Elm04_03
EL2004中文资料
EL2004 EL2004CNovember1993RevG Note All information contained in this data sheet has been carefully checked and is believed to be accurate as of the date of publication however this data sheet cannot be a‘‘controlled document’’ Current revisions if any to these specifications are maintained at the factory and are available upon your request We recommend checking the revision level before finalization of your design documentation Patent pending1989Elantec IncFeaturesSlew rate 2500V m sRise time 1nsBandwidth 350MHzELH0033 pin compatibleg5to g15V operation100mA output currentMIL-STD-883B Rev C devicesmanufactured in U S AApplicationsCoaxial cable driverFast op amp boosterFlash converter driverVideo line driverHigh-speed sample and holdPulse transformer driverA T E pin driverOrdering InformationPart No Temp Range Package OutlineEL2004CG b25 C to a85 C TO-8MDP0002EL2004G b55 C to a125 C TO-8MDP0002EL2004L b55 C to a125 C52-Pad LCC MDP0013EL2004L MIL b55 C to a125 C52-Pad LCC MDP00135962-89659is the SMD version of this deviceConnection DiagramCase is Electrically Isolated2004–1Top ViewGeneral DescriptionThe EL2004is a very high-speed FET input buffer line driverdesigned for unity gain applications at both high current(up to100mA)and at frequencies up to350MHz The2500V m s slewrate and wide bandwidth ensures the stability of the circuitwhen the EL2004is used inside op amp feedback loopsApplications for the EL2004include line drivers video bufferswideband instrumentation and high-speed drivers for inductiveand capacitive loads The performance of the EL2004makes itan ideal buffer for video applications including input buffers forflash A D converters and output buffers for video DACs Itsexcellent phase linearity is particularly advantageous in digitalsignal processing applicationsElantec facilities comply with MIL-I-45208A and are MIL-STD-1772certified Elantec’s Military devices comply withMIL-STD-883B Revision C and are manufactured in our rigidlycontrolled ultra-clean facilities in Milpitas California For ad-ditional information on Elantec’s Quality and Reliability Assur-ance Policy and procedures request brochure QRA-1Simplified Schematic2004–32T D i s 3 2 i n34T D i s 2 7 i n T D i s 3 4 i nAC Test Circuit2004–4Typical Performance CurvesDissipationMaximum Power TO-82004–5Gain vs Input VoltageOutput CurrentOutput Resistance vs2004–75Typical Performance Curves ContdTemperatureRise Time vs ResponseSmall Signal Pulse ResponseLarge Signal Pulse Frequency ResponseVoltageOffset Voltage vs Supply Warm-upCurrent During Normalized Input Bias Supply Voltage Supply Current vs Supply VoltageOutput Voltage vs 2004–86Applications InformationThe EL2004is one member of a family of high performance buffers manufactured by Elantec The2004is optimized for speed while others offer choices of input DC parameters or output drive or cost The following table illustrates those members available at the time of this printing Consult the factory for the latest capabilities in this developing lineElantec’s Buffer FamilySlewBandwidth Input Peak RisePart RateMHz Current I OUT TimeV m s(Warm)mA nsELH0002200506m A4007 ELH003315001002 5nA2502 9 EL200425003502 5nA2501 0 EL200515001400 1nA2502 5Recommended Layout PrecautionsThe very high-speed performance of the EL2004 can only be realized by taking certain precau-tions in circuit layout and power supply decou-pling Low inductance ceramic chip or disc power supply decoupling capacitors of0 1m F or more should be connected with the shortest practical lead lengths between the device supply leads and a ground plane In addition it can be helpful to parallel these with4 7m F electrolytics(Tanta-lum preferred) Failure to follow these precau-tions can result in oscillationCircuit OperationThe EL2004is effectively an ideal unity gain am-plifier with almost infinite input impedance and about6X output impedanceInput CharacteristicsThe input impedance of a junction FET is a strong function of temperature and input volt-age Nominal input resistance of EL2004is1012 at25 C junction but as I B doubles every11 C in the JFET the input resistance falls Duringwarm-up self-heating raises the junction temper-ature up to60 C or more(without heatsink)so operating I B will be much higher than the data sheet25 C specificationAnother factor which can increase bias current is input voltage If the input voltage is more than 20V below the positive supply the input current rises exponentially (See Curve )Input Bias Current vsTemperatureInput VoltageInput Bias Current vs2004–9 In applications such as sample and hold circuits where it is important to maintain low input bias current over input voltage range the EL2005 High Accuracy Fast Buffer is recommendedThe input capacitance of EL2004comprises the FET device gate-to-source capacitance(which isa function of input voltage)and stray capaci-tance to the case Effective input capacitance can be minimized by connecting the case to the out-put since it is electrically isolated Or for reduced radiation the case may be grounded The AC characteristics specified in this data sheet were obtained with the case floatingOffset Voltage AdjustmentThe EL2004’s offset voltages have been actively laser trimmed at g15V supplies to meet specified limits when the offset adjust pin is shorted to the offset preset pin If external offset null is re-quired the offset adjust pin should be connected to a200X trim pot connected to the negative sup-ply7Circuit Operation ContdOffset Zero Adjust2004–10Capacitive LoadingThe EL2004is designed to drive capacitive loadsup to several thousand picofarads without oscil-lation However peak current resulting fromcharging currents on fast edges should be limitedbelow the absolute maximum peak current ratingof250mA In some cases it may be necessary toemploy one of the current limit schemes shownbelowShort Circuit ProtectionDynamic response of the EL2004was preservedby excluding current limit circuits which are notneeded in most applications However in situa-tions where operating conditions are not con-trolled short circuit protection can be added byinserting resistors between the output device col-lectors and supplies as illustratedUsing ResistorCurrent Limiting2004–11Suitable resistor values can be calculated as fol-lowsR SC eV aI SCeV bI SCwhere I SC s100mA for EL2004Current LimitingUsing Current Sources2004–12The inclusion of limiting resistors in the collec-tors of the output devices will reduce the outputvoltage swing and speed Decoupling V C a andV C b pins with capacitors to ground will retainfull output swing for transient pulsesAn alternate active current limit technique thatretains full DC output swing is shown aboveHere the current sources are saturated duringnormal operation thus applying full supply volt-age to the V C pins Under fault conditions thevoltage decreases as the current source reaches itslimitR LIM eV BEI SCe0 6V100mAe6XPower SuppliesThe EL2004has been characterized for both g15and g5V dual supply operation but other combi-nations can also be useful For example in manyvideo applications it is only necessary for the out-put to swing g2V or less but speed and distor-tion are important In this situation the inputstage can be operated at the full g15V supplywhile the output collectors are returned to g5VThe speed and distortion will be almost as goodas if the whole circuit was operating at g15Vbut the dissipation is substantially reduced andhigher load currents can be safely accommodat-ed8Circuit Operation ContdIncreasing Operating Voltageand Reducing Thermal TailWhen driving heavy loads the changing dissipa-tion in the output transistors can sometimescause temperature gradients in the circuit whichcause a shift in offset voltage and the phenome-non known as‘‘thermal tail’’ Bootstrapping theoutput as illustrated substantially reduces thepower in the output transistors and mitigates theeffectHigh Voltage Inputs can be Accommodatedwith Bootstrapped Supplies2004–13HardwareIn order to utilize the full drive capabilities of theEL2004 it should be mounted with a heatsinkparticularly for extended temperature operationSuitable heatsinks include Thermalloy2240A(33 C W) Wakefield215CB(30 C W)andIERC-UP-TO-848CB(15 C W)The case is isolated from the circuit and may beconnected to system chassis Sockets are not rec-ommended as they add substantial inductanceand capacitance which impair the performance ofthe device However for test purposes they areunavoidable and precautions such as shielding in-put from output are suggestedGeneral Application SuggestionsVideo DAC BufferMany of the available video D to A convertersare unable to directly drive50X or75X cablesThe EL2004’s excellent phase linearity at videofrequencies make it an ideal solution In criticalapplications or where line termination is not con-trolled a matching pad should be used as shownThe capacitor should be adjusted for optimumpulse response If properly layed out this circuitwill not overshootVideo DAC Buffer2004–14Impedance MatchingThe EL2004provides power gain and isolationbetween source and load when used as an activetap or impedance matching device as illustratedhere In this example there is no output match-ing pad between the2004and the75X line Suchmatching is not needed when the distant end ofthe cable is properly terminated as there is noreflected signal to worry about and the2004iso-lates the source This technique allows the fulloutput voltage of the EL2004to be applied to theloadImpedance Converter2004–159General Application Suggestions ContdInverting Amplifier for 20MHz Flash Converter2004–16Boosting the OutputUnlike most integrated cicuits two or more EL2004’s can be paralleled for increased output drive This capability results from the finite out-put resistance and low output mismatch of theEL2004 For example a 50X cable driver with g 10V capability can be made by using two EL2004’s A short-circuit protected version is shown below50X Cable Driver with Short Circuit ProtectionNPN e 2N6551(PNP e 2N6554or equivalent 2W devices2004–1710Burn-In Circuit2004–18Pin numbers are for TO-8packageLCC uses the same schematic11EL2004MacromodelConnections inputl V al l Vc al l l V bl l l l Vc bl l l l l outputl l l l l lsubckt M2004512110911Modelsmodel qn npn(is e5e b14bf e150vaf e100rc e1rb e5re e1ikf e200mAa cje e5pF cjc e5pF mje e 42mjc e 23tf e 3nS tr e200nS br e5vtf e0)model qp pnp(is e5e b14bf e150vaf e100rc e2rb e3re e1ikf e100mAa cje e5 7pF cjc e4pF tf e 3nS mje e 32mjc e 43tr e170nS br e5vtf e0)model qf njf(vto eb3V beta e4 0e b3cgd e4pF cgs e10pF lambda e671 0e b6) Resistorsr1202158 33r2271058 33r322112r411232Transistorsj112520qfj4241026qfq2212125qnq3242425qpq512122qnq692423qpq7262627qnends12TAB WIDET Dis38inEL2004Macromodel Contd2004–1913KNALB14KNALB15E L 2004 N o v e m b e r 1993R e v GGeneral DisclaimerSpecifications contained in this data sheet are in effect as of the publication date shown Elantec Inc reserves the right to make changes in the circuitry or specifications contained herein at any time without notice Elantec Inc assumes no responsibility for the use of any circuits described herein and makes no representations that they are free from patent infringementElantec Inc 1996Tarob Court Milpitas CA 95035Telephone (408)945-1323(800)333-6314Fax (408)945-9305European Office 44-71-482-4596WARNING Life Support PolicyElantec Inc products are not authorized for and should not be used within Life Support Systems without the specific written consent of Elantec Inc Life Support systems are equipment in-tended to support or sustain life and whose failure to perform when properly used in accordance with instructions provided can be reasonably expected to result in significant personal injury or death Users contemplating application of Elantec Inc products in Life Support Systems are requested to contact Elantec Inc factory headquarters to establish suitable terms conditions for these applications Elantec Inc ’s warranty is limited to replace-ment of defective components and does not cover injury to per-sons or property or other consequential damagesPrinted in U S A16。
西门子变频器M430说明书
MICROMASTER 430
7.5 kW - 250 kW
使用说明书
版本 10/06
有关调试的
警告
!
¾ 未经培训合格的人员在变频器的器件/系统上工作或不遵守“警告”中的有关规定,就可能造
成严重的人身伤害或重大的财产损失。只有在设备的设计、安装、调试和运行方面受过培训 的经过认证合格的专业人员才允许在本设备的器件/系统上进行工作。
¾ 输入电源线只允许永久性紧固连接。设备必须接地(按照 IEC 536 Class 1、NEC 和其它适用 的标准)。
有关维修的
警告
!
