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E+H雷达物位计FMR240中文选型资料
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2024-09-13 06:44 2483阅读次数
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E+HFMR240雷达物位计连续非接触测量,4...20mA两线制,适用于防爆场合.MicropilotM被设计用于对液体、颗粒及浆料进行连续非接触的物位测量。测量不受介质变化、温度变化、惰性气体及蒸汽的影响。FMR240:具备小的喇叭天线(1),频率为26GHz,精度为±3mm,特别适用于小型容器。导波管可用于水平或竖直的罐中E+HFMR240雷达物位计产品性能两线制技术,经济型非接触测量:不受介质特性的影响通过数文显示菜单轻松进行现场操作通过操作软件(ToFTool)实现简便的组态、文件编制及诊断具备2个频率范围-约6GHz(FMR230/FMR231)及26GHz(FMR240/244/245):无干扰,适用于任何应用场合HART或PROFIBUS-PA通信协议及基金会现场总线协议高温:适用于高达+200℃(392)的过程温度,当采用高温天线时可达+400℃(752)带有屏蔽管的杆式天线:可在狭窄的加接管及有冷凝和粘附的加接管内可靠测量
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E+H雷达物位计FMR240中文选型资料
- E+HFMR240雷达物位计连续非接触测量,4...20mA两线制,适用于防爆场合.MicropilotM被设计用于对液体、颗粒及浆料进行连续非接触的物位测量。测量不受介质变化、温度变化、惰性气体及蒸汽的影响。FMR240:具备小的喇叭天线(1),频率为26GHz,精度为±3mm,特别适用于小型容器。导波管可用于水平或竖直的罐中E+HFMR240雷达物位计产品性能两线制技术,经济型非接触测量:不受介质特性的影响通过数文显示菜单轻松进行现场操作通过操作软件(ToFTool)实现简便的组态、文件编制及诊断具备2个频率范围-约6GHz(FMR230/FMR231)及26GHz(FMR240/244/245):无干扰,适用于任何应用场合HART或PROFIBUS-PA通信协议及基金会现场总线协议高温:适用于高达+200℃(392)的过程温度,当采用高温天线时可达+400℃(752)带有屏蔽管的杆式天线:可在狭窄的加接管及有冷凝和粘附的加接管内可靠测量[详细]
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2024-09-13 06:44
产品样册
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E+H雷达物位计FMR240
- 雷达测量MicropilotFMR240小容器测量和防爆危险区域测量的理想选择带小喇叭天线(40mm(1"))的FMR240是小容器物位测量的理想选择。FMR240用于液体、浆料、泥浆和固体的连续、非接触式物位测量。测量不受介质变换、温度变化、气体层或蒸汽的影响。优势非接触式测量:测量几乎不受介质属性的影响经济的两线制技术:差压仪表和平衡浮子的优良替代品。两线制技术降低了接线成本,易于集成至现有系统中使用Endress+Hauser调试工具,调试、文档编制和诊断过程简便有效菜单引导式的图文显示模式,便于现场操作物位监控(低限(MIN)、高限(MAX))可达SIL2安全等级,符合IEC61508/IEC61511-1标准HART、PROFIBUSPA或基金会现场总线(FF)通信可选:气密馈通,提升了过程安全性应用领域MicropilotM用于液体、浆料、泥浆和固体的连续、非接触式物位测量。测量不受介质变换、温度变化、气体层或蒸汽的影响。带小喇叭天线(40mm(1"))的FMR240是小容器物位测量的理想选择。此外,测量精度可达±3mm(±0.12in)[详细]
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2024-09-13 06:44
产品样册
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E+H雷达物位计FMR250系列中文选型资料
- MicropilotFMR250特别适合测量高位贮仓中的固体散料、也适合高温场合和高研磨作用的固体散料。FMR250内置空气清洁器,适用粉尘严重或介质黏附的工况条件。MicropilotFMR250适合粉状、粒状等固体散料的连续性、非接触式物位测量。测量值不受粉尘、进料噪音、温度层、气体层的影响。优势非接触式测量:测量几乎不受介质特性影响两线制技术,价格低廉:真正代替了压差、浮子或浮筒式物位测量方法两线制技术节约布线成本,方便接入现有系统利用Endress+Hauser操作软件,方便仪表调试、文件建档和故障诊断通过菜单式的字母数字显示模块,现场操作简便可进行限位监控(高限,底限),通过IEC61508和IEC61511认证,达到SIL2功能安全等级支持HART或PROFIBUSPA等FOUNDATION基础现场总线协议Z远测量距离:70m(230ft)应用领域FMR250用于测量高位贮仓中粉尘严重的固体散料,例如水泥、生料或动物饲料等;可应用于温度达200°C(392°F)的场合如水泥孰料或飞灰;可应用于具强研磨作用的固料如铁素体。配备DN80或DN100喇叭型天线的FMR250用于标准型应用和小型尺寸的安装短管。FMR250因配备的DN200或DN250抛物形天线的波束角只有4°或3.5°,成为适用许多安装场合的理想仪表。产品性能两线制技术,低成本两线制技术降低布线成本,易实现与现有系统的兼容非接触测量,不受介质特性的影响通过数文显示菜单轻松进行现场操作通过操作软件(ToFTool)实现简便的组态、文件编制及诊断功能标准的空气吹洗接口用于粉尘严重或易粘附的介质适用的过程温度Z高达200°C(392)HART通信协议可选择分体远程显示产品应用FMR250型雷达特别适用于对粉状和粒状的固体进行连续,非接触的物位测量。另外它也可用于液体测量。测量不受粉尘,进料噪声,温度分层和气体分层的影响.典型应用场合:在粉尘严重的高的固体料仓(如水泥,生料或动物饲料)中的物位测量。可应用于高温达200℃(392)的场合,如水泥熟料或飞灰。应用于具强研磨作用的固体块料,如铁氧体。[详细]
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2018-09-26 10:00
产品样册
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E+H雷达物位计FMR533系列中文选型资料
- E+H雷达物位计FMR533系列中文选型资料E+H雷达物位计FMR533产品描述:用于连续与非接触极ng确物位测量的智能变送器。已获NMI和PTB认证,适用于计量交接和总量控制场合。E+H雷达物位计FMR533优点精度0.5mm(2σ值)国际认证(NMi,PTB)适用于计量交接可以作为独立的系统使用,也可以通过罐旁指示仪NRF590与储罐计量系统集成.通过数文引导式菜单轻松进行现场操作.采用FDT/DTM技术(FieldCare),方便进行仪表调试、文件编制和故障诊断.可选择专用天线,平面天线可以直接安装于导波管.采用四线制电缆,采用HART通信和24VDC本安供电,安装简单,经济实用所有天线均采用气密过程链接(两道防护)总量控制型精度为3mmE+H雷达物位计FMR533应用领域MicropilotS用于储罐的高精度物位测量,可以用于计量交接,满足OIMLR85和API3.1B的相关需求。FMR533采用抛物面天线,非常适用于罐内测量,测量范围Zda40m(131ft).E+H雷达物位计FMR533系列技术资料FMR533系列技术资料E+H雷达物位计E+H物位计[详细]
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2024-09-13 06:44
产品样册
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E+H雷达物位计FMR245选型资料
- E+H雷达物位计FMR245选型资料E+H雷达物位计FMR245产品描述连续的非接触式物位测量仪表。经济的4-20mA两线制技术,适用于危险区域。E+H雷达物位计FMR245优点经济的两线制技术:是差压、浮子和浮筒式物位计的可靠替代品。采用两线制技术,有效的降低布线成本,且易于实现与现有系统的集成.非接触式测量测量几乎不受介质特性影响.通过数文引导式菜单轻松进行现场操作.通过Endress+Hauser的操作软件便于进行仪表调试、文件编制和故障诊断频率范围采用K波段支持HART或PROFIBUSPA以及FF基金会现场总线协议.耐高温:适用于过程温度高达200°C(392°F)的测量场合用于物位监测(MIN,MAX),符合IEC61508/IEC61511-1标准的要求,通过了SIL2认证选项:气密性电缆入口,提高过程的安全性E+H雷达物位计FMR245应用领域MicropilotM可用于对液体、浆料、淤泥和固料进行连续的非接触式物位测量。测量不受介质改变,温度变化,气层或蒸汽的影响。FMR245-可用于温度高达200°C(392°F)的测量场合,易于清洗。[详细]
