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GE DS200ADPBG1ABB Genius Adapter Board

Product Description.

This DS200ADPBG1ABB Genius Adapter Board is a circuit board product from General Electric.

In addition to its functional description as a Genius Adapter Board and a Mark V series turbine control system originally attributed to General Electric, there is some mystery surrounding this product.

There is a bit of mystery surrounding this product. While it could be loosely defined as a General Electric product.

Although loosely defined as a General Electric product, it is likely that this Mark V series product was originally manufactured by a subsidiary of General Electric, such as General Electric Transmission Systems, Inc.

such as GE Drive Systems or GE Industrial Control Systems.

Before deciding to purchase a DS200ADPBG1ABB Mark V Genius Adapter Board.

Consider that this product has used all three of its possible major product revisions, which may have significantly changed its originally labelled performance specifications and dimensions.

Hardware tips and specifications

As with any Mark V Series product, the DS200ADPBG1ABB Genius Adapter Board uses a unique set of advanced hardware components and component specifications

to achieve its intended functionality. First, the Genius I/O Adapter Board DS200ADPBG1ABB features a configuration board consisting of eight switches.

The Genius I/O Adapter Board DS200ADPBG1ABB is also equipped with a 40-pin connector and a 26-pin connector.

The third and final intuitively recognisable hardware element is critical to the DS200ADPBG1ABB Genius Adapter Board.

That is its array of manually removable hardware jumpers, which are included in its assembly for the highest customisation purposes.

The information stored on this personalised DS200ADPBG1ABB product page is the extent of the information that can be retrieved when checking the available DS200ADPBG1ABB manual data.

Nevertheless, a great deal of information can still be retrieved from the DS200ADPBG1ABB product number itself (beginning with the DS200 series label).

The series label has a double naming responsibility for this Mark V series product, indicating that it is a domestically produced General Electric product with a normal type of assembly.

GE IC695CPE305 PACSystem RX3i Controller Module

About the IC695CPE305

The IC695CPE305 programmable automation controller (PAC) is part of the PACSystems RX3i automation platform.

The controller was manufactured by then GE Fanuc Automation (now Emerson Automation).

The IC695CPE305 has advanced features that are superior to most of today’s PACs.

The controller has the capability of Ethernet communication via one (1) Ethernet communication port.

The port supports 10/100 Mbps communication rates and can be used to communicate with programming workstations, Human Machine Interfaces (HMIs), Supervisory Control and Data Acquisition (SCADA) systems.

third-party hardware and software products, and controllers on the same platform for messaging and inter-controller data exchange.

In addition, the Ethernet port supports OPC UA, allowing connection to third-party devices via the OPC protocol.

The IC695CPE305 is not limited to Ethernet communication as the controller also integrates two (2) serial ports that support RS232 and RS485 communication standards.

It is also equipped with one (1) USB 2.0 master port that allows downloading and uploading of user programmes from a smartphone’s thumb drive.

The IC695CPE305 5MB RAM and 5MB non-volatile user memory has a processor speed of 1.1 GHz and a typical scan rate of 0.72 milliseconds per 1.000 Boolean instructions.

It supports a variety of network protocols such as Ethernet (PROFINET, Ethernet Global Data, Channel, Modbus TCP server and client),

Genius, PROFIBUS DP, and DeviceNet.The IC695CPE305 allows control of up to eight (8) racks, including CPU racks.

This controller supports the installation of additional communication cards that support Serial, Genius, CMX (Reflective Memory), and Ethernet.

This single-slot controller supports up to eight local racks.

GE IC670MDL644 Field Control Logic Fast Input Module

The IC670MDL644 24-volt DC positive/negative input module has a parallel-to-serial converter.

This converts the data in the data buffer to a serial format that can be used with the Bus Interface Module.

When the Bus Interface Module is properly connected, the module’s power LED indicates the power status.

The Bus Interface Module starts reading the processed and converted input data.

The Bus Interface Module has both positive and negative inputs. The positive input is used in order to receive the current from the input device.

The negative input is used to supply current to the input device.

Efficient field wiring of the IC670MDL644 input module can be performed using a terminal block with box terminals or isolated terminals.

The internal circuitry of the module is equipped with a network of resistors and capacitors to provide input thresholding and filtering.

The IC670MDL644 24-volt DC positive/negative input module is a field control logic fast input module manufactured by GE Fanuc.

It provides a set of discrete inputs that can be driven by both positive and negative logic.

The IC670MDL644 24-volt DC positive/negative input module has 16 inputs,

separate LEDs for logic-side inputs and a “PWR” indication LED for monitoring power status.

The bus interface unit provides the power needed to drive the 5-volt logic, and the input devices require power from an external 24-volt DC power supply.

It also provides isolation ratings such as 250 volt AC continuous user input to logic isolation and 1500 volt AC user input to frame ground isolation for 1 minute.

