ITT IM213 Set the meter to read DC current mA, Connect the black lead from the meter to terminal

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Troubleshooting

 

 

Red Light Codes (continued)

 

 

 

Flashes

Controller Status

Description

3 Blinks (contd.)

 

- Disconnect the White wire in the sensor cable from terminal 6.

 

 

- Set the meter to read DC current (mA)

 

 

- Connect the black lead from the meter to terminal 6

 

 

(TRANSDUCER INPUT)

 

 

- Connect the red lead from the meter to the White wire in the

 

 

sensor cable.

 

 

- The meter will display the output of the sensor. If functioning

 

 

properly, the output of the sensor will be between 4mA and

 

 

20mA depending on the pressure in the system. Refer to the

 

 

chart below to determine the sensor feedback at various pressures.

The following formula gives the transducer output based on applied pressure:

Output Current =[(Output Current Range)x System Pressure]+ 4mA

Pressure Range

Where:

Output Current is the transducer output

Output Current Range is the maximum output signal of the transducer minus the minimum output signal of the transducer. In this case:

Output Current Range = 20mA – 4mA, or 16mA

Pressure Range is the pressure that corresponds to the maximum output signal. For a 300 PSI transducer the Pressure Range = 300 PSI – 0 PSI = 300 PSI

System Pressure is the system pressure as read on the pressure gauge.

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Contents ITT IM213 Commercial WaterIndex Safety Instructions DeathHP = System ComponentsController Product Code Information Volt =System Design Fusible DisconnectDiagram #2 shows a set-up for municipal water connection SectionGeneral Installing the Pressure SensorPiping Pressure Tank, Pressure Relief Valve and Discharge PipingMounting the Controller Power Supply Power Supply and WiringDelta/Wye with grounded Wye neutral Delta/Delta with grounded leg Ungrounded secondaryOpen Delta consult factory Resistance grounding and ground fault protectionFor Frame Size 1 Controllers 208/230 Single Phase Connection460 Conduit, Wire and Fuse Sizing 20ºC 30ºC 40ºC 50ºCOutput Power Connections Input Power and Line Transformer RequirementsStarting the System Input Power Connections Setting the Motor Overload Switches Chart below shows the motor overload setting for each modelSetting the Minimum Frequency Switch Setting the Acceleration/Deceleration SwitchesSetting the No Water Restart Time Switches Setting the Carrier Frequency SwitchMotor Rotation Direction Setting the PressureSystem Status Input and Output Functions Switch TroubleshootingUse the following table to help troubleshoot problems StandbyThis fault can be caused by Constant Controller ErrorPower. If the error persists, replace controller Incorrect setting of Motor Overload Setting switchesConnect the black lead from the meter to terminal Set the meter to read DC current mASensor cable Megger readings Blinks Temperature This fault can be caused byTemperature reaches 104 ºF 40ºC To 50% or lowerGreater than 275V for 230V units and 560V for 460V units 10Hz for 5 minutesController Dimensions Appendix Input Wire Sizing Charts InputPage IM213 Revision Number November

IM213 specifications

ITT IM213 is a prominent electronic device designed for data acquisition and monitoring in various industrial applications. Known for its robust construction and versatile functionality, the IM213 series has gained significant traction in sectors such as manufacturing, environmental monitoring, and energy management.

One of the key features of the ITT IM213 is its advanced data logging capability. The device can record a wide range of signals, including temperature, pressure, and humidity, making it an essential tool for real-time monitoring. The intuitive user interface allows users to configure the device easily, adjusting parameters to suit specific monitoring needs.

The IM213 utilizes cutting-edge technologies to ensure accuracy and reliability. Its high-resolution analog-to-digital converters (ADCs) offer precise measurements with minimal noise interference, enhancing the overall performance of the device. Additionally, the device supports multiple communication protocols, including Modbus, RS-232, and RS-485, enabling seamless integration into existing systems.

Another noteworthy characteristic of the ITT IM213 is its robust build quality. Designed for use in harsh environments, it features an IP67-rated enclosure that protects it from dust, moisture, and other potential contaminants. This makes it particularly suitable for outdoor applications or locations with challenging conditions.

Furthermore, the IM213 is equipped with a range of connectivity options. Users can connect the device to cloud platforms for remote monitoring and data analytics, leveraging IoT technologies to enhance operational efficiency. This capability allows organizations to make data-driven decisions, improving their overall productivity.

The device also supports customizable alert systems, notifying users of any deviations from preset thresholds in real-time. This feature is crucial for preventing costly downtime and ensuring that processes remain within optimal operational parameters.

In terms of power consumption, the ITT IM213 is designed to be energy-efficient, ensuring long operational life and reduced running costs. Its low-power modes further contribute to sustainability, making it a responsible choice for environmentally conscious organizations.

In summary, the ITT IM213 is a versatile and durable data acquisition device that serves a wide range of industrial applications. Its advanced logging capabilities, high accuracy, robust construction, and connectivity options position it as a leading choice for professionals looking to improve their monitoring and data collection efforts. With these features, the IM213 is poised to play a vital role in enhancing productivity and operational efficiency in various sectors.