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A-B Line Synchronization Module (Bulletin 1402 LSM) Installation

Location

The Bulletin 1402 Line Synchronization Module (LSM) should be installed in a Bulletin 1771 I/O chassis that is located in a dry, 

dirt free environment away from heat sources and very high electric or magnetic fields. 

The module is designed to operate in an ambient temperature between 0 and 60° Celsius. 

The LSM is typically installed in a local rack in order to maximize data transfer rates.

Enclosure

This equipment is classified as open equipment and must be installed (mounted in an enclosure during operation as a means of providing safety protection. 

The enclosure chosen should protect the LSM from atmospheric contaminants such as oil, moisture, dust, corrosive vapors, or other harmful airborne substances. 

A steel enclosure is recommended to guard against EMI (Electromagnetic Interference) & RFI (Radio Frequency Interference). 

The enclosure should be mounted in a position that allows the doors to open fully. 

This will allow easy access to the wiring of the LSM and related components so that servicing is convenient. 

When choosing the enclosure size, extra space should be allowed for associated application equipment such as, transformers,

fusing, disconnect switch, master control relay, and terminal strips.

Mounting

The LSM mounts in two slots of a Bulletin 1771 Series B, I/O chassis. Mounting dimensions will vary with the size of the chassis selected. 

Refer to the appropriate 1771 literature for specific dimensions.

Power Supply

The LSM backplane power requirement is 1.1A at 5V DC. Refer to the appropriate 1771 literature for additional information on available power supply current.

Chassis Grounding

For correct and reliable performance, the grounding recommendations specified for Allen–Bradley PLC systems must be followed.

Swing Arm

The LSM requires the use of a Cat. No. 1771-WC (10 position, gold contacts) Swing Arm.

A-B Line Synchronization Module (Bulletin 1402 LSM) Product Description

Chapter Objectives

After reading this chapter, you should be able to identify the product features and system applications.

Introduction

The Bulletin 1402, Line Synchronization Module (LSM), is designed to meet the needs of manufacturers, 

system integrators, and users of 3 phase alternators and cogeneration systems or for applications that require 

two three–phase systems to be synchronized with each other. 

The module provides means for automatic synchronization, load sharing, and high speed power system monitoring.

General Description

The Line Synchronization Module (LSM) is a two slot 1771 form factor module that fits into a standard Allen–Bradley 1771 I/O chassis. 

It performs three functions:

1. Measures appropriate parameters from the two three–phase systems and provides control and 

error signals to implement engine governor control for synchronization.

2. Provides an analog output that is representative of the ratio of the power being supplied by the alternator to the output rating of the alternator, 

reads an analog input that represents the ratio of the total system load being supplied to the total system capacity, 

and provides an error signal to adjust the alternator for proper load sharing based on the instantaneous load requirements.

3. Performs as a multi–function digital power monitor for the system.

These functions provide data and control signals which are communicated to the PLC-5 via the 1771 backplane.

Emerson FloBoss™ S600+ Flow Computer

The FloBoss™ S600+ Flow Computer (S600+) is a panel-mount fiscal flow computer designed specifically

for hydrocarbon liquid and gas measurement where versatility and accuracy are high priorities. 

The FloBoss S600+ builds on the success of its predecessor, the S600, which has been the market-leading panel-mount flow computer from Emerson Process Management.

The standard features of the S600+ make it ideal for the following applications:

▪ Fiscal flow measurement

▪ Custody transfer

▪ Pipeline measurement

▪ Batch loading

▪ Meter proving applications

▪ Single or multi-stream measurement

▪ Flow control

The S600+ supports multi-stream (up to ten with optional expansion modules), 

multi-station (up to two) applications that are configured for simultaneous metering of gas, wet gas, crude oil, refined products, LPG, NGLs, etc. 

The S600+ can accommodate both a liquid and a gas station simultaneously.

Supported flow meters or primary elements include turbine, ultrasonic, Coriolis, positive displacement, orifice, 

Venturi, Annubar, V-Cone®, and Rosemount conditioning orifice plate.

