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用于電網監控、過程控制和電力監控的EtherCAT終端

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品牌: 庫卡
配件: 用于電網監控、過程控制和電力監控的EtherCAT終端
單價: 面議
所在地: 上海
有效期至: 長期有效
最后更新: 2021-08-30 22:49
瀏覽次數: 288
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產品詳細說明
  用于電網監控、過程控制和電力監控的EtherCAT終端

  透明能量監測
庫卡機器人配件io模塊


 
  透明的能源監測既減少了機器的停頓,也減少了由于工廠可用的原因而使相應部件尺寸過大的必要性。此外還有預防性維護,***終大大提高了生產效率。隨著其綜合功率測量的組合,貝克霍夫簡化了能源管理,同時優化了機器和工廠的可用性。由于連續的、系統集成的功率測量,可以快速檢測出偏離標準狀態的偏差,從而實現快速干預。例如,機器不斷增加的電流消耗可能意味著軸承磨損。另一方面,當前消費減少可能意味著質量問題,需要在早期階段加以糾正。通過監測電源,錯誤行為可歸因于電網中可能出現的相位故障。降低了反應速度,避免了可能的停機時間。

  所有應用領域的可伸縮性

  可伸縮性是貝克霍夫的一項原則:這也適用于EtherCAT電力測量終端,它涵蓋了從簡單的網格監控到所有應用領域的電力監控的應用程序。它們在測量精度、測量速度、測量值和內部計算值方面根據不同的性能等級進行衡量。Bechoff EtherCAT I/O為此提供了一系列的EtherCAT終端,在價格和性能方面都具有很高的可伸縮性。

  綜合系統組合

  除了EtherCAT終端,功率測量組合還包括作為可靠功率傳感器的電流互感器與I/O的***佳兼容性。我們的TwinCAT自動化軟件的功率監測軟件庫也圍繞功率測量。控制柜內有適當的附件,以增加安全。這樣就形成了一個完整的功率測量組合,這樣所有的組件都可以從一個單一的源中獲得。

  EtherCAT能源管理終點站

  電流互感器作為可靠的功率傳感器

  高效電力監控軟件

  控制柜內安全附件

  ***簡單診斷的電能質量因數

  從純電網監控到過程控制,到高端電力監控,在機器環境和能源經濟中,在能源管理方面有各種各樣的要求。EL34xx和EL37x3能源和功率測量終端設置了不同的焦點,因此是為廣泛的應用而設計的。

  從簡單的閾值檢查電壓,頻率和相位,輸出警告和狀態位與物聯網和能源管理項目與EL3423。EL3443和EL 3453也是三相電網高性能應用的合適終端,它們在內部對測量的電流和電壓值進行預處理,從而為控制器提供多達600個數值,用于廣泛的電網分析和能源管理。EL3773和EL 3783可用于具有過采樣功能的電力監控。這允許同時測量電流和電壓,在所有通道上以高達10 KSPS的速度同時測量電流和電壓,以便進行時間上的***狀態檢測。

  利用EL3446和EL3443相結合,可以實現分布式功率測量,從而可以通過空間分離的電壓和電流測量來計算有效功率值。EL 3446純電流測量終端可按所需的頻率定位在柵極中。為了計算實際的功率數據,所需的電壓值從EL 3443三相功率測量終端發送,該終端只在每個電網中安裝一次。這種分布式功率測量的概念--只有一個EL3443和任意數量的EL3446s--將硬件和安裝費用降到***低。

  貝克霍夫的能源和功率測量組合也具有中等電壓水平的產品。中壓電平中的電壓可以通過100 V或110 V輸出的標準電壓變壓器簡單地連接到我們的測量范圍為130 V的交流終端。

  在某些應用中,如果為了質量原因而獲得測量行為和不確定度的知識,就必須對終端進行校準。我們也可以通過校準的功率測量終端來滿足這些要求。
  EL3423

  The EL3423 EtherCAT Terminal enables the measurement of relevant data for an efficient energy management system. The voltage is measured internally via direct connection of L1, L2, L3 and N. The current of the three phases L1, L2 and L3 is fed via simple current transformers. The measured energy values are available separately as generated and accepted values. In the EL3423 Terminal, the effective power and the energy consumption for each phase are calculated. In addition, an internally calculated network quality factor provides information about the quality of the monitored voltage supply. The EL3423 offers basic functionality for mains analysis and energy management.

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  EL3443

  The EL3443 EtherCAT Terminal enables the measurement of all relevant electrical data of the supply network and carries out simple pre-evaluation. The voltage is measured via direct connection of L1, L2, L3 and N. The current of the three phases L1, L2 and L3 is fed via simple current transformers. All measured currents and voltages are available as root-mean-square values. In the EL3443 terminal, the effective power and energy consumption for each phase are calculated. The RMS values of voltage U and current I as well as the active power P, apparent power S, reactive power Q, frequency f, phase shift angle cos φ and harmonic are available. The EL3443 offers extended functionality for mains analysis and energy management.

