f1-20p说明书
维修电工技师理论知识试卷(3)附答案

维修电工技师理论知识试卷(3)注意事项1.考试时间:120min。
2.请首先按要求在试卷的标封处填写您的姓名、准考证号和所在单位的名称。
3.请仔细阅读各种题目的回答要求,在规定的位置填写您的答案。
一、填空题(第1~20题。
请将正确答案填入题内空白处。
每题1分,共20分。
1.是最严重的触电事故。
2.在维修直流电机时,对各绕组之间作耐压试验,其试验电压用流电。
3.atopping,代表。
4.当电动机低于额定转速采用调速。
5.可编程控制器输入指令根据用编程器写入程序。
6.在测绘之前,应先把测绘出来。
7.IGBT的开关特性显示关断波形存在现象。
8.功率场效应晶体管最大功耗随管壳温度的增高而。
9.肖特基二极管适用于电压要求快速、高效的电路中。
10.绝缘栅双极晶体管具有速度快、阻抗高、通态电压低、耐压高、电容量大的特点。
11.大修结束后,对接线检查无误后必须进行合格后,才能办理检修设备移交手续。
12.液压系统维修时,本着“先外后内,,先洗后修”的原则。
13.按照工艺要求,进行电气大修首先要切断总电源,做好性安全措施。
14.在指导学员操作中,必须经常对学员加强教育。
15.在指导操作和独立操作训练法中要求应注意让学员反复地进行操作训练。
16.是质量管理和质量体系要素指南。
17.精益生产方式中,产品开发采用的是方法。
18.在转速负反馈系统中,闭环系统的转速降减为开环系统转速降的倍。
19.在三菱F—20MR系统中,常开触点与母线的连接指令是.20.是三菱可编程控制器的程序结束指令。
二、选择题(第21~30题。
请选择一个正确答案,将相应字母填入括号内。
每题2分,共20分)21.触电者()时,应进行胸外挤压法进行救护。
(A)有心跳无呼吸(B)有呼吸无心跳(C)既无心跳又无呼吸(D)既有心跳又有呼吸22.测量轧刚机轧制力时通常选用()做传感器。
(A)压力传感器(B)压磁传感器(C)霍尔传感器(D)压电传感器23.测量电感大小时应选用()。
安川伺服驱动器PG-X2编码器反馈选件卡说明书

1. Part Number: PG-X2.2. Applicability: F7, G7, GPD515/G5, G5HHP.3. Introduction: The PG-X2 encoder feedback option card (Figure 1) is mounted on the drive’s Control Board and performs speed feedback using the pulse generator (PG) on the motor to correct speed fluctuation caused by motor slip. Motor rotation direction is detected by phase A and phase B PG pulse inputs. The terms encoder, PG (pulse generator), and pulse train are used interchangeably in this guide. The card can be used for flux vector control or V/Hz with PG feedback control.4. Receiving: All equipment is tested against defect at the factory. Report any damages or shortages evident when the equipment is received to the commercial carrier who transported the equipment.5. Cautions:a. Hazardous voltage can cause severe injury or death. Lock all power sources feeding the drive in the “OFF” position.b. This option card uses CMOS IC chips. Use proper electrostatic discharge (ESD) protective procedures whenhandling the card to prevent I.C. damage or erratic drive operation.c. If other option cards are to be installed at the Option C (2CN) or Option D (3CN) positions (See Figure 2), theirinstallation and wiring should be completed before installation of this option.d. Before installing this option, a technically qualified individual, who is familiar with this type of equipment and thehazards involved, should read this entire installation guide.Figure 1. PG-X2 Encoder Feedback CardFigure 2. PG-X2 Option Card installationMounting HoleConnector, Rear Side of Board to Control Bd., 4CNTerminal Block TA2Terminal Block TA1Variable Resistor,Adjusts +12V PG PowerVariable Resistor,Adjusts +5V PG PowerTerminal TA3 Connect ShieldHere2 Mounting HolesGround Lead Wire- Connects to Grounding Terminal on Control BoardFigure 3. Mounting Spacer 6. Precautions and Preliminary Installation:a. Remove contents from package. Verify that a mounting spacer(P/N 5RNT41028-9) is included with the card. See Figure 3. b. Disconnect all electrical power to the drive. c. Remove the drive’s front cover.d. Check that the “CHARGE” indicator lamp inside the drive is off.e. Use a voltmeter to verify voltage at incoming power terminals(L1, L2, L3) has been disconnected.f. Insert the spacer into the mounting hole in the base of the drive,just above the top edge of the control board. See Figure 2. g. Note: When re-installing the cover, please take care not to pinchany of the encoder wires.h. Important: GPD 515/G5 models 20P2 to 22P2 and 40P2 to 41P5 have two closely spaced mounting holes. Insertthe spacer into the hole closest to the control board’s connector 4CN. If inserted in the wrong hole, the spacer WILL NOT properly align with the PG-W2’s mounting hole.7. PG-X2 Installation: See Figure 2.a. Position the bottom edge of the option card into the mounting bracket on the control board’s terminal block. Align twomounting holes in the card with pins on the bracket.b. Then angle the top edge of the card into place, carefully aligning connector 4CN on the back of the card withconnector 4CN on the control board. Gently press the card into place until 4CN and the spacer click into place.8. Wiring: Refer to Figure 4 and Tables 1 & 2. Make wire connections between