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A-B 1769-L32E CompactLogix Ethernet Processor

The CompactLogix Modular Controller, part number 1769-L32E, is a programmable automation controller (PAC) from Allen-Bradley. The controller is typically used in machine control and mid-size process applications. The controller incorporates one (1) RS232 and one (1) Ethernet communication port.

The default configuration for the RS232 interface is DF1 full duplex, 19.2 Kbps, no parity, station address 0. no handshaking, BCC error detection, auto-detect embedded response, 8 data bits and 1 stop bit. This default configuration can be manually configured to establish initial communication with the device. If used with RSLinx, autoconfiguration can be used to automatically detect communication settings. The RS232 port can also be configured as an ASCII protocol interface for connection to bar code instruments, typically used in manufacturing processes.

Ethernet communication requires an initial configuration, which can be done via BOOTP-DHCP or downloaded via the RS232 interface. When using BOOTP-DHCP, an Ethernet cable is required to connect the controller to the BOOTP host.

The Allen-Bradley 1769-L32E Compact Logix Controller is available in a unique compact cost-effective package. It incorporates one (1) EtherNet and one (1) serial communication port. It can be connected to the device via a 1747-CP3 or 1756-CP3 cable or an Ethernet cable. It has 750 KB of internal user memory, which can be expanded using the CompactFlash card part number 1784-CF128.

The 1769-L32E comes with a replaceable battery, part number 1769-BA, and supports the installation of up to 16 compact I/O modules, with up to 3 I/O groups connected via 2 expansion cables. 1769-L32E has a (5 V) DC current consumption of 850 mA, and dissipates up to 6.5 watts of heat. 1769-L32E can be easily mounted using either DIN-mounting or panel-mounting. The 1769-L32E can be easily mounted in either DIN or panel mounting, with DIN mounting having an operating shock rating of 30 G and a non-operating shock rating of 50 G, and panel mounting having an operating mode shock rating of 30 G and a non-operating mode shock rating of 50 G. The 1769-L32E can be easily mounted in either DIN mounting or panel mounting.

The 1769-L32E controller has an operating mode vibration rating of 5 G. It can withstand mounting torque forces from 1.1 to 1.8 N-m. The 1769-L32E has an operating temperature range of 0 to 60 degrees Celsius (32 to 140 degrees Fahrenheit), a storage temperature range of -40 to 85 degrees Celsius (-40 to 185 degrees Fahrenheit), and a non-condensing relative humidity range of 0 to 95 percent. The Logix controller has a Group 1 certified emissions (CISPA11) rating and a unique open housing. Stranded wire from 22 to 16 AWG is recommended, while solid wire should be rated from 22 to 14 AWG. The module weighs approximately 2 pounds when shipped and measures 8 x 8 x 5 inches.

A-B 1336-SN-SP6A Inverter Buffer Board Assembly Kit

The 1336-SN-SP6A buffer board assembly kit includes 3 inverter buffer boards and 15 included fastening screws.

Designed to be compatible with Allen-Bradley 1336 Plus, Plus II, Force, and Impact drives.

The AC input voltage is rated at 230 volts and the output power is rated at 40 to 50 horsepower.

It is also compatible with 460-volt AC D-frame drives rated at 60 to 100 horsepower.

The 1336-SN-SP6A board is available as a 575-volt AC power-rated D-Frame 1336 Plus rated between 75 and 100 horsepower,

Plus II, Force, and Impact series drives.

The 1336-SN-SP6A inverter buffer plate is not backward compatible with any previous inverter buffer plate version.

It can only be used as a replacement for a buffer plate with similar dcs-sis.com specifications. Replacing the old buffer plate and installing a new one is very simple.

To install the 1336-SN-SP6A PCB inverter buffer board, remove the case (if any) and switch off the power to the hard disc.

Remove the screws securing the old board, remove the old board, and replace it with the new board.

