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WOODWARD 8444-1002 MEASURING TRANSDUCERS

WOODWARD 8444-1002 MEASURING TRANSDUCERS


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The ABB CI532V02 3BSE003827R1 MODBUS interface is a high performance communication module.

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  • Specifications
  • Specification

    Product Image

    Brand Name

    WOODWARD

     

    Model Number

    8444-1002

    Alternate Part Number

    8444-1002

    Condition

    100% Original

    Quality

    Brand New

    Dimensions

    10x15.3x7.2cm

    Description

    MEASURING TRANSDUCERS

    Package

    Original Package

    Lead time

    In Stock

    Shipping term

    UPS DHL TNT EMS Fedex

    Payment

    T/T (Bank Transfer)

    Service

    One- Stop Service

    Weight

    0.5KG

    Warranty

    12 Months 

  • Product Details
  • Product Description

    The Woodward 8444-1002 Measuring Transducer is a precision device designed to convert various physical signals, such as temperature, pressure, and speed, into standardized electrical signals for further processing in control systems. Specifically designed for industrial applications, this transducer ensures accurate and reliable signal conversion, allowing for real-time monitoring and control of critical parameters in complex systems, such as power generation, automation, and industrial processes.


    Detailed Product Parameters

    PART NO: 8444-1002
    REV: G
    UMT115B/A3SU
    UMEAS(IEC) : 57/100 (120)V AC
    UMEAS, MAX (UL) : 150V AC
    UAUX: 24V DC
    I1/GEN: 5A AC
    IAUX, MAX: 0.5A DC
    FN: 50/60HZ


    Frequently Asked Questions

    What types of sensors can be connected to the Woodward 8444-1002 Measuring Transducer?
    The 8444-1002 can accept a variety of sensors, including thermocouples, RTDs, and pressure transducers. It is flexible and can be configured to work with different types of industrial sensors, depending on the application.


    What output signal types does the 8444-1002 support?
    The transducer provides 4-20 mA and 0-10 V analog output signals, which are commonly used in industrial control systems for signal processing and monitoring.


    Can the Woodward 8444-1002 Measuring Transducer be used in hazardous environments?
    The 8444-1002 is designed for standard industrial environments. However, for hazardous location applications, check the product specifications for certifications such as ATEX or consult Woodward for more details on applicable certifications for hazardous environments.

  • Service and Warranty
  • NOTE:

    1. The products quoted are brand new and original with a one-year warranty

    2. Prices are ex works, for shipping calculations, Please send to my Email 

    3. Cooperation with the express delivery of DHL / Fedex / UPS / Aramex, etc,Delivery time is approximately '' 5 days ''  from our warehouse to the destination country

    4. Quotation validity: 30 days, if you need to extend, please reconfirm the price after 30 days.

    5. Payment Term: 100% advance payment by bank transfer.

    6. For the products '' in stock '' in the offer, our company can support video inspection


    ABB

    21000-28-10-00-098-04-02

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    CC-PUIO31 51454220-176

    ABB

    AX670 3BSE000566R1

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    MC-PSIM11 51304362-350

    ABB

    330101-00-15-10-02-00

    HONEYWELL

    51196742-200

    ABB

    21000-28-10-00-098-04-02

    HONEYWELL

    MC-TAOX12 51304335-125

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    3BHE006373R0101

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    10208/2/1

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    1MRK001370-DAR01

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    10018/E/1

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    8C-PAIN01 51454356-175 

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    51199942-300

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    NPCT-01C 64009486D

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    MC-TSTX03 51309140-175

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    E5LA HENF105296R0001

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    MU-TDOA13 51304648-100

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    HIEE400659R1 GD9993B-E

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    900G03-0102

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    CI540 3BSE001077R1

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    CC-PDOB01 51405043-175

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    DRA02  37411-4-0369673

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    FC1000B1001

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    DSQC104

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    8C-TDODB1 51307151-175

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    YPG 111A  YPG111A

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    CC-PUIO31 51454220-176

    SIEMENS

    SNAT7030 SNAT 7030

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    MC-PSIM11 51304362-350

    SIEMENS

    6DD7060-1AA06

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    51196742-200

    SIEMENS

    39VIMCCN A5E00282175/07

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    MC-TAOX12 51304335-125

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    39ACM14CAN

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    10208/2/1

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    6DD1683-0BE0

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    8C-PAIN01 51454356-175 


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News & Blogs

  • ABB SAFUR 80F500 Braking Resistor: Technical Features and Industrial Implementation 17/09

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    ABB SAFUR 80F500 Braking Resistor: Technical Features and Industrial Implementation
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  • Bently Nevada Proximity Probes and Sensor Systems: Taking Industrial Monitoring to the Next Level 03/09

