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A-B Rockwell 1326AS-B440G-21-A Brushless Servo Motor

The 1326AB-B720E-21 servo motor is designed and manufactured by Allen-Bradley/Rockwell Automation.

It is part of the Allen-Bradley Bulletin 1326 servo motor series.

The Allen-Bradley/Rockwell Automation 1326AS-B440G-21-A Servo Motor

is a 1326-volt AC-class brushless servo motor from the Allen-Bradley Bulletin 460 series.

It is equipped with a metric flange with keyway and has an environmental rating of IP 65.

The 1326AS-B440G-21-A brushless servomotor can operate at low inertia and high acceleration.

Its 4-inch magnet pack contains powerful iron, boron, and neodymium magnets.

It **runs at 5350 RPM** and has a rated output of 2 kW.

The 1326AS-B440G-21-A brushless servomotor has a stator size of approximately 100 mm.

The 1326AS-B440G-21-A servomotor is part of the 1326A series, which typically utilizes a neodymium-iron-boron permanent magnet rotor.

They offer low inertia, enhanced peak torque, and higher acceleration.

This brushless 460-volt servo motor is designed for use with the Allen Bradley 1394 motion control system.

It has a very compact and economical design for efficient operation in harsh environments.

The 1326AS-B440G-21-A also features a three-phase sinusoidal wound stator field for smooth operation at low speeds.

The motor’s housing is heat-resistant through the extruded aluminum housing, which supports improved heat transfer.

The motor utilizes TENV construction (totally enclosed, non-ventilated), a type of motor used in a variety of smaller horsepower variable speed applications.

This type of construction is typically effective when the fan is exposed to regular clogging and dust or lint.

This motor is rated at 460 RPM at 5250 volts.

A-B Rockwell 1756-TBNH Removable Terminal Block or RTB Module

The 1756-TBNH detachable terminal block can be used with up to 20 wires at a time.

The Allen-Bradley 1756-TBNH is a removable terminal block (RTB) for the 1756 I/O module.

It is an I/O module accessory and must be ordered separately.

The 1756-TBNH provides flexibility in interconnecting 1756 I/O modules and industrial plant wiring. It plugs into the front of the I/O module.

The 1756-TBNH removable terminal block is a 20-position NEMA screw clamp.

It has a screw torque of 1.36 Nm and a screwdriver width of 8 mm (5/16 in.)**.

It measures 5.51 x 4.41 x 5.71 inches. It weighs 0.3 lbs.

Wiring must be done with 0.33 – 2.1 mm-^2 (22 – 14 AWG) solid or stranded copper wire.

rated for 90 °C (194 °F) or higher,** with 1.2 mm (3/64 in.) of insulation.

Do not connect more than two conductors to any single terminal.

Each ControlLogix I/O module is mounted on any ControlLogix chassis and requires a removable connector.

Each ControlLogix I/O module is mounted on any ControlLogix chassis and requires a removable terminal block (RTB) for all field-side wiring.

Each I/O module has many applications, from high-speed digital processing to process control.

In the ControlLogix architecture, input and output states are shared between multiple controllers in the same or different chassis using producer-consumer technology.

The 1756-TBNH RTB is intended for use in clean, dry industrial environments with operating temperatures of 0-60 °C and 30 g of operating shock.

Foxboro FBM204 Interface Module

OVERVIEW

The FBM204.0 to 20 mA Input/Output consists of four 20 mA dc analog input channels and four 20 mA dc analog output channels.

Each input channel accepts an analog sensor input or a self-powered 20 mA supply.

Each output channel drives an external load to produce a 0 to 20 mA output.

The inputs/outputs are electrically isolated from other inputs/outputs on channel and ground.

The FBM204 performs the signal conversion required for electrical input interfaces/output signals from field sensors to an optional redundant fieldbus.

The FBM204 performs analog I/O applications that provide configurable options for the following functions: conversion time,

Fail Safe Configuration (Hold/Return) and Analog Output Fail Safe Return Data (on a per channel basis).

The Fieldbus Module (FBM) can alternatively perform the fast control loops in which Distributed PIDA (DPIDA) applications provide operation.

The FBM204 is electrically compatible with standard HART signals.

Features

-Four 20 mA dc analog input channels

-Four 20 mA dc analog output channels

-Each input and output channel is galvanically isolated

-Ruggedized design for use in Class G3 (harsh) environment enclosures

-Performs analog I/O applications with configurable options for conversion time and change rate limits

-High accuracy through sigma-delta data conversion per channel

-Terminal assembly (TA) for local or remote connection of field wiring to the compact FBM204

-TA for output bypass station to maintain output operation during maintenance

3-tier terminal assembly power transmitter with internal and/or external loops for each channel

-Supports DPIDA control block with high accuracy

GE General Electric DS200AAHAG1AD ARCNET Connector Boards

Product Description

The DS200AAHAG1AD is an ARCNET connector board manufactured by General Electric as part of the Mark V LM SpeedtronicTurbine control system.

Mark V LM manual GEH-6353B clearly summarizes the function of the DS200AAHAG1AD in the control system. The board is referred to by its acronym AAHA.