the PG-X2 card and encoder as well as any external monitoring circuits. Observe the following:a. The need for the marker Z (C) channel depends on the installed custom (CASE) software. Standard software doesnot use the marker pulse.b. Keep the PG-X2 (i.e. control circuit) wiring separate from main circuit input/output wiring. A separate metallicgrounded conduit with ONLY the PG wiring running through it is preferred.c. To prevent erroneous operation caused by noise interference, use shielded cable for control signal wiring, and limitthe distance to 50m (165 feet) or less.d. Recommended cable is twisted pair, 22AWG, with overall shield, such as Belden 9504. Refer to “ElectricalInstallation” in the drive technical manual for further information on use of shielded cable. The shielded sheath connection points on the PG-X2 card are terminal TA3.e. Strip back insulation for a distance of 0.22 in. on wire leads connected to the PG-X2 terminals.f. Connect the option card ground wire (E) to the drive’s ground terminal TB3 (12 for G5).9. Adjustment: The+12VDC and +5VDC outputs of the PG-X2 card are factory calibrated. No adjustment should be necessary.10. Cover: Reinstall and secure drive’s front cover.11. Programming: Table 3 lists all drive parameters related to encoder feedback. Ensure that all of these parameters are programmed to meet the requirements of the application.12. Start-up: Refer to Section 2 in the drive’s technical manual for testing and start-up information.13. IG Storage: Place this instruction guide with the drive’s technical manual.Table 1. Terminal FunctionsTerminal Block TerminalNumberFunction1 +12VDCPower supply for Pulse Generator (PG).Important: Use either +12V or +5V, but never both at the same time.2 0V +12VDC, 200mA max3 +5VDC +5VDC, 200mA max4 +5 -A Pulse6 +7 -B Pulse8 +9 -Z Pulse*TA110 0V CommonTerminalPG Signal Inputs RS-422 Level Input1 +2 -A Pulse3 +4 -B Pulse5 +6 - Z Pulse*TA27 IG5 Isolated Common Terminal Pulse Monitor Output RS-422 Level OutputTA3 Shield Drain for Encoder Wiring * Not required for standard software. May be required for custom software.Table 2. Terminal and Wire SpecificationsTerminal Symbol TerminalScrewClamping TorqueLb-in (N-m)Wire RangeAWG (mm 2)TA1, TA2 M21.8 to2.2(0.22 to 0.25)26 to 16(Stranded: 0.14 to 1)(Solid: 0.14 to 1.5)Notes:(1) Power Supply for PG (from PG-X2)TA1 1-2: +12VDC, 200mA max.Ta1 3-2: +5VDC, 200mA maxDo Not Use Both Supplies at theSame Time.(2) H20 Dynapar Encoder Connections ShownFigure 4. PG-X2 Interconnection Diagram14. Application: If the encoder’s power requirement is greater than 200mA, provide a separate power supply source as shown in Figure 5. If the momentary power loss ride thru function of the drive is to be used, include a backup capacitor in the PG power wiring or take other necessary precautions.Figure 5. Using Separate PG Power Supply15. Maximum Input Frequency: The maximum input frequency of the PG-W2 card is 300kHz. To find the output frequency of the encoder (PG) in Hertz, use the following formula. Please make sure a 20% safety margin is built-in.f PG (Hz) = Maximum Motor Speed (RPM) x Encoder PPR (Pulses/Rev)60Figure 6. Encoder (PG) Signals – Forward Direction16. Signal type / level requirements: The PG-X2 card requires a “quadrature line driver with compliments” signal type from the encoder (pulse generator). As shown in Figure 6, line driver signals include both a primary signal (Signal A+) and it’s compliment (Signal A-). The compliment is the inverse of the primary signal. This scheme is used to improve the noise immunity of the system. The encoder output signal voltage should be between +5VDC and +12VDC. An “open collector” signal type WILL NOT work with the PG-X2 card.A quadrature signal is one that lags the primary signal by 90 electrical degrees (1/2 of a pulse). The purpose of this is so that the drive can detect the direction of the encoder rotation. As shown in Figure 6, for “forward” rotation of the encoder, signal A+will lead signal B+ by 90o.If any one of the four signals is missing, the drive cannot accurately measure the encoder rotation speed or direction.17. Viewing