¾ 设备的维修只能由西门子公司的服务部门,西门子公司授权的维修中心或经过认证合格并得
到授权的人员进行,这些人员应当十分熟悉本说明书中提出的所有警告和操作步骤。
¾ 任何有缺陷的部件和器件都必须用相应的备件更换。
¾ 在打开设备进行维修之前,一定要断开电源。
有关拆卸和废品处理的
注意 ¾ 变频器的包装箱是可以重复使用的。请保管好包装箱以备将来使用或把它返还给制造商。 ¾ 易卸螺丝和快速插接器便于您拆卸设备的部件。您可以回收这些拆卸下来的部件,并根据地
是其第§8 节关于“带电部件上工作时允许的安全距离”的规定。实际操作时,应该使用适当 的电子器具。 ¾ 在安装和调试变频器之前,请您务必仔细阅读这些安全规则和警告,以及设备上粘贴的所有 警示标志。确保警示标志置于醒目的地方,并更换已经脱落或损坏的标志。
MICROMASTER 430 使用说明书
奥美晨曦系列微波传感器说明书
OS100 SERIES Mini-Infrared Transmitter e-mail:**************For latest product manuals: Shop online at User’s G ui d e***********************Servicing North America:U.S.A. Omega Engineering, Inc.Headquarters: Toll-Free: 1-800-826-6342 (USA & Canada only)Customer Service: 1-800-622-2378 (USA & Canada only)Engineering Service: 1-800-872-9436 (USA & Canada only)Tel: (203) 359-1660 Fax: (203) 359-7700e-mail:**************For Other Locations Visit /worldwideThe information contained in this document is believed to be correct, but OMEGA accepts no liability for any errors it contains, and reserves the right to alter specifications without notice.Table of ContentsSection ...................................................................PageSafety Warnings and IEC Symbols (iii)Caution and Safety Information (iii)Section 1 Introduction ....................................................................1-1Section 2Installation ......................................................................1-12.1 Unpacking and Inspection ......................................1-12.2 Electrical Connection ..............................................2-1Section 3Operation ........................................................................3-13.1 Main Board ................................................................3-13.2 Ambient Temperature ..............................................3-23.3 Atmospheric Quality ................................................3-33.4 Measuring Temperature ..........................................3-33.5 Alarm Setting ............................................................3-43.6 Adding Extension Cable...........................................3-4Section 4 Laser Sight Accessory ...................................................4-14.1 Warning and Cautions .............................................4-14.2 Operating the Laser Sight Accessory .....................4-1Section 5 Specifications .................................................................5-15.1 General .......................................................................5-15.2 Laser Sight Accessory (OS100-LS) ..........................5-2Section 6Emissivity Table .............................................................6-1iTable of FiguresFigure Description Page2-1Power Supply & Analog Output Connections ..........2-12-2 Alarm Output Connection ............................................2-13-1 Main PC Board ...............................................................3-23-2 Sensor..............................................................3-2Housing3-3 Optical Field of View .....................................................3-43-4Setting the Temperature Engineering Unit..................3-43-5Mounting Bracket OS100-MB .......................................3-53-6Water Cooling Jacket, OS100-WC ................................3-53-7Typical Water Cool Jacket Assembly ...........................3-53-8Air Purge Collar, OS100-AP..........................................3-63-9DIN Rail Mounting Adapter, OS100-DR ....................3-63-10NEMA-4 Aluminum Enclosure ....................................3-64-1Laser Sighting Accessory, OS100-LS ............................4-24-2Laser Warning Label ......................................................4-2iiSafety Warnings and IEC SymbolsThis device is marked with international safety and hazard symbols in accordance with IEC 1010. It is important to read and follow all precautions and instructions in this manual before operating or commissioning this device as it contains important information relating to safety and EMC. Failure to follow all safety precautions may result in injury and or damage to your calibrator. IEC symbols DescriptionCaution and Safety Information• If the equipment is used in a manner not specified in this manual, the protection provided by the equipment may be impaired.• The installation category is one (1).• There are no user replaceable fuses in this product• The output terminals of this product are for use with equipment (digital meters, chart recorders, etc,) which have no accessible five parts. Such equipment should comply with all the applicable safety requirements.• Do not operate the equipment in flammable or explosive environments.• All connections to the thermometer should be made via a shielded cable, 24 AWG stranded wire with the following ratings: 300V , 105°C (221°F), PVC insulation.• Power must be disconnected before making any electrical connections.• The power supply used to power the thermometer should be VDE or UL approved with the following ratings: 12 to 24vdc @150mA with overload protection of 500mA.iiiCaution, refer to accompanying documentsDirect Current Laser SymbolFrame or ChassisNOTES: ivSection 1 - IntroductionThe low cost OS101 mini-infrared transmitter provides non-contacttemperature measurement for industrial applications. The unit measures atemperature range of -18 to 538°C (0-1000°F) and provides a linear analogoutput of either 4-20 mA, 0-5 VDC, K type TC, 1 mV/°C, or 1 mV/°F.The new OS102 mini-infrared transmitter has all the functions of OS101plus a built-in LED display that shows the measured temperature indegrees F or degrees C which is switchable in the field.The miniature sensor head design 2.5 cm dia. x 6.3 cm Length (1" x 2.5") isideal for measuring temperature in confined, and hard to reach places.The aluminum sensor head as well as the rugged electronic housing (Diecast Aluminum) are NEMA-4 rated.The sensor head is connected to the electronic housing via a 1.82 m (6 feet)shielded cable as standard. The unit provides field adjustable alarmoutput.Section 2 - Installation2.1UnpackingRemove the packing list and verify that you have received all yourequipment. If you have any questions about the shipment, please callCustomer Service at:1-800-622-2378 or 203-359-1660. We can also be reached on the internet:e-mail:**************When you receive the shipment, inspect the container and equipment forany signs of damage. Note any evidence of rough handling in transit.inspection. After examination and removing contents, save packing material and carton in theevent reshipment is necessary.The following items are supplied in the box:• The infrared transmitter including the sensor head and the 1.82 m(6 feet) shielded cable• User's Manual• Mounting Nut1-1The following describes the ordering information:OS102 or OS101 - MA- *,**, where The following optional accessories are available:Here are the Features of OS101 and OS102 infrared transmitters:2.2Electrical Connection Sensor Head Cable - The Sensor head is pre-wired to a 1.8 m (6 feet)shielded cable. Plug & lock-in the male connector to the mating female connector on the aluminum housing.Power & Output Connection - Open the cover of the main aluminum housing. Slide the cable through the strain relief and connect the wires to the terminal block on the board as shown in Fig. 2-1. For Alarm output connection, refer to Fig. 2-2.2-1MA - 4/20 mA output V1 - 0 to 5 VDC output K - Thermocouple output, K type MV - Millivolt output C - 1 mV/°C output F - 1 mV/°F output HT- High temperature sensor head3-1Figure 2-2. Alarm Output Connection Section 3 - Operation3-1Main BoardThe Main Board is shown in Fig. 3-1. Here are the important components on the board:(1) - Terminal Block for Power & Output connections(2) - Single Turn Potentiometer to adjust Emissivity in tenths (0.x_)(3) - Single Turn Potentiometer to adjust Emissivity in hundreds (0._x)(4) -Slide switch to select between real time (Normal Operation) and alarm set point(5) - Alarm set point adjust, P4(6) - Sensor Head connection(7) - Input Zero adjust, P3(8) - Input Span adjust, P2(9) - Output Zero adjust, P5(10) - Output Span adjust, P6Figure 3-1. Main PC Board3.2Ambient TemperatureThe Sensing head can operate in an ambient temperature of 0 to 70°C (32to 158°F). The Sensing head in the high temperature model (-HT) can operate in an ambient temperature of 0 to 85°C (32 to 185°F) without any cooling required. The Sensing head can operate up to 200°C (392°F) using the water cool jacket accessory OS100-WC (See Fig. 3-6).There is a warm up period of 3 minutes after power up. After the warm up period, temperature measurement can be made.When the ambient temperature around the sensor head changes abruptly,the sensor head goes through thermal shock. It takes a certain amount of time for the sensor head to stabilize to the new ambient temperature. For example, it takes about 30 minutes for the sensor head to stabilize going from 25°C to 50°C (77 to 122°F) ambient temperature.The sensor head dimensions are shown in Fig. 3-2.Figure 3-2. Sensor Housing3-23-33.3Atmospheric QualityEnvironments with smoke, dust, and fumes dirty up the optical lens, and cause erroneous temperature readings. To keep the surface of the optical lens clean, the air purge collar accessory is recommended, OS100-AP , See Fig. 3-7.3.4Measuring TemperatureBefore starting to measure temperature, make sure that the following check list is met:ߜ The power and analog output connections are made (Fig. 2-1).ߜThe sensor head is connected to the main unit.ߜThe slide switch (SW1) on the main board is set to real time (Fig. 3-1).ߜThe target is larger than the optical field of view of the sensor head (Fig. 3-3).ߜThe emissivity adjustment on the main board is set properly (Fig. 3-1).ߜThe output load is within the product specification.On OS102 transmitters, follow these additional steps:ߜ The temperature display is set to °F or °C (Fig. 3-4)ߜ For 4-20mA output models, make sure an output load is added, ie. 250ohms.Figure 3-3. Optical Field Of ViewFigure 3-4. Setting the Temperature Engineering Unit3.5Alarm SettingThe unit provides 0-100% alarm set point adjustment. Here is an exampleof an alarm setting.• An OS101-MA(4/20 mA output), the alarm is to be set at 400°Ftemperature.• Connect the alarm output as shown in Fig. 2-2.• Set the slide switch (SW1) on the main board to the Alarm position.• Measure the analog output, and set the Potentiometer P4 until theoutput reads 10.4 mA which is 40% (400°F) of the temperature range.40 x (20-4)[10.4mA=+ 4]100• Set the slide switch (SW1) back to the Real Time position.