The DS200AAHAG1AD, abbreviated AAHA, is part of the Speedtronic Mark V LM control panel.

The board is capable of providing connectivity and interface functionality between a control engine with an I/O core and external hardware.

The control engine is typically located within the core. The kernel typically requires the use of two AAHA boards.

One board is used to facilitate the stage link between the user interface and the core.

The second board is capable of connecting the core to COREBUS.

This link allows communication between the I/O core and the control engine.

The DS200AAHAG1AD is plugged in and installed to operate without any type of hardware or software modification.

The AAHA board is relatively small. It has an EBNC connection port that is not normally used.

It has one ARCBNC-B labeled P1 and one ARCBNC-A port labeled P1.

These ports are BNC ARCNET communication ports. There is an E2 and E1 LED indicator.

There is an EPL 9-pin connection that is not normally used and an APL 10-pin connection port that is used as an ARCNET communications link.

GE General Electric DS200AAHAG1AD ARCNET Connector Boards

Product Description

The DS200AAHAG1AD is an ARCNET connector board manufactured by General Electric as part of the Mark V LM SpeedtronicTurbine control system.

Mark V LM manual GEH-6353B clearly summarizes the function of the DS200AAHAG1AD in the control system. The board is referred to by its acronym AAHA.

The DS200AAHAG1AD, abbreviated AAHA, is part of the Speedtronic Mark V LM control panel.

The board is capable of providing connectivity and interface functionality between a control engine with an I/O core and external hardware.

The control engine is typically located within the core. The kernel typically requires the use of two AAHA boards.

One board is used to facilitate the stage link between the user interface and the core.

The second board is capable of connecting the core to COREBUS.

This link allows communication between the I/O core and the control engine.

The DS200AAHAG1AD is plugged in and installed to operate without any type of hardware or software modification.

The AAHA board is relatively small. It has an EBNC connection port that is not normally used.

It has one ARCBNC-B labeled P1 and one ARCBNC-A port labeled P1.

These ports are BNC ARCNET communication ports. There is an E2 and E1 LED indicator.

There is an EPL 9-pin connection that is not normally used and an APL 10-pin connection port that is used as an ARCNET communications link.

GE Fanuc IC200CHS212 Plug-in Relay Extension Base

The expansion base uses a box connector. It supports output voltages in the range of 0 to 125 volts DC with nominal voltages of 5. 24. and 125 volts DC.

For the voltage range of 8 to 5 volts AC, this expansion base has a load current of 265 amps per point.

The IC200CHS212 chassis is constructed of high quality materials.The Versamax module provides high performance and is a cost-effective industrial solution.

The expansion relay has ports for connection to programmers and handheld devices.

It is designed with open architecture and should be protected from dust, dirt and contaminants. The temperature of the module should not exceed 60 degrees Celsius.

The IC200CHS212 is GE’s 16-point I/O relay expansion base. The relay is replaceable, labeled 8 amps and fused.

The VersaMax I/O Modules IC200MDL740 and MDL750 provide 24 VDC O.5A outputs to control the IC200CHS212 relays.

The IC200CHS212 dimensions (excluding DIN rail height) are 253.7 mm (9.9 in.) x 126 mm (4.95 in.) x 73 mm (2.8 in.).

Power supply modules such as the IC200CHS212 snap onto all Versamax interface units or power booster carriers.

Any power supply can be specified as the main power supply for modules in an I/O station or as an additional power supply for large I/O applications.

The IC200CHS212 and other VersaMax I/O plug-in disconnect bases enable the IC200CHS003 to connect to a variety of termination bases.

Relay bases provide more protection and higher current output. The relays are controlled by the outputs of the VersaMax I/O modules.

Users can easily disconnect each point signal from the I/O module by disconnecting the base. The module’s field terminals can also be removed.

The relays located on the plug-in terminals are intended to be controlled using a typical 24 VDC 0.5 VersaMax output module.

GE Fanuc IC200ALG432 Hybrid Analog Module

About the IC200ALG432

The GE Fanuc IC200ALG432 module is a hybrid analog module that runs on a 10-volt DC power supply.

It is a 12-bit module equipped with 4 channels and 2 output channels.

The analog module has an update rate time of 0.4 milliseconds and an input response time of 5 milliseconds.

The analog module requires an external power supply to power the outputs. The inputs of the module are powered by the external power supply of the transceiver.

The CPU is present in the module that handles the operation. the IC200ALG432 module has LEDs on the front of the module that indicate the flow of power and backplane currents.

No thermal derating occurs in this hybrid module. the IC200ALG432 module draws a total of 160 milliamps of current during normal operation. including load current.

The diagnostic feature of the module helps to detect the loss of power on the user side.

It provides four channels and two channel outputs. The outputs require a 24V external power supply and the inputs are powered from the transceiver’s external power supply.

The CPU or NIU performs intelligent processing of the IC200ALG432 module. Includes 4 words of analog input data and 2 words of analog output data.