Signals With An Oscilloscope: The PG-X2 option card has test points that can be used to connect anoscilloscope. Test points PA, PB, and PZ are after the compliment is subtracted out and the signals are buffered through the opto-isolators. See Figure 4. The voltage level on all test points varies between 0 and +5VDC (TTL).Caution: Always use an un-grounded oscilloscope so no noise is introduced into the common.Table 3. PG-X2 Test PointsTest Point DescriptionGNDAlthough labeled GND, it is NOT earth ground. This test point should only be used in conjunctionwith test points PA, PB, and PZ.PA Channel A (Terminals 4 & 5) PB Channel B (Terminals 6 & 7) PZ Channel Z (Terminals 8 & 8)Note: All signals shown are in relation to power supply common, Terminal 2 of the PG-X2.Table 3. GPD 515/G5, F7, and G7 Encoder Feedback Parameter List Control Method (2)D i g i t a l O p e r a t o rF u n c t i o nG r o u pD i g i t a l O p e r a t o r D i s p l a yP a r a m e t e r N u m b e rP a r a m e t e r N a m eS e t t i n g R a n g eF a c t o r y S e t t i n gC h a n g eD u r i n g O p e r a t i o n (1)D a t a S e l e c t i o nV /f w / P G F e e d b a c k F l u x V e c t o r PG Pulse/Rev F1-01 PG Constant 0 to 60000 1024 X O OPG Fdbk LossSel F1-02Operation at Open PG Circuit 0 to 31XOO PG OverspeedSel F1-03 Operation Selection at Overspeed 0 to 3 1 XO O PG DeviationSel F1-04 Operation Selection at Deviation0 to 3 3 X0: Ramp to Stop 1: Coast to Stop 2: Fast-Stop 3: Alarm OnlyO OPG RotationSel F1-05 PG Rotation0,1 0 X 0: Fwd = CCW1: Fwd = CW O OPG Ramp PI/ISel F1-07 IntegralControl during Accel/Decel 0,1 0 X 0: Disabled 1: EnableO XPG OverspeedLevel F1-08 Overspeed Detection Level 0 to 120% 115% XO OPG OverspeedTime F1-09 Overspeed Detection Delay Time 0 to 2.0s1.0s XO O PG DeviationLevelF1-10 Speed Deviation Detection Level 0 to 50% 10% XO O PG DeviationTime F1-11 Speed Deviation Detection Delay Time 0 to 10s 0.5s XO O PG# Gear Teeth 1 F1-12 Number of Gear Teeth 1 0 to 1000 0 X O X PG# Gear Teeth 2 F1-13 Number of Gear Teeth 2 0 to 1000 0 X O X PGO DetectTime F1-14 PGO DetectionTime 0 to 10s 2s XOOPGOption SetupSpeed Detection Filter SelectionF1-15Speed Detection Filter Selection0, 11X0: No Average 1: 2 Scan MovingAverageO OTable 3. GPD 515/G5, F7, and G7 Encoder Feedback Parameter List Control Method (2)D i g i t a l O p e r a t o rF u n c t i o nG r o u pD i g i t a l O p e r a t o r D i s p l a yP a r a m e t e r N u m b e rP a r a m e t e r N a m eS e t t i n g R a n g eF a c t o r y S e t t i n gC h a n g eD u r i n g O p e r a t i o n (1)D a t a S e l e c t i o nV /f w / P G F e e d b a c kF l u x V e c t o rASR P Gain 1 C5-01ASR Proportional Gain 1 0 to 300.00 0.00 O O OASR I Time 1 C5-02 ASR Integral Time 1 0 to 10.000s 0.00s O O O ASR P Time 2 C5-03 ASR Proportional Gain 2 0 to 300.00 0.00 O O O ASR I Time 2 C5-04 ASR Integral Time 2 0 to 10.000s 0.00s OO O ASR Limit C5-05 ASR Limit 0.0 to 20% 0.0% X O X ASR DelayTime C5-06 ASR Primary Delay Time 0.000 to 0.500s 0.000s X X O ASR Gain SWFreq C5-07 ASR Switching Frequency 0.0 to 400.00Hz 0.0Hz X X O ASRTuningASR IntegralLimitC5-08ASR IntegralLimit0 to 400%400% XX O(1) O = Yes, X = No.(2) O = Available, X = Hidden. The PG-X2 is not applicable for A1-02 = 0 (V/f Control) or 2 (Open Loop Vector).。
UF+RO使用说明书

(二)详细说明
1)杀菌剂投加装置: 1 杀菌剂投加装置 1.1简介 杀菌剂主要采用次氯酸钠等强氧化的杀菌剂,主要作用有:1、杀菌,防止生物粘膜 的形成;2、预氧化,降低原水的有机物,改善后工艺的处理效果; 1.2 设备技术规格 名称:杀菌剂投加装置(1套) 规格:加药泵 KCL-635 型隔膜泵 加药桶100L PE水箱 最大工O 中水回用系统说明书
惠州市敦诚环保科技有限公司
二、 操作维护说明
(一)一般操作
1) 启动 (1)设备开启前确认各阀门位置正确,供水、供电、供气正常。 (2)将面板上各控制开关打至自动位。 (3)调节 UF 浓水阀,使 UF 产水流量 18m3/h(25℃时产水量) ,浓水流量 2m3/h,操 作压力为 0.04-0.15MPa,最高不超过 0.3MPa。 (4)RO 清洗电动阀关闭后(60 秒)调节高压泵出口阀及 RO 浓水阀,使 RO 产水流 量**m3/h(25℃时产水量) ,浓水流量 3-4m3/h,操作压力为 0.7-1.4MPa,最高不超过 1.6Mpa,浓水回流流量 1m /h (5)自动运行时,如果出现有异常现象应急停待问题处理完再重新启动。 2) 关机 先打开排水阀,等待系统压力降到最低压力后再将电源关闭。
20pk5tufro中水回用系统说明书惠州市敦诚环保科技有限公司概述原水首先通过多介质过滤器去除水中大部分的悬浮物胶体等杂质再通过5um度的保安过滤器使其水质满足uf超滤出水要求
PK-5T UF+RO 中水回用系统说明书
惠州市敦诚环保科技有限公司
PK-5T UF+RO 中水回用系统 使用维护说明书
惠州市敦诚环保科技有限公司 地址:惠州市江北街道惠州大道 9 号佳兆业中心 售后电话:0752-7168955
Festo HGPT-20-A-B-F 平行手臂机械臂说明书

Part number: 560201
sturdy high-power variant.
