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Titlebook: On-Chip Current Sensors for Reliable, Secure, and Low-Power Integrated Circuits; Rodrigo Possamai Bastos,Frank Sill Torres Book 2020 Sprin

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Rodrigo Possamai Bastos,Frank Sill Torres.Is aimed at science that is useful for practice, in all itsIn dairy industries throughout the world there is a desire to optimize udder health. An improved udder health will lead to improved animal welfare, improved production efficiency and a reduction of the use of antibiotics. To improve udder h
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.Is aimed at science that is useful for practice, in all itsIn dairy industries throughout the world there is a desire to optimize udder health. An improved udder health will lead to improved animal welfare, improved production efficiency and a reduction of the use of antibiotics. To improve udder h
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Effects of Transient Faults in Integrated Circuits,duced by environmental and intentional perturbation sources. The first section briefly analyzes the transient faults induced by environmental perturbation events during the IC lifetime, and the next section synthesizes the consequences of transient faults due to intentional perturbation events, whic
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Effectiveness of Hardware-Level Techniques in Detecting Transient Faults,m operation is called concurrent error detection (CED). Several CED techniques have been proposed with the intent to design more reliable computing systems. These techniques mainly differ in their detection capabilities and in the constraints they impose on the system design. This chapter evaluates
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Architectures of Body Built-In Current Sensors for Detection of Transient Faults, detecting single, short-duration, long-duration, and multiple (and simultaneous) transient faults. This kind of sensor combines the high fault detection effectiveness of costly fault-tolerance schemes (e.g. duplication with comparison) with the low-area and low-power overheads of less effective mit
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Enhancing the Design of Body Built-In Sensor Architectures,mBBICS) is discussed. Its principal characteristic is the separation of the sensing part of the sensor, called head, and the circuitry for generation of the flag, called tail. This division enables higher flexibility, improved robustness and lower costs in terms of area and power dissipation. Next,
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Noise Robustness of Body Built-In Sensors, more important for analog sensors measuring substrate effects. This chapter presents the investigation of the noise tolerance of Body Built-In Current Sensors that enable the detection of radiation induced transient faults. The analysis is based on extracted layout data, including the substrate pro
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Body Built-In Cells for Detecting Transient Faults and Adaptively Biasing Subcircuits, bias level. Modern strategies of reliability, security, and power management that considers adaptive body biasing (ABB) are either able to reduce soft error rate by forward body biasing or increase it by applying reverse body biasing. Hence, ABB strategies demand additional mechanisms to compensate
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