Journal Article FZJ-2016-00728

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A HfO 2 -Based Complementary Switching Crossbar Adder

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2015
Wiley Chichester

Advanced Electronic Materials 1(10), n/a - n/a () [10.1002/aelm.201500138]

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Abstract: Rapid growth of future information technology depends on energy-efficient computation and ultra-high density data storage. Non-volatile redox-based resistive switching memory (ReRAM) devices offer logic-in-memory capabilities and can redefine the von Neumann computer architecture. Especially complementary resistive switches (CRSs) enable the integration of highly dense passive nano-crossbar arrays in 4F2 structure (F is the minimum feature size) without the need of selector devices. To reduce fabrication complexity further, single ReRAM device in complementary switching (CS) mode is a viable option. Here, the implementation of in-memory-adders using Pt|HfO2|Hf|Pt-based CS devices, which are integrated into 1 × n passive crossbar arrays, is reported. First, the feasibility of all CRS-logic functions with these CS devices is shown, which offer high-endurance (109 cycles) under pulse conditions. Afterward, two multi-bit crossbar adders, the Toggle-Cell Adder and the Pre-Calculation Adder, are experimentally demonstrated under pulse conditions realizing addition and subtraction operations. These results prove the functional efficiency of the crossbar adder approach, paving the path for highly advanced ReRAM-based computing-in-memory architectures.

Classification:

Contributing Institute(s):
  1. Elektronische Materialien (PGI-7)
  2. JARA Institut Green IT (PGI-10)
  3. JARA-FIT (JARA-FIT)
Research Program(s):
  1. 521 - Controlling Electron Charge-Based Phenomena (POF3-521) (POF3-521)

Appears in the scientific report 2015
Database coverage:
Current Contents - Physical, Chemical and Earth Sciences ; No Authors Fulltext ; Science Citation Index Expanded ; Thomson Reuters Master Journal List ; Web of Science Core Collection
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Institute Collections > PGI > PGI-7
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 Record created 2016-01-20, last modified 2021-01-29



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