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GE Multilin 269PLUS-10C-120 Digital Relay

Product Description

The 269PLUS-10C-120 was released in the GE Multilin 269 PLUS motor management relay series.

It is a standard model that includes all of the basic features and protection offered by this family of relays.269 PLUS relays are designed for AC motor protection.

With proper installation and configuration, they can be integrated into systems that protect associated mechanical systems as well as motors and operators.

For example, when a GE Multilin meter is used with the 269PLUS-10C-120. power and voltage can be monitored, as well as the values used by the relay to provide additional protection features.

A feature of the 269PLUS-10C-120 GE Multilin relay is the storage of relay setpoints and various values in non-volatile memory.

Setpoints, “learning” parameters, pre-trip values, and statistical records remain unchanged even if control power is lost or otherwise removed.

Stored values include hours of operation, total number of motor starts, number of relay trips, and more.

The 269PLUS-10C-120 also features a built-in firmware self-test to continuously check relay operation.

If the self-test program detects a fault, an alarm indicator is triggered.

The GE Multilin 269 PLUS relay offers flexibility through a custom curve feature that allows the user to enter their own breakpoints if one of the eight standard overload curves is not appropriate.

In addition, there are multiple RTD input www.ge-drive.com sensor types to choose from, as well as multiple control voltage options.

RTD type and control voltage are the two specifications indicated in part number 269PLUS-10C-120.

The 10C refers to the RTD input. In this model, the sensor is a 10-ohm copper RTD. The control voltage is labeled 120. indicating that this GE relay is a 120 VAC/125 VDC model.

These relays are available in various combinations of RTD type and control voltage. If the 269PLUS-10C-120 does not meet the exact needs of your application, several other 269 PLUS models are in stock.

Frequently Asked Questions about the 269PLUS-10C-120

What is the RTD component of the Multilin 269PLUS-10C-120 digital relay?

The 269PLUS-10C-120 has a relay consisting of 10 ohms of copper as indicated by the 10C name.

The 269PLUS-10C-120 has two auxiliary relays, a latching main trip relay, and an alarm relay.

In addition, the 269PLUS-10C-120 is capable of providing a warning before a trip occurs.

The unit contains 12 RTDs programmable to 4 of the 4 output relays already discussed. Finally, there is a programmable analog output.

How do the Multilin GE 269PLUS-10C-120 digital relays and motor management relays protect the motor in the event of a mechanical blockage?

In the event of a mechanical blockage, the Multilin GE 269PLUS-10C-120 Digital Relay and Motor Management Relay will protect the motor as well as any damage to the bearings, gears and other components associated with the drive.

During a rapid trip or mechanical blockage, this function will cause the motor to shut down quickly to stop potential damage.

A current surge will cause the relay designated for this function to become active.

Alarms, trip time delays, and pickup levels can all be selected by the operator for this mechanical jam/rapid trip function.

In this way, the protection of the motor during these events can be controlled by the user.

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GE Multilin VMIVME-2536 Optically Coupled Digital Input/Output Interface

Features

– 32 optically coupled outputs

– 32 optically coupled inputs

– High isolation potential – 1kV continuous – 35kV pulsed

– 8-bit, 16-bit, 32-bit data transfer

– Standard data or short I/O addressing A16 or A24

– Voltage-sensing or contact-sensing inputs

– Input range 5 to 125VDC

– 300mA sink current output

– Maximum output voltage 50V

– Inputs and outputs support built-in testing

Functional Features

Board Features: The board has 32 optically coupled inputs and 32 www.ge-drive.com optically coupled outputs.

The outputs and inputs have built-in testing and provide continuous 1kV system isolation for the VME backplane.

Compliance The board conforms to the VMEbus specification ANSI/IEEE STD 1014-1987 IEC 821 and 297 with the following helpers:

a24/a16. d32/d16/d08 (eo)

Slave devices using the following address modifiers:

3D, 39/2D, 29.

BUILT-IN TEST: The VMIVME-2536 supports both on-line and off-line built-in tests (BIT).