A-B 1402-LS51 Power Monitoring Line Synchronisation Module

Phase rotation mismatch fault (3-phase sync mode only); No reference bus voltage fault; No sync bus voltage fault; Reference bus overvoltage fault and Sync bus overvoltage fault.

The module’s energy meter functions include a large number of measurable and calculable parameters, in particular current (amperes, per phase and neutral); average current (amperes); positive sequence current (amperes); and

Negative Sequence Current (Amps); Current Unbalance Percentage Voltage (Volts, per phase L-L, also L-N in 4-wire systems).

Average voltage (Volts, L-L, also L-N in four-wire systems); Positive-sequence voltage in Volts; Negative-sequence voltage in Volts; Percentage voltage unbalance.

Frequency in Hertz; phase rotation (ABC, ACB); power factor in per cent (total power factor, also per phase in four-wire systems).

Watts (total watts and watts per phase in a four-wire system); Volt-amperes (total volt-amperes and volt-amperes per phase in a four-wire system).

Varistors (total number of varistors and number of varistors per phase in a four-wire system); Power consumption in kWh.

reactive power consumption in kilovolt-amperes-hours; and demand (amperes, volt-amperes, and watts).

The 1402-LS51 module is a line synchronisation module manufactured by Allen-Bradley/Rockwell Automation.

The Allen-Bradley 1402-LS51 Line Synchronisation Module is a solid-state module, not a hard-wired electromechanical module, which means it is suitable for a variety of industrial applications.

However, it should not be used for safety functions that require sudden surges of power, such as emergency stops.

Attempting to use this solid-state module for dcs-sis.com emergency functions may damage the module, cause it to fail, prevent the emergency or error it was designed to respond to, or cause injury to the user.

The purpose of the Allen-Bradley 1402-LS51 Line Synchronisation Module is to synchronise two different three-phase systems through features such as load sharing, automatic synchronisation, and high-speed power system monitoring.

A-B 1398-DDM-075 Servo Drive Unit Ultra 200 Servo Drive

Description

The Allen-Bradley 1398-DDM-075 is an Ultra 200 series digital servo drive: The Allen-Bradley 1398-DDM-075 is an Ultra 200 series digital servo drive. The servo drive is enabled when the AC input voltage requirement is 100-240VAC rms, single-phase or three-phase, and the input frequency is 47-63 Hz. The drive has peak output currents of 50 amps (single phase input) and 75 amps (three phase input) and continuous output currents of 15 amps (single phase input) and 35 amps (three phase input). Peak output power is 14 kilowatts for single phase, 20 kilowatts for three-phase peak output, and 7.5 kilowatts for three-phase continuous output.

About the 1398-DDM-075

The Allen-Bradley 1398-DDM-075 is an Ultra 200 servo drive. This drive was one of Allen-Bradley’s early servo drive products. It is a microprocessor-based servo drive with built-in functions for managing drive current, speed, and position.Ultra 200 servo drives dcs-sis.com (such as the 1398-DDM-075) are compatible with brushless servo motors.

Specifically, the 1398-DDM-075 has an AC input voltage requirement of 100-240VAC rms, single-phase or three-phase, and an input frequency of 47-63 Hz. It also has an auxiliary input that is isolated from the supply voltage of the main AC input circuit. The auxiliary AC input is rated at 100-240 VAC, single phase, 47-63 Hz, and has an input current of 1.0 amp for 100 VAC and 0.5 amp for 240 VAC.

A-B 1715-OB8DE 1715 Redundant I/O Module 8-Point Digital Output Module

About the 1715-OB8DE

The 1715-OB8DE, manufactured by Allen-Bradley, is a redundant I/O module that is part of the Allen-Bradley Redundant I/O Module 1715 series.

The 1795-OB8DE has a maximum power dissipation of 3 watts. 1715-OB8DE operates at temperatures as low as -25 degrees Celsius and as high as 70 degrees Celsius.

