DCS Industrial control system
NameDescriptionContent
NEW CENTER
Current Location:

GE VMIVME-5576 Fiber-Optic Reflective Memory with Interrupts

From:GE | Author:yang | Time :2025-12-18 | 559 Browse: | 🔊 Click to read aloud ❚❚ | Share:

VMIVME-5576

Fiber-Optic Reflective Memory with Interrupts

High-speed, easy-to-use fiber-optic network (170 Mbaud serially)

Data written to memory in one node is also written to memory in all nodes on

the network

Up to 2.000 m between nodes and up to 256 nodes

Data transferred at 6.2 Mbyte/s without redundant transfer

Data transferred at 3.2 Mbyte/s with redundant transfer

Any node on the network can generate an interrupt in any other node on the

network or in all network nodes with a single command

Error detection

Redundant transmission mode for suppressing errors

No processor overhead

No processor involvement in the operation of the network

Up to 1 Mbyte of Reflective Memory

A24:A32:D32:D16:D8 memory access

Single 6U VMEbus board

INTRODUCTION

VMIVME-5576 is a

high-performance, multidrop VME-to-VME network. Data is

transferred by writing to on-board global RAM. The data is

automatically sent to the location in memory on all Reflective

Memory boards on the network.

PRODUCT OVERVIEW

The Reflective Memory

concept  provides a very fast and efficient way of sharing data

across distributed computer systems.

VMIC’s VMIVME-5576 Reflective Memory interface

allows data to be shared between up to 256 independent

systems (nodes) at rates up to 6.2 Mbyte/s. Each Reflective

Memory board may be configured with 256 Kbyte to 1 Mbyte

of on-board SRAM. The local SRAM provides fast Read

access times to stored data. Writes are stored in local SRAM

and broadcast over a high-speed fiber-optic data path to other

Reflective Memory nodes. The transfer of data between nodes

is software transparent, so no I/O overhead is required.

Transmit and Receive FIFOs buffer data during peak data

rates to optimize CPU and bus performance to maintain high

data throughput.

The Reflective Memory also allows interrupts to one or

more nodes by writing to a byte register. These interrupt (three

level, user definable) signals may be used to synchronize a

system process, or used to follow any data that may have

preceded it. The interrupt always follows the data to ensure the

reception of the data before the interrupt is acknowledged.

The VMIVME-5576 requires no initialization unless

interrupts are being used. If interrupts are used, vectors and

interrupt levels must be written to on-board registers and the

interrupts armed.

Each node on the system has a unique identification

number between 0 and 255. The node number is established

during hardware system integration by placement of jumpers

on the board. This node number can be read by software by

accessing an on-board register. In some applications, this node

number would be useful in establishing the function of the

node.

LINK ARBITRATION — The VMIVME-5576 system

is a fiber-optic daisy chain ring as shown in Figure 2. Each

transfer is passed from node to node until it has gone all the

way around the ring and reaches the originating node. Each

node retransmits all transfers that it receives except those that

it had originated. Nodes are allowed to insert transfers

between transfers passing through.

INTERRUPT TRANSFERS — In addition to

transferring data between nodes, the VMIVME-5576 will

allow any processor in any node to generate an interrupt on

any other node. These interrupts would generally be used to

indicate to the receiving node that new data has been sent and

is ready for processing. These interrupts are also used to

indicate that processing of old data is completed and the

receiving node is ready for new data.

Three interrupts are available. The user may define the

function, priority, and vector for each interrupt. Any

processor can generate an interrupt on any other node on the

network. In addition, any processor on the network can

generate an interrupt on all nodes on the network. Interrupts

are generated by simply writing to a single VMIVME-5576

register.

All data and interrupt command transfers contain the

node number of the node that originated the transfer. This

information is used primarily so the originating node can

remove the transfer from the network after the transfer has

traversed the ring. The node identification is also used by

nodes receiving interrupt commands. When a node receives

an interrupt command for itself, it places the identification

number of the originating node in a FIFO. Up to 512

interrupts can be stacked in the FIFO. During the interrupt

service routine, the identification of the interrupting node can

be read from the FIFO.

ERROR MANAGEMENT — Errors are detected by

the VMIVME-5576 with the use of the error detection

facilities of the TAXI chipset and additional parity encoding

and checking.  The error rate of the VMIVME-5576 is a

function of the rate of errors produced in the optical portion

of the system.  This optical error rate depends on the length

and type of fiber-optic cable.

Assuming an optical error rate of 10-12. the error rate of

the VMIVME-5576 is 10-10 transfers/transfer. However, the

rate of undetectable errors is less than 10-20 transfers/transfer.

When a node detects an error, the erroneous transfer is

removed from the system and a VMEbus interrupt is

generated, if armed.

