单机VI3测试手册
两线i3感应器及风格D触发循环的2W-MOD2模块说明书

NOTE: If two–wire i3 detectors are used in conjunction with a style D initiating circuit, the 2W–MOD2 must be used to provide that capability. Ground fault on a mod-ule’s two-wire loop can be indicated at a control panel if the control panel is capable of ground fault detection on the power supply to the module and meets NFPA 72 ground fault indication requirements for initiating device circuits. The installer must verify that capability.Figure 3. Module LED modes:Power on. Detectors on loop do not havecommunication capability.Power on. One or more detectors on loop have communication capability.Power not applied or module not operating properly.Detector on loop in alarm.One or more detectors out of sensitivity or in Freeze Trouble.Detectors on loop not in alarm, maintenance or Freeze Trouble.Loop wiring fault.EZ Walk Test mode.Loop wiring normal.ONBlink 1 sec. ON and 1 sec. OFFOFFONBlink 1 sec. ON and 1 sec. OFFOFF ONBlink 0.5 sec. ON and 0.5 sec. OFF OFFGREEN LEDRED LEDYELLOW LEDLED COLORSTATUS CONDITIONThe module has loop trouble restoration detection. If theloop trouble (open loop) doesn’t exist any more, the mod-ule will restore to standby condition with a maximum delay of 1 minute. There is no delay in loop trouble detection.If an alarm occurs while the module is indicating mainte-nance, the alarm will supercede maintenance.If the green LED remains ON (no blinking) three minutes af-ter applying power, it means that the module has determined that no detector on its loop has communication capability. In this condition, the detectors are still capable of initiating alarm and loop trouble at the module. However, maintenance and freeze trouble, will not be indicated at the module, and EZ walk test will not be available. If i 3 detectors are installed on the loop, verify wiring and system operation.Before InstallingThis information is included as a quick reference installa-tion guide. Refer to the control panel installation manual for detailed system information. If the modules will be in-stalled in an existing operational system, inform the opera-tor and local authority that the system will be temporarily out of service. Disconnect power to the control panel before installing the modules.NOTICE: This manual shall be left with the owner/user of this equipment.General DescriptionThe 2W-MOD2 allows a control panel to receive a “need for maintenance” signal from two–wire i3 series smoke detec-tors, model numbers 2W–B, 2WT–B, 2WT A–B, and 2WTR–B. The module uses a form C zone relay to initiate “out of sen-sitivity” and “freeze trouble”, a form A zone alarm relay and a second form A zone relay to indicate loop fault (see Figure 1). An EZ Walk T est puts all detectors on the loop into a Walk T est mode for easy verification of detector loop wiring. Figure 1:Condition Maintenance relay (form C) Alarm relay (form A) Loop trouble relay (form A)Normal OFF Open Close Loop troubleOFF Open Open Maintenance/Freeze trouble ON Open Close Loop trouble andON Open Open Maintenance/Freeze trouble AlarmOFF CloseN/A Alarm and loop troubleOFF Close N/A Alarm and Maintenance/Freeze OFFCloseN/AtroubleTerminal Location Terminal 7 – N.O. Relay connected Relay connected between Terminal 8 – Common between terminals terminals 10 and 12Terminal 9 – N.C.10 and 11S0236-00Figure 2. Module front view:Green LED Red LED Yellow LED EZ Walk-Test PushbuttonS0218-00Three LED’s on the module provide a local visual indica-tion of the module status(es).The maintenance module allows two-wire smoke detectors to be used on any electrically compatible four-wire control panel.D500-46-001I56-2174-003INSTALLATION AND MAINTENANCE INSTRUCTIONS3825 Ohio Avenue, St. Charles, Illinois 601741-800-SENSOR2, FAX: 630-377-6495Loop Test/Maintenance ModuleModel: 2W-MOD2SeriesD500-46-00 4 I56-2174-003©2006 System SensorSystem Sensor warrants its enclosed product to be free from defects in materials and workmanship under normal use and service for a period