Motorola MVME162P2 VME Embedded Controller with 2 IP Slots

Dual IndustryPack logic interface for embedded monitoring and control applications

The MVME162P2 embedded controller provides a powerful and functional processor which can be customer-configured for specific applications.

The MVME162P2 extends its range of solutions by boosting the performance level and increasing the number of options. This flexibility allows a user to configure cost-ffective solutions ranging from embedded controllers to single-board computers. With the compute power of the MC68040 and the flexibility of the IndustryPack mezzanine interface, the MVME162P2 combines the mechanical ruggedness of VME with the cost effectiveness of PC-type products.

The inclusion of the new “Petra” application-specific integrated circuit (ASIC), which replaces functions formerly implemented in the IP2 chip and MC2 chip, improves the performance of the memory subsystem. Memory configuration switches enable the customer to tailor memory size for applications requiring smaller memory configurations.

IndustryPack Interface

A key feature of the MVME162P2 is the IndustryPack interface. IndustryPack modules provide a wide variety of connectivity to “real-world” I/O. Expansion is accomplished by 

means of a mezzanine board mounted to the MVME162P2. 

Up to two single-wide IndustryPack modules can be installed on the MVME162P2 and still occupy only one VME slot.

♦ 25 MHz MC68040 with floating point co-processor or 25 MHz MC68LC040

♦ High-performance DMA, supports VMEbus D64 and local bus memory burst cycles

♦ 16 or 32MB of configurable SDRAM with ECC option 

♦ 128KB of SRAM with battery backup

♦ 1MB of Flash memory

♦ 8K x 8 NVRAM and time-of-day clock with battery backup 

♦ Four serial communication ports, configured as EIA-232-D DTE 

♦ Two 16-bit or one 32-bit IndustryPack® ports with one DMA channel per port

♦ Six 32-bit timers, one watchdog timer 

♦ Optional SCSI and Ethernet interfaces 

♦ Two 32-pin JEDEC DIP sockets for EPROM

♦ Remote Reset/Abort/Status control functions 

♦ On-board debugger and diagnostic firmware

Motorola VMIVME-7452 Single Slot VMEbus Floppy/Hard Drive Module

INTRODUCTION — 

The VMIVME-7452 is a passive board that holds one floppy and one hard drive with an optional Flash drive available.

The board is a 6U VMEbus form factor, deriving its power from the standard VMEbus P1 and P2.

The VMIVME-7452 has been designed to interface to VMIC’s line of VMEbus-compatible PC/AT SBC boards. 

These SBC boards incorporate the floppy and IDE controllers on-board. Refer to the compatible SBC list in this specification.

SPECIFICATIONS

Physical Dimensions: Standard VME double height Eurocard (one slot)

160 x 233.25 x 20.32 mm

User Connectors: 34-pin floppy drive 40-pin IDE

Ambient Temperature:

All Disks: 5 to 50 ˚C, operating

Storage: -25 to 60 ˚C

Rate: 20 ˚C per hr maximum

Humidity: 20 to 80 percent, noncondensing, maximum 

wet bulb 29 ˚C

Hard Drive Access Time:

Average Access Time: 14 ms

Average Latency: 6.67 ms

Power Requirements:

+5 V, 2.5 A maximum (spinup)

<1.0 A typical

Flash Drive System Performance:

Data Transfer Rate to Flash: 4.0 Mbyte/s burst

Data Transfer Rate from Flash: 6.0 Mbyte/s burst

Sleep to Write: 2.5 ms maximum

Sleep to Read: 2.0 ms maximum

Reset to Ready: 50 ms, typical, 400 ms, maximum

Flash Drive System Performance:

DC Input Voltage (Commercial): 5 V ±10%, 

3.3 V ±5%

Power Consumption:

Sleep: 200 µA at 3.3 V, 500 µA at 5.0 V

Read: 32 to 80 mA at 3.3 V, 46 to 120 mA at 5.0 V

Write: 32 to 80 mA at 3.3 V, 46 to 120 mA at 5.0 V

Compatible SBC Boards:

VMIVME-7591 VMIVME-7698

VMIVME-7592 VMIVME-7740

VMIVME-7695 VMIVME-7750

VMIVME-7697 VMIVME-7751

VMIVME-7697A VMIVME-7765

Parker COMPAX servo digital servo drives/controllers

Features

Performance

• Eight power ranges available, providing up to 35kW of continuous drive power

• Direct online single or 3-phase power input (120VAC to 460VAC)*

• Continuous current levels from 2.5 Amps to 50 Amps (RMS); peak current from 5 Amps to 100 Amps (RMS)

• Digital control of position, velocity and torque (current) loops

• High-speed DSP

– 100 microsecond servo update rate

– 1 millisecond command processing rate

COMPAX Family Features

• Standalone servo controller and drive in one integrated package

• Control features such as registration, motion profiles, Scurve velocity profiles,conditional statements, arithmetic functions and resolver feedback all standard