• If the temperature reading is below the alarm set point, the alarmoutput stays high, otherwise it goes low.On the OS102, you can set the alarm set point directly based on thetemperature display.3.6Adding Extension CableYou can add extension cable between the Sensor Head and the mainelectronic housing up to 15.2 m (50 feet). After adding the extension cable,the Zero input potentiometer, P3 may be re-adjusted. (See Fig. 3-1, forproper analog output reading)The following figures show the mounting bracket (OS100-MB), Watercooling jacket (OS100-WC), Air purge collar (OS100-AP), DIN RailMounting adapter (OS-100-DR), and the main aluminum enclosure. TheDIN Rail Mounting adapter (OS100-DR) is mounted to the bottom of themain aluminum enclosure using two 4-40 screws.A typical water cool jacket assembly is shown in Fig. 3-7, on the following page.1. Mounting Nut2. Mounting Bracket3. Water Cool Jacket4. Sensor Head3-4Figure 3-5. Mounting Bracket OS100-MBFigure 3-6. Water Cooling Jacket, OS100-WCFigure 3-7. Typical Water Cool Jacket Assembly3-5Figure 3-8. Air Purge Collar, OS100-APFigure 3-9. DIN Rail Mounting Adapter, OS-100-DRFigure 3-10. NEMA-4 Aluminum Enclosure3-6Section 4 - Laser Sight Accessory4.1Warning and Cautionsbelow:•Use of controls or adjustments or performance of procedures other than those specified here may result in hazardous radiation exposure.• Do not look at the laser beam coming out of the lens or view directly with optical instruments - eye damage can result.• Use extreme caution when operation the laser sight accessory • Never point the laser accessory at a person • Keep out of the reach of all children4.2Operating the Laser Sight AccessoryThe laser sight accessory screws onto the front of the sensor head. This accessory is only used for alignment of the sensor head to the target area.After the alignment process, the accessory has to be removed from the front of the sensor head before temperature measurement.The laser sight accessory is powered from a small compact battery pack (included with the accessory). Connect the battery pack to the accessory using the cable provided. Aim at the target, and turn on the battery power using the slide switch on the battery pack. Adjust the sensor head position so that the laser beam points to the center of the target area. Turn off the battery pack, and remove the laser sighting accessory from the sensor head. See Fig. 4-1 for reference.4-14-2Figure 4-2. Laser Warning LabelSection 5 - Specifications5.1 - GeneralTemperature Range-18 to 538°C (0 to 1000°F)Accuracy @ 22°C (72°F)±2% of Rdg. or 2.2°C (4°F) whichever is ambient temperature & greateremissivity of 0.95 or greaterOptical Field of View6:1 (Distance/Spot Size)Repeatability±1% of Rdg.Spectral Response 5 to 14 micronsResponse Time150 msec (0 to 63% of final value)Emissivity Range0.1 to 0.99, adjustableOperating Ambient TemperatureMain Transmitter0 to 50°C (32 to 122°F)Sensor Head0 to 70°C (32 to 158°F)Sensor Head (-HT Model)0 to 85°C (32 to 185°F)Sensor Head with OS100-WC(Water Cooling Jacket)0 to 200°C (32 to 392°F)Operating Relative Humidity Less than 95% RH, non-condensingWater Flow Rate for OS100-WC0.25 GPM, room temperatureThermal Shock About 30 minutes for 25°Cabrupt ambient temperature change Warm Up Period 3 minutesAir Flow Rate for OS100-AP 1 CFM (0.5 Liters/sec.)Power12 to 24 VDC @ 100 mAAnalog OutputsMV-F 1 mV/°FMV-C 1 mV/°CK K Type TC - OS101 onlyMA 4 to 20 mAV10 to 5 VDCOutput Load requirementsMin. Load (0 to 5VDC) 1 K-OhmsMax. Load (4 to 20 mA)(Supply Power - 4 )/20 mATransmitter Housing NEMA-4 & IP65, Die Cast AluminumSensor Head Housing NEMA-4 , AluminumAlarm Output Open Drain, 100 mAAlarm Set Point0 to 100% , Adjustable via P4Alarm Deadband14°C (25°F)5-15-25.1 - General Con’t.DimensionsSensor Head25.4 OD. x 63.5 mm L(1" OD. x 2.5" L)Main Housing, OS10165.5 W x 30.5 H x 115.3 mm L(2.58" W x 1.2" H x 4.54" L)Main Housing, OS10265.5 W x 55.9 H x 115.3 mm L(2.58" W x 2.2" H x 4.54" L)Weight 272 g (0.6 lb)5.2Laser Sight Accessory (OS100-LS)Wavelength (Color)630 - 670 nm (Red)Operating Distance (Laser Dot)Up to 9.1 m (30 ft.)Max. Output Optical Power Less than 1 mW at 22°F ambienttemperature.European Classification Class 2, EN60825-1/11.2001Maximum Operating current45 mA at 3 VDCFDA Classification Complies with 21 CFR 1040.10,Class II Laser ProductBeam Diameter 5 mmBeam Divergence< 2 mradOperating Temperature0 to 50°C (32 to 122°F)Operating Relative Humidity Less than 95% RH, non-condensingPower Switch ON / OFF , Slide switch on the BatteryPackPower Indicator Red LEDPower Battery Pack, 3 VDC (Consists of two 1.5VDC AA size Lithium Batteries) Laser Warning Label Located on the head sight circumferenceIdentification Label Located on the head sight circumferenceDimensions38 DIA x 50.8 mm L(1.5" DIA x 2" L)Section 6 - Emissivity Table6-1Material Emissivity (ε)Aluminum – pure highly polished plate . . . . . . . . . . . . . . . . . . . . . . . . 0.04 to 0.06Aluminum – heavily oxidized . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.20 to 0.31Aluminum – commercial sheet . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.09Brass – dull plate. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.22Brass – highly polished, 73.2% Cu, 26.7% Zn. . . . . . . . . . . . . . . . . . . . . . . . . 0.03Chromium – polished. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.08 to 0.36Copper – polished. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.05Copper – heated at 600°C (1112°F). . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.57Gold – pure, highly polished or liquid. . . . . . . . . . . . . . . . . . . . . . . . . 0.02 to 0.04Iron and steel (excluding stainless)– polished iron . . . . . . . . . . . . . . . . 0.14 to 0.38Iron and steel (excluding stainless)– polished cast iron. . . . . . . . . . . . . . . . . . . 0.21Iron and steel (excluding stainless)– polished wrought iron . . . . . . . . . . . . . . . 0.28Iron and steel (excluding stainless)– oxidized dull wrought iron . . . . . . . . . . . . 0.94Iron and steel (excluding stainless)– rusted iron plate . . . . . . . . . . . . . . . . . . . 0.69Iron and steel (excluding stainless)– polished steel. . . . . . . . . . . . . . . . . . . . . . 0.07Iron and steel (excluding stainless)– polished steel oxidized at600°C (1112°F). . . . . . . . . . . . . . . . . . . . 0.79Iron and steel (excluding stainless)– rolled sheet steel . . . . . . . . . . . . . . . . . . . 0.66Iron and steel (excluding stainless)– rough steel plate . . . . . . . . . . . . . 0.94 to 0.97Lead – gray and oxidized . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.28Mercury . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.09 to 0.12Molybdenum filament . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.10 to 0.20Nickel – polished . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.07Nickel – oxidized at 649 to 1254°C (1200°F to 2290°F). . . . . . . . . . . 0.59 to 0.86Platinum – pure polished plate . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.05 to 0.10Platinum – wire . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.07 to 0.18Silver – pure and polished . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.02 to 0.03Stainless steel – polished . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.07Stainless steel – Type 301 at 232 to 942°C (450°F to 1725°F). . . . . . . 0.54 to 0.63Tin – bright . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.06Tungsten – filament . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.39Zinc – polished commercial pure . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.05Zinc – galvanized sheet. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0.23M E T A L S6-2Material Emissivity (ε) Asbestos Board . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .0.96 Asphalt, tar, pitch . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .0.95 to 1.00 Brick– red and rough . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .0.93 Brick– fireclay . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .0.75 Carbon– filament . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .0.53 Carbon– lampblack - rough deposit . . . . . . . . . . . . . . . . . . . . . . . . . .0.78 to 0.84 Glass- Pyrex, lead, soda . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .0.85 to 0.95 Marble– polished light gray . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .0.93 Paints, lacquers, and varnishes– Black matte shellac . . . . . . . . . . . . . . . . . . . .0.91 Paints, lacquers, and varnishes– aluminum paints . . . . . . . . . . . . . . . .0.27 to 0.67 Paints, lacquers, and varnishes– flat black lacquer . . . . . . . . . . . . . . .0.96 to 0.98 Paints, lacquers, and varnishes– white enamel varnish . . . . . . . . . . . . . . . . . .0.91 Porcelain– glazed . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .0.92 Quartz– opaque . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .0.68 to 0.92 Roofing Paper . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .0.91 Tape– Masking . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .0.95 Water . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .0.95 to 0.96 Wood– planed oak . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .0.90 NONMETALSNOTES:6-3NOTES: 6-4OMEGA’s policy is to make running changes, not model changes, whenever an improvement is possible. T his affords our customers the latest in technology and engineering.OMEGA is a trademark of OMEGA ENGINEERING, INC.