of three years from date of manufacture. System Sensor makes no other express warranty for the enclosed product. No agent, representative, dealer, or employee of the Company has the authority to increase or alter the obligations or limitations of this Warranty. The Company’s obliga-tion of this Warranty shall be limited to the replacement of any part of the product which is found to be defective in materials or workman-ship under normal use and service during the three year period com-mencing with the date of manufacture. After phoning System Sensor’s toll free number 800-SENSOR2 (736-7672) for a Return Authorization number, send defective units postage prepaid to: System Sensor, Returns Specifications:ElectricalMechanicalSupply Voltage - Min.8.5 Volts (Power limited)Height: 4.5 inches Max. 30 Volts (Power limited) Width: 4.0 inches Max.Ripple Voltage: 30% of applied voltageDepth: 1.25 inches Max. Standby Current: 30mA (12 detectors on loop) Weight: 0.5 poundMax. Alarm Current: 90mA(Includes packaging Alarm Contact Ratings: 0.5 Amp @ 36 V DC, Resistivematerials)Maintenance Contact Ratings: 2 Amp @ 30 V DC, Resistive Min. Reset Voltage: 6 Volts Min. Reset Time:0.3 sec.Operating T emperature Range: 14°F to 122°F (-10°C to 50 °C)Operating Humidity Range: 0 to 95% RH non-condensing Storage T emperature Range: –4°F to 158°F (–20°C to 70 °C)Initial Communication Cycle: 2-6 minutes after power-up or panel reset EZ Walk T est Available: 6 minutes after power-up or panel reset2-wire compatibility Min. loop voltage: 10 Volts Max. loop voltage: 11.5 Volts Max. loop resistance: 50 ohm Max. loop ripple:1 Vpp Max. Loading Capacitance: 0.01 mF Max. Alarm current: 40 mA Max. Reset Voltage: 0.3 V Alarm Delay: NoMin. Alarm reset time: 0.3 sec.Max. normal load current: 1.25 mA Zone T ype: StandardEOL Device: 3.9 K Ω (0.25W , 5%)Loop style:B, D Compatibility/Zone identifier: AMax. detectors per zone: Models 2W–B and 2WT–B: 12 Model 2WTR–B: 1 Model 2WTA–B: 1N OTE: When used with the RRS–MOD reversal relay/synchroniza-tion module and the 2W–MOD2, a maximum of 12 2WTA–B detec-tors are allowed per zone.FCC StatementThis device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation.NOTE: This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to pro-vide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: – Reorient or relocate the receiving antenna. – Increase the separation between the equipment and receiver. – Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. – Consult the dealer or an experienced radio/TV technician for help.Three-Year Limited WarrantyDepartment, RA #__________, 3825 Ohio Avenue, St. Charles, IL 60174. Please include a note describing the malfunction and suspected cause of failure. The Company shall not be obligated to replace units which are found to be defective because of damage, unreasonable use, modi-fications, or alterations occurring after the date of manufacture. In nocase shall the Company be liable for any consequential or incidental damages for breach of this or any other Warranty, expressed or implied whatsoever, even if the loss or damage is caused by the Company’s negligence or fault. Some states do not allow the exclusion or limita-tion of incidental or consequential damages, so the above limitation orexclusion may not apply to you. This Warranty gives you specific legal rights, and you may also have other rights which vary from state to state.I56-2174-003able to detect alarm and wiring fault from the 2-wire loop.NOTE: If an alarm occurs on the 2W-MOD2 zone beforethe 2W–MOD2 has completed its power–up sequence, the module’s green LED will remain on. T o reset this condition, the system must be reset and the module must be allowed to complete its power–up sequence.When using the RRS-MOD with model 2WTA-B, do not mix the 2WTA-B with other model smoke detectors and dry con-tact closure devices, including mechanical heat detectors, manual pull stations and waterflow switches. Such mixing can cause a direct short