PLC: from principle to application design(Chinese Edition)
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ZHAO YAN

PLC: from principle to application design(Chinese Edition) (2013)

Lieferung erfolgt aus/von: China, Volksrepublik ~EN PB NW

ISBN: 9787121193989 bzw. 7121193981, vermutlich in Englisch, Taschenbuch, neu.

58,89 ($ 71,48)¹ + Versand: 8,24 ($ 10,00)¹ = 67,13 ($ 81,48)¹
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Lieferung aus: China, Volksrepublik, Versandkosten nach: DEU.
Von Händler/Antiquariat, BookerStudy.
paperback. New. Ship out in 2 business day, And Fast shipping, Free Tracking number will be provided after the shipment.Paperback. Pub Date: 2013 Pages: 308 Publisher: Electronic Industry Press PLC: from principle to application design content is divided into nine chapters. China is currently the most widely used high-performance small programmable controller (hereinafter referred to PLC) FX2N-based. detailed PLC works. hardware and software constitute the knowledge of the command system and communication network applications. The book focus from the PLC when applied to the control system software and hardware resource allocation. design thinking and design methods. and take full advantage of the hardware and software programming resources for a full description of the control procedures. Focus on the theory and practice of written insert instance in a timely manner in the chapters. so that readers better understanding and mastery of specific content. and PLC control system solutions as Chapter 6. to facilitate the reader is referred to. in order to improve its integrated application programmable the ability of the controller. Contents: Chapter 1 Basic knowledge of programmable controllers 1.1 Relay control circuit and PLC1.1.1 relay control circuit 1.1.2 GM ten PLC1.1.3 connection type programming system memory programming system 1.2 PLC and PLC control system constitute 1.2.1 PLC 1.3 PLC Input Output (IO) basic unit and PLC control system hardware systems constitute 1.2.2 PLC software interface 1.3.1 PLC switch input interface 1.3.2 PLC switch output interface 1.4.3 scan cycle and response time of 1.4 PLC control work process - cyclic scan interrupt 1.4.1 PLC cycle scan interrupt working condition 1.4.2 PLC 1.5 PLC programming language 1.5.1 PLC programming language international standards 1.5.2 Ladder features of 1.6 commonly used PLC type 1.7 PLC characteristics Exercises Chapter 2 FX2N PLC and the soft component 2.1 FX2N type PLC characteristics and system configuration 2.1.1 FX2N technical characteristics 2.1.2 FX2N Model 2.1. 3 FX2N system hardware configuration 2.1.4 FX2N technical indicators 2.2 FX2N programming soft elements exercises chapter PLC basic instruction and programming 3.1 basic logic instruction 3.1.1 logic taken and coil drive instruction LD. LDI. OUT3.1.2 touch point series instruction AND the ANI3.1.3 contacts parallel instruction OR ORI3.1.4 tandem loop block parallel instruction ORB3.1.5 parallel circuit block series instruction ANB3.1.6 edge detection instruction LDP. the LDF. ANDP. ANDF. ORP ORF3.1.7 the pulse command PLS. PLF3.1.8 set and reset instructions SET. RST3.1.9 reversal instruction INV3.1.10 stack memory and multiple output instructions MPS. MRD. MPP3.1.11 master contacts directive MC. MCR3.1.12 null operation instruction NOP3 the trapezoid of the basic steps of the ladder design .1.13 program the end instruction END3.2 ladder prepared rules 3.2.1 Ladder programming format 3.2.2 ladder design rules 3.2.3 3.3 logic instruction programming - Basic design methodology and typical control link The basic design methods 3.3.2 3.3.1 ladder diagram design typical control link ladder design 3.3.3 the logical instruction Ladder Design Example Exercises Chapter 4 PLC of the order of 4.1 graphical representation of the sequence control process control instructions and programming - state transition diagram 4.1.1 state transition diagram describes the sequence control process 4.1.2 state transition diagram for the preparation of