1756-L71 1756-L72 1756-L73 1756-L74 1756-L75
1756-L7x ControlLogix Controllers 1756-L71
Attribute 1756-L71 1756-L72 1756-L73 1756-L74 1756-L75
User memory 2 MB 4 MB 8 MB 16 MB 32 MB
I/O memory 0.98 MB
Optional nonvolatile memory storage 1 GB (1784-SD1 ships with every controller) 2 GB (1784-SD2)
Digital I/O, max 128,000 Analog I/O, max 4000 Total I/O, max 128,000
Energy storage module
• 1756-ESMCAP capacitor energy storage module (removable, ships installed with every controller)
• 1756-ESMNSE capacitor energy storage module (removable, no residual WallClockTime power backup)
• 1756-ESMNRM capacitor energy storage module (nonremovable, secures controller by preventing USB connection an d SD card use)
Current draw @ 1.2V DC 5 mA
Current draw @ 5.1V DC 800 mA
Power dissipation 2.5 W
Thermal dissipation 8.5 BTU/hr
Isolation voltage 30V (continuous), basic insulation type, USB port-to-system Type tested at 500V AC for 60 s
USB port(1) (1) The USB port is intended for temporary local programming purposes only and not intended for permanent connection. Do not use the USB port in hazardous locations. USB 2.0, full speed (12 Mbps)
Weight, approx 0.25 kg (0.55 lb)
Slot width 1
Module location Chassis-based, any slot Chassis 1756-A4, 1756-A7, 1756-A10, 1756-A13, 1756-A17
Power supply, standard 1756-PA72, 1756-PA75, 1756-PB72, 1756-PB75
Power supply, redundant 1756-PA75R, 1756-PB75R, 1756-PSCA2
Wire category(2) (2) Use this conductor category information for planning conductor routing. Refer to Industrial Automation Wiring and Grounding Guidelines, publication 1770-4.1. 3 - on USB port
North American temperature code T4A
IEC temperature code T4
Enclosure type rating None (open-style)
ControlLogix Controller Catalog Numbers 1756-L61, 1756-L62, 1756-L63, 1756-L63XT, 1756-L64, 1756-L65, 1756-L71, 1756-L72, 1756-L73, 1756-L73XT, 1756-L74, 1756-L75
GuardLogix Controller Catalog Numbers 1756-L61S, 1756-L62S, 1756-L63S, 1756-LSP, 1756-L71S, 1756-L72S, 1756-L73S, 1756-L7SP, 1756-L73SXT, 1756-L7SPXT
ControlLogix Redundancy Catalog Numbers 1756-RM, 1756-RMXT, 1756-RM2, 1756-RM2XT
1756-L71 Module Rockwell ControlLogix 2 MB Memory Control
1756-L72 Module Rockwell ControlLogix 4 MB Memory Control
1756-L72S Module Rockwell Logix 5572S Automation Memory Control 4M/2M
1756-L73 Module Rockwell ControlLogix 8 MB Memory Control
1756-L73S module Rockwell Logix 5573S Automation memory control 8M/4M
1756-L73SXT Module Rockwell Logix 5573SXT Automation Memory Control 8/4M
1756-L73XT module Rockwell ControlLogix 8MB memory control L7XT
1756-L74 Module Rockwell ControlLogix 16 MB Memory Control
1756-L75 Module Rockwell ControlLogix 32 MB Memory Control
1756-L7SP Module Rockwell Logix L7SP SIL 3 PLe Safety Partner
1756-L7SPXT Module Rockwell Logix L7SPXT SIL 3 PLe Safety Partner
1756-LSC8XIB8I Module Rockwell ControlLogix 8 Point Counter Input
1756-LSP Module Rockwell GuardLogix Safety Partner
l***= (VIP) 2022-04-09 04:14:12
I need your help to inject the program into the product, do you have a technical engineer?
Mall Customer Service >2022-04-09 04:15:49
Yes, it can help you, you just need to send us your specific requirements by mail. There will be customer service for you!
l***= (VIP) 2022-04-09 04:13:02
Hello, how can I buy your products?
Mall Customer Service >2022-04-09 04:13:58
Hello friends, you need to contact us by phone or email.
Delivery:
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All our products are covered by our own warranty.
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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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