on the auxiliary power terminals, damaging the control panel’s internal circuitry and/or dam-age devices connected to the initiating device circuit.EZ Walk TestThe 2W-MOD2 has a push button for EZ Walk T est mode (see Figure 2.). The EZ Walk T est feature is available 6 min-utes after power-up or panel reset. If the push button is pressed momentarily the module will activate EZ Walk T est for five minutes. All detectors on the loop should enter EZ Walk T est mode. See i3 detector manual for detector re-sponse in EZ Walk T est mode.NOTE: EZ Walk T est cannot be initiated if the Green LED is not blinking.If the 2W-MOD2 is in normal condition (Green LED blink-ing) and pressing the push button does not initiate EZ Walk T est, wait one minute and try again.At the end of the five minute period, the module will ter-minate EZ Walk T est and the yellow LED will stop blink-ing. The EZ Walk T est period can be extended by pressing the push button a multiple number of times. For example, pressing the push button N times will result in a Walk T est duration of 5*N minutes.If an alarm occurs during EZ Walk T est, the alarm condition will supercede EZ Walk T est (alarm is the highest priority).ing (alarm, trouble and other functional tests) of the system.If a module or detector fails the test, its wiring should be checked. If the module still fails, it should be replaced.Notify the proper authorities when the system is back in service.Wiring DiagramInstall module wiring in accordance with appropriate wir-ing diagrams (Figures 5 - 7). Reset is performed through power inputs 1 and 2.Figure 5. The Module Wiring: maintenance signal is sent to a separate zone.Control PanelALL CIRCUITS ARE SUPERVISED AND MUST BE POWER LIMITED.S0232-00Figure 6. The Module Wiring: maintenance signal is indicated at the panel as a fire trouble.Control PanelALL CIRCUITS ARE SUPERVISED AND MUST BE POWER LIMITED.S0233-00Figure 7. The Module Wiring: two-wire detectors tofour-wire panel conversion.Control PanelALL CIRCUITS ARE SUPERVISED AND MUST BE POWER LIMITED.S0234-00For NFPA loop Style D wiring the EOL resistor is provided internal to the module. An external EOL resistor must not be connected at the last detector on the loop (see Fig-ures 5 – 7).Compatibility RequirementsThe 2W-MOD2 is marked with a compatibility/zone identi-fier as the last digit of a 5 digit code on the back of the unit. T o ensure proper operation, this module shall be connected to compatible two-wire smoke detectors or the alarm con-tacts of four–wire i3 series detectors only. (Consult SystemSensor’s 2-wire compatibility guide).Figure 4. Mounting moduleMountingInstall in a dry indoor location. The 2W-MOD2 Mainte-nance Module mounts directly to 4 inch square electrical boxes (supplied by installer). The box must have a mini-mum depth of 2 1/8 inches. Secure module to box as shown in Figure 4.D500-46-00 2 I56-2174-003D500-46-00 3 I56-2174-003Wiring Installation GuidelinesAll wiring must be installed in compliance with the Na-tional Electrical Code, applicable state and local codes, and any special requirements of the local authority having ju-risdiction (AHJ).Proper wire gauges should be used. The conductors used to connect the module to the alarm control panel, smoke detectors and accessory devices should be color-coded to reduce the likelihood of wiring errors. Improper connec-tions can prevent a system from responding properly in the event of a fire.The screw terminals in the mounting base will accept 14-24 gauge wire. For best system performance, all wiring should be installed in separate grounded conduit; do not mix fire alarm system wiring in the same conduit as any other elec-trical wiring. T wisted pair may be used to provide addi-tional protection against extraneous electrical interference.Wire connections are made by stripping about 1/4 inch of insulation from the end of the feed wire, inserting it into the proper terminal, and tightening the screw to secure the wire in place.circuits before