Data sheet
Feature
Size Stroke per gripper jaw Max. replacement accuracy Max. angular gripper jaw backlash ax,ay Max. gripper jaw backlash Sz Rotationally symmetrical Repetition accuracy, gripper Number of gripper fingers Drive system Assembly position Mode of operation Gripper function Gripper force back-up Design structure
2/2
Value
20 2 mm <= 0.2 mm <= 0.1 deg <= 0.02 mm <= 0.2 mm <= 0.04 mm 2 pneumatic Any double-acting Parallel No Inclined plane guided motion sequence For proximity sensor 344 N 322 N 3 ... 8 bar 0 ... 0.5 bar <= 3 Hz 28 ms 31 ms 50 g Compressed air in accordance with ISO8573-1:2010 [7:4:4] Lubricated operation possible (subsequently required for further operation)
ARTIX-7 FPGA 核心板 用户手册说明书

ARTIX-7 FPGA核心板用户手册AC7A200REV 1.0版芯驿电子科技(上海)有限公司黑金动力社区目录(一)简介 (3)(二)FPGA (4)(三)有源差分晶振 (6)(四)DDR3 (8)(五)QSPI Flash (12)(六)LED灯 (13)(七)JTAG接口 (15)(八)电源接口 (15)(九)扩展接口 (16)(十)电源 (24)(十一)结构图 (27)(一)简介AC7A200(核心板型号,下同)核心板,是基于XILINX公司的ARTIX-7系列200T 的XC7A200T-2FBG484I这款芯片开发的高性能核心板,具有高速,高带宽,高容量等特点,适合高速数据通信,视频图像处理,高速数据采集等方面使用。
这款核心板使用了2片MICRON公司的MT41J256M16HA-125这款DDR3芯片,每片DDR的容量为4Gbit;2片DDR芯片组合成32bit的数据总线宽度,FPGA和DDR3之间的读写数据带宽高达25Gb;这样的配置,可以满足高带宽的数据处理的需求。
这款核心板扩展出180个3.3V电平标准普通IO口,15个1.5V电平标准的普通IO口,还有4对GTP高速RX/TX差分信号。
对于需要大量IO的用户,此核心板将是不错的选择。
而且,FPGA芯片到接口之间走线做了等长和差分处理,并且核心板尺寸仅为60*60(mm),对于二次开发来说非常适合。
AC7A200核心板正面图AC7A200核心板背面图(二)FPGA前面已经介绍过了,我们所使用的FPGA型号为XC7A200T-2FBG484I,属于Xilinx公司Artix-7系列的产品,速度等级为2,温度等级为工业级。
此型号为FBG484封装,484个引脚。
Xilinx ARTIX-7 FPGA的芯片命名规则如下:图2-2-1为开发板所用的FPGA芯片实物图。
图2-2-1 FPGA芯片实物FPGA供电系统Artix-7 FPGA电源有V CCINT, V CCBRAM, V CCAUX, V CCO, V MGTAVCC和V MGTAVTT。
MPU-2FK中频炉控制板说明书范文

MPU-2FK中频炉控制板说明书范文使用说明书小芯片六脉波1、概述MPU-2恒功率晶闸管中频电源控制板主要由电源、调节器、移相控制、保护电路、相序自适应电路、启动演算电路、逆变频率跟踪、逆变脉冲形成、脉冲放大及脉冲变压器组成。
其核心部件采用高性能、高密度、大规模专用MPU集成电路,使其电路除调节器外,其余均实现数字化,整流触发器部分不需要任何调整,具有可靠性高、脉冲对称度高、抗干扰能力强、反应速度快等特点,又由于有相序自适应电路,无需同步变压器,所以,现场调试中免去了调相序、对同步的工作,仅需把KP晶闸管的门极线接入控制板相应的接线端上,整流部分便能投入运行。
逆变采用扫频式零压软启动方式,启动性能优于普通的零压软启动电路。
并设有自动重复启动电路,可防止中频电源偶尔的启动失败,使启动成功率达到100%。
频率跟踪电路采用的是平均值取样方案,提高了逆变的抗干扰能力,而且仅需取样中频电压信号,而无需槽路电容器的电流信号,免去了外接中频电流互感器、确定取样电流相位的烦恼。
因此,在调试和使用现场中,也不会由于中频输出线或取样电流互感器的相位接反,而产生中频电源不能启动的问题。
逆变电路中还加有逆变角调节电路,可以自动调节负载阻抗的匹配,达到恒功率输出,可以制成“快速熔炼”的中频电源,达到节时、节电、提高网侧功率因数的目的(此功能也可被送掉)。
逆变部分的主要电路均在MPU-2大规模集成电路的内部,亦是数字电路。
2、产品名称产品名称:恒功率晶闸管中频电源控制板3、适用装置适用于400HZ-10KHZ各种晶闸管并联谐振中频电源。
4、正常使用条件4.1海拔不超过2000米。
4.2环境温度不低于-10℃,不高于+40℃。
4.3空气最大相对湿度不超过90%(20℃±5℃时)。
4.4运行地点无导电及爆炸性尘埃,无腐蚀金属和破坏绝缘的气体或蒸汽。
4.5无剧烈振动和冲击。
5、主要技术参数5.1主电路进线额定电压:100V~660V(50HZ)(注意R3、R7、R11的匹配)5.2控制供电电源:单相17V/2A。
STC12C2052AD 系列单片机器件手册 说明书
