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Oppon™  

Cordless Phone Battery 4.8V 700mAh AAA Ni-MH Battery Pack

by Oppon   UPC: 032227458074  SKU: A09530000B
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Ni-MH 4 x AAA 4.8V 700mAh Battery Pack can be used for DVD, MP3, digital camera, portable computer, cordless phone, electrical toy and so on. Stay powered up for a long time. This 4.8V 700mAh AAA Ni-MH Battery Pack is made of high quality material for a long time using. The Rechargeable 4.8V Ni-MH Battery Pack is designed for all AAA Batteries appliances. AAA Battery Pack is very convenient to have spare Rechargeable Batteries on hand. With such AAA Rechargeable Batteries you always have fresh AAA Batteries for your electronics. They can be recharged to full power at any time using a wide range of chargers. Since they are renewable and reusable, these batteries are a good economic and environmental choice. It has such a competitive price. You will get more than you paid! It's time to make a sensible choice!
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Oppon Cordless Phone Battery 4.8V 700mAh AAA Ni-MH Battery Pack
USD$ 6.39
USD$ 5.99
 
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  • Specifications:

    • Battery pack (4.8V 4 x AAA 700mAh Ni-MH)
    • Made of 4 x AAA Ni-MH 700mAh cells 
    • Rapidly charge up and long cycle life
    • Ultra-low-power, many times cycle
    • Rated Voltage: 4.8 V
    • Capacity: 700 mAh
    • Chemistry: Ni-MH battery

    Detail:

    Oppon Cordless Phone Battery 4.8V 700mAh AAA Ni-MH Battery Pack

    • This Rechargeable Ni-MH Battery pack is made of high quality material for a long time using

    Ni-MH Battery Pack

    AAA Battery Pack

    • This 700mAh 4.8V AAA Ni-MH Battery Pack is made of high quality material for a long time using

    4.8V Ni-MH Battery Pack

    032227458074

    • Can be used for DVD, MP3, digital camera, portable computer, cordless phone, electrical toy and so on

    Oppon Cordless Phone Battery 4.8V 700mAh AAA Ni-MH Battery Pack

    • The Rechargeable 4.8V Ni-MH Battery Pack is designed for all AAA Batteries appliances

    Ni-MH Battery Pack

    AAA Battery Pack

    • AAA Battery Pack is very convenient to have spare Rechargeable Batteries on hand

    Table of rechargeable battery technologies:

    Type

    Voltage

    Energy density b

    Powerc

    Effi.d

    E/$e

    Disch.f

    Cyclesg

    Lifeh

    (V)

    (MJ/kg)

    (Wh/kg)

    (Wh/L)

    (W/kg)

    (%)

    (Wh/$)

    (%/month)

    (#)

    (years)

    Lead-acid

    2.1

    0.11-0.14

    30-40

    60-75

    180

    70%-92%

    5-8

    3%-4%

    500-800

    5-8 (car battery), 20 (stationary)

    VRLAi

    2.105

     

     

     

     

     

     

     

     

     

    Alkaline

    1.5

    0.31

    85

    250

    50

    99.9%

    7.7

    <0.3

    100-1000

    <5

    Ni-iron

    1.2

    0.18

    50

     

    100

    65%

    5-7.3

    20%-40%

     

    50+

    Ni-cadmium

    1.2

    0.14-0.22

    40-60

    50-150

    150

    70%-90%

    1.25-2.5

    20%

    1500

     

    NIH2

    1.5

     

    75

     

     

     

     

     

    20,000

    15+

    NiMH

    1.2

    0.11-0.29

    30-80

    140-300

    250-1000

    66%

    2.75

    30%

    500-1000

     

    Ni-zinc

    1.7

    0.22

    60

    170

    900

     

    2-3.3

     

    100-500

     

    Li ion

    3.6

    0.58

    150-250

    250-360

    1800

    80-90%

    2.8-5

    5%-10%

    1200

    2-3

    Li polymer

    3.7

    0.47-0.72

    130-200

    300

    3000+

     

    2.8-5.0

     

    500~1000

    2-3

    LiFePO4

    3.25

     

    80-120

    170

    1400

     

    0.7-3.0

     

    2000+

     

    Li titanate

    2.3

     

    90

     

    4000+

    87-95%r

    0.5-1.0

     

    9000+

    20+

    ZnBr

     