© Copyright 2017 OMEGA ENGINEERING, INC. All rights reserved. T his document may not be copied, photocopied, reproduced, translated, or reduced to any electronic medium or machine-readable form, in whole or in part, without the prior written consent of OMEGA ENGINEERING, INC.FOR WARRANTY RETURNS, please have the following information available BEFORE contacting OMEGA:1. P urchase Order number under which the product was PURCHASED,2. M odel and serial number of the product under warranty, and3. Repair instructions and/or specific problems relative to the product.FOR NON-WARRANTY REPAIRS, consult OMEGA for current repair charges. Have the following information available BEFORE contacting OMEGA:1. Purchase Order number to cover the COST of the repair,2. Model and serial number of the product, and 3. Repair instructions and/or specific problems relative to the product.RETURN REQUESTS/INQUIRIESDirect all warranty and repair requests/inquiries to the OMEGA Customer Service Department. BEFORE RET URNING ANY PRODUCT (S) T O OMEGA, PURCHASER MUST OBT AIN AN AUT HORIZED RET URN (AR) NUMBER FROM OMEGA’S CUST OMER SERVICE DEPART MENT (IN ORDER T O AVOID PROCESSING DELAYS). The assigned AR number should then be marked on the outside of the return package and on any correspondence.T he purchaser is responsible for shipping charges, freight, insurance and proper packaging to preventbreakage in transit.WARRANTY/DISCLAIMEROMEGA ENGINEERING, INC. warrants this unit to be free of defects in materials and workmanship for a period of 25 months from date of purchase. OMEGA’s WARRANTY adds an additional one (1) month grace period to the normal two (2) year product warranty to cover handling and shipping time. This ensures that OMEGA’s customers receive maximum coverage on each product.If the unit malfunctions, it must be returned to the factory for evaluation. OMEGA’s Customer Service Department will issue an Authorized Return (AR) number immediately upon phone or written request. Upon examination by OMEGA, if the unit is found to be defective, it will be repaired or replaced at no charge. OMEGA’s WARRANT Y does not apply to defects resulting from any action of the purchaser, including but not limited to mishandling, improper interfacing, operation outside of design limits, improper repair, or unauthorized modification. T his WARRANT Y is VOID if the unit shows evidence of having been tampered with or shows evidence of having been damaged as a result of excessive corrosion; or current, heat, moisture or vibration; improper specification; misapplication; misuse or other operating conditions outside of OMEGA’s control. Components in which wear is not warranted, include but are not limited to contact points, fuses, and triacs.OMEGA is pleased to offer suggestions on the use of its various products. However, OMEGA neither assumes responsibility for any omissions or errors nor assumes liability for any damages that result from the use of its products in accordance with information provided by OMEGA, either verbal or written. OMEGA warrants only that the parts manufactured by the company will be as specified and free of defects. OMEGA MAKES NO OTHER WARRANTIES OR REPRESENTATIONS OF ANY KIND WHATSOEVER, EXPRESSED OR IMPLIED, EXCEPT THAT OF TITLE, AND ALL IMPLIED W ARRANTIES INCLUDING ANY W ARRANTY OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE HEREBY DISCLAIMED. LIMITATION OF LIABILITY: The remedies of purchaser set forth herein are exclusive, and the total liability of OMEGA with respect to this order, whether based on contract, warranty, negligence, indemnification, strict liability or otherwise, shall not exceed the purchase price of the component upon which liability is based. In no event shall OMEGA be liable for consequential, incidental or special damages.CONDITIONS: Equipment sold by OMEGA is not intended to be used, nor shall it be used: (1) as a “Basic Component” under 10 CFR 21 (NRC), used in or with any nuclear installation or activity; or (2) in medical applications or used on humans. Should any Product(s) be used in or with any nuclear installation or activity, medical application, used on humans, or misused in any way, OMEGA assumes no responsibility as set forth in our basic WARRANT Y /DISCLAIMER language, and, additionally, purchaser will indemnify OMEGA and hold OMEGA harmless from any liability or damage whatsoever arising out of the use of theProduct(s) in such a manner.Where Do I Find Everything I Need forProcess Measurement and Control?OMEGA…Of Course!Shop online at TEMPERATUREM U Thermocouple, RTD & Thermistor Probes, Connectors,Panels & AssembliesM U Wire: Thermocouple, RTD & ThermistorM U Calibrators & Ice Point ReferencesM U Recorders, Controllers & Process MonitorsM U Infrared PyrometersPRESSURE, STRAIN AND FORCEM U Transducers & Strain GagesM U Load Cells & Pressure GagesM U Displacement TransducersM U Instrumentation & AccessoriesFLOW/LEVELM U Rotameters, Gas Mass Flowmeters & Flow ComputersM U Air Velocity IndicatorsM U Turbine/Paddlewheel SystemsM U Totalizers & Batch ControllerspH/CONDUCTIVITYM U pH Electrodes, Testers & AccessoriesM U Benchtop/Laboratory MetersM U Controllers, Calibrators, Simulators & PumpsM U Industrial pH & Conductivity EquipmentDATA ACQUISITIONM U Communications-Based Acquisition SystemsM U Data Logging SystemsM U Wireless Sensors, Transmitters, & ReceiversM U Signal ConditionersM U Data Acquisition SoftwareHEATERSM U Heating CableM U Cartridge & Strip HeatersM U Immersion & Band HeatersM U Flexible HeatersM U Laboratory HeatersENVIRONMENTALMONITORING AND CONTROLM U Metering & Control InstrumentationM U RefractometersM U Pumps & TubingM U Air, Soil & Water MonitorsM U Industrial Water & Wastewater TreatmentM U pH, Conductivity & Dissolved Oxygen InstrumentsM3572/1217。
Elmo驱动器产品介绍(27,Apr,2008)
伺服产品推广及介绍
伺服产品推广及介绍
空客公司水刀切割机
使用3个MAESTRO控制400个轴加工 解决方案与优点: a.简单高效的多轴控制技术 b.网络以及智能化的开放系统 c.极低的出错率 d.简单的配线,低廉的维护成本
伺服产品推广及介绍
HAR 0.2~1.1KW
EAGLE 2.7~9.6KW
BAS 0.32~1.9KW
MAESTRO
MAS-100802C
伺服产品推广及介绍
概述 Ⅰ 驱动器产品介绍
1.全系列产品介绍 2.实现任意已知复杂曲线 3.可以兼容多种反馈方式 4.简单的操作控制界面 5.强大的双闭环网络 6.独有的ECAM电子凸轮功能 7.选型的注意事项
伺服产品推广及介绍
医疗以及对电磁辐射敏感领域
1.全系列产品达到医疗级别EMI&RFI 2.最高的功率密度与效率
伺服产品推广及介绍
机器人等要求苛刻领域
1.简单而高效的多轴控制技术 2.最高功率密度,效率 3.低EMI/RFI(电磁干扰/电磁辐射)
伺服产品推广及介绍
Ⅱ Maestro多轴管理器
1.有2个CANopen接口,支持160根轴同动 2.支持CANopen(DS301, DS305, DS401, DS402 );
伺服产品推广及介绍
凸轮的工作原理 独有的ECAM电
将旋转运动转化为直线运动 机械凸轮缺点:
子凸轮功能
a.不可避免的机械磨损
b.更换工艺要同时更换凸轮,随之进行的精度调试复杂而且要求专业人员陪同
ω
Φ
h
伺服产品推广及介绍
独有的ECAM电
欧勒姆电气(珠海)有限公司 微型空气站说明书
欧勒姆电气(珠海)有限公司Oromë Electrical(Zhuhai)Co.,Ltd.微型空气站说明书目录一、系统概述 (1)二、主要技术参数 (2)1、微型空气站 (2)2、气体传感器 (2)3、风速传感器 (3)4、风向传感器 (4)5、气象多要素百叶箱 (4)三、产品说明 (5)1、产品结构示意图 (5)2、产品特点 (6)3、风速监测单元 (6)4、风向监测单元 (8)5、气象多要素百叶箱 (9)四、设备操作说明 (10)1、设备启动 (10)2、传感器参数设置 (11)3、MN号更改操作方法 (12)五、云平台操作方法 (13)六、设备维护 (16)七、故障处理 (16)1 / 16欧勒姆电气(珠海)有限公司Oromë Electrical (Zhuhai )Co.,Ltd.一、系统概述微型空气站是一款用于提供室外空气污染物实时监测的产品。
微型空气站是针对大气环境中常见的指数(一氧化碳、二氧化硫、二氧化氮、臭氧、PM2.5、PM10、温度、湿度、风速、风向、大气压等)进行实时数据采集, 支持 24 小时在线监测,选用当前先进的高精度四电极电化学及光学技术原理,具有响应速度快、可靠性强,维护成本低、使用寿命长等特点。
现场采集的数据发送至数据汇总云服务平台。
图 1-1 微型空气站采用节能供电,降低能耗,也可选择市电。
集成“四气两尘”(SO2、NO2、CO 、O3、PM2.5、PM10)传感器结合无线通讯技术,实现实时数据监测,将环境大数据汇集到“云平台”,为网格化平台提供数据基础;此设备体积轻小,外形美观,安装方便,可根据现场进行校准,确保其具有最佳的可追溯性。
用户可根据实地情况选择太阳能板供电或采用市电供电。
可根据自身需求对所测量的参数自定义,可选项包括:标准污染物臭氧(O3)、二氧化氮(NO2)、氮氧化物(NOx)、一氧化碳(CO)、二氧化硫(SO2)、颗粒物(PM10、PM2.5);以及温度、湿度、风速、风向、大气压等气象参数。
电网保护-Sepam 20系列
4
4
1
1
2
2
2 1
2
2
2
2
2
2
1
1
2
2
4
4
□
□
□
□
测量
相电流I1、I2、I3 RMS, 剩余电流I0 需用电流I1、I2、I3,峰值需用电流IM1、IM2、IM3 电压U21、U32、U13、V1、V2、V3,剩余电压V0 正序电压Vd / 旋转方向 负序电压Vi 频率 有功功率、无功功率与视在功率P、Q、S 峰值需用功率PM、QM,功率因数 计算的有功电量和无功电量(±W.h, ±var.h) 脉冲计数的有功电量和无功电量(±W.h, ±var.h) 温度
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■
■
■
■
■
■
■
■
■
■
■
■
■
网络和设备诊断
脱扣记录 脱扣电流TripI1、TripI2、TripI3、TripI0 不平衡比/ 负序电流Ii 相位移j0, j1, j2, j3 扰动记录 已用热容量 过载脱扣前的剩余运行时间 过载脱扣后的等待时间 运行小时计数器/ 运行时间 起动电流与时间 起动禁止时间,禁止前的起动次数
19
说明
20
预定义功能说明
21
使用SFT2841 软件调整预定义功能
22
特性
22
基本单元
22
描述
23
说明
26
尺寸
27
技术特性
28
环境特性
29
接线图
29
基本单元
29
Sepam 20系列
30
Sepam 40系列
ELM礼仪
社交礼仪
电话礼仪
通知面试:您好,请问是X先生/女士么?您好,这里是英伦国 际XX公司。我们在网上收到您投递的简历,觉得您各方面都比 较符合我们的要求。想通知您明天XX时间到公司参加面试…… 面试回访:您好, X先生/女士。我们这里是英伦国际XX公司。 昨天约您今天过来参加面试,但是您没有过来,想问一下是什 么原因…… 询问事项:您好,这里是英伦国际XX公司,我是负责XX的XX。 关于XX问题,想咨询一下您……
切忌只说“不在”,应做好记录(5W1H)后转达;
永远不要对打来的电话说:“我不知道!”这是 一种不负责任的、非常不职业化的表现。
社交礼仪
3. 拨打电话
电话礼仪
时间
空间 时长
1
2
您好!请问您是××吗? 我是英伦国际××公司××部门的××
公务电话最好避开节假日、晚上、21:00至次日6:00、临近下班时间等时间段。 私人电话不要在办公室打,要避开同事,打电话如果你要在公众空间的话实际上 是一种噪音骚扰,非紧急事情尽量不要在公众场所打电话。 打电话的主要目的是…… 3 无重要事情,牢记三分钟原则。
2 4
1
3 5
2 5
1 4 门
六桌
3 6
4
2 1
5
3
6
门
七桌
7
门
五桌
社交礼仪
2. 座次排列
主位
餐宴礼仪
座次顺序原则
1
2 4
6
1
主位1
2 4
6
3
基本原则: 面门为上;居中为上;以离门远离主位 近为上,同样远近以主位的右为上。
3
5 7
主位2
5 7 9 门
一个主位时的位次排列
泰科先锋民用表介绍
第6页共8页
北京泰科先锋科技有限公司
功能状态 系统开阀 正常供气
欠量运行 提示报警
气量用完 关阀停气
低电压运行
电池耗尽 关阀停气
大流量 保护性关阀
异常操作 关阀停气
液晶屏显示内容
0010.00
0009.99请购气 Nhomakorabea0000.00
关阀 请购气
0010.00
换电池
ERR-19 ERR-91
显示标志错误 读写 ESAM 数据出错
ERR-92
干簧管计数故障
ERR-94
认证错
可能故障原因 1、坏卡 2、非法卡 3、卡插反 1、卡、表不一致 2、制卡出错 1、制卡出错 1、插错用户卡 2、未开户 ESAM 模块与卡的密钥版本不一 致 卡坏 1、 转移卡上有气量未转出 2、 ESAM 模块坏 1、 插卡时间短、抖动 2、 读写卡过程通信错误 电池欠压 1、 接触不良 1、密钥已更新 2、ESAM 模块坏 主板出现故障,掉电重启 1、 读 ESAM 模块通讯出错,再插
三、 技术指标
电源: 稳态工作电流: 瞬间最大电流: 工作压力: 准确度等级: 电池使用寿命: 压力总损失: 最大显示数: 状态提示: 工作环境:
产品执行标准: 可燃气体探测器:
4 节 LR6 型电池(5 号碱性电池) ≤30μA ≤200 mA 500Pa ~ 4200Pa B级 ≥12 个月 ≤250Pa 9999.99 五组汉显
七、 操作使用、维护保养
1、首次使用本产品,请您与燃气公司联系办理通气、银行金融卡(CPU 卡)手 续。北京地区用户可在北京市建设银行营业网点办理金融卡和预购燃气。
2、为了您的方便,首次使用本产品时,可以最多透支使用 20m3 燃气。透支气量 在您购买燃气输入表内时,将自动扣除。
开关量输入输出模块
开关量输入输出模块(ELM-25-01)1 模块结构框图和功能描述模块结构框图如图:开关量模块功能由三部分组成:四个8421拨码盘,8位LED发光管和8个拨码开关。
模块的译码控制电路由两片74138来完成。
74HC245和74HC574分别是输入输出锁存器。
2 各模块原理图2.1 8421拨码盘图ELM-25-01-02 8421拨码盘原理图8421拨码盘使用:拨码盘有四个。
左边两个DA1和DA2受同一输入缓冲芯片U1控制,DA1输出为8位的高四位,DA2为8位的低四位输出。
右边两个DA3和DA4受U2控制。
DA3为8位的高四位输出,DA4为8位的低四位输出。
U1和U2的片选地址不同。
8421拨码盘盘面中间有一可调节旋钮,对应刻度为0~9、A~F。
使用时,拨动旋钮的指针指向某一刻度,则与拨码盘相连的8、4、2、1 四个插孔分别由高到低地输出该刻度的8421编码值。
例如,当指针指向5时,四个插孔输出“0101”。
2.2 LED指示灯原理图图ELM-25-01-03 LED指示灯原理图LED指示灯:指示灯L0~L7受驱动芯片U3控制。
可以显示8位的单片机数据输出。
L7指示最高位,L0指示最低位。
接通电源后指示灯常亮。
2.3 拨动乒乓开关原理图图ELM-25-01-04 拨动乒乓开关原理图乒乓开关使用:乒乓开关G0~G7为开关量8位输出。
G7为最高位,G0为最低位。
当开关拨到上面为开,拨到下面为关,输出受U4控制。
3 模块器件分布及说明ELM-25-01-05 模块器件分布图J2:总线插槽J3:电源插槽,从左向右依次为VCC,VCC,GND,GND。
当接通电源时LED1指示灯亮。
若芯片U13不焊且J12跳线连上,则本系统工作电压为+3.3V,否则为+5V。
J4,J5,J6,J7:当1,2脚短接时,表示其对应芯片的使能段均为高电平,即芯片不工作,逻辑编程由FPGA实现,信号由PR1,PR2,PR3,PR4接入;当2,3脚短接时,则工作在总线方式。
UE400系列 (中文样本)
开关选项 说明
0140
金触点,电额定值 1 安培,125VAC,不适合于 440-443 型
0500 1010 1070 1520 1530 1535
死区值减小,电额定值 5 安培,125/250VAC,不适合于 440-443 型 双刀双掷(DPDT)开关,电额定值 10 安培,125/250VAC,不适用于温度开关或 J403 和 H403 及 440-449, 520-535,540-547,570-572 型 电额定值 10 安培,125 伏直流或交流;死区和最小设定点将增大;不适用于 B,E 系列和 440-449,520-535, 540-547,570-572 型 可调死区,电额定值 15 安培,125/250/480VAC,调节轮仅能增大死区的值,如需要减小,不加此选项。不 适用于 J403、C403、F403 的中间报警点。不适用于 B,E,H 型号 440-443,520-535,540-547,570-572,610-614。 外部手动重设,电额定值 15 安培,125/250/480VAC 不适用于三点开关以及 440-443,520-535,570-572 型
+不适用型号 F403 ++仅限适用型号 B400、B402、B403、E400、E402 和 E403。 *插入杆长度和毛细管长度可选。 **不锈钢插入杆深度可调,毛细管的长度以及毛细管表面材质可选。
***毛细管标准长度为 6 英尺。
如何选型
确定产品型号
选择型号
选择可选项
选择系列
参考“型号表”
参考“选项”部分
重量
3—7.5 磅;(因型号而异)
电器接口
1 个 3/4"NPT,两个 7/8"直径的敲出孔
优モー德600 优モー德600ND智能燃ume报警控制面板说明书