STC12C2052AD 系列单片机器件手册 --- 1个时钟/机器周期8051 ---无法解密 ---低功耗,超低价 ---高速,高可靠 ---强抗静电,强抗干扰STC12C0552,STC12C0552ADSTC12C1052,STC12C1052ADSTC12C2052,STC12C2052ADSTC12C3052, STC12C3052ADSTC12C4052, STC12C4052ADSTC12C5052, STC12C5052ADSTC12LE0552,STC12LE0552ADSTC12LE1052,STC12LE1052ADSTC12LE2052,STC12LE2052ADSTC12LE3052,STC12LE3052ADSTC12LE4052,STC12LE4052ADSTC12LE5052,STC12LE5052AD技术支援:宏晶科技(深圳) www.MCU-Memory.com support@MCU-Memory.comUpdate date: 2005-10-4 (草案,请随时注意更新)宏晶科技:专业单片机/存储器供应商 www.MCU-Memory.com STC12C2052AD系列 1T 8051单片机中文指南2领导业界革命 覆盖市场需求宏晶科技是新一代增强型8051单片机标准的制定者,致力于提供满足中国市场需求的世界级高性能单片机技术,在业内处于领先地位,销售网络覆盖全国。
在保证质量的基础上,以极低的价格和完善的服务赢得了客户的长期信赖。
目前,全力推出“1个时钟/机器周期”的单片机,全面提升8051单片机性能。
欢迎海内外厂家前来洽谈合作!新客户请直接联系深圳,以获得更好的技术支持与服务。
STC 12C2052AD系列 1T 8051 单片机RST 1 20 VCCRxD/P3.0 2 19 P1.7/SCLK/ADC7TxD/P3.1 3 18 P1.6/MISO/ADC6XTAL2 4 17 P1.5/MOSI/ADC5INT0/P3.2 6 15 P1.3/ADC3INT1/P3.3 7 14 P1.2/ADC2ECI/T0/P3.4 8 13 P1.1/ADC1PWM1/PCA1/T1/P3.5 9 12 P1.0/ADC0Gnd 10 11 P3.7/PCA0/PWM0XTAL1 5 16 P1.4/SS/ADC4DIP-20,SOP-20,(超小封装TSSOP-20定货)STC12C2052、STC12C4052不带A/D转换STC12C2052AD、STC12C4052AD带A/D转换 新客户请直接联系深圳以获得更好的技术支持和服务 欢迎海内外厂家前来洽谈合作南京办:广州办: 传真至深圳申请STC单片机 样片及ISP下载线/编程工具1个时钟/机器周期,超小封装8051单片机在系统可编程,无需编程器,可远程升级可送STC-ISP下载编程器,1万片/人/天内部集成MAX810专用复位电路,原复位电路可以保留,也可以不用,不用时RESET脚直接短到地1个时钟/机器周期,可用低频晶振,大幅降低EMI超低功耗:1、掉电模式: 典型功耗 <0.1μA2、空闲模式: 典型功耗 <1mA3、正常工作模式: 典型功耗 4mA - 7mA4、掉电模式可由外部中断唤醒,适用于电池 供电系统,如水表、气表、便携设备等。
FD系列电源分配箱说明书
FD20124 Note) 1 station 24 stationsSS5Q1308StationsElectrical entryOptionDManifold mountingD EDIN rail mounting Direct mounting……1(P), 3(R) port sizeNil 1(P), 3(R) port ø8 One-touch fittings 1(P), 3(R) portø5/16" One-touch fittingsCE-compliantNil Q—CE-compliantKit typeFD0FD1FD2FD3PD0PD1PD2PD3PDCJD0LD0 (N)LU0 (N)LD1 (N)LU1 (N)LD2 (N)LU2 (N)SDF SDH SDJ1SDJ2SDQ SDR1SDR2SDVD side D side D sideD sideD side U side D side U side D side U sideCable/SI unit specificationsLead wire kit with 0.6 m cable Lead wire kit with 1.5 m cable Lead wire kit with 3.0 m cableFlat ribbon cable (20P)PC wiring system compatibleD-sub connector (25P) kit, without cable D-sub connector (25P) kit, with 1.5 m cable D-sub connector (25P) kit, with 3.0 m cable D-sub connector (25P) kit, with 5.0 m cable Flat ribbon cable (26P) kit, without cable Flat ribbon cable (26P) kit, with 1.5 m cable Flat ribbon cable (26P) kit, with 3.0 m cable Flat ribbon cable (26P) kit, with 5.0 m cable Flat ribbon cable (20P) kit, without cable NKE Corp.: Fieldbus System NKE Corp.: Fieldbus H SystemPanasonic Industrial Devices SUNX Co., Ltd.: S-LINK (16 output points)Panasonic Industrial Devices SUNX Co., Ltd.: S-LINK (8 output points)DeviceNet ™OMRON Corp.: CompoBus/S (16 output points)OMRON Corp.: CompoBus/S (8 output points)CC-Link1 to 12 stations 1 to 12 stations 1 to 9 stations 1 to 8 stations1 to 12 stations1 to 8 stations 1 to 4 stations 1 to 8 stations 1 to 4 stations 1 to 8 stationsStation (Double wiring)Lead wire connector location24241816—16816816Max. number of solenoids for specialwiring specifications