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GE Mark VIe Wind series IS215WEMAH1A printed circuit board

General Shipping and Revision Information
This IS215WEMAH1A printed circuit board is one that has been shrouded in relative mystery, given its allegiance to the less-documented Mark VIe Wind Turbine Control System Series. The Mark VIe Wind Turbine Series, while relatively new compared to many similar General Electric legacy series printed circuit board available here at AX Control; is quite the specialized series. The Mark VIe Wind Turbine Series was manufactured by General Electric alternative energy shell company GE Energy, which may be to blame for the lack of original, factory-printed instructional materials for the IS215WEMAH1A PCB on the internet.

Unfortunately, this IS215WEMAH1A is known too for its generally-limited industrial automation market availability, so a visual inspection of the hardware components affixed to the base board of the IS215WEMAH1A is impossible at this time. With that being said, a thorough, guided IS215WEMAH1A part number breakdown can still yield quite a bit of valuable information to the prospective PCB buyer.

IS215WETAH1B
IS200WETCH1A
IS210AEBIH3B
IS210AEPSG1A
IS215AEPCH1E
IS200WETBH1B

Multilin 8 Series GE

Communications
The 8 Series provides advanced communications technologies for remote data and engineering access, making it easy and flexible to use and integrate into new and existing infrastructures. Direct support for copper/fiber optic Ethernet provides high-bandwidth communications allowing for low-latency controls and high-speed file transfers of relay fault and event record information. The 8 Series also supports two independent IP addresses providing high flexibility for the most challenging of communication networks.

Providing several Ethernet and serial port options and supporting the widest range of industry standard protocols, the 8 Series enables easy, direct integration into DCS and SCADA systems. The 8 Series supports the following protocols:

IEC 61850 (8 Clients, 4 Logical Devices, Tx & Rx expansion, Analog GOOSE), IEC 62439 / PRP
DNP 3.0 serial, DNP 3.0 TCP/IP, IEC 60870-5-103, IEC 60870-5-104
Modbus RTU, Modbus TCP/IP
The 8 Series has two interfaces as USB front port and Wi-Fi for ease of access to the relay.

Simplify set-up and configuration
Simplify diagnostic retrieval
Eliminate personnel in front of switchgear
WPA-2 security

Multilin 3 series for feeders, motors and transformers

Key Features
  • 4 X20 character LCD display
  • Control panel with up to 12 LED indicator
  • Front USB and rear serial, Ethernet and Fiber ports
  • Multiple protocols – IEC 61850, ModBus™ RTU, ModBus™ TCP/IP, DNP 3.0, IEC60870-5-104, IEC60870-5-103

Advanced Communications

 
Easy integration into new or existing infrastructure

With several Ethernet and serial port options, and a variety of communication protocols, the 3 Series provides advanced and flexible communication selections for new and existing applications.

The 3 Series supports various industry standard protocols such as, IEC 61850, Modbus RTU, Modbus TCP/IP, DNP3.0, IEC 60870-5-103 and IEC 60870-5-104 providing simplified and easy integration into new and existing applications.

Drawout Construction 

The 3 Series offers a complete drawout feature eliminating the need for rewiring after testing has been concluded. With our advanced draw-out construction, the 3 series can be drawn-out without having to disconnect any communication cables. e.g. fiber, copper, RJ45, etc and helps retain communication status even after a relay has been withdrawn from its case.

Multilin UR Family

Key Features

  • Synchrophasor measurement devices (PMU) that meet IEEE c37.118 (2014) across all protection applications
  • Synchrophasor capabilities on generator, transformer, line distance, line differential and feeder applications
  • Multiple configurable PMU elements (up to 6 on selected products)
  • Extended Oscillography – captures extended events at 64 samples per cycle
  • Event Recorder – 1024 time tagged events, with 0.5ms scan of digital inputs
  • Data Logger – up to 16 channels with user selectable sampling rate
  • Fault locator and user-programmable fault reports
  • Breaker condition monitoring including breaker arcing current (I2t)
  • Metering – current, voltage, power, power factor, frequency
  • Broken Rotor Bar Detection and motor temperature via RTD inputs

Monitoring & Diagnostics

The UR includes high accuracy metering and recording for all AC signals. Voltage, current, and power metering are built into the relay as a standard feature. Current and voltage parameters are available as total RMS magnitude, and as fundamental frequency magnitude and angle.

