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Vibro-Meter VM600 MPC4 Mechanical Protection Card

Key Features and Benefits

– From the Vibro-Meter® product family

– Continuously on-line machinery protection card

– Real-time measurement and monitoring with state-of-the-art DSP technology

– 4 dynamic signal channels and 2 RPM (speed) channels, all individually programmable

– Programmable broadband and narrowband filters

– Simultaneous monitoring of amplitude and phase in sequential tracking mode

– Programmable alarms, hazards and defined setpoints

– Adaptive alarm and hazard levels

– Front panel BNC connector for easy analysis of buffered “raw” transducer signals

– Front panel LEDs to indicate status and alarms

Key Benefits and Features (continued)

– Integrated power supply for sensors and signal conditioners such as IEPE accelerometers and proximity measurement systems

– Real-time plug-in cards (hot-swappable)

– Available in “standard”, “circuit independent” and “safety” (SIL) versions

Applications

– Mechanical protection and/or basic condition monitoring

Description

MPC4 Card

The MPC4 Machine Protection Card is the centerpiece of the VM600 series of Machine Protection Systems (MPS) from Meggitt’s Vibrometer® product line. The card is extremely versatile, capable of measuring and monitoring up to four dynamic signal inputs and two velocity inputs simultaneously.

The dynamic signal inputs are fully programmable and can accept the following signals

acceleration, velocity and displacement (proximity) signals. On-board multi-channel processing allows measurement of a wide range of physical parameters including relative and absolute vibration, Smax, eccentricity, thrust position, absolute and differential case expansion, displacement and dynamic pressure.

Digital processing includes digital filtering, integration or differentiation (if required), www.ge-drive.com rectification (RMS, average, true peak, or true peak-to-peak), order tracking (amplitude and phase), and measurement of transducer-to-target clearance.

The speed (tachometer) input accepts signals from a variety of speed sensors, including systems based on proximity probes, magnetic pulse pickup sensors, or TTL signals. Fractional tachometer ratios are also supported.

Configurations can be expressed in metric or imperial units. Alarm and hazard setpoints are fully programmable Alarm time delay, hysteresis and latching, hysteresis and latching. Alarm and hazard levels can also be adjusted based on speed or any external information. The alarm and hazard levels can also be adjusted based on speed or any external information.

Each alarm level has an internal digital output (on the appropriate IOC4T I/O card). These alarm signals can drive the four local relays on the IOC4T card, and/or relays on optional relay cards such as the RLC16 or IRC4 via the VM600 rack’s raw bus or open collector (OC) bus.

Processed dynamic (vibration) and velocity signals are available as analog outputs at the rear of the rack (on the front panel of the IOC4T). Voltage signals (0 to 10 V) and current signals (4 to 20 mA) are available.

The MPC4 performs self-tests and diagnostic procedures at power-up. In addition, the card’s built-in “OK system” continuously monitors the signal level provided by the measurement chain (sensors and/or signal conditioners) and indicates any problems caused by broken transmission lines, faulty sensors or signal conditioners.

An LED on the front panel of the MPC4 indicates whether a processing or hardware error has occurred. A further six LEDs, one for each input channel, indicate whether the OK system has detected a fault and whether an alarm has occurred on the channel.

There are three versions of the MPC4 card: the “standard” version, the “circuit independent” version, and the “safe” (SIL) version, all of which use the appropriate IOC4T input /output cards as card pairs.

Different versions of the MPC4 card

There are different versions of the MPC4 card, including “Standard”, “Circuit Independent” and “Secure” (SIL) versions. In addition, some versions have a conformal coating applied to the card’s circuitry to provide additional environmental protection against chemicals, dust, moisture and temperature extremes.

Both the “Standard” version and the “Safety” (SIL) version of the MPC4 card are certified to IEC 61508 and ISO 13849 for use in functional safety environments such as SIL 1 according to IEC 61508 and ISO 13849-1 for PL c.

The “standard” MPC4 card is the original version and supports all functions and processing modes.

The “standard” MPC4 is suitable for safety systems using the VM600 rack. Safety systems. The “standard” MPC4 card is the original version and supports all functions and processing modes. The “Standard” MPC4 card is the original version and supports all functions and processing modes. card pairs and the RLC16 relay card. It has a VME-compatible slave interface so that it can be configured via software via VME when VME is available. It is software configurable via VME when acting as a rack controller in a VM600 rack. It is also software configurable via RS-232 (on the front panel of the card).