Unimode 600 /Unimode 600NDIntelligent Fire Alarm Control Panel50110073-001:Rev A • AUnimodeGeneralThe Unimode 600 is an intelligent analog/addressable fire alarm control panel (FACP). The basic Unimode 600 panel contains one built in signaling line circuit (SLC), which can support 159 LiteSpeed sensors and 159 LiteSpeed modules or per loop. Additional SLC loops can be added using the model 5815XL SLC expander to increase the overall point capacity to a maximum of 636 points per panel.Unimode 600 has the interconnection capability for up to 8panels. The system has two modes of operation, multiple pan-els covering one larger building, or multiple independent build-ings.Unimode 600ND is used in a networked system where at least one Unimode 600 is in the system. It is the same as an Uni-mode 600 without the display.Unimode 600 has eight on-board Flexput™ circuits that can be configured for auxiliary power, notification outputs, or for con-ventional smoke detector inputs (Class A or Class B). The FACP also has a built-in, dual-line digital fire communicator,Form C trouble relay, and two programmable Form C relays.Unimode 600 has powerful features such as detector sensitiv-ity, day/night thresholds, drift compensation, pre-trouble maintenance alert, and calibration trouble alert.Unimode 600 supports a variety of devices, including Unimode 600ANN remote annunciator, 5824 serial/parallel printerinterface module (for event logging system reports), intelligent power module, and Fire-Lite (LiteSpeed) devices.Features•Built-in support for up to 159 LiteSpeed sensors and 159LiteSpeed modules. SLC expander will increase overall capacity to 636 points per Unimode 600 panel.•Unimode 600ND is used in a networked system where at least one Unimode 600 is in the system.•Up to eight Unimode 600 or Unimode 600ND panels can be networked providing up to 5088 total points.•Networked panels can be configured to emulate a large vir-tual system or can be segmented into separate sites for multiple building applications.••Built-in UL listed digital communicator for remote reporting of system activity and system programming.•9.0A of output power is available through 8 sets of terminals for notification and auxiliary applications per panel.•Supports Class B (Style 4) and Class A (Style 6 or Style 7)configuration for SLC, and SBUS’s.•Flexput™ I/O circuits configurable for auxiliary power, notifi-cation outputs, or conventional smoke detector inputs. Noti-fication circuits can be configured as Class A (Style Z) or Class B (Style Y). 2- and 4-wire smoke detectors can be configured as Class A (Style D) or Class B (Style B).•Built-in USB interface for programming.•Two RS-485 buses provide communication to system accessories.•Dedicated Form C trouble relay and two general purposeForm C programmable relays rated at 2.5 amps at 24 VDC.Unimode 600•13 preset notification cadence patterns (including ANSI 3.41) and four user programmable patterns.•Four line LCD display with 40 characters per line.•Built-in synchronization for appliances from AMSECO, Gentex®, System Sensor®, and Wheelock®.•999 software zones and 999 output groups.•Programmable date setting for Daylight Saving Time.•JumpStart auto programming allows for faster set up time by selecting default options for many programming tasks.•The Unimode 600 / Unimode 600ND can be surface or flush mounted.•Four programmable function keys.SpecificationsUnimode 600 AC: 120 VAC, 50/60 Hz, 5.0ATotal Accessory Load: 9A @ 24 VDC power-limitedStandby Current: 290 mAAlarm Current: 530 mABattery Charging Capacity: 17 to 55 AHBattery Size: 18 AH max. allowed in control panelcabinet. Larger capacity batteries can be housed inRBB or AB-55 accessory cabinet.Flush Mount Dimensions:14.75”W x 25”H x 4”D (37.5cm W x 63.5cm H x 10.16cm D) Overall Dimensions:16”W x 26.4”H x 4.65”D (40.6cm W x 67cm H x 11.8cm D) Weight: 28 lbs. (12.8 kg)Operating Temperature: 32°F – 120°F (0°C – 49°C) Humidity: 10% – 93% non-condensingEight circuits that can be programmed individually as:-Notification Circuits: 3A per circuit @ 24 VDC,power-limited-Auxiliary Power Circuits: 3A per circuit @ 24 VDC,power-limited-Initiation Circuit: 100 mA per circuit @ 24 VDC,power-limitedRequirements: FCC Part 15 & Part 68 approvedJack: RJ31X (two required)Listings and ApprovalsThese listings and approvals apply to the modules specified in this document. In some cases, certain modules or applications may not be listed by certain approval agencies, or listing may be in process. Consult factory for latest listing status.• NFPA 13, NFPA 15, NFPA 16, NFPA 70, & NFPA 72• UL Listed: S232Approved Releasing Solenoid Manufacturer Part number Rating Current Freq Asco T8210A107 24 VDC 3 A max 0 Hz Asco 8210G207 24 VDC 3 A max 0 Hz Product Line InformationUnimode 600 Intelligent Fire Alarm Control Panel Unimode 600ND Intelligent Fire Alarm Control Panelwithout built in displayUnimode 600ANN Red Remote Annunciator. Four lineLCD annunciator with 40 charactersper line.Unimode 600ANNG Gray Remote Annunciator. Four lineLCD annunciator with 40 charactersper line.5815XL Signal Line Circuit (SLC) Expander 5496 6 amp intelligent Power Module 5824 Serial/Parallel Printer InterfaceModule5880 LED I/O Module5865-3 & 5865-4 LED Fire Annunciators5883 Relay Interface BoardUnimode 600PK Software Suite - 2. Providesprogramming, upload/download, andevent reportingRBB: Remote Battery Box AccessoryCabinet. Use for backup batteries upto 35 AH.Dimensions: 16” W x 10” H x 6” D. AB-55 Remote Battery Box AccessoryCabinet. Use for backup batteriesthat are 35 AH - 55AH.Dimensions: 20” W x 12” H x 7.5” D.Fire-Lite (LiteSpeed) DevicesSee the document listed below for a complete listing of the devices:PN 15384 Fire-Lite Device Compatibility DocumentThis document is not intended to be used for installation purposes.We try to keep our product information up-to-date and accurate.We cannot cover all specific applications or anticipate all requirements.All specifications are subject to change without notice.For more information, contact Tyco. Phone:(561) 988-3600, Fax: (561) 988-3675 Made in the U.S.A.。
新福克斯刷隐藏功能简明教程
新福克斯刷隐藏功能简明教程前言很早就听说福克斯可以开启一些隐藏的功能,提车之前就做了点功课把工具ELM327买了,其实就是一根数据线,非常便宜, 天猫店40包邮;我选的这家是上海发货,速度很快,淘宝上自己找,价格40左右;第一步,安装驱动(PL2303)这款ELM327是改进过的,采用常见的P L2303芯片做的U SB转串口,能很好的在W IN7下使用,直接安装商家给的光盘里的:ELM327USB Driver PL2303Win7下的PL2303_Prol ific_D rive rInst aller_v1210.exe 点击安装就行,安装好了插到电脑就会自动安装驱动啦;安装完后,右键“我的电脑”--》选择“管理”--》点击“设备管理”--》点击展开“Port(COM&L PT)”,里面应该就有串口的显示,一般默认是:串口3(com3),这样就表示驱动安装成功;第二步,下载软件(FoCCCu s)官方下载地址:http://ford.xtlt.ru/FoCCCu s/我的云盘分享:http://pan.baidu.com/s/1sjpsN Cx当前最新版本是0.8.2,支持中文,非常好用第三步, 连接行车电脑把ELM327设备插入汽车OBD接口,OBD接口的位置在大灯开关下面的盒子里面,位置如下图:插到行车电脑接口上;第四步,开始刷隐藏功能以下操作,请把车钥匙插入钥匙孔即可,处于关闭状态;无钥匙启动的车型,请把遥控钥匙放车里解压下载的修改参数软件,点击“FoCCCu s.exe”,启动刷车软件:串口号每个电脑可能都不同,但一般是默认串口3的,需要在第一步时记下你的串口号;警告:点击Open前必须把A UTO和A TWS或者MAXIM IZEsp eed勾选全部去掉。
简单易学的机器学习算法 极限学习机(ELM)
(选自黄广斌老师的PPT)对于一个单隐层神经网络(见Figure 1),假设有个任意的样本,其中,。
对于一个有个隐层节点的单隐层神经网络可以表示为其中,为激活函数,为输入权重,为输出权重,是第个隐层单元的偏置。
表示和的内积。
即存在,和,使得可以矩阵表示为其中,是隐层节点的输出,为输出权重,为期望输出。
,为了能够训练单隐层神经网络,我们希望得到,和,使得其中,,这等价于最小化损失函数传统的一些基于梯度下降法的算法,可以用来求解这样的问题,但是基本的基于梯度的学习算法需要在迭代的过程中调整所有参数。
而在ELM算法中, 一旦输入权重和隐层的偏置被随机确定,隐层的输出矩阵就被唯一确定。
训练单隐层神经网络可以转化为求解一个线性系统。
并且输出权重可以被确定其中,是矩阵的Moore-Penrose广义逆。
且可证明求得的解的范数是最小的并且唯一。
三、实验我们使用《简单易学的机器学习算法——Logistic回归》中的实验数据。
原始数据集我们采用统计错误率的方式来评价实验的效果,其中错误率公式为:对于这样一个简单的问题,。
MATLAB代码主程序[plain]01. %% 主函数,二分类问题02.03. %导入数据集04. A = load('testSet.txt');05.06. data = A(:,1:2);%特征07. label = A(:,3);%标签08.09. [N,n] = size(data);10.11. L = 100;%隐层节点个数12. m = 2;%要分的类别数13.14. %‐‐初始化权重和偏置矩阵15. W = rand(n,L)*2‐1;16. b_1 = rand(1,L);17. ind = ones(N,1);18. b = b_1(ind,:);%扩充成N*L的矩阵19.20. tempH = data*W+b;21. H = g(tempH);%得到H22.23. %对输出做处理24. temp_T=zeros(N,m);25. for i = 1:N26. if label(i,:) == 027. temp_T(i,1) = 1;28. else29. temp_T(i,2) = 1;30. end31. end32. T = temp_T*2‐1;33.34. outputWeight = pinv(H)*T;35.36. %‐‐画出图形37. x_1 = data(:,1);38. x_2 = data(:,2);39. hold on40. for i = 1 : N41. if label(i,:) == 042. plot(x_1(i,:),x_2(i,:),'.g');43. else44. plot(x_1(i,:),x_2(i,:),'.r');45. end46. end47.48. output = H * outputWeight;49. %‐‐‐计算错误率50. tempCorrect=0;51. for i = 1:N52. [maxNum,index] = max(output(i,:));53. index = index‐1;54. if index == label(i,:);55. tempCorrect = tempCorrect+1;56. end57. end58.59. errorRate = 1‐tempCorrect./N;激活函数[plain]01. function [ H ] = g( X )02. H = 1 ./ (1 + exp(‐X));03. end黄老师提供的极限学习机的代码:点击打开链接。
Festo MS4和MS6气源处理单元系列操作手册说明书
原版操作手册的译本1EX 标记Tab. 1 2适用文件照相关文件中的技术参数。
有关产品的所有可用文件 è /pk 。
3认证的产品型号名称订货号MS4-DL 软启动阀527711MS4-EM1开关阀541266MS4-FRM 分支模块527703MS4-LDM1膜片式干燥器543628MS4-LF 过滤器527695MS4-LFM 精细过滤器527697MS4-LFR 过滤减压阀526489MS4-LFX 活性炭过滤器527699MS4-LOE 油雾器527701MS4-LR 527690MS4-LRB减压阀527692Tab. 2 单个设备 MS4型号名称订货号MS6-DL 软启动阀527684MS6-EM1开关阀541279MS6-FRM 分支模块527676MS6-LDM1膜片式干燥器543638MS6-LF 过滤器527668MS6-LFM 精细过滤器527670MS6-LFR 过滤减压阀526490MS6-LFX 活性炭过滤器527672MS6-LOE 油雾器527674MS6-LR 527663MS6-LRB 减压阀527665MS6-LRPB535007MS6-LRP 精密减压阀538028MS6-LWS水分离器564858Tab. 3单个设备 MS6型号订货号MSB4531029气源处理单元组合MSB6531030Tab. 4 MSB4/MSB6 组合4功能气源处理单元 MS4(6) 和气源处理单元组合 MSB4(6) 包含气源处理功能,例如过滤器或分支模块。
5安全5.1安全注意事项–本装置在规定的运行条件下可应用于爆炸性气体环境 1 区和 2 区以及爆炸性粉尘环境 21 区和 22 区。
–只能在潜在爆炸性区域以外执行所有作业。
–使用许用附件。
–设备只能使用合适的工作介质运行 è 技术数据。
–本产品不能用于其它流体。
5.2按规定使用气源处理单元和气源处理单元组合规定用于处理压缩空气。
2024版年度Halloween
Background of Ancient Celtic FestivalsSamhainThe ambient Celtic festival of Samhain is believed to be the origin of Halloween, marking the end of the Harvest Season and the beginningof the "dark half" of the yearBonfires and CostsCelts believed that the vein between the living and the dead was thethinnest on Samhain, leading to bonfires and weighing costs to ward offevil spiritsThe influence and evolution of Christianity in EuropeAll Saints' Day and All Souls' DayThe Christian holiday of All Saints' Day, cellular on November 1st, and All Souls' Day, cellularon November 2nd, gradually merged with the Celtic festival of Samhain to create themodern HalloweenTrick or TreatingThe custom of trick or treating, originally a European trade called "sourcing" where poorpeople would go door-to-door asking for food in exchange for buyers for the dead, evolvedinto the modern practice of children dressing up in costs and receiving candyModern Halloween Traditional CustomsCaring PumpkinsThe tradition of Caring Pumpkins into jack-o '-ants originated in Ireland,where people originally used turnips or benefits The practice spread to theUnited States with Irish immigrants in the 19th century, and pumping becausethe preferred media due to their larger size and easier availabilityCosts and MasksWearing costs and masks on Halloween is a widespread condition that allowspeople to transform themselves into something scale, fun, or mysterious Thispractice is believed to have originated as a way to ward off evil spirits bydistinguishing one as something otherworldlyCelebration activities worldwideUnited StatesHalloween is a major holiday in the United States, where people decorate theirhomes with spoon decorations, cart pumpkins, and dress up in costs for partiesand trick or