The redundant l/O module is described as an 8-point digital output module with 18 to 16 AWG wire gauge. the unit has a shipping weight of approximately 290 grams.

The 1715-OB8DE is a chassis-based application with DIN rail mounting.

The 1715-OB8DE has an open housing type with a display system that serves as a dashboard for health and status indication of the module.

The 1715-OB8DE has an output signal of 18 to 32 volts DC.The shipping dimensions of the 1715-OB8DE are 1 5/8 inches long, 4 5/8 inches wide, and 6 1/2 inches high.

According to the manufacturer, the 1715-OB8DE is equipped with 18-16 AWG solid core stranded copper wire rated at less than 2 watts.

The 1715-OB8DE has a vibration resistance of 2 grams and a dcs-sis.com shock resistance of 25 grams on DIN rail and in operating condition.

The module has a shock resistance of 30 grams in the non-operating condition and when mounted on a DIN rail, and 50 grams when not mounted.

The 1715-OB8DE is available with current source output type and surge transient immunity.

A-B 1784-PKTXD Industrial Network Interface PC Host Card

The 1784-PKTXD card is an Allen-Bradley network interface card.

The 1784-PKTXD network interface card is used to connect a PC to a PLC controller via a Data Highway Plus (DH+) or SLC processor and a DH485 network.

This allows the device to enable simpler and more efficient data acquisition processes, which are critical for industrial applications.

The 1784-PKTXD card has an I/O scanner function, which is also available on different cards for use with soft or embedded control engines.

The 1784-PKTXD card includes a generic PCI card as a standard feature. Therefore, the card is compatible with different operating systems.

The 1784-PKTXD card can be used in environments where general programming, configuration, and monitoring functions are required from industrial equipment or computer desktops.

The 1784-PKTXD card is ideally suited for use as a network interface card. Therefore, since it is a general purpose card for interconnecting peripheral components, it must be plugged into a PCI bus slot.

If the operator is using a general purpose card, it must be plugged into a PCI bus slot with either 3.3 volt or 5 volt signals.

The 1784-PKTXD card communicates with nodes on the Data Highway Plus network.

These include the PLC-5. PLC-5/250. and SLC 5/04 processors. This component performs data transfer, management, and local network diagnostics.

The 1784-PKTXD card and the host computer exchange data through a dual-port interface.

The dual-port interface requires up to 4 KB of memory starting at the base memory address that the PCI BIOS addresses for the card when booting the PC.

A-B 2711-K10G1 PanelView Standard Operator Interface Terminal


Allen-Bradley’s 2711-K10G1 is part of the Panelview 1000 series and is designed for users to efficiently connect to machines.

Operators can easily enter information and commands through the keypad. There is a clear 10.1-inch greyscale display.

greyscale display. Each module is housed in a durable NEMA 12/13 or 4X type enclosure and uses 85-264 VAC input power.

A printer (RS-232) port and remote I/O port are available for adaptive communications.

The Allen-Bradley 2711-K10G1 PanelView Standard Operator Interface Terminals are the high standard in control system automation.

They are hard at work around the world supporting the automotive, food and beverage, pulp and paper, water and wastewater treatment, and petrochemical industries.

Each 2711-K10G1 standard terminal is UL, cUL/CSA, and CE listed.

They are rated for NEMA 4X (IP54. IP65) and approved for Class 1 Division 2 (flat panel only) operation.

These terminals are designed and engineered for scalability, reliability and compatibility to reduce cost of ownership and increase productivity.

This 2711-K10G1 device displays critical alarm data and records and displays important data that triggers an alarm.

When an alarm is recognised, the operator is notified to troubleshoot the problem.

The 2711-K10G1 supports up to five languages in a single application, switching between English, French, Italian, German, and Spanish text in run mode without the need for an ATA memory card.

Motorola MVME5500 Single Board Computers

The MVME5500 series is designed to meet the needs of OEMs, including those in the defence, aerospace, industrial automation and transportation sectors.