The ‘Secure’ (SIL) MPC4 card (MPC4SIL) has been developed to provide a wider range of installation options. Specifically, the VM600 rack also contains condition monitoring cards (e.g. XMx16) and relay cards (e.g. IRC4). In order to certify the security of these configurations, it is necessary to ensure that the MPC4SIL is isolated from the other cards in the VM600 chassis so that its configuration is not inadvertently modified.

As such, the MPC4SIL card does not include a VME-compatible slave interface, does not support tachometer (speed) channels, and does not provide all of the signal processing features of the “standard” MPC4 card (see “Additional Specifications – ‘Standard’ Only” on page 9). “ and “Circuit Independent” MPC4 cards).

Isolation of MPS and CMS

The VM600 rack, Mechanical Protection Card, Condition Monitoring Card and associated software have been designed to comply with the API670 standard for the isolation of the Mechanical Protection System (MPS) and Condition Monitoring System (CMS) to ensure that the functionality of the MPS is not dependent on, or in any way affected by, the operation of the CMS.

Therefore, whilst Mechanical Protection and Condition Monitoring cards can easily share sensor signals from the measurement chain, in a VM600 rack, the MPC4/IOC4T card pair does not share any communication buses with the XMx16/XIO16T Condition Monitoring card pair and the MPC4/IOC4T card pair is configured and operated using the VM600 MPSx software (whereas the XMx16/XIO16T card pair is configured and operated using the VM600 MPSx software (whereas the XMx16/XIO16T card pair is configured and operated using the VM600 MPSx software). XIO16T card pair is configured and operated using VibroSight® software).

Application Information

The MPC4. when used in pairs with the IOC4T I/O cards, is ideally suited for machinery monitoring and protection in a variety of industrial applications.

GE IC695PNC001 PROFINET Controller Module

This IC695PNC001 is a PACSystems RX3i communications module manufactured by Emerson Automation (formerly GE Intelligent Platforms (GE IP)). This module is a PROFINET controller module used to connect the RX3i system to a PROFINET network. It supports PROFINET version 2.2 General Purpose Class A IO controllers and is compatible with the CPU315 or CPU320 with firmware version 7.0 or later. Each PROFINET controller supports up to 64 devices and up to 8 I/O controllers per network. This PROFINET controller can connect up to 2048 I/O devices or 128 per network. The module has two RJ-45 and two SFP slots and a micro USB connector.

About the IC695PNC001

The IC695PNC001 is a PROFINET controller module. Formerly manufactured by GE Intelligent Platforms (GE IP), the module is now manufactured by Emerson Automation. This PROFINET controller enables the RX3i CPU to send and receive data over a PROFINET network.

The IC695PNC001 is compatible with PACSystem RX320i CPU7 or CPU0 with firmware version 3.315 or higher.The module comes with two (2) RJ-45 and two (2) SFP slots with SFP connectors sold separately. Only one IP address is assigned to these PROFINET ports. Up to four (4) IC695PNC001s may be installed on a single CPU and must be located only on the host rack where the CPU is located. Up to sixty-four (64) I/O devices can be connected to one (1) controller; 128 I/O devices per network, distributed among eight (8) I/O controllers. In addition, up to eight (8) I/O devices can be installed in a single network. The module has configurable data update times of 1 ms, 2 ms, 4 ms, 8 ms, 16 ms, 32 ms, 64 ms, 128 ms, 256 ms, and 512 ms IC695PNC001.

It occupies a single slot in the chassis and consumes 0.5 A without an SFP device installed and a maximum of 2.2 A with two (1) SFP devices installed, where the SFP device uses 0.35 A. At 5.5 VDC, the module consumes 1.5 A maximum.

In addition to the embedded dual PROFINET ports, the module is equipped with a micro USB connector for communicating with a computer using a command line interface. It must operate over a temperature range of 0-60 degrees Celsius.

