ISMT12_C01
HEIDENHAIN-METRO MT12 MT25系列产品说明说明书
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1068623-20 · 7/2013 · PDF
This Product Information supersedes all previous editions, which thereby become invalid. The basis for ordering from HEIDENHAIN is always the Product Information valid when the contract is made.
I0–
shield
shield
Brown
White
–
White/
Green
Yellow
Blue
Red
Gray
Pink
Brown
UP = Power supply Vacant pins or wires must not be used!
Shield on housing Color assignment applies only to extension cable.
With retracting plunger 4.4 N to 1.4 N 3.8 N to 1.4 N 3.95 N to 1.05 N
0.2 N
Any 100 m/s2 (EN 60 068-2-6) 1000 m/s2 (EN 60 068-2-27)
IP 64
10 °C to 50 °C; reference temperature 20 °C –30 °C to 70 °C
0.2 N
From the integral spring
From application of com-
0.6 N to 0.85 N
变频空调电控基本知识
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变频空调电控基本知识1、基本概念2、变频空调的优势及缺点3、变频空调电控原理4、变频电控关键器件简介5、变频空调功能简介及故障判别6、变频空调新产品展望7、变频空调面临的问题技术管理部基础技术研发:叶先锋2008年02月25日一、基本概念1、常规空调(定频空调)▲ 使用一般的定频压缩机▲ 压缩机运行频率是固定的50Hz或60Hz▲ 输出的制冷、制热能力恒定▲ 控制方式简单,使用继电器、压缩机启动电容进行控制及启动 控制电路图:零线2、变频空调▲ 使用变频压缩机(又分为三相交流感应式异步电动机、无刷直流电机和永磁同步交流电机等)▲ 压缩机运行频率在20Hz~130Hz之间可调▲ 输出的制冷、制热能力根据运行频率变化而变化▲ 控制方式复杂,需要专用的变频驱动电路及相应的驱动控制芯片变频空调控制电路框架:变频压缩机控制原理:变频压缩机依据原理:n=60f(1-s)/p(n—压缩机转速,f—压缩机供电频率,p—电机极对数,s—转差率)通过改变压缩机的供电频率f,在p与s不变的情况下,压缩机运转速度n 就会跟随供电频率f的变化而变化。
3、交流变频空调▲ 压缩机采用三相交流感应式异步电动机;▲ 驱动电压采用交-直-交变换方式;▲ 驱动方式采用电压空间矢量控制方式;▲ 压缩机运行频率根据驱动电压的变化而变化,形成V-F对应曲线。
4、直流变频空调▲ 压缩机采用无刷直流电机(或永磁同步交流电机);▲ 无刷直流电机绕组采取分布卷绕制方式;永磁同步交流电机绕组采取集中卷绕制方式;▲ 驱动电压也是采用交-直-交变换方式;▲ 驱动方式采用方波驱动方式(分布卷)及正弦波驱动方式(集中卷);▲ 需要进行位置检测并进行电子换相。
5、全直流变频空调压缩机采用直流变频压缩机,室内外风机均使用无刷直流电机,简称3D空调,也有室内风机或室外风机是普通交流电机的。
全直流变频空调的目的是省电、节能,提高能效比,同时直流电机的性能比普通交流电机要好,如启动力矩大、噪音低等。
MT1260单点载重仪器平台集成平台说明书
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M T 1260 L o a d C e l lMT1260 Single Point Load CellThe MT1260 load cell features: • OIML R60 C3 approval• NTEP 5000 III S/M approval• ATEX Zone 1/2 and 21/22 approvals • Off-center load compensation (R76)• 600x600 mm platform size • IP67 protection class • Passivated aluminum • 50-750kg capacity rangeThe MT1260 is the ideal solution for floor scales and smaller hoppers. Due to the low profile the integration into any system is easy. The broad capacity range and large platform size allows wide useage in indu-strial weighing applications.Off-Center CompensationOne load cell can be used to support a weighing platform and, due to the off-center load compensation, the MT1260 will weigh within tolerance regardless of Floor Scale, Tank WeighingMT1260 provides the best weighing performance for floor scales and hopper weighing in its capacity range. With a low profile design, cost optimization and an attractive product appearance MT1260 allows 50% static overload without compromising the weighing performance. The passivated aluminium provides good corrosion resistance suit-able for many industrial applications.2MT1260 Load Cell SpecificationsParameter Unit of measure SpecificationModel No.MT1260Rated capacity (R.C.)kg (lb, nominal)50 (110)75 (165)100 (220)150 (331)200 (441)250 (551)300 (661)500(1102)750(1654) Rated output mV/*****. 2 ± 0.2Zero load output%R.C.≤ 10Combined error 1) 2)%R.C.≤ 0.016Repeatability error%A.L. 3)≤ 0.01Creep, 30 minute%A.L. ≤ 0.0167Min. dead load output return (DR), 30 min%A.L. ≤ 0.0167Temperature effect onMin. dead loadOutput%R.C./°C (../°F)≤ 0.0014 (0.0008)Sensitivity 2)%A.L./°C (../°F)≤ 0.0007 (0.00036)Temperature rangeCompensated°C (°F)-10 ~ +40 (+14 ~ +104)Operating-40 ~ +65 (-40 ~ +150)Safe storage-40 ~ +80 (-40 ~ +176)OIML / Europeanapproval 4)OIML Cert. No.R60/2000-NL1-03.14European Cert. No.NMi TC5367Class C3nmax3000Vmin g8.31516.72533.341.75083125PLC0.7Humidity symbol NoneMin. dead load kg (lb)0 (0)Z3000NTEP approval 4)Number11-088Class III S, III Mnmax5000Vmin g (lb)5(0.011)7.5(0.017)10(0.022)15(0.033)20(0.044)25(0.055)30(0.066)50(0.11)70(0.17)Min. dead load kg (lb)0 (0)ATEX approval 4)Number, cat. 2KEMA 09ATEX0003 XNumber, cat. 3KEMA 09ATEX0004 XRatingII 2 G Ex ib IIC T4II 2 D Ex ibD 21 IP66 T135 °CII 3 G Ex nA II T4II 3 G Ex nL IIC T4II 3 D Ex tD A22 IP66 T135°CEntity parameters Ui/Un=20V, Ii=600mA, Pi=1.25W, Ci=5nF, Li=30μHExcitation voltageRecommendedV AC/DC5 ~ 15Max.20Terminal resistanceExcitationΩ410 ± 10Output350 ± 4Insulation resistance @50VDC MΩ> 5000Breakdown voltage V AC> 500MaterialSpring element AluminiumEnclosure NoneCable PVCProtectionType PottedIP rating IP 67NEMA rating NEMA 6/6PLoad limitSafe%R.C.150Ultimate300Safe dynamic load%R.C.70Fatigue life**********.> 1000000Direction of loading Beam**************.,nominal mm (in)0.3 (0.012)Weight, nominal kg (lb) 1.9 (4.2)Cable length m (ft) 2 (6.6)Barometric pressure effect on zero load output kg/kPa (lb/in.Hg)NoneSafe side load%R.C.100Overload protection NoneMounting screwGrade12.9Size/thread mm (in)M8x1.25Engaged length mm (in)20 (0.79)Torque, nominal N.m (ft-lb)25 (18)Max. platter size cm x cm (in x in)60 x 60 (24 x 24)Off center load error, R76-1%A.L./cm (../in)0.0032 (0.008)1) Error due to the combined effect of non-linearity and hysteresis2) Typical values only. The sum of errors due to combined error and temperature effect on sensitivity comply with the requirements of OIML R60 and NIST HB44.3) A.L. = Applied Load4)See certificate for complete information.METTLER TOLEDO MT1260 Single Point Load Cell©11/2019MT1260 Load Cell Dimensional Drawings mm [inch]METTLER TOLEDO Datasheet MT1260 Single Point Load Cell©11/20193MT1260 Load Cell Order InformationWeighing ElectronicsMETTLER TOLEDO offers a complete family of electronics from simple weighing to application solutions for filling, stock control, batching, formulation, counting, and checkweighing.Full ConnectivityMETTLER TOLEDO supplies various data communication interfaces that enable our sensors and instruments to communicate with your PLC, MES, or ERP systems.OIML ApprovalsThe MT1260 is provided with C3 approval acc. to OIML R60. Thus best weighing performance is guaranteed at all specified conditions. Benefit from METTLER TOLEDO experience.MT1260 Load Cell Cable ColoursVisit for more informationColour Function Green + Excitation Black – Excitation Red + Signal White – Signal Blue + Sense Brown – Sense Yellow + ShieldDescriptionItem No.Load cell, model no. MT1260-50kg 2m Cable 71201844Load cell, model no. MT1260-75kg 2m Cable 71201845Load cell, model no. MT1260-100kg 2m Cable 71201846Load cell, model no. MT1260-150kg 2m Cable 71201847Load cell, model no. MT1260-200kg 2m Cable 71201848Load cell, model no. MT1260-250kg 2m Cable 71201849Load cell, model no. MT1260-300kg 2m Cable 71207455Load cell, model no. MT1260-500kg 2m Cable 71207456Load cell, model no. MT1260-750kg 2m Cable 71209936Load cell, model no. MT1260-50kg 6m Cable 72208484Load cell, model no. MT1260-75kg 6m Cable 72208485Load cell, model no. MT1260-100kg 6m Cable 72208486Load cell, model no. MT1260-150kg 6m Cable 72208487Load cell, model no. MT1260-200kg 6m Cable 72208488Load cell, model no. MT1260-250kg 6m Cable 72208489Load cell, model no. MT1260-300kg 6m Cable 72208490Load cell, model no. MT1260-500kg 6m Cable 72208491Load cell, model no. MT1260-750kg 6m Cable72208492Bolded entries are stockedOur extensive service network is among the best in the world and ensures maximum availability and service life of your product.METTLER TOLEDO Group Industrial DivisionLocal contact: /contactsSubject to technical changes© 11/2019 METTLER TOLEDO. All rights reserved Document No. 44099826 A MarCom Industrial。
SECO-NCD57000-GEVB NCD57000 mini Evaluation Board
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SECO-NCD57000-GEVB NCD57000 mini Evaluation Board User's ManualPurposeThis document describes the use and applications for the NCD57000 gate driver mini board. The board is designed on a two layer PCB and includes the NCD57000 driver and all the necessary drive circuitry. The board also includes ability to solder any MOSFET or SiC MOSFET in a TO−247 high voltage package and compatibility with SECO−GDBB−GEVB baseboard for out−of−the−box evaluation. The board does not include a power stage and is generic from the point of view that it is not optimized to any particular topology. It can be used in any low−side or high−side power switching application. For bridge configurations two or more of these boards can be configured in a totem pole type drive configuration. The boards can be considered as an isolator+driver+TO−247 discrete module.NCD57000 DescriptionNCD57000 is a high−current single channel IGBT driver with internal galvanic isolation, designed for high system efficiency and reliability in high power applications. Its features include complementary inputs, open drain FAULT and Ready outputs, active Miller clamp, accurate UVLOs, DESAT protection, soft turn−off at DESAT, and separate high and low (OUTH and OUTL) driver outputs for system design convenience. NCD57000 accommodates both 5 V and 3.3 V signals on the input side and wide bias voltage range on the driver side including negative voltage capability. NCD57000 provides > 5 kVrms (UL1577 rating) galvanic isolation and > 1200 Viorm (working voltage) capabilities. NCD57000 is available in the wide−body SOIC−16 package with guaranteed 8 mm creepage distance between input and output to fulfill reinforced safety insulation requirements.Collaterals•SECO−NCD57000−GEVB•SECO−GDBB−GEVB•NCD57000Figure 3. SchematicEVAL BOARD USER’S MANUALFigure 1. SECO−NCD57000−GEVBFigure 2. Board Plugged intoSECO−GDBB−EVBFeatures•Galvanic Isolated Gate Driver Circuit 5 kV •Demonstrates NCD57000 Isolated Driver with Advanced Features •Replaceable Load Capacitor and Gate Resistor for different Load Simulation •Plug−and−Play Testing withSECO−GDBB−GEVB •Minimized Form−factor for Embedding and Testing in Application Boards or New Designs•Custom V oltage Levels with External Power SupplyFigure 4. Simplified NCD57000 Block DiagramFigure 5. NCD57000 mini Board − Top ViewFigure 6. NCD57000 mini Board SchematicFigure 7. SECO−GDBB−GEVB Table 1. NCD57000 mini BOARD BOMDescription Designa-tor Quantity Value Comment Footprint ManufacturerCapacitor 0805 1 m F 50 V C1, C3, C53 1 m F CAP0805TDKCapacitor 0805 100 nF 50 V C2, C4, C73100 nF CAP0603Kyocera AVX Capacitor 0805 10 pF 50 V C6110 pF CAP0603KEMETBYG23T−M3/TR D11SMB VishaySemiconductor Schottky Diode D2, D32MBR0540SOD−123ON Semiconductor NCD57000IC11DSO−16_N ON Semiconductor Header, 7−Pin P11Don’t assembly HDR1X7MolexHeader, 3−Pin P21Don’t assembly HDR1X3MolexRES SMD 10 k W 1% 1/10W 0603R1, R2,R3, R4, R5510k RES0603YageoRES SMD 1 k W 1% 1/10W 0603R511k RES0603BournsRES SMD 4.7 W 1% 1/10W 0805RGH1,RGL12 4.7R RES0805YageoPCB Assembly and LayersFigure 8 and Figure 9 shows the top and bottom layouts of the PCB. The PCB is 35 mm x 18 mm x 1 mm (length x width x height) where the width of the PCB is approximately the width of a TO *247 body.Figure 8. NCD57000 mini Board TOP Assembly DrawingFigure 9. NCD57000 mini Board BOTTOM Assembly DrawingI/O ConnectorsThere are 3 I/O connectors including 13 pins described in Table 2 below. The signals on low voltage side are noted as “primary” ground referenced. There is no true “primary”and “secondary” ground but there is 1.2 kV galvanic isolation across the isolation boundary. It is especiallyimportant to maintain isolation in high−side, high−voltage,switching applications where the “secondary” Vcc (P3.2and P3.3) floats Vcc volts above the power supply input voltage:Table 2. I/O CONNECTOR DESCRIPTIONSRef Des Name I/O GND Ref DescriptionValue [V]P1.1Vcc1Power Primary Positive primary power supply 5P1.2Gnd1Power Primary Ground0P1.3IN+Input Primary Non−inverting PWM input 0 − 3.3 (5)P1.4FLT Output Primary Fault flag0 − 5 (3.3)P1.5IN−Input Primary Inverting PWM input 0 − 5 (3.3)P1.6RDY Output Primary Ground 0 − 5 (3.3)P1.7RST Input Primary Reset FLT pin0 − 5 (3.3)P2.1Vcc2Power Secondary Positive branch power supply < 20P2.2Gnd2Power Secondary Ground of the power supply 0P2.3Vee2Power Secondary Negative branch of power supply > −10G (G)Gate Output Secondary Gate pin of a power switch< 20C (D)Collector Output Secondary Collector (drain) pin of a power switch ≤ 1200E (S)EmitterOutputSecondaryEmitter (source) pin of a power switchMounting into Existing PCBThe board can be mounted into an existing power board, shown as “Main PCB” in Figure 6. If there are no components or low profile surface mount components only, the mini SMD EVB can be mounted parallel to the main PCB as shown in Figure 6. The TO−247, power device leads would pass through the mini EVB plated thru−holes and into the main PCB. Or, if necessary, the gate lead of the TO−247, power device can be soldered to the plated thru−hole on the EVB and cut so that it does not contact the main PCB. For mechanical strength, it is preferred that the TO−247 gate lead pass through both PCB’s. This configuration is helpful for already existing application with horizontal TO−247 positions.Recommended procedure for Option 1 Mounting into an existing PCB:1.On the main PCB, isolate the gate drive to theTO−247. If the existing design includes a gatedrive resistor, removing it should serve thepurpose of isolating the gate drive to the TO−247.If there is no series component between the PWMsignal source and the TO−247 gate lead, the gatedrive PCB track will need to be cut.2.Measure the resistance between the PWM sourceand the TO−247 gate lead (or PWM source to gatedrive transformer/isolator if applicable). Verifyreading is high impedance (open).3.If a TO−247 discrete is installed in the main PCB,remove it now.4.Place Kapton or non−conductive tape over themain PCB area directly beneath the EVB.This is to avoid the possibility of having anycomponents on the bottom of the mini SMD EVBtouch components or conductive surfaces on themain PCB.5.Solder a flying lead of bus wire to the main PCB,PWM signal and so on. Make sure there is enoughlength of the PWM input (flying lead) to reachthrough the EVB.6.Solder the TO−247 through just the EVB first7.With the TO−247 installed into the EVB, installand solder the TO−247 leads into the main PCB.8.Solder the other end of the PWM input (flyinglead) to IN+ for non−inverting PWM applicationsor IN− for inverting PWM applications.ing the same size bus wire, solder the remainingconnections between the EVB to the appropriatelocations on the main PCB.10.Solder flying leads for bias voltage. Note that P2are across the isolation boundary from.Mounting into Existing PCB − Option 2If components mounted on the main PCB interfere with mounting the EVB as described by Option 1 (Figure 10), the TO−247 leads can be formed (lead length may need to be added) with