1336E-B030-AN-EN-HA2-L7E 1336 IMPACT™ Adjustable server Driver
1336E-B030-AN-EN-HA2-L7E 1336 IMPACT™ Adjustable server Driver
1336E-B075-AE-EN-HA2 1336 IMPACT server Driver
1336E-MC2-SP42A 1336 IMPACT Servo drive control board
The 1336 IMPACT AC drive is a microprocessor-controlled digital AC drive with the following features:
• standard: 0.37 to 485 kW (0.5 to 650 hp) at 0 – 250 Hz constant torque configured: 522 to 597 kW (700 to 800 hp) at 0 – 250 Hz constant torque
• high-performance digital speed loop
• microprocessor-controlled, field-oriented current loop
• simplified programming through the use of a parameter table that features data entries in engineering units with English descriptions
• user-friendly interface with easy commissioning and set up
• non-volatile parameter storage • extensive diagnostics, including both logic board and power structure tests
• 32 entry fault queue and 32 entry warning queue with markers for clear fault and power up and with time stamps
• enclosed construction
• multiple communication interfaces for SCANport access
• complete encoder interface through the L Option board (quadrature A, A NOT, B, B NOT with encoder supply + 12V)
• two 12-bit resolution analog inputs for ±10V
• two 12-bit resolution analog outputs for ±10V
• one 12-bit resolution 4 – 20mA input
• one 12-bit resolution 4 – 20mA output
• 5 or 12V DC pulse input
• bumpless speed/torque control
• programmable output contacts (relay)
• function blocks • flux braking, DC braking, and bus regulation
• DC hold
• 200/400% motor curve
This topic: Starts on page: An overview of the provided features 1-1 A description of the frame designators 1-4 A hardware overview 1-5 1-2 Overview
• S-Curve
• autostart (auto restart, power up start)
• start and stop dwells
• analog input filters
• process trim
• fast flux up
• 2/3 wire control
• feedback filters (light, heavy, lead/lag, and notch)
• Flying Start
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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.
All new products and surplus products of the industrial intelligence industry, as well as the discontinued products of the original manufacturers. We are not an authorized distributor or representative of any of the above manufacturers (except for brand authorization). The trademarks, brand names and brands appearing in this agreement are the property of their respective manufacturers.
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