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Resistive random access memory (RRAM) is regarded as one of the most promising emerging memory technologies for next-generation embedded, standalone nonvolatile memory (NVM), and storage class memory (SCM) due to its speed, density, cost, and scalability. Considerable progress has been made in recent years on the manufacturability of RRAM, with low-density RRAM products now in production and the path...
Oxide-based resistive random access memory (RRAM) has been widely studied as the promising candidate for the applications of next generations of data storage and computing technologies. In this paper, we will discuss the physical mechanism and optimization design of oxide-based RRAM devices, the novel RRAM-based computing/memory unifying architectures and the applications for data storage and computing...
This paper presented the concept of adaptation and underactuation applied to robotic grippers for manipulations. In order that the gripper can grasp the objects of different shapes, the adaptive and underactuated mechanism without any driving system in the joints was used. The main objective of this work is the fundamental analysis of this underactuated finger, including the dimensional design, kinetostatic...
Typical bipolar resistive switching behavior are observed in the In/poly-Fe2O3/Nb-SrTiO3 (Nb-STO) devices. Rectifying I-V characteristics along with switching ratio significantly related to the polarity of read voltage have been found. A negative read voltage remarkable enhances the switching ratio to 107 comparing with 102 for the positive polarity, which demonstrates an efficient way to improve...
This paper presents a testing to examine the hemodynamic performance of a miniature axial blood pump caused by different motors. Three different motors was emplaced in the pump; 33% glycerin water flew into the testing rig; pump rotational speed, inlet pressure, outlet pressure, flow rate, power current and voltage were determined. The miniature axial blood pump produced a flow rate of 2-7 L/min against...
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