This IC200ALG432 uses LEDs to indicate the presence of user-side power for analog field-side circuits as well as backplane power.

The LEDs emit a green light when operating as intended. When properly installed, this module reports the loss of user-side power failure for field-side circuits and conveniently sets up jumpers for outputs.

The IC200ALG432 can be set to maintain the last state or default values even if the backplane or field power is temporarily interrupted. The module reports the loss of user-side power failures for field-side circuits.

GE Fanuc IC200DTX850 Versamax Series Data Terminal

About IC200DTX850

The IC200DTX850 terminal is a data display terminal manufactured by GE Intelligent Platforms/GE Fanuc for the GE Versamax product line.

These Versamax series data terminals, including the GE Fanuc IC200DTX850 terminal, are specifically designed for use in a variety of applications that

Including simple timer and counter applications, they can also display full text messages.

These terminals can be controlled by the user via a numeric keypad. Connecting a Versamax Nano or Micro PLC to the terminals is easy and requires no user configuration.

Because these Versamax terminals are pre-programmed, the GE Fanuc IC200DTX850 Operator Interface Terminal specifically supports up to 200 stored messages.

The GE Fanuc IC200DTX850 Data Display Terminal also has an LCD backlight for the screen.

It has a keypad with 8 keys for control functions and requires the IC200BL555 cable or equivalent to support its operator interface.

The data panel operates on an external power supply rated at 24 volts DC and 50 milliamps.

The GE Fanuc Versamax IC200DTX850 data display terminal measures approximately 182 x 101 x 37 mm.

It has an operating temperature range of 0 to 50 degrees Celsius.

The IC200DTX850 data interface terminal has an RS-232 serial port for communication purposes.

This port is designed for different commands, including serial input/output commands, Modbus RTU slave commands or SNP slave commands.

In addition, this data terminal is compatible with the Data Designer software.

The Versamax controllers compatible with this terminal are available in micro and nano models, which are small in size, while offering powerful control and a high level of performance.

A-B Rockwell 1771-WD Field Wiring Arm

About the 1771-WD

The Allen-Bradley/Rockwell Automation 1771-WD Field Wiring Arm is a field wiring arm.

The arm is used with a variety of modules, such as the Allen-Bradley 1771 Digital Contact Output Modules (1771-OW, 1771-OYL, 1771-OZL).

Allen-Bradley 1771 digital AC output modules (1771-OD, 1771 ODZ, 1771-OR)

and Allen-Bradley 1771 Digital AC/DC Input Modules (1771-ID, 1771-ID01).

Note that the 1771-WD field wiring arm is used to connect the modules. The wiring arm attaches to the pivot bar on the bottom of the I/O chassis.

The field wiring arm rotates upward and connects to the module, allowing the module to be installed or removed without disconnecting wires.

Disconnect power from the module before connecting to the Allen-Bradley 1771-WD field wiring arm.

To make the connection, swing the junction arm to a position on the front of the module where the locking tabs on the module hold the 1771-WD field junction arm in place.

The actual connections should be followed after this step. Note that there is 1 wire per terminal.

However, if more than one connection needs to be made to a terminal, an auxiliary terminal strip should be used.

Note that the field wiring arm terminal identification number is different from the bit number that controls the specific output.

The Allen-Bradley 1771-WD field wiring arm supports 7 to 9 pounds of screw torque on one inch.

To indicate that a field load has been applied to the field wiring, all of the module’s status indicators will be illuminated.

Note that the 1771 gauge wire connected to all terminals on the 14-WD field wiring arm may not allow the field wiring arm cover to close.

Therefore, a smaller gauge wire may be required when this occurs.

A-B Rockwell 1794-ASB Remote I/O Communication Adapter Module

About the 1794-ASB

The 1794-ASB is an Allen-Bradley Remote I/O Communications Adapter Module. It is part of the Flex I/O product family of distributed I/O modules.

The 1794-ASB has one (1) remote I/O interface. This RIO protocol is a legacy protocol that connects devices to the RIO scanner using a Biotronik 9463 or equivalent cable.

The module is compatible with Allen-Bradley legacy controllers such as PLC2. PLC3. and PLC5 controllers as well as the SLC500 automation platform.

It can also be used with modern Logix controller platforms as well as third-party devices and includes partner modules.

The 3-ASB sends and receives data to and from the controller via the Block Transfer Read (BTR) and Block Transfer Write (BTW) instructions.

Using these instructions, packets can be sent simultaneously or sequentially, depending on the desired speed.

The 1794-ASB supports communication rates of 1794.57Kbps, 6.115Kbps, and 2.230kbps.

The module’s expected supply voltage range is 4VDC-11.31VDC, including 2% AC ripple, compared to the nominal 5VDC supply.

It supports the installation of up to eight (24) Flex I/O modules for successful implementation of distributed I/O architectures.

The module features built-in status indicators such as a power indicator, adapter activity indicator, adapter fault indicator, and local fault indicator.

The module is mounted on a standard DIN rail and has an open housing, which means the 8-ASB needs to be mounted in a proper enclosure to protect the equipment from industrial components and contaminants.

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