In this paper the power consumption and operating frequency of true single phase clock (TSPC) and extended true single phase clock (E-TSPC) frequency prescalers are investigated. Based on this study a new low power and improved speed TSPC 2/3 prescaler is proposed which is silicon verified. Compared with the existing TSPC architectures the proposed 2/3 prescaler is capable of operating up to 5 GHz and ideally, a 67% reduction of power consumption is achieved when compared under the same technology at supply voltage of 1.8 V. This extremely low power consumption is achieved by radically decreasing the sizes of transistors, reducing the number of switching stages and blocking the power s...
True Single Phase Clocked (TSPC) flip-flops (FF) are widely used in high-frequency dividers for thei...
An extended true-single-phase-clock (E-TSPC) based divide-by-2/3 counter design for low supply volt...
True single-phase clock (TSPC) rationale has discovered broad use in digital design. Initially as a ...
Dual-modulus prescaler is a critical block in power conscious PLL design. By modifying the second br...
New design improvement aiming to reduce the power consumption of true single-phase clock-based dual-...
A novel low-power and high-speed dual-modulus prescaler based on extended true single-phase clock (E...
A novel low-power and high-speed dual-modulus prescaler based on extended true single-phase clock (E...
Abstract- An extended true-single-phase-clock (E-TSPC) based divide-by-2/3 counter design for low su...
In this work, new design techniques that aim to reduce power consumption of true single-phase clock-...
A new design scheme intended to improve the performance of true single-phase clocked (TSPC) dual mod...
This project focused on the design and simulation of dual-modulus prescalars for 4 GHz to 12 GHz low...
This paper presents a dual-phase 32/33 dual-modulus prescaler integrated in 0.35-mm CMOS technology...
Capitalizing on the human insatiable need for information, many consumer products has incorporated w...
A new 5T TSPC based Multimodulus (32/33/47/48) prescaler is proposed. It is optimized in terms of av...
Abstract-Selection of dynamic dividers in CMOS PLLs for GHzs applications allows remarkable reductio...
True Single Phase Clocked (TSPC) flip-flops (FF) are widely used in high-frequency dividers for thei...
An extended true-single-phase-clock (E-TSPC) based divide-by-2/3 counter design for low supply volt...
True single-phase clock (TSPC) rationale has discovered broad use in digital design. Initially as a ...
Dual-modulus prescaler is a critical block in power conscious PLL design. By modifying the second br...
New design improvement aiming to reduce the power consumption of true single-phase clock-based dual-...
A novel low-power and high-speed dual-modulus prescaler based on extended true single-phase clock (E...
A novel low-power and high-speed dual-modulus prescaler based on extended true single-phase clock (E...
Abstract- An extended true-single-phase-clock (E-TSPC) based divide-by-2/3 counter design for low su...
In this work, new design techniques that aim to reduce power consumption of true single-phase clock-...
A new design scheme intended to improve the performance of true single-phase clocked (TSPC) dual mod...
This project focused on the design and simulation of dual-modulus prescalars for 4 GHz to 12 GHz low...
This paper presents a dual-phase 32/33 dual-modulus prescaler integrated in 0.35-mm CMOS technology...
Capitalizing on the human insatiable need for information, many consumer products has incorporated w...
A new 5T TSPC based Multimodulus (32/33/47/48) prescaler is proposed. It is optimized in terms of av...
Abstract-Selection of dynamic dividers in CMOS PLLs for GHzs applications allows remarkable reductio...
True Single Phase Clocked (TSPC) flip-flops (FF) are widely used in high-frequency dividers for thei...
An extended true-single-phase-clock (E-TSPC) based divide-by-2/3 counter design for low supply volt...
True single-phase clock (TSPC) rationale has discovered broad use in digital design. Initially as a ...