Designing with Speech Processing Chips.
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Description
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 cir. Read more... Front Cover Designing with Speech Processing Chips Copyright Page Table of Contents Dedication Preface Acknowledgments Chapter 1. Speech Processing Chips 1.1 Introduction to Voice Synthesis Digital ICs 1.2 Synthesis Techniques 1.3 SPO256B/SPO264 Narrator Speech Synthesis Processors 1.4 SPO256-AL2 Allophone Speech Synthesis Processor 1.5 Serial Speech ROM SPR128A 1.6 SPR000 Parallel-to-Serial Speech Interface Chip 1.7 SDS624 Speech Synthesis Development Board 1.8 Digitalker Kit DT1050 1.9 Toshiba CMOS Speech Synthesis LSI Devices. 1.10 TSP5220C Voice Synthesis Chip from Texas Instruments1.11 CMOS ADPCM Speech Synthesizers and Recorders from Oki Semiconductor 1.12 Samsung Voice Synthesizers ICs References Chapter 2. Experimenting with Speech Processors 2.1 Evaluating the Allophone Addresses for the SPO256-AL2 2.2 Interfacing the SPO256-AL2 with a PC/XT 2.3 Interfacing a Speech Synthesizer to a Commodore 64 Computer 2.4 Generating a Technical Vocabulary for the SPO256-AL2 2.5 Designing a Speech-Synthesized Event Counter 2.6 Circuit Vocalizes Hex Code for a 4-Bit Input 2.7 Circuit Vocalizes 8-Bit Binary Input. 2.8 Improved Technique Vocalizes Binary Code for 8-Bit Input2.9 Microcontroller Routine Handles the Basic Functions of a Speech Processor 2.10 Field Programmable Controller Am29CPL100 Drives the Speech Processor SPO256-AL2 2.11 Multiplexing a Speech Processor with Different Data Sources References Chapter 3. Analog Circuits 3.1 Basics of the A/D Converters 3.2 Interfacing the ADC0804 to Digitalker DT1050 3.3 Handling Multiple A/D Converters 3.4 Using a Window Comparator to Drive a Speech Processor 3.5 Using a 10-Step Voltage Comparator to Drive a Speech Processor. 3.6 Interfacing a Speech Processor to a Logic Probe3.7 Talking Programmable Gain Amplifier 3.8 Designing an Electronic Thermometer That Announces Readings 3.9 Interfacing Displacement Transducers to Speech Processors 3.10 BCD A/D Converter Interface to SPO256 Chapter 4. Digital Circuits 4.1 4-Bit Magnitude Comparator Calls Out the Results 4.2 A Talking Hexadecimal Keyboard Encoder 4.3 Designing a Talking Semaphore 4.4 How to Design a Talking Clock 4.5 Designing a Speaking Coin Detector 4.6. Designing a Talking Coffee Machine Controller. 4.7 Designing a Talking Random Number Generator4.8 Designing an Alternating Current Motor-Speed Controller with Artificial Voice Chapter 5. Test and Measurement Circuits 5.1 Designing a Talking Autorange Frequency Counter 5.2 Designing a Talking Voltmeter Using SPO256-AL2 5.3 Designing a Direct Current Voltmeter with the Digitalker Kit DT1050 5.4 Using a Field Programmable Controller to Design a Compact Autorange Direct Current Voltmeter 5.5 Designing a Circuit to Announce Alternating Current Line Voltage 5.6 Designing a Circuit to Announce Alternating Current Line Frequency Cycles.
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