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Allen Bradley - PLC

Micro 830

Allen Bradley Micro 830 Selection Guide

For those looking to take advantage of industrial automation, this selection guide is an excellent tool. The appropriate programmable logic controller (PLC) is crucial in today's rapidly evolving technological environment, where productivity and efficiency are highly significant. Allen Bradley's Micro 830 series has become a top option for many sectors thanks to its extensive feature set and adaptability to different automation requirements. The selection guide aims to provide readers with a thorough understanding of the Micro 830 PLC series so they can make wise judgments and streamline their automation procedures. This series reflects a development in small, affordable automation systems. These PLCs provide great capability for small to medium-sized applications and are built on a strong foundation of dependability and performance. The Micro 830 series provides users with versatility and ease of use thanks to a wide range of built-in I/O choices and a simple programming environment, making it the perfect alternative for inexperienced and seasoned automation specialists.

The selection guide looks into the numerous Micro 830 series models and configurations available, allowing customers to pick the PLC that best meets their unique needs. The guide gives customers comprehensive information on the possibilities available, enabling them to customize their automation solutions to meet their specific demands, whether digital and analog I/O modules, communication options, or extension capabilities. The selection guide also emphasizes the Micro 830 series' networking capabilities, highlighting its ability to interact with various industrial networks and protocols. As a result, the automation ecosystem benefits from seamless interaction with other hardware and software, fostering interoperability and enabling effective data interchange.

2080-LC30-10QWB Module:

There are 10 I/O channels in this controller module. This product's on-state voltage range for accurate voltage control ranges from 16.8 to 26.4 volts DC at 65 degrees Celsius and 16.8 to 30.0 volts DC at 30 degrees Celsius. The 5-watt energy usage value of the controller module enables effective resource use. This programmable controller has a small physical footprint, measuring 90 mm by 100 mm by 80 mm, making it easy to integrate into industrial settings with limited space. To guarantee dependable performance in varied industrial situations, this module features a set of strong environmental standards. 0 to 55°C (33-132℉) is the temperature range in which it can work, whereas -42 to 84°C (-40-185℉) is the temperature range in which we can store it. The PLC can operate in fluctuating moisture levels thanks to its relative humidity tolerance of 5 percent to 95 percent. It is appropriate for industrial settings since it can resist mild amounts of vibration of 5 g from 15-500 Hertz and shock of 30 grams. Without any derating, the module is built for altitudes up to 2000 meters (6561 feet). It is also designated for use in Pollution Degree 2 situations, demonstrating its capacity to handle mild pollution.

2080-LC30-16QWB Module:

This module has six normal DC inputs and four high-speed DC inputs, allowing versatility for various applications. The high-speed DC inputs, which include inbuilt counters capable of handling frequencies up to 100 kHz, are especially beneficial for motion control applications. The highest OFF state current is 1.5 milliamperes, whereas the normal current for the common DC inputs is 7.66 milliamperes. The module has six relay standard outputs that can handle voltages ranging from 5 volts DC or 5 volts AC up to 125 volts DC or 265 volts AC on the output side. It's crucial to safeguard the relays based on the kind of load and applied voltage to avoid arching. For a 24V DC load, the current should not exceed 1 amp, but a 120V AC continuous current must not exceed 2 amps. A maximum of one thousand words, each made up of 12 bits, can be stored in the instruction memory. This device also provides eight (8) kb of room for data storage. The module uses a combination of retentive and non-retentive memory to avoid data loss during power outages or hardware malfunctions. This module performs best at temperatures between -20 and 65°C and has effective relative humidity levels between 5 percent and 95 percent. These requirements guarantee dependable operation and effective functioning for different industrial processes.

2080-LC30-48AWB Module:

This module has 48 I/O connections and is built with dimensions of 3.55 x 9.07 x 3.16 inches. There are 28 standard AC inputs and 20 standard relay outputs spread between these terminals. Although it lacks a high-speed counter for inputs, its primary use is for activities using Alternating Current voltage. There are some restrictions on the input and output voltage levels and the current ratings to guarantee its endurance and lifetime. The normal input current is set at 12 milliamps, and the maximum permitted input current is 16 milliamps. The inputs' versatility for diverse applications comes from their ability to be set up as sinking or sourcing inputs. This module's nominal input voltage is 120V Alternating Current. The module's maximum output voltage is set at 135V Direct Current or 275V Alternating Current with conventional relays in the output. Important to keep in mind is that the maximum load current should not be more than 2.0 amps, and the lowest load current should not be less than 10 milliamperes. To reduce the impact of inductive load, outputs must be shielded using surge suppressors or similar protective devices. It features one USB connector and one RS232/RS485 combination port, but it also has various hardware plug-in choices that allow for the realization of a wide range of application kinds. -4 to 149 degrees Fahrenheit is the typical operational temperature range. The maximum number of words in the memory used for PLC instructions is 10,000, and the maximum data space is 20 kilobytes. The program is loaded into the EEPROM memory using a USB interface for programming purposes.

