IC695CMM002 RX3i serial communications module
IC695CMM002 RX3i serial communications module
There are three models of embedded baseplates, the 311, 313, and 323. These model
numbers are based upon the CPU type that each contains. This chapter discusses only
the baseplate features of these products. CPU specifications for the embedded CPU are
located in Chapter 4. The embedded CPU baseplates have the following features:
The CPU type cannot be changed.
They do not support the use of expansion or remote racks, so these racks do
not have an expansion connector like the modular CPU baseplates do.
The models 311 and 313 are 5-slot baseplates, and the model 323 is a 10-slot
baseplate.
Since they do not require a plug-in CPU module, all numbered slots,
including Slot 1, can be used for I/O or Option modules.
The memory back-up battery is located in the Power Supply module; so if
the Power Supply is unplugged from the baseplate, the battery will be
disconnected from the memory circuits, which are located on the backplane
circuit board. However, the backplane circuit board contains a high value
capacitor, sometimes called a ”super capacitor,” that can store enough charge
to maintain the memory circuits for about 1 hour if the Power Supply is
removed or its battery is disconnected. Chapter 6 discusses the
IC693ACC315 Battery Accessory kit that can be used to maintain memory
contents when the Power Supply is removed from an embedded CPU
baseplate.
There are no configuration switches or jumpers on the Model 311, 313, or
323 baseplates.
An embedded CPU baseplate is always assigned, by default, Rack Number
Zero (0).
A Power Supply module must be plugged into the left slot (which is not
numbered) of these baseplates. The left slot is a unique size and type that
only supports a Power Supply module.
A CPU module (or a special Option module) must be installed in Slot 1 of
these baseplates. Slot 1 is a unique size and type that only supports a CPU
module or a special Option module like the FIP Remote I/O Scanner
(IC693BEM330). Slot 1 is labeled CPU/1.
Slots numbered 2 and above are of a unique size and type that only
supports I/O or Option modules.
Expansion and Remote baseplates are supported, so a 25-pin D-type female
expansion connector is located at the right end of the baseplate for
connecting to an Expansion or Remote baseplate.
Since the CPU is modular, it can be replaced or changed to a different type if
additional features are desired.
Only one CPU baseplate is allowed per system. If more than one baseplate
is used in a system, the additional ones must be either Expansion or Remote
types.
A modular CPU baseplate is always assigned, by default, Rack Number 0.
The Series 90-30 I/O modules described in this manual can be controlled two ways:
1. With a Series 90-30 Programmable Logic Controller (PLC).
2. With a Personal Computer (PC) that has an installed Personal Computer Interface card (or
similar interface). This allows software on the PC to control and monitor Series 90-30 I/O.
If you are using Series 90-30 I/O as part of a Series 90-30 PLC system, you should refer to
GFK-0356, the Series 90-30 Programmable Controller Installation manual, for more information.
If you are using a Personal Computer to control the Series 90-30 I/O, refer to the documentation
for the PCIF, your Personal Computer, and your application software for more information.
In addition to Series 90-30 I/O modules, the I/O system supports a wide variety of option
modules, such as
Genius Communications and Bus Controller
Communications Control module (for serial communications)
Programmable Coprocessor Modules and Alphanumeric Display Coprocessor
Motion control and High Speed Counter modules
Ethernet interface,
Various bus controllers.
State Logic modules
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IC695ALG626RS Refurbished Analog Input HART module, 16 channels single ended, 8 channels differential,channels are configurable for voltage,current and current/ HART. Supports Current: 0 to 20mA, 4 to 20mA, +/- 20mA; Voltage: +/- 10V, 0 to 10V, +/- 5V, 0 to 5V, 1
IC695ALG628 Analog Input HART module, 8 channels single ended, 4 channels differential,channels are configurable for voltage,current and current/ HART. Supports Current: 0 to 20mA, 4 to 20mA, +/- 20mA; Voltage: +/- 10V, 0 to 10V, +/- 5V, 0 to 5V, 1 to 5V. The
IC695ALG628RS Refurbished Analog Input HART module, 8 channels single ended, 4 channels differential,channels are configurable for voltage,current and current/ HART. Supports Current: 0 to 20mA, 4 to 20mA, +/- 20mA; Voltage: +/- 10V, 0 to 10V, +/- 5V, 0 to 5V, 1 t
IC695ALG704 Analog Output Module, 4 channels,that is configurable for voltage and current, configured for Current: 0 to 20mA, 4 to 20mA; Voltage: +/- 10 VDC, 0 to 10VDC per channel non isolated. Up to 16 bit resolution. Requires high capacity terminal block IC
IC695ALG704CA Conformal Coated Analog Output Module,4 channel voltage/current. Module does not include terminal block.