the EVB mounted perpendicular to the main PCB as shown in Figure 11. If required, both mounting options allow the application of a heat sink to the TO−247 package. If high dv/dt is present on the drain of the TO−247, the EVB should be angled, away from being parallel to the TO−247, as much as possible.1.On the main PCB, isolate the gate drive to theTO−247 power device. If the existing designincludes a gate drive resistor, removing it shouldserve the purpose of isolating the gate drive to theTO−247. If there is no series component betweenthe PWM signal source and the TO−247 gate lead,the gate drive PCB track will need to be cut.2.Measure the resistance between the PWM sourceand the TO−247 gate lead (or PWM source to gatedrive transformer/isolator if applicable). Verifyreading is high impedance (open).3.If a TO−247 discrete is installed in the main PCB,remove it now.4.Solder a flying lead of bus wire to the main PCB,PWM signal. Make sure there is enough length ofthe PWM input (flying lead) to reach through themini EVB plated thru−hole.5.After the TO−247 leads have been formed, checkfor fit through the EVB and down into the mainPCB6.Solder the TO−247 through just the EVB first7.With the TO−247 installed into the EVB, installand solder the TO−247 leads into the main PCB8.Solder the other end of the PWM input (flyinglead) to IN+ for non−inverting PWM applicationsor IN− for inverting PWM applications.ing the same size bus wire, solder the remainingconnections between EVB to the appropriatelocations on the main PCB.10.Solder flying leads from bias voltage to the EVB.Note that power supply connector is across theisolation boundary.Figure 10. Mounting into Existing PCBLow voltage power supplyFigure 11. EVB Board InstallationsMounting into New PCB DesignThe EVB can also be used as an isolator+driver+TO−247“driver module” that can be integrated into a new PCB design. The gate lead of the TO−247 between the EVB and the main PCB is for mechanical strength only. For main PCB layout, the gate lead extends down through the main PCBand can be soldered to an isolated plated thru−hole. As shown in Figure 12, shoulder pins with appropriate flange are one option that can be used as mounting pins between mini EVB and the main PCB. In the case new design Figure 13 all needed for footprint design.Figure 12. NCD57000 SMD mini Board New Design InstallationsFigure 13. EVB’s PCB Mechanical DataTesting without Installing into a PCBThe EVB can also be tested without installing into a main PCB. However, since this EVB was designed for small form factor there are no test points included for connecting voltage probes. The EVB should be hand probed carefully since the components are very fine pitch or flying leads connected to desired probe points can be attached. The 20Vdc bias (Vcc2 and Gnd2) is on the secondary side of the isolated gate driver IC and therefore has a separate/isolated return ground from the 5Vdc bias (Vcc1 and Gnd2). The recommended series load of below 4.7 nF and 4.7 W is close to what might be representative of a power switch gate drive input impedance. Leaded passive components can be soldered into the TO−247 holes as shown in Figure 14.Alternatively, a TO−247 power switch can also be solderedin place and used as a load for the gate driver board. Note that testing without installing into a power stage, leaves the DESAT pin open since there is no active drain signal. The effect of operating DESAT this way is explained in section ‘DESAT’.Testing with Gate Driver Base BoardAnother very easy way how to test and evaluate more mini boards at same time is to use dedicated base board containing all necessary for easy use. Figure 15 shows typical example where we only need scope for detail waveform analyzing and precise measurement. The base board makes possible connect up to 200 V voltage for power device loading to see impact of non−linear miller capacity to driving performance.Figure 14. Test Configuration of EVB without Installing into Main or Base PCBfor Gate Drive Mini Boards Testing and EvaluatingDESAT SetupDESAT is a type of short circuit or/and over−current protection dedicated to monitoring the I D ·R DS of the MOSFET or Vce_sat voltage for bipolar device like IGBTs.The EVB is preconfigured with R5 = 1 k W (DESAT resistor). The internal DESAT threshold is fixed at V DESAT(TH) = 9 V and the DESAT signal amplitude is adjustable by R5 and HV diode connected in series with R5.R5 = 1 k W may not be the correct resistor value for some applications. If V DESAT > 9 V during normal operation,decrease R5 to lower the signal amplitude. If DESAT is active, the output is driven low. Further, the /FLT output is activated, please refer to datasheet for more details.Basic MeasurementFigure 16 and Figure 17 show basic gate driver board connected to base board according the Figure 15. V ery easily can be evaluated time delays, maximal gate current capability or maximal switch frequency before thermal runaway at given condition and similar. Typically we can measure time between fault event and FLT pin reaction.Typical task is to compare different part number at same time and/or same condition to see online all, for application,important behaviors.Figure 16. Normal Operation for Turn−on and Turn−offIN+I gV GFigure 17. Zoom of Normal Operation for Turn−on and Turn−offIN +I gV GPUBLICATION ORDERING INFORMATIONTECHNICAL SUPPORTNorth American Technical Support:Voice Mail: 1 800−282−9855 Toll Free USA/Canada Phone: 011 421 33 790 2910LITERATURE FULFILLMENT :Email Requests to:*******************onsemi Website: Europe, Middle East and Africa Technical Support:Phone: 00421 33 790 2910For additional information, please contact your local Sales RepresentativeMouser ElectronicsAuthorized DistributorClick to View Pricing, Inventory, Delivery & Lifecycle Information:o nsemi:SECO-NCD57000-GEVB。
Motorola 3.5 kHz 产品说明书
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RVN4126 3.59100-386-9100-386/T DEVICERVN41772-CD2-3.5MCS/MTSRVN41821-CD2-3.5XTS3000/SABER PORTABLE YES RKN4046KHVN9085 3.51-20 R NO HLN9359 PROG. STAND RVN4057 3.532 X 8 CODEPLUG NO3080385B23 & 5880385B30 MDVN4965 3.59100-WS/T CONFIG KITRVN4053 3.5ASTRO DIGITAL INTERFACE NO3080385B23RVN41842-CD RKN4046A (Portable) 2-3.5ASTRO PORTABLE /MOBILE YES3080369B73 or0180300B10 (Mobile) RVN41831-CD3080369B732-3.5ASTRO SPECTRA MOBILE YES(Low / Mid Power)0180300B10 (High Power) RVN4185CD ASTRO SPECTRA PLUS MOBILE NO MANY OPTIONS; SEESERVICE BRIEF#SB-MO-0101RVN4186CD ASTRO SPECTRA PLUS MANY OPTIONS;MOBILE/PORTABLE COMB SEE SERVICE BRIEF#SB-MO-0101RVN4154 3.5ASTROTAC 3000 COMPAR.3080385B23RVN5003 3.5ASTROTAC COMPARATORS NO3080399E31 Adpt.5880385B34RVN4083 3.5BSC II NO FKN5836ARVN4171 3.5C200RVN4029 3.5CENTRACOM SERIES II NO VARIOUS-SEE MANUAL6881121E49RVN4112 3.5COMMAND PLUS NORVN4149 3.5COMTEGRA YES3082056X02HVN6053CD CT250, 450, 450LS YES AAPMKN4004RVN4079 3.5DESKTRAC CONVENTIONAL YES3080070N01RVN4093 3.5DESKTRAC TRUNKED YES3080070N01RVN4091 3.5DGT 9000 DESKSET YES0180358A22RVN4114 3.5GLOBAL POSITIONING SYS.NO RKN4021AHVN8177 3.5GM/GR300/GR500/GR400M10/M120/130YES3080070N01RVN4159 3.5GP60 SERIES YES PMLN4074AHVN9128 3.5GP300 & GP350RVN4152 3.5GP350 AVSRVN4150 3.5GTX YES HKN9857 (Portable)3080070N01(Mobile) HVN9025CD HT CDM/MTX/EX SERIES YES AARKN4083/AARKN4081RiblessAARKN4075RIBLESS NON-USA RKN4074RVN4098H 3.5HT1000/JT1000-VISAR YES3080371E46(VISAR CONV)RVN4151 3.5HT1000 AVSRVN4098 3.5HT1000/ VISAR CONV’L.YES RKN4035B (HT1000) HVN9084 3.5i750YES HLN-9102ARVN4156 3.5LCS/LTS 2000YES HKN9857(Portable)3080070N01(Mobile) RVN4087 3.5LORAN C LOC. RECV’R.NO RKN4021ARVN4135 3.5M100/M200,M110,M400,R100 includesHVN9173,9177,9646,9774YES3080070N01RVN4023 3.5MARATRAC YES3080070N01RVN4019 3.5MAXTRAC CONVENTIONAL YES3080070N01RVN4139 3.5MAXTRAC LS YES3080070N01RVN4043 3.5MAXTRAC TRK DUPLEX YES3080070N01RVN4178CD MC SERIES, MC2000/2500DDN6124AW/DB25 CONNECTORDDN6367AW/DB9 CONNECTOR RVN41751-CD Rib to MIC connector 1-3.5MCS2000 RKN4062BRVN41131-3.5MCS2000RVN4011 3.5MCX1000YES3000056M01RVN4063 3.5MCX1000 MARINE YES3000056M01RVN4117 3.5MDC/RDLAP DEVICESRVN4105 3.5MOBILE PROG. TOOLRVN4119 3.5MOBITEX DEVICESRVN4128 3.5MPT1327-1200 SERIES YES SEE MANUALRVN4025 3.5MSF5000/PURC/ANALOG YES0180355A30RVN4077 3.5MSF5000/10000FLD YES0180355A30RVN4017K 3.5MT 1000YES RTK4205CRVN4148 3.5MTR 2000YES3082056X02RVN4140 3.5MTRI 2000NORVN41761-CD MTS2000, MT2000*, MTX8000, MTX90001-3.5*programmed by DOS which is included in the RVN4176RVN4131 3.5MTVA CODE PLUG FIXRVN4142 3.5MTVA DOCTOR YES3080070N01RVN4131 3.5MTVA3.EXERVN4013 3.5MTX800 & MTX800S YES RTK4205CRVN4097 1-CD MTX8000/MTX9000,MTS2000,MT2000*,* programmed by DOS which is included in the RVN4176HVN9067CD MTX850/MTX8250MTX950,MTX925RVN4138 3.5MTX-LS YES RKN4035DRVN4035 3.5MX 1000YES RTK4203CRVN4073 3.5MX 800YES RKN4006BHVN9395 P100, P200 LB, P50+, P210, P500, PR3000RVN4134 3.5P100 (HVN9175)P200 LB (HVN9794)P50+ (HVN9395)P210 (HVN9763)P500 (HVN9941)PR3000 (HVN9586)YES RTK4205HVN9852 3.5P110YES HKN9755A/REX1143 HVN9262 3.5P200 UHF/VHF YES RTK4205RVN4129 3.5PDT220YVN4051 3.5PORTABLE REPEATER Portable rptr.P1820/P1821AXRVN4061C 3.5PP 1000/500NO3080385B23 & 5880385B30 RVN5002 3.5QUANTAR/QUANTRO NO3O80369E31RVN4135 3.5R100 (HVN9177)M100/M200/M110/M400YES0180358A52RVN4146 3.5RPM500/660RVN4002 3.5SABER YES RTK4203CRVN4131 3.5SETTLET.EXEHVN9007 3.5SM50 & SM120YESRVN4039 3.5SMART STATUS YES FKN5825AHVN9054 3.5SOFTWARE R03.2 P1225YES3080070N01HVN9001 3.5SOFTWARE R05.00.00 1225LS YES HLN9359AHVN9012 3.5SP50RVN4001N 3.5SPECTRA YES3080369B73 (STANDARD)0180300B10 (HIGH POWER) RVN4099 3.5SPECTRA RAILROAD YES3080369B73RVN4110 3.5STATION ACCESS MODULE NO3080369E31RVN4089A 3.5STX TRANSIT YES0180357A54RVN4051 3.5SYSTEMS SABER YES RTK4203BRVN4075 3.5T5600/T5620 SERIES NO3080385B23HVN9060CD TC3000, TS3000, TR3000RVN4123 3.5VISAR PRIVACY PLUS YES3080371E46FVN4333 3.5VRM 100 TOOLBOX FKN4486A CABLE &ADAPTORRVN4133 3.5VRM 500/600/650/850NORVN4181CD XTS 2500/5000 PORTABLES RKN4105A/RKN4106A RVN41002- 3.5XTS3000 ASTRO PORTABLE/MOBILERVN4170 3.5XTS3500YES RKN4035DRIB SET UPRLN4008E RADIO INTERFACE BOX (RIB)0180357A57RIB AC POWER PACK 120V0180358A56RIB AC POWER PACK 220V3080369B71IBM TO RIB CABLE (25 PIN) (USE WITH XT & PS2)3080369B72IBM TO RIB CABLE (9 PIN)RLN443825 PIN (F) TO 9 PIN (M) ADAPTOR (USE W/3080369B72 FOR AT APPLICATION) 5880385B308 PIN MODULAR TO 25 PIN ”D” ADAPTOR (FOR T5600 ONLY)0180359A29DUPLEX ADAPTOR (MOSTAR/TRAXAR TRNK’D ONLY)Item Disk Radio RIB Cable Number Size Product Required Number Item Disk Radio RIB Cable Number Size Product Required NumberUtilizing your personal computer, Radio Service Software (RSS)/Customer Programming Software (CPS)/CustomerConfiguration Software (CCS) enables you to add or reprogram features/parameters as your requirements change. RSS/CPS/CCS is compatible with IBM XT, AT, PS/2 models 30, 50, 60 and 80.Requires 640K RAM. DOS 3.1 or later. Consult the RSS users guide for the computer configuration and DOS requirements. (ForHT1000, MT/MTS2000, MTX838/8000/9000, Visar and some newer products —IBM model 386, 4 MEG RAM and DOS 5.0 or higher are recommended.) A Radio Interface Box (RIB) may be required as well as the appropriate cables. The RIB and cables must be ordered separately.Licensing:A license is required before a software (RVN) order is placed. The software license is site specific (customer number and ultimate destination tag). All sites/locations must purchase their own software.Be sure to place subsequent orders using the original customer number and ship-to-tag or other licensed sites; ordering software without a licensed customer number and ultimate tag may result in unnecessary delays. To obtain a no charge license agreement kit, order RPX4719. To place an order in the U.S. call 1-800-422-4210. Outside the U.S., FAX 847-576-3023.Subscription Program:The purchase of Radio ServiceSoftware/Customer Programming/Customer ConfigurationSoftware (RVN & HVN kits) entitles the buyer/subscriber to three years of free upgrades. At the end of these three years, the sub-scriber must purchase the same Radio Service Software kit to receive an additional three years of free upgrades. If the sub-scriber does not elect to purchase the same Radio Service Software kit, no upgrades will be sent. Annually a subscription status report is mailed to inform subscribers of the RSS/CPS/CCS items on our database and their expiration dates.Notes:1)A subscription service is offered on “RVN”-Radio Service Software/Customer Programming/Customer Configuration Software kits only.2)“RVN” software must only be procured through Radio Products and Services Division (RPSD). Software not procured through the RPSD will not be recorded on the subscription database; upgrades will not be mailed.3)Upgrades are mailed to the original buyer (customer number & ultimate tag).4)SP software is available through the radio product groups.The Motorola General Radio Service Software Agreement is now available on Motorola Online. If you need assistance please feel free to submit a “Contact Us” or call 800-422-4210.SMART RIB SET UPRLN1015D SMART RIB0180302E27 AC POWER PACK 120V 2580373E86 AC POWER PACK 220V3080390B49SMARTRIB CABLE (9 PIN (F) TO 9 PIN (M) (USE WITH AT)3080390B48SMARTRIB CABLE (25 PIN (F) TO 9 PIN (M) (USE WITH XT)RLN4488ASMART RIB BATTERY PACKWIRELESS DATA GROUP PRODUTS SOFTWARERVN4126 3.59100-386/9100T DEVICES MDVN4965 3.59100-WS/T CONFIG’TN RVN41173.5MDC/RDLAP DEVICESPAGING PRODUCTS MANUALS6881011B54 3.5ADVISOR6881029B90 3.5ADVISOR ELITE 6881023B20 3.5ADVISOR GOLD 6881020B35 3.5ADVISOR PRO FLX 6881032B30 3.5BR8506881032B30 3.5LS3506881032B30 3.5LS5506881032B30 3.5LS7506881033B10 3.5LS9506881035B20 3.5MINITOR III8262947A15 3.5PAGEWRITER 20008262947A15 3.5PAGEWRITER 2000X 6881028B10 3.5TALKABOUT T3406881029B35 3.5TIMEPORT P7308262947A15 3.5TIMEPORT P930NLN3548BUNIVERSAL INTERFACE KITItem Disk Radio NumberSize Product。
菲尼克斯端子
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见 72页
双层刀闸分断端子 UKK...-MTK
见 74页
可插入元器件插头的基座端子 UK...TG
见 76页
元器件插头 ST-BE
见 78页
带滑块端子 UGSK/S
见 82页
通用试验端子 URTK/S...
经销
见 83页
微型接线端子 MT 1.5
见 90页
需要重新确定额定值。
8
Phoenix Contact
有关 导轨、终端 固定件 以及对 电气及 电 子连接 件进行 迅速而又 可靠的固 定的其它 附 件参见本样本第 102 页后的详细介绍。
所有 带标记 安装槽的 菲尼克 斯组合端 子 都可以既经济迅速又完美地用标记系统 ZB… 加以标记。参见样本第 102 页有关标识材料 的详细介绍。
见 30页 桥接件应用表格
见 32 页
微型双层接线端子 MBKKB 2.5
经销
见 38页
双层通用型接线端子系列 UKK... 系列
见 39页
双层接地端子 UKK...-PE
见 43页
传感器接线端子 DIK...
见 44页
执行器接线端子 DOK...
见 46页
4-7 8-35 36-51 52-67 68-69 70-79 80-87 88-101 102-119 120-123 124-134 135-139 139-144
经销
PHOENIX CONTACT
3
通用端子
通用型接线端子 UK... 系列
见 10页
四层传感器和执行器端子 VIOK...
见 48页
建筑安装接线端子 UIK...
见 54页
N线滑块分断端子 UKN...