Note 2)—CE-compliantFP JLSNote 1) Specify DIN rail length with D at the end. (Enter the number of stations inside .) The numberof stations that may be displayed is longer than the manifold number of stations. Example: -D09Note 2) When “-B” is selected, a back pressure check valve is included in all stations of the manifold. Ifthe back pressure check valve is used only for the station that need it, then specify the station location in the manifold specification. (“-B” is not necessary)Note 3) Specify “-K” for wiring specification for cases below. (Except L kit)- All single wiring- Single and double mixed wiring.- When there are stations which do not require wiring (e.g. individual SUP spacer), specify the wiring specification in the manifold specification so that the number of solenoids is the maximum number of solenoids or less. (Standard wiring specification is double wiring)Note 4) For specifying two or more options, enter them alphabetically. Example: -BKN00TNil 02 to 24 Note 1)B Note 2)K Note 3)NNoneDIN rail length specified Back pressure check valve Special wiring specifications (Except double wiring)With name plate (Side ported only)Note) The maximum number ofstations depends on the type of electrical entries.kitLead wire kitFlat ribbon cable (20P)(PC wiring system compatible)Serial transmission kitEX140 Integrated-type (For Output) Serial Transmission SystemD-subconnector kitkitkitkitkitU sideD side Flat ribbon cable connector kit26P 20P( )Note 1) Separately order the 20P type cable assembly for the P kit.Note 2) Specify the wiring so that the maximum number of solenoids is not exceeded. (The number of solenoids are counted as: 1 for single solenoids and 2 for type 3P double solenoids.)Note 3) When specifying the negative common specifications of the L kit, suffix “N” to the kit symbol.Note 3)5 Port Solenoid Valve Plug-in UnitS eries 10-SQ1000How to Order Manifold10Clean seriesNote 1)[Option]578A i r P r e p a r a t i o n E q u i p m e n tP r e s s u r e C o n t r o l E q u i p m e n tF l o w C o n t r o l E q u i p m e n tP r e s s u r e S w i t c h e s /P r e s s u r e S e n s o r sD i r e c t i o n a l C o n t r o l V a l v e sA i r G r i p p e r s M o d u l a r F . R .F i t t i n g s & T u b i n gA i r C y l i n d e r sR o t a r y A c t u a t o r s。
AELTA DTE10P系列温度控制器说明书
րЕޘଠטጡፆү͘Ί非常感謝您選用台達產品,請在使用前,詳細閱讀本使用說明書,並將手冊放置於易拿處以便參考。
ڦຍְี!注意!電擊危險!本機為開放型裝置,因此在使用本機時,必須安裝於具防塵、防潮及免於電擊∕衝擊之外殼配電箱內,另必須具備保護措施(如:特殊之工具或鑰匙才可打開)防止非維護人員操作或意外衝擊本體,造成危險及損壞。
1. 如果有塵土或金屬殘渣掉入機身,可能會造成誤動作。
請勿修改或擅自拆卸本控制器。
空餘端子請勿使用。
2. 安裝時離開高電壓及具有強高周波雜訊的地方防止干擾。
在以下情況會發生的場所避免使用此控制器:(a) 灰塵過多及有腐蝕性氣體 (b) 高溼度及高輻射 (c) 震動及衝擊 3. 實施配線時及更換輸入感測器時,務必關閉電源。
4. 安裝配件電路板時,請先確認主機已斷電,並確認該配件正確的插槽位置。
5. 熱電對、白金測溫阻抗體的引線要延長時或有結線的場合請依熱電對、白金測溫阻抗體的種類務必使用正確補償導線。