By setting a bit in the Control and Status Register (CSR), the input will enter test mode.

In test mode, data placed in the on-board test registers is read through the input port instead of field data.

The address of the test register is the same as the address of the input data port.

The address of the test register is the same as the address of the input data port, so testing can be accomplished by simply writing to and reading from the input data port. This feature can be used for both on-line and off-line testing.

The contents of the output data register can be read at any time, thus supporting online testing. The outputs can be put into offline test mode by setting a bit in the CSR.

In offline test mode, all open collector outputs are disabled. Data patterns can then be written to or read from the output registers to perform tests without affecting the outputs.

Input Characteristics

Input Configuration: Inputs can be either voltage sense or contact sense. Voltage sense or contact sense can be set by byte boundary.

For contact sensing, a user-supplied SIP resistor must be installed.

External voltage or internal VME +5V can be jumper-selected on byte boundaries to power the contact detection mode. Note that VME +5V is only available for the 5V input option.

Input Voltage Options: The input voltage range is a manufacturing option. Available ranges are 5. 12. 24. 28. 48. and 125V.

See Tables 1 through 5 and refer to Ordering Options for details.

Input Isolation: 10MΩ minimum

Isolation Voltage(1): 1.000V continuous; 3.500V one second, field to VME.

Maximum continuous voltage between channels is 500V.

Contact dithering: User programmable dithering.

Dither times are 0. .256. .512. 1.024. 2.048. 4.096. 8.192. and 16.384 milliseconds.

16.384 milliseconds. De-dithering defaults to 0 on reset.

Output Characteristics

Output Configuration: Outputs are optically isolated open collector. User installable pull-up resistors at byte boundaries.

An external voltage or internal VME +5V can be jumper-selected on the byte boundary to power the pull-up resistor.

GE General Electric DS200AAHAG1AD ARCNET Connector Boards

DS200AAHAG1AD (AAHA) ARCNET Connector Board for GE Mark V LM Turbine Control System

Product Description

The DS200AAHAG1AD is an ARCNET connector board manufactured by General Electric as part of the Mark V LM SpeedtronicTurbine control system.

Mark V LM manual GEH-6353B clearly summarizes the function of the DS200AAHAG1AD in the control system. The board is referred to by its acronym AAHA.

The DS200AAHAG1AD, abbreviated AAHA, is part of the Speedtronic Mark V LM control panel.

The board is capable of providing connectivity and interface functionality between a control engine with an I/O core and external hardware.

The control engine is typically located within the core. The kernel typically requires the use of two AAHA boards.

One board is used to facilitate the stage link between the user interface and the core.

The second board is capable of connecting the core to COREBUS.

This link allows communication between the I/O core and the control engine.

The DS200AAHAG1AD is plugged in and installed to operate without any type of hardware or www.ge-drive.com software modification.

The AAHA board is relatively small. It has an EBNC connection port that is not normally used.

It has one ARCBNC-B labeled P1 and one ARCBNC-A port labeled P1.

These ports are BNC ARCNET communication ports. There is an E2 and E1 LED indicator.

There is an EPL 9-pin connection that is not normally used and an APL 10-pin connection port that is used as an ARCNET communications link.

DS200AAHAG1AD Frequently Asked Questions

What are the connectors on the DS200AAHAG1AD?

The DS200AAHAG1AD has the following connectors: 2PL, APL, ARCBNC A, ARCBNC B, EBNC and EPL.

The connectors EBNC and EPL on the DS200AAHAG1AD are not normally used on the DS200AAHAG1AD.

How do I configure the DS200AAHAG1AD?

No hardware or software configuration is required on the DS200AAHAG1AD board.

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GE Fanuc IC200CHS212 Plug-in Relay Extension Base

About IC200CHS212

The IC200CHS212 base is a plug-in relay expansion base designed and manufactured by GE Fanuc.

It comes with 16 I/O points with LED indicators. These indicators light up when a connection is active with a specific point.