     

    75-85

     

     

     

     

     

     

     

    NaS

     

     

    150

     

     

    89%-92%

     

     

     

     

    Molten salt

    2.58

     

    70-110

    160

    150-220

     

    4.54

     

    3000+

    8+

    Silver zinc (Ag-zinc)

    1.86

     

    130

    240

     

     

     

     

     

     

    What rechargeable battery is:

    4.8V Ni-MH Battery Pack

    • A rechargeable battery or storage battery is a group of one or more electrochemical cells. They are known as secondary cells because their electrochemical reactions are electrically reversible. Rechargeable batteries come in many different shapes and sizes, ranging anything from a button cell to megawatt systems connected to stabilize an electrical distribution network. Several different combinations of chemicals are commonly used, including: lead-acid, nickel cadmium (NiCd), nickel metal hydride (NiMH), lithium ion (Li-ion), and lithium ion polymer (Li-ion polymer)
    • Rechargeable batteries have lower total cost of use and environmental impact than disposable batteries. Some rechargeable battery types are available in the same sizes as disposable types. Rechargeable batteries have higher initial cost, but can be recharged very cheaply and used many times.

    Usage and applications:

    032227458074

    • Rechargeable batteries are used for automobile starters, portable consumer devices, light vehicles (such as motorized wheelchairs, golf carts, electric bicycles, and electric forklifts), tools, and uninterruptible power supplies. Emerging applications in hybrid electric vehicles and electric vehicles are driving the technology to reduce cost and weight and increase lifetime.[1]
    • Normally, new rechargeable batteries have to be charged before use; newer low self-discharge batteries hold their charge for many months, and are supplied charged to about 70% of their rated capacity.
    • Grid energy storage applications use rechargeable batteries for load leveling, where they store electric energy for use during peak load periods, and for renewable energy uses, such as storing power generated from photovoltaic arrays during the day to be used at night. By charging batteries during periods of low demand and returning energy to the grid during periods of high electrical demand, load-leveling helps eliminate the need for expensive peaking power plants and helps amortize the cost of generators over more hours of operation.
    • The US National Electrical Manufacturers Association has estimated that U.S. demand for rechargeable batteries is growing twice as fast as demand for nonrechargeables

    Charging and discharging:

    Oppon Cordless Phone Battery 4.8V 700mAh AAA Ni-MH Battery Pack

    Diagram of the charging of a secondary cell battery

    • During charging, the positive active material is oxidized, producing electrons, and the negative material is reduced, consuming electrons. These electrons constitute the current flow in the external circuit. The electrolyte may serve as a simple buffer for ion flow between the electrodes, as in lithium-ion and nickel-cadmium cells, or it may be an active participant in the electrochemical reaction, as in lead-acid cells.
    • The energy used to charge rechargeable batteries usually comes from a battery charger using AC mains electricity. Chargers take from a few minutes (rapid chargers) to several hours to charge a battery. Most batteries are capable of being charged far faster than simple battery chargers are capable of; there are chargers that can charge consumer sizes of NiMH batteries in 15 minutes. Fast charges must have multiple ways of detecting full charge (voltage, temperature, etc.) to stop charging before onset of harmful overcharging.
    • Rechargeable multi-cell batteries are susceptible to cell damage due to reverse charging if they are fully discharged. Fully integrated battery chargers that optimize the charging current are available.
    • Attempting to recharge non-rechargeable batteries with unsuitable equipment may cause battery explosion.
    • Flow batteries, used for specialised applications, are recharged by replacing the electrolyte liquid.
    • Battery manufacturers' technical notes often refer to VPC; this is volts per cell, and refers to the individual secondary cells that make up the battery. For example, to charge a 12 V battery (containing 6 cells of 2 V each) at 2.3 VPC requires a voltage of 13.8 V across the battery's terminals.
    • Non-rechargeable alkaline and zinc-carbon cells output 1.5V when new, but this voltage gradually drops with use. Most NiMH AA and AAA batteries rate their cells at 1.2 V, and can usually be used in equipment designed to use alkaline batteries up to an end-point of 0.9 to 1.2V.

