Designing with Speech Processing Chips by Ricardo Jimenez


 




Hardcover: 323 pages


Publisher: Academic Pr (May 1991)


Language: English


ISBN-10: 0123853486


ISBN-13: 978-0123853486


Product Dimensions: 0.5 x 6 x 9.2 inches


Shipping Weight: 1.4 pounds






Biography


Ricardo Jimenez holds a Master's Degree in Electronics Engineering. He teaches courses on Digital Logic, Microcontrollers, Instrumentation, Electronic Design, and Circuit Analysis. He is an adjunct professor in Electronics at Imperial Valley College. He has been awarded the Best Idea for Design in 1990 and 2013 by Electronic Design Magazine.


You can see his latest articles "Ideas For Design" at electronicdesign.com






This work provides the theory and basic design tools needed to use speech processing chips effectively in circuit design. Speech processing chips are powerful, specialized integrated circuits used to provide synthesized voice output and/or voice recognition input for many different types of computerized systems. The book presents design examples for a wide range of real-world applications and shows how to interconnect the various components (speech chips, sensors, A/D converters, and speakers) into functional equipment for instrumentation, data processing, and control systems. It also covers a number of the most popular speech synthesis, speech recognition, and digital signal processing (DSP) chips on the market and summarizes the important characteristics of each.


Designing with Speech Processing Chips focuses on the role that speech processing chips play in data processing, control systems, and inventory display. The book highlights the use of these chips in electronic circuit design. 


Divided into seven chapters, the book identifies different kinds of chips, including Serial Speech ROM SPR128A; SPR000 Parallel-to-Serial Speech Interface Chip; and Samsung Voice Synthesizers. Experiments on several speech processors are conducted. Electronic diagrams are also presented to show how these chips function. The text puts emphasis on analog and digital circuits. Concepts include the use of a window comparator or a 10-step voltage comparator to drive a speech processor; how to design alternating current motor-speed controller with artificial voice; and how to create a talking coffee machine controller. The book goes further by discussing the design of burglar alarms and voice recognition chips. 


The text is a vital source of data for system engineers, engineering students, technicians, and readers interested in the study of speech processing chips.






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