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  EL3446

  The EL3446 EtherCAT Terminal enables the measurement of all relevant electrical data of the supply network and carries out simple pre-evaluation. Since the EL3446 itself has no voltage inputs, the voltage measured values are transmitted via EtherCAT by an EL3443 to be installed once per network. The current of up to six phases is fed via simple current transformers. All measured currents and voltages are available as root-mean-square values. In the EL3446 terminal, the effective power and energy consumption for each phase are calculated. The RMS values of voltage U and current I as well as the active power P, apparent power S, reactive power Q, frequency f, phase shift angle cos φ and harmonic are available. The EL3446 offers extended functionality for mains analysis and energy management.

  Learn more

  EL3453

  The EL3453 EtherCAT power measurement terminal is an advancement based on the EL3413. With up to 690 V AC, the voltage inputs are optimised for the direct monitoring of high-capacity generators, as in the wind power industry, for example. No upstream voltage transformer is required. The four current inputs are electrically isolated so that the terminal can be used in all common grounded current transformer configurations such as 2- or 3-transformer configurations with star or delta connection incl. neutral conductor current measurement. The EL3453 can be used for simple grid analysis up to the 63rd harmonics analysis. Alternatively, all readings can be combined in a power quality factor for simplified diagnostics. Like all measured terminal data, the harmonic content can be read via the process data. The EL3453 offers the “ExtendedRange” feature enabling the use of the full technical measuring range, which equals 130 % of the specified nominal measuring range.

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  EL3453-0100

  The EL3453-0100 EtherCAT power measurement terminal is an advancement based on the EL3413. The adapted voltage measuring range to 130 V is optimally suited for connecting medium voltage transformers, for example. The four current inputs are electrically isolated so that the terminal can be used in all common grounded current transformer configurations such as 2- or 3-transformer configurations with star or delta connection incl. neutral conductor current measurement. The EL3453-0100 can be used for simple grid analysis up to the 63rd harmonics analysis. Alternatively, all readings can be combined in a power quality factor for simplified diagnostics. Like all measured terminal data, the harmonic content can be read via the process data. The EL3453-0100 offers the “ExtendedRange” feature enabling the use of the full technical measuring range, which equals 130 % of the specified nominal measuring range.

  Learn more

  EL3483

  The EL3483 EtherCAT Terminal enables the monitoring of relevant electrical data of the supply network. The voltage is measured internally via direct connection of L1, L2, L3 and N. The internal measured values are compared with threshold values preset by the user. The result is available as digital information in the process image. The EL3483 checks for the correct phase order L1, L2, L3, phase failure, undervoltage and overvoltage, and possible phase asymmetry. An error bit is set in the case of an incorrect phase order or the failure of a phase. Should, for example, an asymmetry or voltage error occur, only a warning bit is set initially. In addition, an internally calculated mains quality factor provides information about the quality of the monitored voltage supply. The EL3483 offers basic functionality for mains monitoring and analysis.

  Learn more

  EL3483-0060

  The EL3483-0060 EtherCAT Terminal enables the monitoring of relevant electrical data of the supply network. The voltage is measured internally via direct connection of L1, L2, L3 and N. The internal measured values are compared with threshold values preset by the user. The result is available as digital information in the process image. The EL3483-0060 checks for the correct phase order L1, L2, L3, phase failure, undervoltage and overvoltage, and possible phase asymmetry. An error bit is set in the case of an incorrect phase order or the failure of a phase. Should, for example, an asymmetry or voltage error occur, only a warning bit is set initially. In addition, an internally calculated mains quality factor provides information about the quality of the monitored voltage supply. The EL3483-0060 offers basic functionality for mains monitoring and analysis. In addition, the -0060 version also outputs current RMS values of the voltage in the process image.

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  EL3773

  The EL3773 and EL3783 power monitoring terminals are designed for state monitoring of 3-phase AC voltage systems. For each phase voltages and currents are sampled as instantaneous values with a resolution of 16 bits:

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  EL3783

  The EL3783 EtherCAT Terminal is a power monitoring I/O terminal used for state monitoring of a 3-phase AC voltage system. For each phase, voltage up to 400/690 Vrms and current up to 1 Arms/5 Arms are sampled as instantaneous values with a resolution of 16 bits. The six channels are measured simultaneously based on the EtherCAT oversampling principle with a temporal resolution of up to 50 ?s and then passed on to the control system. The control system has sufficient computing power for true RMS or performance calculations and complex custom algorithms based on the measured voltages and currents. Through the oversampling principle, the terminal is able to measure at significantly shorter intervals than the cycle time of the control system. AC and DC parameters must be connected and measured with a common reference potential.