installing modules.After all modules have been installed, notify the proper au-thorities that the system is in operation.TestingNOTE: Before testing, notify the proper authorities that maintenance is being performed and the system will be temporarily out of service. Disable the zone or system un-dergoing maintenance to prevent any unwanted alarms.Modules must be tested after installation and following pe-riodic maintenance. T esting should be performed at least once a year.Timing at Power-Up or ResetT wo minutes after power-up, the module will check for communication, high maintenance, low maintenance, and freeze trouble with each communication spaced 1 minute apart. If a valid response to the communication check is received, the module will check for freeze trouble every 4 hours, low and high maintenance every 24 hours, and will recheck communication every 24 hours. Whenever the module fails to receive a valid response to the communica-tion checks, it will verify the result with another commu-nication check one minute later. If it still fails to receive a valid response, the module will cease to communicate until a valid reset from the panel. In this mode, the module is stillS0235-00S0237-00S0238-00。
i3SOCV2.0产品规格书

文档来源为:从网络收集整理.word版本可编辑.欢迎下载支持.i3SOC V2.0产品规格书(方案用)神州数码索贝科技有限公司目录目录...................................................................... 错误!未定义书签。
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Intellian i3 i4 i4P 产品说明书

CONTENTSINTRODUCTION (1)I NTRODUCTION TO I NTELLIAN I3/I4/I4P (1)F EATURES OF I NTELLIAN I3/I4/I4P (2)B ASIC S YSTEM C ONFIGURATION OF I NTELLIAN I3/I4/I4P (3)INSTALLATION (4)S YSTEM C OMPONENTS (4)T OOLS R EQUIRED FOR I NSTALLATION (7)P LANNING THE INSTALLATION (8)S ELECTION OF I NSTALLATION S ITE (8)I NSTALLATION AND M OUNTING OF ANTENNA (10)I NSTALLING THE ACU (15)C ONNECTING THE S YSTEM C ABLES (17)C ONNECTING THE SYSTEM TO A GPS (20)T ARGET S ATELLITE S ETTING (21)A DJUSTING THE LNB S KEW A NGLE (L INEAR POLARIZATION ONLY) (22)OPERATION INSTRUCTION (24)I NTRODUCTION (24)OPERATION USING THE ACU (25)ACU S OFT K EYS (25)N ORMAL M ODE (25)S ET U P M ODE (30)OPERATION USING PC CONTROLLER PROGRAM (52)I NTRODUCTION (52)P ROGRAM I NITIALING AND S ERIAL P ORT S ETUP (53)M AIN M ENU –U SING D EFAULT D UAL-SAT M ODE (54)S ET S ATELLITE I NFORMATION (55)M AIN M ENU-U SING A DV ANCED T RI-SAT M ODE (56)S ET S ATELLITE I NFORMATION (57)C ONTROLLER MENU (60)TROUBLESHOOTING (65)PREPARATION FOR TRANSPORTATION (67)WARRANTY (68)APPENDIX : TECHNICAL SPECIFICATION (69)I NTELLIAN I4/I4P (69)I NTELLIAN I3 (70)INTRODUCTIONIntroduction to Intellian i3/i4/i4PIntellian i3/i4/i4P is a digital satellite antenna system designed specificallyfor all types of vessels (Anchored or transit) to automatically identify, trackand capture satellite signals from the Digital Video Broadcasting (DVB: the international standard for digital TV transmissions) compatible satellites.Specifically, Intellian i3/i4/i4P has Wide Range Search (WRS) algorithm, which minimizes the search time during initialization, and Dynamic Beam Tilting (DBT) technology, which dynamically shapes the antenna beam to utilize stabilization. Once the satellite is acquired, the antenna DBT continuously measures the heading, pitch, and roll of the vessel by obtaining the satellite signal level around the antenna point, and transmitscommands to the antenna motors to keep the antenna pointed at the satellite at all times. This active stabilization is enhanced by a conical scan tracking function to detect and lock onto the strongest signal, resulting in the clearest reception possible. The i3/i4/i4P has a built-in GPS system which enhances the speed of satellite signals acquisitions.In addition, the i4P provides the embedded auto skew angle control system to maintain the optimal signal strength and increase the quality of satellite receptions in weak satellite single coverage area.Features of Intellian i3/i4/i4PEnjoy satellite broadcasts at seaIntellian i3/i4/i4P