A history is given of low Earth orbit (LEO) laboratory test data on a 6.5 ampere-hour bipolar nickel hydrogen battery designed and built at the NASA Lewis Research Center. The bipolar concept is a means of achieving the goal of producing an acceptable battery, of higher energy density, able to withstand the demands of low-Earth-orbit regimes. Over 4100 LEO cycles were established on a ten cell battery. It seems that any perturbation on normal cycling effects the cells performance. Explanations and theories of the battery's behavior are varied and widespread among those closely associated with it. Deep discharging does provide a reconditioning effect and further experimentation is planned in this area. The battery watt-hour efficiency is abo...
A breakthrough in low earth orbit (LEO) cycle life of individual pressure vessel (IPV) nickel hydrog...
This paper on nickel hydrogen batteries is an overview of the various nickel hydrogen battery design...
When individual pressure vessel (IPV) nickel-hydrogen (Ni/H2) cells were selected as the energy stor...
A history of low Earth orbit laboratory test data on a 6.5 Ah bipolar nickel hydrogen battery design...
A ten cell bipolar nickel hydrogen 6.5 ampere-hour battery demonstrated over 2000 low Earth orbit cy...
A series of tests was performed to characterize battery performance relating to certain operating pa...
Extensive characterization testing has been done on a second 40 amp-hour (Ahr), 10-cell bipolar nick...
In July, l986, a high-voltage nickel-hydrogen battery was assembled at the NASA Lewis Research Cente...
Design studies have identified bipolar nickel-hydrogen batteries as an attractive storage option for...
Nickel-hydrogen cells are currently being manufactured on a semi-experimental basis. Rechargeable ni...
Three nickel hydrogen battery designs, individual pressure vessel (IPV), common pressure vessel (CPV...
Nickel hydrogen cells, and more recently, bipolar batteries have been built by a variety of organiza...
The design of a nickel hydrogen battery utilizing bipolar construction in a common pressure vessel i...
Nickel-Hydrogen cells are being cycled under a LEO (low earth orbit) test regime to examine the bene...
The needs of multikilowatt storage for low Earth orbit applications are featured. The modular concep...
A breakthrough in low earth orbit (LEO) cycle life of individual pressure vessel (IPV) nickel hydrog...
This paper on nickel hydrogen batteries is an overview of the various nickel hydrogen battery design...
When individual pressure vessel (IPV) nickel-hydrogen (Ni/H2) cells were selected as the energy stor...
A history of low Earth orbit laboratory test data on a 6.5 Ah bipolar nickel hydrogen battery design...
A ten cell bipolar nickel hydrogen 6.5 ampere-hour battery demonstrated over 2000 low Earth orbit cy...
A series of tests was performed to characterize battery performance relating to certain operating pa...
Extensive characterization testing has been done on a second 40 amp-hour (Ahr), 10-cell bipolar nick...
In July, l986, a high-voltage nickel-hydrogen battery was assembled at the NASA Lewis Research Cente...
Design studies have identified bipolar nickel-hydrogen batteries as an attractive storage option for...
Nickel-hydrogen cells are currently being manufactured on a semi-experimental basis. Rechargeable ni...
Three nickel hydrogen battery designs, individual pressure vessel (IPV), common pressure vessel (CPV...
Nickel hydrogen cells, and more recently, bipolar batteries have been built by a variety of organiza...
The design of a nickel hydrogen battery utilizing bipolar construction in a common pressure vessel i...
Nickel-Hydrogen cells are being cycled under a LEO (low earth orbit) test regime to examine the bene...
The needs of multikilowatt storage for low Earth orbit applications are featured. The modular concep...
A breakthrough in low earth orbit (LEO) cycle life of individual pressure vessel (IPV) nickel hydrog...
This paper on nickel hydrogen batteries is an overview of the various nickel hydrogen battery design...
When individual pressure vessel (IPV) nickel-hydrogen (Ni/H2) cells were selected as the energy stor...