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Electronic systems. Part 3 Digital systems and systems
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  • Electronic systems. Part 3 Digital systems and systems
ID: 47262
Baranowski Jerzy, Kalinowski Bogusław, Nosal Zbigniew
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Part III of the three-volume textbook presents the implementation of elementary digital gates, their static and dynamic properties as well as development directions along with the assessment of physical and technological limitations. The trigger systems in application to more complex systems and digital systems have been discussed in detail. A separate chapter is devoted to memory systems, taking into account the latest trends in this field. The issues related to the processing of analog and digital signals are also described.
The book is intended for students of electronics faculties of technical universities, especially in the field of hardware and apparatus specialties.

Table of Contents


PREFACE

1. TECHNICAL REALIZATIONS OF BASIC LOGIC SYSTEMS


1.1. Properties and parameters of logic circuits
1.1.1. General description of logic circuits
1.1.2. Transient characteristics, interference margins
1.1.3. The load capacity of the gate
1.1.4. Dynamic properties
1.1.5. Relationships between propagation time and power
1.2. TTL systems
1.2.1. Construction and principle of operation
1.2.2. Basic system variations
1.2.3. Fast S-TTL, LS-TTL and F-TTL gates
1.3. ECL systems
1.3. Construction and principle of operation
1.3.2. Gateways series 10K
1.3.3. Goals 100K series
1.4. I2L systems
l .5. Unipolar logic circuits
1.5.1. Goals PMOS
1.5.2. NMOS gates
1.5.3. CMOS gateways
1.5.4. Gallium arsenide gates (GaAs)
1.6. Comparison of goal achievement techniques
Supplementary literature

2. SUBSIDIARY DIGITAL SYSTEMS


2.1. The concept of an auxiliary digital system
2.2. Transmission gate
2.3. Triple-tank buffers
2.4. System for maintaining the state of the bus line
2.5. A negative voltage generating system for substrate bias
Supplementary literature

3. BASIC FOR SEQUENCES


3.1. The concept of a sequential system
3.2. Asynchronous RS (RS latch)
3.3. Latch D
3.4. Flip D
3.5. JK and JK flip-flops
3.6. T switch
3.7. Metastability of latches
3.8. Frequency divider by 3 (meter counter 3)
Supplementary literature

4. SOLID STORAGE MEMORY


4.1. Types of memory
4.2. Memory of non-compelling content
4.2.1. General description
4.2.2. MROM memory (Mask ROM, ROM)
4.2.3. EPROM memory
4.2.4. OTPROM (OTP-EPROM) memory
4.2.5. Parallel EEPROM (E2PROM) memory
4.2.6. Parallel FLASH memories
4.2.7. Serial EEPROM and FLASH memories
4.2.8. Analogue memories
4.2.9. FRAM memory
4.3. RAM memory
4.3.1. Asynchronous static RAM (SRAM)
4.3.2. Synchronous static memories (clocked SRAM)
4.3.3. Specialized SRAM memories
4.3.4. Dynamic RAM (DRAM)
Supplementary literature

5. DIGITAL-ANALOGUE AND ANALOG-DIGITAL TRANSMITTERS


5.1. Basic information about signal conversion
5.1.1. The role of transducers in electronic devices
5.1.2. Range of processed analog signals
5.1.3. The dynamics of digital processing
5.1.4. Processing of variable signals
5.1.5. Binary representation of numbers - transducer codes
5.2. Parameters of A / C and C / A converters
5.2.1. Static parameters
5.2.2. Dynamic parameters of transducers
5.3. Digital-analogue converters
5.3.1. Types of digital-to-analogue converters
5.3.2. Intermediate analogue converters
5.3.3. D / A converters with R-2R ladder
5.3.4. Other D / A converter circuits
5.3.5. CMOS D / A converters
5.4. Analog-to-digital converters
5.4.1. Types of A / D converters
5.4.2. A / C converters
5.4.3. Double integrator transducer
5.4.4. Parallel A / D converters
5.5. Transducers with excess sampling
5.5.1. The principle, operation of transducers
5.5.2. Single-bit analog-to-digital converters
5.5.3. Single-bit D / A converters
Supplementary literature

INDEX
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