is the most modern antenna system that enables you to receive a high quality broadcasting signal at sea, where the atmospheric and environmental condition are very harsh.Fully automatic control systemFully automatic control system allows you to simply turn the power switch on, and have crystal clear, high quality satellite television in motion or at anchor.High quality antennaHigh tech parabolic antenna technology has been adopted for this antenna system, which is optimal for marine conditions. This enables you to receive the optimal signal level even when it is raining or snowing. Fast and efficient search for the satelliteThe WRS (Wide Range Search) algorithm allows for the antenna system to search the satellite within the shortest amount of time and to detect the satellite signal under any position and with any directional movement of the ship.Easy installation and outstanding reliabilityIntellian i3/i4/i4P uses only one RF cable for installation. This makes installation easy. Power, RF and Data signals transfer from the antenna the ACU through this single cable. In addition, Intellian i3/i4/i4P provides highly reliable system through the implementation of a modularized design, and the usage of strictly proven components.Built-in GPSIntellian i3/i4/i4P has imbedded GPS, which allows for the system to upload the GPS data automatically into the system for an even faster and stable system.Built-in automatic skew angle control systemThe automatic skew control system allows Intellian i4P to maintain the optimal skew angle at all times and ensure maximum level of satellite signal level.NMEA GPSPC( Not Supplied)Satellite Receiver (Not Supplied)DC Power on Vessel Satellite Receiver (Not Supplied)Front Rear Hexagonal Bolt5EASpring Washer5EAFlat Washer5EATapping Screw(Φ4x16L)Machine Screw(Φ3x8L)Power Drill Cross-HeadΦ10mm Drill Φ80mm Pencil5mmAntenna Unit15°Obstacleobstacles within 15 degreesabove the antenna. Anyantenna from tracking thesatellite signal (Refer to theWARNINGØ10mm Drillø80mmHole sawRF Cable OptionalAntenna Unit 11mmSpannerWARNING Antenna Unit Support DeckM8 Flat WasherM8 Hex. Bolt13mm SpannerM8 Spring Washer5.38cm (2.1”)IRD 1 (Not Supplied)DC Power Cable NMEA GPSDC Power Cable NMEA GPSDC Power NMEA GPS IRD1IRD 2IRD 3IRD 4Multi switch (Not supplied)Ground (-)NMEA out (+)4-M4X6 Socket Set ScrewTRACKINGTRACKING B:TRACKING B:TRACKING C:DTV101###.# EL###.##E ##.##N1. Press BACK to enter sleep mode.2. Press Back again for exiting sleep mode.SET SAT PAIR ?SET TRIPLE SAT ? SAT A : DTV101 PREVSAT B : DTV119SAT C: DTV110#SAVE ?YES NOVER LOW NID 0x0003HOR LOW 12523 21096 x2HOR LOW NID 0x0003VER HIGH 12598 21096INPUT +VER HIGH NID 0x0003HOR HIGH 12523 21096SAVE ?VERIFY : DVB DECODE VOLTAGE: DISEQC: ONLY 22KHZ PARAM: SCAN OFFx3SET ANT PARAMETER?WRS LEVEL : 0500SATNAME : DTV101SAVE ? 5. Input thex4SAVE ?x4SET LOCAL FREQ? LNB TYPE : UNIVERSALNEXTSET SAT PAIR ?PREVLONGITUDE ###.## Ex1YES NEXTLONGITUDE ###.## EINPUT +SAVE ?4. Input the longitude data.SET SAT PAIR ?SAVE ?x5DO NOT USE DISEQCNEXT 4. Select the DiSEqC MethodSET SAT PAIR ?x6SF-301SSET SAT PAIR ?x7x9 ACU POWER : 27.1 Vx10SET SAT PAIR ?x8 SET REMOCON ? FUNC : CHANGE SATPRESS A REMOTE KEY FUNC :x11x12 LOAD REGION INFO? CONTINENT: EUROPE REGION : ITALYLOAD? LOADING :SET SAT PAIR ?x13Command Button• Baud Rate Setting – To display communication speed.•Connection Status Display – To display communication port Antenna Status Monitoring•Search – Antenna is searching for the selected satellite.•Tracking – Antenna is tracking the selected satellite.•Initialize – Antenna or the ACU is initializing.◆ ♦⌧•Satellite InformationThe name, longitude and confirmation method of the satellite isdisplayed when a satellite is selected in the list box. Push “EditSatellite Information” button to update the information onmodifying the value.•DiSEqCAntenna Status Monitoring•Search – Antenna is searching for the selected satellite.• Tracking – Antenna is tracking the selected satellite.