• Specialized functions such as following, cam profiling, electronic gearing or cut-on-the-fly available as options for all COMPAX products

• Available in standalone or modular configuration for singleor multi-axis applications

• Serial, binary and fieldbus communication

• PLC-handshaking via onboard I/O

• Comprehensive program monitoring, status and diagnostic features

• Error log—records and stores the four most recent errors

• Easy parameter-based drive setup and motor configuration via the included Servo Manager™ software package

• Guided motor setup and tuning via software tools

• Non-volatile memory for reliable storage of parameters and programs

• Simple, BASIC-style programming language

• Floating point, integer and binary variables with high-level math functionality

• Position or velocity control via external encoder pulse, step/direction† or ±10VDC analog signal†

• Fully CE compliant (EMC & LVD)

Protection

• Short-circuit protection—phase-to-phase and phase-toground

• Over-voltage protection for both drive and controller sections

• Under-voltage (brownout) protection for both drive and controller sections

• Drive over-temperature protection

• Motor over-temperature protection

• Current foldback protection

• Regeneration protection

Physical

• Compatible with a wide selection of brushless servo motors, such as the Compumotor SM, BE, NeoMetric, J and M Series motors

• Supports linear servo motors, such as the Daedal LXR and Compumotor SL motor series

• 3-digit LED display* for monitoring diagnostic status and/or errors related to the following:

– Controller section

– Amplifier drive section

– Fieldbus

• Bus power and 24VDC control power status light

• Built-in regeneration (power dissipation) circuitry on all units; optional external modules available for additional power dissipation capability

Parker COMPAX 1000SL 1kVA Servo Controller

New Series Member for COMPAX Digital Servo Controllers

The existing COMPAX series (capacity range 2.5 kVA to 35 kVA) is now joined by a unit with a capacity of 1 kVA – the COMPAX 1000SL.

Independent electronically controlled drives create flexibility ……

In the classic solution of multiple operations from a central axis via mechanical components, the need for more flexible and cost-effective machines is becoming increasingly difficult to meet. Electronic servo controls provide a decentralised solution to this problem and replace rigid mechanical components such as gears, shafts and cams with separate servo controls

Electronic control drives increase functional capability.

COMPAX 1000SL Features

Power supply 230V AC single phase, control voltage 24V DC

Synchronous motor speed up to 9000 rpm

Motor brake control

External ballast resistor

8 digital inputs/outputs each

Analogue override inputs

Rotary Transformer/High Resolution Sensor

RS 232 interface

Step/direction inputs

Encoder interface

HEDA real-time bus

Fieldbus interface (optional)

RS 485 interface

Profibus

CAN bus

CANopen (English: CANopen)

Interbus-S type

CS31 Series

Software variant:

Standard

Rotary table control

Electronic drive

Cam control

Extended low-power range

Woodward SPM-D2-10 Synchroniser for 2/3-Phase AC Generator Sets

New Features 

USB connectivity to PC 

ToolKit configuration support 

Password protection to all variants 

Same look & feel as SPM-D 

Drop-In replacement

DESCRIPTION

Woodward understands the time-intensive nature of Power Generation projects. Ensuring the longevity of components is one way we can make our customers successful. Woodward has supplied and supported the well-established SPM-D line of synchronizers for 20+ years. With the state of the art Drop-In replacement successor, SPM-D2 the life of this synchronizer line is now extended. 

All of the SPM-D2 synchronizers are password protected and are configurable either through HMI as before or through ToolKit configuration tool with USB connectivity.   

The SPM-D2-10 series are microprocessor-based synchronizers designed for use on two or three phase AC generators equipped with Woodward or other compatible speed controls and automatic voltage regulators. The SPM-D2-10 synchronizers provide automatic frequency, phase and voltage matching using either analog- or discrete output bias signals. These synchronizers are applied to a wide range of prime movers and generators, as its control signals may be set to fit several types of gensets – from fast reacting diesel engines to soft reacting gas turbines. 

The SPM-D2-10 synchronizers are available in 3 base models: 

 SPM-D2-10 … : provides 1-phase / 2-wire voltage measurement with options for analog and/or discrete biasing signals and wide range power supply  

 SPM-D2-10 …/YB: provides 3-phase / 4-wire voltage measurement with discrete biasing signals and option for wide range power supply  

 SPM-D2-10 …/PSY5: provides 1-phase / 2-wire voltage measurement with discrete biasing signals, option for wide range power supply and 2 sets of switchable parameter set. 

