
  • Current allocation is dynamic, i.e. charge current can change when batteries are added, removed or full in slot #3 and #4.


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A nice CC/CV charge curve with about 120mA termination current.

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They all look similar, except #3 and #4 only chargers at 0.5A and has about 60mA termination current.

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The other cell capacities looks fine.

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I charged the two small cells in slot #3 to get the lower charge current, this works fine.

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Charging slot #1 and #6 with one usb power supply connected.

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Charging slot #2, #3, #4 and #5 with one usb power supply connected.

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Charging all slots with two usb power connected, I measured on slot #3.

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Adding a 0.5ohm resistor in series with the power supplies forces the charger to reduce charge current, this means longer charge time and the batteries are charged fine.

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M1: 39,9°C, M2: 41,9°C, M3: 42,4°C, M4: 41,8°C, M5: 40,1°C, M6: 38,1°C, M7: 45,9°C, M8: 38,7°C, HS1: 51,2°C
With all channels at full power the charger get a bit warm, but nothing problematic.

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M1: 28,3°C, M2: 32,9°C, M3: 34,1°C, M4: 32,9°C, M5: 30,7°C, M6: 27,5°C, HS1: 37,8°C
Here the two 1A charges are finished and only the four 0.5A is running, this means considerable less heat.

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The charge will start with lowest charge current when power is applied, after two seconds it will increase to full charge current.

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On the second channel it steps 0.2A, 0.5A and 1A.




[size=+2]Conclusion[/size]

The usb power to this charger is a bit special with two inputs, using advanced USC-C would have limited to one connector, but also limited the number of available usb chargers. At the current time the solution with two connectors is probably the best.

The lack of current selection means that the charger is not very good for 10440 cells (The 0.2A setting do not really exist), but can handle anything larger.
The charger can handle up to four cells at 1A and two cells at 0.5A. Slot #2 and #5 is not really good for 0.5A charging, because they can change to 1A at any time (Not very smart if they are used for small cells).

The charger is good at charging and works fine for people with many LiIon that need 1A charging, but the current selection could have been better.



[size=+2]Notes[/size]

The charger was supplied by a Xtar for review.

Here is an explanation on how I did the above charge curves: How do I test a charger
 

SubLGT

Flashlight Enthusiast
Joined
Nov 18, 2013
Messages
1,183
Location
Idaho, USA
Queen Ant? I think I will wait for the Xtar "King Kong". It will charge 2.0A in 6 channels simultaneously. :whistle:
 

vicv

Flashlight Enthusiast
Joined
Mar 22, 2013
Messages
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Location
Southern Ontario
What's with all the USB chargers coming out? I can understand a single cell charger but any more than that and you're much better off with a 12v power supply
 

StorminMatt

Flashlight Enthusiast
Joined
Oct 30, 2012
Messages
2,263
Location
Norcal
What's with all the USB chargers coming out? I can understand a single cell charger but any more than that and you're much better off with a 12v power supply

USB chargers have their advantages. They can be taken anywhere and not require a separate wall wart - you can just use your phone/tablet wall wart. This makes them good for travel. They can also be used with solar panels in remote areas. On the other hand, MUCH of this goes out the window with a charger as large as the Queen Ant. You're not likely to travel with it. And since it requires TWO USB inputs for full charging rate, you are unlikely to use it with a solar panel. So I feel like this charger would be better off with a single 12V input (like the older WP6). USB can certainly do more than single bay chargers. But the fact that this charger needs TWO USB inputs is a sign of things taken too far.
 
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