The document describes various operations and displays of an LED operation panel when connected to an inverter. It provides details on:
1) Selecting and displaying parameter numbers and values, changing setting values, and navigating between monitor and setting modes.
2) Viewing fault histories, including fault codes.
3) Customizing which block B and C parameters can be accessed in block A's parameter setting mode.
Khoa Học - Kỹ Thuật & Giải Trí: http://phongvan.org
Tài Liệu Khoa Học Kỹ Thuật: http://tailieukythuat.info
Thiết bị Điện Công Nghiệp - Điện Hạ Thế: http://dienhathe.vn
Cataloge ge 3.control and_automation_dienhathe.com-4_15_vat300_e_c6-1_rev_dDien Ha The
This document provides a summary of monitor parameters for a VAT300 inverter. It lists numerous parameters that can be monitored, organized by category (e.g. frequency, current, voltage). Each parameter is described briefly, noting the unit of measurement and any conditions where the parameter may not display correctly. Application columns indicate whether each parameter applies to V/f control, IM sensorless vector control, or PM motor control modes.
Cataloge ge 3.control and_automation_dienhathe.com-4_16_vat300_e_c6-6-1_rev_aDien Ha The
Khoa Học - Kỹ Thuật & Giải Trí: http://phongvan.org
Tài Liệu Khoa Học Kỹ Thuật: http://tailieukythuat.info
Thiết bị Điện Công Nghiệp - Điện Hạ Thế: http://dienhathe.vn
Cataloge ge 3.control and_automation_dienhathe.com-4_12_vat300_e_c4-5_rev_aDien Ha The
The document describes the parameter configurations for different control modes of an inverter including V/f control, IM vector control with and without speed sensor, and PM motor control with sensor. It provides details on the parameter blocks and specific parameters for each control mode. Key parameters that are changed frequently during normal usage and those that are changed infrequently are identified. The configuration diagrams show the organization of parameters into monitor, block A, B, and C parameters and how to navigate between them.
- The document provides instructions for calibrating the voltage measurement, overvoltage protection setting, voltage on setting, and voltage off setting of a Model 63610-80-20 DC load.
- The calibration involves selecting a task from the calibration menu, entering voltage values measured on a DVM at various output voltages and ranges into the firmware, and saving the entries.
- Special considerations are given for accessing the internal hardware of the dual channel unit to perform tasks like I MON, V MON, and external waveform calibration.
This document provides operating instructions for the TECNOLOGIC spa - TLK 43 digital electronic controller. It describes the controller's front panel, programming functions, installation and use instructions, main functions including control modes, auto-tuning, alarms, outputs and communications. The document is intended to ensure proper installation, maintenance and use of the controller and provides technical specifications for electrical, mechanical and functional characteristics.
2301 manual (v7.0 - 80384 a) (1) gefranDarío Falquéz
This document provides installation and configuration instructions for a configurable controller with software version 7.0. It includes dimensions for panel mounting, cut-out sizes, and instructions for installing multiple instruments side by side or stacked. It also provides technical specifications for the controller's inputs, outputs, power supply, ambient conditions, control functions, alarms, weight, and includes diagrams of the front panel display and buttons. The document describes hardware configuration options for inputs, outputs, power supply, and serial communication interface.
This document provides operating instructions for the TLK 94, a microprocessor-based digital electronic controller. It describes the controller's functions including ON/OFF, PID, and motorized actuator control. It also covers installation, configuration, programming, alarms, maintenance and specifications. The controller can measure and control temperature, voltage, or current processes and communicate via RS485. It has 4 setpoint values that can be programmed along with parameters to configure inputs, outputs, control modes and alarms.
Khoa Học - Kỹ Thuật & Giải Trí: http://phongvan.org
Tài Liệu Khoa Học Kỹ Thuật: http://tailieukythuat.info
Thiết bị Điện Công Nghiệp - Điện Hạ Thế: http://dienhathe.vn
Cataloge ge 3.control and_automation_dienhathe.com-4_15_vat300_e_c6-1_rev_dDien Ha The
This document provides a summary of monitor parameters for a VAT300 inverter. It lists numerous parameters that can be monitored, organized by category (e.g. frequency, current, voltage). Each parameter is described briefly, noting the unit of measurement and any conditions where the parameter may not display correctly. Application columns indicate whether each parameter applies to V/f control, IM sensorless vector control, or PM motor control modes.