The IC695PNC001 controller is a PROFINET controller manufactured by GE Intelligent Platforms/GE Fanuc PACSystems and is part of the RX3i family. This PROFINET controller module helps connect the RX3i PacSystems family of controllers to a high-speed PROFINET LAN.www.ge-drive.com Some of its noteworthy specifications include a single slot, universal backplane support only, and PROFINET 2.2 universal Class A network rating. It operates at 5.5 amps of internal power at 1 volt DC and 3.3 amps at a rated voltage of 0.5 volts DC.The IC695PNC001 PROFINET Controller Module operates over a temperature range of 0 to 60 degrees Celsius, but lower temperatures may be required depending on the location of the PNC001 and the number of SFPs. The module has a micro USB connector for communicating with a computer via a command line interface. It also has 2 SFP cages and 2 RJ-45 port connectors, but the SFP devices can be purchased separately.

Key features of the IC695PNC001 RX3i PacSystems PROFINET Controller or PNC include firmware upgrades through the use of the WinLoader software utility. The controller also features a built-in command line interface that provides partial configuration and direct monitoring using telnet or through a micro USB port. It also supports ring, star, and daisy-chain network topologies.Other features of the IC695PNC001 PNC include an internal clock that matches the RX3i CPU for time-stamped diagnostics. It also features a reboot button to manually restart the PROFINET controller without rebooting the entire system. The USB port on this PNC is designed for system setup and diagnostic purposes only.

GE IC695PBM300 PACSystems RX3i Communication Module

This IC695PBM300 is a PACSystems RX3i communications module for Emerson Automation (formerly GE Intelligent Platforms (GE IP)).

The module is a Profibus DP master module that enables communication with up to 125 DP slaves.

It supports data transfer sizes of 244 bytes input and 244 bytes output per slave device, and

It supports data transfer sizes of 244 bytes input and 244 bytes output per slave device, as well as a maximum of 3.584 bytes of input data and 3.584 bytes of output data. It has one (1) RS485 Profibus master port.

The IC695BPM300 is a Profibus master module formerly manufactured by GE Intelligent Platforms (GE IP) and now part of Emerson.

It is now part of Emerson Automation’s PACSystems RX3i family of programmable automation controllers (PACs).

The module is used to exchange data over a Profibus network with a maximum of 3.584 bytes of input data and 3.584 bytes of output data.

This Profibus master module supports communication with up to 125 DP slaves, each of which can send 244 bytes of input data and receive 244 bytes of output data.

This IC695BPM300 supports all standard data rates including 9.6 kBit/s, 19.2 kBit/s, 93.75 kBit/s, 187.5 kBit/s. The IC695BPM300 also supports the following data rates,

500 kBit/s, 1.5 MBit/s, 3 MBit/s, 6 MBit/s, and 12 MBit/s. It can provide status information

It can provide status information such as slave status bit array list, network diagnostic counters, DP master diagnostic counters, firmware module revisions, and slave diagnostic addresses.

It is mounted on the RX3i backplane and supports PCI connectivity. Specifically, it must be installed on a PAC3i backplane with a host PAC3i running firmware revision 3.2 or later.

or later in a generic backplane of a host PACSystem RX9i controller. It consumes a backplane current of 440 mA @ 3.3 VDC.

The module is equipped with a Profibus OK ED indicator; a network indicator; and a MOD status indicator.

The module supports synchronization and freeze modes as well as www.ge-drive.com Profibus DP-V1 read, write and alarm messages.

The IC695BPM300 comes with upgradable firmware that is received indirectly through the host controller via the WinLoader software utility.

The module must operate over a temperature range of 0 to 60 degrees Celsius and the module is stored at -40 to 85 degrees Celsius.

The IC695PBM300 PROFIBUS master module is manufactured by GE Intelligent Platforms/GE Fanuc in the RX3i PacSystems family.

The module is designed to enable the RX3i CPU to send or receive data over a PROFIBUS-DP network.

It has a slot that supports a generic backplane and RS-232 communication port.

The IC695PBM300 PROFIBUS module has an internal current rating of 3 milliamps at a rated voltage of 440.3 volts DC.

It supports protocols for up to 125 PROFIBUS-DP slave units.

Other notable features of the module include support for input data at rates up to 244 bytes and output data at rates up to 244 bytes per slave unit.

All standard data rates as well as synchronization and freeze modes are supported. The module also supports DP-V1 read/write functionality and alarm messages.