蚯蚓金属硫蛋白定量PCR检测方法及其分子诊断

中国环境科学
2 1,18:17 - 3 2 0 3 () 37 18 1
C ia n i n na S i c hn E vr metl ce e o n
蚯蚓金属硫 蛋 白定量 P R检测方法及其分子诊 断 C
陈 春 , ,周启星 (. - 1 南开大学环境科学与工程学院, 环境污染过程与基准教育部重点实验室, 天津市城市生态环
d s-e e dn dt -ee dn n e. h ih s (68fl) - g l inl e wa u di ft aat 8 oedp n et medp n e t nrT ehg et 3 .- d u r ua o v l s n E.ei f r d n a i ma o p e t e f o n d e2
沃尔沃汽车使用手册说明书
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RACE Newsletter09/04/2018CAR:NEW : FLASH_0675 VOLVO BOSCH EDC17CP22/CP48/CP68 CANATTENTION!In order to run the writing procedure with the serial protocol flash_0675 it is necessary to perform first the PATCH UNLOCK with the New Trasdata - plugin 158 / 681 / 743.Please check the specific manual.VOLVO C30 Mk2/C70/S40/V50 Mk2/V40 Mk2-3 2.0L 16V D3 110kW EDC17CP22/CP48VOLVO C30 Mk2/V60 2.4L 20V D5 132kW EDC17CP22/CP48VOLVO C70/ S60 Mk2/V60/XC60 2.0L 20V D3 120kW EDC17CP22/CP48VOLVO S60 Mk2/XC70 Mk3/S80Mk3/V60/V70 Mk3/XC60/XC70 Mk3 2.4L 20V D5 158kW EDC17CP22/CP48VOLVO S80 Mk2/V70 Mk3/XC60 2.4L 20V D5 151kW EDC17CP22VOLVO V50 Mk2 2.0L 20V D5 130kW EDC17CP22VOLVO V70 Mk3 2.4L 20V D5 130kW EDC17CP22VOLVO X C60 2.4L 20V D4 120-129kW EDC17CP22VOLVO X C70 Mk3/XC60/ XC70 Mk3/XC90/V60 2.4L 20V D5 120kW EDC17CP22/CP48/CP68VOLVO S60 Mk2/V60/V70 Mk3 2.0L 20V D3 100kW EDC17CP48VOLVO S80 Mk3/V60/V70 Mk3/XC70 Mk3 2.0L 16V D4 120kW EDC17CP48VOLVO S80 Mk3 2.4L 20V D4 120kW EDC17CP48VOLVO V40 Mk3 2.0L 16V D4 130kW EDC17CP48VOLVO V60 2.4L 20V D6 HYBRID 158kW EDC17CP48 VOLVO X C60 2.0L 20V D5 100kW EDC17CP48VOLVO X C60/XC70 Mk3 2.4L 20V D4 133kW EDC17CP48VOLVO X C60 2.4L 20V D4 140kW EDC17CP68VOLVO X C70 Mk3 2.4L 20V D5 133kW EDC17CP68VOLVO X C70 Mk3 2.4L 20V D5 162kW EDC17CP68NEW : FLASH_0676 MERCEDES DELPHI CRD3.E/P CANATTENTION!In order to run the writing procedure with the serial protocol flash_0676 it is necessary to perform first the PATCH UNLOCK with the New Trasdata - plugin 935.Please check the specific manual.MERCEDES A CLASS W176 A200 2.2L 16V CDI 100kW CRD3.E/PMERCEDES A CLASS W176 A220 2.2L 16V CDI 130kW CRD3.E/PMERCEDES B CLASS W246 B200 2.2L 16V CDI 100kW CRD3.E/PMERCEDES C CLASS W205 C220 2.2L 16V CDI 100-120-125kW CRD3.E/PMERCEDES C CLASS W205 C250 2.2L 16V CDI 152kW CRD3.E/PMERCEDES CLA CLASS C117 CLA200 2.2L 16V CDI 100kW CRD3.E/PMERCEDES CLA CLASS C117 CLA220 2.2L 16V CDI 130kW CRD3.E/PMERCEDES GLA CLASS X156 GLA200 2.2L 16V CDI 100kW CRD3.E/PMERCEDES GLA CLASS X156 GLA220 2.2L 16V CDI 130kW CRD3.E/PMERCEDES SPRINTER W906 316-516 2.2L CDI 105-120kW CRD3.E/PTRUCK:NEW: FLASH_0677 CUMMINS – TEREX ATLAS TRUCK CM570 CANTEREX TRUCKS TA300 10.8L QSM 276kW CM570TRACTOR:NEW: FLASH_0674 CUMMINS – TIGERCAT TRACTOR CM2250 CANTIGERCAT FELLER BUNCHERS 724E 6.7L QSB 164kW CM2250SW : 3.0.186 DLL : 1.0.197 FW: 12.09 build 0002 MOTOROLA MPC500 CPUs:ADD : 01 - MOTOROLA MPC500BOSCH EDC7C1 MPC555/MPC556 INTERNATIONAL DieselNEW - plugin 1037 – INTERNATIONAL BUS 3100 4.8L 110kW EDC7C1 STMICROELECTRONICS CPUs:ADD : 02 - STMICROELECTRONICS ST10BOSCH DCU15 ST10C167 DAF AdBlue DCUNEW - plugin 1032 – FENDT 300 VARIO 313 4.4L 99kWINFINEON TRICORE CPUs:ADD : 03 - INFINEON TRICORE NO PSW CANLINEBOSCH REXROTH SRC 9-34 TC1796 AGCO GEARBOX CVTNEW – plugin 951 – AGCO GEARBOX CVTBOSCH ME17.9.71 TC1724 PSA PetrolNEW – plugin 1035 – PEUGEOT 206 1.6L 16V 82kW ME17.9.71BOSCH ME17.2.4/BMS-MP TC1791/TC1793 BMW MOTORRAD PetrolNEW – plugin 1057 – BMW MOTORRAD S SERIES S 1000 R my2017 1.0L 121kW ME17.2.4BMW MOTORRAD S SERIES S 1000 RR my2017 1.0L 146kW ME17.2.4BMW MOTORRAD S SERIES S 1000 XR my2017 1.0L 121kW ME17.2.4BMW MOTORRAD F SERIES F 800 R/GT my2017 1.0L 66kW ME17.2.4BMW MOTORRAD R SERIES R 1200 GS my2017 1.0L 92kW ME17.2.4BOSCH MEVD17.8.4 TC1797 BMW PetrolNEW – plugin 1065 – BMW 3 SERIES F30/F31/F35 320i 2.0L L4 16V TURBO 135kW MEVD17.8.4BMW 5 SERIES F10/F11/F18 520i 2.0L L4 16V TURBO 135kW MEVD17.8.4BMW 5 SERIES F10/F11/F18 525i 2.0L L4 16V TURBO 160kW MEVD17.8.4ADD : 04 - INFINEON TRICORE BOSCH MEDC17 TPROT2/4/7BOSCH MED17.0.7 TC1782 FORD PetrolNEW – plugin 1064 – FORD FIESTA 7 1.0L 12V Ecoboost 74kW MED17.0.7ADD: 23 - INFINEON TRICORE BOSCH MEDC17 GPT VAGBOSCH ME17.5.22 TC1724 VAG PetrolNEW – plugin 1039 – VOLKSWAGEN GOLF 7 1.6L 8V MPI 81kW ME17.5.22VOLKSWAGEN GRAN LAVIDA 1.6L 8V MPI 81kW ME17.5.22VOLKSWAGEN POLO 5 (6R, 6C) 1.6L 8V MPI 81kW ME17.5.22VOLKSWAGEN TOURAN 1.6L 8V MPI 81kW ME17.5.22SKODA OCTAVIA (5E) 1.6L 8V MPI 81kW ME17.5.22ADD: 28 - INFINEON TRICORE BOSCH MEDC17 GPT FORDBOSCH EDC17CP05 TC1797 FORD DieselNEW – plugin 1042 – FORD F250 6.7L V8 32V TD SUPERDUTY 287kW EDC17CP05FORD F350 6.7L V8 32V TD SUPERDUTY 224kW EDC17CP05FORD F250/F350 6.7L V8 32V TD SUPERDUTY 298kW EDC17CP05FORD F250/F350 6.7L V8 32V TD SUPERDUTY 328kW EDC17CP05Important: F34NTA15 flat cable is required to operate in GPT modeNEW: 61 - INFINEON TRICORE BOSCH EDC17 TPROT13 VM MOTORIBOSCH EDC17C49 TC1797 AEBI-SCHMIDT DieselNEW – plugin 1070 – AEBI-SCHMIDT MT750 4.5L V6 115kW EDC17C49ADD: 46 - INFINEON TRICORE CONTINENTAL ACM_MCM MEB TRUCK CAN LINETEMIC ACM2.1/AT25256 TC1796 ACM MERCEDES TRUCKNEW – plugin 1029 – ACM MERCEDES TRUCKWARNING: in order to communicate with this ECU ACM2.1/AT25256 using the plugin 1029 it is required the new cable F34NTA20F34NTA20ADD: 46 - INFINEON TRICORE CONTINENTAL ACM_MCM MEB TRUCK CAN LINECONTINENTAL-SIEMENS-VDO HDEP MCM2.1 TC1797 MERCEDES TRUCK E6 DieselNEW – plugin 1030 – MERCEDES TRUCK EURO6PONSEE FORWARDERS EURO6CLAAS JAGUAR EURO6FENDT KATANA 65 EURO6WARNING: in order to communicate with this ECU HDEP MCM2.1 using the plugin 1030 it is required the new cable F34NTA19F34NTA19ADD: 50 - INFINEON TRICORE SIEMENS SSM VAGCONTINENTAL-SIEMENS-VDO Simos18.X TC1791_384/TC1793_384 VAG PetrolNEW – plugin 830 –AUDI A1 (8X) 1.8L 16V TFSI 141kW SIMOS18.XAUDI A3 (8V) 1.8L 16V TFSI 132kW SIMOS18.XAUDI A3 (8V) 2.0L 16V TFSI 162kW SIMOS18.XAUDI A4 (B8-B9) 2.0L 16V TFSI 132-140-165-185kW SIMOS18.XAUDI A5 (8F/8T) 2.0L 16V TFSI 165kW SIMOS18.XAUDI A6 (C7) 1.8L 16V TFSI 140kW SIMOS18.XAUDI A6 (C7) 2.0L 16V TFSI 183-185kW SIMOS18.XAUDI A7 (4G) 1.8L 16V TFSI 140kW SIMOS18.XAUDI A7 (4G) 2.0L 16V TFSI 140-162-183-185kW SIMOS18.XAUDI Q3 (8U) 2.0L 16V TFSI 132-162kW SIMOS18.XAUDI Q5 (8RB) 2.0L 16V TFSI 132-162kW SIMOS18.XAUDI Q7 (4M) 2.0L 16V TFSI 185kW SIMOS18.XAUDI S1 (8X) 2.0L 16V TFSI 170kW SIMOS18.XAUDI S3 (8V) 2.0L 16V TFSI 205-210-220kW SIMOS18.XAUDI TT (FV) 1.8L 16V TFSI 132kW SIMOS18.XAUDI TT (FV) 2.0L 16V TFSI 161-169-210-228kW SIMOS18.XSEAT LEON (5F) 1.8L 16V TSI-TFSI 132kW SIMOS18.XSEAT LEON (5F) 2.0L 16V TSI CUPRA 195kW SIMOS18.XSKODA OCTAVIA (5E) 1.8L 16V TSI-TFSI 132kW SIMOS18.XSKODA OCTAVIA (5E) 2.0L 16V TSI RS-GTI 162-169kW SIMOS18.XSKODA SUPERB (3V) 1.8L 16V TSI-TFSI 132kW SIMOS18.XVOLKSWAGEN EOS (1F8) 2.0L 16V TFSI 162kW SIMOS18.XVOLKSWAGEN BEETLE (A5)/JETTA 6-7 1.8L 16V TFSI 125kW SIMOS18.XVOLKSWAGEN BEETLE (A5)/JETTA 6 2.0L 16V TFSI 154-155-162kW SIMOS18.XVOLKSWAGEN GOLF 7 1.8L 16V TFSI 132kW SIMOS18.XVOLKSWAGEN GOLF 7 2.0L 16V TFSI 162-205kW SIMOS18.XVOLKSWAGEN GOLF 7 2.0L 16V GTI 155-162-169-194kW SIMOS18.XVOLKSWAGEN GOLF 7 2.0L 16V R 213-220kW SIMOS18.XVOLKSWAGEN LAMANDO 1.8L 16V TSI 132kW SIMOS18.XVOLKSWAGEN LAMANDO 2.0L 16V TFSI 161kW SIMOS18.XVOLKSWAGEN PASSAT (B7-B8-B9) 1.8L 16V TFSI 125-132kW SIMOS18.XVOLKSWAGEN PASSAT (B8-B9) 2.0L 16V TFSI 162kW SIMOS18.XVOLKSWAGEN POLO (6C) 1.8L 16V TSI-GTI 141kW SIMOS18.XVOLKSWAGEN SCIROCCO 3 2.0L 16V TFSI-GTS-WRC 132-162kW SIMOS18.XVOLKSWAGEN TOURAN 1.8L 16V TSI 132kW SIMOS18.XPORSCHE MACAN (95B) 2.0L 16V TFSI 185kW SIMOS18.XCONTINENTAL-SIEMENS-VDO Simos12.X TC1797 VAG PetrolNEW – plugin 1067 –AUDI A3 (8V-8P) 1.8L 16V FSI-TFSI 162kW SIMOS12.XAUDI A4 (B8) 1.8L 16V TFSI 125kW SIMOS12.XAUDI A4 (B8) 2.0L 16V TFSI 165kW SIMOS12.XAUDI A5 (8F/8T) 1.8L 16V TFSI 106-125-130kW SIMOS12.XAUDI A5 (8F/8T) 2.0L 16V TFSI 165-169kW SIMOS12.XAUDI A7 (4G) 2.0L 16V TFSI 165kW SIMOS12.XAUDI Q5 (8RB) 2.0L 16V TFSI 132-165-169kW SIMOS12.XAUDI S3 (8P) 2.0L 16V TFSI 205-210-220kW SIMOS12.XAUDI TT (8J) 1.8L 16V FSI 162kW SIMOS12.XAUDI TT (FV) 1.8L 16V TSI 162kW SIMOS12.XAUDI TT (8J) 2.0L 16V TFSI 210-228kW SIMOS12.XImportant: F34NTA18 flat cable is required to operate in SSM modeMOTOROLA MPC55XX CPUs:ADD : 06 - MOTOROLA MPC55XX JTAGCONTINENTAL-SIEMENS-VDO CM2250 MPC5566 PETERBILT DieselNEW – plugin 1028 – PETERBILT 386 15.0L ISX15 298kW CM2250ADD : 43 - MOTOROLA MPC55XX BAMCONTINENTAL-SIEMENS-VDO MPC5534 ACM VOLVONEW – plugin 1041 – VOLVO WHEEL LOADERS ACMRENESAS SH7050 CPUs:ADD : 07 - RENESAS SH7050DELPHI DCM3.7AP SH72543R CASE/DOOSAN/NEW HOLLAND DieselNEW - plugin 1034 – CASE FARMALL 55 C CVT 2.2L 39.5kW DCM3.7APMITSUBISHI MH7XXX/MH8XXX CPUs:ADD : 08 – MITSUBISHI MH7XXX/8XXXMITSUBISHI F8T86571 MH8115F YAMAHA PetrolNEW – plugin 1033 – YAMAHA ATV WOLVERINE X4 0.85L 50kW F8T86571MITSUBISHI E6T32xxx MH8102F MITSUBISHI PetrolNEW – plugin 1038 – MITSUBISHI PAJERO V60 3.5L V6 24V 150kW E6T32xxxMITSUBISHI 33920-98J80 MH8115F SUZUKI PetrolNEW – plugin 1040 – SUZUKI MARINE DF 300 3.6L V6 220kW 33920-98J80NEC CPUs:ADD : 36 - NEC NBDDENSO 270536-6941 NEC 76F0040GD TOYOTA PetrolNEW - plugin 1031 – TOYOTA RAV4 (A2) 2.0L 16V 4L 110kW 270536-6941DENSO 275036-7581 NEC 76F0085 TOYOTA PetrolNEW - plugin 1068 – TOYOTA HILUX/VIGO (AN120-AN130) 2.7L 16V L4 VVT-i DOHC FLEX 120kW 275036-7581 FREESCALE ST MPC56XX SPC56X CPUs:ADD : 37 – FREESCALE ST MPC56XX SPC56XCONTINENTAL-SIEMENS-VDO CM2350 MPC5674F GENERIC CUMMINS ENGINE DieselNEW – plugin 638 – GENERIC CUMMINS ENGINE CM2350AGENERIC CUMMINS ENGINE CM2350BDelphi DCM6.2AP MPC5674F HYUNDAI DieselNEW – plugin 1024 – HYUNDAI i20 Mk2 1.1L 12V CRDi 55kW DCM6.2APKIA RIO/K2 (YB) 1.1L 12V CRDi 55kW DCM6.2APADD : 44 – FREESCALE MPC56XX BAMDelphi DCM6.2AP MPC5674F HYUNDAI DieselNEW - plugin 1063 – HYUNDAI i20 Mk2 1.1L CRDi 55kW DCK6.2APKIA RIO/K2 (YB) 1.1L 12V CRDi 55kW DCM6.2APNEW PLUG-IN LISTPLGID ECU Brand ECU Model Brand Connection Type Micro Flash Ext Category638 Continental-Siemens-VDO CM2350Generic CumminsEngine37 - FREESCALE/STMPC56XX/SPC56X JTAG MPC5674F TRUCK830 Continental SIMOS18.x VAG 50 - INFINEON TRICORE SIEMENSSSM VAG TC1791_384/TC1793_384 CAR951 BOSCH REXROTH SRC 9-34 GEARBOXCVT AGCO03 - INFINEON TRICORE NO PSWCANLINE TC1796 M58BW032FB TRACTOR1024 Delphi DCM6.2AP Hyundai 37 - FREESCALE/STMPC56XX/SPC56X JTAG MPC5674F CAR1028 Continental-Siemens-VDO CM2250 Peterbilt 06 - MOTOROLA MPC5500 JTAG MPC5566 TRUCK1029 Temic ACM2.1/AT25256 MEB Truck 46 - INFINEON TRICORE TEMIC MCMACM MERCEDES OBD TC1796 TRUCK1030 Continental-Siemens-VDO HDEP MCM2.1 MEB Truck46 - INFINEON TRICORE TEMIC MCMACM MERCEDES OBD TC1797 TRUCK1031 Denso 275036-6941 Toyota 36 - NEC NBD 76F0040GD CAR 1032 Bosch DCU15 DAF 02 - STMICROELECTRONICS ST10 ST10C167 AM29F400BT TRUCK 1033 Mitsubishi F8T86571 Yamaha 08 - MITSUBISHI MH7XXX/MH8XXX MH8115F BIKE1034 Delphi DCM3.7AP Case/Doosan/NewHolland 07 - RENESAS SH7050 SH72543RTRUCKTRACTOR1035 Bosch ME17.9.71 PSA 03 - INFINEON TRICORE NO PSWCANLINE TC1724 CAR1037 Bosch EDC7C1 International 01 - MOTOROLA MPC500 MPC555/MPC556 TRUCK 1038 Mitsubishi E6T32xxx Mitsubishi 08 - MITSUBISHI MH7XXX/MH8XXX MH8102F CAR1039 Bosch ME17.5.22 VAG 23 - INFINEON TRICORE BOSCHMEDC17 GPT VAG TC1724 CAR1040 Mitsubishi 33920-98J80 Suzuki 08 - MITSUBISHI MH7XXX/MH8XXX MH8102F MARINE1041 Continental-Siemens-VDO ACM Volvo 43 - MOTOROLA MPC55XX BAM MPC5534 TRUCK1042 Bosch EDC17CP05 Ford 28 - INFINEON TRICORE BOSCHMEDC17 GPT FORD TC1797 CAR1057 BOSCH ME17.2.4/BMS-MP BMW 03 - INFINEON TRICORE NO PSWCANLINE TC1791/TC1793 BIKE1063 Delphi DCM6.2AP Hyundai 44 - FREESCALE MPC56XX BAM MPC5674F CAR1064 Bosch MED17.0.7 Ford 04 - INFINEON TRICORE BOSCHMEDC17 TPROT2/4/7 TC1782 CAR1065 Bosch MEVD17.8.4 BMW 03 - INFINEON TRICORE NO PSWCANLINE TC1797 CAR1067 Continental SIMOS12.x VAG 50 - INFINEON TRICORE SIEMENSSSM VAG TC1797 CAR1068 Denso 275036-7581 Toyota 36 - NEC NBD 76F0085 CAR1070 BOSCH EDC17C49 AEBI SCMIDT 61 – INFINEON TRICORE BOSCHEDC17 TPROT13 VM MOTORI TC1797 TRUCKDIMSPORT S.r.l.。
SAP_SD配置文件
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DEVK900022
DEVK900026
DEVK900033
定义销售区
SPRO
销售和分销主数据业务合作伙伴客户销售定义销售区
000001Europe
000002North America
000003South America
000004China
000005Japan
000006Korea
SPRO
企业结构分配销售和分销给销售范围分配销售办公室
3030销售组织(SZ)01外销01标准3030销售办公室(SZ)
3030销售组织(SZ)01外销02LCM3030销售办公室(SZ)
3030销售组织(SZ)01外销03CG3030销售办公室(SZ)
3030销售组织(SZ)02内销01标准3030销售办公室(SZ)
02国外客户Foreign Customer
03集团内客户Internal Customer
04个人客户Individual Customer
05一次性客户One time Customer
2015-6-9
DEVK900022
DEVK900026
DEVK900033
定义物料组
SPRO
后勤-常规物料主数据设置关键字段与销售和分销定义物料组
Z003出具发票方Bill-to party0100001000010000199999
Z004付款方Payer0100001000010000199999
Z005NodeNode0500000200010000029999
Z006品牌名称Brand Name0600000500010000059999
3030销售办公室(SZ)C02组02
bat12性能
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参数名称
符号
规范值
单位
测试条件
重复峰值阻断电压
VDRM
600
V
RMS通态电流
It(RMS)
1
A
T1≤66℃
浪涌电流
ITSM
12.5
A
tp=20ms,Tj=25℃
通态电流上升值
dI/dt(Q1-3)
50
A/uS
ITM=20A,IG=0.2A
门极峰值电流
IGM
2
A
平均门极耗散功率
PG(AV)
0.1
W
贮存温度
Tstg
-40~+150
℃
结温
Tj
-40~+125
℃
电特性(Tj=25℃除非另有规定)
参数名称
符号
规范值
单位
测试条件ห้องสมุดไป่ตู้
触发电流
IGT
≤10
mA
VD=12V,IT=0.1A
T2+G+
≤10
mA
T2+G-
≤10
mA
T2-G-
≤10
mA
T2-G+
触发电压
VGT
≤1.5
V
VD=12V,IT=0.1A
维持电流
IH
≤30
mA
VD=12V,IT=0.1A
电压上升率
dv/dt
≥50
V/uS
VD=67% VDRM
通态压降
VTM
≤1.5
V
IT=1.4A
断态漏电流
IDRM
≤0.5
mA
VD=VDRM,TJ=125℃
红警代码