Customers who need to maintain backward compatibility with their existing VMEbus infrastructure while updating the technology for their applications can upgrade to the MVME5500 Series and take advantage of its enhanced performance features.

Backward compatibility

The MVME5500 continues the direction SMART EC has taken since the MVME5100 series, which is to provide a migration path from SMART EC’s embedded controllers and single board computers (SBCs) to a single platform.

This migration path enables OEMs to support different I/O requirements using the same base platform, simplifying part number maintenance, expertise requirements and resource sharing.

The MVME5500 series provides customers with dcs-sis.com a migration path from the MVME2300. MVME2400. MVME2600. MVME2700 and MVME5100 boards.

They can take advantage of features such as the MPC7455 processor, Gigabit Ethernet and dual independent 33/66 MHz PMC stations.

Transition Module

The MVME761 Transition Module provides industry-standard connector access to IEEE 1284 parallel, 10BaseT or 100BaseT ports via RJ-45 connectors.

The MVME761 Transition Module provides industry standard connector access to IEEE 1284 parallel, 10BaseT or 100BaseT ports via RJ-45 connectors, asynchronous serial ports configured as EIA-574 DTEs via two DB-9 connectors, and synchronous/synchronous serial ports via two HD-26 connectors.

These serial ports are labelled Serial 3 and Serial 4 on the MVME761 panel.

These serial ports are labelled as Serial 3 and Serial 4 on the MVME761 panel and can be individually configured as EIA-232. DCE or DTE by the user by installing a SMART EC Serial Interface Module (SIM).

The P2 adapter board provides the interface signals for the MVME761 transition module.

There are two separate P2 adapter boards: one for 3-row backplanes and one for 5-row backplanes.

The 3-row P2 adapter board provides connectivity for 8-bit SCSI. The 5-row P2 adapter board supports 16-bit SCSI and PMC I/O.

Hitachi 500LTD01 Isolated Line Transformer

Applications

The line transformer 500LTD01 is designed for FSK channels in the 50 Bd to 2400 Bd range.

It is used to isolate and protect the RTU500 series modems 23WT23. 23WT25 and 560FSM10 from remote control lines.

In addition, it can be connected to other data terminal equipment.

It is optimised for wire-first communication with a frequency range of 300 Hz to 3400 Hz and a line impedance of 600 ohms for the above modems.

All three types of modems allow high-resistance interleaving on lines such as party lines and multisplit lines.

This is because the line transformer has no additional load on the line.

In configurations using full duplex communication channels, two line transformers are required, one for the transmit direction and the other for the receive direction.

Features

The line transformers can withstand isolation voltages of:

> 10 kV, 50 Hz, 10 sec.

Motorola MVME2400 Series VME Processor Module

The MVME2400 series VME boards offer the performance of Motor ola’s PowerPlus II architecture and can be fully customised to meet the needs of

your applications requiring two PCI mezzanine cards (PMCs). Flexibility

The MVME2400 provides an excellent base platform that can be quickly

and easily customised for a variety of industry-specific applications.

Utilising Motorola’s low-power, high-performance PowerPC750 microprocessor, the Peripheral Component Interconnect (PCI) bus for onboard

peripherals, processor/memory bus to PCI bus bridges and VME interfaces, the

The MVME2400 processor module packages optimal levels of flexibility and performance into a single VME slot

IEEE P1386.1-compliant PMC slot The MVME2400 features dual PMC ports supporting

front panel and P2 I/O. The following are P2 I/O based PMCs

PMC committee recommendations for PCI I/O when using the

VME64 expansion connector will be compatible with pin-outs

MVME2400 in addition to providing high performance expansion I/Os

IEEE P1386.1 compliant PMC ports form a common architecture for future generations.

Simply replacing the PMC meets changing I/O needs while reusing the same base platform, reducing long-term cost ownership.

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