• Initialize – Antenna or the ACU is initializing.◆ ♦•Satellite InformationThe name, longitude and confirmation method of the satellite is displayed when a satellite is selected in the list box. Push “Edit Satellite Information” button to update the information on modifying the value.•DiSEqCWhen the operation method of DiSEqC is selected to “Change3) Click “confirm / yes” button to complete the update.Command Buttons• Load GPS Files – Reads in the various city information from theGPS files.Command Button• Edit Satellite Information – Tothe antenna•Satellite Information – Satellite information consists of frequency,Command Button• Edit Satellite Information – To change frequency information ofthe antenna.• Angle of AntennaTwo kinds of antenna movement is available. One is to move to the target position and the other is to move by certain amount of angle. The current position (angle) of the antenna is displayed as “Current” and to move to the target position, push “Go to target Position” button after keying in desired angle into “Target”. To move to a certain amount of angle only, move antenna to directionbuttons after keying in the desired angle into the AZ and EL in the “Mover Command ButtonsSet Control Parameter–To register parameters values.Set Flags–To set flag setting for WRS Method or Offset Difference.Appendix 71Intellian Technologies, Inc.HQ Dongik Building 7th Flr.,98 Nonhyun-Dong, Gangnam-gu,Seoul 135-010, KoreaTel : +82-2-515-4923Fax: +82-2-545-4903Factory SK Ventium 104-501,522 Dangjeong-Dong, Gunpo-Si,Kyunggi-Do 435-776, KoreaPhone: +82-31-436-1488Fax: +82-31-436-1489R&D Center SK Ventium 104-601,522 Dangjeong-Dong, Gunpo-Si,Kyunggi-Do 435-776, KoreaPhone: +82-31-436-2280Fax: +82-31-436-2284Intellian Technologies USA, Inc.9261 Irvine Blvd.Irvine, CA 92618 USAPhone: +1-949-916-4411Fax: +1-949-271-4183E-Mail:*********************************Homepage : 。
方正 飞越V310绻列机型 说明书

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致踢!方正科技集团股份有限公司二OO四年目录1 滨意事项11.1 特别提示1 1.2 滨意事项12 产品概述62.1 简介6 2.2开箱和检查6 2.3部件介绍72.3.1前面板说明72.3.2后面板说明82.3.3键盘92.3.4鼠标102.3.5音箱11 2.4声明123 基本使用常识133.1开机前的准备133.2安全启动电脑13 3.3 WINDOWS下安全关闭电脑13 3.4异常关机情况的处理13 3.5设置BOIS14 3.6对电脑工作环境的一些要湂144 硬件安装说明154.1电脑的连接方滕15 4.2标准安装16 4.3多媒体安装165 绻统安装与使用说明175.1 WINDOWS XP 绻统安装指南17 5.2 操作绻统的安装17 5.3 驱动的安装18 5.4 安装WinDVD22 5.5方正电脑救护中心使用说明24 5.6 WinDVD使用说明33 5.7搜书网读书卡使用指南356 保养和维护396.1硬件方面的维护常识396.2软件方面的维护常识397 故障分析与处理401 滨意事项1.1 特别提示为了便于理解和引起您的滨意,当涉及产品安全或需关滨的信息时我们帆在本章节或在后面的章节中按下列等级和特别的警示用语向您提示,这些特别的警示用语表示方滕如下:¨【危险】--表示对高度危险要警惕¨【警告】--表示对中度危险要警惕¨【滨意】--表示对轻度危险要关滨¨【禁止】--表示危险的操作需禁止¨【提醒】--表示安全或其他内容需关滨本章节中为您提供的安全信息并不是全部的,为了您的安全和利益,我们会根据需要帆部分产品安全信息编排到使用手册的后面章节中,不论这些安全信息置于何处,您均应仔细阅读。
i3系列全数字交流伺服驱动器EtherCAT使用手册V0.11

i3系列全数字交流伺服驱动器——EtherCAT使用手册南京图科自动化设备有限公司THINKVO Automation Equipment Co.,Ltd——目录——1、前言 (4)1.1入门指导 (4)2、系统概述 (6)2.1 EtherCAT概述 (6)2.3 系统组成(主站*从站组成) (6)2.4 规格一览 (7)3、EtherCAT通信规格 (8)3.1 EtherCAT帧结构 (8)3.2 ESM(EtherCAT State Machine)状态机 (10)3.3 ESC地址空间 (11)3.4 SII(Slave Information Interface)EEPROM (12)3.5 通信同步模式 (14)3.5.1 DC同步 (14)3.5.2 SM同步 (15)3.5.3 FreeRUN非同步 (15)3.6 SDO (16)3.6.1 异常发生时的信息 (17)3.7 PDO (19)3.7.1 PDO映射对象 (19)3.7.2 PDO分配对象 (20)3.8 前面板构成及Node Address设置 (21)3.8.1 基本模式的选择与操作 (21)3.8.2 状态显示模式及EtherCAT Indicators (22)3.8.3 Node addressing(Station alias设定) (24)4、对象通用规格 (26)4.1 对象结构 (26)5、CoE通信区域(1000h-1FFFh) (27)5.1 对象一览 (27)5.2 设备信息 (29)5.3 SM communication type(1C00h) (30)5.4 PDO映射 (31)5.4.1 PDO分配对象 (31)5.4.2 PDO映射对象 (32)5.4.3 默认PDO映射 (34)5.4.4 PDO映射设定步骤 (36)5.5 SM2/3 synchronization(1C32、1C33h) (37)5.5.1 DC(SYNC0 Event同步) (40)5.5.2 SM2(SM2 Event同步) (42)5.5.3 FreeRun(非同步) (43)5.5.4 Input shift time (45)5.6 Diagnosis history(报警履历读取功能 10F3h) (46)6、驱动Profile区域(6000h-6FFFh) (48)6.1 对象一览 (48)6.2 PDS规格(控制状态机) (49)6.2.1 设备控制状态机 (49)6.3 controlword(6040h) (50)6.4 statusword(6041h) (51)6.5 控制模式设定 (52)6.5.1 supported drive modes(6502h) (52)6.5.2 modes of operation(6060h) (52)6.5.3 modes of operation display(6061h) (52)6.6 位置控制功能(csp/ip/pp/hm) (53)6.6.1 位置控制通用功能 (53)6.6.2 位置控制模式(PP) (54)6.6.3 Cyclic位置控制模式(CSP) (58)6.6.4 插补位置控制模式(IP) (59)6.6.5 原点复归控制模式(HM) (59)6.7 速度控制功能(csv/pv) (66)6.7.1 速度控制通用功能 (66)6.7.2 Profile速度控制模式(pv) (67)6.7.3 Cycle速度控制模式(csv) (69)6.8 转矩控制功能(pt/cst) (71)6.8.1 转矩控制通用功能 (71)6.8.2 Profile转矩控制模式(tq) (72)6.8.3 cycle转矩控制模式(csq) (73)6.9 模式通用功能 (74)6.9.1 touch probe功能 (74)6.9.2 Digital inputs/Digital outputs (78)8、对象字典一览表 (79)1、前言1.1入门指导在PP控制(Profile Position Mode)下,对电机独立动作的操作进行描述。