The S600+ supports an unprecedented number of global measurement standards including those covered by AGA, ISO, GPA, 

and GERG for gas applications, and API, ASTM, GPA, and NORSOK for liquid applications.

The S600+ uses distributed processing to achieve maximum performance. The S600+ contains a more powerful main processor than the original S600.

The new CPU incorporates a hardware floating point processor and performs faster calculations than before, minimizing uncertainty and maximizing control.

A-B 1394 Digital AC Multi-Axis Motion Control System

Overview

The 1394 System 

The 1394 is a modular, multi-axis motion control and drive system family. 

Its unique design allows the 1394 to be used as an integrated motion controller and drive system (GMC) with Turbo or standard 

IMC S Class Compact functionality, an integrated 9/440 CNC system, 

a 9/Series CNC digital interface drive system, a SERCOS servo drive system, or an analog servo drive system.

All 1394 systems provide direct line connection (transformerless) for 360 and 480V three-phase input power, 

efficient IGBT power conversion, and slide-and-lock, module-to-module connection 

systems. Each system module can be configured with up to four axis modules, 

with each axis module interfacing to a motor. 

The 1394 provides significant panel space and interconnect savings.

1394 System Overview

GMC System

The 1394 GMC System provides all the functionality of the IMC S Class Compact Motion Controller and power conversion within the 1394 system module. 

Allen-Bradley offers two versions of the 1394 GMC system module (Standard GMC and GMC Turbo). 

Both systems are completely programmed and commissioned using GML (Graphical Motion Control Language),

offer Allen-Bradley DH485, RS-232, and RS-422 as standard communications, and have Remote I/O and AxisLink available as communication options.

The 1394x-SJTxx-C (Standard GMC) system supports four axis modules and provides four channels of auxiliary encoder input. 

The 1394C-SJTxx-L (Standard GMC) provides the same functionality of the 1394x-SJTxx-C, 

but supports only one axis module and provides two channels of auxiliary encoder input.

Euresys Coaxlink Quad CXP-12 Value

Advantages

PCIe 3.0 (Gen 3) x8 bus

– 7,800 MB/s peak bus bandwidth

– 6,700 MB/s sustained bus bandwidth

Connect the fastest, highest resolution cameras to capture images

– Highest data acquisition rate in the industry

– 50 Gbit/s (5,000 MB/s) bandwidth (from camera to host PC memory)

Long cable support

– 40 metres at CXP-12 speed (12.5 Gbps)

– 72 metres at CXP-6 speed (6.25 Gbps)

– 100 metres at CXP-3 speed (3 Gbps)

Power over CoaXPress

– Power over CoaXPress: The camera delivers up to 17 W per channel with 24 VDC and provides automatic device detection, measurement and overload protection.

– Total voltage and current as well as voltage and current per channel can be measured for verification and performance deviation monitoring.

Uses standard coaxial cable

– Data transfer, camera control, triggers and power supply with a single, inexpensive cable

– Top-notch reliability and flexibility for implementation in harsh environments

Micro-BNC (HD-BNC™) connectors provide reliable connections

– Trusted push-to-turn snap ring positive locking

– For quick and easy connection and disconnection

Connects up to 4 cameras to a single Coaxlink card

Memento Event Logging Tool

– Memento is an advanced development and debugging tool for Coaxlink and Grablink cards.

– Memento records an accurate log of all events related to the camera, the frame grabber card and its driver, and the application.

– For times containing timestamps, it provides developers with accurate timelines, as well as contextual information and logic analyser views.

– It can provide valuable collaboration during application development and debugging, as well as during machine operation.