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[CrateRules]CrateMaximum=255 箱子数值不超过255CrateMinimum=1 箱子数值不低于1CrateRadius=3.0 箱子里的属性提升可以给3单位长内的人CrateRegen=3 每3分钟随机产生箱子SilverCrate=HealBase 单人游戏中可以产生的箱子类型SoloCrateMoney=5000 单人游戏中钱箱的钱数UnitCrateType=none 产生单位的箱子可以产生任何没有CreatGoddie=no的单位WoodCrate=Money 木箱中的东西?WaterCrate=Money 水箱中的东西?HealCrateSound=HealCrate获取生命(+血)箱子的声音WoodCrateImg=CRA TE 木箱的形态CrateImg=CRATE 箱子的形态WaterCrateImg=WCRATE 水中箱子的形态FreeMCV=yes 能随机产生基地车地图触发箱子码(捡箱子)升级14 补血2 核弹12 坦克1 矿石15 钱0/6 隐身3 小爆4大爆5 毒爆16 开地图8 黑屏7 加强9/13 速度10 瞬间动11EligibleForDelayKill=yes 建筑是油桶DeathWeapon=BarrelExplosion 油桶武器Explosion=BRRLEXP2----------油桶动画Warhead=OilExplosionWHAnim=RING1 气波动画IvanWarhead=IvanWH 疯狂伊万炸弹弹头IvanDamage=450 疯狂伊万炸弹伤害IvanTimedDelay=450 疯狂伊万炸弹延迟时间CanDetonateTimeBomb=no 是否能手动引爆炸弹CanDetonateDeathBomb=no 是否能手动引爆装于自己部队上的炸弹NukeSilo=true填true或false。
这个代码指定建筑是否为核弹井。
卫星列表
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Western HemisphereLocation Satellite SatellitebusSourceOperator TypeCoverageLaunchdate/rocket(GMT)AlllocationsRemarksAs of148.0°W EchoStar-1LockheedMartinAS-7000USEchostar/DISHNetworkDirectBroadcasting28December1995, LongMarch 2E119°W(1996-1999),148.0°W(1999—)Scheduled to moveto 77°Wsoon2009-02-06139.0°W Americom-8LockheedMartinA2100AUSSES Americom& AT&TAlascomTelevisionand radiobroadcasting24 Cband(Canada,Caribbean,mainlandUSA)19December2000,Ariane 5GPreviouslyGE-8 forGEAmericom; alsoknown asAurora III;replacedSatcomC-5 inMarch20012008-11-20137.0°W Americom-7LockheedMartinUS SES AmericomTelevisionand radioMainlandUSA,14SeptemberPreviouslyGE-7 for2008-11-20A2100A broadcasting Canada,Mexico2000,Ariane 5GGEAmericom135.0°W Americom-10LockheedMartinA2100AUS SES AmericomTelevisionand RadioBroadcastingMainlandUSA,Canada,Caribbean, Mexico5 February2004, AtlasII AS2008-11-20133.0°W Galaxy-12 OrbitalSciencesCorporationStar-2US IntelsatTelevision/RadioBroadcasting9 April2003,Ariane 5G123.0°WreplacedfailedGalaxy 15131.0°W Americom-11LockheedMartinA2100AUS SES AmericomTelevisionand RadioBroadcasting24C-BandTranspondersMainlandUSA,Canada,Caribbean, Mexico19 May2005, AtlasII AS2008-11-20129.0°W Galaxy-27SpaceSystems/Loral FS-1300US IntelsatTelevisionbroadcasting & SatelliteInternetAccess25September1999,Ariane 44LPFormerlyknown asIA-7 andTelstar-72008-11-20Ciel-2ThalesAlenia SpaceSpacebus4000 C4CanadaCiel SatelliteGroupDirectBroadcasting10December2008,Proton-MLeased toEchostar/DishNetwork2009-02-06127.0°W Galaxy-13BoeingBSS-601US Intelsat24C-Bandtransponders1 October2003,Zenit-3SLSamesatelliteasHorizons-12008-11-20Horizons-1BoeingBSS-601USJapan SatelliteSystems24Ku-Bandtransponders1 October2003,Zenit-3SLSamesatelliteasGalaxy-132008-11-20125.0°W Galaxy-14 OrbitalSciencesCorporationStar-2US Intelsat24C-Bandtransponders -NorthAmerica13 August2005,Soyuz-FG/Fregat2008-11-20123.0°W Galaxy-18 SpaceSystems/Loral LS-1300US IntelsatTelevisionand radiobroadcastingNorthAmerica21 May2008,Zenit-3SLHybridC/Ku-band satellite2008-11-19121.0°W Galaxy-23SpaceSystems/LorUS IntelsatDirectBroadcastinNorthAmerica7 August2003,HybridC/Ku/Ka-b2008-11-26al FS-1300 g Zenit-3SL andsatellite;C-bandpayloadreferred toasGalaxy-23EchoStar-9 SpaceSystems/Loral FS-1300USEchostar/DISHNetworkDirectBroadcastingNorthAmerica7 August2003,Zenit-3SLHybridC/Ku/Ka-bandsatellite;Ku/Ka-bandpayloadreferred toasEchoStar-92008-11-26119.0°W DirecTV-7SSpaceSystems/Loral LS-1300US DirecTVDirectBroadcasting54Ku-bandtransponders4 May 2004,Zenit-3SL8 activetransponders at thistime2008-11-26EchoStar-7LockheedMartinA2100AXUSEchostar/DISHNetworkDirectBroadcasting32Ku-bandtranspond21 February2002, AtlasIII B21 activetransponders at this2008-11-26ers time118.8°W Anik F3EADSAstriumEurostar-3000SCanada Telesat CanadaDirectBroadcasting24C-bandtransponders, 32Ku-bandtransponders, 2Ka-bandtransponders11 April2007,ProtonKu-Bandleased toEchostar/DishNetwork2008-11-26116.8°W SatMex-5HughesHS-601HPMexico Satmex24C-bandtransponders, 24Ku-bandtransponders5 December1998,Ariane 42L2008-11-26115.0°W XM-Blues US30 October2006,Zenit-3SL Solidaridad-2Mexico Satmex8 October1994,Ariane 44L113.0°W Satmex-6Mexico Satmex27 May2006, Ariane 5-ECA111.1°W Anik F2Boeing 702 Canada Telesat Canada DirectBroadcasting17 July2004,Ariane 5GHybridC/Ku/Ka-bandsatellite110.0°W EchoStar-11SpaceSystems/Loral LS-1300USEchostar/DISHNetworkDirectBroadcasting17 July2008,Zenit-3SL2008-11-19EchoStar-10A2100AXS USEchostar/DISHNetworkDirectBroadcasting15 February2006,Zenit-3SLDirecTV-5LS-1300US DirecTVDirectBroadcasting7 May 2002,Proton32Ku-bandtransponders107.3°W Anik F1Boeing 702 Canada Telesat CanadaDirectBroadcasting21November2000,Ariane 44LHybridC/Ku-band satellite;will bereplacedby AnikF1RAnik F1R Eurostar-300Canada Telesat Canada Direct 8 Hybrid0Broadcasting, WAASPRN #138 September2005,ProtonC/Ku-band satellite;willreplaceAnik F1105.0°W AMC-18A2100A US SES AmericomDirectBroadcastingMainlandUSA,Canada,Caribbean, Mexico8 December2006,Ariane 5Americom-15A2100AXS US SES AmericomDirectBroadcastingCONUS,Alaska,Hawaii15 October2004,Proton-MHybridKu/Ka-bandsatellite;twin ofAmericom-16103.0°W Americom-1A2100A US SES AmericomMainlandUSA,Canada,Mexico,Caribbean8September1996, AtlasII AHybridC/Ku-band satellite102.8°W SPACEWAY-1Boeing 702 US DirecTVDirectBroadcastin26 April2005,g Zenit-3SL101.2°W DirecTV-4SBoeing 601 US DirecTVDirectBroadcasting27November2001,Ariane 44LP48Ku-bandtransponders101.1°W DirecTV-9SLS-1300US DirecTVDirectBroadcasting13 October2006,Ariane5-ECA101.0°W AMC-4A2100AX US SES Americom MainlandUSA,Canada,Mexico,Caribbean, CentralAmerica13November1999,Ariane 44LPHybridC/Ku-band satellite100.8°W DirecTV-8LS-1300US DirecTV DirectBroadcasting22 May2005,ProtonHybridKu/Ka-bandsatellite99.2°W SPACEWAY-2US16November 2005,Ariane5-ECA99.0°W Galaxy-16FS-1300Intelsat 18 June 2006, Zenit-3SL97.0°W Galaxy-19SpaceSystems/Loral FS-1300US IntelsatTelevisionand RadioBroadcasting24 C- and28Ku-bandtransponders NorthAmerica24September2008,Zenit-3SL2008-11-2095.0°W Galaxy 3C US 15 June 2002, Zenit-3SL93.0°W Galaxy-26SSLFS-1300US15 February1999,Proton-K91.0°W Nimiq 1A2100AX Canada Telesat CanadaDirectBroadcasting20 May1999,Proton32Ku-bandtranspondersGalaxy 17Spacebus-3000B3US IntelsatTelevisionand radiobroadcastingNorthAmerica4 May 2007,Ariane5-ECA74°WJuly 2007to March2008HybridC/Ku-band satellite2008-06-1389.0°W Galaxy-28FS-1300ITSO Intelsat TheAmericas23 June2005,HybridC/Ku/Ka-bZenit-3SL andsatellite;launchedasTelstar 887.0°W AMC 3A2100A US SES Americom MainlandUSA,Canada,Mexico,Caribbean4September1997, AtlasII AHybridC/Ku-band satellite85.0°W XM-RhythmBoeing 702 USXM SatellieRadio HoldingsRadioBroadcastingCONUS28 February2005,Zenit-3SLAmericom-2A2100A US SES AmericomDirectBroadcastingMainlandUSA,Canada,Mexico30 January1997,Ariane 44LAmericom-16A2100AXS US SES AmericomDirectBroadcastingCONUS,Alaska,Hawaii17December2004, AtlasV (521)HybridKu/Ka-bandsatellite;twin ofAmericom-1584.0°W Brasilsat-B3Brazil4 February1998,Ariane 44LP83.0°W Americom-93000B3US SES AmericomDirectBroadcastingCONUS,Canada,Mexico,CentralAmerica,Caribbean7 June2003,ProtonHybridC/Ku-band satellite82.0°W Nimiq 2A2100AX Canada Telesat CanadaDirectBroadcasting29December2002,ProtonHybridKu/Ka-bandsatellite Nimiq 3HS-601Telesat CanadaDirectBroadcasting9 June1995,Ariane 42PPreviouslyDirecTV-3forDirecTV80.9°W SBS-6HS-393 US Intelsat Televisionand RadioBroadcasting12 October1990,Ariane 44L74°WNov 1995to Jan2008Beyondexpectedend of life.ServesArgentinanow2008-06-1379.0°W Americom Spacebus-20US SES Americom CONUS, 28 October-500 Canada,Mexico 1998, Ariane 44LSatcom C3US10September1992,Ariane 44LPInclinedorbit77.0°W EchoStar-4A2100AX USEchostar/DISHNetworkDirectBroadcasting8 May 1998,ProtonspareEchoStar-8FS-1300USEchostar/DISHNetworkDirectBroadcasting21 August2002,Proton110°W2008-11-1976.8°W Galaxy 4R US 19 April2000,Ariane 42LInclinedorbit75.0°W Brasilsat-B1Brazil10 August1994,Ariane 44LP74.9°W Galaxy-9US 24 May1996, DeltaII (7925)spare74.0°W Horizons-2STAR Bus US Intelsat JSATTelevisionand RadioBroadcastingCONUSCanadaCaribbean21December2007,Ariane 5GS20 KuXpndrs2008-06-1372.7°W EchoStar-6FS-1300USEchostar/DISHNetworkDirectBroadcasting14 July2000, AtlasII AS2008-11-1972.5°W Directv-1R US 10 October 1999, Zenit-3SL72.0°W AMC-6A2100AX US SES Americom CONUS,Canada,Mexico,Caribbean, CentralAmerica22 October2000,Proton-MHybridC/Ku-band satellite;a portionof theKu-bandpayload isdedicatedto SouthAmerica71.0°W Nahuel-1A Argentina30 January1997,Ariane 44L70.0°W Brasilsat-B4Brazil17 August2000,Ariane 44LP65.0°W Brasilsat-B2Brazil28 March1995,Ariane44LP+63.0°W Estrela doSul 1Brazil11 January2004,Zenit-3SL61.5°W EchoStar-12A2100AXS US17 July2003, AtlasV (521)FormerlyRainbow-1,purchased fromVOOM EchoStar-3A2100AX USEchostar/DISHNetworkDirectBroadcasting5 October1997, AtlasII AS61.0ºW HispasatAmazonasSpain4 August2004,Proton-M58.0°W Intelsat-9HS601HP US 28 July2000,Zenit-3SLformerlyPAS-955.5°W Intelsat-805ITSO18 June1998, AtlasII AS53.0°W Intelsat-707ITSO14 March1996,Ariane 450.0°W Intelsat-705ITSO22 March1995, AtlasII AS45.0°W Intelsat-1RHS702 US16November2000,Ariane 5GformerlyPAS-1R43.1°W Intelsat-3RHS601 US12 January1996,Ariane 44LformerlyPAS-3R43.0°W Intelsat-6BHS601HP22December1998,Ariane 42LformerlyPAS-6B40.5°W NSS-806LM AS-7000 Netherlands28 February1998, AtlasII AS37.5°W NSS-10Spacebus4000C33 February2005,ProtonTelstar-11USInclinedorbit34.5°W Intelsat-903ITSO30 March2002,Proton-K31.5°W Intelsat-801ITSO1 March1997,Ariane 44P30.0°W Hispasat-1CSpain3 February2000, AtlasII ASHispasat-1DSpain18September2002, AtlasII AS27.5°W Intelsat-907ITSO15 February2003,Ariane 44L24.5°W Intelsat-905ITSO5 June2002,Ariane 44L24.0°W Cosmos2379RussiaInclinedorbit22.0°W NSS-7LM A2100AX Netherlands16 April2002,Ariane 44L20.0°W Intelsat-603ITSO14 March1990,CommercialTitan IIIInclinedorbit18.0°W Intelsat-901ITSO9 June2001,Ariane 44L15.5°W Inmarsat 3F2IMSOEGNOSPRN #1206September1996,Proton-K15.0°W Telstar 12SSL US 19 October 1999, Ariane 44LP14.0°W Gorizont32RussiaInclinedorbit Express-A4Russia12.5°W AtlanticBird 1EUMETSAT28 August2002,Ariane 5G11.0°W Express-A3Russia24 June2000,Proton-K8.0°W AtlanticBird 2Eutelsat25September2001,Ariane 44PTelecom 2D France8 August1996,Ariane 44LInclinedorbit7.0°W Nilesat101Egypt28 April1998,Ariane 44P Nilesat102Egypt17 August2000,Ariane 44LP Nilesat103Egypt27 February1998,Ariane 42P AtlanticBird 4Eutelsat27 February1998,Ariane 42P5.0°W AtlanticBird 3Eutelsat4.0°W AMOS 1Israel16 May1996,Ariane 44L AMOS 2Israel27December2003,Soyuz-FG/Fregat3.4°W Meteosat828 August2002,Ariane 5G1.0°W Intelsat10-02ITSO16 June2004,Proton-M0.8°W Thor 2Norway20 May1997, DeltaIIThor 3Norway10 June1998, DeltaII (7925-9.5)[edit] Eastern HemisphereLocation Satellite SatellitebusSource Operator TypeCoverageLaunchdate/rocket(GMT)AlllocationsRemarks As of0.5°E Meteosat7ESAWeathersatellite2September1997,Ariane 44LPInclinedorbit3.0°E Telecom2A16December1991,Ariane 44L4.0°E Eurobird 4Eutelsat 2 September 1997, Ariane 44LP4.8°E Sirius 4A2100AX Sweden SES Sirius Comsat52Ku-bandcoveringEurope2Ka-bandcoveringScandinavia17November2007,Proton M2007-11-18 Astra 1CLuxembourg12 May1993,Ariane 42L0.9°inclinedorbit5.0°E Sirius 3Sweden 5 October 1998, Ariane 44L5.2°E Astra 1A GE 4000 11 December 1988, Ariane 44LP6.0°E Skynet 4F Militarycommunica7 February2001,Inclinedorbittions Ariane 44L7.0°E EutelsatW3AEutelsat15 March2004,Proton-M9.0°E Eurobird 9Eutelsat 21November1996, AtlasII AformerlyHot Bird 29.5°E Meteosat6ESAWeathersatellite20November1993,Ariane 44LPInclinedorbit10.0°E EutelsatW1Eutelsat6September2000,Ariane 44P12.5°E Raduga29RussiaInclinedorbit13.0°E Hot Bird 6Eutelsat21 August2002, AtlasV (401)Hot Bird7AEutelsat11 March2006,Ariane5-ECAHot Bird 8Eutelsat 4 August 2006, Proton16.0°E EutelsatW2Eutelsat5 October1998,Ariane 44L19.2°E Astra 1ELuxembourg19 October1995,Ariane 42L Astra 1FLuxembourg8 April1996,Proton-K Astra 1GLuxembourg12November1997,Proton-K Astra 1HLuxembourg18 June1999,Proton-K Astra 1KRLuxembourg20 April2006, AtlasV (411) Astra 1LLuxembourg4 May 2007,Ariane5-ECA20.0°E Arabsat2A9 July 1996,Ariane 44LInclinedorbit21.0°E AfriStar US 28 October 1998, Ariane 44L21.5°E EutelsatW6Artemis ESAEGNOSPRN #12412 July2001,Ariane 5GInclinedorbit.23.5°E Astra 3A Luxembourg29 March2002,Ariane 44L25.0°E Inmarsat 3F5IMSOEGNOSPRN #1264 February1998,Ariane 44LP25.5ºE Eurobird 2Eutelsat25.8°E Badr 226.0°E Badr 326.2°E Badr C28.2°E Astra 2A HS601HPLuxembourgAstra 2BLuxembourg14September2000, Ariane 5GAstra 2C Luxembourg16 June2001,Proton-KAstra 2D Luxembourg20December2000,Ariane 5G28.5°E Eurobird 1Spacebus3000Eutelsat8 March2001,Ariane 5G30.5°E Arabsat2BArabsat13November1996,Ariane 44L31.3°E Astra 1D HS-601LuxembourgSES Astra Comsat24Ku-band1 November1994,Ariane 419.2°E(1994–1998)28.2°E(1998)19.2°E(1998–1999)28.2°E2007-11-14(1999–2001)24.2°E(2001–2003)23.0°E(2003–2004)23.5°E(2004–2007)30.0°E(2007—) 31.5°E Sirius 2Sweden33.0°E Eurobird 3Eutelsat27September2003,Ariane 5G Intelsat802LM-3000 ITSO25 June1997,Ariane 44P36.0°E EutelsatSesat 1Eutelsat17 April2000,Proton-K Eutelsat Eutelsat24 May。
TSM12_pdf
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Interrupt output (Open drain) I2C enable(Low enable) I2C address selection Ch1 sensitivity selection bit0 Ch1 sensitivity selection bit1 Ch1 sensitivity selection bit2 Output mode selection Digital SYNC/OPT (Single Output / Multi Output Note 1) Input/Output Sync pulse input /output VDD Power Power (2.5V~5.0V) CS1 Analog Input CH1 capacitive sensor input CS2 Analog Input CH2 capacitive sensor input CS3 Analog Input CH3 capacitive sensor input CS4 Analog Input CH4 capacitive sensor input Refer to 6.3 SYNC/OPT implementation
1 Specification
1.1 General Feature