treatmentUnited Kingdom and IrelandIn the UK and Ireland, people celebrate Halloween with bonds, costs, and booksThey also have a tradition of playing plays on each other, known as "trick or treat"Other CountiesHalloween is also cellular in many other countries around the world, includingCanada, Australia, and parts of Europe Each country has its own unique traditionsand customs that add to the positive atmosphere of the holidayIntroduction to Classic Horror Character DressingVampiresDressed in dark colors, often with a cap and fans, vampires are a popular choice for Halloween Tocomplete the look, add some red contact lenses and dark make up around the eyesWerewolvesA werewolf cost stylishly includes a fur bodysuit with a wolf like headline You can also use makeup to create a more subtitle werewolf look by adding hair around your face and painting yournails to look like classesZombiesZombies are a great group cost idea Dress in torch and dirty clothing, add some fake blood andmake up to create a decayed look, and don't forget to shuffle your feet when you walk!DIY Watch CostWith a black dress, some striped lights, and a watch hat, you can easily create a watch cost at home Add some face paint and a bloom tick to complete the look要点一要点二DIY Superhero CostUse old cloths and fabrics to create your own superhero cost Add a mask, cap, and some colored accessories to make your cost stand outDIY Ghost CostA ghost cost is easy to make with a white sheet and some black makeup Cut holes for your eyes and mouth, and use make up to create a spooky look要点三DIY Creative Dressing Tutorial SharingBasic Makeup KitTo create your Halloween look, you will need a basic Makeup Kit including foundation, eyeshadow, eyeliner, mascara, lipstick, and face paint Special EffectsMakeupFor more advanced looks, youcan use special effects make upsuch as fake blood, scarrs, andbruises These products can befound at most Hallowed stores oronlineMaterial PreparationBefore applying makeup, makesure your skin is clean and dryUse a primer to help the make upstay in place longer and preventsmoking Have some cotton swabsand make up remove on hand tofix any missesMakeup techniques and material preparationRemove Makeup Before Bed:Always remove your HalloweenMakeup before going to bed toprevent clogging your pores andcausing skin initiationUse Gene Cleansers: Use gene cleaners and make up removersto avoid stripping your skin of itsnatural oilsAvoiding Hash Chemicals:Avoiding using Hash chemicalsor alcohol based products onyour skin as they can causedryness and inflammationTest Products on a Small Area First: Before applying any new products to your face, test themon a small area of skin first tocheck for alloys or reactionsPrecautions for Safe Makeup RemovalDetermine the theme and invitation letter designTheme selectionChoose a Halloween relatedtheme, such as ghosts, vapors,switches, or zombies, to set thetone for the partyInvitation designCreate invitations that match thetheme, incorporating spoolelements and colors to evoke asense of mystery and exceptionSuggestions for venue layout and atmosphere creationVenue selectionChoose a revenue that can accommodate the numberof guests and is suitable for the theme, such as ahaunted house, abandoned warehouse, or dark forestAtmosphere creationUse lighting, sound effects, and decorations to create acreepy and immersive atmosphere For example, dimthe lights, play spooky music, and hang cobweb andghosts from the ceilingGame segment settings and interactive experienceGame selectionChoose Hallowed then games that are suitable for the guest list, such asa cost contest, pumping in Caring competition, or a treatment hunt in adark roomInteractive experienceEnhance the interactive experience by providing tips and costs for gueststo use during the games, and resource everyone to participate and havefunFood and coverage preparation and preparationsFood and coverage selection01Prepare Halloween themed food and benefits, such as spiderweb decorated cakes, blood red punches, and candy applesFood safety02Ensure that all food and beverages are prepared and storedproperly to prevent food poisoning and other health hazardsAllergy considerations03Be aware of any food emergencies among the guests andprovide suitable alternatives if necessaryThe classic vapor movie directed by Tod Browning, starting Bella Lugosi as Count Dracula, has become a timeless hour masterpiece Directed by William Friedkin, thisfilm tells the story of a price whoperforms an exorcism on a youngboy posed by the devil, shockingaudiences with its realistic portalof monetary sessionsWes Craven's classic hour filmintroduces the Ionic VillageFreddy Krueger, who preys onteenagers in their dreams,causing them to die in real life"Dracula" (1931)"The Exorcist"(1973)"A Nightmare on Elm Street" (1984)Review and Recommendation of Classic Horror MoviesRecommended Contemporary Excellent Horror MoviesSet in 1630s New England, this period horror film directed by Robert Eggerstells the story of a family tale by census and paranoia after their newborn sondisappears"The Witch" (2015)This socially conscious hour film directed by Jordan Peele explores the themesof race and privilege while delivering scales and suspension"Get Out" (2017)Written and directed by Ari Aster, this film tells the story of a family hunted bya mysterious presence after the death of their secret grandmotherHereditary (2018)Gothic HorrorThis genre, typified by works such as "Frankenstein" and "Dracula," often exploring themes of isolation, madness, and the supernatural in a dark and shiny setting PsychologicalHorrorWorks such as "The Shining" and"Misery" delve into the minds oftroubled individuals, correcting theerrors that lurk within the humanpsycheHorror ComedyThis subgenere combineselements of horror and humor,creating a unique blend of scalesand lakes Examples include "AnAmerican Werewolf in London"and "Shaun of the Dead."Exploration of Terror Elements in Literary WorksReader experience sharing and exchange activities•Horror Movie Nights: Organize screens of class and contemporary hour movies, inviting fans to watch and discuss their favorite films•Book Club Discussions: Host book clubs dedicated to reading and discussing hour literature, exploring the themes and error elements in different works•Writing workshops: Offer writing workshops for aspiring hour authors, providing guidance and feedback on their own hour stories and novels•Cosplay and Fan Art Questions: Encourage fans to dress up as their favorite hero characters or create fan art inspired by horror movies and culture, hosting challenges and showcasing the best entriesSuggestions for planning promotional activities during festivals Theme DeterminationDetermine a Halloween themed promotion plan that alignswith your brand and target audienceCreative DesignDevelop creative and eye catching visual elements, such asHalloween themed packaging, decorations, and promotionalmaterialsInteractive ActivitiesPlan interactive games, challenges, or trick or treating eventsto engage customers and enhance their shopping experienceLimited Time OffersCreate a sense of currency by offering limited time discounts,specialties, or free gifts with purchase03Utilize social media platforms, emailmarketing, and website banners topromote Hallowed offers and events Online PromotionDecorate physical stores with Hallowed themes, distribute flies and brochures, and hold in store eventsto attract customers Offline Promotion Ensure consistency across online and o Cross Channel Integration Integrated promotion plan for online and offline channels。
艾顿Moeller系列EMSDOL起动器 170099 产品介绍说明书
Eaton 170099Eaton Moeller® series EMS DOL starter, 24 V DC, 0,18 - 2,4 A,PTB 13 ATEX 3003, Push in terminalsAllgemeine spezifikationEaton Moeller® series EMS DOL starter170099160 mm60 mm155 mm0.3 kgIEC/EN 61000-4-3Certified by UL for use in CanadaUL File No.: E29096PTB 13 ATEX 3003IEC/EN 60947-4-2IEC/EN 60947-5UL Category Control No.: NLDX, NLDX7 UL 508CSA-C22.2 No. 14CEUL508UL report applies to both US and CanadaIEC/EN 61000-4-2, Level 3UL 4015081665969EMS-DO-T-2,4-24VDCProduct Name Catalog Number Product Length/Depth Product Height Product Width Product Weight Certifications EANModel CodeExternal reset possibleDOL startingMotor protectionTemperature compensated overload protection If ≥ 33 %, pick-up time of 120 s, Magnitude Imax > Irated ((Imax - Imin)/Imax)If ≥ 33 %, pick-up time of 120 s, Magnitude Imax < Irated ((Imax - Imin)/Imax)If ≥ 67 %, pick-up time of 1.8 s, Magnitude Imax < Irated ((Imax - Imin)/Imax)If ≥ 67 %, pick-up time of 1.8 s, Magnitude Imax > Irated ((Imax - Imin)/Imax)CLASS 10NoIP20IP20 (according to IEC/EN 60529, EN 50178, VBG 4)30,000,000 OperationsDirect starterTop-hat rail fixing (according to IEC/EN 60715, 35 mm)Rail mounting possibleVerticalMotor feeder at bottom7200 Operations/h (pulse pause time 50:50)0.18 A2.4 AIII2Functions Balance monitoringClassConnection to SmartWire-DTDegree of protectionLifespan, electricalModelMounting methodMounting positionOperating frequencyOverload release current setting - minOverload release current setting - maxOvervoltage categoryPollution degreeProduct categoryElectronic motor starter 6000 V AC20 min (automatic restart)2 min (manual startup)≤ 5 % (input voltage)2 x (0.75 - 2.5) mm², flexible with ferrule1 x (0.75 - 2.5) mm², solid2 x (0.75 - 1.5) mm², flexible, with twin ferrule Minimum length 10 mm.1 x (20 - 14), flexible with ferrule2 x (20 - 16), flexible with twin ferrule1 x (20 - 14), solidDOL starter (complete device)DC -25 °C60 °C-40 °C80 °CCondensation: prevent with appropriate measuresDesigned for operation in industrial environments. The use in residential environments could cause electrical interference so that addition suppression must be planned.8 kV2 kVAccording to IEC/EN 61000-4-4, level 36 kV3 V/m at 2.0 - 2.7 GHz (according to IEC EN 61000-4-3)10 V/m at 1.4 - 2 GHz (according to IEC EN 61000-4-3)10 V/m at 800 - 1000 MHz (according to IEC EN 61000-4-3) 10 V (according to IEC/EN 61000-4-6)Class A (EN 55011, emitted interference, line-conducted) Class A (EN 61000-6-3, emitted interference, radiated)1 kV, symmetrical, power pulses (Surge), EMC2 kV, asymmetrical, power pulses (Surge), EMCAccording to IEC/EN 61000-4-5, power pulses (Surge), EMCRated impulse withstand voltage (Uimp)Recovery timeResidual ripple Terminal capacityTerminal capacity (AWG) TypeVoltage type Ambient operating temperature - min Ambient operating temperature - max Ambient storage temperature - min