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ABB NGC8206 Natural gas chromatograph Sample conditioning system

Sample conditioning system

The integral stream selector for the NGC8206 allows sampling

up to four (4) different natural gas streams. Up to two of these

sample streams can be designated as the “calibration/

validation sample”. Optional sample conditioning modules are

available to address natural gas streams that need additional

filtering and “speed loops” to reduce sample transport lag times.

In addition, the unit has an optional ¼ VGA interactive display

screen allowing the user access to basic analysis data. The

user can also accomplish most of the “operator” functions

from the front panel display with out the use of a laptop PC.

The “Run-Hold-Calibrate” functions can be done via a magnet

interface through the explosion proof glass in the display.

ABB Portable NGC Natural gas chromatograph Stream averages

Stream averages for the (default¹) 840 last hours, 35 last days

and the most recent last month analyses. Operational

Parameters for the (default¹) last 480 cycles (Diagnostics Report):

• Selected peak times

• Selected peak areas

• Ideal Btu/CV

• Carrier regulator pressure

• Oven temperature

• Ambient temperature

• Sample pressure

• Detector noise values

• Detector balance values

Audit logs (default¹)

• Last 480 alarms

• Last 480 events

Data retained by the Portable NGC can be collected via a

remote communication link or by the laptop PC local operator

interface PCCU 32.

ABB Portable NGC Natural gas chromatograph Historical data

Historical data

The Portable NGC is designed to retain historical data. This

data can be used for custody transfer needs, verify

transmitter operation over time, and provide a limited data

backup for communication link reliability.

In addition, various CSV file outputs are available to download

the analysis data into spreadsheet based company specific

data sheets, and outputs to 3rd party gas accounting

packages.

The default¹ memory configuration provides the most recent

480 analysis cycles containing:

• Normalized components

• Un-normalized components

• Ideal Btu/CV

• Real Btu (wet and dry) / CV (superior and inferior)

• Relative density (specific gravity)

• Density

• GPM

• Wobbe index

• Alarms

Kongsberg RCU502I 421768 Remote Control Unit (Modular I/O Processor)

Product Overview

The Kongsberg RCU502I 421768 is a ruggedized Remote Control Unit (RCU) designed

for mission-critical industrial automation and maritime control systems.

Part of Kongsberg’s K-Chief series, this module serves as a decentralized processing

node for real-time monitoring and control in harsh environments.

The Kongsberg RCU502I integrates seamlessly into distributed architectures,

offering deterministic I/O handling, advanced diagnostics, and fail-safe operation.

Its primary role is bridging sensors/actuators with central systems (e.g., Kongsberg’s K-Log or K-Chief 600),

ensuring high availability in offshore platforms, marine vessels, and energy installations.

Engineered to withstand extreme temperatures, vibration, and corrosive atmospheres,

the RCU502I 421768 is the backbone for safety-critical automation where downtime is unacceptable.

Key Features and Operational Benefits

High Availability & Fault Tolerance: Dual-processor redundancy with “hot standby” failover

ensures uninterrupted operation during CPU faults.

Built-in diagnostics continuously monitor hardware health, network integrity,

and I/O signal quality, triggering automated alerts via Kongsberg’s K-Chief software suite.

Extreme Environment Resilience: Sealed aluminum housing withstands salt spray,

high humidity, and mechanical shocks. Compliant with IEC 60945 marine standards,

the RCU502I 421768 operates reliably in engine rooms, offshore rigs, or Arctic environments without derating.

Scalable I/O Architecture: Modular design integrates digital/analog I/O cards

(e.g., RAI-322 analog input, RDO-411 relay output) via backplane expansion.

Supports thermocouples, RTDs, 4–20 mA signals, and high-voltage discrete I/O.

All configurations are managed through Kongsberg’s Windows-based configuration tool.

Cybersecurity Hardened: Features hardware-enforced security with authenticated firmware updates,

role-based access control, and encrypted communications to prevent unauthorized access.

Grid Solutions Hydran 201Ti (Mark IV) Controllers

Controllers

The Hydran 201Ti can be connected to optional controllers to facilitate

communication with multiple units and create a local network.

• The Ci-1 controller is a one channel controller that replicates some of

the human interface functions (gas value display, alarm buttons). This is

ideal when the 201Ti is mounted out of reach on an upper valve of the

transformer. It also brings down the alarm relay contacts and the analogue

output for easier wiring.

• The Ci-C controller receives the gas ppm data from up to four 201Ti,

providing a single communication point for all four monitors. It has no

alarm relay or analogue output. This is ideal when protecting 3 single phase

transformers + 1 spare.