12-Channel capacitive sensor with auto sensitivity calibration Selectable output operation (single mode / multi-mode) Independently adjustable in 8 step sensitivity Sync function for multi chip application Touch intensity can be detectable within 3 steps (Low, Middle and High) Adjustable internal frequency with external resister Adjustable response time and interrupt level by the control registers I2C serial interface Embedded high frequency noise elimination circuit IDLE mode to save the consumption Embedded power key function on channel 1 for mobile phone application RoHS compliant 32QFN, 32MLF packages
各国语言简写国际化
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各国语言的简写各国语言缩写-各国语言简称en 英文en_US 英文(美国)ar 阿拉伯文ar_AE 阿拉伯文(阿拉伯联合酋长国)ar_BH 阿拉伯文(巴林)ar_DZ 阿拉伯文(阿尔及利亚)ar_EG 阿拉伯文(埃及)ar_IQ 阿拉伯文(伊拉克)ar_JO 阿拉伯文(约旦)ar_KW 阿拉伯文(科威特)ar_LB 阿拉伯文(黎巴嫩)ar_L Y 阿拉伯文(利比亚)ar_MA 阿拉伯文(摩洛哥)ar_OM 阿拉伯文(阿曼)ar_QA 阿拉伯文(卡塔尔)ar_SA 阿拉伯文(沙特阿拉伯)ar_SD 阿拉伯文(苏丹)ar_SY 阿拉伯文(叙利亚)ar_TN 阿拉伯文(突尼斯)ar_YE 阿拉伯文(也门)be 白俄罗斯文be_BY 白俄罗斯文(白俄罗斯)bg 保加利亚文bg_BG 保加利亚文(保加利亚)ca 加泰罗尼亚文ca_ES 加泰罗尼亚文(西班牙)ca_ES_EURO 加泰罗尼亚文(西班牙,Euro) cs 捷克文cs_CZ 捷克文(捷克共和国)da 丹麦文da_DK 丹麦文(丹麦)de 德文de_AT 德文(奥地利)de_A T_EURO 德文(奥地利,Euro)de_CH 德文(瑞士)de_DE 德文(德国)de_DE_EURO 德文(德国,Euro)de_LU 德文(卢森堡)de_LU_EURO 德文(卢森堡,Euro)el 希腊文el_GR 希腊文(希腊)en_AU 英文(澳大利亚)en_CA 英文(加拿大)en_GB 英文(英国)en_IE 英文(爱尔兰)en_IE_EURO 英文(爱尔兰,Euro)en_NZ 英文(新西兰)en_ZA 英文(南非)es 西班牙文es_BO 西班牙文(玻利维亚)es_AR 西班牙文(阿根廷)es_CL 西班牙文(智利)es_CO 西班牙文(哥伦比亚)es_CR 西班牙文(哥斯达黎加)es_DO 西班牙文(多米尼加共和国) es_EC 西班牙文(厄瓜多尔)es_ES 西班牙文(西班牙)es_ES_EURO 西班牙文(西班牙,Euro) es_GT 西班牙文(危地马拉)es_HN 西班牙文(洪都拉斯)es_MX 西班牙文(墨西哥)es_NI 西班牙文(尼加拉瓜)et 爱沙尼亚文es_PA 西班牙文(巴拿马)es_PE 西班牙文(秘鲁)es_PR 西班牙文(波多黎哥)es_PY 西班牙文(巴拉圭)es_SV 西班牙文(萨尔瓦多)es_UY 西班牙文(乌拉圭)es_VE 西班牙文(委内瑞拉)et_EE 爱沙尼亚文(爱沙尼亚)fi 芬兰文fi_FI 芬兰文(芬兰)fi_FI_EURO 芬兰文(芬兰,Euro)fr 法文fr_BE 法文(比利时)fr_BE_EURO 法文(比利时,Euro)fr_CA 法文(加拿大)fr_CH 法文(瑞士)fr_FR 法文(法国)fr_FR_EURO 法文(法国,Euro)fr_LU 法文(卢森堡)fr_LU_EURO 法文(卢森堡,Euro)hr 克罗地亚文hr_HR 克罗地亚文(克罗地亚)hu 匈牙利文hu_HU 匈牙利文(匈牙利)is 冰岛文is_IS 冰岛文(冰岛)it 意大利文it_CH 意大利文(瑞士)it_IT 意大利文(意大利)it_IT_EURO 意大利文(意大利,Euro)iw 希伯来文iw_IL 希伯来文(以色列)ja 日文ja_JP 日文(日本)ko 朝鲜文ko_KR 朝鲜文(南朝鲜)lt 立陶宛文lt_LT 立陶宛文(立陶宛)lv 拉托维亚文(列托)lv_LV 拉托维亚文(列托) (拉脱维亚)mk 马其顿文mk_MK 马其顿文(马其顿王国)nl 荷兰文nl_BE 荷兰文(比利时)nl_BE_EURO 荷兰文(比利时,Euro)nl_NL 荷兰文(荷兰)nl_NL_EURO 荷兰文(荷兰,Euro)no 挪威文no_NO 挪威文(挪威)no_NO_NY 挪威文(挪威,Nynorsk)pl 波兰文pl_PL 波兰文(波兰)pt 葡萄牙文pt_BR 葡萄牙文(巴西)pt_PT 葡萄牙文(葡萄牙)pt_PT_EURO 葡萄牙文(葡萄牙,Euro)ro 罗马尼亚文ro_RO 罗马尼亚文(罗马尼亚)ru 俄文ru_RU 俄文(俄罗斯)sh 塞波尼斯-克罗地亚文sh_YU 塞波尼斯-克罗地亚文(南斯拉夫) sk 斯洛伐克文sk_SK 斯洛伐克文(斯洛伐克)sl 斯洛文尼亚文sl_SI 斯洛文尼亚文(斯洛文尼亚)sq 阿尔巴尼亚文sq_AL 阿尔巴尼亚文(阿尔巴尼亚)sr 塞尔维亚文sr_YU 塞尔维亚文(南斯拉夫)sv 瑞典文sv_SE 瑞典文(瑞典)th 泰文th_TH 泰文(泰国)tr 土耳其文tr_TR 土耳其文(土耳其)uk 乌克兰文uk_UA 乌克兰文(乌克兰)zh 中文zh_CN 中文(中国)zh_HK 中文(香港)zh_TW 中文(台湾)Locale Description //Short String//Hex Value//Decimal Value Chinese-China //zh-cn//0x0804//2052Chinese-Taiwan //zh-tw//0x0404//1028English-United States //en-us//0x0409//1033Afrikaans //af//0x0436//1078Albanian //sq//0x041C//1052Arabic-United Arab Emirates //ar-ae//0x3801//14337Arabic-Bahrain //ar-bh//0x3C01//15361Arabic-Algeria //ar-dz//0x1401//5121Arabic-Egypt //ar-eg//0x0C01//3073Arabic-Iraq //ar-iq//0x0801//2049Arabic-Jordan //ar-jo//0x2C01//11265Arabic-Kuwait //ar-kw//0x3401//13313Arabic-Lebanon //ar-lb//0x3001//12289Arabic-Libya //ar-ly//0x1001//4097Arabic-Morocco //ar-ma//0x1801//6145Arabic-Oman //ar-om//0x2001//8193Arabic-Qata //ar-qa//0x4001//16385Arabic-Saudi Arabia //ar-sa//0x0401//1025Arabic-Syria //ar-sy//0x2801//10241Arabic-Tunisia //ar-tn//0x1C01//7169Arabic-Yemen //ar-ye//0x2401//9217Armenian //hy//0x042B//1067Azeri-Latin //az-az//0x042C//1068Azeri-Cyrillic //az-az//0x082C//2092Basque //eu//0x042D//1069Bulgarian //bg//0x0402//1026Catalan //ca//0x0403//1027Chinese-China //zh-cn//0x0804//2052 Chinese-Hong Kong SAR //zh-hk//0x0C04//3076 Chinese-Macau SAR //zh-mo//0x1404//5124 Chinese-Singapore //zh-sg//0x1004//4100 Chinese-Taiwan //zh-tw//0x0404//1028 Croatian //hr//0x041A//1050Czech //cs//0x0405//1029Danish //da//0x0406//1030Dutch-The Netherlands //nl-nl//0x0413//1043 Dutch-Belgium //nl-be//0x0813//2067English-Australia //en-au//0x0C09//3081 English-Belize //en-bz//0x2809//10249English-Canada //en-ca//0x1009//4105English-Caribbean //en-cb//0x2409//9225 English-Ireland //en-ie//0x1809//6153English-Jamaica //en-jm//0x2009//8201 English-New Zealand //en-nz//0x1409//5129 English-Phillippines //en-ph//0x3409//13321 English-South Africa //en-za//0x1C09//7177 English-Trinidad //en-tt//0x2C09//11273 English-United Kingdom //en-gb//0x0809//2057 English-United States //en-us//0x0409//1033 Estonian //et//0x0425//1061Fars //fa//0x0429//1065Finnish //fi//0x040B//1035Faroese //fo//0x0438//1080French-France //fr-fr//0x040C//1036French-Belgium //fr-be//0x080C//2060French-Canada //fr-ca//0x0C0C//3084French-Luxembourg //fr-lu//0x140C//5132 French-Switzerland //fr-ch//0x100C//4108 Gaelic-Ireland //gd-ie//0x083C//2108Gaelic-Scotland //gd//0x043C//1084German-Germany //de-de//0x0407//1031 German-Austria //de-at//0x0C07//3079 German-Liechtenstein //de-li//0x1407//5127 German-Luxembourg //de-lu//0x1007//4103 German-Switzerland //de-ch//0x0807//2055 Greek //el//0x0408//1032Hebrew //he//0x040D//1037Hindi //hi//0x0439//1081Icelandic //is//0x040F//1039Indonesian //id//0x0421//1057Italian-Italy //it-it//0x0410//1040Italian-Switzerland //it-ch//0x0810//2064 Japanese //ja//0x0411//1041Korean //ko//0x0412//1042Latvian //lv//0x0426//1062Lithuanian //lt//0x0427//1063FYRO Macedonian //mk//0x042F//1071Malay-Malaysia //ms-my//0x043E//1086Malay–Brunei //ms-bn//0x083E//2110Maltese //mt//0x043A//1082Marathi //mr//0x044E//1102Norwegian-Bokmål //no-no//0x0414//1044 Norwegian-Nynorsk //no-no//0x0814//2068Polish //pl//0x0415//1045Portuguese-Portugal //pt-pt//0x0816//2070 Portuguese-Brazil //pt-br//0x0416//1046Raeto-Romance //rm//0x0417//1047Romanian-Romania //ro//0x0418//1048 Romanian-Moldova //ro-mo//0x0818//2072 Russian //ru//0x0419//1049Russian-Moldova //ru-mo//0x0819//2073Sanskrit //sa//0x044F//1103Serbian-Cyrillic //sr-sp//0x0C1A//3098Serbian-Latin //sr-sp//0x081A//2074Setsuana //tn//0x0432//1074Slovenian //sl//0x0424//1060Slovak //sk//0x041B//1051Sorbian //sb 0x042E//1070Spanish-Spain //es-es//0x0C0A//1034Spanish-Argentina //es-ar//0x2C0A//11274 Spanish-Bolivia //es-bo//0x400A//16394Spanish-Chile //es-cl//0x340A//13322Spanish-Colombia //es-co//0x240A//9226Spanish-Costa Rica //es-cr//0x140A//5130 Spanish-Dominican Republic //es-do//0x1C0A//7178 Spanish-Ecuador //es-ec//0x300A//12298Spanish-Guatemala //es-gt//0x100A//4106 Spanish-Honduras //es-hn//0x480A//18442 Spanish-Mexico //es-mx 0x080A 2058Spanish-Nicaragua //es-ni//0x4C0A//19466 Spanish-Panama //es-pa//0x180A//6154Spanish-Peru //es-pe//0x280A//10250 Spanish-Puerto Rico //es-pr//0x500A//20490 Spanish-Paraguay //es-py//0x3C0A//15370 Spanish-El Salvador //es-sv//0x440A//17418 Spanish-Uruguay //es-uy//0x380A//14346 Spanish-Venezuela //es-ve//0x200A//8202 Sutu //sx//0x0430//1072Swahili //sw//0x0441//1089Swedish-Sweden //sv-se//0x041D//1053 Swedish-Finland //sv-fi//0x081D//2077 Tamil //ta//0x0449//1097Tatar //tt//0X0444//1092Thai //th//0x041E//1054Turkish //tr//0x041F//1055Tsonga //ts//0x0431//1073Ukrainian //uk//0x0422//1058Urdu //ur//0x0420//1056Uzbek-Cyrillic //uz-uz//0x0843//2115 Uzbek–Latin //uz-uz//0x0443//1091 Vietnamese //vi//0x042A//1066Xhosa //xh//0x0434//1076Yiddish //yi//0x043D//1085Zulu //zu//0x0435//1077。
Baumer 绝对编码器多转并行1说明书
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S u b j e c t t o m o d i fi c a t i o n i n t e c h n i c a n d d e s i g n . E r r o r s a n d o m i s s i o n s e x c e p t e d .GXP1W with clamping flange Features–Encoder multiturn / parallel –Optical sensing method–Resolution: singleturn 12 bit, multiturn 12 bit –Clamping or synchro flange–Resolution, code and preset programmable –Encoder programming by Windows software –RS232 encoder programming interfaceTechnical data - electrical ratings Voltage supply 10...30 VDC Reverse polarity protection YesConsumption w/o load ≤50 mA (24 VDC)Initializing time typ.50 ms after power on Interface 24 parallel outputs FunctionMultiturn Steps per revolution ≤4096 / 12 bit Number of revolutions ≤4096 / 12 bit Absolute accuracy ±0.03 °Sensing method OpticalCodeGray, cut gray, BCD, binary programmableCode sequence CW/CCW coded andprogrammable by connection InputsTxD, RxD (RS232)Control signals UP/DOWN inv. and zero ENABLE inv. STORE inv.Output stages PNP or NPN open collector Interference immunity DIN EN 61000-6-2Emitted interference DIN EN 61000-6-4Programming interface RS232Programmable parametersSteps per revolution Number of revolutions Code2 presets (limits)Rotation speed monitoring Diagnostic functionsSelf-diagnosisCode continuity check Multiturn sensing ApprovalUL approval / E63076GXP1W - parallelTechnical data - mechanical design Size (flange)ø58 mmShaft typeø10 mm solid shaft (clamping flange)ø6 mm solid shaft (synchro flange)FlangeClamping or synchro flange Protection DIN EN 60529IP 54 (without shaft seal), IP 65 (with shaft seal)Operating speed≤10000 rpm (mechanical) ≤6000 rpm (electric)Starting torque ≤0.015 Nm (+25 °C, IP 54) ≤0.03 Nm (+25 °C, IP 65)Rotor moment of inertia 20 gcm²Admitted shaft load ≤20 N axial ≤40 N radial MaterialsHousing: steel Flange: aluminium Operating temperature -25...+70 °CRelative humidity 95 % non-condensing Resistance DIN EN 60068-2-6Vibration 10 g, 16-2000 Hz DIN EN 60068-2-27 Shock 200 g, 6 ms Weight approx.600 gConnection Cable 1 m, connector D-SUB, 37-pinS u b j e c t t o m o d i fi c a t i o n i n t e c h n i c a n d d e s i g n . E r r o r s a n d o m i s s i o n s e x c e p t e d .GXP1W - parallelPart number GXP1W.C1Connection31Cable 1 m, axial, connectorD-SUB, 37-pin41Cable 1 m, radial, connectorD-SUB, 37-pinVoltage supply / signals1010...30 VDC / open collector NPN 2010...30 VDC / open collector PNPFlange / Solid shaft0Clamping flange / ø10 mm, IP 54 A Clamping flange / ø10 mm, IP 65 1Synchro flange / ø6 mm, IP 54BSynchro flange / ø6 mm, IP 65AccessoriesConnectors and cables10160874Female connector D-SUB, 37-pin (Z 140.001)Mounting accessories10117669Eccentric fixing, single (Z 119.006)10141255Adaptor plate for clamping flange formodification into synchro flange (Z 119.013)10117667Mounting adaptor for encoders with synchro flange (Z 119.015)10125051Mounting adaptor for encoders with clamping flange (M3) (Z 119.017)10158124Bearing flange for encoders with synchro flange (Z 119.035)10141132Spring washer coupling D1=6 / D2=10 (Z 121.C01)Programming accessories 10161019Programming cable for parallel shaftencoders, CD with ProGeber software and manual (Z 139.005)11034218CD with software ProGeber & manual (Z 150.008)Data transferS u b j e c t t o m o d i fi c a t i o n i n t e c h n i c a n d d e s i g n . E r r o r s a n d o m i s s i o n s e x c e p t e d .Connector Core colour Assignment Pin 1 white Output D0Pin 2 brown Output D1Pin 3 green Output D2Pin 4 yellow Output D3Pin 5 grey Output D4Pin 6 pink Output D5Pin 7 black Output D6Pin 8 violet Output D7Pin 9 grey/pink Output D8Pin 10 red/blue Output D9Pin 11 white/greenOutput D10Pin 12 brown/green Output D11Pin 13 white/yellow Output D12Pin 14 yellow/brown Output D13Pin 15 white/grey Output D14Pin 16 grey/brown Output D15Pin 17 white/pink Output D16Pin 18 pink/brown Output D17Pin 19 white/black Output D18Pin 20 brown/black Output D19Pin 21 grey/green Output D20Pin 22 yellow/grey Output D21Pin 23 pink/green Output D22Pin 24 yellow/pink Output D23Pin 25 – –Pin 26 ––Pin 27 yellow/blue Zero settingPin 28 brown/blue ENABLE Pin 29 brown/red STORE Pin 30 green/blue UP/DOWN Pin 31 – –Pin 32 – –Pin 33 – –Pin 34 white/blue GND-Sense Pin 35 white/red UB-Sense Pin 36 red UB Pin 37blueGNDUB Encoder voltage supply.GND Encoder ground connection relating to UB. Outputs 24 parallel output signals.D0-D23 For PNP it is recommended to utilize pull- down resistors for every data line, for NPNpull-up resistors of 4.7 kΩ.Outputs Special outputsD19 - D23 With inferior resolutions these outputsmay be configurated as special outputs. Zero settingInput for setting a zero point anywhere within the programmed encoder resolution. The zero setting operation is triggered by a High impulse and has to be in line with the selected direction of rotation (UP/DOWN). Connect to GND after setting operation for maximum interference immunity. Impulse duration >100 ms. If there is an offset being entered by programming interface the offset will be activated by the zero input.UP/DOWNUP/DOWN counting direction input.This input is standard on High. UP/DOWN means ascending output data with clock- wise shaft rotation when looking at flange. UP/DOWN-Low means ascending values with counterclockwise shaft rotation when looking at flange.ENABLEInput for activating the output drivers that are triggered by input level Low. Uponbeing on High (or less potential) the output drivers switch to high-impedance (Tristate). STOREInput for output data storage. Upon a Low input level the encoder data are stored in the intermediate memory. Upon being on High (or less potential) the current encoder position data are switched to the output drivers. This line must be applied for reliable data readout in binary code.GND-SenseInternally connected to GND and serves together with UB-Sense for measuring the encoder voltage supply.UB-SenseInternally connected to UB. In case the sensor line is not utilized the connection must be isolated (danger of short circuit).Terminal significance Terminal assignment GXP1W - parallelS u b j e c t t o m o d i fi c a t i o n i n t e c h n i c a n d d e s i g n . E r r o r s a n d o m i s s i o n s e x c e p t e d .DimensionsM4 x 7120°42 ±0.150h75870U N C 4 - 40D-SUB19751049 5.5ø 6f 633137510495.5ø 6f 6331620UNC 4 - 407017.516GXP1W - synchro flangeM3 x 7120°36f848 ±0.15870U N C 4 - 40D-SUB19751020159ø10h 633131020159ø10h 6337516UNC 4 - 40702017.516GXP1W - clamping flangeGXP1W - parallelControl inputs Input circuit Input level High >0.7 UB Input level Low <0.3 UB Input resistance10 kΩParallel outputs Output circuitOpen collector circuit-proof Output level High (PNP) >UB -4.5 V (I = -15 mA)Output level Low (NPN) <3.5 V (I = 15 mA)Load High (PNP) <-20 mA Load Low (NPN) <20 mA Tristate<200 µATrigger level Encoder Mating connector PC connector function M12, 5-pins D-SUB, 9-pins – Pin 1 –RxD Pin 2 Pin 3GND Pin 3 Pin 5TxDPin 5Pin 2Jumper 4-6 andJumper 7-8Connect encoder to voltage supply (UB/red/pin 36 and GND/blue/pin 37) using the supplementary 37-pin D-SUB connector.Terminal assignment programming cable。