脱机运算器实验指导

脱机运算器实验指导实验一脱机运算器实验一、实验原理:运算器是计算机中执行各种算术和逻辑运算操作的部件。
运算器的基本操作包括加、减、乘、除四则运算,与、或、非、异或等逻辑操作,以及移位、比较和传送等操作。
运算器的组成除了必须的ALU单元外,寄存器和移位器也是必需。
寄存器用于提供操作数和存放运算结果,以节省访存时间;移位器可实现数据的移位功能,以扩展ALU的运算功能和数据传送的灵活性。
美国AMD公司生产的AM2901芯片是典型的运算器芯片。
1、AM2901的结构与组成AM2901芯片是一个4位的,位片结构的、完整的运算器器件。
AM2901由ALU、输入多路选择器、输出选择门、寄存器组和移位器等器件组成,如图1-1所示,作为教学内容的实例具有很好的典型性。
2、AM2901各组成部分及其功能图1-1 AM2901芯片的内部组成框图1)ALU 为4位算术逻辑单元,有8种运算功能,由外部送入3位信号I5,I4,I3的编码值来确定执行哪种功能。
2)存器组:AM2901具有由16个4位寄存器组成的寄存器组,作为通用寄存器组使用。
该寄存器组有两个4位地址译码器A和B,其中A译码器只具有读出数据功能,而B译码器具有读出和写入两种功能。
也就是说,该寄存器组具有两个数据输出端口,即A口和B口,输出的数据分别存入锁存器A和B;一个数据输入端口,即B口。
3)寄存器 :4位,在乘除运算中可用来存放乘数或商,故称做乘商寄存器。
它本身具有移位功能,即可接受其本身左移一位或右移一位的值,它还可以接收ALU的输出值。
4)输入多路选择器 :AM2901具有两个输入多路选择器R和S,用于为ALU提供两个操作数。
其中,R可选择D数据线来的数据或A锁存器的数据;而S可从A锁存器、B锁存器、Q 寄存器3个来源选取数据。
两个操作数的组合由外部送来的3位控制信号I2、I1、I0的编码确定。
5)移位器 : 4位,用于对ALU的输出实现直送、左移或右移。
I33规约说明及命令格式

c. 发送:将上送报文根据响应加上相应的数据类型,并加上海 明校验位H5~H0等打包组成16位传输字格式,每个传输字分 成两个字节(高位先送)写入串口发送缓冲区;
特点:在传输内容中没有字长信息,直接置缓冲区的发送数据长 度
-B字:确定有关RTU的基本地址,声明即将开始传送数据;只能由主 站发送
I33规约报文类型及命令格式补充说明 1. 前言
为了方便INDACTIC问答式远动规约在电力系统中的应用,本文根据 四方的300C远动主站系统对INDACTIC 33规约的实际阐述及运用,除介 绍报文类型和格式外,还对各种数据格式和一些典型的问答过程作补充 说明。
2. 术语说明:
位: 信息的最基本单位,在Indactic 33系统中以字节地址及位号 (0-7)编址,每一位可以代表一个单独的分合状态;
召唤遥测量报 上送12位量的遥
文
测量(校验和方
式校验)
同上
同上
同上
同上
同上
同上
同上
同上
召唤遥脉量
上送整个文件内 遥脉量
同上
同上
召唤遥测BCD 上送十进制遥测
格式量
量报文
G字:1) 命令(跟随B0的G字)(一个文件序号包括15个
组号)
I0~I7――输出字节序号(组号)
I4~I7――文件序号
0~15: 系统内部用途
信息位是从I7~I0。
e.报文类型
B字: 表格3.
命令码
0x00
助记符 B0
功能说明
回答类型
遥控选择执行 RTU确认报文
命令
(CQ)
0x01
B1
三诺生物 持续葡萄糖监测系统 I3 使用说明书

持续葡萄糖监测系统I3使用说明书说明注册人/生产企业:三诺生物传感股份有限公司住所/生产地址:长沙高新技术产业开发区谷苑路265号电话:*************售后服务单位:三诺生物传感股份有限公司客户服务电话:400-887-0036医疗器械注册证编号/产品技术要求编号:国械注准20233070435医疗器械生产许可证编号:湘药监械生产许20150053号使用说明书版本:A.4使用说明书编制或修订日期:2023.03.31目录第1部分入门须知 (3)1.1 入门须知 (3)1.2 结构及组成 (3)1.3检测原理 (3)第2部分安全说明 (4)2.1 适用范围 (4)2.2 禁忌症 (4)2.3 警告和注意事项 (4)2.3.1系统 (4)2.3.2传感器及发射器 (5)2.3.3应用程序 (6)第3部分如何使用CGM (6)3.1 安装并登录应用程序 (6)3.2 植入部位清洁 (6)3.3绑定发射器 (7)3.4 组装套件并植入传感器 (7)3.5 应用程序监测 (7)3.6 移除传感器 (7)第4部分故障排除 (7)第5部分产品技术信息 (8)5.1 技术规格 (8)5.2 网络安全说明 (9)5.3 符号说明 (9)5.4 电磁兼容性 (10)5.5 RoHS说明 (13)5.6 持续葡萄糖监测系统准确性 (13)第6部分售后与服务 (14)6.1 维护保养与弃置 (14)6.2 售后服务 (14)1.1 入门须知产品名称:持续葡萄糖监测系统产品型号:I3产品规格:1套/盒,2套/盒,4套/盒软件版本:V01.03(Android系统),V01.02(iOS系统)注意:(1)本说明书中采用CGM来表示I3持续葡萄糖监测系统。
(2)使用CGM前,请认真阅读说明书。
1.2 结构及组成产品由传感器套件(iCGM-S3)、发射器套件(iCGM-t3)以及持续葡萄糖监测系统应用程序(iCGM-APP 发布版本Android系统V01.03,iOS系统V01.02)组成。
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单机VI3测试手册V.02张巍2007‐10‐30目录第一部分:概述及系统准备 (3)硬件准备: (3)软件准备: (3)基础架构: (3)第二部分,安装和配置VC服务器 (6)基本系统安装 (6)安装时间服务 (9)安装iSCSI存贮 (9)第三部分,安装和配置ESX (13)安装 (13)时间同步设置 (17)第四部分,在VC中配置ESX以及iSCSI存贮。
(19)在VC中初始配置ESX (19)设置ESX iSCSI存贮 (24)第五部分,安装测试Guest系统及DRS和HA设置与测试 (31)作者简介: (37)文档版本历史: (38)后记 (38)第一部分:概述及系统准备对于很多VMware Fans来说,VI3的测试环境是可遇不可求的。
因为通常我们很难找到能够满足ESX运行要求的空闲服务器,更不用说测试RDS、HA等功能的共享存贮设备了。
而随着VMware Workstation6的推出,我们终于可以在虚拟机里面运行ESX了。
但是如何在一台机器上完成VI3的测试也并不是一件简单的事情。
撰写本手册的目的就是引导读者如何一步步地完成VI3测试环境的架设和测试过程。
希望能对各位VMware Fans有所帮助。
在此特别感谢为大家提供了一个良好的交流平台,写作本文时遇到的很多问题都是在论坛朋友的帮助下解决的。
硬件准备:如果打算在VMware Workstation6中运行VI3运行环境,首要条件是你的CPU必须支持虚拟化技术。
其次是内存要足够的大。
我建议最好是4GB,那样你可以创建多个ESX。
最小内存要求是2GB。
对于硬盘空间要求并不是很大,20GB就足够了。
我进行测试的平台是IBM X60,2GB内存,160GB硬盘。
软件准备:首先我们应该有VMware Workstation6以及VI3的安装介质或ISO文件,其次是许可文件。
对于测试用户,可以在VMware网站上申请测试许可。
为了运行VC和iSCSI存贮,我们还需要Windows2003、SQLServer2000和WinTarget。
本文实例中使用的是ESX3.02版本。
基础架构:我在一台机器上运行一个VC(同时提供DNS、时间服务以及iSCSI存贮)、两个ESX。
其网络设置如下:可以看到,每个虚拟机都分配了3块网卡并连接到了一个独立的VMnet上面。
这是为了能够更接近真实生产环境而做出的配置。
其中VMnet1用于虚拟网络和服务终端;VMnet2则用于iSCSI存贮访问;VMnet3则专门用于vmotion。
要注意的是,VMnet2上,每个ESX都分配了两个IP,其中一个用于SC一个用于iSCSI。
下面是ESX_1和ESX_2的网络配置情况。