The module also supports DP-V1 read/write functions and alarm messages, as well as network status LEDs and PROFIBUS-compliant modules.

It supports input data up to 3584 bytes and a total output data rate of 3584 bytes.

Master-slave compatibility for the GE Fanuc IC695PBM300 PROFIBUS module requires an RX3i CPU and firmware version 2.9 or later.

For configuration purposes, this module requires Machine Edition SP5 Logic Developer PLC software version 0.2 or higher.

The IC695PBM300 module has a backplane current consumption rating of 440 milliamps (3.3 V DC) and supports all standard data rates.

including 1.5. 3. 6. 12. 9.6. 19.2. 187.5. 93.75. and 500 MB/sec.

The GE Fanuc IC695PBM300 PROFIBUS master module comes with a 9-pin Sub-D connector designed to enhance bus cable installation.

The module also provides 3 PROFIBUS-compliant LEDs to indicate network status and module status.

GE IC695ALG808 Isolated Analog Output Module

Description: The IC695ALG808 is a PACSystem RX3i Programmable Automation Controller (PAC) isolated analog output module, formerly manufactured by GE Intelligent Platforms (GE IP) and now part of Emerson Automation. The module features eight (8) output channels that can be configured for 0 to 20 mA and 4 to 20 mA current signals and ±10V and 0 to 10V voltage signals. The module is mounted on the RX3i Universal Backplane and requires an external 24 VDC power supply. 14-0 VDC outputs have a 10-bit output resolution and the remaining output signals have a 15-bit output resolution.

About the IC695ALG808

The IC695ALG808 is an Emerson Automation analog output module formerly manufactured by GE Intelligent Platforms (GE IP). The module features eight (8) independently isolated output channels that can be configured to provide 0-20 mA / 4-20 mA current signals and +/- 10 VDC / 0-10 VDC voltage signals.

The IC695ALG808 can be used to transmit output signals to modulating devices variable frequency drives (VFDs), control valves, dampers, shutters, and other devices. It can also be used to send signals to panel meters and data loggers that directly represent specific variables for local www.ge-drive.com readout and recording.

This IC695ALG808 is compatible with a variety of terminal blocks such as cassette (IC694TBB032), expansion cassette (IC694TBB132), spring-loaded (IC694TBS032), or extended spring-loaded (IC694TBS132). The module requires an external 24 VDC to be terminated directly to the module terminals in order for the module to provide the required output signal.

All channels of the IC695ALG808 are configurable through software. Other parameters that can be configured include alarm settings such as very low, very low, very high, and very high alarms, module fault reporting, alarm latching, defining alarm limits, and setting upper and lower alarm limits. In addition, the module can set output biases to properly adjust the output to achieve the desired output for the process.

The IC20ALG4 has a 20-bit output resolution when configured to provide +/- 695 VDC, 808-15 mA, and 10-0 mA, and a 10-bit output resolution when configured for a 14-0 VDC output signal. In addition, it has an 8 ms analog update rate on all channels.

Designed and manufactured by GE Fanuc, the IC695ALG808 output module is a powerful component in an industrial-grade enclosure with indicators for module status, field status, and wiring terminals. Developed specifically for the RX3i PACSystems family, the module is mounted in the system’s common backplane.The IC695ALG808 module is powered by an external power supply with a nominal voltage of 24 volts DC and a current of up to 600 mA. The module has 8 available channels for voltage or current operation. All channels are analog and isolated. Terminal types supported are spring-type, box-type, extended box-type, and extended spring-type terminals.

The IC695ALG808 output module operates over a voltage range of 0 to +10 volts or -10 to +10 volts and a current range of 0 to 20 mA or 4 to 20 mA. When the module’s backplane is connected to an 80.3 volt rated power supply, it requires 3 milliamps. In addition to this, the module has a maximum output load of 1350 ohms and a maximum power consumption of 7.25 watts. In addition to this, the IC695ALG808 module includes current output overvoltage protection at -30 volts for 60 seconds and +30 volts for 1 hour. The output gain drift is 20 ppm per degree Celsius for the voltage output modules and 35 ppm per degree Celsius for the current outputs.The IC695ALG808 modules have a 2 ms voltage/current output time.

