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WOODWARD/伍德沃德/调速器

WOODWARD 5466-1002 调速器模块

    品牌:WOODWARD
    型号:WOODWARD 5466-1002
    订货号:WOODWARD 5466-1002
    上架日期:2025-09-03 15:34
  • 产品详情

WOODWARD 5466-1002 调速器模块

WOODWARD 5466-1002_副本.jpg

一、产品定位与基础属性
品牌与型号:美国伍德沃德(WOODWARD)公司生产的5466-1002调速器模块,属于高性能电液转换器,专为工业自动化调速控制设计。
类型:电液调速器(模块式结构),支持PLC操作系统集成,适应常温工业环境。
核心功能:通过高精度调速控制,确保设备(如蒸汽轮机、燃气轮机、发电机等)在复杂工况下稳定运行。
二、技术规格与特性
调速性能
高精度控制:采用先进算法,输出信号与转速/负载需求成比例,实现微秒级响应。
动态响应:支持负载突变时快速调整转速,维持系统稳定性。
工作模式:支持无差调节(恒速控制)和有差调节(灵活负载分配),适应单机或多机并网场景。
结构与可靠性
模块化设计:便于安装、维护和升级,降低停机时间。
耐用性:适应高温、高湿度、振动等恶劣环境,适合能源、船舶、工业机械等领域长期运行。
安全设计:集成过载保护、故障诊断功能,确保设备安全。
通信与集成
协议支持:兼容TCP/IP、OPC、Modbus等通信协议,可与DCS、PLC等系统无缝对接。

扩展性:支持与Woodward功率自动转移器、输入输出控制器等设备协同工作,构建复杂控制系统。

WOODWARD 5466-5000_副本_副本.jpg

三、应用场景
动力设备调速
蒸汽轮机/燃气轮机:控制转速以匹配电网频率,支持孤岛运行或并网模式。
发电机组:通过负载分配功能,实现多台发电机并联运行时的功率均衡。
柴油机/汽油机:优化燃油效率,减少排放,适用于分布式能源系统。
工业自动化控制
压缩机/泵类设备:根据工艺需求动态调整转速,降低能耗。

测试台架:在发动机测试中,精确控制负载模拟工况。

WOODWARD 5466-5000.1_副本_副本.jpg

四、优势总结
优势维度 具体表现
控制精度 微秒级响应,转速波动≤±0.1%,满足高精度工艺需求。
环境适应性 耐受-20℃至+70℃温度、95%湿度及强振动环境,适合野外或海上平台。
维护便捷性 模块化设计,支持在线更换;部分型号电位计可从机箱前面接触,简化调试流程。
成本效益 长期运行稳定性高,减少停机损失;支持节能模式,降低运营成本。
环境适应性评估
高温/高湿环境:确认模块防护等级(如IP65)及散热设计。
振动场景:选择抗振型模块或加装减震装置。
系统集成需求
需与现有DCS/PLC兼容:确认通信协议及接口类型(如RS485、以太网)。
扩展功能需求:如需同步控制或超驰启动燃油限制,选择功能更丰富的型号(如2301A系列)。


WOODWARD 5466-1002 Governor Module


1、 Product positioning and basic attributes

Brand and Model: The 5466-1002 speed controller module produced by Woodward in the United States is a high-performance electro-hydraulic converter designed specifically for industrial automation speed control.

Type: Electro hydraulic speed regulator (modular structure), supporting PLC operating system integration, suitable for industrial environments at room temperature.

Core function: Ensure stable operation of equipment (such as steam turbines, gas turbines, generators, etc.) under complex working conditions through high-precision speed control.

2、 Technical specifications and features

Speed regulation performance

High precision control: using advanced algorithms, the output signal is proportional to the speed/load requirements, achieving microsecond level response.

Dynamic response: Supports rapid adjustment of speed during sudden load changes to maintain system stability.

Working mode: Supports differential adjustment (constant speed control) and differential adjustment (flexible load distribution), suitable for single or multi machine grid connection scenarios.

Structure and reliability

Modular design: easy to install, maintain, and upgrade, reducing downtime.

Durability: Suitable for harsh environments such as high temperature, high humidity, and vibration, and suitable for long-term operation in fields such as energy, ships, and industrial machinery.

Safety design: Integrated overload protection and fault diagnosis functions to ensure equipment safety.

Communication and Integration

Protocol support: Compatible with communication protocols such as TCP/IP, OPC, Modbus, etc., and can seamlessly integrate with DCS, PLC and other systems.

Scalability: Supports collaborative work with Woodward power automatic transfer devices, input-output controllers, and other equipment to build complex control systems.

3、 Application scenarios

Speed regulation of power equipment

Steam turbine/gas turbine: controls speed to match grid frequency, supports islanding operation or grid connected mode.

Generator set: Through load distribution function, achieve power balance when multiple generators are running in parallel.

Diesel/gasoline engines: optimize fuel efficiency, reduce emissions, suitable for distributed energy systems.

industrial automation control

Compressor/pump equipment: dynamically adjust the speed according to process requirements to reduce energy consumption.

Test bench: Accurately control load simulation conditions during engine testing.

4、 Summary of Advantages

Specific manifestations of advantageous dimensions

Control precision microsecond level response, speed fluctuation ≤ ± 0.1%, meeting high-precision process requirements.

Environmental adaptability: able to withstand temperatures ranging from -20 ℃ to+70 ℃, 95% humidity, and strong vibration environments, suitable for outdoor or offshore platforms.

Modular design for convenient maintenance, supporting online replacement; Some models of potentiometers can be accessed from the front of the chassis, simplifying the debugging process.

Cost effective long-term stable operation, reducing downtime losses; Support energy-saving mode and reduce operating costs.


Environmental adaptability assessment

High temperature/high humidity environment: Confirm the module protection level (such as IP65) and heat dissipation design.

Vibration scenario: Choose anti vibration modules or install shock absorbers.

System integration requirements

Compatibility with existing DCS/PLC: Confirm communication protocol and interface type (such as RS485, Ethernet).

Additional functional requirements: If synchronous control or override of fuel limit is needed, choose a more feature rich model (such as 2301A series).


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