It is possible to “daisy-chain” up to 32 controllers or 201Ti through their RS-485

port. The maximum chain distance (all cables added up) is 1200m (4000ft). All

the 201Ti connected to any of the daisy-chained controllers can be accessed

through any controller in the local network, thus facilitating communication by

only having to fit one RS-232 modem for example.

Grid Solutions Hydran 201Ti (Mark IV) Human Interface

Human Interface

• Backlit LCD display of gas information

• Keypad to stop unit and acknowledge alarms

• Compatibility with GE’s acclaimed Perception™

software to download, trend and analyze

transformer data

Mark IV Improvements

• Completely overhauled with improved sensor

durability, new electronic boards and power

supply to make it RoHS compliant while

increasing device reliability and capabilities

• Local USB port to replace the RS-232 port no

longer found on most field laptops

• Digital output of registers using Modbus®

protocol communication over isolated RS-485

Grid Solutions Hydran 201Ti (Mark IV) Easy Asset Supervision

Easy Asset Supervision

• Permanently mounts on a single transformer oil

valve. No extra piping or pump required

• “Composite gas” sensor responds 100% to

Hydrogen (general fault gas) and is also sensitive

to Carbon Monoxide (overheated paper)

Acetylene (arcing) and Ethylene (overheated oil)

thus covering main failure root causes

• “Hydrogen only” gas sensor is simpler and

responds 100% to Hydrogen gas only, the

general fault gas

Configurable Alarms

• An alarm is raised when an abnormal level of

fault gas is detected

• Two alarm levels (one for Alert and one for Alarm)

can be set to show increasing severity

• Alarms can be set on gas ppm levels or on gas

rate of change (ROC) over an hour or a day

• Automatic self-test every 15 days will trigger

service alarm if it detects a fault, including power

failure, oil valve closed, sensor or  battery needing

replacement

Grid Solutions Hydran 201Ti (Mark IV) Key Benefits

Key Benefits

• Continually measures key fault gas to give you an insight into the transformer’s condition

• Choice of gas sensor: traditional “Composite gas” or more basic “Hydrogen only”

• Communicates gas ppm and gas rate of change values remotely to avoid site visits and enable

remote supervision

• Fourth generation of this continuously improved design, with over 25.000 units sold worldwide

Applications

Power Utilities

• Simple and effective solution for less-critical transformers

• Focuses and prioritizes asset replacement strategy

Industrial Plants

• Reduces the risk of process interruption due to power failure

• Minimizes costly production downtime

Grid Solutions Hydran 201Ti (Mark IV)

Essential DGA monitoring for transformers

Transformers are key and expensive components of the electrical grid and knowledge of their

health condition is essential to having a reliable network. When a transformer’s insulation system is

overstressed, gases are produced that dissolve in the oil. Dissolved Gas-in-oil Analysis (DGA) is recognized

as the best indicator of developing faults.

The Hydran™ 201Ti is a small and easy to setup continuous Dissolved Gas-in-oil Analysis (DGA) monitor.

It provides the basic information used by IEEE® Standard C57.104 and can be used as an essential first

line of defence for the transformers in your fleet to obtain advance warning of a failure condition and

minimize the risk of an unplanned outage.

The 201Ti uses fuel cell technology (described as fixed instruments – method 3 in the standard) and is

now available with a choice of either the world renown “Hydran Composite Gas” sensor which responds

100% to Hydrogen and is also sensitive to Carbon Monoxide, Acetylene and Ethylene or the more basic

“Hydrogen Only” sensor which focuses purely on Hydrogen gas generation.

Because the monitoring unit mounts on a single valve and uses Dynamic Oil Sampling, there is no need

for a pump or extra piping to connect to different valves. Due to its uncomplicated features and the easily

understood information it provides, the 201Ti has been amongst the monitors of choice for many years,

with one of the largest installed base of any DGA monitor.

Grid Solutions Hydran M2-X Key Benefits

Key Benefits

• Small form factor, no moving parts, low maintenance, and support for APM software analytics,

enabling fleet level deployments

• Condition monitoring for a wide range of transformers with mineral insulating oils or ester based

fluids (natural and synthetic)

• Extending beyond DGA monitoring, through the connection of sensors, the Hydran M2-X can monitor

other parameters such as top oil temperature, load current and through the use of IEEE based

mathematical models, can provide further insight on changing transformer conditions

• Providing critical transformer gas behavior data for Asset Performance Management (APM)

strategies, facilitating planning of site intervention and maintenance activities

• Supports a wide range of communication methods and protocols to enable easy and secure

integration with GE’s digital platforms including Perception™ transformer fleet management

software, DS Agile substation HMI, PREDIX™, and other APM software tools, historians and SCADA

systems

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