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DEIF SGC 410 Single Genset Controller

OVERVIEW

The SGC 410 controller is a modern island genset controller with a user-friendly HMI and full graphic LCD.

It includes voltage and frequency measurement of the genset as well as electrical load measurement (True RMS).

Configurable analog and digital inputs/outputs are provided for various functions.

Remote communication is available via RS-485 Modbus and CAN ports.

The genset can be started and stopped remotely using the remote start/stop function.

Deep sleep mode is a useful feature that extends battery life by suspending the normal function of the controller when the genset is shut down.

Monitor engine safety, electrical load, on-site standby battery voltage, and shelter temperature (to reduce fuel consumption).

Configure parameters from a PC using the DEIF Smart Connect utility software. Connects to the PC via the controller’s USB Type B port.


Environmental

– Vibration: 2 G in X, Y, and Z axes per IEC 60068-2-6

– Shock: 15 g, 11 ms per IEC 60068-2-27

– Humidity: 0 to 95 % RH per IEC 60068-2-78

– Enclosure rating Front gasketed IP65 per IEC 60529

– EMI/EMC: IEC 61000-6-2. 4

Approvals

– CE marking:

Complies with the EU Low Voltage Directive: EN 61010-1 Safety requirements for electrical equipment for measurement, control and laboratory use – Part 1: General requirements.

Compliance with EU EMC Directive EN 61000-6-2. 4

DEIF SGC 110 Single Genset Controller

The SGC 110 is a modern genset controller with a user-friendly HMI and full graphic LCD.

The controller comes with powerful software. A wide range of inputs and outputs support a variety of industry-standard functions in diesel/gasoline genset applications.

The DEIF Smart Connect software provides the flexibility to configure each individual input and output for a specific function or application.

All parameters can also be configured on the controller.

Key features

– Genset controller with configurable inputs:

Five digital inputs

Three analog inputs

– Six digital outputs

– Effective monitoring of genset performance

– Precise monitoring of genset output voltage and frequency

– Remote start/stop

– Deep sleep mode for extended battery life

– Preheat output to assist engine start

– Connects to PC via USB port for customized configuration

– Full graphic backlit display with power saving features

– Records the latest 30 events

DEIF MTR-3 Multi-sensor


The accuracy class is 0.5 for analog data and 0.3 for Modbus data.

With configurable outputs for more than 50 parameters and a universal power supply (19-300V DC, 40-276V AC).

DEIF’s sensors can be installed and reconfigured in the future to meet the needs of virtually any application.

DEIF’s MTR-3 is a cost-effective, compact and powerful solution for sensor applications.

It has been developed for measuring single-phase and three-phase network topologies and provides measurement data via RS485 Modbus communication.

Up to four analog outputs can be configured quickly and easily by simply connecting a USB 2.0 interface. Up to four analog outputs.

MTR-3 Features

Suitable for all single-phase and three-phase network topologies

Up to 1000 VL-L AC input

Accuracy class 0.5 or 0.3

Up to 4 analog outputs

Fast response time, minimum ≤ 50 ms

Measurement of more than 50 parameters

RS485 serial Modbus communication

Fully configurable via USB, no auxiliary power required

19 to 300 V DC/40 to 276 V AC universal power supply

Mitsubishi Net IR-S Infrared Flame Detector

Features

Highly sensitive design

High sensitivity to flame intensity enables stable detection of burner flames. Flames are detected through unlit areas.

Extended detection range

With 100 times the dynamic range of conventional products, this sensor enables stable detection of flames from slow burning to high intensity. No sensitivity adjustment of the sensor is required in the field.

Maintenance-free

A ball lens is used to eliminate the need to clean the sensor window during normal boiler operation.

Long Life Sensor

No periodic replacement is required due to the use of long-life infrared semiconductor sensor elements.

Reduced number of panels

The detector unit is compact and utilizes a space-saving design that allows one panel to contain 40 corners.

Reuse of existing boiler facilities

The boiler itself does not need to be worked on when the flame detector is replaced.

Reuse of cables    

There is no need to replace the cable between the sensor and the panel.

(When UV type detection is used in an existing system)

Mitsubishi IR-S Infrared Flame Detector

Features

High sensitivity design

High sensitivity to flame intensity enables stable detection of burner flames. Flame is detected through unlit areas.

Extended detection range

With 100 times the dynamic range of conventional products, this sensor enables stable detection of flames from slow burning to high intensity. No sensitivity adjustment of the sensor is required in the field.

Easy Maintenance

A spherical lens is used to eliminate the need to clean the sensor window during normal boiler operation.

Long Life Sensor

No periodic replacement is required due to the use of long-life infrared semiconductor sensor elements.

Fewer panels

The detector unit is compact and features a space-saving design that allows one panel to cover up to 40 corners.

System Configuration

Flame Detector Panel

Flame detector main unit

Mitsubishi RJ71C24-R4 Serial Communication Module

Product Details

Mitsubishi PLC RJ71C24-R4 is a Mitsubishi iQ-R series network module (serial communication module) with 2-channel RS-422/485 interface.

RJ71C24-R4 Network Module (Serial Communication Module)

Product Details

Communication mode

Line: full-duplex communication/half-duplex communication

mc protocol communication: half-duplex communication

Communication protocol communication: full-duplex communication/half-duplex communication

Non-sequential protocol communication: Full-duplex communication/half-duplex communication

Bidirectional protocol communication: full-duplex communication/half-duplex communication

MC protocol communication: 1 request is processed during END processing of the CPU module of the C24 installation station.

