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Kirjailija

Baker Mohammad

Kirjat ja teokset yhdessä paikassa: 16 kirjaa, julkaisuja vuosilta 2013-2024, suosituimpien joukossa Self-powered SoC Platform for Analysis and Prediction of Cardiac Arrhythmias. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.

16 kirjaa

Kirjojen julkaisuhaarukka 2013-2024.

Self-powered SoC Platform for Analysis and Prediction of Cardiac Arrhythmias

Self-powered SoC Platform for Analysis and Prediction of Cardiac Arrhythmias

Hani Saleh; Nourhan Bayasi; Baker Mohammad; Mohammed Ismail

Springer International Publishing AG
2017
sidottu
This book presents techniques necessary to predict cardiac arrhythmias, long before they occur, based on minimal ECG data. The authors describe the key information needed for automated ECG signal processing, including ECG signal pre-processing, feature extraction and classification. The adaptive and novel ECG processing techniques introduced in this book are highly effective and suitable for real-time implementation on ASICs.
Number Systems for Deep Neural Network Architectures

Number Systems for Deep Neural Network Architectures

Ghada Alsuhli; Vasilis Sakellariou; Hani Saleh; Mahmoud Al-Qutayri; Baker Mohammad; Thanos Stouraitis

Springer International Publishing AG
2024
nidottu
Various number systems (conventional/unconventional) exploited for DNNs are discussed, including Floating Point (FP), Fixed Point (FXP), Logarithmic Number System (LNS), Residue Number System (RNS), Block Floating Point Number System (BFP), Dynamic Fixed-Point Number System (DFXP) and Posit Number System (PNS).
Number Systems for Deep Neural Network Architectures

Number Systems for Deep Neural Network Architectures

Ghada Alsuhli; Vasilis Sakellariou; Hani Saleh; Mahmoud Al-Qutayri; Baker Mohammad; Thanos Stouraitis

Springer International Publishing AG
2023
sidottu
This book provides readers a comprehensive introduction to alternative number systems for more efficient representations of Deep Neural Network (DNN) data. Various number systems (conventional/unconventional) exploited for DNNs are discussed, including Floating Point (FP), Fixed Point (FXP), Logarithmic Number System (LNS), Residue Number System (RNS), Block Floating Point Number System (BFP), Dynamic Fixed-Point Number System (DFXP) and Posit Number System (PNS). The authors explore the impact of these number systems on the performance and hardware design of DNNs, highlighting the challenges associated with each number system and various solutions that are proposed for addressing them.
High Efficiency Power Amplifier Design for 28 GHz 5G Transmitters

High Efficiency Power Amplifier Design for 28 GHz 5G Transmitters

Nourhan Elsayed; Hani Saleh; Baker Mohammad; Mohammed Ismail; Mihai Sanduleanu

Springer Nature Switzerland AG
2023
nidottu
This book introduces power amplifier design in 22nm FDSOI CMOS dedicated towards 5G applications at 28 GHz and presents 4 state-of-the-art power amplifier designs. The authors discuss power amplifier performance metrics, design trade-offs, and presents different power amplifier classes utilizing efficiency enhancement techniques at 28 GHz. The book presents the design process from theory, simulation, layout, and finally measurement results.
High Efficiency Power Amplifier Design for 28 GHz 5G Transmitters

High Efficiency Power Amplifier Design for 28 GHz 5G Transmitters

Nourhan Elsayed; Hani Saleh; Baker Mohammad; Mohammed Ismail; Mihai Sanduleanu

Springer Nature Switzerland AG
2022
sidottu
This book introduces power amplifier design in 22nm FDSOI CMOS dedicated towards 5G applications at 28 GHz and presents 4 state-of-the-art power amplifier designs. The authors discuss power amplifier performance metrics, design trade-offs, and presents different power amplifier classes utilizing efficiency enhancement techniques at 28 GHz. The book presents the design process from theory, simulation, layout, and finally measurement results.
Power Management for Wearable Electronic Devices

