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Dive into the research topics where Cynthia Dang is active.

Publication


Featured researches published by Cynthia Dang.


IEEE Journal of Solid-state Circuits | 2016

A 2.7 mW/Channel 48–1000 MHz Direct Sampling Full-Band Cable Receiver

Jiangfeng Wu; Giuseppe Cusmai; Acer Wei-Te Chou; Tao Wang; Bo Shen; Vijayaramalingam Periasamy; Ming-Hung Hsieh; Chun-Ying Chen; Lin He; Loke Kun Tan; Aravind Padyana; Vincent Cheng-Hsun Yang; Gregory Unruh; Jackie Koon Lun Wong; Bryan Juo-Jung Hung; Massimo Brandolini; Maco Sha-Ting Lin; Xi Chen; Yen Ding; Yen-Jen Ko; Young Shin; Ada Hing T. Hung; Binning Chen; Cynthia Dang; Deepak Lakshminarasimhan; Hong Liu; Jerry Lin; Kowen Lai; Larry Wassermann; Ayaskant Shrivastava

A direct sampling full-band capture (FBC) receiver for cable and digital TV applications is presented. It consists of a 0.18 μm BiCMOS low-noise amplifier (LNA) and a 28 nm CMOS direct RF sampling receiver based on a 2.7 GS/s analog-to-digital converter (ADC) embedded in a system-on-chip (SoC). Digital signal processing (DSP) plays critical roles to assist analog circuits in providing functionalities and enhancing performances, including digital automatic gain control (AGC), digital phase-locked loop (PLL), and digital ADC compensation. The receiver is capable of receiving 158 256 QAM channels from 48 to 1000 MHz simultaneously, achieving up to 10 Gb/s data throughput for data and video while exceeding Data over cable service interface specification (DOCSIS) and Society of Cable Telecommunications Engineers (SCTE) requirements. The CMOS receiver occupies 1 mm2 area while consuming 300 mW. The LNA consumes 130 mW and occupies 3 mm2 area. The total power dissipation from the receiver is 2.7 mW per 6 MHz channel when capturing the entire cable spectrum.


symposium on vlsi circuits | 2015

A 2.7mW/Channel 48-to-1000MHz Direct Sampling Full-Band Cable Receiver

Jiangfeng Wu; Giuseppe Cusmai; Acer Wei-Te Chou; Tao Wang; Bo Shen; Vijayaramalingam Periasamy; Ming-Hung Hsieh; Chun-Ying Chen; Lin He; Loke Tan; Aravind Padyana; Cheng-Hsun Yang; Gregory Unruh; Jackie Koon Lun Wong; Juo-Jung Hung; Massimo Brandolini; Sha-Ting Lin; Xi Chen; Yen Ding; Yen-Jen Ko; Young Shin; Ada Hing T. Hung; Binning Chen; Cynthia Dang; Deepak Lakshminarasimhan; Iris Hong Liu; Jerry Lin; Kowen Lai; Larry Wassermann; Ayaskant Shrivastava

We present a direct sampling full-band capture receiver for cable and digital TV applications. It consists of a 28nm CMOS ADC-based direct sampling receiver and a 0.18um BiCMOS LNA. It is capable of receiving 158 channels from 48MHz to 1000MHz simultaneously, achieving up to 10Gb/s data throughput, while exceeding DOCSIS requirements. The CMOS receiver occupies 1mm2 area while consuming 300mW. The LNA consumes 130mW. The total power dissipation from the receiver is 2.7mW per 6MHz channel.


Archive | 2003

Method and system for controlling an encryption/decryption engine using descriptors

Kevin Patariu; Iue-Shuenn Chen; Jay Kwok Wa Li; Cynthia Dang; Mark Taylor Core


Archive | 2003

Method and system for secure access and processing of an encryption/decryption key

Kevin Patariu; Iue-Shuenn Chen; Jay Kwok Wa Li; Cynthia Dang; Mark Taylor Core


Archive | 2003

Method and system for data encryption and decryption

Francis Cheung; Jason Monroe; Kevin Patariu; Iue-Shuenn Chen; Cynthia Dang; Mark Taylor Core


Archive | 2007

Method and system for data encryption/decryption key generation and distribution

Kevin Patariu; Iue-Shuenn Chen; Jay Kwok Wa Li; Cynthia Dang; Mark Taylor Core


Archive | 2004

Data encryption/decryption device

Iue-Shuenn Chen; Francis Cheung; Mark Taylor Core; Cynthia Dang; Jason Monroe; Kevin Patariu


Archive | 2004

Secure access and processing of an encryption/decryption key

Kevin Patariu; Iue-Shuenn Chen; Jay Kwok Wa Li; Cynthia Dang; Mark Taylor Core


Archive | 2004

Génération et distribution d'une clé de chiffrage/déchiffrage

Iue-Shuenn Chen; Mark Taylor Core; Cynthia Dang; Jay Kwok Wa Li; Kevin Patariu


Archive | 2003

Set-Topbox mit integrierter Steuerungselektronik

Cynthia Dang; Tarek Kaylani; Jason Monroe

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