Euresys Coaxlink Quad CXP-12 JPEG

Coaxlink Quad CXP-12 JPEG

Four-connection CoaXPress CXP-12 frame grabber with JPEG compression 

At a Glance

• Four 250 MPixels/s JPEG encoders

• Compatible with 8-bit/pixel Bayer CFA cameras

• Two streams per camera: JPEG stream and RGB preview stream

• Four CoaXPress CXP-12 connections: 5.000 MB/s camera bandwidth

• PCIe 3.0 (Gen 3) x8 bus: 6.700 MB/s bus bandwidth

• Memento Event Logging Tool

Benefits

Applications

The Coaxlink Quad CXP-12 JPEG enables the compact implementation of a multi-channel ultra-high-resolution image acquisition and recording system. The embedded pixel processing drastically reduces the CPU workload to monitor and compress image streams.

Description

• The 4-camera firmware variant of the Coaxlink Quad CXP-12 JPEG implements four independent image acquisition channels with, for each of them, a Bayer CFA decoder and a baseline JPEG encoder that can process up to 250 Megapixels/s, for a total of 1 billion color pixels per second.

• Each channel delivers two concurrent streams: a “JPEG” encoded stream for recording and a “Preview” stream for monitoring.

• The JPEG stream delivers, with a typical latency of only 20 lines, 4:2:2 full-resolution JFIF-compliant encoded images compatible with standard JPEG decoders. The JPEG encoding quality is configurable from 1 to 100.

• The Preview stream provides 8-bit Bayer full-resolution, 24-bit RGB full-resolution or 24-bit RGB low-resolution images.

Support of JFIF image format

The GenICam Browser and GenTL Viewer applications now support JFIF images.

Power over CoaXPress

• Power over CoaXPress : Feed your camera up to 17 W per channel under 24 VDC with automatic device detection,measurement and overload protection.

• Total and per-channel voltage and current measurement is possible, allowing validation and performance deviation monitoring.

Euresys Coaxlink CXP-12 to QSFP+ Converter

Coaxlink CXP-12 to QSFP+ Converter Four-connection CoaXPress CXP-12 to CoaXPress-over-Fiber converter

At a Glance

• Provides easy cable length extension using CoaXPress-over-Fiber

• Allows connecting a CXP-12 camera to a Coaxlink QSFP+ frame grabber

• Four CoaXPress CXP-12 connections on the camera side

• One QSFP+ port compliant with 40 Gbps optical modules on the frame grabber side

• 5.000 MB/s camera bandwidth

• PoCXP camera power supply

Benefits

Connect a CXP-12 camera to a Coaxlink QSFP+ frame grabber The Coaxlink CXP-12 to QSFP+ Converter allows connecting a CXP-12 camera to a Coaxlink QSFP+ frame grabber using fiber optics. With multi-mode fibers, the maximum cable length can reach 150 meters. With single-mode fibers, the maximum cable length can reach 40 kilometers.

What is CoaXPress-over-Fiber?

CoaXPress-over-Fiber is a light but significant extension of the existing CoaXPress specification to support transport over fiber optics.

CoaXPress (CXP) is the de-facto standard for high-bandwidth computer vision applications. CoaXPress 2.0. the latest version of the specification, specifies the CXP-12 speed, a 12.5 Gbps (Gigabit per second) link over a coaxial copper cable.

As link aggregation is common with CoaXPress, bandwidths of 5.000 MB/s (1.250 MB/s x 4) are easily achievable with four CXP-12 links. The CoaXPress specification is hosted by the JIIA (Japan Industrial Imaging Association).

CoaXPress-over-Fiber has been designed as an add-on to the CoaXPress 2.0 specification. It provides a way to run the CoaXPress protocol, as it is, unmodified, over a standard Ethernet connection, including fiber optics. As such, CoaXPressover-Fiber uses standard electronics, connectors and cables designed for Ethernet, but the protocol is CoaXPress, not Ethernet, not GigE Vision.

Euresys Coaxlink QSFP+ Four-connection CoaXPress-over-Fiber frame grabber

At a Glance

• One QSFP+ port compliant with 40 Gbps optical modules

• 5.000 MB/s camera bandwidth

• PCIe 3.0 (Gen 3) x8 bus: 6.700 MB/s bus bandwidth

• Feature-rich set of 20 digital I/O lines

• Extensive camera control functions

• Memento Event Logging Tool

• Compatible with CustomLogic: Your own FPGA logic

Benefits

What is CoaXPress-over-Fiber?