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  EL3783-0100

  The EL3783-0100 EtherCAT Terminal is a power monitoring I/O terminal used for state monitoring of a 3-phase AC voltage system. For each phase, voltage up to 400/690 Vrms and current up to 1 Arms/5 Arms are sampled as instantaneous values with a resolution of 16 bits. The six channels are measured simultaneously based on the EtherCAT oversampling principle with a temporal resolution of up to 50 ?s and then passed on to the control system. The control system has sufficient computing power for true RMS or performance calculations and complex custom algorithms based on the measured voltages and currents. Through the oversampling principle, the terminal is able to measure at significantly shorter intervals than the cycle time of the control system. AC and DC parameters must be connected and measured with a common reference potential.

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  Mini ring-type current transformers

  Mini ring-type current transformers

  The space-saving SCT1xxx series for the tightest installation spaces. A removable terminal enables pre-wiring.

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  Ring-type current transformers

  Ring-type current transformers

  The SCT2xxx series offers a wide selection and impresses with innovative, screwless connection technology.

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  3-phase ring-type current transformers

  3-phase ring-type current transformers

  The compact SCT3xxx series for direct mounting under commonly used power switches.

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  Split-core current transformers

  Split-core current transformers

  The separable measuring system of the SCT6xxx series enables flexible retrofitting without disconnecting the primary conductor.

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  Busbar split-core current transformers

  Busbar split-core current transformers

  The SCT7xxx series supports the highest primary currents and is suitable for convenient retrofitting.

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  Coil current transformers

  Coil current transformers

  The SCT0xxx series is specially designed for low primary currents and is used for corresponding applications.

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  TF3650

  The TwinCAT Power Monitoring function is a PLC library for the evaluation of raw current and voltage data, which are usually supplied by EL3773 and EL3783 EtherCAT Terminals. Function blocks are available for the calculation of RMS values for current, voltage and power. These can be output as instantaneous or average values. Maximum and minimum values are also available on the function block. Frequency and frequency spectra can be determined, such as e.g. harmonics in the grid and their load in the form of the Total Harmonic Distortion (THD)。

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  EL9080

  The EL9080 separation terminal is used for the separation and marking of different potential groups (e.g., 230 V AC/24 V DC)。 It is inserted between two potential groups, and indicates the separation through an orange colored cover. The E-bus is passed through in the usual way to the adjacent terminal.

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  BZxxxx

  The EtherCAT Terminals and Bus Terminals can be individually labeled with standard contact signs. The marking material is not included in the Terminal delivery. Signs with markings for the supply voltages are supplied together with the EtherCAT and Bus Couplers, but can be changed if required.

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  ELxxxx-0020/-0030 | Calibration certificates

  ELxxxx-0020/-0030 | Calibration certificates

  Analog calibration certificates enable the verification of the precise measurement deviation of the device.

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  EL3403

  The EL3403 EtherCAT Terminal enables the measurement of all relevant electrical data of the supply network. The voltage is measured via the direct connection of L1, L2, L3 and N. The current of the three phases L1, L2 and L3 is fed via simple current transformers. All measured currents and voltages are available as root-mean-square values. In the EL3403 version, the effective power and the energy consumption for each phase are calculated. The root-mean-square value of voltage U, current I and the effective power P, apparent power S, reactive power Q, frequency F and phase shift angle cos φ can be derived. The EL3403 provides a comprehensive network analysis and an energy management option.

  Learn more

  EL3403-0010

  The EL3403-0010 EtherCAT Terminal enables the measurement of all relevant electrical data of the supply network. The voltage is measured via the direct connection of L1, L2, L3 and N. The current of the three phases L1, L2 and L3 is fed via simple current transformers. All measured currents and voltages are available as root-mean-square values. In the EL3403-0010 version, the effective power and the energy consumption for each phase are calculated. The root-mean-square value of voltage U, current I and the effective power P, apparent power S, reactive power Q, frequency F and phase shift angle cos φ can be derived. The EL3403-0010 provides a comprehensive network analysis and an energy management option.

  Learn more

  EL3413

  The EL3413 EtherCAT power measurement terminal is a further development of the EL3403. With up to 690 V AC the voltage inputs are optimised for direct monitoring of high-performance generators, as used in the wind power industry, for example. No upstream voltage transformer is required. The current inputs are galvanically isolated so that the terminal can be used in all common grounded current transformer configurations such as 2- or 3-transformer configurations with star or delta connection. The EL3413 can deal with simple network analysis up to the 21st harmonic analysis. Like all measured terminal data, the harmonic content can be read via the process data.

  Learn more

  EL3433

  The EL3433 EtherCAT power measurement terminal is a further development of the EL3403. Currents of up to 10 A can be directly measured with the internal current transformers. This way, there are no additional costs for external current transformers. The external bridges 5 & 1', 6 & 2' and 7 & 3' are already pre-wired. As a result, it is possible to directly connect the supply voltage (5', 6' and 7') and the consumer (1, 2 and 3)。 The EL3433 can deal with simple grid analysis up to the 21st harmonic analysis. Like all measured terminal data, the harmonic content can be read via the process data.
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