Arduino UNO R4 MiniMA ABX00080说明书
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1122334455667788DDCCBBAAReference Designs ARE PROVIDED "AS IS" AND "WITH ALL FAULTS. Arduino SA DISCLAIMS ALL OTHER WARRANTIES, EXPRESS OR IMPLIED, REGARDING PRODUCTS, INCLUDING BUT NOT LIMITED TO, ANY IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULA R PURPOSE.Arduino SA may make changes to specifications and product descriptions at any time, without notice. The Customer must not rely on the absence or characteristics of any features or instructions marked "reserved" or "undefined".Arduino SA reserves these for future definition and shall have no responsibility whatsoever for conflicts or incompatibilities arising from future changes to them. The product information on the Web Site or Materials is subject to change without notice.Do not finalize a design with this info. ARDUINO and other Arduino brands and logos and Trademarks of Arduino SA. All Arduino SA Trademarks cannot be used without owner's formal permission.11UNO R4 MINIMA ABX00080V1.04/24/20233:04:30 PM Title:ID:Date:Version:Sheet of Time:Silvio NavarettiAuthor:RevAuthor:Silvio NavarettiTOP.SchDocFile:330R14330R15DL1KPT-1608YC YELLOWDL2KPT-1608YC TX LED RX LED MICROCONTROLLER330R16DL3HSMG-C190POWER LED+5VP012YELLOWFiducial_1Fiducial_2GREENP400/GTIOC6A1P401/GTIOC6B/CTX02P402/CRX03VBATT 4VCL5P215 INPUT ONL Y/XCIN 6P214 INPUT ONL Y/XCOUT7VSS 8P213/GTIOC0A/XTAL 9P212/GTIOC0B/EXTAL10VCC 11P411/GTIOC6A12P410/GTIOC6B 13P409/GTIOC5A/USB_EXICEN 14P408/GTIOC5B/USB_ID15P407/USB_VBUS/ADTRG016VSS_USB 17P915/USB_DM 18P914/USB_DP19VCC_USB20VCC_USB_LDO 21P20622GTIOC4A/P20523GTIOC4B/P20424RES25MD/P20126NMI/INPUT ONL Y P20027GTIOC7A/P30428GTIOC7B/P30329GTIOC4A/P30230GTIOC4B/P30131P300/GTIOC0A/TCK/SWCLK 32P108/GTIOC0B/TMS/SWDIO 33CTX0/TDO/SWO/GTIOC1A/P10934CRX0/TDI/GTIOC1B/P11035GTIOC3A/P11136GTIOC3B/P11237GTIOC2A/P11338VCC 39VSS40GTIOC0A/P10741GTIOC0B/P10642GTIOC1A/P10543GTIOC1B/P10444GTIOC2A/AN019/P10345ADTRG0/GTIOC2B/AN020/P10246GTIOC5A/AN021/P10147GTIOC5B/AN022/P10048GTIOC2A/AN016/P50049GTIOC2B/AN017/P50150GTIOC3B/AN018/P50251AN010/P01552DA0/AN009/P01453VREFL/AN008/P01354VREFH/AN007/P01255AVCC056AVSS057VREFL0/AN006/P01158P010/AN005/VREFH059AN004/P00460AN003/P00361AN002/P00262AN001/P00163AN000/P00064U1R7FA4M1AB3CFM#AA0USB_D_N USB_D_P15pFC113N C2N C4Y1FTX16.000M12SM3S-30/3015pFC3RESET +5V 4.7µFC4100nF C5100nFC6VCC_USB is the output of theinternal USB LDO providing 3V3 to the peripheralRefer to figure 26.4 page 555 of the user manual4.7µFC7AREF+5VL1BLM18PG471SN1D5.1kR4VREFH01µFC9L2BLM18PG471SN1D100nF C8VCL is the output of the internal LDO4.7µFC11RESET PUSHBUTTONHEADERS+5V+5VUSB5.1kR1 5.1kR25.1kR3SCL18SDA 17AREF 16GND 15D13/SCK 14D12/MISO 13D11/MOSI 12D10/CS11D910D89D78D67D56D45D34D23D1/TX 2D0/RX1JDIGITAL20TW-994C2DNP12345PB11571636-3AREFNC 1IOREF 2RESET 33V345V5GND6GND7VIN 8A09A110A211A312A413A514JANALOG20TW-995RESET RESET112233445566J1PH2-06-UA+5V P013USB CONNECTORSHIELD1GNDB12VBUS B9SBU2B8D-B7D+B6CC2B5VBUS B4GND B1GND A12VBUSA9SBU1A8D-A7D+A6CC1A5VBUS A4GND A1FIXING A12A1B12B1SHIELD2SHIELD3SHIELD4J3CX90B-16P VBUS_CONN CC1USB_D_PUSB_D_N D-USB USB_D_N USBUSB_D_P D+CC2GND21MR231kV4.7nFC21ESDPROTECTION2341D4PRTR5V0U2X,215SHIELD2CC RESISTORS CC2CC15.1kR24 5.1kR25123J419TW-746+5VUSB LDO OUTPUT+3V3100nF C10+5VVINDC SHIELD2USB_D_N USB_D_P SWD CONNECTOR12345678910J2HPH2-A-10-SGARESET +5VRXTX RTS CTSSCI15.1kR75.1k R85.1kR9P012P0135.1kR5 5.1kR6INPUT ONLY+3V3VIN DAC OPAMP+P000_AN00_AMP+OPAMP-OPAMP OUT P014_AN09_DAC P001_AN01_AMP-P002_AN02_AMPO P101_AN21_SDA P100_AN22_SCL P000_AN00_AMP+P001_AN01_AMP-P002_AN02_AMPOP014_AN09_DACP100_AN22_SCL P101_AN21_SDA P100_AN22_SCL P101_AN21_SDAP301_SCI2_RXDP302_SCI2_TXD P301_SCI2_RXD P302_SCI2_TXD I2C PULLUPSNOT MOUNTEDP105_IRQ00_GPT1_A P105_IRQ00_GPT1_A DL4KPT-1608YC YELLOW 330R17SCK LEDP104_IRQ01_GPT1_B P104_IRQ01_GPT1_B P103_SPI0_SSL_GPT2_A_CAN0_TX P103_SPI0_SSL_GPT2_A_CAN0_TX P102_SPI0_RSPCK_GPT2_B_CAN0_RX P102_SPI0_RSPCK_GPT2_B_CAN0_RX P106_GPT0_BP106_GPT0_B P107_GPT0_A P107_GPT0_AP304_GPT7_A P304_GPT7_AP303_GPT7_B P303_GPT7_B P112_GPT3_BP112_GPT3_B P109_SCI9_TXD P109_SCI9_TXD P109_SCI9_TXDP110_SCI9_RXD P110_SCI9_RXD P 110_S C I 9_R X DP111_GPT3_A P111_GPT3_A P 111_G P T 3_AP111_GPT3_AP108_SWDIO P300_SWCLK P108_SWDIOP300_SWCLK P501_SCI1_TXD P502_SCI1_RXDP501_SCI1_TXDP502_SCI1_RXD +5VMD MDVUSBDCJACKBUCKCONVERTERSCHOTTKY FORREVERSE POLARITY PROTECTIOND3PMEG6020AELRXD2PMEG6020AELRXSS 1SYNC2BOOT 3VIN 4PHASE5PGND 6EN 7PG 8VCC 9FB 10COMP11FS12GNDPAD13U2ISL854102FRZ-T +5V2.3A 10µH L3PMF42-103MN100nF C1225V 22µF C130R12100kR1325V22µFC1825V 22µF C1525V 22µF C1633pF C1425V 22µF C171µFC2025V22µF C1913.7kR180R20249kR19100kR21100kR221nFC22100pFC23+5V+5V VUSB VUSB VUSBVUSB VUSB 0R11100k 0.1%R1013.7k 0.1%R26+5VSCHOTTKY FOR USB OVERVOL TAGE PROTECTIONP204LOVE。
EZP2010高速编程器使用说明书
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Product picture:Field of application:This programmer can read and write the bios chips of DVD,TV,PC,harddisk,etc. Features:1. USB2.0 interface, the speed is 12Mbps.2. The speed of reading and writing is very fast.3. Auto detect chip modles.4. Auto select power votage.6. Auto off-line chip copy.7. Software and firmware update.8. Surpport 25 FLASH, 24 EEPROM, 25 EEPROM, 93 EEPROM,etc.9. Small shape.10.Windows 2000, Windows XP, Windows Vista, Windows 7.List:1. Programmer 12. Usb cable 13. 5V power for off-line chip copy 14. Simple socket for SMD chips 2Copyright 2010-2015 elecm icro reserve all rights!This programmer supports all the 24, 25, 93 series memory chips!********************25 SPIFLASH******************************************************************* AMIC: A25L05P, A25L512, A25L010, A25L10P, A25L020, A25L20P, A25L040, A25L40P, A25L080, A25L80P, A25L016,A25L16P, A25L032ATMEL: AT25F512, AT25F512A, AT25F512B, AT25F1024, AT25F1024A, AT25FS010, AT25DF021, AT25F2048, AT25DF041A, AT25F4096, AT25FS040, AT26F004, AT26DF081A, AT25DF161, AT26DF161, AT26DF161A, AT25DF321, AT25DF321A,AT26DF321, AT25DF641EON: EN25F05, EN25LF05, EN25P05, EN25D10, EN25F10, EN25LF10, EN25P10, EN25D20, EN25F20, EN25LF20, EN25D40, EN25F40, EN25LF40, EN25D80, EN25F80, EN25Q80, EN25T80, EN25B16, EN25B16T, EN25D16, EN25F16, EN25Q16, EN25T16, EN25B32, EN25B32T, EN25F32, EN25P32, EN25Q32, EN25B64, EN25B64T, EN25F64, EN25P64, EN25Q64, EN25F128, EN25Q128 ES: ES25P10, ES25P20, ES25M40, ES25M40A, ES25P40, ES25M80, ES25M80A, ES25P80, ES25M16, ES25M16A, ES25P16,ES25P32ESMT: F25L004A, F25L04UA, F25L008A, F25L08PA, F25L016A, F25L16PA, F25L32PA, F25L32QAMXIC: MX25L512, MX25V512, MX25L1005, MX25L2005, MX25L4005A, MX25V4005, MX25L8005, MX25V8005, MX25L1605D, MX25L1635D, MX25L3205D, MX25L3225D, MX25L3235D, MX25L3237D, MX25L6405D, MX25L12805DNEXFLASH: NX25P10, NX25P20, NX25P40, NX25P80, NX25P16, NX25P32PMC: PM25LV512A, PM25LV010A, PM25LV020, PM25LV040, PM25LV080B, PM25LV016BSAIFUN: SA25F005, SA25F010, SA25F020, SA25F040, SA25F080, SA25F160, SA25F320SPANSION: S25FL004A, S25FL008A, S25FL016A, S25FL032A, S25FL064ASST: SST25VF512, SST25VF512A, SST25VF010, SST25VF010A, SST25VF020, SST25VF020A, SST25VF040, SST25VF040A, SST25VF040B, SST25VF080B, SST25VF016B, SST25VF032B, SST25VF064CST: M25P05A, M25P10A, M25PE10, M25P20, M25PE20, M25P40, M25PE40, M25P80, M25PE80, M25PX80, M25P16, M25PE16, M25PX16, M25P32, M25PX32, M25P64, M25PX64, M25P128WINBOND: W25P10, W25X10, W25X10A, W25X10AL, W25X10L, W25P20, W25X20, W25X20A, W25X20AL, W25X20L,W25P40, W25X40, W25X40A, W25X40AL, W25X40L, W25P80, W25X80, W25X80A, W25X80AL, W25X80L, W25P16, W25X16,W25P32, W25X32, W25X64********************24EEPROM******************************************************************* ATMEL: AT24C01, AT24C01A, AT24C01B, AT24C02, AT24C02A, AT24C02B, AT24C04, AT24C04A, AT24C04B, AT24C08, AT24C08A, AT24C08B, AT24C16, AT24C16A, AT24C16B, AT24C32, AT24C32A, AT24C32B, AT24C64, AT24C64A, AT24C64B, AT24C128, AT24C128A, AT24C128B, AT24C256, AT24C256A, AT24C256B, AT24C512, AT24C512A, AT24C512B, AT24C1024, AT24C1024A, AT24C1024BCATALYST: CAT24C01, CAT24WC01, CAT24C02, CAT24WC02, CAT24C04, CAT24WC04, CAT24C08, CAT24WC08, CAT24C16, CAT24WC16, CAT24C32, CAT24WC32, CAT24C64, CAT24WC64, CAT24C128, CAT24WC128, CAT24C256,CAT24WC256, CAT24C512, CAT24WC512, CAT24C1024, CAT24WC1024COMMON: 24C00 3V, 24C00 5V, 24C01 3V, 24C01 5V, 24C02 3V, 24C02 5V, 24C04 3V, 24C04 5V, 24C08 3V, 24C08 5V,24C16 3V, 24C16 5V, 24C32 3V, 24C32 5V, 24C64 3V, 24C64 5V, 24C128 3V, 24C128 5V, 24C256 3V, 24C256 5V, 24C512 3V,24C512 5V, 24C1024 3V, 24C1024 5VFAIRCHILD: FM24C01L, FM24C02L, FM24C03L, FM24C04L, FM24C05L, FM24C08L, FM24C09L, FM24C16L, FM24C17L, FM24C32L, FM24C64L, FM24C128L, FM24C256L, FM24C512L, FM24C1024LHOLTEK: HT24C01, HT24LC01, HT24C02, HT24LC02, HT24C04, HT24LC04, HT24C08, HT24LC08, HT24C16, HT24LC16,HT24C32, HT24LC32, HT24C64, HT24LC64, HT24C128, HT24LC128, HT24C256, HT24LC256, HT24C512, HT24C1024ISSI: IS24C01, IS24C02, IS24C04, IS24C08, IS24C16, IS24C32, IS24C64, IS24C128, IS24C256, IS24C512, IS24C1024 MICROCHIP: 24AA00, 24C00, 24LC00, 24AA01, 24AA014, 24C01C, 24LC014, 24LC01B, 24AA02, 24LC02B, 24AA024,24AA025, 24AA04, 24C02C, 24LC024, 24LC025, 24LC04B, 24AA08, 24LC08B, 24AA16, 24LC16B, 24AA32, 24LC32, 24AA64,24FC64, 24LC64, 24AA128, 24FC128, 24LC128, 24AA256, 24FC256, 24LC256, 24AA512, 24FC512, 24LC512, 24AA1024NSC: NSC24C02, NSC24C02L, NSC24C64RAMTRON: FM24C04A, FM24CL04, FM24C16A, FM24CL16, FM24C64, FM24CL64, FM24C256, FM24CL256, FM24C512 ROHM: BR24C01, BR24L01, BR24C02, BR24L02, BR24C04, BR24L04, BR24C08, BR24L08, BR24C16, BR24L16, BR24C32, BR24L32, BR24C64, BR24L64ST: ST24C01, ST24C02, ST24C04, ST24C08, ST24C16, ST24C32, ST24C64XICOR: X24C01, X24C02, X24C04, X24C08, X24C16********************93EEPROM******************************************************************* AKM: AK93C45AV, AK93C55AV, AK93C65AV, AK93C75AVATC: ATC93C46, ATC93LC46(16bit), ATC93LC46(16bit)-SOP8, ATC93LC46(8bit), ATC93LC46(8bit)-SOP8, ATC93C56,ATC93LC56(16bit), ATC93LC56(16bit)-SOP8, ATC93LC56(8bit), ATC93LC56(8bit)-SOP8, ATC93C66, ATC93LC66(16bit),ATC93LC66(16bit)-SOP8, ATC93LC66(8bit), ATC93LC66(8bit)-SOP8ATMEL: AT93C46(16bit), AT93C46(16bit)-SOP8, AT93C46(8bit), AT93C46(8bit)-SOP8, AT93C46A, AT93C56(16bit),AT93C56(16bit)-SOP8, AT93C56(8bit), AT93C56(8bit)-SOP8, AT93C57(16bit), AT93C57(16bit)-SOP8, AT93C57(8bit),AT93C57(8bit)-SOP8, AT93C66(16bit), AT93C66(16bit)-SOP8, AT93C66(8bit), AT93C66(8bit)-SOP8, AT93C86(16bit),AT93C86(16bit)-SOP8, AT93C86(8bit), AT93C86(8bit)-SOP8CATALYST: CAT93C46(16bit), CAT93C46(8bit), CAT93C46A, CAT93C46I, CAT93C56(16bit), CAT93C56(8bit), CAT93C56A, CAT93C57(16bit), CAT93C57(16bit)-SOP8, CAT93C66(16bit), CAT93C66(8bit), CAT93C66A, CAT93C86(16bit), CAT93C86(8bit) COMMON: 93C46(16bit), 93C46(8bit), 93C56(16bit), 93C56(8bit), 93C66(16bit), 93C66(8bit), 93C86(16bit), 93C86(8bit) EXEL: XL93C06, XL93C46, XL93CS46, XL93LC46, XL93C56, XL93LC56, XL93C66, XL93LC66FAIRCHILD: FM93C06AM8(16bit), FM93C06AM8(8bit), FM93C06M8, FM93C06N, FM93C46AM8(16bit),FM93C46AM8(8bit), FM93C46AN(16bit), FM93C46AN(8bit), FM93CS46(16bit), FM93C56AN(16bit), FM93C56AN(8bit),FM93CS56(16bit), FM93C66AM8(16bit), FM93C66AM8(8bit), FM93C66AN(16bit), FM93C66AN(8bit), FM93C66B,FM93C66M8(16bit), FM93C66MT8(16bit), FM93C66N(16bit), FM93CS66(16bit), FM93C86AM8(16bit), FM93C86AM8(8bit),FM93C86AN(16bit), FM93C86AN(8bit)HOLTEK: HT93LC46A(16bit), HT93LC46A(8bit), HT93LC56A(16bit), HT93LC56A(8bit), HT93LC66A(16bit),HT93LC66A(8bit)ICT: ICT93C46(16bit), ICT93C46(8bit), ICT93C56(16bit), ICT93C56(8bit), ICT93C66(16bit), ICT93C66(8bit)ISSI: IS93C46(16bit), IS93C56(16bit), IS93C66(16bit)MICROCHIP: 93C06(16bit), 93C06(16bit)-SOP8, 93AA46(16bit), 93AA46(8bit), 93AA46(8bit)-SOP8, 93C46(16bit),93C46(16bit)-SOP8, 93C46A, 93C46B, 93LC46(16bit), 93LC46(16bit)-SOP8, 93LC46(8bit), 93LC46(8bit)-SOP8, 93LC46A, 93LC46B, 93LC46B-SOP8, 93AA56(16bit), 93AA56(8bit), 93AA56(8bit)-SOP8, 93C56(16bit), 93C56(16bit)-SOP8, 93C56(8bit), 93C56(8bit)-SOP8, 93C56A, 93C56A-SOP8, 93C56B, 93C56B-SOP8, 93LC56(16bit), 93LC56(16bit)-SOP8, 93LC56(8bit), 93LC56(8bit)-SOP8,93LC56A, 93LC56B, 93LC56B-SOP8, 93AA66(16bit), 93AA66(8bit), 93AA66(8bit)-SOP8, 93C66(16bit), 93C66(16bit)-SOP8,93C66(8bit), 93C66(8bit)-SOP8, 93C66A, 93C66A-SOP8, 93C66B, 93C66B-SOP8, 93LC66(16bit), 93LC66(16bit)-SOP8, 93LC66(8bit), 93LC66(8bit)-SOP8, 93LC66A, 93LC66B, 93LC66B-SOP8, 93AA76(16bit), 93AA76(8bit), 93C76(16bit), 93C76(8bit), 93LC76(16bit), 93LC76(8bit), 93LC76A, 93LC76B, 93AA86(16bit), 93AA86(8bit), 93C86(16bit), 93C86(8bit), 93LC86(16bit), 93LC86(8bit), 93LC86A, 93LC86BNSC: NSC93C06, NSC93C06-SOP8, NSC93CS06, NSC93C46, NSC93CS46, NSC93C56, NSC93CS56, NSC93S56, NSC93C66, NSC93CS66, NSC93C86ROHM: BR93LC46, BR93LC46RF, BR93LC56, BR93LC56RF, BR93LC66, BR93LC66RFST: ST93C06, M93S46, M93S46-SOP8, M93S46-T8, M93S46R, M93S46R-SOP8, M93S46W, M93S46W-SOP8, ST93C46, M93S56, M93S56-SOP8, M93S56R, M93S56R-SOP8, M93S56W, M93S56W-SOP8, ST93C56, M93S66, M93S66-SOP8, M93S66R, M93S66R-SOP8, M93S66W, M93S66W-SOP8, ST93C66********************25EEPROM******************************************************************* ATMEL: AT25010, AT25020, AT25040, AT25080, AT25160, AT25320, AT25640, AT25128, AT25256, AT25512 CATALYST: CAT25C01, CAT25C01P, CAT25C01S, CAT25C01U, CAT25C02P, CAT25C02S, CAT25C02U, CAT25C03P, CAT25C03S, CAT25C03U, CAT25C04P, CAT25C04S, CAT25C04U, CAT25C05P, CAT25C05S, CAT25C05U, CAT25C08P, CAT25C08S, CAT25C08U, CAT25C09P, CAT25C09S, CAT25C09U, CAT25C16P, CAT25C16S, CAT25C16U, CAT25C17P, CAT25C17S, CAT25C17U, CAT25C32P, CAT25C32S, CAT25C33P, CAT25C33S, CAT25C64P, CAT25C64S, CAT25C65P, CAT25C65S, CAT25C128P, CAT25C128S, CAT25C256P, CAT25C256SCOMMON: 25010, 25020, 25040, 25080, 25160, 25320, 25640, 25128, 25256, 25512MICROCHIP: 25AA040, 25C040, 25LC040, 25AA080, 25C080, 25LC080, 25AA160, 25C160, 25LC160, 25AA320, 25C320, 25LC320, 25AA640, 25C640, 25LC640RAMTRON: FM25C160, FM25640, FM25CL64ST: ST25C01, ST25W01, ST25C02, ST25W02, ST25C04, ST25W04, ST25C08, ST25W08, ST25C16, ST25W16TI: TI2532, TI2532A, TI2564XICOR: XC25010, XC25020, XC25040, XC25080, XC25160, XC25320, XC25640, XC25128, XC25256, XC25512Copyright 2010-2015 elecm icro reserve all rights!software setupNo need to install, please run the *.exe programm. Copyright 2010-2015 elecm icro reserve all rights!driver setupThere are tow usb device driver files: EZP2010.inf and EZP2010.sys. The step of usb driver setup is same as other usb devices.Copyright 2010-2015 elecm icro reserve all rights!system requirementsSystem software requirements: Windows 2000,Windows XP,Windows Vista,Windows 7.System hardware requirements:USB1.0 interface.CD-ROM.64MB RAM.10MB harddisk space.Copyright 2010-2015 elecm icro reserve all rights!select chipUser can select chip modle from "Type", "Manu" and "Chip" combox. User can click "Search" to select chip modle too.Copyright 2010-2015 elecm icro reserve all rights!software UI1. Open File: Load data to buffer from file.2. Save File: Save data to file from buffer.3. Buffer Fill: Fill buffer to specified datas.4. Byte Swap: Swap the bytes in the buffer.5. Auto: Erase, write and verify.6. Erase: Erase chip.7. Write: Write data to chip from buffer.8. Read: Read data to buffer from chip.9. Verify: Compare the data in chip to the data in buffer.10.Detect: Detect chip modle.11.Version: Read firmware version.12.Update: Update firmware.13.Help: Open the user manual.14.About: View the version information of software. Copyright 2010-2015 elecm icro reserve all rights!editUser can change data in buffer. Copyright 2010-2015 elecm icro reserve all rights!Click "Search", then pop the above dialog, enter the keyword, the matched chips will be listed in the listbox. Copyright 2010-2015 elecm icro reserve all rights!Click "Detect", the software will pop a messagebox to show chip name. The programmer only can detect 25 series spi flash.Copyright 2010-2015 elecm icro reserve all rights!Load data to buffer from a bin file or a hex file. Copyright 2010-2015 elecm icro reserve all rights!Save data to a bin file from buffer. Copyright 2010-2015 elecm icro reserve all rights!firmware updateUser can click "Update" botton to update firmware.Select the correct update file (*.ezp), and the updating operation will complete in several seconds. If the operation is successful, the software will pop the messagebox as below:If the operation is unsuccessful, the software will pop the messagebox as below:First remove the programmer from PC, then click "OK", and link the programmer to PC again. Copyright 2010-2015 elecm icro reserve all rights!off-line copyThe programmer can copy one chip to another chip.When the programmer detects two chips on the socket, it will automatically start copying operation.1. When off-line copying, the programmer can link to 5V power as well as link to PC.2. The programmer can copy data to a 24 eeprom from another 24 eeprom.3. The programmer can copy data to a 25 flash from another 25 flash.4. The capacity of destination chip must be equal to source chip.Copyright 2010-2015 elecm icro reserve all rights!One 25 flash must be erased before writing.No need to erase one 24 eeprom before writting. No need to erase one 93 eeprom before writting.Copyright 2010-2015 elecm icro reserve all rights!Read data to buffer from chip. Copyright 2010-2015 elecm icro reserve all rights!Write data to chip from buffer. Copyright 2010-2015 elecm icro reserve all rights!Compare the data in chip to the data in buffer.It's necessary to execute the verify command after writting. Copyright 2010-2015 elecm icro reserve all rights!Erase, write and verify. Copyright 2010-2015 elecm icro reserve all rights!1. Verify error.(1)User must select a correct chip modle before writting.(2)User must erase chip before writting if che chip is a 25 flash.(3)User must select a correct memory unit width if che chip is a 93 eeprom.(4)The chip maybe bad.2. Chip position when reading and writting.(1)If the programmer is linked to PC, the chip must be placed in the socket as below:3. Automatically detect chip modle unsuccessful.See the section "detect chip" in this document.4. The simple SMD socket.The simple SMD socket has tow chip positions.User can place SMD chip on any one of the tow position.5. Read and write chips on the mainboard (ISP).User can link programmer to mainboard to read and write bios chips.User can link GND, CS, MISO, MOSI, CLK signals to mainboard.Copyright 2010-2015 elecm icro reserve all rights!。
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CHAPTER 1 FUNCTIONS1.1 FUNCTIONS AND THEIR GRAPHS 1. domain (); range [1)2. domain [0); range (1]œc_ß_œß_œß_œc_ß 3. domain 2); y in range and y 5x 10y can be any positive real number range ).œÒc ß_œb !ÊÊœÒ!ß_È 4. domain (03, ); y in range and y x 3x y can be any positive real number range ).œc_ßÓr Ò_œc !ÊÊœÒ!ß_È2 5. domain (33, ); y in range and y , now if t33t , or if t 3œc_ßÑr Ð_œ Êc !Ê! 443t 3tc c3t y can be any nonzero real number range 0).Êc !Ê!ÊÊœÐc_ßÑr Ð!ß_43tc 6. domain (4, 44, ); y in range and y , now if tt 16, or ifœc_ßc%Ñr Ðc Ñr Ð_œ c%Êc !Ê!22t 16t 16222c c t 416t 16, or if t t 16y can be anyc% Êc Ÿc !Êc Ÿ! %Êc !Ê !Ê2222#"'c c 22nonzero real number range ).ÊœÐc_ßc Ór Ð!ß_18 7. (a) Not the graph of a function of x since it fails the vertical line test. (b) Is the graph of a function of x since any vertical line intersects the graph at most once. 8. (a) Not the graph of a function of x since it fails the vertical line test. (b) Not the graph of a function of x since it fails the vertical line test.9. base x; (height)x height x; area is a(x)(base)(height)(x)x x ;œb œÊœœœœ#########""ˆ‰Š‹x 333ÈÈÈ perimeter is p(x)x x x 3x.œb b œ10. s side length s s d s ; and area is a s a d œÊb œÊœœÊœ#####"#d 2È11. Let D diagonal length of a face of the cube and the length of an edge. Then D d and œj œj b œ###D 2 3d . The surface area is 62d and the volume is .######$$Î#œj Êj œÊj œj œœj œœd 6d d d 33333ÈÈ##$Š‹12. The coordinates of P are x so the slope of the line joining P to the origin is m (x0). Thus,ˆ‰ÈßœœÈÈx ", .ˆ‰ˆ‰Èœ""#13. 2x 4y 5y x ; L x 0y 0x x x x x b œÊœc b œÐc Ñb Ðc Ñœb Ðc b Ñœb c b """##55525222222ÈÉÉ x x œc bœœÉÉ552520x20x 254416164220x 20x 2522c b c b È14. y x 3y 3x; L œc Êb œœœœÈÈÈÈ222222222 œœÈÈ2 Chapter 1 Functions15. The domain is . 16. The domain is .a b a b c_ß_c_ß_17. The domain is . 18. The domain is .a b c_ß_Ðc_ß!Ó19. The domain is . 20. The domain is .a b a b a b a b c_ß!r !ß_c_ß!r !ß_21. The domain is 5533, 55, 22. The range is 2, 3.a b a b c_ßc r Ðc ßc Ór ÒÑr _ÒÑ23. Neither graph passes the vertical line test (a) (b)Section 1.1 Functions and Their Graphs 324. Neither graph passes the vertical line test (a)(b)x y 1 x y y 1x or or x y y x k k ÚÞÚÞÛßÛßÜàÜàb œÍÍb œ"œc b œc"œc"c 25. x1226. x012 y1y127. F x 28. G x 4x , x 1x 2x, x 1, x 0x, 0xa b a b œœœœc Ÿb Ÿ22x"29. (a) Line through and : y x; Line through and : y x 2a b a b a b a b !ß!"ß"œ"ß"#ß!œc b f(x) x, 0x 1x 2, 1x 2œŸŸc b Ÿœ(b) f(x)2,x x 2x x œ!Ÿ "!ß"Ÿ #ß#Ÿ $!ß$ŸŸ%ÚÝÝÛÝÝÜ30. (a) Line through 2 and : y x 2a b a b !ß#ß!œc b Line through 2 and : m , so y x 2x a b a b a b ß"&ß!œœœc œc c b "œc b!c "c""""&&c #$$$$$f(x) x , 0x x , x œc b # Ÿ#c b # Ÿ&œ"&$$ (b) Line through and : m , so y xa b a b c"ß!!ßc$œœc$œc$c $c$c !!c Ðc"ÑLine through and : m , so y x a b a b !ß$#ßc"œœœc#œc#b $c"c $c%#c !#f(x)x ,x x ,x œc$c $c" Ÿ!c#b $! Ÿ#œ4 Chapter 1 Functions31. (a) Line through and : y x a b a b c"ß"!ß!œc Line through and : y a b a b !ß""ß"œ" Line through and : m , so y x x a b a b a b "ß"$ß!œœœc œc c "b "œc b !c"c""""$$c"#####f(x)x x x x x œc c"Ÿ !"! Ÿ"c b " $ÚÛÜ"$## (b) Line through 21 and 00: y xa b a b c ßc ßœ1Line through 02 and 10: y 2x 2a b a b ßßœc bLine through 11 and 31: y 1a b a b ßc ßc œc f x x2x 02x 20x 111x 3a b ÚÛÜœc ŸŸc b Ÿc Ÿ132. (a) Line through and T : m , so y x 0xˆ‰ˆ‰a b T T T T T T T #c Î##"c!###ß!ß"œœœc b œc "a bf x , 0x x , x T a b J œ!ŸŸc " ŸT T### (b) f x A,x A x TA T x A x T a b ÚÝÝÝÛÝÝÝÜœ!Ÿ c ߟ ߟ c ߟŸ#T TTT##$#$#33. (a) x 0 for x [01) (b) x 0 for x (10]ÚÛœ−ßÜÝœ−c ß34. x x only when x is an integer.ÚÛœÜÝ35. For any real number x, n x n , where n is an integer. Now: n x n n x n. ByŸŸb "ŸŸb "ÊcÐb "ÑŸc Ÿc definition: x n and x n x n. So x x for all x .Üc Ýœc ÚÛœÊcÚÛœc Üc ÝœcÚÛ−d 36. To find f(x) you delete the decimal or fractional portion of x, leaving onlythe integer part.Section 1.1 Functions and Their Graphs537. Symmetric about the origin 38. Symmetric about the y-axisDec: x Dec: x c_ _c_ ! Inc: nowhere Inc: x ! _39. Symmetric about the origin40. Symmetric about the y-axisDec: nowhere Dec: x ! _ Inc: x Inc: x c_ !c_ !x ! _41. Symmetric about the y-axis42. No symmetryDec: x Dec: x c_ Ÿ!c_ Ÿ! Inc: x Inc: nowhere! _6 Chapter 1 Functions43. Symmetric about the origin44. No symmetryDec: nowhere Dec: x !Ÿ _ Inc: x Inc: nowherec_ _45. No symmetry 46. Symmetric about the y-axisDec: x Dec: x !Ÿ _c_ Ÿ! Inc: nowhere Inc: x ! _47. Since a horizontal line not through the origin is symmetric with respect to the y-axis, but not with respect to the origin, thefunction is even.48. f x x and f x x f x . Thus the function is odd.a b a ba b a b ˆ‰œœc œc œœc œc c&"""c&c x x x &&&a b 49. Since f x x x f x . The function is even.a b a b a b œb "œc b "œc ##50. Since f x x x f x x x and f x x x f x x x the function is neither even norÒœb ÓÁÒc œc c ÓÒœb ÓÁÒc œc c Óa b a b a b a b a b a b #### odd.51. Since g x x x, g x x x x x g x . So the function is odd.a b a b a b a b œb c œc c œc b œc $$$52. g x x x x x g x thus the function is even.a b a b a b a b œb $c "œc b $c c "œc ß%#%#53. g x g x . Thus the function is even.a b a b œœœc ""c "c c"x ##a b 54. g x ; g x g x . So the function is odd.a b a b a b œc œc œc x x ##c "c"55. h t ; h t ; h t . Since h t h t and h t h t , the function is neither even nor odd.a b a ba ba ba b a b a b œc œc œÁc Ác """c "c c ""c t t t 56. Since t |t |, h t h t and the function is even.l œl c œc $$a b a b a bSection 1.1 Functions and Their Graphs 757. h t 2t , h t 2t . So h t h t . h t 2t , so h t h t . The function is neither even nor a b a b a b a b a b a b a b œb "c œc b "Ác c œc c "Ác odd.58. h t 2t and h t 2t 2t . So h t h t and the function is even.a b a b a b a b œl l b "c œl c l b "œl l b "œc 59. s kt 25k 75k s t; 60t t 180œÊœÐÑʜʜœÊœ"""33360. K c v 12960c 18c 40K 40v ; K 40104000 joules œÊœÊœÊœœœ###a b a b 261. r 6k 24r ;10s œÊœÊœÊœœÊœkk 242412s 4s s562. P 14.7k 14700P ; 23.4v 628.2 in œÊœÊœÊœœÊœ¸k k 147001470024500363. v f(x)x 2x 222x x 72x x; x 7œœÐ"%c ÑÐc Ñœ%c b $!)! Þ$#64. (a) Let h height of the triangle. Since the triangle is isosceles, AB AB 2AB 2So,œb œÊœÞ###È h 2h B is at slope of AB The equation of AB is###b "œÊœ"Ê!ß"Êœc"ÊŠ‹Èa b y f(x)x ; x .œœc b "−Ò!ß"Ó (b) A x 2x y 2x x 2x x; x .ÐÑœœÐc b "Ñœc b #−Ò!ß"Ó#65. (a) Graph h because it is an even function and rises less rapidly than does Graph g. (b) Graph f because it is an odd function. (c) Graph g because it is an even function and rises more rapidly than does Graph h.66. (a) Graph f because it is linear. (b) Graph g because it contains .a b !ß" (c) Graph h because it is a nonlinear odd function.67. (a) From the graph, 1 x (20)()x 4x # b Ê−c ßr %ß_ (b) 1 10x 4x 4x x ## b Êc c x 0: 10 0 0 c cÊ Ê x 4x 2x 8x 2xx(x 4)(x 2)##c c c b #x 4 since x is positive;Ê x 0: 10 0 0 c cÊ Ê x4x 2x 82x2x x(x 4)(x 2)#c c c b #x 2 since x is negative;Ê c sign of (x 4)(x 2)c b 2ïïïïïðïïïïïðïïïïîb b c c %Solution interval: (0)()c#ßr %ß_8 Chapter 1 Functions68. (a) From the graph, x (5)(11)32x 1x 1c b Ê−c_ßc r c ß (b) x 1: 2Case cÊ 323(x 1)c b c b 3x 3 2x 2 x 5.Êb c Ê c Thus, x (5) solves the inequality.−c_ßc 1x 1: 2Case c Ê 323(x 1)c b c b 3x 32x 2 x 5 which is true Êb c Ê c if x 1. Thus, x (11) solves the c −c ß inequality.1x: 3x 32x 2 x 5Case Êb c Ê c 32x 1x 1c b which is never true if 1x, so no solution here.In conclusion, x (5)(11).−c_ßc r c ß69. A curve symmetric about the x-axis will not pass the vertical line test because the points x, y and x, y lie on the sam a b a b c e vertical line. The graph of the function y f x is the x-axis, a horizontal line for which there is a single y-value, ,œœ!!a b for any x.70. price 405x, quantity 30025x R x 405x 30025x œb œc Êœb c a b a ba b 71. x x h x ;cost 52x 10h C h 1010h 5h 22222h22h2hb œÊœœœb Êœb œb ÈÈÈa b a b Š‹Š‹È72. (a) Note that 2 mi = 10,560 ft, so there are 800x feet of river cable at $180 per foot and 10,560x feet of land Èa b ##b c cable at $100 per foot. The cost is C x 180800x 10010,560x .a b a b Èœb b c ## (b) C $a b !