rules 4.2 step instruction and stepladder stepladder 4.2.1 4.2.2 Step Instruction 4.3 stepladder 4.4 state transition diagram of common processes state programming instruction programming methods 4.4.1 single process state programming 4.4.2 4.4.3 selective branching and merging state jump and repeat programming programming 4.4.4 parallel branching and merging state 4.4.5 combination of branching and merging 4.5 state transition diagram and step instruction programming examples Exercises Chapter 5 FX2N function instruction 5.1 function instruction representation and execution 5.1.1 instruction with instruction operand 5.1.2 data length form of execution 5.2 program flow control instruction 5.2.1 conditional jump instructions FNC005.2.2 subroutine call and return instructions FNC01 FNC025.2.3 interrupt instruction FNC03 FNC04 FNC055.2.4 main program end instruction FNC065.2.5 monitor timer instruction FNC075.2.6 loop start instruction and cycle the end of the data transfer instruction FNC08 FNC095.3 and compare instruction 5.3.1 instruction FNC105.3.2 interval compare instructions transmitted FNC115.3.3 Instructions FNC125.3.4 shift transmission instruction FNC135.3.5 take anti-transfer instructions FNC145.3.6 block transfer instructions FNC155.3.7 Multicast instruction FNC165.3.8 data exchange instruction the Transform command transfer and compare instructions FNC185.3.10 BIN transform command FNC195.3.11 data FNC175.3.9 BCD application 5.4 instances of arithmetic and logical operations instruction 5.4.1 Addition Instructions FNC205.4.2 subtraction instruction SUB the FNC215.4.3 multiplication instruction the MUL FNC225.4.4 division instruction FNC235.4.5 of plus minus one instruction in an instruction FNC24 FNC255.4.6 logic or XOR instruction FNC26 FNC27 FNC285.4.7 complementing instruction FNC295.4.8 is arithmetic and logic operations instructions Application Examples 5.5 5.5.1 The right and left loop instruction cycle and shift instructions FNC30 FNC315.5.2 with carry around left shift instruction cycle instruction FNC32FNC335.5.3 bit the components right shift components FNC34 FNC355.5.4 word element right word element left shift instruction FNC36 cycle and shift instructions FNC375.5.5 the application instance 5.6 Data processing instruction 5.6.1 interval reset command FNC405.6.2 decoding instruction FNC415.6.3 the coding instructions FNC425.6.4 set 1 digit sum instruction FNC435.6.5 set a discrimination instruction FNC445. the 6.6 averages the instructions FNC455.6.7 alarm is set instruction FNC465.6.8 alarm reset instruction FNC475.6.9 square root instruction FNC485.6.10 floating point the operating instructions FNC495.6.11 data processing instructions Application Examples 5.7 high-speed processing instruction 5.7.1 refresh command input and output FNC505.7.2 filtering adjust instruction FNC515.7.3 matrix input instruction FNC525.7.4 set of high-speed counter instruction FNC535.7.5 high-speed counter the reset command FNC545.7.6 high-speed counter distinction comparison instructions FNC555.7.7 speed measurement the instructions FNC565.7.8 pulse output instruction FNC575.7.9 pulse width modulation the instructions FNC585.7.10 high-speed processing instruction application instance 5.8 convenient instruction 5.8.1 initial state sequence instructions instruction FNC605.8.2 absolute value cam FNC625.8.3 incremental cam sequence instruction FNC635.8.4 of teach-timer command the the FNC645.8.5 special timer instruction FNC655.8.6 alternating output the instructions FNC665.8.7 rotation station device IO functions the control instructions FNC685.9 peripheral the instruction the 5.9.1 data input instructions FNC70 FNC71FNC725.9.2 digital decoding instruction FNC73FNC745.9.3 ASCII conversion instruction FNC765. 