Cataloge ge 3.control and_automation_dienhathe.com-4_16_vat300_e_c6-6-1_rev_aDien Ha The
Khoa Học - Kỹ Thuật & Giải Trí: http://phongvan.org
Tài Liệu Khoa Học Kỹ Thuật: http://tailieukythuat.info
Thiết bị Điện Công Nghiệp - Điện Hạ Thế: http://dienhathe.vn
Cataloge ge 3.control and_automation_dienhathe.com-4_12_vat300_e_c4-5_rev_aDien Ha The
The document describes the parameter configurations for different control modes of an inverter including V/f control, IM vector control with and without speed sensor, and PM motor control with sensor. It provides details on the parameter blocks and specific parameters for each control mode. Key parameters that are changed frequently during normal usage and those that are changed infrequently are identified. The configuration diagrams show the organization of parameters into monitor, block A, B, and C parameters and how to navigate between them.
- The document provides instructions for calibrating the voltage measurement, overvoltage protection setting, voltage on setting, and voltage off setting of a Model 63610-80-20 DC load.
- The calibration involves selecting a task from the calibration menu, entering voltage values measured on a DVM at various output voltages and ranges into the firmware, and saving the entries.
- Special considerations are given for accessing the internal hardware of the dual channel unit to perform tasks like I MON, V MON, and external waveform calibration.
This document provides operating instructions for the TECNOLOGIC spa - TLK 43 digital electronic controller. It describes the controller's front panel, programming functions, installation and use instructions, main functions including control modes, auto-tuning, alarms, outputs and communications. The document is intended to ensure proper installation, maintenance and use of the controller and provides technical specifications for electrical, mechanical and functional characteristics.
2301 manual (v7.0 - 80384 a) (1) gefranDarío Falquéz
This document provides installation and configuration instructions for a configurable controller with software version 7.0. It includes dimensions for panel mounting, cut-out sizes, and instructions for installing multiple instruments side by side or stacked. It also provides technical specifications for the controller's inputs, outputs, power supply, ambient conditions, control functions, alarms, weight, and includes diagrams of the front panel display and buttons. The document describes hardware configuration options for inputs, outputs, power supply, and serial communication interface.
This document provides operating instructions for the TLK 94, a microprocessor-based digital electronic controller. It describes the controller's functions including ON/OFF, PID, and motorized actuator control. It also covers installation, configuration, programming, alarms, maintenance and specifications. The controller can measure and control temperature, voltage, or current processes and communicate via RS485. It has 4 setpoint values that can be programmed along with parameters to configure inputs, outputs, control modes and alarms.
The document provides instructions for operating an HD30 series inverter. It describes 6 quick start examples for controlling the start/stop and setting the running frequency of the inverter via the keypad, terminals, analog input, and communication. It also provides instructions for performing motor parameter auto-tuning. The document contains detailed parameter tables and explanations to configure the inverter for each control method.
Pcu230 pi fan_controlwithpf400drives_rev_aconfidencial
The document provides instructions for using a PowerFlex 400 drive to control a fan motor's speed using a PID loop to maintain a constant air pressure. Key steps include:
1. Configuring the drive for PID control with the setpoint coming from the PID regulator and feedback from an analog input monitoring air pressure.
2. Setting up DriveObserver software to monitor the PID setpoint, fan speed output, and air pressure feedback for tuning the PID gains.
3. Adjusting the proportional, integral, and differential gains while observing the system response to changes in airflow demand until the PID loop maintains steady control without overshoot or undershoot.
Mitsubishi electronic multi measuring instruments super-s series-dienhathe.vnDien Ha The
Khoa Học - Kỹ Thuật & Giải Trí: http://phongvan.org
Tài Liệu Khoa Học Kỹ Thuật: http://tailieukythuat.info
Thiết bị Điện Công Nghiệp - Điện Hạ Thế: http://dienhathe.vn
This document provides installation and operation instructions for an APS48Z vehicle security system with anti-hijacking features. It includes diagrams of system wiring and jumper settings to activate functions like passive arming, shock sensor adjustment, remote programming, and more. The anti-hijacking mode can be set to trigger based on ignition or door events, and includes notifications to users over time if not disarmed.