Multilin UR Family Proven, State-of-the-Art Protection & Control Systems

Key Features
Synchrophasor measurement devices (PMU) that meet IEEE c37.118 (2014) across all protection applications
Synchrophasor capabilities on generator, transformer, line distance, line differential and feeder applications
Multiple configurable PMU elements (up to 6 on selected products)
Extended Oscillography – captures extended events at 64 samples per cycle
Event Recorder – 1024 time tagged events, with 0.5ms scan of digital inputs
Data Logger – up to 16 channels with user selectable sampling rate
Fault locator and user-programmable fault reports
Breaker condition monitoring including breaker arcing current (I2t)
Metering – current, voltage, power, power factor, frequency
Broken Rotor Bar Detection and motor temperature via RTD inputs
Monitoring & Diagnostics
The UR includes high accuracy metering and recording for all AC signals. Voltage, current, and power metering are built into the relay as a standard feature. Current and voltage parameters are available as total RMS magnitude, and as fundamental frequency magnitude and angle.

GE Fanue CPU module CMU 310

GE Fanuc CMU 310 is a high-performance programmable logic controller (PLC)CPU module, which belongs to GE Fanuc series automation control products. This module is specially designed for industrial automation applications, which provides powerful processing capacity, flexible expansibility and reliable running performance, and is suitable for complex control tasks in manufacturing, energy, transportation and other fields.

Core characteristics
Powerful processing performance
It adopts high-speed processor, supports multi-task parallel processing, and is suitable for complex logic control and large-scale I/O system.
Large-capacity memory design meets the requirements of program storage and data recording, and supports advanced control algorithms.
Flexible communication ability
Built-in communication interfaces (such as Ethernet and serial port) support industrial protocols such as Modbus, Profibus and EtherNet/IP.
Extensible communication module can realize seamless integration with HMI, SCADA system and other PLCs.
High reliability and stability
Industrial-grade design, with anti-vibration and anti-electromagnetic interference (EMI) ability, suitable for harsh industrial environment (-20 C to+60 C).
Support redundant configuration and hot backup function to ensure the continuous operation of the system and reduce the risk of downtime.
Easy to program and maintain.
Compatible with GE Fanuc programming software (such as Proficiency Machine Edition), supporting ladder diagram, structured text and other programming languages.
Modular design facilitates fault diagnosis and quick replacement, and reduces maintenance time.

IS420UCSBH3A controller module Mark VIe series-controller in stock.

IS420UCSBH3A controller is a version of General Electric (GE)Mark VIe series UCSB controller, which is mainly used in the management system and control system of automatic drive components of gas, steam and wind turbines. This series of controllers is a significant improvement of Mark V series, especially in functional application, which is more suitable for gas and steam automatic drive components.
Hardware specifications and characteristics
The core hardware of IS420UCSBH3A controller includes a 1200 MHz EP80579 Intel microprocessor, which runs on QNX real-time operating system and has high reliability and real-time. The modular design of the controller is compact, and it supports various communication interfaces, such as onboard I/O network (IONet) interface, for high-speed data transmission with I/O modules. In addition, it is equipped with 256 MB SDRAM memory, which can meet the needs of complex industrial applications.

In appearance design, there are several LED indicators on the front panel of IS420UCSBH3A controller, which are used to display the state of the controller. For example:

Amber LED indicates that the internal component exceeds the recommended limit;
A steady green LED indicates that the controller is online and running application code;
Other LED indicators are used to display the recovery process status, power status, etc.
The modular design of the controller allows flexible configuration, and has the characteristics of fanless design and built-in power supply, so that it can run stably in harsh environment.
technical superiority

8601-FT-NI Field terminal, non-incendive (Div 2) emerson

Specifications 
 Mounting Format DIN Rail Network Interfaces PROFINET Modbus/TCP Gateways / Bridges HART Network Redundancy MRP Dual LAN System Redundancy PNSR or Modbus/TCP I/O Redundancy Dual Media Support Copper & MM Fiber Media Connector 2x RJ45 or 2x SFP I/O Types 24 VDC, 115/230 VAC in 2-60 VDC, 20 – 265 VAC out Analog, RTD, Thermocouple Specialty Modules Pulse Test (24 VDC) Pulse Input Sequence of Events (SoE) Inputs ASH Detector Isolation Galvanic Isolation DI, DO, AI, AO
PAC8000 Remote I/O
Hot Swap Yes Environmentals IP20 -40˚C to 70˚C Conformal Coat ISA Level G3 corrosion 30g shock 5g vibration
Agency Approvals UL UL HAZLOC C1D1 CE ATEX Zone 1 Intrinsically Safe Marine Lloyd’s Register
I/O Family Comparison