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2024-09-13 06:44
产品样册
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E+H导波雷达物位计FMP51系列选型资料
- E+H导波雷达物位计FMP51系列选型资料E+H导波雷达物位计特点1、通用性强:可测量液位及料位,可满足不同温度、压力、介质的测量要求,Z高测量温度可达800℃,Zda压力可达5MPa,并可应用于腐蚀、冲击等恶劣场合。2、防挂料:独特的电路设计和传感器结构,使其测量可以不受传感器挂料影响,无需定期清洁,避免误测量。3、免维护:测量过程无可动部件,不存在机械部件损坏问题,无须维护。4、抗干扰:接触式测量,抗干扰能力强,可克服蒸汽、泡沫及搅拌对测量的影响。5、准确可靠:测量量多样化,使测量更加准确,测量不受环境变化影响,稳定性高,使用寿命长。E+H导波雷达物位计FMP51系列优点:可靠的测量:-可用于动态液面和泡沫液面的液位测量-可用于变化中的介质测量实用性强内置数据存储器工厂预标定直观的菜单引导式操作,多种语言可选便于集成到控制或资产管理系统中极ng确的测量和过程诊断,便于快速决策E+H导波雷达物位计FMP51系列应用领域FMP51-液体液位和界面测量的仪表.测量范围Zda45m(148ft)过程连接尺寸Z小3/4"螺纹或法兰温度范围:-40~+200°C(-40~+392°F)压力范围:-1~40bar(-14.5~580psi)具有下列系统集成通信接口: -4-20mAHART模拟接口 -PROFIBUSPA接口用于物位监测时,符合SIL2要求,由TüV进行独立评估,符合IEC61508标准恩格斯豪斯导波雷达物位计是依据时域反射原理(TDR)为基础的雷达料位计,雷达料位计的电磁脉冲以光速沿钢缆或探棒传播,当遇到被测介质表面时,雷达料位计的部分脉冲被反射形成回波并沿相同路经返回到脉冲发射装置,发射装置与被测介质表面的距离同脉冲在其间的传播时间成正比,经计算得出液位高度。[详细]
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2018-09-26 10:00
产品样册
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endress+hauser德国 E+H 超声波雷达物位计资料选型
- endress+hauser雷达物位计特价@德国恩德斯豪斯物位料位仪¥E+Hfmr230雷达物位计资料下载连续非接触测量,4...20mA两线制,适用于防爆场合.MicropilotM被设计用于对液体、颗粒及浆料进行连续非接触的物位测量。测量不受介质变化、温度变化、惰性气体及蒸汽的影响。FMR230:喇叭天线,频率为6GHz,特别适用于缓冲罐和过程罐的测量产品性能我司优势经销德国E+H全系列产品!期待您的来电:电话:021-36314289传真:021-56182063QQ:1362437371徐小姐我们将竭诚为您服务!!两线制技术,经济型非接触测量:不受介质特性的影响通过数文显示菜单轻松进行现场操作通过操作软件(ToFTool)实现简便的组态、文件编制及诊断具备2个频率范围-约6GHz(FMR230/FMR231)及26GHz(FMR240/244/245):无干扰,适用于任何应用场合HART或PROFIBUS-PA通信协议及基金会现场总线协议高温:适用于高达+200℃(392)的过程温度,当采用高温天线时可达+400℃(752)带有屏蔽管的杆式天线:可在狭窄的加接管及有冷凝和粘附的加接管内可靠测量endress+hauser雷达物位计特价@德国恩德斯豪斯物位料位仪¥E+Hfmr230雷达物位计资料下载[详细]
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2024-09-28 11:10
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E+H雷达物位计技术资料
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E+H雷达物位计E+H物位计报价E+H雷达物位计型号德国E+HE+H总代理E+H上海E+H北京PMC41-RE11H2C11M1PMC41-RE11M2B21T10-400KPAPMC41-RE11P1J21M1PMC41-RE11P2B21T10-1MPAPMC41-RE11P2H11R1PMC41-RE11P2H11R1PMC41-RE11S2A11M1PMC41-RE12M1C11M1PMC41-RE15C2H11A1PMC41-RE15CBJ11R1-20-20MBARPMC41-RE21M2H11T10-250KPAPMC41-RE21P1A11P1PMC41-RE21P1A11P1PMC41-RE25F2J11T1PMC45-RE11C1H1DL4PMC45-RE11C1H1DL4PMC45-RE11H2A1AR1PMC45-RE11H2C1AG1PMC45-RE11H3H1EK7PMC45-RE11M2A1AG1PMC45-RE11M2A1AG1PMC45-RE11M2C1AG1PMC45-RE12P1A1AH4PMC45-RE12P1A1AH4PMC45-RE12P1J1HL4PMC45-RE21H2H1KU1PMC51-AA21JA1CGCGMJA+AKPMC531-D50A2P3--[T]0-50KPAPMC534-11EA2F6G1FTPMC534-11FA2P6---[GT]0-2.5MPAPMC534-11FA2P6T量程:0-400KPAPMC534-11FA2P6Y1G0-6KPAPMC535-13BA2F60-1.0MPAPMC535-13BA2F60-1.6MPAPMC535-13BA2F60-1.0MPAPMC535-13BA2F60-1.6MPAPMC71-1BA1F2GAAAUPMC71-1BA1P2RDAAAPMC71-AAA1C2GAAAUPMC71-AAA1CBGAAAAKPA/MPAPMC71-AAA1PBGHAAU0-0.4MPAPMC71-AAA2FBGAAAA100-300MBARPMC71-AAA2FBGHAAA0-30MBARPMC71-ABA1C1GAAAAPMC71-ABA1E2GPAAUPMC71-ABA1H2AGAAAPMC71-ABA1H2CQAAAPMC71-ABA1H2RDAAUPMC71-ABA1H2RDAAUPMC71-ABA1H3B4AAAPMC71-ABA1K2B3AAAPMC71-ABA1K2GJASAPMC71-ABA1M2AGAAAPMC71-ABA1M2GHAAUPMC71-ABA1P2GHBAAPMC71-ABA1P2GPAAAPMC71-ABA1P2RDAAUPMC71-ABA1S2GPAAAPMC71-ABB1C1GAAAA0-10MBARG1/224VDCPMC71-ABB1C1GAAAA0-40MBARG1/224VDCPMC71-ABC1S2RHAAAPMC71-ACA1M2AGAAAPMC71-ACA1S6RDAAAPMC71-ACA2C1GEBAAPMC71-ACA2CBGHDAA压力为0-100MBARPMC71-ACA2FBGHDAA(0-100MBAR)PMC71-ANA1P21GAAAPMC71-AOA2P3GPAAAPMC731-G41F2S1R1[GT]0-40KPAPMC731-R31C2H1T1-6KPA-0KPAPMC731-R31P2H1T10-1MPAPMC731-R31S2H1T1[GT]0-1.6MPAPMC731-R41C2H1R1出厂就应设置为0~30MBARPMD235-KB4A2EB1CGOT500-500PAPMD235-KB4D2EB1A[GT]0~2KPAPMD235-KB4D2EB1CGOT0-2KPAPMD235-KB4F2EB1APMD235-KB4F2EB6A[GT]禁油0~25KPAPMD235-KB4H2EA1C[G0]PMD235-KH4F2EA1CGT0-15KPAPMD55-AA21BA27BGCHA4A1A+AKPMD70-ABA7F2BAAAPMD70-ABJ7D2BAAUPMD75-ABA7D21BAAA16MPA-10-10KPAPMD75-ABA7D21BAAA16MPA-1-1KPAPMD75-ABA7D21D1AUPMD75-ABA7H22DAAAPMD75-ABC7D21BAAAPMD75-ABC7L21BAAUPMD75-ACA7CB12AAAMBAR/BARPMP131-A1101A1HPMP131-A1101A1SPMP131-A1101A1SPMP131-A1101A1SPMP131-A1101A7100-150BARPMP131-A1101A74PMP131-A1511A2WPMP131-A1511B71PMP131-A1511B74PMP131-A1B01A1GPMP131-A1B01A1GPMP131-A1B01A1NPMP131-A1B01A1NPMP131-A1B01A1NPMP131-A1B01A1