6. 由測溫體到溫調本體的配線路請用最短距離配線,為了避免雜訊及誘導的影響儘可能將電源線和負載配線分開。
7. 上電前請確認電源∕信號裝配是否正確,否則可能造成嚴重損壞。
8. 上電時請勿接觸機體端子或進行維修,否則可能遭致電擊。
9. 切斷電源一分鐘之內,線路未完全放電,請勿接觸內部線路。
10. 不論上電與否請勿接觸內部連接端子以免損壞線路。
11.安裝時,請勿與其他發熱體(如電源等)直接並靠在一起,請保持適當間距。
ݭཱིᄲځDTE 系列名稱 DTE :台達E 系列溫度控制器 1 形式1:主機2:配件2 3 - 40T :4路TC 0P :3路PT0T :4路TC0V :4組電壓脈波輸出0C :4組線性電流輸出 0R :4組繼電器輸出 0L :4組線性電壓輸出 CT :4組電流檢知 DS :顯示及設定0P :3路PT0D :8路EVENT 輸入 Αਕ̈́ঈఢॾ!輸入電源 直流電24 V ,採隔離式開關電源 操作電壓範圍 額定電壓90 ~ 110%電源消耗功率 Max. 10W + 3W × DTC2000並接數(最多可並接7台) 熱電偶對:K, J, T, E, N, R, S, B, L, U, TXK 輸入感測器 白金測溫電阻:Pt100、JPt100、Ni120、Cu50 取樣頻率熱電偶對或白金電阻:1.0秒∕所有輸入控制方法 PID 、PID 可程式、手動、ON/OFF 繼電器輸出,單刀單閘,最大負載為交流250 V ,3 A 的電阻性負載。
Festo 产品说明书 AEVULQ-20-20-P-A 型号
Data sheet
Feature Stroke Piston diameter Cushioning Assembly position Mode of operation
Piston-rod end Design structure
Position detection Variants Protection against torque/guide Operating pressure MPa Operating pressure
Pneumatic connection Material of flange screw Material cover Material of dynamic seals
Material piston rod Material cylinder barrel
Value
20 mm 20 mm P: Flexible cushioning rings/plates at both ends Any single-acting pushing action Female thread Piston Piston rod For proximity sensor Single-ended piston rod Square piston rod 0.1 ... 1 MPa 1 ... 10 bar 14.5 ... 145 psi Compressed air in accordance with ISO8573-1:2010 [7:4:4] Lubricated operation possible (subsequently required for further operation)
2 - Moderate corrosion stress VDMA24364-B1/B2-L -20 ... 80 °C 0.14 J 171 N 20 g 6g 149 g 23 g with through hole with accessories Optional M5 steel, galvanized Wrought Aluminium alloy NBR TPE-U(PU) High alloy steel, non-corrosive Wrought Aluminium alloy
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济南希菱自动化科技有限公司 F-20P 编程器的使用 1. F1-20P-E编程器适用于三菱公司F,F1,F2系列可编程控制器.插在PC上使用时,既可将程序写入PC的RAM中,又可在操作过程中监视PC的运行,还可在PC的RAM存储器和EEPROM存储器盒之间传送程序. 2.编程器的编程/监视(PROGRAM/MONITR)开关和PC基本单元的运行/停机(RUN/STOP)开 关要根据不同的工作情况作相应的设置: (1) 在PC通电情况不,装卸F1-20P时,"编程/监视"开关必须置于"监视位置. (2) 当编程器置于基本单元上后,编程时,基本单元上的"运行/停机"开关必须置于 "停机"位置,而编程器置于"编程"位置.而基本单元处于工作状态或监视程序时. 编程器置"监视"位置,基本单元置于"运行"方式. (3) 当编程器置于编程状态时,基本单元由"停机"转成"运行"状态,基本单元将不能 运行. (4) 在基本单元处于运行方式时,编程器开关由"监视"转向"编程"位置,编程器上的 指令显示"K",指示PC处于RUN方式而不能转入编程状态. 编程器面板布置 指令显示 指令键和数字键 LD AND OR LD AND OR LDI ANI ORI 7/LDI 8/ANI 9/ORI INSTR STEP OUT ANB ORB RST SFT PLS 4/OUT 5/ANB 6/ORB DELET STEP- NOP END 1/RST 2/SFT 3/PLS INSERT STEP+ 数字显示 0/NOP 0/END K/SEARCH CLEAR WRITE/MONTOR 说明: (1) 机型选择开关:根据所使用PC的型号来设置. (2) PC型号显示:根据机型选择开关的设置显示相应的PC型号. 济南希菱自动化科技有限公司 (3) ON/OFF:元件监视时,显示元件的开关状态(对于定时器和计数器,只有当前值等于 设定值时,发光管才显示). (4) ACT:指令监视时,显示触点的通断状态(监视追踪由步序号控制). (5) STEP:步序号显示. (6) INSTR:指令显示.例如:LD LDI AND或K常数. (7) DATA: 元件号或常数值显示. (8) 具有双功能的键,其功能由先后操作自动决定. (9) 不需要任何键代表元件符号X,Y,T,C,S和F. 3.