    Reverse charging:

    • Subjecting a discharged cell to a current in the direction which tends to discharge it further, rather than charge it, is called reverse charging; this damages cells. Reverse charging can occur under a number of circumstances, the two most common being:
    • When a battery or cell is connected to a charging circuit the wrong way round.
    • When a battery made of several cells connected in series is deeply discharged.
    • When one cell completely discharges ahead of the rest, the live cells will apply a reverse current to the discharged cell ("cell reversal"). This can happen even to a "weak" cell that is not fully discharged. If the battery drain current is high enough, the weak cell's internal resistance can experience a reverse voltage that is greater than the cell's remaining internal forward voltage. This results in the reversal of the weak cell's polarity while the current is flowing through the cells[3][4]. This can significantly shortens the life of the affected cell and therefore of the battery. The higher the discharge rate of the battery needs to be, the better matched the cells should be, both in kind of cell and state of charge. In some extreme cases, the reversed cell can begin to emit smoke or catch fire.
    • In critical applications using Ni-Cad batteries, such as in aircraft, each cell is individually discharged by connecting a load clip across the terminals of each cell, thereby avoiding cell reversal, then charging the cells in series

    Common rechargeable battery types:

    Ni-MH Battery Pack

    • Graph of mass and volume energy densities of several secondary cells

    Nickel-cadmium battery (NiCd):

    • Created by Waldemar Jungner of Sweden in 1899, based on Thomas Edison's first alkaline battery[citation needed]. Using nickel oxide hydroxide and metallic cadmium as electrodes. Cadmium is a toxic element, and was banned for most uses by the European Union in 2004. Nickel-cadmium batteries have been almost completely superseded by nickel-metal hydride (NiMH) batteries.

    Nickel-metal hydride battery (NiMH):

    • First commercial types were available in 1989.[20] These are now a common consumer and industrial type. The battery has a hydrogen-absorbing alloy for the negative electrode instead of cadmium.

    Lithium-ion battery:

    • The technology behind lithium-ion battery has not yet fully reached maturity. However, the batteries are the type of choice in many consumer electronics and have one of the best energy-to-mass ratios and a very slow loss of charge when not in use.

    Lithium-ion polymer battery:

    • These batteries are light in weight and can be made in any shape desired.

    Battery Capacity:

    • Look for batteries with a higher milliampere hour (mAh) rating. This refers to the amount of electricity delivered at any given moment. Electronic devices can handle a range of mAh without damaging the device. So as the rechargeable batteries begin to lose power, they do no damage to the device. Batteries with a higher mAh may look exactly like a battery with a lower mAh but typically they cost more.

    Battery Chargers:

    • Buy the battery charger that suits your needs. In some instances you can purchase the charger and batteries as a package deal, but if you want your battery charger to maintain your rechargeable batteries properly, you may need to pay more for special features.
    • Look for a battery charger that recharges a variety of battery sizes. Select a unit that has a reconditioning cycle. This keeps you from overcharging your batteries. Some models do this automatically while others have a switch you must flip to go into reconditioning mode.

    NOTE:

    • Do not disassemble, short circuit or dispose of in fire
    • Do not mix with different battery type

    Package Included:

    • 1 x Battery Pack

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Virginia

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Bought this item on

12-15-2011
00:00:00 12-15-2011 it worked so well. Overall:  
  • Other Thoughts: On receipt of the Ni-MH Battery Pack, I got it used ...It was a BREEZE !Then it worked so well.

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David Burger

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Bought this item on

07-15-2009
00:00:00 07-15-2009 The item is in perfect condition Overall:  
  • Other Thoughts: I got exactly what I ordered on time and in perfect condition. Nice web site, will recommend this to my friends.

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Jeremy Yatooma

from ()

Bought this item on

03-09-2011
00:00:00 03-09-2011 Great deal! Overall:  
  • Other Thoughts: I needed to get rechargeable batteries because the Wii remotes were eating AAs like crazy. This is a great deal and it works wonderfully and is exactly what we needed.

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Estelle

from ()

Bought this item on

01-03-2012
00:00:00 01-03-2012 The price is right also Overall:  
  • Other Thoughts: I'm so glad I stumbled across Rechargeable Battery Charger while surfing the internet! The price is right also.

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Victoria

from ()

Bought this item on

01-31-2012
00:00:00 01-31-2012 worth the purchase Overall:  
  • Other Thoughts: There isn't a lot to say about a battery. This product arrived on time and as far as I can tell, it's working normally. The great thing is that it was cheaper to buy here including shipping, than it would have been to buy at a store down the street.

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