Power Management for Wearable Electronic Devices

Dima Kilani; Baker Mohammad; Mohammad Alhawari; Hani Saleh; Mohammed Ismail

Springer Nature Switzerland AG
2021
nidottu
This book describes power management integrated circuits (PMIC), for power converters and voltage regulators necessary for energy efficient and small form factor systems. The authors discuss state-of-the-art PMICs not only for battery powered wearable devices, but also energy harvesting-based devices. The circuits presented support voltage scaling to reduce the overall average power consumption of a wearable device, resulting in longer device operating time. The discussion includes many designs, control techniques and approaches to distribute efficiently the power among different blocks in the device.• Demonstrates for readers how to innovate in designing power management integrated circuits (PMIC) suitable for wearable devices, powered by either battery or harvesting energy;• Introduces a dual outputs switched capacitor, using a single voltage regulator to minimize the area overhead and discusses the effect of having more than two outputs on the area and power efficiency;• Introduces a novel clock-less digital LDO regulator that eliminates the use of the clocked comparator and serial shift register in the conventional design;• Presents experimental results of energy harvesting-based power management units (PMU), using different combinations of power converters and voltage regulators, providing a guide for designers to select the appropriate option based on device requirements.
Power Management for Wearable Electronic Devices

Power Management for Wearable Electronic Devices

Dima Kilani; Baker Mohammad; Mohammad Alhawari; Hani Saleh; Mohammed Ismail

Springer Nature Switzerland AG
2020
sidottu
This book describes power management integrated circuits (PMIC), for power converters and voltage regulators necessary for energy efficient and small form factor systems. The authors discuss state-of-the-art PMICs not only for battery powered wearable devices, but also energy harvesting-based devices. The circuits presented support voltage scaling to reduce the overall average power consumption of a wearable device, resulting in longer device operating time. The discussion includes many designs, control techniques and approaches to distribute efficiently the power among different blocks in the device.• Demonstrates for readers how to innovate in designing power management integrated circuits (PMIC) suitable for wearable devices, powered by either battery or harvesting energy;• Introduces a dual outputs switched capacitor, using a single voltage regulator to minimize the area overhead and discusses the effect of having more than two outputs on the area and power efficiency;• Introduces a novel clock-less digital LDO regulator that eliminates the use of the clocked comparator and serial shift register in the conventional design;• Presents experimental results of energy harvesting-based power management units (PMU), using different combinations of power converters and voltage regulators, providing a guide for designers to select the appropriate option based on device requirements.
Ultra Low Power ECG Processing System for IoT Devices

Ultra Low Power ECG Processing System for IoT Devices

Temesghen Tekeste Habte; Hani Saleh; Baker Mohammad; Mohammed Ismail

Springer Nature Switzerland AG
2018
nidottu
?This book describes an ECG processing architecture that guides biomedical SoC developers, from theory to implementation and testing. The authors provide complete coverage of the digital circuit implementation of an ultra-low power biomedical SoC, comprised of a detailed description of an ECG processor implemented and fabricated on chip. Coverage also includes the challenges and tradeoffs of designing ECG processors.Describes digital circuit architecture for implementing ECG processing algorithms on chip;Includes coverage of signal processing techniques for ECG processing;Features ultra-low power circuit design techniques;Enables design of ECG processing architectures and their respective on-chip implementation.
Ultra Low Power ECG Processing System for IoT Devices