编程操作 常用指令键 LD 取 LDI 取反 AND 与 ANDI 与反 OR 或 ORI 或反 ANB 区段与 ORB 区段或 OUT 输出 RST 复位 SFT 移位 PLS 脉冲 NOP 空操作 END 结束 (1) PC RAM的清除 PLC处于"停止"状态; 编程器处于"PROGRAM"状态. 键盘操作顺序如下: [CLEAR]→[STEP]→[0]→[STEP]→[最终步地址]→[DEL] 不同型号的PC最终步地址表示如下: PC型号 最终步号 F-12R 477 (八进制数) F-20M 477 (八进制数) F-40M 889 (十进制数) F1/F2系列 999 (十进制数) (2) 程序的写入 PLC处于"停止"状态;编程器处于"PROGRAM"状态. 济南希菱自动化科技有限公司 键盘操作顺序如下: [CLEAR]→[STEP]→[首步号]→[INSTR]→[指令]→[元件号/常数]→ [WRITE]→ ↑_______________________________↓ 说明: (1) 从第0步开始编程时,无需键入首步号. (2) ANB,ORB等指令输入时,无需键入常数值. (3) 按[WRITE]键前,若需修改指令,先按[INSTR]键,然后写入正确的指令. (4) 按[WRITE]键后,若需修改指令,先按[STEP-]键返回原指令,然后写入正确的指令. 编程举例: 要写入的程序如下: ! ! X1 X2 Y 31 +---] [---+---]/[---+---------+---------+---------+--( )-! ! ! ! M160 ! +---] [---+ ! ! X3 T51 T 50 +---] [---+---]/[---+---------+---------+---------+--( )-! ! ! ! ! ! Y32 ! +--( )-! 按键操作如下: [CLEAR] [STEP] [0] [STEP] [999] [DELET] [INSTR] [LD] [1] [WRITE] [OR] [160] [WRITE] [ANI] [2] [WRITE] [OUT] [31] [WRITE] 济南希菱自动化科技有限公司 [LD] [3] [WRITE] [ANI] [51] [WRITE] [OUT] [50] [WRITE] [K] [2.5] [WRITE] [OUT] [32] [WRITE] [END] [WRITE] 注意: 定时器常数设定范围如下表示 PC型号\元件号 T50-57 T450-457 T550-557 T650-657 F-12,20M 0.1-99 ------ ------ ------ F-40M ------ 0.1-999 0.1-999 ------ F1/F2系列 0.1-999 0.1-999 0.1-999 0.01-99.9 说明: 编写10ms定时器(F1,F2系列PC)设置十进制数的小数点是很重要的. 例如: 键盘输入99.0 其值设定为99.0s 键盘输入99,则其值设定为0.99s(如果键盘输入数不加入小数点,其值即 为0.01s) 如果编写100ms定时器,键盘输入值就等同于设定值. 3. 用步序号读出程序 PC 处于"停止"状态 编程器处于"PROGRAM"状态 用步序号读出和显示指令的键盘操作: [CLEAR]→[STEP]→[INSTR]→[STEP+/STEP-]→ ↑_______________↓ 按[STEP+]读出下一步指令,按[STEP-]读出上一步指令. 4. 搜索一条指令 PC 处于"停止"状态 编程器处于"PROGRAM" 在不知道指令步序号的情况下,可以很快找到所编的指令. 键盘操作如下: [CLEAR]→[指令]→[元件号]→[SEARCH]→[SEARCH]→[INSTR]→[STEP+/STEP-]→ ↑_________________↓ 济南希菱自动化科技有限公司 说明: (1) 指令有LD AND OUT 等 (2) 显示被搜索指令的步序号. (3) 显示被搜索指令的下一步序号.若程序中无该指令,则显示终步号. (4) 此步骤不能用来寻找常数,如果需要搜索常数,可先找对应的OUT指令,然后 按[STEP+]键. 5. 程序修改 PC处于"停止"状态,编程器处于"PROGRAM"状态. 在编程状态下,如需修改某条指令. 其键操作如下: [读出原指令]→[键入新指令]→[新元件号]→[WRITE] (1) (2) (3) 说明: (1) 用前面介绍的读出,搜索指令的方法读出. (2) 用键盘输入新指令,如LD OUT 等. (3) 显示下一条指令,若需检查需要修改的指令是否已被修改,则按[STEP-]键. 6. 指令的删除和插入 PC的状态处于"停止" 编程器处于"PROGRAM"状态. 先用读出,搜索指令的方法找到该指令,然后用下步骤删除或插入指令. 删除: [读出指令]→[DEL] 指令被删除后,步序号将自动修改. 插入: [读出该指令]→[插入的指令]→[插入的元件号]→[INSERT] 读出的指令应在被插入指令的后一条指令,指令被插入后,步序号自动递减. 注意:删除某些指令,如LD AND ORB 等会改变电路的结构. 7. 程序检查 PC处于"停止"状态 编程器处于"PROGRAM"状态 (1) 程序语法检查 济南希菱自动化科技有限公司 键盘操作: [CLEAR]→ [STEP]→[1]→[WRITE]→[STEP]→[INSTR] <1> <2> <3> <4> 说明: <1> [1] 表示语法检查. <2> 如果程序中有错误的语法,则显示出错代码. <3> 显示出错的步序号. <4> 显示出错指令及步序号. 出错代码: 1-1: 不正确的元件号(如X80) 或不相配的元件号(如OUT 400). 1-2: OUT C 或OUT T后无常数. 1-3: 不正确的常数范围. 修改错误后,重新检查语法,以便检查其他步序. (2) 线路检查 键盘操作: [CLEAR]→[STEP]→[2]→[WRITE]→[INSTR] <1> <2> <3> 说明: <1> [2] 代表线路检查 <2> 若程序中存在某一线路错误,则显示出错代码. <3> 显示错误线路的指令及步序号. 线路出错代码: 2-1: 在一个线圈中LD/LDI使用次数超过8次. 2-2: LD/LDI ANB/ORB使用不正确.MC MCR EJP 或END没有连在母线上. 2-3: 步进顺控指令不符合规定: -STL没有从母线上开始. -STL在子程序中 -MC MCR 在STL之中 -缺少RET指令