The VMIVME-5576 can be operated in a redundant

transfer mode in which each transfer is transmitted twice. In

  • CTI 2500-ADP2-DISC Discrete Wiring Adapter for Series 500
  • CTI 2500-ADP1 Analog Wiring Adapter for Series 500
  • CTI 2500C-RADP-RS485 Remote Base Controller Adapter for Series 500
  • CTI 2500C-RADP-RBC Profibus RBC Adapter for Series 500
  • CTI 2500C-PADP-120V 120VAC 50W Power Supply for Series 500
  • CTI 2500-RADP RBC Adapter for Series 500
  • CTI 2500-R4500 520/530/DBC Adapter for Series 500 - MATURE
  • CTI 2500-PADP Power Supply Adapter for Series 500
  • CTI 2500-IADP I/O Adapter for Series 500
  • CTI 2500-VP15A-N4-W7 15" Flat-Panel PC with Windows® 7 Embedded
  • CTI 2500S-27-1750 Slice I/O, Ethernet, RS232/485. 900MHz, 2DIO / 4UAI / 2AI
  • CTI 2500S-26-1750 Slice I/O, Ethernet, RS232/485. 900MHz, 8DIO / 2UAI
  • CTI 2500S-23-1750 Slice I/O, Ethernet, RS232/485. 900MHz, 4DI / 4DO / 2UAI / 2AO
  • CTI 2500S-27-1550 Slice I/O, RS232/485. 2DIO / 4UAI / 2AI
  • CTI 2500S-26-1550 Slice I/O, RS232/485. 8DIO / 2UAI
  • CTI 2500S-23-1550 Slice I/O, RS232/485. 4DI / 4DO / 2UAI / 2AO
  • CTI 2500S-27-1050 Slice I/O, Ethernet, 2DIO / 4UAI / 2AI
  • CTI 2500S-26-1050 Slice I/O, Ethernet, 8DIO / 2UAI
  • CTI 2500S-23-1050 Slice I/O, Ethernet, 4DI / 4DO / 2UAI / 2AO
  • CTI 2500C-32F-CJC 32-Pin Field Wiring Connector with Cold Junction Compensation
  • CTI 2500C-32F 32-Pin Field Wiring Connector
  • CTI 2500C-8-TC Eight Thermocouple Inputs
  • CTI 2500C-8-RTD Eight RTD Inputs
  • CTI 2500C-8-RL-FC 8 Form-C Relay Outputs
  • CTI 2500C-8-IDO-24V 8 Isolated 24VDC Outputs
  • CTI 2500C-8-IDO-120V 8 Isolated 120VAC Outputs
  • CTI 2500C-16-DO-24V Sixteen 24VDC Digital Outputs
  • CTI 2500C-16-DO-120V Sixteen 120VAC Digital Outputs
  • CTI 500C-16-IDI-24V Sixteen Isolated 24V AC/DC Digital Inputs
  • CTI 2500C-16-IDI-120V Sixteen Isolated 120V AC/DC Digital Inputs
  • CTI 2500C-16-DIDO-SIM Sixteen Digital Input and Output SImulator
  • CTI 2500C-16-DI-24V Sixteen 24V AC/DC Digital Inputs
  • CTI 2500C-16-DI-120V Sixteen 120V AC/DC Digital Inputs
  • CTI 2500C-RBC-RS485 RS485 Remote Base Controller
  • CTI 2500C-RBC-PRF Profibus Remote Base Controller
  • CTI 2500C-PS-24V-35 35-Watt DC Power Supply
  • CTI 2500C-PS-120V-35 35-Watt AC Power Supply
  • CTI 2500C-R8 Eight-Slot Base
  • CTI 2500C-R4 Four-Slot Base
  • CTI 2500C-R16 Sixteen-Slot Base
  • CTI 2500C-2572-B Fast Ethernet TCP/IP Adapter
  • CTI 2500C-J750 Compact Janus PAC with 3MB Project Memory
  • CTI 2500C-C300 CPU with 512K User Memory
  • CTI 2500C-C200 CPU with 256K User Memory
  • CTI 2500C-C100 CPU with 128K User Memory
  • CTI 2500C-8-AO 8 Analog Outputs
  • CTI 2500C-8-AI 8 Analog Inputs
  • CTI 2559-FCAL Precision Calibration Connector
  • CTI 2559-FPC 40-Position Screw-Terminal Connector
  • CTI 2500-RFC PLC to RF Modem Cable
  • CTI 2500-40F 40-Position Standard Screw-Terminal Connector
  • CTI 2505 Vibration Sensor Interface Module
  • CTI 2554-A 4-Channel Isolated High Speed Counter Module
  • CTI 2553-A 2-Channel Mag Meter Input Module
  • CTI 2502 2-Channel High Speed Counter Input Module
  • CTI 2559-TC 8-Channel Thermocouple Input Module
  • CTI 2556-A 16-Channel Isolated Thermocouple Input Module
  • CTI 2556 16-Channel Isolated Thermocouple Input Module
  • CTI 2551-A 8-Channel Isolated Thermocouple Input Module
  • CTI 2559-RTD 8-Channel RTD Input Module
  • CTI 2557-A 16-Channel RTD Input Module
