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Implementation of nitrogen-doped titanium-tungsten tunable heater in phase change random access memory and its effects on device performance
Journal article   Peer reviewed

Implementation of nitrogen-doped titanium-tungsten tunable heater in phase change random access memory and its effects on device performance

Chun Chia Tan, Rong Zhao, Luping Shi and Tow Chong Chong
Applied physics letters, Vol.105(15), 153501
13/10/2014

Abstract

Physical Sciences Physics Physics, Applied Science & Technology
Nitrogen-doped titanium-tungsten (N-TiW) was proposed as a tunable heater in Phase Change Random Access Memory (PCRAM). By tuning N-TiW's material properties through doping, the heater can be tailored to optimize the access speed and programming current of PCRAM. Experiments reveal that N-TiW's resistivity increases and thermal conductivity decreases with increasing nitrogen-doping ratio, and N-TiW devices displayed (similar to 33% to similar to 55%) reduced programming currents. However, there is a tradeoff between the current and speed for heater-based PCRAM. Analysis of devices with different N-TiW heaters shows that N-TiW doping levels could be optimized to enable low RESET currents and fast access speeds. (C) 2014 AIP Publishing LLC.

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