2080-LC30-48QWB Module:

This module features 48 I/O interfaces, which include 28 input points and 20 output points. This device can support solid and stranded copper wires, ensuring efficient electrical conduction. The minimum and maximum wire sizes advised are 0.2 mm^2 and 14 AWG, respectively, and vary from 0.2 mm^2 to 2.5 mm^2. To achieve the best results, it is important to follow these guidelines:

Securing connections during installation is possible with a maximum rated screw torque of 0.6Nm. It's critical to ensure the screws are tightened properly to keep dependable electrical connections. The module is categorized as a Class A kind of equipment, which means that owing to potential disruptions induced by conduction, radiation, and other variables, it may not be acceptable for specified situations. This idea emphasizes how critical it is to thoroughly analyze the operational environment before implementing the PLC. It has high-speed 24-volt sink/source input circuits and typical 12/24-volt sink/source input circuits. This adaptability enables flexibility in responding to various input needs. Without plug-in modules, the device's maximum power consumption rating is 11 watts; with them, it is 18.2 watts. The power supply voltage range of this module is 20.4 to 26.4 volts DC.

2080-LC30-16AWB Module:

This module has 10 conventional AC inputs and 6 relay outputs. Convenient wiring arrangements are implemented by dividing the input terminals into two groups, each with a similar terminal. The nominal on-state current is set at 12 milliamperes, and the inputs are made to accommodate 120 volts AC with a current rating of 16 milliamperes. The greatest number of words that can fit in the PLC's memory space is 10,000, each comprising 12 bits. It also has a maximum data storage capacity of 8 kilobytes. The memory is split between retentive and non-retentive sections to protect program instructions and data, maintaining data integrity in the case of power shortages or hardware problems. The effective working temperature for this module is between -4 and 149 degrees Fahrenheit. Its connectivity possibilities and integration skills are enhanced because it supports various interfaces and protocols, enabling connections to networks like DeviceNet and/or Ethernet/IP. The output relays, which demand surge protection, require special consideration. The maximum continuous output current while using 24 volts DC shouldn't be more than 1 amp. There are particular restrictions for the output relays to take into account, such as the lowest output voltage (5V DC or 5V AC), the maximum output voltage (125V DC or 265V AC), the minimum load current (10 milliamperes), and the maximum load current (2.0 amps). Surge suppressors must be fitted across the relay connections when using inductive loads.

2080-LC30-24QWB Module:

This module is a controller with integrated I/O capabilities. 14 inputs and 10 outputs make up the 24 I/O points available. The inputs are split into two categories: regular circuits supporting 12/24V sink/source and high-speed input circuits supporting 24V sink/source. Both types of inputs include relay outputs. This module supports event interrupts for effective operation and has a 12.32W power consumption. The module has seven standard-speed DC inputs (input8 to input13) and eight high-speed DC inputs (input0 to input7), all of which can accommodate sink/source voltages of up to 24V DC. The nominal impedance of the high-speed inputs is 3 kiloohms, whereas that of the regular inputs is 3.74 kiloohms. Additionally, 8ms input filtering is advantageous for all inputs. The module has 10 relay outputs, each of which may produce voltages between 5 and 125 V DC and 5 and 265 V AC. It is intended to function between -42 and 84°F (non-operating) and -4 and 149°F (operating). Moreover, this module’s effective humidity range is between 5 percent and 95 percent. These requirements guarantee consistent performance under varied environmental circumstances. It uses solid copper wire with a size range of 0.2 mm^2 to 2.5 mm^2 and insulation temperatures up to 194°F. The module weighs around 0.933 pounds and has approximate dimensions of 3.54 inches by 5.91 inches by 3.15 inches. With a 250-volt rating, the isolation voltage offers trustworthy electrical separation. It also has an insulation length of 0.29 inches for overheating protection.

2080-LC30-48QVB Module:

This module provides plenty of versatility for different applications because of its 48 I/O ports in total, comprising 28 inputs and 20 outputs. The handy division of the input terminals into two groups of 6 and 4, each with a common terminal that allows for simple wiring layouts. The input’s 16-milliampere current rating ensures dependable operation when operating at a nominal voltage of 120V AC. A maximum of 1,000 words of instructions and 8 kb of data may be stored in the PLC's memory, which has retentive and non-retentive memory portions to protect program instructions and data in the event of hardware failure or power outage. Relays connected to the output, which can sustain an output current of 1 ampere for 24V DC, require surge protection. The PLC can operate successfully in various situations because of its functioning temperature range of -5 to 150 degrees Fahrenheit. It is created to comply with a Class A environment and has an IP20 Ingress Protection certification, offering reliable object protection. The PLC supports Multiple interfaces and protocols, enabling easy integration with Ethernet/IP and/or DeviceNet networks.

Conclusion:

The Micro 830 series modules offer dependable performance and effective resource management. They provide memory storage capabilities for data and program instructions, preserving data integrity in the case of hardware or power failures. The modules are suited for diverse industrial applications since they function within predetermined temperature ranges, demonstrate resilience to environmental conditions, and adhere to requirements. Their networking features enable smooth communication with other hardware and software, simplifying efficient data transfer and fostering interoperability. The PLCs may connect to many automation ecosystems thanks to support for interfaces and protocols, including DeviceNet and Ethernet/IP.

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