  • CTI 2557 16-Channel RTD Input Module
  • CTI 2552-A 8-Channel Isolated RTD Input Module
  • CTI 2534 8-Point Form-C Relay Output Module
  • CTI 2532 16-Point Form-A Relay Output Module
  • CTI  2531 32-Point Form-A Relay Output Module
  • CTI  2530 8-Point Form-C Relay Output Module
  • CTI  2562 8-Channel Analog Output Module
  • CTI  2560-A 8-Channel Isolated Analog Output Module
  • CTI  2501 8in/4out Analog Module
  • CTI  2558 8-Channel Analog Input Module
  • CTI  2555-A 16-Channel Analog Input Module
  • CTI  2550-A 8-Channel Isolated Analog Input Module
  • CTI  2599 8/16/32-Point AC Output Module
  • CTI  2598-8 8-Point AC Output Module
  • CTI   2598 8/16-Point AC Output Module
  • CTI   2597 8/16/32-Point DC Output Module
  • CTI 2596-8 8-Point DC Output Module
  • CTI 2596 8/16-Point DC Output Module
  • CTI 2595 16-Point TTL/Word Output Module
  • CTI 2591-EF 16-Point Isolated 11-146 VDC Output with Front Panel Accessible Fuses
  • CTI 2591-A 16-Point Isolated 11-146 VDC Output Module
  • CTI 2590-EF 16-Point Isolated 20-132 VAC Output with Front Panel Accessible Fuses
  • CTI 2590-A 16-Point Isolated Discrete 20-132 VAC Output Module
  • CTI 2589-B 8/16/32-Point Universal Discrete Input Module
  • CTI 2589-A 8/16/32-Point Universal Discrete Input Module
  • CTI 2588-8 8-Point Universal Discrete Input Module
  • CTI 2585 16-Point TTL/Word Input Module
  • CTI 2582 16-Point Isolated 125 VDC Input Module
  • CTI 2581 16-Point Isolated 12-56 VDC Input Module
  • CTI 2580 16-Point Isolated 95-132 VAC Input Module
  • CTI 2500-TAP RS485 Network Tap
  • CTI 2500-RIO-B RS485 Remote Base Controller
  • CTI 2500-RIO-A RS485 Remote Base Controller
  • CTI 2500-RBC Profibus Remote Base Controller
  • CTI 2515-A 100-Watt AC/DC Power Supply with Redundancy Support
  • CTI 2515 100-Watt AC Power Supply (MATURE - replaced by 2515-A)
  • CTI 2513-A 75-Watt DC Power Supply with Redundancy Support
  • CTI 2513 75-Watt 24VDC Power Supply
  • CTI 2512-A 75-Watt AC/DC Power Supply with Redundancy Support
  • CTI 2512 75-Watt AC/DC Power Supply
  • CTI 2510 125 VDC Power Supply
  • CTI 2500-SSB Single Slot Blank Front Panel
  • CTI 2500-R11-A Eleven-Slot Redundant Base
  • CTI 2500P-R16 Sixteen-Slot Base with High-Speed Channel
  • CTI 2500P-R8 Eight-Slot Base with High-Speed Channel
  • CTI 2500P-R4 Four-Slot Base with High-Speed Channel
  • CTI 2541 Redundant Processor Manager Module
  • CTI 2577 Profibus DP Slave Adapter
  • CTI 2573-MOD Serial Interface Adapter with MODBUS
  • CTI 2572-AF Fast Ethernet TCP/IP Adapter with Optical Fiber Connection
  • CTI 2572-A Fast Ethernet TCP/IP Adapter
  • CTI 2572 Ethernet TCP/IP Adapter
  • CTI 2572-B Fast Ethernet TCP/IP Adapter
  • CTI 2576 DeviceNet™ Scanner Module (MATURE)
  • CTI 2500P-ECC1 Ethernet Communications Coprocessor
  • CTI 2500P-JACP Janus Application Coprocessor
  • CTI 2500P-ACP1 Application Coprocessor (MATURE - replaced by 2500P-JACP)
  • CTI 2500P-J450 Janus PAC with 2MB Project Memory
  • CTI 2500-C400 CPU with 3072K User Memory
  • CTI 2500-C300 CPU with 512K User Memory
  • CTI 2500-C200 CPU with 256K User Memory
  • CTI 2500-C100 CPU with 128K User Memory
  • CTI 2500P-J750 Janus PAC with 3MB Project Memory
  • Shinkawa WHF3006M Displacement Converter
  • Shinkawa JBP-220 (P-24-94A / P-24-94B) Circuit Board Module
  • SHINKAWA   WKN-142K5  2-WIRE VIBRATION TRANSDUCER
  • Shinkawa FRP-321 (P-26-54A / P-26-54B) Circuit Board Module