Ultra Low Power ECG Processing System for IoT Devices

Temesghen Tekeste Habte; Hani Saleh; Baker Mohammad; Mohammed Ismail

Springer International Publishing AG
2018
sidottu
?This book describes an ECG processing architecture that guides biomedical SoC developers, from theory to implementation and testing. The authors provide complete coverage of the digital circuit implementation of an ultra-low power biomedical SoC, comprised of a detailed description of an ECG processor implemented and fabricated on chip. Coverage also includes the challenges and tradeoffs of designing ECG processors.Describes digital circuit architecture for implementing ECG processing algorithms on chip;Includes coverage of signal processing techniques for ECG processing;Features ultra-low power circuit design techniques;Enables design of ECG processing architectures and their respective on-chip implementation.
Self-powered SoC Platform for Analysis and Prediction of Cardiac Arrhythmias

Self-powered SoC Platform for Analysis and Prediction of Cardiac Arrhythmias

Hani Saleh; Nourhan Bayasi; Baker Mohammad; Mohammed Ismail

Springer International Publishing AG
2018
nidottu
This book presents techniques necessary to predict cardiac arrhythmias, long before they occur, based on minimal ECG data. The authors describe the key information needed for automated ECG signal processing, including ECG signal pre-processing, feature extraction and classification. The adaptive and novel ECG processing techniques introduced in this book are highly effective and suitable for real-time implementation on ASICs.
Energy Harvesting for Self-Powered Wearable Devices

Energy Harvesting for Self-Powered Wearable Devices

Mohammad Alhawari; Baker Mohammad; Hani Saleh; Mohammed Ismail

Springer International Publishing AG
2018
nidottu
This book discusses the design and implementation of energy harvesting systems targeting wearable devices. Finally, the authors present power management circuits for using multiple energy harvesting sources at the same time to power devices and to enhance efficiency of the system.
Memristor Technology: Synthesis and Modeling for Sensing and Security Applications

Memristor Technology: Synthesis and Modeling for Sensing and Security Applications

Heba Abunahla; Baker Mohammad

Springer International Publishing AG
2017
sidottu
This book provides readers with a single-source guide to fabricate, characterize and model memristor devices for sensing applications. The authors describe a correlated, physics-based model to simulate and predict the behavior of devices fabricated with different oxide materials, active layer thickness, and operating temperature. They discuss memristors from various perspectives, including working mechanisms, different synthesis methods, characterization procedures, and device employment in radiation sensing and security applications.
Energy Harvesting for Self-Powered Wearable Devices

Energy Harvesting for Self-Powered Wearable Devices

Mohammad Alhawari; Baker Mohammad; Hani Saleh; Mohammed Ismail

Springer International Publishing AG
2017
sidottu
This book discusses the design and implementation of energy harvesting systems targeting wearable devices. The authors describe in detail the different energy harvesting sources that can be utilized for powering low-power devices in general, focusing on the best candidates for wearable applications. Coverage also includes state-of-the-art interface circuits, which can be used to accept energy from harvesters and deliver it to a device in the most efficient way. Finally, the authors present power management circuits for using multiple energy harvesting sources at the same time to power devices and to enhance efficiency of the system.
Embedded Memory Design for Multi-Core and Systems on Chip

Embedded Memory Design for Multi-Core and Systems on Chip

Baker Mohammad

Springer-Verlag New York Inc.
2016
nidottu
This book describes the various tradeoffs systems designers face when designing embedded memory. Readers designing multi-core systems and systems on chip will benefit from the discussion of different topics from memory architecture, array organization, circuit design techniques and design for test. The presentation enables a multi-disciplinary approach to chip design, which bridges the gap between the architecture level and circuit level, in order to address yield, reliability and power-related issues for embedded memory.
Embedded Memory Design for Multi-Core and Systems on Chip

Embedded Memory Design for Multi-Core and Systems on Chip

Baker Mohammad

Springer-Verlag New York Inc.
2013
sidottu
This book describes the various tradeoffs systems designers face when designing embedded memory. Readers designing multi-core systems and systems on chip will benefit from the discussion of different topics from memory architecture, array organization, circuit design techniques and design for test. The presentation enables a multi-disciplinary approach to chip design, which bridges the gap between the architecture level and circuit level, in order to address yield, reliability and power-related issues for embedded memory.