NPMP131-A1B01A1RPMP131-A1B01A1RPMP131-A1B01A1SPMP131-A1B01A1TPMP131-A1B01A1TPMP131-A1B01A1WPMP131-A1B01A2NPMP131-A1B01A2NPMP131-A1B01A70PMP131-A2301A73PMP131-A2401A74PMP131-A2401A74PMP131-A3101A1TPMP131-A3B01A1SPMP131-A3B01A1WPMP135-A1F01A1GL=260MMPMP135-A1G01A1QPMP135-A1G01A1RPMP135-A1G01A1RPMP135-A1G01A2QPMP135-A3F01A1TPMP135-A4N01A2SPMP41-GE13P2J11M1PMP41-GE13S1J11S1PMP41-LE27HBJ21F1-1~1BARPMP41-RE23P1A11M1PMP41-RE23SBA21M1PMP45-RE13H1C1DBFPMP46-RE13H2H1KLDPMP46-RE13P2A1ALAPMP46-RE17H1A1ALDPMP46-RE23P2H1PBAPMP51-AA21JA1FGCGMJA1+AKPMP51-AA21RA1FGBGCJA1+AKPMP51-AA22QA1SGCGRJA1PMP51-AA22QA1UGCGRJA1PMP51-B121RA1SGBGCJA1+AKPMP55-AA12QA2HGBCXJA5BPMP71-1BA1S21GPNNU氧气服务PMP71-AAA1S21GAAAAPMP71-AAA1S21GAAAAPMP71-ABA1P21GAAAAPMP71-ABA1S21GPNAAPMP71-ABA1U11GAABAPMP71-ACA1P21GAAAAPMP71-ANA1P21GAAAAPMP731-R33P2H1T10-0.4MPAPMP75-AAA1F21D4AAAPMP75-ABA1K21TDDAAPMP75-ABR1H21TBAAAPTC31-A1A12F1AF4APTC31-A1A12F1AF4APTC31-A1C11P1AF1APTC31-A1C12H1AC1APTC31-A4B11C1AE1APTP31-A1A13S1AE1APTP31-A1A13S1AE1APTP31-A3A13P2DD1A(0-1MPA)PTP31-A3A13S2DD1A(0-4MPA)RIA251-A1RIA251-A1RIA45-A1A1RMS621-22BAA1211TC61-AAEA3CASXCA1AL=200MMTC63-EAEEB1X11CA10L=300MMTID10-A1TMR31-A11ABBAE1AAATMR31-A1BABBAB1AAATMR35-A11ALLAA1AAATMT121-A31BA-10-40℃TMT121-A31BA-10-40℃TMT127-A21BAATMT142-B21331BAA10-350度TMT180-A113ABATMT180-A113ABA0-100度TMT180-A223ACATMT180-A223AEA0-200度TMT181-A31AATMT181-A31BA0-150度TMT181-A41BA0-120℃TMT182-A31BA0-300度TMT182-A41BA0-150℃TMT182-B31BA0-350度TR10-A6D1BHSC23000TR10-AAA1CASC33000TR10-AAA1CASCH3000-20-300度TR10-AAA1CASXC3000300MMTR10-AAA1CASXI3000L=150MMTR10-AAD1BHSF43000温度范围-10-100℃TR10-ABA1CASCCC00ATR10-ABA1CASCH3000(-50-400度)TR10-ABA1CASD23000TR10-ABA1CASDCCOOATR10-ABA1CASX4C000L=110MM(0-150度)TR10-ABA1CASXG2000L=1200MM0-400°TR10-ABA3CASX33000L=150MM-50-250℃TR10-ABA3CASX33000L=150MM-50-250℃TR10-ABB1CAMDG3000L=160MMTR10-ABB1CAMJG3000L=400MMTR10-ABD1BGSDH3000TR10-ABD1BGSF430000-100°TR10-ABD1BGSF430000-100°TR10-ABD1BHS522000L=100MM0-300℃TR10-ABD1BHSX22000L=150MM0-300℃TR10-ABD1BJSJ22000TR10-ABD3BHSD23000(-50-400度)TR10-ABD3BHSD430000-200度TR10-ABD3BHSD430000-200度TR10-ABD3BHSDB3000TR10-ABD3BHSGH30000-200度TR10-ABD3BHSGH30000-200度TR10-ABD3BHSXH3000L=150MM0-100度TR10-ABD8BGSD47000颈长=110MMTR10-ABD8BGSD47000颈长=55MMTR10-ABD8BGSF47000颈长=55MMTR10-ABD8BGSXHC000E=55MML=110MMTR10-ABF3BGSX43000L=110MM0-100度TR10-AFA1CAS5B3000TR11-AAACASU2C000(0-200度)TR11-ABACASX33000L=150MM-50-250℃TR11-AODBHSBH30000-100度TR12-ABA5SAC20000TR12-ABF1SGC30000TR13-ABD3FGSDH3000L=160MM20-200℃TR13-ABD3FGSLH3000L=465MM20-200℃TR13-ABD3FGSMH3000L=580MM0-100℃TR24-AB2AX4C000L=485MM0-150度TR24-AB2AXGG000X=1220MM1XPT100/AA/4TR63-AAEBD1X223A0L=300MMTST40N-CA3FP12BD640-200度TST40N-CA3KP13LD60TST40N-CB3FP13BA40TTR31-A1B111AB2EABFTC260-AA4D1FTC260-AA4D1FTC260-AA4D1FTC260-AA4D2FTC260-AB2D1FTC260-AB4B2FTC260-BA4D1FTC262-AA14D1L=2MFTC262-AA14D1L=500MMFTC262-AA32D1FTC262-AA64D1FTC262-AB14D2L=500MMFTC262-AB32D1FTC325-A2A31FTC325-A2A31FTC325-A2A31FTC325-A2A31FTC625-C1A11FTE30-AAA1FTE30-AAB2FTE30-AAB2FTE30-FAB1FTE30-GBA1FTE30-GBA1FTE30-JA11FTE30-JA21FTE30-JAA1FTE30-JAB1FTE30-JAC1FTE30-JAF1FTE31-A1C121FTE31-B1A111FTI51-A1A2GDJ43A1AL1=180MML2=75MML3=120MMFTI51-A1A2GEJ43A1AL1=400MML2=100MML3=150MMFTI51-AAA1GEJ33A1AL=270MMFTI51-AAB1GGJ42A1AL=900MMFTI55-AAA1RV142A1AL1=2000MMFTI56-AAA2RVJ23A1AL=2000MMFTI56-AAC1RV133B1AL=1100MMFTI56-AAC1RV133B1AL1=1100MMFTI56-AAC1RV133B1AL1=680MMFTI56-AAC1RV133B1A700MMFTI56-AAC1RV133B1A700MMFTI56-AAC1RV143A1AL=1100MMFTI56-AAC1RV143A1AL=1100MMFTI56-AAC1RV143A1AL=700MMFTI56-AAC1RV143B1AL=700MMFTI56-AAC1RV143B1AL=1100MMFTI56-AAC1RV143B1AL=1400MMFTI56-AAC1RV143B1AL=1400MMFTI56-AAC1RV143B1AL=1600MMFTI56-AAC1RV143G1AL=1100MMFTI56-AAC1RV143G1AL=700MMFTI56-AAC1RV143G1AL=700MMFTI56-CAB2RVJ43A1AL=1000MMFTI56-CAB2RVJ43A1AL=700MMFTL20-0010FTL20-0020FTL20-0020FTL20-0020FTL20-0020FTL20-0020FTL20-0020FTL20-0020FTL20-0025FTL20-0025FTL20-0025FTL20-0025FTL20-0025FTL20-0025FTL20-0025FTL20-0025FTL20-002BFTL20-002BFTL20-002BFTL20-002BFTL20-002CFTL20-002DFTL20-002DFTL20-002DFTL20-002DFTL20-002DFTL20-002DFTL20-002DFTL20-002DFTL20-002DFTL20-002DFTL20-0110FTL20-0120FTL20-0120FTL20-012CFTL20-012EFTL20-012EFTL20-012EFTL20-062BFTL20-062BFTL20-062DFTL20-312BFTL20H-0GCJ2EFTL20H-0GEJ2BFTL20H-0GEJ2BFTL20H-0MNJ2CFTL20H-0TCJ2BFTL20H-0TCJ2BFTL20H-0TCJ2BFTL20H-0TCJ2BFTL20H-0TCJ2DFTL20H-0TDJ2DFTL20H-0UPJ2BFTL20H-0UPJ2DFTL20H-0UPJ2EFTL20H-OTCJ2BFTL20H-OUPJ2BFTL20H-OUPJ2DFTL20H-OUPJ2DFTL260-0010FTL260-0020FTL260-0020FTL260-0020FTL260-0022FTL260-1020FTL260-3020FTL325P-F1A1FTL50-ABR2AA4GFTL50-AGE2AA2G4AFTL50-AGN2AA1GFTL50-AGQ2AA4G4AFTL50-AGQ2AA4GFTL50-AGR2AA2GFTL50-AGR2AA2GFTL50-AGR2AA2GFTL50-AGR2AA4GFTL50-AGR2AA4GFTL50-AGR2AA4GFTL50-AGW2AA2E6AFTL50-AGW2AA2E6AFTL50-AGW2AA4E6AFTL50-ATE2AA4GFTL50-DGR2AA2GFTL50H-AEE2AC2G4AFTL50H-AEE2AC2G6AFTL50H-AEE2AD2G6CFTL50H-AMC2AC2G6AFTL50H-ATC2AD2G6CFTL50H-ATE2AD4G6AFTL50H-ATE2AD4G6AFTL50H-ATE2AD4G6AFTL50H-AWE2AC2G6AFTL50H-AWE2AD2G6AFTL50-KAE2AA4EFTL50-LGN2AA4G7AFTL51-AAF2BB2G4AL=250MMFTL51-ABG2BB4GL=700MMFTL51-AC82BB4G4AL=500MMFTL51-ACN2BB2G4AL=300MMFTL51-AGM2BB4GL=148MMFTL51-AGN2BB4EL=220MMFTL51-AGN2BB4GL=150MMFTL51-AGN2BB4GL=200MMFTL51-AGN2CB4E16INCHFTL51-AGN2CB4E24INCHFTL51-AGN2CB4E6A10INCHFTL51-AGN2DB2G4AFTL51-AGN2DB2G4AFTL51-AGR2BB2GL=220MMFTL51-AGR2BB2GL=530MMFTL51-AGR2BB4G4AL=200MMFTL51-AGR2BB4GL=150MMFTL51-AGR2BB4GL=250MMFTL51-AGR2BB5G4AL=200MMFTL51-AGR2BB7GL=370MMFTL51-AGR2DB1GFTL51-AGR2DB2G4AFTL51-AGR2DB2GFTL51-AGR2DB2GFTL51-AGR2DB4G4AFTL51-AGR2DB4GFTL51-AGR2DB4GFTL51-AGR2DB4GFTL51-AGR2DB4GFTL51-AGR2DB4GFTL51-AGR2DB4GFTL51-AGW2DB4G4AFTL51-AGW2DB4G4AFTL51-AGW2DB4G4SFTL51-AGW2DB4G4SFTL51-AGW2DB4G4SFTL51-DGR2DB4G4AFTL51-GBR2BB6G,L=300MMFTL51-GGR2BB6GL=300MMFTL51-KCG5BE4GL=350MMFTL51-KGN2BB4EL=148MMFTL51-KGN2BB4GL=300MMFTM21-AA24FTM21-AA442AFTM21-AG24FTM21-AG34FTM50-2GG2A4AH2AAFTM50-2GG2A4AH2AAFTM50-2GG2A4AH2AAFTM50-F2A4AH2AAFTM50-6GG2A4A52AAFTM50-6GG2A4A57AAFTM50-AGG2A2A12AAFTM50-AGG2A2A12AAFTM50-AGG2A2A12AAFTM50-AGG2A2A12AAFTM50-AGG2A2A32AAFTM50-AGG2A2A32AAFTM50-AGG2A2A32AAFTM50-AGG2A4A32AAFTM50-AGG2A4A32AAFTM50-AGG2A4A32AAFTM50-AGG2A4A52AAFTM50-AGJ2A4A14AAFTM50-AGJ2A4A52AAFTM50-AGJ2A4A52AAFTM50-AGJ2A4A52AAFTM50-AGJ2A4A54AAFTM50-AGX2K4A32AAFTM51-4GG2L4A32AA,L=450MMFTM51-6GJ2L4A52ADL=300MMFTM51-6GJ2L4A57AAL=470MMFTM51-AAF2L4A34AAL=430MMFTM51-AAF2L4A34AAL=620MMFTM51-AGG2L2A12AAL=500MMFTM51-AGG2L4A12AAL=400MMFTM51-AGG2L4A12AAL=300MMFTM51-AGG2L4A12AAL=400MMFTM51-AGG2L4A32AAL=600MMFTM51-AGG2L4A32AAL=320MMFTM51-AGG2L4A32AAL=500MMFTM51-AGG2L4A52AAL=400MMFTM51-AGG2M4A32AAL=1100MMFTM51-AGG2M4A32AAL=1700MMFTM51-AGG2M4A32AAL=1900MMFTM51-AGG2M4A32AAL=900MMFTM51-AGJ2L4A32AAL=1500MM(替代FTM31-A4AB1A)FTM51-AGJ2L4A57AAL=470MMFTR325-A1E1FTW31-A1A3AA2AL=1000MMFTW31-A1A3CA0AFTW31-A2A2CA4AFTW325-A2A1AFTW325-A2B1AFTW325-B2A1AFXA195-G1P30-13011P31-100190-40MPAP31-100050-100KPAP31-100100-1.0MPAP31-20010P41-P100A40P41-P100A40(0-1MPA)P41-P100A46P41-P230A260-0.1MPAP41-P230A400-1MPAPMC131-A11F1A1GPMC131-A11F1A1GPMC131-A11F1A1KPMC131-A11F1A1QPMC131-A11F1A1RPMC131-A11F1A1RPMC131-A11F1A1SPMC131-A11F1A1SPMC131-A11F1A1SPMC131-A11F1A1SPMC131-A11F1A1SPMC131-A11F1A1S--0-10BARPMC131-A11F1A1TPMC131-A11F1A1TPMC131-A11F1A1W0-25BARPMC131-A11F1A1XPMC131-A11F1A2G0-1000MBARPMC131-A11F1A2RPMC131-A11F1A2SPMC131-A11F1D10PMC131-A11F1D10PMC131-A11F1D10PMC131-A11F1D12PMC131-A11F1D14PMC131-A11F1D14PMC131-A11F1D220-200BARPMC131-A11F1D31PMC131-A11F1D31PMC131-A11F1D3WPMC131-A11F1D3WPMC131-A12F1A1RPMC131-A12F1A1SPMC131-A15F1A1SPMC131-A15F1A1SPMC131-A15F1A1SPMC131-A15F1A1SPMC131-A15F1A1SPMC131-A15F1A1VPMC131-A15F1A2KPMC131-A15F1D31PMC131-A15FSA1SPMC131-A22F2A1Q0-4BARPMC131-A22F2A2G0-16BARPMC131-A31F1A1TPMC131-C12F1A2QPMC133-1B1F2F6PMC133-1B1F2F63.5MPAPMC133-1B1F2F6-4000-0PAPMC133-1B1F2P3F1S(GT)PMC133-1B1F2P6G1MPAPMC133-1B1F2P6G1HTPMC133-1B1F2P6T0-0.04MPAPMC133-1B1F2P6T0-0.16MPAPMC133-1B1F2P6T0-1.6MPAPMC133-1B1F2P6T0-10KPAPMC133-1B1F2P6T0-2.5MPAPMC133-1B1F2P6T0-2MPAPMC133-1B1F2P6T0-3.6MPAPMC133-1B1F2P6T(0-1.6MPA)PMC133-1B5F2P6T0-2.5MPAPMC41-HE21P2P11T1PMC41-RC11P2C11M1PMC41-RC11P2C11M1PMC41-RE11C2J21T1E+H雷达物位计E+H物位计报价E+H雷达物位计型号德国E+HE+H总代理E+H上海E+H北京[详细]
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2024-09-13 06:43
产品样册
