A 4.1 GHz dual modulus prescaler using the E-TSPC technique and double data throughput structures (2007)
- Authors:
- USP affiliated authors: SOARES JUNIOR, JOAO NAVARRO - EESC ; NOIJE, WILHELMUS ADRIANUS MARIA VAN - EP
- Unidades: EESC; EP
- Subjects: CIRCUITOS ELETRÔNICOS; CIRCUITOS INTEGRADOS MOS
- Language: Inglês
- Imprenta:
- Publisher: IEEE
- Publisher place: New Orleans
- Date published: 2007
- ISBN: 1424409217
- Conference titles: IEEE International Symposium on Circuits and Systems
-
ABNT
MIRANDA, Fernando Pedro Henriques de e SOARES JUNIOR, João Navarro e VAN NOIJE, Wilhelmus Adrianus Maria. A 4.1 GHz dual modulus prescaler using the E-TSPC technique and double data throughput structures. 2007, Anais.. New Orleans: IEEE, 2007. . Acesso em: 12 maio 2024. -
APA
Miranda, F. P. H. de, Soares Junior, J. N., & Van Noije, W. A. M. (2007). A 4.1 GHz dual modulus prescaler using the E-TSPC technique and double data throughput structures. In . New Orleans: IEEE. -
NLM
Miranda FPH de, Soares Junior JN, Van Noije WAM. A 4.1 GHz dual modulus prescaler using the E-TSPC technique and double data throughput structures. 2007 ;[citado 2024 maio 12 ] -
Vancouver
Miranda FPH de, Soares Junior JN, Van Noije WAM. A 4.1 GHz dual modulus prescaler using the E-TSPC technique and double data throughput structures. 2007 ;[citado 2024 maio 12 ] - A 3.5 mW programmable high speed frequency divider for a 2.4 GHz CMOS frequency synthesizer
- Implementation of analog circuits on digital sea of gates
- E-TSPC: extended true single-phase-clock MOS circuit technique for high speed applications
- Recuperador de clock em estrutura gate array do tipo mar de transistores
- Precise final state determination of mismatched cmos latches
- Metodos de teste de conversores a / d e sua aplicacao em projeto
- Analog circuits on sog gate arrays: an 100mhz 6-bit d / a converter
- Precise final state determination of cmos latches
- Analysis of the histogram testing applied to obtain the effective bit number of adc
- High speed cmos ecl-compatible input circuit
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