PACSystems RSTi

PACSystems RSTi-EP
VersaMa
RSTi-OM
PAC8000
PACSystems

PAC8000 Remote I/O General Purpose 8103-AI-TX

PAC8000 Remote I/O The Control Solution for Process Industries 
 Introduction 
 PAC8000 Remote I/O is a completely modular I/O solution   for both general purpose and hazardous area applications. Based upon a carrier system, PAC8000 supports a wide range of modules and I/O functions, including intrinsic safety signals. An open architecture allows communication with a variety of different fieldbuses by selecting the appropriate type of Bus Interface Module (BIM). Designed to resist extreme temperatures, humidity, corrosive materials, shocks, and  vibration, PAC8000 delivers full specification performance in even the harshest environments. In ATEX environments PAC8000 excels –   all  components can be mounted and live worked in   Zone 2 / Division 2 and ATEX Zone 1 hazardous areas.   The I/O includes types that can be  connected directly to intrinsically safe (Exi) or increased safety (Exe) field wiring. PAC8000 Remote I/O integrates seamlessly with PACSystems solutions and is connected via  PROFINET or Modbus TCP to RX3i and RSTi-EP controllers.
Harsh & Hazardous Area Operation 
 PAC8000 can go where other products cannot. They can be f ield mounted and subjected to the following:-40°C to +70°C operating range ISA Level G3 corrosion 30g shocks and 5g vibration Operation in Class I, Division 2 and Zone 2 hazardous areas with I/O module field wiring including intrinsically safe (Exi) and increased safety (Exe) options Supports UL HAZLOC C1D1 and ATEX Zone 1 hazardous areas with I/O module field wiring including intrinsically safe (Exi) and increased safety (Exe) options
High Availability 
 PAC8000 supports PROFINET System Redundancy (PNSR),   enabling synchronized independent controllers to service   the I/O and transition from active to back-up controller   without interruption. With controllers separated up to   10 kilometers from each other, processes will be resilient   from physical disruption. Consider unplanned downtime   a thing of the past.
Variety of I/O Modules
Beyond just analog and digital I/O, a broad

GE SR760-CASE 760-P5-G5-S1-HI-A20-R-E

DESCRIPTION 
 The 750 and 760 relays contain many features designed to accommodate a wide range of applications. This chapter is pro vided to guide you, the first time user, through a real-world application. The following step-by-step installation example, pro vides you with a quick and convenient way of becoming familiar with the relay. To start, simply power on the unit, and follow the instructions in this tutorial. The example assumes the following system characteristics. It also assumes that relay set points are unaltered from their factory default values.

  • Power System Data System: 3Φ, 4 wire Frequency: 60 Hz Line Voltage: 13.8 kV Maximum Current: 600 A
  • Control System Requirements All protection elements used are to trip the breaker. Breaker position monitoring via 52b contact only. Only current metering is required. Contact Inputs: Remote open and close contacts from RTU. Remote/local selection from panel hand switch. Reset from RTU. Alarm after 100 second delay from substation monitor Contact Outputs: Trip and close to breaker control circuit (trip and close relays). Relay failure alarm to RTU (self-test warning relay, no programming required). Alarm contact to RTU (setup in User Function for “Substation Monitor”) No data communications to other equipment.
  • Instrument Transformer Data Bus VTs: 3 × Wye connected, ratio = 14.4 kV:120 V Phase CTs: 3 × Wye connected, ratio = 600:5 A
  • Phase Protection Settings Time Overcurrent 1: Curve Shape = Moderately Inverse; Pickup = 840 A; Multiplier = 20.2 Instantaneous Overcurrent 1: Pickup = 840 A; Phases Required = Any Two; Delay = 0 seconds Instantaneous Overcurrent 2: Pickup = 10100 A; Phases Required = Any Two; Delay = 0 seconds
  • Neutral Protection Settings Time Overcurrent 1: curve shape = Moderately Inverse; pickup = 120 A; multiplier = 10 Instantaneous Overcurrent 1: Pickup = 120 A; Delay = 0 seconds Instantaneous Overcurrent 2: Pickup = 2000 A; Delay = 0 seconds You should now be familiar with maneuvering through and editing setpoint messages. As such, we

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