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E+H雷达物位计选型资料FMR230/231/240/244/245/系列
- E+HFMR231雷达物位计产品简介:连续非接触测量,4...20mA两线制,适用于防爆场合.MicropilotM被设计用于对液体、颗粒及浆料进行连续非接触的物位测量。测量不受介质变化、温度变化、惰性气体及蒸汽的影响。FMR231:杆式天线,频率为6GHz,适用于需要强的化学品适应性的场合产品性能:两线制技术,经济型非接触测量:不受介质特性的影响通过数文显示菜单轻松进行现场操作通过操作软件(ToFTool)实现简便的组态、文件编制及诊断具备2个频率范围-约6GHz(FMR230/FMR231)及26GHz(FMR240/244/245):无干扰,适用于任何应用场合HART或PROFIBUS-PA通信协议及基金会现场总线协议高温:适用于高达+200℃(392)的过程温度,当采用高温天线时可达+400℃(752)带有屏蔽管的杆式天线:可在狭窄的加接管及有冷凝和粘附的加接管内可靠测量E+HFMR245雷达物位计连续非接触测量,4...20mA两线制,适用于防爆场合.MicropilotM被设计用于对液体、颗粒及浆料进行连续非接触的物位测量。测量不受介质变化、温度变化、惰性气体及蒸汽的影响。FMR245:频率为26GHz,精度为±3mm,抗腐蚀性强易于清理产品性能:两线制技术,经济型非接触测量:不受介质特性的影响通过数文显示菜单轻松进行现场操作通过操作软件(ToFTool)实现简便的组态、文件编制及诊断具备2个频率范围-约6GHz(FMR230/FMR231)及26GHz(FMR240/244/245):无干扰,适用于任何应用场合HART或PROFIBUS-PA通信协议及基金会现场总线协议高温:适用于高达+200℃(392)的过程温度,当采用高温天线时可达+400℃(752)带有屏蔽管的杆式天线:可在狭窄的加接管及有冷凝和粘附的加接管内可靠测量更多E+H产品信息请来电咨询!张琳琳18930942026[详细]
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2018-09-26 10:00
产品样册
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E+H FTI52电容式限位开关中文选型资料
- FTI52电容式限位开关一体化电容式物位探头,全绝缘、部分绝缘杆式探头及缆式探头应用LiquicapM探头主要用于对液体物料和轻质固体物料进行限位探测。探杆或探缆及外部绝缘管材料均具有很强的耐蚀能力,可对强腐蚀性物料进行测量。锥形子密封的机械结构确保了探头可承受100bar压力。特殊的密封剂绝缘材料使探头适用于-80℃...200℃应用场合。FTI52电容式限位开关性能和优点仪表获取了多项证书和认证,因而应用范围十分广泛含有抗冷凝管,使其工作更加可靠限位探测过程中,探头具有主动物料粘结补偿能力,使得探头在粘结严重场合下亦能维持稳定、极ng确的开关点,无须对其进行清洗或重复标定与介质接触部分由防腐材料和FDA认证的材料制成更换电子插件无需重新标定仪表自动监控电子插件的状态FTI52电容式限位开关FTI51电容式限位开关[详细]
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2024-09-28 07:08
产品样册
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FMR231系列德国E+H雷达物位计资料下载
- FMR231系列德国E+H雷达物位计资料下载FMR231系列德国E+H雷达物位计优点:经济的两线制技术:是差压、浮子和浮筒式物位计的可靠替代品。采用两线制技术,有效的降低布线成本,且易于实现与现有系统的集成非接触式测量测量几乎不受介质特性影响。FMR231系列德国E+H雷达物位计通过数文引导式菜单轻松进行现场操作.通过Endress+Hauser的操作软件便于进行仪表调试、文件编制和故障诊断频率范围采用C波段支持HART或PROFIBUSPA以及FF基金会现场总线协议带屏蔽段的杆式天线可在小管径安装短管及有冷凝和粘附的安装短管内进行可靠测量用于物位监测(MIN,MAX),符合IEC61508/IEC61511-1标准的要求,通过了SIL2认证选项:气密性电缆入口,提高过程的安全性FMR231系列德国E+H雷达物位计应用领域MicropilotM可用于对液体、浆料、淤泥和固料进行连续的非接触式物位测量,.测量不受介质改变、温度变化、气层或蒸汽的影响。TheFMR231特别适合于需强化学品质适应性的测量场合我公司专做欧美品牌,所有欧美品牌直接境外欧美国家采购,有自己的报关公司,货期可以缩短一半,价格更有优势。以下品牌是我公司优势品牌:一:德国HAWE德国REXROTH德国FESTO德国BURKERT德国E+H德国西门子德国STAUFF西德福德国SCHMERSAL德国NEGELE耐格德国EMG(只做SV伺服阀系列)德国STEIMEL德国赫斯曼德国MURR德国HYADC德国P+F德国TURCK图尔克德国SICK施克德国IFM博恩斯坦德国GSR德国PILZ德国MAHLE德国巴鲁夫德国冬斯德国劳易测德国Linde林德德国COAX二:意大利ATOS意大利UNIVER意大利杰弗伦英国海隆诺冠意大利万福乐法国高诺斯意大利康茂盛三:美国ASCOPARKER派克美国克力帕VICKERS威格士美国MOOG美国MAC美国纽曼帝克美国德威尔公司还有代理部分日本品牌(日本品牌直接办事处采购)如下:CKD喜开理,黑田精工,SUNX神视,TOYOOKI丰兴,NACHI不二越,DAIKIN大金,KOGANEI小金井,TACO,NOK,东京美。【我公司可以自己进口报关】FMR231系列德国E+H雷达物位计资料下载[详细]
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2018-10-06 10:02
产品样册
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E+H导波雷达物位计下载
- 我们在德国有公司,美国有公司,能够以**手的价格采购到欧美品牌产品。因为我们公司能够自己报关,所以能够更好的掌握产品的进度以及在您急需期货产品的时候帮您加急采购到全新原装。我们的宗旨就是帮助客户以***的价格,Z短的货期,**的服务帮助您采购到您所需要的全新原装进口产品。我们公司进口气动液压工控产品都有销售。公司目前主要优势品牌有:FESTO费斯托(加急5-7天可到货),HAWE哈威,ASCO阿斯卡,BURKERT宝德,BOSCH-REXROTH博世力士乐,IFM易福门,TURCK图尔克,PF倍加福,BALLUFF巴鲁夫,SICK施克,STEIMEL施特梅尔泵,HIRSCHMAN赫斯曼,MURR穆尔,HYDAC贺德克,GSR,CROUZET高诺斯,EH恩格斯豪斯,PILZ皮尔兹,MAHLE马勒,海隆HERION,NORGREN诺冠,SCHMERSAL施迈赛,SIEMENS西门子,STAUFF西德福,NEGELE耐格,EMG,UNIVER,ATOS阿托斯,KACON凯昆,VICKERS威格士,MAC,PARKER派克,MOOG穆格,AB,FAIRCHILD仙童,DENISON丹尼逊,ROSS,UE,MTS等。公司还有代理部分日本品牌如下:CKD喜开理,黑田精工,太阳铁工,SUNX神视,TOYOOKI丰兴,NACHI不二越,DAIKIN大金,TACO。本公司坐落于东莞Z有名的地方宏远大厦,欢迎新老客户前来参观考察。测量原理导波雷达料位计是依据时域反射原理(TDR)为基础的雷达料位计,雷达料位计的电磁脉冲以光速沿钢缆或探棒传播,当遇到被测介质表面时,雷达料位计的部分脉冲被反射形成回波并沿相同路经返回到脉冲发射装置,发射装置与被测介质表面的距离同脉冲在其间的传播时间成正比,经计算得出液位高度。2安装指南下述的安装指南适用于缆式和杆式探头测量固体颗粒料和液体物体。同轴管式探头只适用于液体物体。E+H导波雷达物位计下载安装位置尽量远离出料口和进料口。对金属罐和塑料罐,在整个量程范围内不碰壁。如果是金属罐,物位仪表不要安装在罐的ZY。建议安装在料仓直径的1/4处。缆式探头或杆式探头离罐壁Z小距离不小于30厘米。探头底部距罐底大约30mm。探头距罐内障碍物Z小距离不小于200mm。如果容器底部是锥型的,传感器可以安装罐顶ZY,这样可以一直测量到罐底。E+H导波雷达物位计下载输入反射的脉冲信号沿缆绳传导至仪表电子线路部分,微处理器对此信号进行处理,识别出微波脉冲在物料表面所产生的回波。正确的回波信号识别由智能软件完成,距离物料表面的距离D与脉冲的时间行程T成正比:D=C×T/2导波雷达物位计[1]其中C为光速因空罐的距离E已知,则物位L为:L=E-DE+H导波雷达物位计下载输出通过输入空罐高度E(=零点),满罐高度F(=满量程)及一些应用参数来设定,应用参数将自动使仪表适应测量环境。对应于4-20mA输出。3测量范围说明H----测量范围L----空罐距离B----顶部盲区E----探头到罐壁的Z小距离顶部盲区是指物料Z高料面与测量参考点之间的Z小距离。底部盲区是指缆绳Z底部附近无法极ng确测量的一段距离。顶部盲区和底部盲区之间是有效测量距离。