œ"ß#!!ß!!!C $a b &!!¸"ß"(&ß)"# C $a b "!!!¸"ß")'ß&"# C $a b "&!!¸"ß#"#ß!!! C $a b #!!!¸"ß#%$ß($# C $a b #&!!¸"ß#()ß%(* C $a b $!!!¸"ß$"%ß)(! Values beyond this are all larger. It would appear that the least expensive location is less than 2000 feet from the point P.1.2 COMBINING FUNCTIONS; SHIFTING AND SCALING GRAPHS1. D : x , D : x 1 D D : x 1. R : y , R : y 0, R : y 1, R : y 0f g f g fg f g f g fg c_ _ Êœ c_ _ b b2. D : x 10 x 1, D : x 10 x 1. Therefore D D : x 1.f g f g fg b Ê c c Ê œ b R R : y 0, R : y 2, R : y 0f g f g fg œ b È 3. D : x , D : x , D : x , D : x , R : y 2, R : y 1,f g f g g f f g c_ _c_ _c_ _c_ _œ ÎÎ R : 0y 2, R : y f g Î ŸŸ _g f Î"# 4. D : x , D : x 0 , D : x 0, D : x 0; R : y 1, R : y 1, R : 0y 1, R : 1y f g f g g f f g f g c_ _ œ ŸŸ _ÎÎÎg f Î 5. (a) 2 (b) 22 (c) x 2#b (d) (x 5)3x 10x 22 (e) 5(f) 2b c œb b c ## (g) x 10(h) (x 3)3x 6x 6b c c œc b ##%#Section 1.2 Combining Functions; Shifting and Scaling Graphs96. (a)(b) 2 (c)1c c œ""c b b 3x 1x 1x(d)(e) 0(f) "x 43 (g) x 2 (h) c œœ""b "b b #"b #b b x 1x 1x 1x x 7. f g h x f g h x f g 4x f 34x f 123x 123x 1133x a ba b a b a b a b a b a b a b a b a b a b ‰‰œœc œc œc œc b œc 8. f g h x f g h x f g x f 2x 1f 2x 132x 146x 1a bab a b a b a b a b a b a b a b a b a b ‰‰œœœc œc œc b œb 22222 9. f g h x f g h x f g f f a ba b a b Éa b a b ˆ‰ˆ‰ˆ‰Š‹É‰‰œœœœœb "œ11x x 5x x 14x 14x 14x 1b %b b b b "10. f g h x f g h x f g 2x f f a ba b a b a b a b Š‹Š‹È:;ˆ‰‰‰œœc œœœœŠ‹ÈŠ‹È2x 2x 12x83x x 72x23c c b c c $c c b c222x 2x xxc $c c $c 11. (a) f g x (b) j g x (c) g g x a ba b a ba b a ba b‰‰‰ (d) j j x (e) g h f x (f) h j f x a ba b a ba b a ba b ‰‰‰‰‰12. (a) f j x (b) g h x (c) h h x a ba b a ba b a ba b ‰‰‰ (d) f f x (e) j g f x(f) g f h x a ba b a ba b a ba b‰‰‰‰‰13. g(x) f(x) (f g)(x)‰ (a)x 7x x 7c c ÈÈ(b) x 23x 3(x 2)3x 6b b œb (c) xx 5x 5##ÈÈc c (d)xx xxx 1x 11x (x 1)c c c c c xx 1xx 1c c œœ (e) 1 x ""c x 1x b(f)x""x x 14. (a) f g x g x .a ba b a b ‰œl l œ"l c "l x (b) f g x sog x x .a bab a b ‰œœÊ"cœÊ"cœÊœßœb "g x g x x g x x x g x x g x x x x a b a ba ba ba b c"b "b "b "b """""(c) Since f g x g x x , g x x .a bab a b a b ȉœœl l œ# (d) Since f g x f x x , f x x . (Note that the domain of the composite is .)a ba b a b ˆ‰È‰œœl l œÒ!ß_Ñ# The completed table is shown. Note that the absolute value sign in part (d) is optional.g x f x f g xx x x xx xx x a b a b a ba b Èȉl l b "l l l l""c "l c "l c "b "##x x x x xx 15. (a) f g 1f 1 1(b) g f 0g 2 2 (c) f f 1f 02a b a b a b a b a b a b a b a b a b c œœœc œc œœc (d) g g 2g 00(e) g f 2g 1 1(f) f g 1f 10a b a b a b a b a b a b a b a b a b œœc œœc œc œ16. (a) f g 0f 1213, where g 0011a b a b a b a b a b œc œc c œœc œc (b) g f 3g 111, where f 3231a b a b a b a b a b œc œc c œœc œc (c) g g 1g 1110, where g 111a b a b a b a b a b c œœc œc œc c œ10Chapter 1 Functions(d) f f 2f 0202, where f 2220a b a b a b a b œœc œœc œ (e) g f 0g 2211, where f 0202a b a b a b a b œœc œœc œ(f)f g f 2, where g 1ˆ‰ˆ‰ˆ‰ˆ‰ˆ‰""""""#######œc œc c œœc œc 517. (a) f g x f g x 1a ba b a b a b Éɉœœb œ11xb g f x g f xa bab a b a b ‰œœ1È(b) Domain f g : , 10, , domain g f : 1, a b a b ‰Ðc_c Ór Ð_щÐc _Ñ(c) Range f g : 1, , range g f : 0, a b a b ‰Ð_щÐ_Ñ18. (a) f g x f g x 12xa bab a b a b ȉœœc b g f x g f x 1x a ba b a b k k a b ‰œœc (b) Domain f g : 0, , domain g f : , a b a b ‰Ò_щÐc__Ñ (c) Range f g : 0, , range g f : , 1a b a b ‰Ð_щÐc_Ó19. f g x x f g x x x g x g x 2x x g x 2xa bab a b a b a b a b a b a b ‰œÊœÊœÊœc œ†c g x g x 2a ba b c g x x g x 2x g x Êc †œc Êœc œa b a b a b 2x 2x 1x x 1c c 20. f g x x 2f g x x 22g x 4x 2g x g x a ba b a b a b a b a b a b a b a b ɉœb Êœb Êc œb ʜʜ33x 6x 622b b 321. (a) y (x 7) (b) y (x 4)œc b œc c ##22. (a) y x 3 (b) y x 5œb œc ##23. (a) Position 4(b) Position 1(c) Position 2(d) Position 324. (a) y (x 1) 4 (b) y (x 2) 3 (c) y (x 4) 1(d) y (x 2)œc c b œc b b œc b c œc c ####25. 26.27. 28.Section 1.2 Combining Functions; Shifting and Scaling Graphs11 29. 30.31. 32.34.33.35. 36.38.37.39. 40.12 Chapter 1 Functions41. 42.43. 44. 45. 46.47. 48.49. 50.51. 52.Section 1.2 Combining Functions; Shifting and Scaling Graphs 1353. 54.55. (a) domain: [02]; range: [] (b) domain: [02]; range: [10]ß#ß$ßc ß(c) domain: [02]; range: [02](d) domain: [02]; range: [10]ßßßc ß(e) domain: [20]; range: [1](f) domain: [13]; range: []c ß!ßß!ß"(g) domain: [20]; range: [](h) domain: [11]; range: []c ß!ß"c ß!ß"14 Chapter 1 Functions56. (a) domain: [04]; range: [30] (b) domain: [40]; range: []ßcßcß!ß$(c) domain: [40]; range: [] (d) domain: [40]; range: []cß!ß$cß"ß%(e) domain: [4]; range: [30] (f) domain: [22]; range: [30]#ßcßcßcß(g) domain: [5]; range: [30] (h) domain: [04]; range: [03]"ßcßßß57. y3x 3 58. y2x1x1œcœcœ%c ###a b59. y60. y11œ"bœbœbœb """""*###Î$ˆ‰x x xx####a b61. y x 1 62. y3x1œ%bœbÈÈ63. y16x64. y xœ%cœcœ%cɈ‰ÈÈx##$""##65. y3x27x66. yœ"cœ"cœ"cœ"ca bˆ‰$$#)$x x$Section 1.2 Combining Functions; Shifting and Scaling Graphs1567. Let y f x and let g x x ,œc œœÈa b a b "Î# h x x , i x x , anda b a b ˆ‰ˆ‰Èœb œb ""##"Î#"Î#j x x f . The graph of a b a b ’“Ȉ‰œc #b œB "#"Î# h x is the graph of g x shifted left unit; the a b a b "#graph of i x is the graph of h x stretcheda b a b vertically by a factor of ; and the graph ofÈ# j x f x is the graph of i x reflected across a b a b a b œ thex-axis.68. Let y f x Let g x x ,œ"c œÞœc Èa b a b a b x #"Î# h x x ,and i x xa b a b a b a b œc b #œc b #"Î#"Î#"È f x The graph of g x is theœ"cœÞÈa b a b x #graph of y œÈ The graph of h x is the graph of g x shifted a b a b right two units. And the graph of i x is the a bgraph of h x compressed vertically by a factor a b of .È#69. y f x x . Shift f x one unit right followed by a œœa b a b $shift two units up to get g x x .a b a b œc "b #370. y x f x .œ"c B b #œcÒc "b c#Óœa b a b a b a b $$ Let g x x , h x x , i x x ,a b a b a b a b a b a b œœc "œc "b c#$$$ and j x x . The graph of h x is the a b a b a b a b œcÒc "b c#Ó$ graph of g x shifted right one unit; the graph of i x is a b a b the graph of h x shifted down two units; and the graph a bof f x is the graph of i x reflected across the x-axis.a b ab71. Compress the graph of f x horizontally by a factor a b œ"x of 2 to get g x . Then shift g x vertically down 1a b a b œ"#xunit to get h x .a b œc ""#x16 Chapter 1 Functions72. Let f x and g x a b a bœœb "œb ""#"x x ##B ##Š‹Sinceœb "œb "Þ""Î#"Î#B Š‹’Š‹“ÈÈx ## , we see that the graph of f x stretched Èa b #¸"Þ% horizontally by a factor of 1.4 and shifted up 1 unitis the graph of g x .ab73. Reflect the graph of y f x œœa b È$to get g x x.a b Èœc$74. y f x x x œœc#œÒc"#Óa b a b a ba b #Î$#Î$ x x . So the graph œc"#œ#a b a b a b #Î$#Î$#Î$ of f x is the graph of g x x compressed a b a b œ#Î$horizontally by a factor of 2.75. 76.77. x y78. x y *b #&œ##&Êb œ""'b (œ""#Êbœ"####&$%(x x y y ########Š‹ÈSection 1.2 Combining Functions; Shifting and Scaling Graphs1779. x y80. x y $b c #œ$Êb œ"b "b #œ%Êbœ"###c ##"#c c"a b a b x y x y ########a b Š‹ŠÈÈ<‘ab81. x y 82. x y $c "b #b #œ''b b *c œ&%a b a b ˆ‰ˆ‰##$"#### Êbœ"Êbœ"a b Š‹Š‹Š‹ÈÈ<‘a b ’“ˆ‰ˆ‰Èx y x y c "#$'c c#c c $c #####$###"##83. has its center at . Shiftinig 4 unitsx y ##"'*bœ"!ß!a b left and 3 units up gives the center at h, k .a b a b œc%ß$ So the equation is <‘a b a b x 443y 3c c c ####b œ" . Center, C, is , andÊb œ"c%ß$a b a b x y 43b %c $####a bmajor axis, AB, is the segment from to .a b a b c)ß$!ß$84. The ellipse has center h, k .x y ##%#&b œ"œ!ß!a b a b Shifting the ellipse 3 units right and 2 units down produces an ellipse with center at h, k a b a bœ$ßc# and an equation . Center,a b <‘a b x 3y c %#&c c###bœ" C, is 3, and AB, the segment from to a b a b ßc#$ß$is the major axis.a b $ßc(85. (a) (fg)(x)f(x)g(x)f(x)(g(x))(fg)(x), oddc œc c œc œc (b) (x)(x),odd Š‹Š‹f fg g(x)g(x)g f(x)f(x)c œœœc c c c18 Chapter 1 Functions(c) (x)(x),odd ˆ‰ˆ‰g g(x)g(x)g f f(x)f(x)f c œœœc c c c (d) f (x)f(x)f(x)f(x)f(x)f (x), even##c œc c œœ (e) g (x)(g(x))(g(x))g (x), even ####c œc œc œ (f) (f g)(x)f(g(x))f(g(x))f(g(x))(f g)(x), even ‰c œc œc œœ‰ (g) (g f)(x)g(f(x))g(f(x))(g f)(x), even ‰c œc œœ‰ (h) (f f)(x)f(f(x))f(f(x))(f f)(x), even ‰c œc œœ‰ (i) (g g)(x)g(g(x))g(g(x))g(g(x))(g g)(x), odd‰c œc œc œc œc ‰86. Yes, f(x)0 is both even and odd since f(x)0f(x) and f(x)0f(x).œc œœc œœc 87. (a)(b)(c) (d)88.Section 1.3 Trigonometric Functions 191.3 TRIGONOMETRIC FUNCTIONS1. (a) s r (10)8 m(b) s r (10)(110°) mœœœœœœœ)1)ˆ‰ˆ‰4110555180°1891111 2. radians and 225°)œœœœs 1055180°r8441111ˆ‰ 3. 80° 80°s (6)8.4 in. (since the diameter 12 in. radius 6 in.)))œÊœœÊœœœÊœˆ‰ˆ‰11144 4. d 1 meter r 50 cm 0.6 rad or 0.634°œÊœÊœœœ¸)s30180°ˆ‰1 5. 06sin 00cos 10tan 030und.cot und.und.01sec 1und.2csc und.und.2)1))))))c c c"c c "c c"c c c#"c c "2334322323111##"""#"ÈÈÈÈÈÈÈÈ. sin cos tan und.3cot 33sec und.2csc )))))))c c c "cc !c c c "c !c c "c #c "c c#333233233322332311111#'%'&###"""""###"""ÈÈÈÈÈÈÈÈÈÈÈÈÈÈÈÈ2#7. cos x , tan x8. sin x , cos x œc œc œœ43255ÈÈ" 9. sin x , tan x 810. sin x , tan x œcœc œœc È831351212È11. sin x , cos x 12. cos x , tan x œc œc œc œ""#ÈÈÈÈ5532313. 14.period period 4œœ1115. 16.period 2 period 4œœ20 Chapter 1 Functions17. 18.period 6 period 1œœ19. 20.period 2 period 2œœ1121. 22.period 2period 2œœ1123. period , symmetric about the origin 24. period 1, symmetric about the originœœ1#25. period 4, symmetric about the s-axis 26. period 4, symmetric about the originœœ1Section 1.3 Trigonometric Functions 2127. (a) Cos x and sec x are positive for x in the interval, ; and cos x and sec x are negative for x in theˆ‰c 1122 intervals , and , . Sec x is undefined ˆ‰ˆ‰c c 3322221111when cos x is 0. The range of sec x is(1][); the range of cos x is [1].c_ßc r "ß_c"ß(b) Sin x and csc x are positive for x in the intervals, and , ; and sin x and csc x are negativeˆ‰a b c c !3111 for x in the intervals , and , . Csc x isa b ˆ‰c !11321 undefined when sin x is 0. The range of csc x is(1][1); the range of sin x is [].c_ßc r ß_c"ß"28. Since cot x , cot x is undefined when tan x 0œœ"tan xand is zero when tan x is undefined. As tan x approaches zero through positive values, cot x approaches infinity. Also, cot x approaches negative infinity as tan xapproaches zero through negative values.29. D: x ; R: y 1, 0, 1 30. D: x ; R: y 1, 0, 1c_ _œc c_ _œc31. cos x cos x cos sin x sin (cos x)(0)(sin x)(1)sin x ˆ‰ˆ‰ˆ‰c œc c c œc c œ111###32. cos x cos x cos sin x sin (cos x)(0)(sin x)(1)sin x ˆ‰ˆ‰ˆ‰b œc œc œc 111###33. sin x sin x cos cos x sin (sin x)(0)(cos x)(1)cos x ˆ‰ˆ‰ˆ‰b œb œb œ111###34. sin x sin x cos cos x sin (sin x)(0)(cos x)(1)cos xˆ‰ˆ‰ˆ‰c œc b c œb c œc 111###35. cos (A B) cos (A (B))cos A cos (B)sin A sin (B)cos A cos B sin A (sin B)c œb c œc c c œc c cos A cos B sin A sin B œb 36. sin (A B) sin (A (B))sin A cos (B)cos A sin (B)sin A cos B cos A (sin B)c œb c œc b c œb c sin A cos B cos A sin Bœc 37. If B A, A B 0 cos (A B)cos 0 1. Also cos (A B)cos (A A)cos A cos A sin A sin A œc œÊc œœc œc œb cos A sin A. Therefore, cos A sin A 1.œb b œ####22 Chapter 1 Functions38. If B 2, then cos (A 2)cos A cos 2sin A sin 2(cos A)(1)(sin A)(0)cos A and œb œc œc œ1111 sin (A 2)sin A cos 2cos A sin 2(sin A)(1)(cos A)(0)sin A. The result agrees with the b œb œb œ111 fact that the cosine and sine functions have period 2.139. cos (x)cos cos sin sin x (1)(cos x)(0)(sin x)cos x111b œB c œc c œc 40. sin (2x)sin 2 cos (x)cos (2) sin (x)(0)(cos (x))(1)(sin (x))sin x111c œc b c œc b c œc 41. sin x sin cos (x)cos sin (x)(1)(cos x)(0)(sin (x))cos x ˆ‰ˆ‰ˆ‰333111###c œc b c œc b c œc 42. cos x cos cos x sin sin x (0)(cos x)(1)(sin x)sin x ˆ‰ˆ‰ˆ‰333111###b œc œc c œ43. sin sin sin cos cos sin 7223621111111#####"b œb œb œb œˆ‰ˆ‰Š‹Š‹Š‹ÈÈÈÈÈ44. cos cos cos cos sin sin 1122214343434223261111111#####"b œb œc œc c œcˆ‰ˆ‰Š‹Š‹Š‹ÈÈÈÈÈ45. cos cos cos cos sin sin 1111111123434342231322œc œc c c œc c œˆ‰ˆ‰ˆ‰ˆ‰Š‹Š‹Š‹"####b ÈÈÈÈÈ46. sin sin sin cos cos sin 5222134343431322221111111#####"b œc œc b c œb c c œˆ‰ˆ‰ˆ‰ˆ‰ˆ‰ˆ‰Š‹Š‹Š‹ÈÈÈÈÈ47. cos 48. cos ##b b b #####b b cc 1184141cos 11cos 225123œœœœœœˆ‰ˆ‰ÈÈŠ‹210812311ÈÈ###49. sin 50. sin #######c c c c c cb 1114841cos 11cos 233122œœœœœœˆ‰ˆ‰ÈÈŠ‹26183211###ÈÈ51. sin sin , , , 232454233333)))œÊœ…ÊœÈ111152. sin cos tan 1tan 1, , , 222sin cos 357cos cos 4444)))))œÊœÊœÊœ…Êœ2222))1111))53. sin 2cos 02sin cos cos 0cos 2sin 10cos 0 or 2sin 10cos 0 or))))))))))c œÊc œÊc œÊœc œÊœa b sin , , or , , , , ))))œÊœœÊœ"#1111111122666262355354. cos 2cos 02cos 1cos 02cos cos 10cos 12cos 10))))))))b œÊc b œÊb c œÊb c œ22a ba b cos 10 or 2cos 10cos 1 or cos or , , , Êb œc œÊœc œÊœœÊœ)))))1))1"#111133335555. tan (A B)b œœœsin (A B)cos (A B)cos A cos B sin A sin Bsin A cos B cos A cos B b b c b b sin A cos B cos A sin B cos A cos B cos A cos Bcos A cos Bsin A sin B cos A cos B cos A cos Bb c œtan A tan B 1tan A tan B56. tan (A B)c œœœsin (A B)cos (A B)cos A cos B sin A sin Bsin A cos B cos A cos B c c b c c sin A cos B cos A sin B cos A cos B cos A cos Bcos A cos Bsin A sin B cos A cos B cos A cos Bb c b œtan A tan B 1tan A tan B57.According to the figure in the text, we have the following: By the law of cosines, c a b 2ab cos ###œb c )11 2 cos (A B)2 2 cos (A B). By distance formula, c (cos A cos B)(sin A sin B)œb c c œc c œc b c ##### cos A 2 cos A cos B cos B sin A 2 sin A sin B sin B 22(cos A cos B sin A sin B). Thus œc b b c b œc b ####c 2 2 cos (A B)22(cos A cos B sin A sin B) cos (A B)cos A cos B sin A sin B.#œc c œc b Êc œb。