Multi measuring instrument new-s series dienhathe.vnDien Ha The
Thiết Bị Điện Mitsubishi, Thiết Bị Điện,
Điện Công Nghiệp Mitsubishi, Điện Công Nghiệp,
Điện Hạ Thế Mitsubishi, Điện Hạ Thế,
Điện Dân Dụng Mitsubishi, Điện Dân Dụng,
Mitsubishi,
Thiết Bị Đóng Cắt Mitsubishi, Thiết Bị Đóng Cắt,
Thiết Bị Điện Mitsubishi, Thiết Bị Điện,
E5cn omron digital temperature controllersteven qi
This document provides specifications for the E5CN/E5CN-U Digital Temperature Controller. Key details include:
- Improved accuracy of temperature and analog inputs of ±0.3% and ±0.2% respectively.
- New E5CN-U plug-in models with analog inputs and current outputs.
- Preventive maintenance function that monitors control output usage to detect issues.
- Models support thermocouple, RTD, and analog voltage/current inputs with various output options.
This document provides instructions for installing and starting up an AFFINITY drive in open loop control mode. It includes information on wiring the drive, entering motor parameters, performing autotuning, monitoring status messages, and descriptions of basic adjustable parameters. Safety warnings are given to refer to the full user guide for complete safety information before installing or operating the drive.
Catalog mikro mikro din310-user-dienhathe.vnDien Ha The
1) The DIN310 and DIN310E are earth leakage relays that use a zero phase current transformer to sense leakage currents and protect circuits.
2) The DIN310E has additional features like a pre-fault alarm contact and positive safety contact. The pre-fault alarm is energized when leakage exceeds 50% of the sensitivity setting.
3) The relays have indicators to display status like tripped, time delay countdown, and settings. Buttons are used to reset trips, test operation, and scroll through settings and fault records.
The document provides instructions for calibrating and using the SP-1000 SkidWeigh Plus on-board vehicle weighing system. It describes how to enter calibration mode by logging in with a password, then calibrating the system by lifting empty forks and a known weight load above the ground. It explains the user mode, including starting a session by logging in an operator ID, taking weight readings by lifting loaded forks, and totaling weights under waybill IDs. Functions of the control keys for weighing, taring, totaling, printing, and ending a session are also summarized.
The document demonstrates MicroComp, a micro-computer gaging system from Albion Devices. It has a compact size and can be used as a gage amplifier, temperature compensated gaging system, or to compensate other gages. It has an easy-to-use interface and menu system for setup, calibration, feature configuration, and temperature compensation. MicroComp provides highly accurate dimensional measurement on the shop floor.
The BD25A20 analog servo drive is designed to drive brushless DC motors with a peak current of 25A and continuous current of 12.5A. It has full protection against overloads and short circuits. The drive interfaces with digital controllers using PWM and direction inputs and provides hall commutation and current monitoring outputs. It is compliant with various safety and EMC standards.
Electronic multi measuring instruments super-s series dienhathe.vnDien Ha The
Thiết Bị Điện Mitsubishi, Thiết Bị Điện,
Điện Công Nghiệp Mitsubishi, Điện Công Nghiệp,
Điện Hạ Thế Mitsubishi, Điện Hạ Thế,
Điện Dân Dụng Mitsubishi, Điện Dân Dụng,
Mitsubishi,
Thiết Bị Đóng Cắt Mitsubishi, Thiết Bị Đóng Cắt,
Thiết Bị Điện Mitsubishi, Thiết Bị Điện,
The BD25A20I analog servo drive can provide up to 25A of peak current and 12.5A of continuous current from a 40-190VDC power supply. It is designed to drive brushless DC motors and interfaces with digital controllers using PWM and direction signals. It has protections against overvoltage, overcurrent, overheating and short circuits.
The document describes an InControl 03AB - DALI 4 x Relay device that provides four independent relay contacts controlled via a DALI interface. It has a push button for manual control and testing of the relays. Each relay contact can be assigned a unique DALI address and controlled individually. The device is housed in a DIN rail mountable box for easy installation in electrical switchboards.