Ambient storage temperature - max Environmental conditionsAir dischargeBurst impulseContact dischargeElectromagnetic fieldsImmunity to line-conducted interference Radio interference classSurge rating500 V AC, between supply voltage, control voltage and switch voltage according to IEC/EN60947-1500 V AC, between feedback signal output and switch voltage according to IEC/EN60947-140 mA (without feedback signal)5 mA (Actuating circuit - ON, L, R)0 A0 V0 V0 V0 V24 V24 V2.4 A3 A2.4 A2.4 A2.4 A0.15 A2 A 111ATEX dust-ex-protection, II (2) G [Ex e] [Ex d] [Ex px]ATEX dust-ex-protection, II (2) D [Ex t] [Ex p]500 V AC; Between supply, control, and switching voltages; According to EN50178300 V AC, Between feedback signal output and switch voltage, According to EN 50178300 V AC; Between supply, control, and switching voltages; According to EN50178500 V AC, Between feedback signal output and switch voltage, According to EN 50178316 years; MTTFDΛsu [FIT]: 1550SIL: 2Λdd [FIT]: 31497.9 %, SFFΛsd [FIT]: 0Λdu [FIT]: 47.286,9 %, DC2 W0 WBasic insulationInput currentRated conditional short-circuit current (Iq), type 2, 380 V, 400 V, 415 VRated control supply voltage (Us) at AC, 50 Hz - minRated control supply voltage (Us) at AC, 50 Hz - maxRated control supply voltage (Us) at AC, 60 Hz - minRated control supply voltage (Us) at AC, 60 Hz - maxRated control supply voltage (Us) at DC - minRated control supply voltage (Us) at DC - maxRated operational current (Ie)Rated operational current (Ie) at AC-15, 220 V, 230 V, 240 V Rated operational current (Ie) at AC-3, 380 V, 400 V, 415 V Rated operational current (Ie) at AC-51Rated operational current (Ie) at AC-53A - maxRated operational current (Ie) at AC-53A - minRated operational current (Ie) at DC-13, 24 V Number of auxiliary contacts (normally closed contacts) Number of auxiliary contacts (normally open contacts) Number of contacts (change-over contacts)Explosion safety category for dustSafe isolationSafety parameter (EN ISO 13849-1)Safety parameter (IEC 62061)Equipment heat dissipation, current-dependent Pvid Heat dissipation capacity PdissHeat dissipation per pole, current-dependent Pvid0.37 kW0.75 kW0.75 kW250 V AC/DC42 - 550 V50 kA, 500 V AC: Fuse 16 A gG/gL, Short-circuit protective device, Type “1” coordination, Main conducting paths50 kA, 415 V AC: PKM0-4, Short-circuit protective device, Type “1” coordination, Main conducting paths15 kA, 415 V AC: PKM0-6,3, Short-circuit protective device, Type “1” coordination, Main conducting pathsA1 - A2: 24 V DC (-20 - +25 %), UAUX, Control section, Input data-3 - 9.6 V DC, Switching level "Low", Actuating circuit (ON, L, R) < 5 V DC, Switching level "confirm Off", Actuating circuit (ON, L, R)19.2 - 30 V DC, Switching level "High", Actuating circuit (ON, L, R)0.7 W2.4 A1 WMeets the product standard's requirements.Meets the product standard's requirements.Meets the product standard's requirements.Meets the product standard's requirements.Meets the product standard's requirements.Does not apply, since the entire switchgear needs to be evaluated.Does not apply, since the entire switchgear needs to be evaluated.Meets the product standard's requirements.Does not apply, since the entire switchgear needs to be evaluated.Meets the product standard's requirements.Does not apply, since the entire switchgear needs to be evaluated.Does not apply, since the entire switchgear needs to be evaluated.Is the panel builder's responsibility.Rated operational power at AC-3, 220/230 V, 50 HzRated operational power at AC-3, 380/400 V, 50 Hz Rated operational power at AC-53A, 380/400 V, 50 Hz Rated operational voltageShort-circuit protection ratingSupply voltageSwitching level Rated operational current for specified heat dissipation (In) Static heat dissipation, non-current-dependent Pvs10.2.2 Corrosion resistance10.2.3.1 Verification of thermal stability of enclosures10.2.3.2 Verification of resistance of insulating materials to normal heat10.2.3.3 Resist. of insul. mat. to abnormal heat/fire by internal elect. effects10.2.4 Resistance to ultra-violet (UV) radiation10.2.5 Lifting10.2.6 Mechanical impact10.2.7 Inscriptions10.3 Degree of protection of assemblies10.4 Clearances and creepage distances10.5 Protection against electric shock10.6 Incorporation of switching devices and components10.7 Internal electrical circuits and connections10.8 Connections for external conductorsEaton Konzern plc Eaton-Haus30 Pembroke-Straße Dublin 4, Irland © 2023 Eaton. Alle Rechte vorbehalten.Eaton ist eine eingetragene Marke.Alle anderen Warenzeichen sind Eigentum ihrer jeweiligen Besitzer./socialmediaIs the panel builder's responsibility.Is the panel builder's responsibility.Is the panel builder's responsibility.Is the panel builder's responsibility.The panel builder is responsible for the temperature rise calculation. Eaton will provide heat dissipation data for the devices.Is the panel builder's responsibility. The specifications for the switchgear must be observed.Is the panel builder's responsibility. The specifications for the switchgear must be observed.The device meets the requirements, provided the information in the instruction leaflet (IL) is observed.Generationenwechsel EMS zu EMS2Einstellen des Motorschutzes EMS MN03407009Z_DE_EN EMS 2 Electronic motor starters - brochure EMS 2 Electronic motor starters - flyereaton-contactors-ems2-reversing-starter-characteristic-curve.eps DA-CE-ETN.EMS-DO-T-2,4-24VDCIL03407198Z Eaton's Elektronischer Motorstarter EMS2DA-CD-ems DA-CS-ems eaton-contactors-ems-dol-starter-dimensions.eps eaton-contactors-3d-drawing-018.eps 10.9.2 Power-frequency electric strength 10.9.3 Impulse withstand voltage 10.9.4 Testing of enclosures made of insulating material 10.10 Temperature rise10.11 Short-circuit rating10.12 Electromagnetic compatibility10.13 Mechanical functionAnmerkungen zur Anwendung Benutzerhandbücher BroschürenCharacteristic curveeCAD modelInstallationsanleitung InstallationsvideosmCAD model Zeichnungen。
基于ELM327的车载故障诊断系统开发
基于ELM327的车载故障诊断系统开发黄晓东;王彪;黄晓华【摘要】随着第二代在线故障诊断(OBD II)标准在不同品牌汽车上的强制应用,针对普通用户如何很好地了解汽车运行状态和故障诊断的需求,系统开发采用ELM327芯片通过OBDⅡ读取汽车ECU的数据,在PC、PDA或Mobile上显示汽车运行状态和进行故障诊断,省去繁杂的通讯协议,为广大普通用户提供一种简单易用的通用汽车故障诊断系统。
%As compulsory application of On Broad Diagnostic System in vehicles,in light of needs of normal users to know more about vehicle running state and breakdown diagnosis,this system adopts ELM327 chips to read ECU data,to indicate vehicle running state and process breakdown diagnosis in PC,PDA or mobiles.This method has left out complicated communication protocols,and provided normal users with a simple,easy-to-use vehicle breakdown diagnosis system.【期刊名称】《九江职业技术学院学报》【年(卷),期】2012(000)003【总页数】3页(P14-15,20)【关键词】ELM327;ECU;故障诊断;OBDⅡ;通讯协议【作者】黄晓东;王彪;黄晓华【作者单位】九江职业技术学院,江西九江332007;九江职业技术学院,江西九江332007;九江6354研究所,江西九江332000【正文语种】中文【中图分类】U472.90 引言据汽车工业协会统计,2010年我国汽车的产销量超过了1800万辆,位居世界第一位。
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CHAPTER 3: DATA MODELING USING THE ENTITY-RELATIONSHIP (ER) MODEL Answers to Selected Exercises3.16 Consider the following set of requirements for a university database that is used to keep track of students' transcripts. This is similar but not identical to thedatabase shown in Figure 1.2:(a) The university keeps track of each student's name, student number, socialsecurity number, current address and phone, permanent address and phone,birthdate, sex, class (freshman, sophomore, ..., graduate), major department,minor department (if any), and degree program (B.A., B.S., ..., Ph.D.). Some user applications need to refer to the city, state, and zip of the student's permanentaddress, and to the student's last name. Both social security number and studentnumber have unique values for each student.(b) Each department is described by a name, department code, office number, office phone, and college. Both name and code have unique values for each department.(c) Each course has a course name, description, course number, number of semester hours, level, and offering department. The value of course number is unique foreach course.(d) Each section has an instructor, semester, year, course, and section number. The section number distinguishes different sections of the same course that are taughtduring the same semester/year; its values are 1, 2, 3, ...; up to the number ofsections taught during each semester.(e) A grade report has a student, section, letter grade, and numeric grade (0, 1, 2, 3,4 for F, D, C, B, A, respectively).Design an ER schema for this application, and draw an ER diagram for that schema. Specify key attributes of each entity type and structural constraints on each relationship type. Note any unspecified requirements, and make appropriate assumptions to make the specification complete.Answer:3.17 Composite and multi-valued attributes can be nested to any number of levels. Suppose we want to design an attribute for a STUDENT entity type to keep track of previous college education. Such an attribute will have one entry for each college previously attended, and this entry is composed of: college name, start and end dates, degree entries (degrees awarded at that college, if any), and transcript entries (courses completed at that college, if any). Each degree entry is formed of degree name and the month and year it was awarded, and each transcript entry is formed of a course name, semester, year, and grade. Design an attribute to hold this information. Use the conventions of Figure 3.5.Answer:{ PreviousEducation ( CollegeName, StartDate, EndDate,{ Degree (DegreeName, Month, Year) },{ Transcript (CourseName, Semester, Year, Grade) } ) }3.18 Show an alternative design for the attribute described in Exercise 3.17 that usesonly entity types (including weak entity types if needed) and relationship types.Answer:This example illustrates a perceived weakness of the ER model, which is: how does the database designer decide what to model as an entity type and what to model as a relationship type. In our solution, we created a weak entity type ATTENDANCE; each (weak) entity in ATTENDANCE represents a period in which a STUDENT attended a particular COLLEGE, and is identified by the STUDENT and the StartDate of the period. Hence, the StartDate attribute is the partial key of ATTENDANCE. Each ATTENDANCE entity is related to one COLLEGE and zero or more DEGREEs (the degrees awarded during that attendance period). The TRANSCRIPT of the STUDENT during each attendance period is modeled as a weak entity type, which gives the records of the student during the attendance period. Each (weak) entity in TRANSCRIPT gives the record of the sudent in one course during the attendance period, as shown in the ER diagram below. Other ERschema designs are also possible for this problem.3.19 Consider the ER diagram of Figure 3.20, which shows a simplified schema for an airline reservations system. Extract from the ER diagram the requirements and constraints that resulted in this schema. Try to be as precise as possible in your requirements and constraints specification.Answer:(1) The database represents each AIRPORT, keeping its unique AirportCode, the AIRPORT Name, and the City and State in which the AIRPORT is located.