9.4 printout instruction FNC775.9.5 of special function module to read the instructions FNC785.9.6 special function modules the write instruction FNC795.9.7 external device IO function instruction application instance 5.10 FX series peripherals (SER) instruction 5.10.1 serial communication instruction RS (FNC80) 5.10.2 octal transfer instruction FNC815.10.3 ASCI transform instruction 5.10.4 hexadecimal the conversion instruction FNC835.11 peripherals instruction 5.11.1 Gray code conversion and inverse conversion instruction 5.11.2 analog modules read write instruction FNC176FNC1775. The 12 contact comparison instruction 5.12.1 contacts compare instruction 5.12.2 contacts in series Exercises Chapter 6 PLC control system design 6.1 PLC control system design principles and steps the Directive 5.12.3 contacts parallel instruction 6.1.1 PLC 6.2.1 PLC type of the general principles of control system design. control system design step 6.1.2 PLC 6.2 PLC Selection and hardware design Select the 6.2.2 installation forms 6.2.3 IO points determine 6.2.4 storage capacity determine 6.2.5 input and output interface module 6.2.6 Expansion Module 6.2.7 Selection of power supply 6.2.8 IO points simplification and expansion of the peripheral circuit design 6.2.9 PLC 6.3 PLC control system software design method 6.3.1 Experience Design 6.3.2 relay - contactor control line conversion design 6.3.3 logic design methods 6.3.4 sequence design method - the reliability of the state transition diagram design method 6.3.5 program evaluation 6.4 PLC Design 6.4.1 interference inhibition of source power interference interference pathway 6.4.3 6.4.2 6.4.4 wiring and grounding - line interference suppression 6.4.5 redundant systems and hot standby system 6.5 PLC control system design examples Exercises Chapter 7 FX2N Series PLC Special Function Module 7.1 function module type 7.1.2 Overview 7.1.1 Special function module installation and application of the special function module 7.2 analog input module 7.2.1 FX2N-4AD technical indicators 7.2.2 FX2N- 7.3.4 FX2N 4AD wiring 7.2.3 FX2N-4AD buffer register 7.3 analog output module (DA) 7.3.1 FX2N-2DA technical indicators 7.3.2 FX2N-2DA wiring 7.3.3 FX2N-2DA buffer register -2DA offset and gain adjustment control a module 7.4.1 FX2N-1HC high-speed counting module 7.4 Positioning 7.4.2 FX2N-1PG pulse output module 7.4.3 FX2N-1RM-SET programmable cam switch Exercises Chapter 8 PLC communications and network 8.1 PLC network communication basics 8.1.1 Data communication foundation 8.1.2 Data communication and transmission rate the 8.1.3 serial communication interface standard 8.2 FX2N series PLC communication devices 8.3 FX2N series PLC forms of communication and configuration 8.3.1 PLC N: N network - parallel communication between the PLC and the PLC 8.3.3 PLC 1:1 network computer communication-PLC serial communication 8.3.2 PLC - PLC and PLC the machine parallel link communication 8.4 computer link No protocol data transfer 8.4.1 serial communication protocol format 8.4.2 PLC computer link communication protocol 8.4.3 protocol data transfer exercises 9th chapter PLC programming tools 9.1 handheld programmer 9.1.1 handheld programmer composed and the operation panel 9.1.3 9.1.2 handheld programmer operation programming operation 9.2 programming software FXGPWIN9.2.1 into the programming environment 9.2.2 writing or editing program and Notes 9.2.3 program download and upload 9.2.4 device monitoring and mandatory settings 9.2.5 program Print 9.3 programming software GX Developer9.3.1 programming environment and functions 9.3.2 program input and editing operations 9.3.3 program conversion and inspection the 9.3.4 program comments and display 9.3.5 device 9.3.7 monitoring device monitoring and mandatory set 9.3.6 program printing and mandatory set 9.3.8 simulation debugging exercises References Satisfaction guaranteed,or money back.
Daten vom 31.01.2021 07:36h
ISBN (andere Schreibweisen): 7-121-19398-1, 978-7-121-19398-9
Zuerst gefunden: 31.01.2021 07:37:07
Zuletzt gefunden: 31.01.2021 07:37:07
Kleinster Preis: 58,89 (vom 31.01.2021 07:37:07)
Höchster Preis: 58,89 (vom 31.01.2021 07:37:07)
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ZHAO YAN: PLC: from principle to application design(Chinese Edition)
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