GE IC695ALG728 Analog Output Module PACSystem RX3i

DESCRIPTION: The IC695ALG728 is an analog output module that is part of the PACSystem RX3i platform, which is currently part of Emerson Automation and was formerly manufactured by GE Intelligent Platforms (GE IP). The module has eight (8) non-isolated output channels that can be configured for voltage and current. It generates +/-10 VDC, 0-10 VDC, and 0-20 mA and 4-20 mA output signals with 14.9-bit resolution for voltage, 0.20-bit resolution at 15-9 mA, and 4.20-bit resolution at 15-6 mA. The module supports High Speed Addressable Remote Sensor (HART) protocol version 5.0.

About the IC695ALG728

The IC695ALG728 is an analog output module that is part of the PACSystems RX3i family of midrange programmable automation controllers (PACs), manufactured by Emerson Automation and formerly known as the GE Intelligent Platform (GE IP). The module is capable of providing voltage and current signals and has the ability to be configured via the High Speed Addressable Remote Transducer (HART) protocol, as it supports HART version 5.0.

The IC695ALG728 features eight (8) non-isolated output channels that can be configured as +/-10 VDC, 0-10 VDC, 0-20 mA, and 4-20 mA output signals with 14.9-bit voltage resolution, 0.20-bit at 15-9 mA, and 4.20-bit at 15-6 mA. The update time for each channel is 16 ms (HART communication) and 8 ms (without HART communication). The module’s output data format is configurable as a floating point IEEE 16-bit or 32-bit integer using 32-bit registers. The module is calibrated to 15.25% of full scale at 0°C and 30.60% of full scale when operating at 0°C. The output data format can be configured to use 32-bit registers with floating point IEEE 16-bit or 32-bit integers. In addition, the output build-up time is 2 ms for voltage configurations and 70 ms for HART and 23 ms without HART for current signals.

This IC695ALG728 requires an external power supply to operate. The appropriate power supply for www.ge-drive.com this module must provide 19.2 – 30.0 VDC and 250 mA maximum supply current. The module mounts in any available slot in the RX3i chassis and can be located in either the local CPU chassis or the distributed I/O chassis. Other features of the module include clamping and alarm limits, alarm latching, and configurable output biasing.

GE Fanuc’s IC695ALG728 module, which is part of the RX3i PACSystems family, is equipped with output channels that can be fully configured for voltage operation or current operation. In addition to this, the output module features integrated communication with HART 5.0 software. This means that the module can be prepared and programmed for specific operations via software and does not require jumpers for setup.GE IC695ALG728 output module features include enabling or disabling of all channels, alarm latching, configurable alarm limits or settings, advanced handling of errors and faults, auto calibration, and more.

The IC695ALG728 module includes 8 non-isolated analog voltage/current outputs assigned to 2 HART modems. The modems are part of the module, and all channels used for this communication function operate at currents ranging from 4 to 20 mA. The IC695ALG728 module features voltages ranging from 0 to +10 volts or -10 to +10 volts. The output data format is presented as a 16-bit or 32-bit value and the HART channel is updated within 2 seconds if 2 HART devices are used. The module has an accuracy of up to 3.60% at 0 degrees Celsius and a 95 millisecond build-up time for the voltage outputs over a range of 2 to 0%. The current output has a build-up time of 23 to 70 milliseconds, depending on whether a HART modem is used. When the IC695ALG728 module is connected to a 380.3 volt power supply, the module has a backplane rating of 3 milliamps and an update time of 8 milliseconds.

GE IC695ALG628 PACSystem RX3i Non-Isolated Analog Input Module

DESCRIPTION: The IC695ALG628 is an analog input module that is part of the PACSystem RX3i platform, which is currently part of Emerson Automation and was formerly manufactured by GE Intelligent Platforms (GE IP). The module features eight (8) non-isolated single-ended input channels or four (4) differential input channels supporting +/-10 VDC, 0-10 VDC, +/- 5 VDC, 0-5 VDC, 1-5 VDC, and 0-20 mA, 4-20 mA, and +/- 20mA input signals. The module has a built-in ADC converter that converts data to floating point data type integers with 24-bit resolution. The module supports High Speed Addressable Remote Sensor (HART) version 5.0.