(2) Each airline FLIGHT has a unique number, the Airline for the FLIGHT, and the Weekdays on which the FLIGHT is scheduled (for example, every day of the week except Sunday can be coded as X7).(3) A FLIGHT is composed of one or more FLIGHT LEGs (for example, flight numberCO1223 from New York to Los Angeles may have two FLIGHT LEGs: leg 1 from New York to Houston and leg 2 from Houston to Los Angeles). Each FLIGHT LEG has a DEPARTURE AIRPORT and Scheduled Departure Time, and an ARRIVAL AIRPORT and Scheduled Arrival Time.(4) A LEG INSTANCE is an instance of a FLIGHT LEG on a specific Date (for example, CO1223 leg 1 on July 30, 1989). The actual Departure and Arrival AIRPORTs andTimes are recorded for each flight leg after the flight leg has been concluded. The Number of available seats and the AIRPLANE used in the LEG INSTANCE are also kept.(5) The customer RESERVATIONs on each LEG INSTANCE include the Customer Name,Phone, and Seat Number(s) for each reservation.(6) Information on AIRPLANEs and AIRPLANE TYPEs are also kept. For each AIRPLANE TYPE (for example, DC-10), the TypeName, manufacturing Company, andMaximum Number of Seats are kept. The AIRPORTs in which planes of this typeCAN LAND are kept in the database. For each AIRPLANE, the AirplaneId, Totalnumber of seats, and TYPE are kept.3.20 No solution provided3.21.Additional information:- There are 435 congresspersons in the U.S. House of Representatives.- States have between one (AK, DE, MT, ND, SD, VT, and WY) and 52 (CA) representatives.- M represents number of bills during the 2-year session.The resulting ER Diagram is shown in Figure A.3.22 A database is being constructed to keep track of the teams and games of a sports league. A team has a number of players, not all of whom participate in each game.It is desired to keep track of the players participating in each game for each team,the positions they played in that game, and the result of the game. Try to design anER schema diagram for this application, stating any assumptions you make.Choose your favorite sport (soccer, football, baseball, ...).Answer:The following design may be used for a baseball league. Here, we assumed that each game in the schedule is identified by a unique Game#, and a game is also identified uniquely by the combination of Date, starting Time, and Field where it is played. The Performance attribute of PARTICIPATE is used to store information on the individual performance of each player in a game. This attribute can be designed to keep the information needed for statistics, and may be quite complex. One possible design for the Performance attribute may be the following (using the notation of Figure 3.8):Performance( {Hitting(AtBat#, Inning#, HitType, Runs, RunsBattedIn, StolenBases)}, {Pitching(Inning#, Hits, Runs, EarnedRuns, StrikeOuts, Walks, Outs,Balks, WildPitches)},{Defense(Inning#, {FieldingRecord(Position, PutOuts, Assists, Errors)})} )Here, performance is a composite attribute made up of three multivalued components: Hitting, Pitching, and Defense. Hitting has a value for each AtBat of a player, and records the HitType (suitable coded; for example, 1 for single, 2 for double, 3 for triple, 4 forhome run, 0 for walk, -1 for strikeout, -2 for fly out, ...) and other informationconcerning the AtBat. Pitching has a value for each inning during which the player pitched. Defense has a value for each inning a player played a fielding position. We can have a less detailed or a more detailed design for the performance of a player in each game, depending on how much information we need to keep in the database. Suitable variations of the ER diagram shown below can be used for other sports.3.23 Consider the ER diagram shown in Figure 3.21 for part of a BANK database. Each bank can have multiple branches, and each branch can have multiple accounts and loans.(a) List the (nonweak) entity types in the ER diagram.(b) Is there a weak entity type? If so, give its name, its partial key, and itsidentifying relationship.(c) What constraints do the partial key and the identifying relationship of the weak entity type specify in this diagram?(d) List the names of all relationship types, and specify the (min,max) constraint on each participation of an entity type in a relationship type. Justify your choices.(e) List concisely the user requirements that led to this ER schema design.(f) Suppose that every customer must have at least one account but is restricted to at most two loans at a time, and that a bank branch cannot have more than 1000 loans. How does this show up on the (min,max) constraints?Answer:(a) Entity types: BANK, ACCOUNT, CUSTOMER, LOAN(b) Weak entity type: BANK-BRANCH. Partial key: BranchNo.Identifying relationship: BRANCHES.(c) The partial key BranchNo in BANK-BRANCH specifies that the same BranchNo value may occur under different BANKs. The identifying relationship BRANCHES specifies that BranchNo values are uniquely assigned for those BANK-BRANCH entities that are relatedto the same BANK entity. Hence, the combination of BANK Code and BranchNo together constitute a full identifier for a BANK-BRANCH.(d) Relationship Types: BRANCHES, ACCTS, LOANS, A-C, L-C. The (min, max) constraints are shown below.(e) The requirements may be stated as follows: Each BANK has a unique Code, as well as a Name and Address. Each BANK is related to one or more BANK-BRANCHes, and the BranhNo is unique among each set of BANK-BRANCHes that are related to the same BANK. Each BANK-BRANCH has an Address. Each BANK-BRANCH has zero or more LOANS and zero or more ACCTS. Each ACCOUNT has an AcctNo (unique), Balance, and Type and is related to exactly one BANK-BRANCH and to at least one CUSTOMER. Each LOAN has a LoanNo (unique), Amount, and Type and is related to exactly one BANK-BRANCH and to at least one CUSTOMER. Each CUSTOMER has an SSN (unique), Name, Phone, and Address, and is related to zero or more ACCOUNTs and to zero or more LOANs.(f) The (min, max) constraints would be changed as follows:3.24 Consider the ER diagram in Figure 3.22. Assume that an employee may work in up to two departments or may not be assigned o any department. Assume that each department must have one and may have up to three phone numbers. Supply (min, max) constraints on this diagram. State clearly any additional assumptions you make. Under what conditions would the relationship HAS_PHONE be redundant in this example?Answer:Assuming the following additional assumptions:- Each department can have anywhere between 1 and 10 employees.- Each phone is used by one, and only one, department.- Each phone is assigned to at least one, and may be assigned to up to 10 employees.- Each employee is assigned at least one, but no more than 6 phones.The resulting ER Diagram will have the (min, max) constraints shown in Figure A.Relationship HAS-PHONE would be redundant under the following conditions:- Each employee is assigned all of the phones of each department that he/she works in.- An employee cannot have any other phones outside the departments he/she works is. EMPLOYEEPHONEDEPARTMENTHAS-PHONE CONTAINSWORKS-IN(0, 2)(1, 3)(1, 10)(1, 10) (1, 1)(1, 6)3.25. Consider the ER diagram in Figure 3.23. Assume that a course may or may not use a textbook, but that a text by definition is a book that is used in some course. A course may not use more than five books. Instructors teach from two to four courses. Supply (min, max) constraints on this diagram. State clearly any additional assumptions you make. If we add the relationship ADOPTS between INSTRUCTOR and TEXT, what (min, max) constraints would you put on it? Why?Answer:Assuming the following additional assumptions:- Each course is taught by exactly one instructor.- Each textbook is used by one and only one course.- An instructor does not have to adopt a textbook for all courses.- If a text exists:- ___it is used in some course,- ___hence it is adopted by some instructor who teaches that course.- An instructor is considered to adopt a text if it is used in some course taught- by that instructor.The resulting ER Diagram will have the (min, max) constraints shown in Figure B.3.26 Consider an entity type SECTION in a UNIVERSITY database, which describes the section offerings of courses. The attributes of SECTION are SectionNumber, Semester, Year, CourseNumber, Instructor, RoomNo (where section is taught), Building (where section is taught), Weekdays (domain is the possible combinations of weekdays in which a section can be offered {MWF, MW, TT, etc.}). Assume tat SectionNumber is unique for each course within a particular semester/year combination (that is, if a course if offered multiple times during a particular semester, its section offerings are numbered 1, 2, 3, etc.). There are several composite keys for SECTION, and some attribute sare components of more than one key. Identify three composite keys, and show how they can be represented in an ER schema diagram.Answer:3.27 Cardinality Ratios often dictate the detailed design of a database. The cardinality ratio depends on the real-world meaning of the entity types involved and is defined by the specific application. For the binary relationships below, suggest cardinality ratios based on common-sense meaning of the entity types. Clearly state any assumptions you make.Answer:3.30 Illustrate the UML Diagram for exercise 3.16. Your UML design should observe the following requirements:a. The student should have the ability to compute his/her GPA and add or drop majors and minors.b. Each department should be to able add or delete courses and hire or terminate faculty.c. Each instructor should be able to assign or change a grade to a student for a course. Note: Some of these functions may be spread over multiple classes.Answer:This one isn’t finished yet. The relationships need to be added and some of the functions should be moved to span classes.。