The Plug Relay is easily replaceable and fuses 8 amps of current. It is compatible with Versamax I/O modules.

These I/O modules have a 24-volt DC output voltage and a 0.5-ampere current rating and are used to configure the IC200CHS212 base.

The expansion relay has a small form factor, measuring 9.9 inches wide by 4.95 inches high by 2.8 inches deep.

The module is used in conjunction with an interface unit or power supply unit. The relay expansion bases comply with different environmental and industrial standards.

The IC200CHS212 expansion base www.ge-drive.com can be used to connect a variety of termination bases. It comes with removable terminal connectors that can be easily replaced.

The expansion base uses a box connector. It supports output voltages in the range of 0 to 125 volts DC with nominal voltages of 5. 24. and 125 volts DC.

For the voltage range of 8 to 5 volts AC, this expansion base has a load current of 265 amps per point.

The IC200CHS212 chassis is constructed of high quality materials.The Versamax module provides high performance and is a cost-effective industrial solution.

The expansion relay has ports for connection to programmers and handheld devices.

It is designed with open architecture and should be protected from dust, dirt and contaminants. The temperature of the module should not exceed 60 degrees Celsius.

The IC200CHS212 is GE’s 16-point I/O relay expansion base. The relay is replaceable, labeled 8 amps and fused.

The VersaMax I/O Modules IC200MDL740 and MDL750 provide 24 VDC O.5A outputs to control the IC200CHS212 relays.

The IC200CHS212 dimensions (excluding DIN rail height) are 253.7 mm (9.9 in.) x 126 mm (4.95 in.) x 73 mm (2.8 in.).

Power supply modules such as the IC200CHS212 snap onto all Versamax interface units or power booster carriers.

Any power supply can be specified as the main power supply for modules in an I/O station or as an additional power supply for large I/O applications.

The IC200CHS212 and other VersaMax I/O plug-in disconnect bases enable the IC200CHS003 to connect to a variety of termination bases.

Relay bases provide more protection and higher current output. The relays are controlled by the outputs of the VersaMax I/O modules.

Users can easily disconnect each point signal from the I/O module by disconnecting the base. The module’s field terminals can also be removed.

The relays located on the plug-in terminals are intended to be controlled using a typical 24 VDC 0.5 VersaMax output module.

IC200CHS212 Technical Description

The GE IC200CHS212 base is a 16-point expansion base. It provides LED indicators for each I/O point.

GE Fanuc IC200ALG432 Hybrid Analog Module

The IC200ALG432 module is an analog module with mixed inputs. It is manufactured by GE Fanuc as a Versamax module.

About the IC200ALG432

The GE Fanuc IC200ALG432 module is a hybrid analog module that runs on a 10-volt DC power supply.

It is a 12-bit module equipped with 4 channels and 2 output channels.

The analog module has an update rate time of 0.4 milliseconds and an input response time of 5 milliseconds.

The analog module requires an external power supply to power the outputs. The inputs of the module are powered by the external power supply of the transceiver.

The CPU is present in the module that handles the operation. the IC200ALG432 module has LEDs on the front of the module that indicate the flow of power and backplane currents.

No thermal derating occurs in this hybrid module. the IC200ALG432 module draws a total of 160 milliamps of current during normal operation. including load current.

The diagnostic feature of the module helps to detect the loss of power on the user side.

It provides four channels and two channel outputs. The outputs require a 24V external power supply and the inputs are powered from the transceiver’s external power supply.

The CPU or NIU performs intelligent processing of the IC200ALG432 module. Includes 4 words of analog input data and 2 words of analog output data.

This IC200ALG432 uses LEDs to indicate the presence of user-side power for analog field-side www.ge-drive.com circuits as well as backplane power.

The LEDs emit a green light when operating as intended. When properly installed, this module reports the loss of user-side power failure for field-side circuits and conveniently sets up jumpers for outputs.

The IC200ALG432 can be set to maintain the last state or default values even if the backplane or field power is temporarily interrupted. The module reports the loss of user-side power failures for field-side circuits.

