WOODWARD 5501-003

2.技术特点

工业级防护设计:

采用宽温设计(-40℃至70℃),抗电磁干扰能力符合工业标准,适用于发电、船舶等严苛环境。

模块化扩展:

支持与其他伍德沃德模块(如电源模块、I/O扩展模块)级联,灵活构建分布式控制系统。

智能算法优化:

集成PID控制算法,可实现对电机转速、扭矩等参数的高精度调节,提升系统响应速度与稳定性。

3.应用场景

能源电力:

用于燃气轮机、发电机等设备的转速控制与负载管理,优化发电效率。

船舶工程:

驱动推进系统电机,实现船舶动态定位与航行控制。

过程工业:

精确控制压缩机、泵等设备的运行状态,优化工艺流程稳定性。

描述

WOODWARD 5501-003是伍德沃德(WOODWARD)公司为工业电机系统设计的核心控制电路板,专用于Peak 150型号电机的智能化管理。以下是其核心功能与技术特性:

1.核心功能

电机控制中枢:

作为电机控制系统的主电路板,负责数据采集、逻辑运算与指令输出,支持转速调节、负载分配及故障诊断等核心功能。

通信兼容性:

集成工业标准通信接口(如RS-232/485、Modbus协议),可与PLC、DCS系统及智能设备无缝对接,实现远程监控与数据交互。

2.技术特点

工业级防护设计:

采用宽温设计(-40℃至70℃),抗电磁干扰能力符合工业标准,适用于发电、船舶等严苛环境。

模块化扩展:

支持与其他伍德沃德模块(如电源模块、I/O扩展模块)级联,灵活构建分布式控制系统。

智能算法优化:

集成PID控制算法,可实现对电机转速、扭矩等参数的高精度调节,提升系统响应速度与稳定性。

3.应用场景

能源电力:

用于燃气轮机、发电机等设备的转速控制与负载管理,优化发电效率。

船舶工程:

驱动推进系统电机,实现船舶动态定位与航行控制。

过程工业:

精确控制压缩机、泵等设备的运行状态,优化工艺流程稳定性。

WOODWARD 5501-003 is a core control circuit board designed by Woodward for industrial motor systems,dedicated to the intelligent management of Peak 150 model motors.The following are its core functions and technical features:

1.Core functions

Motor control center:

As the main circuit board of the motor control system,it is responsible for data acquisition,logical operations and command output,and supports core functions such as speed regulation,load distribution and fault diagnosis.

Communication compatibility:

Integrated with industrial standard communication interfaces(such as RS-232/485,Modbus protocol),it can be seamlessly connected with PLC,DCS systems and intelligent devices to achieve remote monitoring and data interaction.

2.Technical features

Industrial-grade protection design:

Adopting a wide temperature design(-40℃to 70℃),the anti-electromagnetic interference capability meets industrial standards and is suitable for harsh environments such as power generation and ships.

Modular expansion:

Supports cascading with other Woodward modules(such as power modules,I/O expansion modules)to flexibly build distributed control systems.

Intelligent algorithm optimization:

Integrated PID control algorithm can achieve high-precision adjustment of motor speed,torque and other parameters,improving system response speed and stability.

3.Application scenarios

Energy and power:

Used for speed control and load management of gas turbines,generators and other equipment to optimize power generation efficiency.

Ship engineering:

Drive propulsion system motor to achieve dynamic positioning and navigation control of ships.

Process industry:

Precisely control the operating status of compressors,pumps and other equipment to optimize process stability.