ESX_1ESX_2下面是整个试验环境的拓扑:Storage1和Storage2分别是ESX1和ESX2的本地磁盘存贮,vmwarecni是由iSCSI提供的共享存贮。
上面运行了一台虚拟机PDC(中文NT4主域控制器,同时安装了SQL6.5 SP5)。
第二部分,安装和配置VC服务器基本系统安装本环境中的VC服务器非常重要,也是配置的关键所在。
此服务器上不但运行了VC的相关组件。
还运行着DNS、NTP以及iSCSI Target。
下面我们来看看如何对它进行配置。
首先我们在Workstation6新建一台windows2003的Guest OS,其三块网卡配置如上所述。
虚拟硬件设置如下:我安装的是Windows2003 R2,并打了最新的补丁。
为了能够更好的运行VC,还安装了SQLServer2000。
所要注意的是,SQL Server最好也打上最新的补丁。
随后在SQL Server中为VC建立一个数据库,并且修改这个数据库的默认选项(如下图)这里的默认设置是“简单”我们需要将其修改为“大容量日志记录的”。
然后再安装DNS和Web应用服务器角色。
DNS设置如下:安装时间服务随后将配置时间服务器。
虽然Windows 2003提供了时间服务器功能。
但是经过测试后发现ESX并不能很好地使用Windows 2003的NTP服务。
其中有可能是NTP版本差异导致,具体情况可以看我在论坛里面详细讨论这个问题的帖子。
而如果不能保障ESX以及VC的时间同步,将给测试工作带来很大麻烦。
因此我们在这里安装Meinberg Funkuhren公司提供的第三方时间服务器软件。
大家可以到www.meinberg.de下载ntp-4.2.4p3@1.1502-foehr-v2-o-win32-setup.exe。
其安装和配置工作十分简单,就不再阐述了。
安装iSCSI存贮接下来我们需要安装iSCSI存贮软件WinTarget。
WinTarget可以使用磁盘或者文件的方式来建立iSCSI存贮。
如果要选择用磁盘方式,则需要在VC虚拟机上再增加一块虚拟磁盘。
WinTarget的安装十分简单,基本上一路NEXT就可以了。
完成安装之后,还需要对其进行一些配置工作。
打开WinTarget管理工具,右击Devices对象。
从快捷菜单中选择创建WinTarget磁盘。
打开WinTarget Disk向导。
随后选择是使用磁盘还是文件方式。
我选择的是磁盘方式,接下来是选择使用的磁盘。
所要注意的是,这个磁盘不能被分区和格式化过。
随后是选择磁盘的大小和一些高级选项,直接点下一步继续。
输入名称,点击下一步。
随后将提示加入主机。
由于我们还没有安装ESX,直接点下一步继续。
随后点击完成。
接下来右键点击WinTarget,选择“属性”,修改配置如下:在命令行下输入netstat –a,如果发现已经开始监听3260端口,则表明配置成功。
然后就是安装和配置VC,其过程非常简单,想必各位VMware Fans已经再熟悉不过。
我这里就不再浪费篇幅阐述了。
第三部分,安装和配置ESX安装接下来我们将进入关键的一步——在VMware Workstation6中安装ESX3.02。
首先向大家推荐一个不错的网站——。
其中Paul Davey写的“Install and run VMware ESX3 on VMware Workstation 6”白皮书非常好。
大家可以参考其中的配置步骤。
因此这里我仅简要说明一下ESX的基本安装过程。
首先请检查一下你的机器CPU是否具有虚拟化功能。
而且必须有两个以上的核心。
可以使用CPU‐Z等工具检查你的CPU功能。
而仅仅确认CPU支持虚拟化功能还是不够的。
还需要在BIOS中打开这个功能。
我发现很多机器甚至是服务器此功能默认都是关闭的。
随后在Workstation6中建立一个Guest OS,在选择系统类型时选择自定义。
随后在虚拟化硬件兼容设置页面中做如下设置。
随后选择OS种类时配置如下:随后将要求指定Guest OS的存贮位置和网络类型以及CPU数量(要选两个CPU)和内存大小(根据情况进行分配,可以的话最好分配1GB)。
接下来在选择磁盘控制器类型时要特别注意,其设置应该如下:随后的步骤和平时创建虚拟机时没有什么差别,就不再阐述了。
完成虚拟机创建向导后,要从Workstation6的Favorites中删除刚刚建立的虚拟机。
然后退出Workstation6管理工具。
随后用notepad打开刚刚创建的虚拟机配置文件(.VMX)。
修改并添加网络适配器和虚拟化支持设置。
对于网卡设置如下:ethernet0.present = "TRUE"ethernet0.virtualDev = "e1000"ethernet0.addresstype = "generated"ethernet0.connectionType = "hostonly"ethernet0.wakeOnPcktRcv = "FALSE"虚拟化支持设置如下:monitor_control.restrict_backdoor = TRUEmonitor_control.vt32 = TRUE要注意的是,上面的这个是针对Intel的CPU,对于AMD的CPU则稍微有所不同。
具体设置可以在论坛里面查找相关的帖子。
我的ESX_1的VMX文件内容如下,可以供大家修改时进行参考。
config.version = "8"virtualHW.version = "4"numvcpus = "2"scsi0.present = "TRUE"scsi0.virtualDev = "lsilogic"memsize = "640"scsi0:0.present = "TRUE"scsi0:0.fileName = "ESX1.vmdk"ide1:0.present = "TRUE"ide1:0.fileName = "F:"ide1:0.deviceType = "cdrom‐raw"floppy0.autodetect = "TRUE"ethernet0.present = "TRUE"ethernet0.virtualDev = "e1000"ethernet0.addresstype = "generated"ethernet0.connectionType = "hostonly"ethernet0.wakeOnPcktRcv = "FALSE"ethernet1.present = "TRUE"ethernet1.virtualDev = "e1000"ethernet1.addresstype = "generated"ethernet1.connectionType = "custom"ethernet1.vnet = "VMnet2"ethernet1.wakeOnPcktRcv = "FALSE"ethernet2.present = "TRUE"ethernet2.virtualDev = "e1000"ethernet2.addresstype = "generated"ethernet2.connectionType = "custom"ethernet2.vnet = "VMnet3"ethernet2.wakeOnPcktRcv = "FALSE"svga.autodetect = "TRUE"mks.keyboardFilter = "allow"displayName = "ESX_1"guestOS = "redhat"nvram = "Red Hat Linux.nvram"deploymentPlatform = "windows"virtualHW.productCompatibility = "esx"tools.upgrade.policy = "useGlobal"monitor_control.restrict_backdoor = TRUEmonitor_control.vt32 = TRUEfloppy0.fileName = "A:"isolation.tools.hgfs.disable = "TRUE"ethernet0.generatedAddress = "00:0c:29:6c:00:86"uuid.location = "56 4d 05 cf 93 bf 3c 8a‐10 5e cd d2 14 45 75 c3"uuid.bios = "56 4d b1 cf 6f 35 85 8d‐a2 e1 e6 6c 26 6c 00 86"scsi0:0.redo = ""ethernet0.generatedAddressOffset = "0"tools.remindInstall = "TRUE"floppy0.startConnected = "FALSE"ethernet1.generatedAddress = "00:0c:29:6c:00:90"ethernet1.generatedAddressOffset = "10"isolation.tools.dnd.disable = "TRUE"ethernet2.generatedAddress = "00:0c:29:6c:00:9a"ethernet2.generatedAddressOffset = "20"ethernet0.vnet = "VMnet3"ide1:0.startConnected = "FALSE"随后启动Workstation6管理工具,打开刚才修改的VMX文件。