The recommended range for the module’s external power supply is +18 to +30 VDC. this includes power consumption ranging from 160 mA ripple.

The +/- 10 VDC input range should be noted. It is recommended that shielded cables be installed with the source device or I/O module grounded.

The GE Fanuc IC200ALG432 module comes with configurable alarms that can be set for different events.

During installation, the module should be protected from traces of electromagnetic noise and airborne contaminants.

The temperature of the installation area should not exceed 60 degrees Celsius. The accuracy of the module depends on the ambient temperature.

At 25 degrees Celsius it has +/-0.3% of full scale accuracy and at 60 degrees Celsius it has +/-1%** accuracy.

The IC200ALG432 module has an 8 count resolution. The module has a common mode voltage of 0 volts.

The IC200ALG432 module draws 5 milliamps of current from a bus running from a 60 V supply.

GE Fanuc IC200DTX850 Versamax Series Data Terminal

The GE Fanuc IC200DTX850 terminal is a GE Intelligent Platform/GE Fanuc data interface terminal.

It is part of the Versamax family and has been specially designed for different applications such as counters and simple timer applications.

About IC200DTX850

The IC200DTX850 terminal is a data display terminal manufactured by GE Intelligent Platforms/GE Fanuc for the GE Versamax product line.

These Versamax series data terminals, including the GE Fanuc IC200DTX850 terminal, are specifically designed for use in a variety of applications that

Including simple timer and counter applications, they can also display full text messages.

These terminals can be controlled by the user via a numeric keypad. Connecting a Versamax Nano or Micro PLC to the terminals is easy and requires no user configuration.

Because these Versamax terminals are pre-programmed, the GE Fanuc IC200DTX850 Operator Interface Terminal specifically supports up to 200 stored messages.

The GE Fanuc IC200DTX850 Data Display Terminal also has an LCD backlight for the screen.

It has a keypad with 8 keys for control functions and requires the IC200BL555 cable or equivalent to support its operator interface.

The data panel operates on an external power supply rated at 24 volts DC and 50 milliamps.

The GE Fanuc Versamax IC200DTX850 data display terminal measures approximately 182 x 101 x 37 mm.

It has an operating temperature range of 0 to 50 degrees Celsius.

The IC200DTX850 data interface terminal has an RS-232 serial port for communication purposes.

This port is designed for different commands, including serial input/output commands, Modbus RTU slave commands or SNP slave commands.

In addition, this data terminal is compatible with the Data Designer software.

The Versamax controllers compatible with this terminal are available in micro and nano models, www.ge-drive.com which are small in size, while offering powerful control and a high level of performance.

Typically, these Versamax nano and micro controllers have different communication options to meet the operator’s control needs.

GE 04220FL11232A RXI Controller

GE General Electric 04220FL11232A  RXI Controller, Multiple Ethernet Ports, 3.4 Amp, 24 VDC

I. Introduction

In the field of industrial automation, the performance of the controller is directly related to the operation efficiency and stability of the whole system. GE RXI controller has become a leader in the field of industrial automation with its excellent performance, rich functions and stable operation. In this paper, we will introduce in detail the characteristics and parameters of GE RXI controller and its application in industrial automation.

Overview of GE RXI controller

GE RXI controller is a high-performance, high-reliability control system introduced by GE Intelligent Platform. It utilizes cutting-edge CPU technology, market-leading industrial Ethernet network technology, and a unique user interface to provide equipment manufacturers and end-users with the most efficient and reliable control system.

Third, the GE RXI controller parameters in detail

Processor: The GE RXI controller utilizes a high-performance dual-core CPU to ensure efficient system operation.

Memory: The RXi Box IPC has 4G RAM memory to support high-performance designs.

Storage System: 32GB industrial-grade SSD comes standard, while an optional 250GB hard disk is provided to ensure safe data storage.

Network Interface: Supports Gigabit PROFINET (with built-in MRP redundancy) www.ge-drive.com and Ethernet ports to provide high-speed data transfer capability.

