<p>For four decades the evolution of integrated circuits has followed Mooreβs law, according to which the number of transistors per square millimeter of silicon doubles every 18 months. At the same time transistors have become faster, making possible ever-increasing clock rates in digital circuits.
Circuit techniques for low-voltage and high-speed A/D converters
β Scribed by Halonen, Kari A. I.; Waltari, Mikko E
- Publisher
- Kluwer Academic Publishers
- Year
- 2002
- Tongue
- English
- Leaves
- 132
- Series
- Kluwer international series in engineering and computer science SECS 709.; Kluwer international series in engineering and computer science. Analog circuits and signal processing
- Edition
- 2002
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
This useful monograph presents a total of seven prototypes: two double-sampled S/H circuits, a time-interleaved ADC, an IF-sampling self-calibrated pipelined ADC, a current steering DAC with a deglitcher, and two pipelined ADCs employing the SO techniques.
β¦ Table of Contents
Content: 1. Introduction. 2. Low Voltage Issues. 3. Sample-and-Hold Operation. 4. A/D Converters. 5. S/H Circuit Architectures. 6. Sampling with a MOS Transistor Switch. 7. Operational Amplifiers. 8. Clock Generation. 9. Double-Sampling. 10. Switched OpAmp Technique. 11. Other Low-Voltage Techniques. 12. Prototypes and Experimental Results. 13. Conclusions. Appendices: Derivation of OTA GBW Requirement. Optimum Input Capacitance. Saturation Voltage.
β¦ Subjects
Analog-to-digital converters.;Low voltage systems.;Electronic circuits.;COMPUTERS;Data Transmission Systems;General.
π SIMILAR VOLUMES
<P>This useful monograph presents a total of seven prototypes: two double-sampled S/H circuits, a time-interleaved ADC, an IF-sampling self-calibrated pipelined ADC, a current steering DAC with a deglitcher, and two pipelined ADCs employing the SO techniques. </P>
The increasing digitalization in all spheres of electronics applications, from telecommunications systems to consumer electronics appliances, requires analog-to-digital converters (ADCs) with a higher sampling rate, higher resolution, and lower power consumption. The evolution of integrated circuit
This useful monograph presents a total of seven prototypes: two double-sampled S/H circuits, a time-interleaved ADC, an IF-sampling self-calibrated pipelined ADC, a current steering DAC with a deglitcher, and two pipelined ADCs employing the SO techniques.
<p>Analog-to-Digital Converters (ADCs) play an important role in most modern signal processing and wireless communication systems where extensive signal manipulation is necessary to be performed by complicated digital signal processing (DSP) circuitry. This trend also creates the possibility of fabr