E+H导波雷达物位计下载注意:使用导波雷达物位计只有物料处于顶部盲区和底部盲区之间时,才能保证罐内物位的可靠测量。4导波雷达物位计测量液体时的安装指导下述安装指导适用于杆式和缆式探头的导波雷达物位计,管式探头测量与安装方式无关。安装位置距离罐壁的距离建议为罐直径的1/6-1/4(至少300mm,混凝土罐至少400mm)不要安装在金属罐中间不要装在下料口处选择探头长度时,注意探头底部距罐底约大于30mm注意介质温度罐内障碍物安装时注意探头距离障碍至少200mm干扰的祛除干扰回波YZ:软件可实现对干扰回波的YZ,从而达到理想测量效果旁通管及导波管(仅适用于液体)对于粘度不打于500cst,可采用旁通管,导波管或管式来避免干扰。液体标准安装对于粘度≤500cst且不易产生粘附的介质,管式探头是**方案,其特点如下:zhuo越的可靠性可用于介电常数大于等于1.4的任何介质,测量与介质的导电性无关罐内障碍物及短管尺寸不影响测量比杆式探头能承受的横向压力高对于高粘度的介质,建议使用杆式探头仪表在卧罐及立罐上的安装管式探头及杆式探头Z长可到6米对于测量距离超过6米的罐,可选用8mm缆式探头安装及固定方式同固体粉仓测量对距罐壁的距离无限制,只要避免探头接触罐壁即可如果罐内障碍物比较多或过于靠近探棒时,请选用管式探头腐蚀性介质测量如果测量腐蚀性介质,可选用杆式探头的导波雷达物位计套一个塑料套管进行测量5导波雷达物位计的技术参数参数:工作频率:100MHZ-1.8GHZ测量范围:缆式:0-30m;杆式、同轴式:0-6m重复性:±3mm分辨率:1mm采样:回波采样55次/s响应速度:>0.2S(根据具体使用情况而定)输出电流信号:4-20mA精度:<0.1%通讯接口:HART通讯协议过程连接:G1-1/2法兰DN50,DN80,DN100,DN150过程压力:-1-40bar电源:24VDC(±10%),纹波电压:1Vpp耗电量:max22.5mA环境条件:温度-40℃~+80℃外壳防护等级:IP68防爆等级:EXiaIICT6两线制接线:仪表供电和信号输出共用一根两芯屏蔽电缆线电缆入口:2个M20×1.5(电缆直径5--9mm)6导波雷达物位计产品性能测量不受以下因素影响:液体密度物料的电气特性液体表面的湍流和泡沫的对测量无影响四行文本显示,简单菜单引导式现场操作通过所提供的ToFTool软件可方便地实行远程操作、诊断和测量点的文件编制可提供远程操作及显示通过现场包络线显示进行诊断电子设备可在不打开储罐的情况下进行更换在要求安全作用达到SIL2时,根据IEC61508/IEC61511-1提供安全连锁系统(溢出保护)认证:欧洲:ATEX,EHEDG(FMP41C),PED(FMP45),WHG北美:FM,CSA;燃气锅炉条例(FMP45)7导波雷达物位计特点1、通用性强:可测量液位及料位,可满足不同温度、压力、介质的测量要求,Z高测量温度可达800℃,Zda压力可达5MPa,并可应用于腐蚀、冲击等恶劣场合。2、防挂料:独特的电路设计和传感器结构,使其测量可以不受传感器挂料影响,无需定期清洁,避免误测量。3、免维护:测量过程无可动部件,不存在机械部件损坏问题,无须维护。4、抗干扰:接触式测量,抗干扰能力强,可克服蒸汽、泡沫及搅拌对测量的影响。5、准确可靠:测量量多样化,使测量更加准确,测量不受环境变化影响,稳定性高,使用寿命长。[详细]
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2024-09-13 06:44
产品样册
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E+H雷达物位计FMR244系列
- E+H雷达物位计FMR244系列E+H雷达物位计FMR244产品描述连续的非接触式物位测量仪表。经济的4-20mA两线制技术,适用于危险区域。优点经济的两线制技术:是差压、浮子和浮筒式物位计的可靠替代品。采用两线制技术,有效的降低布线成本,且易于实现与现有系统的集成非接触式测量测量几乎不受介质特性影响通过数文引导式菜单轻松进行现场操作.通过Endress+Hauser的操作软件便于进行仪表调试、文件编制和故障诊断频率范围采用K波段支持HART或PROFIBUSPA以及FF基金会现场总线协议用于物位监测(MIN,MAX),符合IEC61508/IEC61511-1标准的要求,通过了SIL2认证应用领域MicropilotM可用于对液体、浆料、淤泥和固料进行连续的非接触式物位测量。测量不受介质改变,温度变化,气压或蒸汽的影响。FMR244不仅具有喇叭天线的优势,而且还具有极强的抗化学腐蚀性。80mm(3")喇叭天线还可以用于固体测量.[详细]
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2024-09-13 06:44
产品样册
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e+h雷达物位计说明总结
- e+h雷达物位计说明总结雷达物位计具有低维护,高性能、高精度、高可靠性,使用寿命长等优点。在与电容,重锤等接触式仪表相比较,具有无可比拟的优越性。微波信号的传输不受大气的影响,所以它可以满足工艺过程中挥发性气体、高温、高压、蒸汽、真空及高粉尘等恶劣环境的要求。该产品适用于高温、高压、真空、蒸汽、高粉尘及挥发性气体等恶劣环境。可对不同料位进行连续测量。该仪器主要技术指标达到或优于国内外同类产品,且安装调试简便,可以单台使用,也可组网使用,可广泛应用于冶金、建材、能源、石化、水利、粮食等行业。MicropilotM可用于对液体、浆料、淤泥和固料进行连续、非接触式物位测量。测量不受介质改变、温度变化、气层或蒸汽的影响。FMR230特别适用于缓冲罐和过程罐的物位测量FMR231用于需强化学品质适应性的测量场合FMR240小喇叭天线(40mm)的FMR240特别适用于小容器中的物位测量,测量精度可达±3mmFMR244带喇叭天线,具有强抗腐蚀能力FMR245抗腐蚀能力强,测量温度高达200℃,易于清洗e+h雷达物位计设定说明:1、基本设定⑴首先选择罐体形状,可根据需要选择。⑵介质特性的选择是由溶液的电导率大小决定的。⑶一般,如果罐体带搅拌,因此在条件选项里进行设置。⑷进行空罐标定和满罐标定,根据现场的实际情况将计算好的数据输入即可。2、安全设定在安全设定界面可根据生产需要设置报警输入输出等参数。3、线性化设置无论罐体形状怎样,都需要计算出溶液的Z高高度即物位和溶液距测量参考点的高度即空高。然后进行自定义单位和线性化的选择。4、扩展标定由于储罐内的搅拌器和罐壁都有可能产生回波,为了不影响测量精度,因此必须选择干扰回波YZ图,也就是将测量距离与现实距离进行比较。距离太大或太小带来的干扰误差都不能用YZ图消除,只有当检查距离选择OK时,YZ图用于当前的测量回波,YZ范围由技术人员根据现场需要计算出。[详细]
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2024-09-13 06:43
产品样册
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德国E+H雷达物位计说明
- 德国E+H雷达物位计说明德国E+H应用领域:现今物位测量领域困扰用户的是一些大型固体料仓的物位测量,特别是用于50/100米以内的充满粉尘和扰动的加料状态下的料仓。相关技术的仪表例如电容或导波雷达TDR在放料时物位下降时会受到很强的张力负载,可能会损坏仪表或把仓顶拉塌掉。重锤经常有埋锤的问题,需要经常维修,大多数其他机械式仪表也是这样。而高粉尘工况又可能会超出非接触式超声波物位测量系统的能力。E+H技术参数:环境温度:-20-60℃供电电源:AC220V±10%50Hz测量精度:0.5%功耗:≤3W模拟输出:4-20mA,负载能力≤550Ω继电器输出:4组继电器转换接点(AC220V2A)安装方式:盘装开孔152(宽)×76(高)壁挂尺寸210(宽)×280(长)×110(厚)高频的调频雷达技术尤其适合这种大型固体料仓的物位测量!功能与系统设计测量原理Micropilot是一种"俯视式"时间行程测量系统。用于测量从参考点(即过程连接点)到物料表面的间距。天线发出微波脉冲,在被测物料表面产生反射,并被雷达系统所接收。输入天线接收反射的微波脉冲并将其传输给电子线路,微处理器对此信号进行处理,识别出微波脉冲在物料表面所产生的回波。明确的信号识别由PulseMaster软件完成,该软件凝聚了多年的时间行程测量的经验。通过该软件的ZL算法可达到毫米级精度。距离物料表面的距离D与脉冲的时间行程t成正比:D=c?t/2其中c为光速因空罐距离E已知,则物位L为:L=E-DE的参考点可参见上图。Micropilot有回波干扰YZ功能。此功能可由用户激活,保证了由边缘和焊缝等干扰源引起的干扰回波不会被误认为物料回波。输出Micropilot通过输入空罐高度E(=零点),满罐高度F(=满量程)及一些应用参数来进行设定。应用参数将自动使仪表适应测量环境。对电流输出型仪表,数据点"E"和"F"分别对应于4mA和20mA输出,对数字输出型和显示模块,则分别对应于0%和1**%。可在现场或远程手工或半自动地通过输入表格进行线性化,以便对球罐、卧式柱型罐及锥底罐中的物位进行测量。设备结构[详细]
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2024-09-13 06:44
