電氣工程及其自動化專業英語(簡體書)
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ISBN13:9787302303701
出版社:清華大學出版社(大陸)
作者:魏立明
出版日:2012/12/01
裝訂/頁數:平裝/191頁
規格:20.8cm*14.6cm (高/寬)
版次:1
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《電氣工程及其自動化專業英語》參照國內外電氣信息類專業的一些科技英語、專業英語和英語原版專業教材編寫而成。根據國家教育部的相關規定,結合電氣工程及其自動化、建築電氣與智能化、電子信息工程、自動化、電子信息科學與技術、通信工程以及計算機科學與技術等電氣信息類專業的特點,內容涵蓋了專業英語課文、專業英語詞匯。全書分為6個部分,每個部分包括3-5篇課文,《電氣工程及其自動化專業英語》參考學時36~48學時。各學校教師可根據本學校培養方案和教學大綱選擇相關內容進行授課。
《電氣工程及其自動化專業英語》可作為應用型高等院校電氣信息類專業本科生的專業英語教材,也可作為工程技術人員和一般讀者的自學參考書。
《電氣工程及其自動化專業英語》可作為應用型高等院校電氣信息類專業本科生的專業英語教材,也可作為工程技術人員和一般讀者的自學參考書。
名人/編輯推薦
《電氣工程及其自動化專業英語》可作為應用型高等院校電氣信息類專業本科生的專業英語教材,也可作為工程技術人員和一般讀者的自學參考書。
目次
Part 1 Fundamental of Electrical and Electronic Circuits
Chapter l Electric Devices
1.1 Resistors
1.1.1 Resistor Values
1.1.2 Real Resistor Values
1.1.3 Power Ratings of Resistors
1.2 Capacitors
1.2.1 Capacitance
1.2.2 Polarised Capacitors and Unpolarised CaDacitors
1.2.3 Capacitor Number Code
1.2.4 Capacitor Values
1.2.5 Main Characters of Capacitor
1.3 Inductors
1.3.1 Inductance
1.3.2 Ideal and Real Inductors
1.3.3 Applications
Chapter 2 Laws and Theory of Circuits
2.1 Ohm's Law
2.1.1 Ohm's law Formula
2.1.2 Ohm's Law Triangle
2.1.3 Ohm's Law Pie Chart
2.2 Kirchhoff's Circuit Law
2.2.1 Terms
2.2.2 Kirchhoff's Current Law (KCL)
2.2.3 Kirchhoff's Voltage Law (KVL)
2.2.4 Application of Kirchhoff's Circuit Law
Chapter 3 Analog Electronics Technology
3.1 Basic Devices
3.1.1 Diodes
3.1.2 Transistors
3.2 0perational Amplifiers
3.2.1 Introduction
3.2.2 The Circuit Symbol for an Op-amp
3.2.3 Operation
3.2.4 Op-amps Characteristics
Chapter 4 Digital Electronics Technology
4.1 Number Systems
4.2 Logical Operations
4.2.1 AND Operation and AND Gate
4.2.2 0R Operation and OR Gate
4.2.3 NAND Operation and NAND Gate
4.2.4 NOR Operation and NOR Gate
4.3 Combining Logic Gates
4.3.1 Flip-flops
4.3.2 Registers
4.3.3 Counters
Part 2 Electric Machinec
Chapter 5 Three-phase Circuits
5.1 Reasons for Use of Three-phase Circuits
5.2 Generation of Three-phase Voltages
Chapter 6 Transformers
6.1 Introduction
6.2 Transformer Principle
Chapter 7 Elementary Synchronous Machines
Chapter 8 Elementary Three-phase Induction Motors
8.1 Principal Components
……
Part 3 Electric Power Systems
Part 4 Automation Control Systems
Part 5 Integrated Circuits Technology
Part 6 Computers and Modern Communication Technologies
Reference
Chapter l Electric Devices
1.1 Resistors
1.1.1 Resistor Values
1.1.2 Real Resistor Values
1.1.3 Power Ratings of Resistors
1.2 Capacitors
1.2.1 Capacitance
1.2.2 Polarised Capacitors and Unpolarised CaDacitors
1.2.3 Capacitor Number Code
1.2.4 Capacitor Values
1.2.5 Main Characters of Capacitor
1.3 Inductors
1.3.1 Inductance
1.3.2 Ideal and Real Inductors
1.3.3 Applications
Chapter 2 Laws and Theory of Circuits
2.1 Ohm's Law
2.1.1 Ohm's law Formula
2.1.2 Ohm's Law Triangle
2.1.3 Ohm's Law Pie Chart
2.2 Kirchhoff's Circuit Law
2.2.1 Terms
2.2.2 Kirchhoff's Current Law (KCL)
2.2.3 Kirchhoff's Voltage Law (KVL)
2.2.4 Application of Kirchhoff's Circuit Law
Chapter 3 Analog Electronics Technology
3.1 Basic Devices
3.1.1 Diodes
3.1.2 Transistors
3.2 0perational Amplifiers
3.2.1 Introduction
3.2.2 The Circuit Symbol for an Op-amp
3.2.3 Operation
3.2.4 Op-amps Characteristics
Chapter 4 Digital Electronics Technology
4.1 Number Systems
4.2 Logical Operations
4.2.1 AND Operation and AND Gate
4.2.2 0R Operation and OR Gate
4.2.3 NAND Operation and NAND Gate
4.2.4 NOR Operation and NOR Gate
4.3 Combining Logic Gates
4.3.1 Flip-flops
4.3.2 Registers
4.3.3 Counters
Part 2 Electric Machinec
Chapter 5 Three-phase Circuits
5.1 Reasons for Use of Three-phase Circuits
5.2 Generation of Three-phase Voltages
Chapter 6 Transformers
6.1 Introduction
6.2 Transformer Principle
Chapter 7 Elementary Synchronous Machines
Chapter 8 Elementary Three-phase Induction Motors
8.1 Principal Components
……
Part 3 Electric Power Systems
Part 4 Automation Control Systems
Part 5 Integrated Circuits Technology
Part 6 Computers and Modern Communication Technologies
Reference
書摘/試閱
4.3 Combining Logic Gates
Individual logic gates are building blocks.They can stand-alone if only a single logic function is needed,or they can be combined with other gates for more complex operations.There are times when it is advantageous to substitute one kind of gate for another.It is an indicator of the versatility and flexibility of digital integrated circuits that the designer can configure the gates on hand to meet the circuit needs.
4.3.1 Flip-flops
In electronics,a flip flop or latch is a circuit that has two stable states and can be used to store state information.The circuit can be made to change state by signals applied to one or more control inputs and will have one or two outputs.It is the basic storage element in sequential logic.Flipflops and latches are a fundamental building block of digital electronics systems used in computers,communications,and many other types of systems.
Flip-flops and latches are used as data storage elements.Such data storage can be used for storage of state,and such a circuit is described as sequential logic.When used in a finite-state machine,the output and next state depend not only on its current input,but also on its current state.(and hence,previous inputs) It can also be used for counting of pulses,and for synchronizing variably-timed input signals to some reference timing signal.
Flip-flops can be either simple (transparent or opaque) or clocked (synchronous or edge-triggered); the simple ones are commonly called latches.The word latch is mainly used for storage elements,while clocked devices are described as flip-flops.
Flip-flops can be divided into common types.,the RS ("set-reset"),D ("data" or "delay"),T ("toggle"),and JK types are the common ones.The behavior of a particular type can be described by what is termed the characteristic equation,which derives the "next" (i.e.,after the next clock pulse) output,Q ,in terms of the input signal(s) and/or the current output,Q.
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