IC695ALG708 Analog Output Module, 8 channels,that is configurable for voltage and current, configured for Current: 0 to 20mA, 4 to 20mA; Voltage: +/- 10 VDC, 0 to 10VDC per channel non isolated. Up to 16 bit resolution. Requires high capacity terminal block IC
IC695ALG708CA Conformal Coated Analog Output Module,8 channel voltage/current. Moduledoes not include terminal block.
IC695ALG708LT Low Temperature Tested (-40 to 60C) Analog Output Module, 8 channels,that is configurable for voltage and current, configured for Current: 0 to 20mA, 4 to 20mA; Voltage: +/- 10 VDC, 0 to 10VDC per channel non isolated. Up to 16 bit resolution. Requ
IC695ALG728 Analog Output HART Module, 8 channels,that is configurable for voltage, current, current/HART configured for Current: 0 to 20mA, 4 to 20mA; Voltage: +/- 10VDC, 0 to 10VDC per channel non isolated. Up to 16 bit resolution. Requires high capacity ter
IC695ALG808 Isolated Analog Output module, 8 channels, that is configurable for voltage and current. Requires high capacity terminal block IC694TBB032 or IC694TBS032.
IC695ALG808CA RX3i Isolated Analog Output module conformal coated, 8 channels, that is configurable for voltage and current. Requires high capacity terminal block IC694TBB032 or IC694TBS032.
IC695CBL001 Energy Pack Cable, 3 ft. (0.91m)
IC695CDEM002 RX3i type 2 demo case for Chinese market. Demo includes CPU, power supply, Ethernet, input simulator, output with ESCP, high speed counter, Universal analog and analog output modules. Demo also includes QuickPanel control/view includes thermocouple
IC695CEP001 RX3i CEP CARRIER W/ RJ45 COPPER ETHERNET
IC695CHS007 7 Slot Universal Base. Slot 0 limited to power supply (IC695PSxxx) only and slot 6 is a PCI slot only (IC695xxx). Slots 1 through 5 support both PCI and high speed serial connection (IC695xxx and IC694xxx)
IC695CHS007CA RX3i 7-slot Universal Backplane Conf Coa
IC695CHS007LT RX3i 7-slot Universal Backplane Low Temperature tested.
IC695CHS012 RX3i 12 slot universal base
IC695CHS012CA RX3i 12 slot universal backplane. Conformal Coated.
IC695CHS012LT Low Temperature Tested (-40 to 60C) RX3i 12 slot universal base
IC695CHS016 RX3i 16 universal modules slots base
IC695CHS016CA RX3i 16 universal slots backplane with conformal coating.
IC695CHS016LT Low Temperature Tested (-40 to 60C) RX3i 16 universal modules slots base
IC695CMM002 RX3i serial communications module. Two isolated RS-232/485 port. Supports Serial Read/Write and Modbus Master/Slave. Requires Unversal Backplane.
IC695CMM002CA RX3i serial communications module. Two isolated RS-232/485 port. Supports Serial Read/Write and Modbus Master/Slave. Requires Unversal Backplane. Conformal Coated
IC695CMM002LT Low Temperature Tested (-40 to 60C) RX3i serial communications module. Two isolated RS-232/485 port. Supports Serial Read/Write and Modbus Master/Slave. Requires Unversal Backplane.
IC695CMM004 RX3i serial communications module. Four isolated RS-232/485 port. Supports Serial Read/Write and Modbus Master/Slave. Requires Unversal Backplane.
IC695CMM004LT Low Temperature Tested (-40 to 60C) RX3i serial communications module. Four isolated RS-232/485 port. Supports Serial Read/Write and Modbus Master/Slave. Requires Unversal Backplane.
IC695CMU310RS Refurbished The CMU310 is on marketing hold due to component shortage. Please quote
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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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