Wireless communication: Optional WLAN function enables wireless communication through the internal Mini PCIe card holder.

Serial communication: RS-232 port (RJ-45) is provided to support serial communication needs.

Video/Graphic Interface: VGA port is supported for resolutions up to 2560×1440 @60Hz.

Audio: Provides micro DIN audio socket via IFP.

USB Interface: Provides two USB 2.0 standard ports for easy connection of external devices.

IV. Features of GE RXI Controller

Unique Intelligent Display Module: Provides configuration and maintenance functions for the controller without the need for additional software for easy operation.

High-performance control: Ensures efficient system operation through technologies such as high-performance dual-core CPU and Gigabit PROFINET.

Compact form factor: PROFINET-based design provides a small form factor solution for equipment manufacturers and *end users.

Highly Flexible Distributed I/O Functionality: Supports a variety of expansion slots to meet a wide range of industrial automation needs.

High Reliability: Adoption of industrial temperature grade components, combined with patented thermal monitoring technology and advanced passive cooling technology, ensures reliable operation in harsh environments.

. Applications of GE RXI Controller

GE RXI controllers are widely used in various industrial automation systems, power systems and motor control, building automation and other fields. For example, in industrial automation systems, GE RXI controllers can be used to control the operation of mechanical equipment, sensors and actuators, realizing automated production and process control; in power systems, they can be used to protect and control circuits, monitor current and voltage, and prevent the occurrence of electrical faults; in the field of construction, they can be used in building automation systems, such as lighting control and air-conditioning control, to improve energy efficiency and comfort.

VI. Summary

GE RXI controller has become a star product in the field of industrial automation with its excellent performance, rich functions and stable operation.

GE Fanuc IC200ERM002 Non-Isolated Expansion Module

The GE Fanuc IC200ERM002 Non-Isolated Expansion Module is a product of GE Intelligent Platforms/GE Fanuc.

It is manufactured as part of the Versamax series to enhance the functionality of a PLC or I/O output station and increase the number of modules that can be connected.

About the IC200ERM002

The GE Fanuc IC200ERM002 module is a non-isolated expansion receiver module that is part of the Versamax family.

This expansion module is used to enhance the functionality of a Versamax PLC or I/O output station and also increases the number of modules that can be connected.

The IC200ERM002 Expansion Module has a **capacity of 7 racks with up to 8 modules per rack*.

It requires an installed power supply to power all connected devices.

When an additional power supply or booster carrier is used, it should be connected to the mains power supply on the IC200ERM002 Expansion Module.

It also features 3 on-board LEDs to indicate the operational status of the device.

The module can also be used as a single-ended or multi-rack Versamax I/O expansion system.

Where the module is used in a multi-rack implementation, the total cable length cannot exceed 50 feet or 15 meters.

When the Versamax GE Fanuc IC200ERM002 Non-Isolated Expansion Receiver Module is used in www.ge-drive.com a single-ended system with only 1 expansion rack, the

The cable length should not exceed 3.3 feet or 1 meter.

It has a data rate of 2.765 Mbps or 5 Mbps, depending on the implementation used.

The GE Fanuc IC200ERM002 expansion module is equipped with two 26-pin D-shell expansion female ports.

In addition, it has two different current consumption ratings with a 3.3 volt or 5 volt backplane rating.

When the backplane voltage is 5 volts, the current consumption is rated at 70 milliamps and when the backplane voltage is rated at 20.3 volts, the current consumption is rated at 3 milliamps.

GE General Electric IC200MDD841 High-Speed Counter Module

The IC200MDD841 high speed counter module is a GE Fanuc product.

This module is manufactured as part of the VersaMax product line.

It has mixed discrete I/O points with 12 positive logic outputs and 20 positive logic inputs and is also configurable.

About the IC200MDD841

The IC200MDD841 module is a high-speed counter module manufactured by GE Fanuc.

It is part of the Versamax series and has mixed discrete inputs and outputs, including 12 positive www.ge-drive.com logic outputs and 20 positive logic inputs, some of which are configurable.

