Showing posts with label powergenix. Show all posts
Showing posts with label powergenix. Show all posts

12/14/2010

PowerGenix ZRPGX-AA8 AA 1.6v 2500 mWh ZiNc High-Voltage Rechargeable Batteries -8 Pack (Green) Review

PowerGenix ZRPGX-AA8 AA 1.6v 2500 mWh ZiNc High-Voltage Rechargeable Batteries -8 Pack
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The product description of PowerGenix Nickel-Zinc Rechargeable AA cell promises many advantages over other rechargeable batteries: higher voltage, higher energy density, lighter weight, longer cycle life, and so on. But how does it stack up against the current gold-standard of low-self-discharge NiMH cell, the Sanyo Eneloop? Let's examine the following aspects:

[Operating Voltage]
The NiZn cell has a nominal voltage of 1.65V, which is 30% higher than that of a NiMH cell (1.25V nominal). When freshly charged, its terminal voltage is even higher at 1.85V!

[Power Density]
Since 'Power' is defined as 'Voltage * Current', most people may assume that "30% higher Voltage" translates to "30% higher Power". But it depends on the application:

- Most electronic gadgets (digital camera, MP3 player, etc) contain internal DC/DC regulators which operate in constant-power mode. If the battery voltage is higher, then input current will drop to maintain the same output power. That's why higher voltage alone does not make your digital camera shoot any faster.
(One exception is photo flash unit, which operates in constant-current mode. So in this case, 30% higher voltage does translate to 30% higher power and shorter cycle time)

- For an unregulated appliance such as a flashlight or power tool, its current increases with voltage (although not linearly). A typical 2-AA flashlight bulb is rated for 2.3V * 0.5A = 1.15W. When you apply 3.6V to it, the current may increase to 0.65A, so the power consumption is now 3.6V * 0.65A = 2.3W. Twice the power means twice the heat. That's why the bulb may burn out in seconds.

[Energy Density]
The PowerGenix AA cells are marketed as "2500 milli-WATT-hour" (energy capacity). Most people may confuse this with "2500 milli-Ampere-hour" (charge capacity). But the data sheet for NiZn AA cell shows that its current capacity is only 1500mAh (this is verified by my own testing). It turns out that an 1500mAh NiZn cell actually contains the same amount of energy as a 2000mAh SANYO eneloop AA cell:

- Energy in eneloop AA cell: 1.25V * 2000mAh = 2500mWh
- Energy in PowerGenix AA cell: 1.65V * 1500mAh = 2475mWh

[Weight]
The weight of each NiZn AA cell (25g) is essentially the same as that for eneloop AA cell (27g). For certain applications, it is possible to use three NiZn cells (3*1.65=5V) to replace four NiMH cells (4*1.25V=5V). Doing so reduces battery weight by 25%, but it also shortens run time by 25%.

[Cycle Life]
Technical data found on PowerGenix web site says NiZn cells are rated for 200 cycles (at 100% deep-discharge). This is much shorter than the 1000 cycles cited for eneloop cells.

I have tested a set of 4 PowerGenix AA cells. After subjecting them through 12-16 deep discharge cycles, the average charge capacity already dropped 5% from original value. In comparison, I have a set of 4 eneloop AAA cells that have went through about 100 cycles in the past 2.5 years, and they still exhibit over 95% of original capacity.

[Self-Discharge Rate]
In my long-term storage test after two months, a set of four NiZn cells retained 74% original charge capacity on average. This translates to about 13% loss per month, which is much better than that of ordinary high-capacity NiMH batteries (with capacity > 2500mAh). But it cannot compare to low-self-discharge NiMH cells.

Previously, I have conducted storage test for several brands of LSD cells, including Sanyo eneloop, Rayovac Hybrid, and Kodak Pre-Charged. All those cells can retain 85-90% of original capacity after FIVE months in storage.

[Recharging Time]
The PowerGenix NiZn cells must be recharged using a specially designed PowerGenix NiZn Charger. The charger is called '1-hour', but it actually takes 2.5 hours to fully recharge a set of four 1500mAh cells.

Eneloop (and all other brands of LSD cells) can be recharged using any good quality 'smart' NiMH charger. Depending on which charger you use, the charge time can be as short as 15 minutes, or as long as 8 hours.

[BOTTOM LINE]
The only verifiable benefit for PowerGenix NiZn cell is its higher operation voltage. However, even this may turn out to be a curse rather than a blessing, as higher voltage can cause unregulated appliances to burn out.

If you have a digital camera that works well with eneloop, stay with it. Switching to NiZn will not offer more power nor longer run time. Only if your camera does not work well with eneloop, then it is worthwhile to try NiZn cells as a last resort. But you better contact PowerGenix, and ask whether they will assume warranty liability for the use in your camera. Otherwise, try it at your own risk!