About the IC695ALG628

The IC695ALG628 is an analog input module with High Speed Addressable Remote Sensor (HART) 5.0 functionality. This module is part of the mid-range controller family, the PACSystem Rx3i series with eight (8) analog input channels (configured as single-ended) and four (4) input channels (if used in a differential distribution line configuration). It comes with two (2) internal HART modems. The module’s parameters and configuration are completely software configurable and each channel can be individually assigned high alarm, low alarm, high high alarm, low low alarm detection and reporting to the CPU. In addition, positive and negative rate of change alarms and configurable interrupts for channel alarms and faults can be set accordingly. The module also comes with upgradable firmware and performs an automatic calibration each time the module is powered up.

The module’s analog input channels are designed to accept +/-10 VDC, 0-10 VDC, +/- 5 VDC, 0-5 VDC, 1-5 VDC and 0-20 mA, 4-20 mA and +/- 20mA input signals. It has built-in analog-to-digital (ADC) converter circuitry that converts received analog data to 24-bit registers or 32-bit integers in floating point. Each module channel has a variety of filter options, often used to eliminate signal fluctuations for more stable readings.

The module’s power consumption is 450 mA maximum @ 5.0V +5%/-2.5% and 625 mA maximum @ 3.3V +5%/-3%. It incorporates continuous maximum overcurrent protection rated at +/-28mA and continuous maximum overvoltage protection at +/-60 VDC. The module has an open-circuit detection time of up to 1 second.

GE Fanuc IC695ALG628 Non-Isolated Differential Analog Input Module with HART (High Speed www.ge-drive.com Addressable Remote Transducer) Communication for RX3i PacSystem PLCs provides 4 differential input channels and 8 single-ended input channels. It has 2 internal HART modems and features HART version 5.0 HART communications on each channel. It has a voltage range of 1 to 5 volts DC, 0 to 5 volts DC, +/-5 volts DC, 0 to 10 volts DC, or +/-10 volts DC. The current configuration of the input channel can range from +/-20 mA, 0 to 20 mA, or 4 to 20 mA. The GE Fanuc IC695ALG628 analog input module should be configured for a current range between 4 and 20 mA when the channel is connected to a highway addressable remote sensor communication system.

The GE Fanuc IC695ALG628 Analog Input Module supports the use of extension box IC694TBB132 block, box IC694TBB032 block, extension spring IC694TBS132 block, and spring IC694TBS032 block terminal blocks. Extension terminals are installed to provide the extra shroud depth required for shielded wiring. Terminals are usually purchased separately. The analog input module has internal power supplies of 3.3 V (600 mA) and 5 V (450 mA). It has flash memory for future upgrades, error reporting, rate-of-change alarms, software that can be configured without setting jumpers, terminal insertion or removal detection, and complete auto-calibration. The module requires a non-condensing ambient humidity range of 5% to 95%.The GE Fanuc IC695ALG628 module is mounted in the general purpose backplane of the RX3i PacSystem PLC.

GE IC695ALG608 PACsystem RX3i Analog Input Module

DESCRIPTION: The IC695ALG608 is an analog input module that is part of the PACSystem RX3i platform, currently part of Emerson Automation and formerly manufactured by GE Intelligent Platforms (GE IP). The module features eight (8) non-isolated single-ended input channels or four (4) differential input channels supporting +/-10 VDC, 0-10 VDC, +/- 5VDC, 0-5 VDC, 1-5 VDC, and 0-20 mA, 4-20 mA, and +/- 20mA input signals. The module has a built-in ADC converter that converts data to floating-point data type integers with 24-bit resolution.

About the IC695ALG608

The IC695ALG608 is an analog input module for the PACsystem RX3i platform. When configured for single-ended wiring, the module is capable of providing up to eight (8) input channels and four (4) input channels for differential input wiring. It supports a variety of input signals such as +/-10 VDC, 0-10 VDC, +/- 5 VDC, 0-5 VDC, 1-5 VDC, and 0-20 mA, 4-20 mA, and +/- 20mA inputs, and has a built-in 24-bit analog-to-digital converter (ADC) that converts incoming analog data to integer or floating-point data.