Devices connected to these I/O connectors have two states: on and off.

The GE Fanuc IC2MDD200 module has no protection features, such as internal fuses or isolation of individual channels.

It supports a variety of input and output configuration settings, such as pulse-width modulation, ramp pulse train, pulse train, and high-speed counters.

When this module is set to its default configuration, it has 841 Type A high-speed counter outputs and inputs.

These high-speed counters process pulse signals at 4 kHz. In addition, in the default configuration, the module has 80 standard outputs and 8 standard inputs.

The backplane powers the GE Fanuc IC200MDD841 high-speed counter module, but a separate power supply powers all external output devices.

When the module is connected to a backplane power supply rated at 5 volts, it draws 30 milliamps of current.

The inputs and outputs of the IC200MDD841 module operate at 24 volts DC.

The module’s on/off state current ratings are 3 to 8 mA/0 to 0.5 mA, respectively.

It measures 66.8 mm or 2.63 inches long, 110 mm or 4.3 inches wide, and 50 mm or 1.956 inches deep.

The high-speed counter module provides error detection and displays up to 13 words of status data.

It has on-board LEDs that display device status information.

GE General Electric IC200ALG630 Analog Input Module

About the IC200ALG630

The IC200ALG630 is a component module for the VersaMax I/O platform, formerly manufactured by GE Intelligent Platforms (GE IP) and now produced by Emerson Automation.

The module is specifically designed for temperature measurement requirements or non-standard millivolt signals provided by integrated sensors.

The module features seven (7) analog input channels and supports direct wiring of a wide range of thermocouple sensor types, such as J, K, T, S, and S.

such as J, K, T, S, and R, as well as a variety of millivolt signals including +/-19.5mV, +/-39mV, +/-78.125mV, +/-156.25mV, +/-312.5mV, and +/-625mV.

The module has a 16-bit conversion resolution.

The IC200ALG630 has a 16-bit signal conversion resolution provided by a single analog-to-digital converter (ADC) on each input channel.

In addition, each input channel has a scan time of 60 ms per point at 60 Hz and 50 ms per point at 70 Hz.

Voltage measurement accuracy is +/- 0.2% and temperature measurement accuracy is +/- 0.15% with a consistency error of +/-0.3 degrees Celsius or +/-0.5 degrees Fahrenheit.

In addition, the IC200ALG630 is capable of diagnostics at every input point, including open thermocouple, over/under range, high/low alarms, and thermistor errors.

The IC200ALG630 has a backplane current consumption of 3 mA at the 125 VDC and 5.3 VDC outputs on the backplane.

It is also rated for optical and frame-to-ground isolation with a continuous voltage duration of 250 VAC and a 1500 VAC voltage duration of 1 minute.

The module also provides LED status indicators, specifically an OK LED that indicates active backplane power www.ge-drive.com when the module fails, and amber when lit green.

The IC200ALG630 module is GE’s 16-bit analog input module. It is an industrial module designed to handle a wide range of application requirements.

It comes with a 7-bit thermocouple with 16 channels. This thermocouple analog input module receives power from the backplane power supply.

It offers four cold end compensation options, no cold end, remote cold end, fixed cold end, and localized cold end compensation.

It is rated at 5 volts DC. It supports different thermocouples of type J, K, T, S and R.

The IC200ALG630 module is capable of drawing a total of 5 milliamps of current from the 125 volt bus.

The update rate of the analog module is 60 milliseconds for 60 Hz and 50 milliseconds for 70 Hz.

An OK indicator on the front of the module indicates the presence of backplane power.

The IC200ALG630 module has a compact design that saves panel space.

It measures 4.3 inches wide, 2.63 inches high, and 1.95 inches deep.

The temperature range should be set between 0 and 60 degrees Celsius. The thermocouple module has advanced diagnostic features.

It can issue channel-specific alarm reports. It can also detect over- and under-range conditions in the input.

Faults caused by thermistors can be easily detected by the module as internal faults. The module has not experienced thermal derating.

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