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    Bently Nevada Proximity Probes and Sensor Systems: Taking Industrial Monitoring to the Next Level
    Introduction In industries such as petrochemicals, power generation, and heavy industry, predictive maintenance is increasingly replacing traditional reactive inspections and becoming a crucial tool for ensuring stable equipment operation. As a leader in condition monitoring, Bently Nevada's proximity probes and sensor systems, with their high accuracy and reliability, are core tools for vibration and displacement measurement in rotating machinery. The 3300 Series (including 5 mm, 8 mm, and 11 mm probes) is widely used in complex operating conditions due to its compliance with international standards and stable performance. These devices convert mechanical displacement into electrical signals, enabling engineers to identify potential equipment problems before they cause serious failures. Industry studies have shown that plants that adopt advanced vibration monitoring methods can reduce maintenance costs by approximately 30% and extend equipment operating life by 20–40%, demonstrating the value of Bently Nevada technology. System Design and Performance Highlights The 3300 Series probes excel in structural optimization and functional adaptability, with different models catering to diverse application requirements: 3300 5mm Proximity Probe, Sensor and Transducer System The compact design makes it suitable for installation environments with limited space. When used with an XL 8 mm extension cable and a 5 mm proximity sensor, it provides a stable voltage signal proportional to distance, enabling both static position measurement and dynamic vibration detection. Typical applications include keyphasor phase measurement, bearing operation monitoring, and speed detection. 3300 XL 8mm Proximity Probe, Sensor and Transducer System This system offers the most comprehensive performance in the series, fully complying with the mechanical structure and accuracy requirements of API 670 (4th Edition). Its key advantage lies in its interchangeable components. The probe, cable, and proximitor sensor can be combined without separate calibration, significantly reducing installation and maintenance time, which is particularly important for plants with a large number of measurement points. 3300 XL 11mm Proximity Probe, Sensor and Transducer System This system is ideal for applications requiring a wider measurement range. Its linear measurement range reaches up to 4 mm (160 mil) with a sensitivity of 3.94 V/mm (100 mV/mil). With dual European and American certifications, this model can be used in hazardous areas. The longer probe tip ensures accurate data even when the standard 8 mm probe's coverage is insufficient. In addition, the entire series features a wide temperature range: operating temperatures from -52°C to +100°C, with a storage limit of +105°C, ensuring long-term stability even in offshore drilling or high-temperature processing locations. Benefits and Economic Value Using Bently Nevada proximity sensing technology, companies can not only improve monitoring ac...
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  • Selecting the Right Bently Nevada 3300 XL Proximity System for Your Machinery 03/09

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    Selecting the Right Bently Nevada 3300 XL Proximity System for Your Machinery
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  • ABB: Leading the New Era of Automation with AI-Driven Control Systems 01/09

    2025

    ABB: Leading the New Era of Automation with AI-Driven Control Systems
    Introduction The landscape of industrial automation is undergoing a revolutionary transformation, shifting from rigid programmed commands to intelligent, adaptive, and data-driven decision-making. This change is driven by artificial intelligence (AI), and global technology leader ABB is at the forefront of this wave. By deeply integrating advanced AI capabilities into its control systems, ABB is not only redefining the possibilities of automation but also charting a path toward greater efficiency, flexibility, and sustainability for various industries. ABB Ability™: Building the Digital Foundation for Intelligent Automation ABB’s vision goes beyond developing standalone smart products—it aims to create an interconnected ecosystem of intelligence. At the heart of this vision is the ABB Ability™ platform, a unified, cloud-edge collaborative digital platform that serves as the "digital brain" for entire industrial operations. This platform enables AI-driven automation in the following ways: Data Aggregation and Insights: Seamlessly collects and integrates data from tens of thousands of sensors, robots, and control devices on the factory floor. Advanced Analytics: Provides powerful algorithms and tools to transform vast amounts of raw data into actionable insights. Application Development: Supports the development and deployment of tailored AI applications to address specific industry challenges. Through ABB Ability™, AI is no longer an isolated function but rather a neural system that runs through the entire automation value chain. Core AI Applications in Control Layers: From Prediction to Cognition ABB embeds artificial intelligence directly into the core of its control systems, achieving unprecedented operational intelligence. Its main applications are reflected in three key areas: Predictive Maintenance: ABB’s systems use machine learning algorithms to continuously analyze operational data (e.g., vibration, temperature, noise) from motors, pumps, and robots. They can accurately predict potential failures and issue warnings weeks or even months before problems occur. This shifts the maintenance model from "preventive" (scheduled maintenance) to "predictive" (on-demand maintenance), completely avoiding the huge losses caused by unplanned downtime. Autonomous Optimization: In process industries (e.g., chemicals, pharmaceuticals), ABB’s AI control systems can fine-tune thousands of process variables (e.g., pressure, flow, temperature) in real time, keeping production at its optimal state (peak efficiency). This not only maximizes output and product quality but also significantly reduces energy consumption and raw material waste. Adaptive Robotics: ABB’s robots are equipped with advanced AI vision and force-sensing technologies. They no longer require precise fixed positioning—they can identify, grasp, and handle irregularly shaped and randomly placed objects, and even learn new tasks from demonstrations. This extends automation to complex areas previ...
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