Cataloge ge 3.control and_automation-15_vat300_e_c6-1_rev_dThuan Kieu
Cataloge ge 3.control and_automation-15_vat300_e_c6-1_rev_d
Catalog GE,
Catalog Thiết Bị Điện GE,
Catalog Điện Công Nghiệp GE,
http://dienhathe.com,
Xem thêm các sản phẩm khác của GE tại https://dienhathe.com
Để nhận báo giá sản phẩm GE vui lòng gọi: 0907.764.966
Cataloge ge 3.control and_automation-15_vat300_e_c6-1_rev_dDien Ha The
This document provides a summary of monitor parameters for a VAT300 inverter. It lists numerous parameters that can be monitored, organized by category (e.g. frequency, current, voltage). For each parameter, it indicates the unit of measurement and any notes on applicability based on control mode. It shows that most parameters can be monitored for V/f control, sensorless vector control, and sensor-based vector control. This extensive list of monitor parameters allows users to view real-time feedback on many aspects of the inverter's operation and motor performance.
Cataloge ge 3.control and_automation-16_vat300_e_c6-6-1_rev_aDien Ha The
This document describes the monitor parameters and functions displayed on the inverter control panel. It provides explanations of parameters relating to output frequency, motor speed, output current, torque, faults, I/O status, and more. Parameters include output frequency, motor speed, set frequency, currents, voltages, temperatures, speeds, counts, times, statuses, and fault information. The document also indicates which parameters display in Hz, %, A, V, °C, rpm, and other units.
This document provides an overview and instructions for operating the Honeywell DC1010/1020/1030/1040 digital controller. It includes:
- A description of the front panel display and keys.
- Instructions for auto-tuning the controller and troubleshooting auto-tuning failures.
- An overview of the operating levels and parameters that can be configured in each level, including PID settings, alarms, inputs/outputs and more.
- Instructions for programming the controller and using its two program patterns that each contain up to 8 segments.
Ls catalog thiet bi tu dong i e5_e_1105_dienhathe.vnDien Ha The
Khoa Học - Kỹ Thuật & Giải Trí: http://phongvan.org
Tài Liệu Khoa Học Kỹ Thuật: http://tailieukythuat.info
Thiết bị Điện Công Nghiệp - Điện Hạ Thế: http://dienhathe.org
Ls catalog thiet bi tu dong i e5_e_1105Dien Ha The
Catalog LS, Catalog,
Catalog Thiết Bị Điện LS, Catalog Thiết Bị Điện,
Catalog Biến Tần LS, Catalog Biến Tần,
Catalog Inverter LS, Catalog Inveter,
http://dienhathe.com,
Chi tiết các sản phẩm khác của LS tại https://dienhathe.com
Xem thêm các Catalog khác của LS tại https://dienhathe.info
Để nhận báo giá sản phẩm LS vui lòng gọi: 0907.764.966
Bien tan ls gioi thieu bien tan i e5 series (new)-1Dien Ha The
Catalog LS, Catalog,
Catalog Thiết Bị Điện LS, Catalog Thiết Bị Điện,
Catalog Biến Tần LS, Catalog Biến Tần,
Catalog Inverter LS, Catalog Inveter,
http://dienhathe.com,
Chi tiết các sản phẩm khác của LS tại https://dienhathe.com
Xem thêm các Catalog khác của LS tại https://dienhathe.info
Để nhận báo giá sản phẩm LS vui lòng gọi: 0907.764.966
The document provides instructions for operating an HD30 series inverter. It describes 6 quick start examples for controlling the start/stop and setting the running frequency of the inverter via the keypad, terminals, analog input, and communication. It also provides instructions for performing motor parameter auto-tuning. The document contains detailed parameter tables and explanations to configure the inverter for each control method.
Pcu230 pi fan_controlwithpf400drives_rev_aconfidencial
The document provides instructions for using a PowerFlex 400 drive to control a fan motor's speed using a PID loop to maintain a constant air pressure. Key steps include:
1. Configuring the drive for PID control with the setpoint coming from the PID regulator and feedback from an analog input monitoring air pressure.
2. Setting up DriveObserver software to monitor the PID setpoint, fan speed output, and air pressure feedback for tuning the PID gains.
3. Adjusting the proportional, integral, and differential gains while observing the system response to changes in airflow demand until the PID loop maintains steady control without overshoot or undershoot.