产品样册
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E+H 雷达物位计 FMR10技术资料
- 雷达物位计FMR10进行连续非接触式物位测量,一般用在储罐、敞口池、泵轴及沟渠系统中进行液位测量,适用领域一般是水和污水行业以及一些公用工程中。FMR10采用了完全密封接线,避免渗水,全PVDF整体外壳延长了传感器使用寿命,即使在比较苛刻的工况中依然可以正常工作。雷达物位计FMR10优势采用Bluetooth无线技术的雷达测量仪表配备duyi无二的雷达芯片设计的超紧凑型雷达,满足狭小空间应用要求寿命长,耐用的雷达。简单设置三个主要参数即可满足大多数应用要求通过蓝牙实现简单安全的无线远程访问,即使在危险区中或狭小空间中雷达物位计FMR10应用领域连续液位测量雷达。可以在储罐、敞口池、泵站或下水池中使用。过程连接:螺纹过程温度:-40...+60°C(-40...+140°F)过程压力:-1...+3bar(-14.5...+43psi)测量范围:安装溢流管实现保护时可达8m(26ft)测量精度:±5mm(0.2")工作频率:26GHz特征和规格测量原理雷达物位特点/应用-SimpleapplicationsinWater&Wastewater-Utilityapplicationsinallindustries-Easystoragetanks特点Bluetoothcommissioning,OperationandmaintenanceviaSmartBlueApp电源/通信2-wire(4…20mA)BluetoothwirelesstechnologyandApp频率K-band(~26GHz)测量精度+/-5mm(0,2")过程温度-40…+60°C(-40…+140°F)过程压力(绝压)/Zda过压限定值-1…3bar(-14,50…43psi)主要接液部件PVDF,PBT过程连接Thread:G1",NPT1";G11/2",NPT11/2"Zda测量距离8m通信Bluetoothwirelesstechnology证书/认证CSAC/US选项FloodingprotectiontubeDifferentmountingpossibilities应用限制DK<4:FMR5x;Turbulentsurfaces:FMR5x;Ammoniacalgasphase:FMR54instil领well;Strongbuild-upformation:FMR54withairpurge;OnlyPTFEresistant:FMR52;Custodytransfermeasurement:FMR5xxorNMR8xFMR10-AAQBMVCEVEE2认证AA非防爆场合电源/输出操作:Q2-线;4-20mA;蓝牙(App)设定天线Zda测量范围:BM40mm/1-1/2";5m液体-40…60oC/-40…140oF后端过程连接材质VCE螺纹ASMEMNPT1;PVDF;FNPT1/2电缆入口连接前端过程连接材质VEE螺纹ASMEMNPT1-1/2;PVDF电缆长度210m雷达物位计FMR10具体型号如下:FMR10-AAQBMVCEVEE2FMR10-AAQBMVCEWFE2FMR10-AAQBMWDEWFE2FMR10-AAQBMVCEWFE2+R7FMR10-AAQBMWDEWFE2+R7[详细]
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2024-09-13 06:44
产品样册
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恩德斯豪斯E+H雷达物位计各项资料
- 微波物位计,俗称雷达(Radar)物位计,雷达是英文RadioDetectionandRaging(无线电检测与测距)首字母的缩写词。德国恩德斯豪斯E+H雷达物位计已成为物位测量仪表市场上的主流产品,主要分为德国恩德斯豪斯E+H雷达物位计和导波德国恩德斯豪斯E+H雷达物位计德国恩德斯豪斯E+H雷达物位计发射功率很低的极短的微波通过天线系统发射并接收。雷达波以光速运行。运行时间可以通过电子部件被转换成物位信号。一种特殊的时间延伸方法可以确保极短时间内稳定和极ng确的测量。即使存在虚假反射的时候,Zxin的微处理技术和软件也可以准确地分析出物位回波。通过输入容器尺寸,可以将上空距离值转换成与物位成正比的信号。仪表可以空仓调试。在固体测量中的应用可以使用K-频段的高频传感器。由于信号的聚焦效果非常好,料仓内的安装物或仓壁的粘附物都不会影响测量。导波德国恩德斯豪斯E+H雷达物位计导波德国恩德斯豪斯E+H雷达物位计的微波脉冲沿着一根缆、棒或包含一根棒的同轴套管运行,接触到被测介质后,微波脉冲被反射回来,并被电子部件接收,并分析计算其运行时间。微处理器识别物位回波,分析计算后将它转换成物位信号给出。由于测量原理简单,可以不带料调整,从而节省了大量调试费用。测量缆或棒可以截短,使之更加适应现场的应用。对于蒸汽不敏感,即使在烟雾、噪音、蒸汽很强烈的情况下,测量精度也不受到影响。不受介质特性变化的影响,被测介质的密度变化或介电常数的变化不会影响测量精度。粘附:没有问题,在测量探头或容器壁上粘附介质不会影响测量结果。容器内安装物如果采用同轴套管式的测量完全不受容器内安装物的影响,不需要特殊调试。可以提供不同形式的探头用于不同应用:缆式,用于测量液体介质或重量大的固体介质,量程可达60米;棒式,用于测量液体介质或重量轻的固体介质,量程可达6米;同轴套管,用于测量低黏度的介质,不受过程条件的影响,量程可达6米。德国恩德斯豪斯E+H雷达物位计采用微波脉冲的测量方法,并可在工业频率波段范围内正常,波束能量低,可安装于各种金属、非金属容器或管道内,对液体、浆料及颗粒料的物位进行非接触式连续测量。适用于粉尘、温度、压力变化大,有惰性气体及蒸汽存在的场合。德国恩德斯豪斯E+H雷达物位计对人体及环境均无伤害,还具有不受介质比重的影响,不受介电常数变化的影响,不需要现场校调等优点,不论是对工业需要,还是对顾客经济实惠的考虑,都是不错的选择。工作原理微波物位计工作方式类似雷达:向被测目标发射微波,由目标反射的回波返回发射器被接收,与发射波进行比较,确定目标存在并计算出发射器到目标的距离。组成部分仪表部分环境温度:-20-60℃供电电源:AC220V±10%50Hz测量精度:0.5%功耗:≤3W模拟输出:4-20mA,负载能力≤550Ω继电器输出:4组继电器转换接点(AC220V2A)安装方式:盘装开孔152(宽)×76(高)壁挂尺寸210(宽)×280(长)×110(厚)德国恩德斯豪斯E+H雷达物位计探极部分介质温度:-40-240℃传输距离:传感器和仪表之间的信号传输距离小于1.2km探极种类:棒式、缆式、同轴式、重型缆式安装尺寸:G1.5管螺纹仓内压力:小于4MPa德国恩德斯豪斯E+H雷达物位计通用电容式物位计实现了电容式物位计进料一次完成标定的简易操作;从而实现了物位测量的强功能与易操作的wan美结合,充分体现了我司与时俱进的创新精神和能力。它由传感器和二次仪表两部份组成。传感器放在料仓顶,探极垂直伸进料仓内,二次仪表放在其他合适的地方。传感器把物位的变化转变成与之对应的电脉冲信号,远传给二次仪表处理,再用光柱显示物位高度,并有高/低限报警和4~20mA变送输出,适用于液体/固体物料作物位高度显示、报警、控制和远传显示或组成系统。工作电源:AC220V±10%或DC24V功耗:5W显示方式:光柱显示测量精度:≤±1%FS传感器防护等级:IP65仪表工作环境温度:-40~45℃探极工作(介质)温度:普通型:-20~60℃中温型:-40~200℃高温型:-40~800℃介质压力:压力型≤3MPa(其余型号为常压)传感器与二次仪表的连线及距离:距离<200m,用直径1.5mm以上的导线(**是双绞线)连接,每条导线电阻应小于3欧姆检测范围:≤11000p报警输出方式:两组继电器常开、常闭触点,对应高、低两点输出,分别可选物位的90%、80%、70%和30%、20%、10%,出厂是置于80%和20%处。(触点容量AC250V,0.3A;DC28V,0.;电阻负载)变送输出:4~20mA二次仪表外型尺寸:48(宽)×96(高)×112(深)二次仪表开孔尺寸:43+1(宽)×91+1(高)德国恩德斯豪斯E+H雷达物位计选型事项雷达和多数的测量仪表一样,选型无非是以下三个方面:介质特性方面有无腐蚀性、粘附性如何、磨损力度如何、介电常数如何等等,根据这些选择缆绳的类型和仪表特征容器、环境特性方面容器尺寸如何、是否有障碍物或者搅拌、安装要求如何、量程、结构、环境是否需要防爆控制要求方面要什么信号输出?是否需要就地显示?精度有何要求?分辨力?供电要两线还是4线?参照下图左侧参数就非常清晰选择了。德国恩德斯豪斯E+H雷达物位计技术方案连续调频(FMCW)技术连续调频(FMCW)技术测量物位是将传播时间转换成频差的方式,通过测量频率来代替直接测量时差,来计算目标距离。发射一个频率被线性调制的微波连续信号,频率线性上升(下降),所接收到的回波信号频率也是线性上升(下降)的,两者的频率差将比例于离目标的距离。频率被调制的信号通过天线向容器中被测物料面发射,被接收的回波频率信号和一部分发射频率信号混合,产生的差频信号被滤波及放大,然后进行快速傅利叶变换(FFT)分析,FFT分析产生一个频谱,在此频谱上处理回波并确认回波。