© 2018 IEEE. CMOS transistors have become nanometer devices and operating frequencies (fmax) of transistors keep increasing with each technology node. Today, in 28 nm and 40 nm CMOS, sub-THz circuits can be implemented in standard CMOS. By using non-linear circuit techniques, CMOS can be used beyond fmax. In this paper, several design examples will be discussed together with some application results.status: publishe
Up until recently, the terahertz frequency range (0.3 to 3THz) has been mostly addressed by high-mob...
The terahertz frequency spectrum is gaining increasing interest due to its intriguing applications i...
Recent results in IC design have demonstrated the possibility to realize CMOS circuits working in th...
With the continuing scaling of CMOS nodes and increases in operation frequency of RF integrated circ...
There is a growing interest in terahertz and mm-wave systems for compact, low cost and energy effici...
© 2017 IEEE. Scaling in CMOS has increased the attainable operational frequencies, while greatly inc...
With the continuing scaling of CMOS nodes and increases in operation frequency of RF integrated circ...
‘Terahertz gap’ refers to the still widely un-utilised part of electromagnetic spectrum. EM waves in...
Transistors are currently in wide use in the RF front-ends of smart phones and other mobile platform...
There is a growing interest in terahertz and mm-wave systems for compact, low cost and energy effici...
* On leave at UCSB from Lund University during 2006-2007 We examine the feasibility of developing bi...
Over the last three decades, radio-frequency(RF) Complementary Metal-Oxide-Semiconductor(CMOS) elect...
Abstract — Well into the latter half of the 1990s, few experts believed that CMOS would ever become...
This work presents the design and measurements of a 0.54 THz signal generator implemented in a 40 nm...
In terahertz-band communication using ultra-high frequencies, compound semiconductors with superior ...
Up until recently, the terahertz frequency range (0.3 to 3THz) has been mostly addressed by high-mob...
The terahertz frequency spectrum is gaining increasing interest due to its intriguing applications i...
Recent results in IC design have demonstrated the possibility to realize CMOS circuits working in th...
With the continuing scaling of CMOS nodes and increases in operation frequency of RF integrated circ...
There is a growing interest in terahertz and mm-wave systems for compact, low cost and energy effici...
© 2017 IEEE. Scaling in CMOS has increased the attainable operational frequencies, while greatly inc...
With the continuing scaling of CMOS nodes and increases in operation frequency of RF integrated circ...
‘Terahertz gap’ refers to the still widely un-utilised part of electromagnetic spectrum. EM waves in...
Transistors are currently in wide use in the RF front-ends of smart phones and other mobile platform...
There is a growing interest in terahertz and mm-wave systems for compact, low cost and energy effici...
* On leave at UCSB from Lund University during 2006-2007 We examine the feasibility of developing bi...
Over the last three decades, radio-frequency(RF) Complementary Metal-Oxide-Semiconductor(CMOS) elect...
Abstract — Well into the latter half of the 1990s, few experts believed that CMOS would ever become...
This work presents the design and measurements of a 0.54 THz signal generator implemented in a 40 nm...
In terahertz-band communication using ultra-high frequencies, compound semiconductors with superior ...
Up until recently, the terahertz frequency range (0.3 to 3THz) has been mostly addressed by high-mob...
The terahertz frequency spectrum is gaining increasing interest due to its intriguing applications i...
Recent results in IC design have demonstrated the possibility to realize CMOS circuits working in th...