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469-P5-LO-A20-T 模拟电流转换

469-P5-LO-A20-T技术规格

模拟电流输入0至1ma, 0至20mA,或4至20mA

运输重量最大17磅/ 7.7公斤

模拟电流转换范围0至21毫安

湿度可达90%,不冷凝

运输尺寸12英寸× 11英寸× 10英寸(宽×高×深),或30.5厘米× 27.9厘米× 25.4厘米

工作温度- 40℃~ +60℃

机箱安装面板或19英寸机架安装


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产品详情


469-P5-LO-A20-T 模拟电流转换

469-P1-HI-A20-E.jpg

【功能描述】


469-P5-LO-A20-T技术规格

模拟电流输入0至1ma, 0至20mA,或4至20mA

运输重量最大17磅/ 7.7公斤

模拟电流转换范围0至21毫安

湿度可达90%,不冷凝

运输尺寸12英寸× 11英寸× 10英寸(宽×高×深),或30.5厘米× 27.9厘米× 25.4厘米

工作温度- 40℃~ +60℃

机箱安装面板或19英寸机架安装

产品描述

拥有GE Multilin 469系列的可选以太网连接,469- p5 - lo - a20 - t是一款电机管理继电器,可以使用其以太网功能在网络上运行,而不仅仅是RS242或RS485连接。


12个RTD输入各有3根线:这些线由100根Ω铂(DIN.43760), 100根Ω镍,120根Ω镍,10根Ω铜组成。电阻温度检测器可以监控诸如最热温度之类的变量,以确定系统中出现问题的时间和地点。


469-P5-LO-A20-T能够监测的不仅仅是温度。它还可以使用其计量功能来记录与安培、电压、瓦数、频率等有关的值。数据可以从EnerVista 469程序中进行趋势分析和导出,供用户和技术人员分析。从数据得出的结论可以通过继电器的设定值系统实现,根据系统的独特需求和操作环境创建更有效的设置。


该单元还具有增强的面板,具有更宽的LCD和更有效的键盘和led放置。显示器是40个字符,字母数字,并且很容易在各种照明条件下观看。在不主动使用时,显示器还可以显示不同的系统值,为继电器附近的用户提供快速高效的参考点。LED指示器还提供参考点,因为它们能够根据系统本身的条件变为绿色,琥珀色或红色。


469-P5-LO-A20-T常见问题

当继电器停止或运行冷却时,会发生什么?

当电机制造商运行冷却或恒定冷却时间未在电机发布的数据表中提供时,提供此信息。使用电阻温度检测器和有线继电器,必须在这些关键的冷却时间使用热模型。冷却时间通常在15到30分钟之间,默认值是运行和停止冷却时间。

ge469 - p5 - lo - a20 - t继电器的加速跳闸应该设置在什么位置?

对于GE 469-P5-LO-A20-T继电器加速跳闸,设置高于最大启动时间是合适的,这样做,如果电压设置较低,就可以避免更多的跳闸。如果电压降低到启动使用(设置到加速曲线),18秒的设置应该是完美的,但如果它是启动的跨线使用,13秒的设置应该为这个继电器工作。

如果电机已经热了,继电器起动受限怎么办?

启用启动抑制功能可以限制启动,特别是当继电器电机已经热。GE 469-P5-LO-A20-T电机管理继电器学习继电器何时发热以及使用多少热容量来启动,因此,如果在使用一些热容量后电机太热,继电器将无法启动,特别是如果热容量低于启动所需的热容量。

469-P5-LO-A20-T 模拟电流转换

469-P1-HI-A20-E.jpg

469-P5-LO-A20-T Technical Specifications

Analog Current Inputs0 to 1 mA, 0 to 20mA, or 4 to 20mA
Shipping Weight17 lbs Max / 7.7 kg
nalog Current Conversion Range0 to 21 mA
Humidityup to 90%, non-condensing
Shipping Dimensionsapprox. 12” × 11” × 10” (W × H × D), or 30.5 cm × 27.9 cm × 25.4 cm
Operating Temperature–40°C to +60°C
Case MountingPanel or 19-inch rack mount

Product Description

Boasting the optional Ethernet connection of GE Multilin’s 469 series, the 469-P5-LO-A20-T is a Motor Management Relay which can use its Ethernet capabilities to run on the network rather than a mere RS242 or RS485 connection. 

The twelve RTD inputs are each 3 wire: those wires are composed of 100 Ω Platinum (DIN.43760), 100 Ω Nickel, 120 Ω Nickel, 10 Ω Copper. The Resistance Temperature Detectors can monitor variables such as hottest temperature to determine when and where problems are cropping up within the system.

The 469-P5-LO-A20-T is capable of monitoring more than just temperature. It can also use its metering capabilities to record values pertaining to amperes, voltage, watts, frequency, and more. Data can be trended and exported from the EnerVista 469 program for analysis by users and technicians. The resulting conclusions from the data can be implemented through the relay’s setpoint system, creating more effective settings based on your system’s unique needs and operating environment.

This unit also features an enhanced faceplate with a wider LCD and more efficient placement of the keypad and LEDs. The display is 40-character, alphanumeric, and is easily viewed under a variety of lighting conditions. The display can also show different system values when not in active use, providing a quick and efficient reference point for users in the vicinity of the relay. The LED indicators also provide reference points, as they are able to turn green, amber, or red depending on the conditions of the system itself.

Frequently Asked Questions about 469-P5-LO-A20-T

What happens when the Relay has stopped or is running cool at times?
This information is supplied when the motor manufacturer is running cool or constant cool times are not provided in the data sheet as issued with the motor. With the resistance temperature detectors and a wired relay, the thermal model has to be used during these critical cooling times. Cooling times usually range between 15 and 30 minutes with the default values and is for the running and stopping cool times. 
What should the settings be set at for an acceleration trip on the GE 469-P5-LO-A20-T Relay?
For the GE 469-P5-LO-A20-T Relay acceleration trip, it is apropriate to have the settings set higher than the max starting time, in doing so, this avoids more tripping with a voltage if it were set lower. If the voltage is lowered to a starting usage (set to the acceleration curves) an 18 second setting should be perfect, but if it is an across the line usage of the starting, a 13 second setting should work for this relay.
What if the motor is already hot and the relay has limited starting?
The enable to start a inhibit function can limit starts, espesically when the relays motor is already hot. A GE 469-P5-LO-A20-T Motor Management Relay learns when the relay is hot and how much thermal capacity is used to start, so if the motor is too hot after using some thermal capacity, the relay will not start, especially if the thermal capacity is lower than that is required for a start. 

469-P5-LO-A20-T 模拟电流转换


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