IC698CPE030 RX7i Pentium M CPU - 600mHz with 64 meg of user memory
IC698CPE030 RX7i Pentium M CPU - 600mHz with 64 meg of user memory
PACSystems* RX7i Controller
Performance – Delivering on the
Demands of Your Most Advanced
Applications
• Pentium® CPUs for your every need, from
Celeron 300Mhz to M Class 1.8Ghz
• VME64 Backplane provides up to four
times the bandwidth of existing Series
90*-70 systems
• 10/100 Ethernet built into the CPU, with
easy cabling RJ-45 dual ports connected
through an auto-sensing switch — no need
for additional switches or hubs rack to rack
• Up to 64MB memory for fast execution,
storage of the complete program with all
documentation (including Excel, Word, PDF
and DXF files) — all in one CPU
• Object Oriented programming through
IEC languages including C for fast executing,
standards based applications
• Integration of Control Memory Xchange,
a high speed global memory over a fiber
network — like having a networked drive
everyone can see and share
• High capacity power supplies (100W and
350W) to reduce the requirement for an
external supply
Productivity – Maximizing Efficiency
of Design and Operation
• One common environment for configuring,
programming, commissioning, and
maintaining your application with Proficy*
Machine Edition
• One tool for Control, View and Motion program
development
• System Management with Manager provides
Version Control, Security Access, and
Audit Trail
• Embed Proficy Historian or other tools typically
requiring a separate computer for
maximum productivity
With our CPX family of CPUs, the Series 90-70
offers more for your automation dollar—more
computing power, more memory for your
applications, and more communications and
redundancy capabilities. And it provides
increased flexibility for a variety of
applications due to a wide range of isolated
and high-density VME analog I/O modules.
Open Architecture
Based on the VME-bus standard, the Series
90-70 can be used with thousands of boards
produced by hundreds of different manufacturers
to build a solution that meets your
exact needs. These include links to drives
and drive systems, servo motor controllers,
embedded solutions for vision systems and
bus-to-bus interface modules, as well as a
variety of modules available from GE (see
accompanying table).
Various Degrees of Redundancy
Combining the Series 90-70 with the
advanced functionality of Genius* I/O,
GE Genius Modular Redundancy (GMR)
systems and Hot Standby systems can
provide as much or as little redundancy
as you need for your critical applications.
• The versatility and strength of the GMR
system make it an ideal choice for rigorous
emergency shutdown and human life protection
systems. It has a class 6 TÜV rating.
• Based on three isolated PLCs and extensive
diagnostics, the GMR triple modular
redundancy system uses two-out-of-three
voting to provide high reliability and errorfree
operation.
• CPU Genius Redundancy (CGR) systems
achieve enhanced hot standby CPU redundancy
by connecting two power supplies
and two CGR CPUs to one or more Genius
I/O networks.
Flexible Communications Options
The Series 90-70 offers a wide variety of
communications options, including Ethernet
TCP/IP, reflective memory, Genius LAN,
and serial communications modules that
enable precise solutions using off-the-shelf
components. It is an ideal candidate for
acting as your factory-floor server, collecting
data and seamlessly integrating it with the
ERP system.
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IS220PTURH1A IS220PTURH1B Turbine Input/Output: Primary Turbine Protection
IS220PPRAS1A-HIA IS220PPRAS1B Turbine Input/Output: Turbine Backup Protection
IS220PPROH1A IS220PPROH1B Turbo Input/Output: Turbo Backup Protection
IS215AEPCH2F AEPC - 30Nm Non-CANBus Air Distance Control (Center/Axle)
IS215AEPCH1C IS215AEPCH1F AEPC - 30Nm Air Distance Control (Center/Shaft)
IS215AEPCH1A IS215AEPCH1D AEPC -20Nm Non-ESS Air Distance Center Control
IS215AEPCH1B IS215AEPCH1E AEPC - 20Nm ESS Air Distance Center Control
IS215AEPAH1A IS215AEPAH1C AEPA - 20Nm Air Distance Axle Control
IS215WEPAH1A IS215WEPAH1B WEPA - 30Nm CANBus Air Distance Axle Control
IS215WEPAH2A IS215WEPAH2B WEPA - 30Nm Non-CANBus Air Distance Axle Control
VMIVME-2510B_64_Bit IO board
VMIVME-3113A_Scan motherboard
VMIVME-3114 Analog I/O Board
VMIVME-4905 Parser converter
VMIVME-7750 Front Bus Pentium III Processor
VMIVME-7807 VME SBC Motherboard
VMIVME-7751 VME Single Board Computer
V7865 processor VME single board computer
V7865-ACC-603-RC VME Transition Module for V7865
VMIVME-4116 8-channel 16-bit digital-to-analog converter board
VMIVME-7805 VMEBus SBC Motherboard
VMIVME-2128 Output Module
VMIVME-3100 analog-to-digital conversion module
VMIVME-2170A Isolated Digital Output Module
VMIVME-7740 VME Single Board Computer
VMIVME-2120 64-bit High-Voltage Digital Output Megamodule
VMIVME-4941 Quad-Channel Synchro/Resolver-to-Digital Converter
VMIVME-4116 8-channel 16-bit Digital-to-Analog Converter Board




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Replacing an electrical equipment unit in a plant is a complex task that requires careful planning and execution to ensure safety and minimize downtime. Here is a general step-by-step guide on how to replace electrical equipment in a plant:
Pre-Planning:
Safety Precautions:
Shutdown Procedures:
Disconnection:
Removal of Existing Equipment:
Installation of New Equipment:
Testing and Commissioning:
Documentation:
Training:
Startup:
Throughout the process, it’s important to work closely with a team that includes electrical engineers, technicians, and maintenance staff. Communication is key to a successful equipment replacement. Additionally, always adhere to local electrical codes and standards to ensure compliance and safety. If the task is beyond the expertise of in-house staff, consider hiring a professional contractor experienced in industrial electrical work.
Obtaining industrial automation programming software typically involves the following steps:
Identify Your Needs:
Research Software Options:
Contact Equipment Manufacturers:
Purchase or Download:
Academic or Evaluation Versions:
Open Source Options:
Licensing:
Training and Support:
Legal and Compliance:
Installation and Setup:
Here are some common ways to obtain industrial automation programming software:
Remember to keep your software updated to benefit from the latest features and security patches. Also, ensure that you have the necessary backup and recovery procedures in place to protect your programming work.
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