FEATURES  

 Phase match or slip frequency synchronization with voltage matching 

 Two-Phase or three-phase true RMS voltage sensing of generator and bus with Class I accuracy 

 Selectable operating modes like SPM-A (Run, Check, Permissive and Off) 

 Synch-Check and synchronization time monitoring 

 Dead bus closing of CB on demand 

 2 setting blocks, each containing 7 configurable parameters (in PSY5 variants) selectable through DI: Frequency/Voltage control dead-band, Frequency/Voltage control time pulse, Frequency/Voltage control gain, Circuit breaker time compensation 

 Control outputs: Discrete raise/lower for speed and voltage in all variants, | X and XN variants: 

also configurable analog signals (Voltage, Current and PWM) 

 Voltage and frequency control in isolated operation 

 Two line bright liquid crystal display for operation, alarm, measuring values visualization and parametrization 

 Front face with synchronoscope and indication of breaker state/control activity 

 Multi-level password protection of parameters 

 Woodward ToolKit™ software for configuration via USB 

 Two built-in languages: English, German

A-B 1771-A4B General Purpose I/O Chassis 16-slot chassis

Allen-Bradley 1771-A4B is a general purpose I/O enclosure.

The Allen-Bradley 1771-A4B is a general purpose I/O chassis.

The hardware is a sixteen (16) slot chassis designed to provide backplane connections and to accommodate 1771 PLC modules.

It provides a maximum backplane current of 24 A and is designed for panel mounting. It has a total weight of 7.3 kg or 16 lbs.

About the 1771-A4B

The Allen-Bradley 1771-A4B is a general purpose I/O chassis that is part of the 1771 Programmable Logic Controller (PLC) product family.

The chassis has sixteen (16) I/O slots that contain electronic circuitry, specifically the backplane, which distributes power to the connected modules.

It is also equipped with hinges for field wiring arms.

The 1771-A4B has an operating temperature range of 32-140 degrees Fahrenheit or 0-60 degrees Celsius.

Hardware storage temperature is -40 to 185 degrees Fahrenheit or -40 to 85 degrees Celsius.

Relative humidity is 5-95% non-condensing. When installing this general purpose I/O chassis, panel vibration and shock should be kept within 2g and 15g at 10-500 Hz, respectively.

The 1771-A4B receives power from the 1771 processor and has an internal power supply that provides 2-4 amps,

The built-in power supply provides 2-4 amp, 3-8 amp rated output power modules, and an external power supply with 6.5-16 amp output current.

In general, do not install external power supplies and power supply modules on the 1771-A4B. Such power connections are incompatible and will result in a substandard hardware configuration.

The 1771-A4B chassis has 16 I/O slots. It measures 12.4 x 24 x 7.6 inches and weighs 14.8 pounds.

When installed in a 1771 PLC-5 system, it utilizes the backplane mounting method with adequate spacing and an open enclosure.

The backplane of the enclosure has a DC voltage of 5 volts and a current of 8 amps.

FOXBORO E69F Field Mount Current Pneumatic Signal Converter

The E69F Field Mount Current Pneumatic Signal Converter accepts a standard DC input signal and converts it to a proportional pneumatic output signal for use with other pneumatic instruments or control valves.

and converts it to a proportional pneumatic output signal for use with other pneumatic instruments or control valves.

As indicated by the “CE” marking on the product, it complies with applicable European Union directives.

Compact and easy to install

The small size and compact design of the E69F converter allows for easy connection to electrical and pneumatic interfaces.

It can be easily mounted on a surface, on a valve yoke or on a vertical pipe with a nominal DN 50 or 2.

Minimal influence on ambient atmospheric conditions

The design of the corona motor in the E69F converter allows a large clearance between the coil and the housing.

Normal atmospheric variations may cause corrosion and dust particles, but will not impede the operation of the mechanism as would be the case with voice coil type instruments.

Wide range of applications

Selectable input and output signals, different input ranges, and direct or reverse action make this converter easily adaptable to a wide variety of applications.

The choice of output signals makes the converter particularly suitable for valve applications.

PERFORMANCE SPECIFICATIONS Performance Specifications

Accuracy

±1.0% for Output Signal Codes 2 and 3 ranges

Output signal codes 7 and 8 ±2% of range

Linearity ±0.5% of range, typical

(Maximum deviation limited by accuracy specifications Maximum deviation limited by accuracy specifications)

Repeatability ±0.25% of range, typical

(maximum deviation limited by accuracy specifications maximum deviation limited by accuracy specifications)

Hysteresis ±0.5% of range, typical

(Maximum deviation is limited by accuracy specifications Maximum deviation is limited by accuracy specifications)

Deadband 0.1 % of range

Air Supply Pressure Effect

Zero shift due to changes in air supply pressure is less than 0.04% per kPa (0.25% per psi).

Ambient Temperature Effects

Over an operating temperature range of 0 to 60°C (32 to 140°F), a change in ambient temperature of 28°C (50°F) will result in a zero and range shift of ±1.0% or less.

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