Protocol X DCA

GE Energy Services

Configuration Guide

Address

System Parameter

Unit

 

Value

Default

 

 

 

 

 

 

3000

DI Event Enable

 

1

= Enable / 0 = Disable

0

 

 

 

 

 

 

3001

DI Change Enable

 

1

= Enable / 0 = Disable

0

3002

Store To EEPROM Command

 

1

= Store Parameters

 

3003

DI Change With Timestamp

 

1

= Enable / 0 = Disable

0

3004

AI Event With Timestamp

 

1

= Enable / 0 = Disable

0

3005

Duplex Mode

 

0

= Half-duplex mode

0

3006

Station Address

 

8

.. 63, 72 .. 254

101

3007

Scan Alper Cycle

 

0

= no scan, range 0 .. 1

0

3008

Default AI Delta lowword

 

0

.. 65535

0x00

3009

Default AI Delta highword

 

0 .. 32768

0x16

Automatic tuning

 

 

 

 

3010

Automatic tuning

 

1

= start / 0 = stop

0

3011

Already tuned signals

%

Read only

0

3012

Min Events Per Period

 

 

 

1

3013

Max Events Per Period

 

 

 

10

3014

Tuning Period

Ms

 

 

10

3015

Basic DI Cycle

Ms

3

.. 20

5

Automatic tuning

 

 

 

 

3020

Field 0: Start Address

Word Addr.

Allen-Bradley Address

100

3021

Field 0: Length

Words

 

 

0

3022

Field 0: Periode

100ms

 

 

0

3023

Field 1: Start Address

Word Addr.

Allen-Bradley Address

100

3024

Field 1: Length

Words

 

 

0

 

 

 

 

 

 

3033

Field 2: Length

Words

 

 

0

3034

Field 2: Periode

100ms

 

 

0

Satellite Clock

 

 

 

 

3055

Channel Parameters

 

 

 

100

Analogue Fields

 

 

 

 

3070

Field 0: Start Address

Word Addr.

Allen-Bradley Address

100

3071

Field 0: Length

Words

 

 

AI Lenght

3072

Field 0: Scan Rate

X DI Cycle

 

 

0

3073

Field 1: Start Address

Word Addr.

Allen-Bradley Address

100

3074

Field 1: Length

Words

 

 

0

3083

Field 2:

Length

Words

3084

Field 2:

Scan Rate

X DI Cycle

 

 

 

 

0

0

Table 10 Coupler for Allen-Bradley Data Highway System Parameters.

A197-0CG-1.00-2Restricted

14

Full

 

Page 24
Image 24
GE X3.28 manual Coupler for Allen-Bradley Data Highway System Parameters, Address System Parameter Unit Value Default

X3.28 specifications

The GE X3.28 is a sophisticated commercial jet engine developed by General Electric, known for its innovative technologies and remarkable performance. Designed specifically for the next generation of regional jets, the X3.28 showcases an impressive blend of efficiency, reliability, and low emissions, setting a new benchmark in the aviation industry.

One of the standout features of the X3.28 is its advanced turbofan design, which combines a large bypass ratio with cutting-edge materials to enhance performance while reducing fuel consumption. The engine is built with lightweight composite materials that not only improve fuel efficiency but also contribute to overall weight reduction in regional aircraft. This is crucial for smaller jets that rely on maximizing payload while minimizing operational costs.

The X3.28 is equipped with an innovative high-pressure compressor system that utilizes advanced aerodynamics to ensure optimal airflow and pressure ratios. This technology enhances the engine's thrust performance, allowing aircraft to take off and climb efficiently even from shorter runways. Additionally, the fan blades are designed using state-of-the-art computational fluid dynamics simulations, which help in achieving higher performance and operational reliability.

Another significant characteristic of the X3.28 is its noise reduction capabilities. By employing advanced sound-attenuating technologies in the fan and exhaust systems, the engine meets stringent noise regulations, making it suitable for operations in urban areas and near sensitive environments. This focus on environmental considerations extends to its low emissions profile, making it a more eco-friendly choice compared to older engine models.

The engine also incorporates digital monitoring and control systems that provide real-time data on performance metrics, enabling more efficient maintenance scheduling and enhanced operational safety. This predictive maintenance approach helps airlines reduce downtime and streamline their operations, ultimately contributing to cost savings.

In summary, the GE X3.28 stands out in the competitive market of regional jet engines due to its advanced technologies, exceptional efficiency, and commitment to sustainability. With its focus on performance and environmental responsibility, the X3.28 is poised to lead the way in the future of regional aviation, making it an attractive option for airlines looking to modernize their fleets while maintaining operational excellence.