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Bently Nevada/本特利/卡件

本特利模块 3500/60温度监测器

    品牌:BENTLY
    型号:3500/60
    订货号:3500/60
    上架日期:2024-10-22 10:24
  • 产品详情

本特利(Bently Nevada)的3500/60温度监测器是一款功能强大且灵活多变的温度监测解决方案,以下是关于该产品的详细介绍:

一、产品概述

3500/60温度监测器由Bently Nevada设计和开发,它提供了六个温度监测通道,可以接受电阻温度检测器(RTD)和热电偶(TC)的温度输入。这些输入信号被模块调节,并与用户可编程的报警设定点进行比较,从而实现温度监测和报警功能。

二、主要功能

  1. 多通道监测:提供六个独立的温度监测通道,可以同时监测多个温度点,提高监控效率。
  2. 输入灵活性:可以接受RTD和TC两种类型的温度输入,满足不同类型的温度测量需求。
  3. 报警功能:用户可以根据需要设置报警设定点,当温度超过或低于设定点时,模块会触发警报或执行特定操作。
  4. 可编程性:利用3500机架配置软件,用户可以对模块进行编程,包括通道配置、警报设置等,具有高度灵活性和可定制性。

三、技术规格

  1. 通道数量:六个温度监测通道。
  2. 输入类型:RTD和TC。
  3. 报警设定点:用户可编程。
  4. 输出信号:根据配置,可以提供记录仪输出(在3500/61型号中提供,而3500/60不提供)。
  5. 工作温度:与内部/外部终端I/O模块一起使用时,工作温度为-30°C至+65°C(-22°F至+150°F)。
  6. 存储温度:-40°C至+85°C(-40°F至+185°F)。

四、产品特点

  1. 高精度:模块采用高精度测量技术,能够准确测量和监测温度。
  2. 稳定性:采用优质材料和制造工艺,确保在恶劣的环境条件下稳定工作。
  3. 易于配置和维护:配备简单易用的编程界面,方便用户进行配置和维护。
  4. 扩展性:可以与3500系列的其他模块配合使用,满足不同的监测需求。

五、应用领域

3500/60温度监测器广泛应用于各种工业领域,包括但不限于:

  1. 监测铁路、船舶和其他运输系统中关键设备的温度
  2. 监测压缩机吸气和排气温度、蒸汽温度以及电机定子温度等关键过程温度
  3. 符合API670标准的径向轴承或推力轴承金属温度监测

六、注意事项

  1. 在安装和维护过程中,应遵循制造商的安装指南和安全操作程序。
  2. 定期清洁和检查模块,确保其表面无污垢和损坏。
  3. 在选择和使用模块时,应考虑其工作环境是否符合模块的性能要求。
  4. 定期校准和测试模块,确保其测量精度。

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Bently Nevada's 3500/60 temperature monitor is a powerful and versatile temperature monitoring solution. Here is a detailed introduction to the product:

1、 Product Overview

The 3500/60 temperature monitor was designed and developed by Bently Nevada, providing six temperature monitoring channels that can accept temperature inputs from resistance temperature detectors (RTDs) and thermocouples (TCs). These input signals are regulated by the module and compared with user programmable alarm setpoints to achieve temperature monitoring and alarm functions.

2、 Main functions

Multi channel monitoring: Provides six independent temperature monitoring channels that can simultaneously monitor multiple temperature points, improving monitoring efficiency.

Input flexibility: Can accept two types of temperature inputs, RTD and TC, to meet different temperature measurement needs.

Alarm function: Users can set alarm setpoints as needed. When the temperature exceeds or falls below the set point, the module will trigger an alarm or perform specific operations.

Programmable: With the 3500 rack configuration software, users can program modules, including channel configuration, alarm settings, etc., with high flexibility and customizability.

3、 Technical specifications

Number of channels: Six temperature monitoring channels.

Input types: RTD and TC.

Alarm Setpoint: User programmable.

Output signal: Depending on the configuration, recorder output can be provided (provided in the 3500/61 model, but not in the 3500/60 model).

Operating temperature: When used with internal/external terminal I/O modules, the operating temperature is -30 ° C to+65 ° C (-22 ° F to+150 ° F).

Storage temperature: -40 ° C to+85 ° C (-40 ° F to+185 ° F).

4、 Product Features

High precision: The module adopts high-precision measurement technology, which can accurately measure and monitor temperature.

Stability: Using high-quality materials and manufacturing processes to ensure stable operation under harsh environmental conditions.

Easy to configure and maintain: Equipped with a simple and easy-to-use programming interface, it is convenient for users to configure and maintain.

Scalability: It can be used in conjunction with other modules in the 3500 series to meet different monitoring needs.

5、 Application Fields

The 3500/60 temperature monitor is widely used in various industrial fields, including but not limited to:

Monitor the temperature of critical equipment in railways, ships, and other transportation systems.

Monitor key process temperatures such as compressor suction and discharge temperatures, steam temperature, and motor stator temperature.

Metal temperature monitoring of radial bearings or thrust bearings in accordance with API670 standard.

6、 Precautions

During installation and maintenance, the manufacturer's installation guidelines and safety operating procedures should be followed.

Regularly clean and inspect the module to ensure that its surface is free of dirt and damage.

When selecting and using modules, consideration should be given to whether their working environment meets the performance requirements of the module.

Regularly calibrate and test modules to ensure their measurement accuracy.


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