The IC695ALG608 is mounted on the RX3i general-purpose backplane. It occupies a single slot in the rack and consumes 330 mA max @ 5.0V +5% / -2.5% and 600 mA max @ 3.3V +5% / -3%. This module is used with RX3i Central Processing Unit (CPU) firmware version 3.0 or higher and is configured using Machine Edition version 5.0 SP3 and higher. Available filter options for each input channel include 8Hz, 12Hz, 16Hz, 40Hz, 200Hz, and 500Hz, which are primarily used to normalize analog readings and eliminate fast fluctuations.

This IC695ALG608 is compatible with a variety of terminal blocks such as cassette (IC694TBB032), extended cassette (IC694TBB132), spring-loaded (IC694TBS032), or extended spring-loaded (IC694TBS132) terminal blocks. The module has no external jumpers for setting up module operation, but rather defines parameters via software-configurable parameters. In addition, the module features fully automatic calibration, on-board error checking, open-circuit detection, alarm setup, module fault reporting, channel alarm interrupts and faults, and other equally important features.

The GE Fanuc IC695ALG608 module is a non-isolated analog current or www.ge-drive.com voltage input module that supports single-ended and differential distribution line configurations. The module is from the RX3i PacSystem family. The current range of the module is between 0 and 20 mA, 4 and 20 mA, and -20 and +20 mA. The module has a voltage range of -10 to +10 volts DC, 0 to 10 volts DC, 0 to 5 volts DC, and 1 to 5 volts DC. It has four differential input channels or eight single-ended input channels with internal current ratings of 450 mA (3.3 V) and 600 mA (5 V).GE Fanuc IC695ALG608 analog input module can be used with the extended spring-loaded IC694TBS132 terminal block, extended cartridge IC694TBB132 terminal block, and spring-loaded IC694TBS032 terminal block. IC694TBS032. spring-loaded IC694TBS032. and box-type IC694TBB032 terminal blocks. The extended terminals provide the extra shroud depth needed for shielded wiring.

The GE Fanuc IC695ALG608 analog input module is installed in the RX3i PacSystem’s universal backplane. It features on-board error monitoring, module fault reporting, full auto-calibration, startup auto-calibration, negative and positive alarm rate of change, terminal block detection for removing or inserting terminals, and flash memory for upgrades. When testing the input channels of the GE Fanuc IC695ALG608 module, 3 things need to be confirmed: stable channels, accurate channels and active channels. Users need to use a high density terminal strip like the IC694TBB032 strip to test the module. Ensure that the strip is connected by confirming that the green LED is on and that the strip’s lever is in the upright position.

Triconex 3505E Analog Output Module

Product Description

Manufacturer : Triconex

Product Code : 3505E

Product Type : Analog Output Module

Type : TMR

Output current range : 4-20 mA output (+6% over range)

Number of output points : 8

Isolation point : None, common loop, DC coupling

Resolution : 12 bits

Output Accuracy: <0.25% of FSR (0-21.2 mA) (4-20 mA range) from 32° to 140° F (0° to 60° C)

Over-range protection: +42.5 VDC, continuous

Branch circuit fault switching time: < 10 ms, typical

Color: Pea Green

Weight: 4 kg

Dimensions: 9 kg

Shipping weight: 10 kg

Tricon Syste

The Tricon system is a powerful, scalable design that ensures continuous operation, complies with international safety standards such as IEC61508. and meets the requirements for emergency shutdown (ESD), fire and gas protection (F&G), burner protection (F&G) and fire safety.

It also meets the requirements of applications such as Emergency Shutdown (ESD), Fire and Gas Protection (F&G), Burner Management System (BMS), High Integrity Pressure Protection (HIPPS) and Turbomachinery Control (TMC).

The redundant high availability architecture provides a flexible, robust, reliable and powerful solution that is ideally suited for customers looking to achieve environmental and safety excellence.

Tricon systems are a must for customers who need to maximize the safety and performance of their assets.

If you are challenged to reduce investment and lifecycle costs, meet new security standards,

tough competitive pressures in the marketplace, and the well-being of your employees and the www.ge-drive.com environment, then a Tricon system is designed for you.

The Triconex family allows customers to optimize their choice of security system for their specific requirements.

Our strengths are the Tricon Racks, Tricon Power Modules, Main Processor Modules, Input Modules, Output Modules, and the Tricon Communication Module TCM.