CoaXPress-over-Fiber is a light but significant extension of the existing CoaXPress specification to support transport over fiber optics.

CoaXPress (CXP) is the de-facto standard for high-bandwidth computer vision applications. CoaXPress 2.1. 

the latest version of the specification, specifies the CXP-12 speed, a 12.5 Gbps (Gigabit per second) connection over a coaxial copper cable. 

As link aggregation is common with CoaXPress, bandwidths of 50 Gbps (12.5 x 4) are easily achievable with four CXP-12 connections. 

CoaXPress-over-Fiber has been designed as an add-on to the CoaXPress specification. 

It provides a way to run the CoaXPress protocol, as it is, unmodified, over a standard Ethernet connection, including fiber optics. 

As such, CoaXPress-over-Fiber uses standard electronics, connectors and cables designed for Ethernet, but the protocol is CoaXPress, not Ethernet, not GigE Vision.

Read more about CoaXPress-over-Fiber on our technology page.

PCIe 3.0 (Gen 3) x8 bus

• 7.800 MB/s peak bus bandwidth

• 6.700 MB/s sustained bus bandwidth

Acquire images from the fastest and highest resolution cameras

• Highest data acquisition rate in the industry

• Up to 5.000 MB/s bandwidth from camera to host PC memory

Euresys Grablink DualBase Frame grabber for two base-configuration Camera Link cameras

At a Glance

• For two Camera Link Base or Lite configuration cameras

• Directly compatible with hundreds of Camera Link cameras available on the market

• Supports PoCL, Power over Camera Link

• ECCO: Extended Camera Link cable length

• PCIe x4 bus: 850 MB/s sustained delivery bandwidth

• Feature-rich set of 20 digital IO lines

• Memento Event Logging Tool

Benefits

New in MultiCam 6.19

• Support of the Windows Core Isolation security feature

• Windows 11 support

• Support of recent Linux distributions & kernels

• New Python bindings for MultiCam

ECCO: Extended Camera Link Cable Operation

• Use longer, up to 15 meters long, Camera Link cables!

Directly compatible with hundreds of Camera Link cameras available on the market

Check out our supported cameras page (in the Support menu)

General purpose I/O lines

• Compatible with a wide range of sensors and motion encoders.

• High-speed differential inputs: Quadrature motion encoder support up to 5 MHz.

• Isolated current-sense inputs: 5V, 12V, 24V signaling voltages accepted, up to 50 kHz, individual galvanic isolation up to

500VAC RMS.

• Isolated contact outputs.

A-B 1336 PLUS II SENSORLESS VECTOR AC Drive

A Complete Line of Drives for a Complete Family of Products

Available in ratings from 0.37 to 448 kW (0.5 to 600 horsepower), the drive helps to provide a single

solution for virtually all of your speed control requirements. Commonality of design across the entire

range, coupled with identical control interface functions, device communications, training and

maintenance, provide you with a tremendous advantage in your control needs. Add that to integration

with Allen-Bradley SMC™ and SMP™ power products, the 1305 drive, the

1336 IMPACT™ and 1336 FORCE™ field-oriented control drives (all of which

use the same control interface and communication options) and you’ve just

gained significant advantage in system design, component integration,

operator training and maintenance.

Features

Protective

• Detection and Trip:

Undervoltage

Overvoltage

Drive Overcurrent

Overtemperature

External Signal

Drive Output Short

Ground Fault

Encoder Loss

At temperature

Load Loss

Single Phase

• Overcurrent Stall

• Overvoltage Stall

• Six Drive Alarms

• Fault Reset Input

Special Function

• Auto Economizer

• Process PI Controller

• Traverse Function

• Selectable Fault Reset & Run

• Auto Restart on Power Up

• Speed Sensitive Electronic Overload

• Auto-tuning

• Step Logic

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