A low-cost, low-current consumption 2.4- 2.5GHz MMIC power amplifier operating at 3.3V single supply has been developed for high data rate, wide-range portable WLAN applications. The MMIC utilizes a Fairchild-proprietary InGaP HBT process that enables the design of high power density and extremely linear circuits at frequencies exceeding 6GHz. The MMIC design has been constructed based on accurate HBT and passives models, focusing on performance optimization for low AM-AM and AM-PM distortion, low current consumption and minimal harmonic levels. For an OFDM modulated signal at 54Mbps data rate, the PA delivers +23.6 dBm linear output at a corresponding Error Vector Magnitude (EVM) of 4.4%(-27dB), while consuming an average packe...
Abstract−New efficiency enhancement techniques have been devised and implemented to InGaP/GaAs HBT M...
This paper presents a comprehensive design of a fully integrated multistage GaAs HBT power amplifier...
This paper presents a broadband H-Band (220 -325 GHz) power amplifier in a 35nm InGaAs-based metamor...
Abstract — A low-cost, low-current consumption 2.4-2.5GHz MMIC power amplifier operating at 3.3V si...
This paper describes the design, fabrication and measured performance of a 4.9 to 6GHz Power Amplifi...
As a mobile phone is getting smaller and lighter toward a low cost unit (LCU), it is natural that a ...
Abstract — This paper describes the design, fabrication and measured performance of a 4.9 to 6GHz P...
The technology, design aspects and performance of a family of three compact W-band power amplifier M...
The monolithic microwave integrated circuit (MMIC) power amplifiers serve an essential and critical ...
A highly efficient and compactly integrated balanced power amplifier (PA) for W-CDMA handset applica...
In the demand of high data rate wireless transformation, bandwidth is a expensive resource. Thanks t...
This paper proposes a design of 0.15μm Monolithic Microwave Integrated Circuit (MMIC) power amplifie...
In the demand of high data rate wireless transformation, bandwidth is a expensive resource. Thanks t...
This paper proposes a design of 0.15μm Monolithic Microwave Integrated Circuit (MMIC) power amplifie...
This paper proposes a design of 0.15μm Monolithic Microwave Integrated Circuit (MMIC) power amplifie...
Abstract−New efficiency enhancement techniques have been devised and implemented to InGaP/GaAs HBT M...
This paper presents a comprehensive design of a fully integrated multistage GaAs HBT power amplifier...
This paper presents a broadband H-Band (220 -325 GHz) power amplifier in a 35nm InGaAs-based metamor...
Abstract — A low-cost, low-current consumption 2.4-2.5GHz MMIC power amplifier operating at 3.3V si...
This paper describes the design, fabrication and measured performance of a 4.9 to 6GHz Power Amplifi...
As a mobile phone is getting smaller and lighter toward a low cost unit (LCU), it is natural that a ...
Abstract — This paper describes the design, fabrication and measured performance of a 4.9 to 6GHz P...
The technology, design aspects and performance of a family of three compact W-band power amplifier M...
The monolithic microwave integrated circuit (MMIC) power amplifiers serve an essential and critical ...
A highly efficient and compactly integrated balanced power amplifier (PA) for W-CDMA handset applica...
In the demand of high data rate wireless transformation, bandwidth is a expensive resource. Thanks t...
This paper proposes a design of 0.15μm Monolithic Microwave Integrated Circuit (MMIC) power amplifie...
In the demand of high data rate wireless transformation, bandwidth is a expensive resource. Thanks t...
This paper proposes a design of 0.15μm Monolithic Microwave Integrated Circuit (MMIC) power amplifie...
This paper proposes a design of 0.15μm Monolithic Microwave Integrated Circuit (MMIC) power amplifie...
Abstract−New efficiency enhancement techniques have been devised and implemented to InGaP/GaAs HBT M...
This paper presents a comprehensive design of a fully integrated multistage GaAs HBT power amplifier...
This paper presents a broadband H-Band (220 -325 GHz) power amplifier in a 35nm InGaAs-based metamor...