Communication protocol communication:While sending and receiving. When a request is executed by a dedicated instruction (CPRTCL instruction).

Non-sequential/bidirectional protocol communication: Each request for transmission is executed at the time of transmission, and reception can be performed at any time.

Mark VI Series IS200VTURH1B Main Turbine Protection Plate

The IS200VTURH1B is GE’s main turbine protection plate for the Mark VI system.

The Mark VI is one of several gas/steam turbine management systems released by GE as part of the “Speedtronic” family.

The MKVI is built on a TMR (Triple Modular Redundancy) architecture and features a connected HMI (Human Machine Interface) that allows the user to access turbine data from a central location.

The IS200VTURH1B provides a variety of functions including monitoring the sensing shaft current/voltage (overshoot alarm), the

measuring turbine speed to generate a primary overspeed trip, and controlling the three primary overspeed trip relays belonging to the TRPx terminal board.

The board also monitors eight Geiger-Mueller flame detectors on the gas turbine.

The IS200VTURH1B has an attached single-slot panel with three LED indicators and a cable connector (J5).

The panel is connected to the PCB by three screw connections. the PCB consists of more than 60 integrated circuits, 13 transistors, hundreds of capacitors and resistors, as well as diodes and inductive coils.

The board has two backplanes, a multi-position female plug for connecting daughter boards, and several connectors made of conductive dots and traces.

Mark VIe Series IS215UCCCH4A VME Controller Boards


The IS200SAMBH1A has an attached metal frame that surrounds the PCB on all four sides.

The frame has a flat-top flange along each long side of the board that has been drilled with mounting slots or holes, as well as other flanges.

Various codes, including FA/00. are written on the surface of the board.

Standoffs and screw mounts attach the board assembly to the frame described earlier.

The board measures 9.1 inches x 5.625 inches. Air convection is used to cool the room.

The IS200SAMBH1A is a circuit board assembly manufactured by GE for the Mark VI and Mark VIe systems.

Both systems are GE-designed platforms that serve as management tools for their heavy-duty turbines, with the advantage of GE-designed integrated software and hardware.

This IS200SAMBH1A is used as an acoustic monitoring terminal board. It is a dual terminal board that provides 18 inputs for the acoustic monitoring system.

The board has 36 terminals dedicated to 2-wire inputs. It also has 36 terminals for connecting external meters to the 2-wire buffered outputs.

This will provide 18 outputs. The outputs are used to monitor AC voltage signals.

The IS200SAMBH1A has an EMI (Electromagnetic Interference) filter to protect against very high frequency noise from external sources.

The IS200SAMBH1A is surrounded by a metal frame on all four edges. The frame has a flat top flange along both long sides of the plate.

Mark VIe Series IS215UCCCH4A VME Controller Boards

Description

The IS215UCCCH4A is a VME controller board manufactured by General Electric as part of the Mark VIe family for gas turbine control systems.

It is a modular assembly consisting of the IS200 EPMC daughter board, IS215UCCC H4. 128 MB of flash memory, and 256 MB of DRAM.

Sometimes referred to as the 3U Compact PCI, there are six Ethernet-style ports on the panel. The labeling indicates the intended function of each port.

In addition, the panel has a number of LEDs. the controller detects certain system errors during startup, download, and normal operation.

Diagnostic alerts can be displayed and reset from the ToolboxST application and logged as history on WorkstationST.

Frequently Asked Questions

What is the GE Mark VIe IS215UCCCH4A?

The IS215UCCCH4A is a VME controller developed under the Mark VIe system.

What is the purpose of the interference suppressors on the VME controller?

These suppressors block the output of external power sources such as radios, cell phones and other similar devices.

What is a VME connector?

The Versa Module Eurocard bus is a computer bus standard used in embedded systems.

Mark VI Series IS215UCVEM06A Printed Circuit Boards

Hardware Tips and Specifications

The IS215UCVEM06A is an Ethernet connected board. The IS215UCVEM06A then uses multiple ports on the front of the device.

These ports vary in shape and size. These ports are used to connect Ethernet cables and COM ports.

The IS215UCVEM06A uses various components such as capacitors, diodes, resistors, SD cards, batteries, and integrated circuits.

Each component works separately to help the board function as a whole. The condenser saves a variety of energy for the board.

Diodes direct energy in one direction instead of another. Resistors are a way for the board to get rid of energy that the board is not using.

SD cards are used as information and data storage. Integrated circuits are used to control the board. They hold all the data that tells the board how to perform.

The IS215UCVEM06A slides into place and has male terminals on the back for connecting this board to your system. There are other connection locations on the circuit board.

The IS215UCVEM06A has a large cooling unit that takes up half of the circuit board.

As mentioned earlier, this IS215UCVEM06A product of the larger Mark VI turbine control system family is a product family that rarely comes with a lot of original instruction manual material available online;.

With this concerted lack of identification, the IS215UCVEM06A Functional Product Number itself can be viewed as a fairly robust primary source of IS215UCVEM06A Board hardware information.

This is because it actually encodes a series of functionally named segments of uniquely relevant IS215UCVEM06A Board details.

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