Click Here to see more reviews about: PowerGenix ZRPGX-AA8 AA 1.6v 2500 mWh ZiNc High-Voltage Rechargeable Batteries -8 Pack (Green)

Product Description:
PowerGenix 8 Pack AA 1.6v High Voltage Nickel Zinc Rechargeable cells 2500 mWh

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11/30/2010

PowerGenix ZR-PGX1HRAA-4B 1 Hour Quick Charger with 4 AA 1.6v NiZn Rechargeable Batteries Review

PowerGenix ZR-PGX1HRAA-4B 1 Hour Quick Charger with 4 AA 1.6v NiZn Rechargeable Batteries
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This product (PowerGenix 4-Position Charger with 4 AA High Voltage 1.6v 2500 mWh ZiNc Rechargeable Batteries) contains an 'one hour' charger specially designed for Nickel-Zinc AA/AAA cells. But it does not fully recharge to 100% within one hour. If you read the fine prints, it actually says "For maximum capacity from batteries charge up to 2.5 hours".

Despite its misleading name, this is actually a decent 'smart' charger. It works from universal input voltage (100-240V), and accepts 1-4 AA cells or 1-2 AAA cells. Each cell is charged individually (not in pairs). The red LED lights up during charging, and the green LED lights up when done. Just remember that you must not use this NiZn charger for NiMH cells, and vice versa.

The batteries are the new Nickel-Zinc rechargeable AA cells. The greatest selling feature of NiZn cell is its higher terminal voltage. The nominal operating voltage of NiZn is 1.65V, which is very close to alkaline and 30% higher than NiMH (1.25V nominal). However, when freshly charged, the NiZn terminal voltage is around 1.85V, which is dangerously high for most battery-operated appliances.

Upon closer examination, many of the alleged benefits of NiZn turn out to be just marketing hypes. For examples:

"Higher Energy Density":
Despite what the confusing rating on the package ("2500 milli-WATT-hour") may suggest, the PowerGenix AA cell does NOT contain more energy than a SANYO eneloop AA cell. This is because its current capacity is much lower at just 1500 milli-Ampere-hour (based on data sheet of PowerGenix AA cell, and verified by my own testing).
- Energy in eneloop AA cell: 1.25V * 2000mAh = 2500mWh
- Energy in PowerGenix AA cell: 1.65V * 1500mAh = 2475mWh

As an example: Suppose a set of 4 eneloop AA cells can power your external flash unit for 1500 shots, then a set of 4 PowerGenix AA cells will provide roughly the same number of shots. The difference is that your flash unit will recycle about 30% faster with the NiZn cells due to 30% higher battery voltage. On the other hand, this high rate of fire could cause the flash to over-heat and burn out.

"Long Cycle Life":
PowerGenix claims that NiZn has a service life that 'meets or beats' that of NiMH cells. But according to technical data found on PowerGenix web site, the NiZn cell is only rated for 200 cycles at 100% deep discharge. Most NiMH cells are rated for 500-1000 deep discharge cycles.

"Long Shelf Life":
PowerGenix claims the NiZn cells have longer shelf life than Lead-Acid batteries (which are notorious for high self-discharge rate), but did not compare against NiMH cells. In the "Charging Procedure" section, it says to recharge the NiZn battery every 30 days!In summary: While the higher voltage offered by PowerGenix NiZn cells sounds attractive, it could damage or shorten the life span of your battery-operated appliances. In addition, NiZn cell does not pack more energy than eneloop NiMH cell, yet it suffers from lower cycle life and higher self-discharge rate.

On the other hand, suppose you have an inexpensive camera (*cough*Kodak*cough*) that does not work well with NiMH cells, then the higher voltage offered by NiZn cells may be exactly what you need. If your camera gets fried... oh well, at least you have an excuse to upgrade to a beter camera!

[Update on Feb 9, 2010]
Several people have commented that my review above is heavy on technical data and not on personal usage experience. Please note that it was written shortly after NiZn cells was introduced. See my other review on PowerGenix ZRPGX-AA8 AA 8 Pack, which was written 3 months after this one. It includes my preliminary test results on self-discharge rate (good) and cell longevity (not so good).

Another point to note is that: since I'm an engineer, I'm overly concerned about applying 20% higher voltage (1.8V vs. 1.5V) to any electronic applicances. For example, I have tested my MAGLITE SP2209H 2-AA Cell Mini LED Flashlight over difference input voltage, and concluded that applying anything higher than 3.3V is dangerous (see my Customer Image for details). But other people may be happy to get extra light from higher voltage, without knowing that this can severely shorten the lifespan of the LED. Ignorance is bliss.

Click Here to see more reviews about: PowerGenix ZR-PGX1HRAA-4B 1 Hour Quick Charger with 4 AA 1.6v NiZn Rechargeable Batteries

Product Description:
PowerGenix - 1 Hour Quick Charger with 4 AA 1.6v Nickel Zinc high voltage rechargeable batteries 2500mWh

Buy NowGet 72% OFF

Want to read more honest consumer review about PowerGenix ZR-PGX1HRAA-4B 1 Hour Quick Charger with 4 AA 1.6v NiZn Rechargeable Batteries now ?