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Nickel–cadmium: NiCd NiCad Cadmium: KOH Yes c. 1960 [26] 0.9–1.05 [27] 1.2 [28] 1.3 [27] 0.11 (30) [28] 0.36 (100) [28] 150–200 [29] 10 [14] Nickel–hydrogen: NiH 2 Ni-H 2: Hydrogen: KOH Yes 1975 [30] 1.0 [31] 1.55 [29] 0.16–0.23 (45–65) [29] 0.22 (60) [32] 150–200 [29] 5 [32] Nickel–metal hydride: NiMH Ni-MH Metal hydride: KOH ...
A nickel–metal hydride battery (NiMH or Ni–MH) is a type of rechargeable battery. The chemical reaction at the positive electrode is similar to that of the nickel–cadmium cell (NiCd), with both using nickel oxide hydroxide (NiOOH). However, the negative electrodes use a hydrogen-absorbing alloy instead of cadmium.
350–500 (NiMH) 1.5: 12 × 30.2 Rechargeable nickel–cadmium and nickel–metal hydride are far less common than other rechargeable sizes. [63] Mercury batteries of the same dimensions are no longer manufactured. A21: A21 11A E11A MN11 L1016 4LR23 V11GA LR1016 4LR932 (alkaline) 1811A (alkaline) 6135-99-665-9374 [64] 55 (alkaline) 6: 10.3 × 16.0
Rechargeable batteries in the AA size are available in multiple chemistries: nickel–cadmium (NiCd) with a capacity of roughly 600–1,000 mAh, [12] nickel–metal hydride (NiMH) in various capacities of 600–2,750 mAh [13] [14] and lithium-ion. NiCd and NiMH provide 1.2 V; lithium-ion chemistry has a nominal voltage of 3.6–3.7 volts, and ...
The nickel–cadmium battery (NiCd) was invented by Waldemar Jungner of Sweden in 1899. It uses 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 Nickel–cadmium batteries have been almost completely superseded by nickel–metal hydride (NiMH ...
Compared to NiMH battery where usable maximum continuous current drain is not more than 5C. Nickel–metal hydride batteries are the newest, and most similar, competitor to Ni–Cd batteries. Compared to Ni–Cd batteries, NiMH batteries have a higher capacity and are less toxic, and are now more cost effective.
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