A Triconex system typically consists of the following typical modules:

Main Processor Module (Triple)

Communication Module

Input and output modules: can be analog and/or digital, and can operate independently or in hot standby (standby)

Power supply module (redundant)

Backplane (chassis) that can accommodate previous modules

System cabinets: one or more chassis can be compressed into a single cabinet

Grouping cabinets to accommodate and standardize interface connections between field instruments and Triconex system cabinets

Human Machine Interface (HMI) for monitoring events

Engineering Workstation (EWS) for programming monitoring, troubleshooting and updating

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TRICONEX TRICON 3501E Digital Input Module Isolated Non-Common 115VAC/DC TMR 32 Points

TRICONEX TRICON 3531E Digital Input Module Non-Common Simple 115VAC/DC 32 Points

TRICONEX TRICON 3502E Digital Input Module 8-Group Universal Self-Test 48VAC/DC TMR 32 Points

TRICONEX TRICON 3532E Digital Input Module Non-Public Simple 48VAC/DC 32 Points

TRICONEX TRICON 3503E Digital Input Module 8-Group Common Self-Test 24VAC/DC TMR 32 Points

TRICONEX TRICON 3533E Digital Input Module Non-Common Simple 24VAC/DC 32 points

TRICONEX TRICON 3504E Digital Input Module High Density DC Coupling 24VAC/48VDC TMR 64 Points

Triconex TMR Digital Input Module

TMR Digital Input Modules

Each TMR Digital Input (DI) Module has three independent input channels that independently process all data entered into the module.

A microprocessor on each channel scans each input point, compiles the data, and transmits it to the main processor as required.

The input data is then voted on the main processor before being processed to ensure the highest integrity.

All critical signal paths are 100% triple processed to ensure safety and maximum availability.

Guaranteed safety and maximum availability. Each channel regulates signals independently and provides optical isolation between the field and the Tricon.

All TMR digital input modules provide complete and continuous diagnostics for each channel.

Any diagnostic failure on any channel activates the Module Failure Indicator, which in turn activates the chassis alarm signal.

The Module Failure Indicator points to a channel failure, not a module failure. www.ge-drive.com Modules are guaranteed to operate normally in the event of a single failure and to continue to operate normally in the event of multiple failures of certain types.

Models 3502E, 3503E, and 3505E can perform a self-test to detect a “stuck-open” condition in which the circuitry is unable to determine whether a point has entered a shutdown state.

The ability to detect the point of shutdown is an important feature since most security systems have a power failure trip feature.

In order to detect the presence of a “stuck-open” input, the switch within the input circuit needs to be turned off in order for the opto-isolated circuit to read a zero input (“off”).

The I/O communications processor will freeze the last reading while the test is running.

All TMR digital input modules support the hot standby feature and require a separate external termination panel (ETP) with cable connections to the Tricon backplane.

Each module is mechanically keyed to prevent improper installation in the configured chassis.

Triconex 3504E High Density Digital Input Module

64-Point Digital Input Modules

Each 64-point digital input (DI) module has three isolated channels that independently process all data from the input module.

A microprocessor on each channel scans each input point, compiles the data, and transmits it to the main processor as required.

The input data is then voted on the main processor before being processed to ensure the highest integrity.

All digital input modules provide complete, continuous diagnostics for each channel.

A fault on any channel activates a fault indicator, which in turn activates a chassis alarm.

The TMR module is guaranteed to operate normally in the event of a single fault, and in some cases.

The TMR modules are guaranteed to operate in the event of a single www.ge-drive.com fault, and in some cases, in the event of multiple faults.

All digital input modules support hot standby modules, which require a separate external termination panel (ETP) with cable connections to the Tricon backplane.

Each module is mechanically keyed to prevent improper installation in the chassis.

The Model 3504E High Density Digital Input Module provides continuous verification of Tricon’s ability to detect transitions to the opposite state.

On this TMR module, all critical signal paths are 100% tripled to ensure safety and maximum availability.

Each channel regulates the signal independently between the field and Tricon.

The Single Digital Input Module (Model 3564) is optimized for safety-critical applications where low cost is more important than maximum availability.

On a single module, only the portion of the signal path required to ensure safe operation is triplexed.

Triplexed. Special self-test circuits detect all “stuck-on” and “stuck-off” fault conditions within half a second.

If an individual module detects an input fault, it will report that point as OFF, which could cause a fault when switching to a hot standby module.

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