脉冲波技术脉冲波测距是由天线向被测物料面发射一个微波脉冲,当接收到被测物料面上反射回来的回波后,测量两者时间差(即微波脉冲的行程时间),来计算物料面的距离。微波发射和返回之间的时差很小,对于几米的行程时间要以纳秒来计量。脉冲测距采用规则的周期重复信号,并重复频率(RPF)高。德国恩德斯豪斯E+H雷达物位计测量原理调频连续波德国恩德斯豪斯E+H雷达物位计在测量过程中应用了按照线性变化的高频信号,德国恩德斯豪斯E+H雷达物位计的信号从天线发出,在被测量平面反射,回波被天线接收。德国恩德斯豪斯E+H雷达物位计信号的发出与回波接收的频率差被用于进一步的信号处理,频率差对应于测量距离。一个大的频率差应对于一个较大的测量距离。通过FFT频率差被转化为频谱差,进而换算出测量距离。物位与测量距离的差别取决于空罐的高度。发射能量很低的极短的微波脉冲通过天线系统发射并接收。即使工况比较复杂的情况下,存在虚假回波,用Zxin的微处理技术和调试软件也可以准确的分析出物位的回波。输入天线接收反射的微波脉冲并将其传输给电子线路:D=C×T/2其中C为光速因空罐的距离E已知,则物位L为:L=E-D输出通过输入空罐高度E(=零点),满罐高度F(=满量程)及一些应用参数来设定,应用参数将自动使仪表适应测量环境。对应于4-20mA输出。应用介质德国恩德斯豪斯E+H雷达物位计适用于对液体、浆料及颗粒料的物位进行非接触式连续测量,适用于温度、压力变化大;有惰性气体及挥发存在的场合。采用微波脉冲的测量方法,并可在工业频率波段范围内正常工作。波束能量较低,可安装于各种金属、非金属容器或管道内,对人体及环境均无伤害。局限性影响雷达性能的是介电常数,理论上在真空中雷达衰减极小,当空气中存在对雷达衰减物质,例如:高介电性的粉尘粉末(石墨,铁合金等),水蒸气很大,测量距离效果要受影响。被测介质的挥发气体会在天线上聚集,水蒸汽会在天线上聚结,此时会影响雷达波的发射,严重时雷达波不能发出。被测介质的介电常数不能太小。尽管温度和压力对雷达影响极小,但雷达天线是由材料做成的,雷达可适应温度的压力的范围与使用的材料和密封结构有关。[详细]
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2018-11-16 10:02
产品样册
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E+H液位计选型资料
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2018-11-16 10:01
产品样册
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E+H液位传感器选型资料
- 如何选择合适的E+HE+H液位传感器在自动化生产过程中,液位检测和监控一直扮演着较为重要的角色,如食品饮料、日化品、医药、半导体等行业的生产,各种机器的冷却和润滑等,液位的监控直接影响着产品的质量,甚至关系到生产过程是否能够顺利进行。同时随着自动化程度的增加,为了保障产品质量的一致性,生产过程直接由人工监控和干预的时代亦已远去,传感器的重要性亦越加明显,并且越来越多地参与至程序系统的设计中,不再是简单的机械式、粗略式的监控;故其要求除了检测的可靠性、稳定性,同时要求安装、调试简单化、尺寸紧凑化、应用多样化等。另外,由于液位检测环境的复杂性和多变性,也为传感器的应用带来了不同挑战。例如:高粘度液体高度检测、含杂质的废水液位监控、带泡沫的液位高度测量、高腐蚀性液体高度报警等等。目前,市场上针对不同的应用,提供了多种有效的解决方案,但如何选择合适、性价比高的传感器一直是让工程师们头痛的问题。常见的液位检测方式:为了选择**的E+H液位传感器,我们不但需要了解被测液体的属性和状态,同时,也要知道不同的检测方式的优点与局限性,从而才能选出Z合适的传感器。以下为目前市场上Z常见的检测技术。激光测量:激光类传感器基于光学检测原理,通过物体表面反射光线至接收器进行检测,其光斑较小且集中,易于安装、校准,灵活性好,可应用于散料或液位的连续或者限位报警等;但其不适合应用于透明液体(透明液体容易折射光线,导致光线无法反射至接收器),含泡沫或者蒸汽环境(无法穿透泡沫或者容易受到蒸汽干扰),波动性液体(容易造成误动作),振动环境等。TDR(时域反射)/导波雷达/微波原理测量:其名称在行业内有多种不同的叫法,其具备了激光测量的好处,如:易于安装、校准,灵活性好等,另外其更优于激光检测,如无需重复校准和多功能输出等,其适用于各种含泡沫的液位检测,不受液体颜色影响,甚至可应用于高粘性液体,受外部环境干扰相对小,但其测量高度一般小于6米。超声波测量:由于其原理为通过检测超声波发送与反射的时间差来计算液位高度,故容易受到超声波传播的能量损耗影响。其亦具备安装容易、灵活性高等特点,通常可安装于高处进行非接触式测量。但当使用于含蒸汽、粉层等环境时,检测距离将会明显缩短,不建议使用在吸波环境,如泡沫等。音叉振动测量:音叉式测量仅为开关量输出,不能用于连续性监控液体高度。其原理为:当液体或者散料填充两个振动叉时,共振频率改变时,依靠检测频率改变而发出开关信号。其可用于高粘度液体或者固体散料的高度监控,主要为防溢报警、低液位报警等,不提供模拟量输出,另外,多数情况下需要开孔安装于容器侧面。光电折射式测量:该检测方式通过传感器内部发出光源,光源通过透明树脂全反射至传感器接受器,但遇到液面时,部分光线将折射至液体,从而传感器检测全反射回来光量值的减少来监控液面。该检测方式便宜,安装、调试简单,但仅能应用于透明液体,同时只输出开关量信号。静压式测量:该测量方式采用安装于底部的压力传感器,通过检测底部液体压力,转换计算出液位高度,其底部液体压力参考值为与顶部连通的大气压或者已知气压。该检测方式要求采用高精度、齐平式压力传感器,同时换算过程需要不断进行校准,其优点为可检测不受液位高度限制,但高度越高,传感器精度要求越高,长时间使用或者更换液体时需要重复校准。电容式测量:电容式测量主要通过检测由于液面或者散料高度变化而导致的电容值变化来测量料位高度。其具有多种类型,有可输出模拟量的电容式液位计,液位电容式接近开关,电容式接近开关可以安装于容器侧面进行非接触检测。当选择必须注意,电容传感器容易受到不同的容器材质和溶液属性影响,如塑料容器和挂料情况容易影响模拟量输出的电容传感器。浮球式检测:该方式为Z简单、Z古老的检测方式,价格相对便宜。主要是通过浮球的上下升降来检测液面的变化,其为机械式检测,检测精度容易受浮力影响,重复精度差,不同液体需要重新校准。不适用于粘稠性或者含杂质液体,容易造成浮球堵塞,同时,不符合食品卫生行业的应用要求。如何选择**的测量方式当我们了解了不同检测方式的优缺点以后,对于E+H液位传感器的选择也逐渐有了清晰的概念。(具体可参考下图表格)首先,在开始选择之前,必须先清楚我们需要传感器达到哪些功能?是属于开关量输出还是模拟量输出?通常开关量/数字量输出用于报警或者保护作用,例如灌装时防溢报警、低液位防泵空转保护等;模拟量输出主要用于过程控制,包括灌装容量、液位显示、加料速度控制等。大家应该都知道怎么选用了吧,如果还不知道的请来电咨询我![详细]
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2018-10-16 10:00
产品样册
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下载E+H雷达物位计的**选择
- E+H雷达物位计的**选择雷达物位计是物位仪表中的一种,并且其自身种类也较多。雷达因为测量不受温度、压力的影响,在工业环境中被广泛使用。因为工业现场的工况有很多,有一种工况就是在罐子内有大量的蒸汽,造成雷达测量不准,或者不稳定。因此想要测量结果极ng准,那么就需要根据根据不同的应用场合选择正确类型的雷达物位计测量。下面就为大家介绍雷达物位计的选择:一、首先选择水滴形天线的高频雷达液位计或者水滴形天线的高频雷达物位计。频率:26GHz。水滴形天线的结构,就适合于在蒸汽大,结露厉害的场合。他能够在蒸汽大的场合很好地工作。连接方式为DN100的法兰。二、没有水滴形天线的情况下,如果是非接触式测量,在高频雷达液位计和低频雷达液位计之间,要选择低频雷达液位计。低频雷达频率低,他对蒸汽的穿透性能要好于高频雷达,同样的量程下,就要选择低频雷达来测量。我们就在蒸发罐、蒸汽加热罐内,多次应用低频雷达来测量。如果罐体的高度比较小的话,要注意:低频雷达的盲区有0.5-0.6米,会比高频雷达0.3米的盲区要大。如果罐子内还会抽真空,或者有搅拌,那就建议加装导波管,雷达装在导波管内,通过导波管来测量罐内液体的高度。三、如果出于成本考虑,可以选择导波雷达液位计。导波雷达液位计是接触式测量,用缆绳或者金属杆跟被测量液体直接接触,电磁波是在缆绳上传播,蒸汽对测量不产生影响。在有大量蒸汽的环境中,如果是敞口的水池、罐子,就是蒸汽大也不会影响到雷达物位计的测量。只有在密闭的罐体内,大量蒸汽才会对雷达的测量产生影响,因此我们现在都以密闭的罐体或者料仓为测量环境。[详细]
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2024-09-13 06:44
产品样册
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