Mitsubishi electronic multi measuring instruments super-s series-dienhathe.vnDien Ha The
Khoa Học - Kỹ Thuật & Giải Trí: http://phongvan.org
Tài Liệu Khoa Học Kỹ Thuật: http://tailieukythuat.info
Thiết bị Điện Công Nghiệp - Điện Hạ Thế: http://dienhathe.vn
This document provides installation and operation instructions for an APS48Z vehicle security system with anti-hijacking features. It includes diagrams of system wiring and jumper settings to activate functions like passive arming, shock sensor adjustment, remote programming, and more. The anti-hijacking mode can be set to trigger based on ignition or door events, and includes notifications to users over time if not disarmed.
Multi measuring instrument new-s series dienhathe.vnDien Ha The
Thiết Bị Điện Mitsubishi, Thiết Bị Điện,
Điện Công Nghiệp Mitsubishi, Điện Công Nghiệp,
Điện Hạ Thế Mitsubishi, Điện Hạ Thế,
Điện Dân Dụng Mitsubishi, Điện Dân Dụng,
Mitsubishi,
Thiết Bị Đóng Cắt Mitsubishi, Thiết Bị Đóng Cắt,
Thiết Bị Điện Mitsubishi, Thiết Bị Điện,
E5cn omron digital temperature controllersteven qi
This document provides specifications for the E5CN/E5CN-U Digital Temperature Controller. Key details include:
- Improved accuracy of temperature and analog inputs of ±0.3% and ±0.2% respectively.
- New E5CN-U plug-in models with analog inputs and current outputs.
- Preventive maintenance function that monitors control output usage to detect issues.
- Models support thermocouple, RTD, and analog voltage/current inputs with various output options.
This document provides instructions for installing and starting up an AFFINITY drive in open loop control mode. It includes information on wiring the drive, entering motor parameters, performing autotuning, monitoring status messages, and descriptions of basic adjustable parameters. Safety warnings are given to refer to the full user guide for complete safety information before installing or operating the drive.
Catalog mikro mikro din310-user-dienhathe.vnDien Ha The
1) The DIN310 and DIN310E are earth leakage relays that use a zero phase current transformer to sense leakage currents and protect circuits.
2) The DIN310E has additional features like a pre-fault alarm contact and positive safety contact. The pre-fault alarm is energized when leakage exceeds 50% of the sensitivity setting.
3) The relays have indicators to display status like tripped, time delay countdown, and settings. Buttons are used to reset trips, test operation, and scroll through settings and fault records.
The document provides instructions for calibrating and using the SP-1000 SkidWeigh Plus on-board vehicle weighing system. It describes how to enter calibration mode by logging in with a password, then calibrating the system by lifting empty forks and a known weight load above the ground. It explains the user mode, including starting a session by logging in an operator ID, taking weight readings by lifting loaded forks, and totaling weights under waybill IDs. Functions of the control keys for weighing, taring, totaling, printing, and ending a session are also summarized.
The document demonstrates MicroComp, a micro-computer gaging system from Albion Devices. It has a compact size and can be used as a gage amplifier, temperature compensated gaging system, or to compensate other gages. It has an easy-to-use interface and menu system for setup, calibration, feature configuration, and temperature compensation. MicroComp provides highly accurate dimensional measurement on the shop floor.
The BD25A20 analog servo drive is designed to drive brushless DC motors with a peak current of 25A and continuous current of 12.5A. It has full protection against overloads and short circuits. The drive interfaces with digital controllers using PWM and direction inputs and provides hall commutation and current monitoring outputs. It is compliant with various safety and EMC standards.
Electronic multi measuring instruments super-s series dienhathe.vnDien Ha The
Thiết Bị Điện Mitsubishi, Thiết Bị Điện,
Điện Công Nghiệp Mitsubishi, Điện Công Nghiệp,
Điện Hạ Thế Mitsubishi, Điện Hạ Thế,
Điện Dân Dụng Mitsubishi, Điện Dân Dụng,
Mitsubishi,
Thiết Bị Đóng Cắt Mitsubishi, Thiết Bị Đóng Cắt,
Thiết Bị Điện Mitsubishi, Thiết Bị Điện,
The BD25A20I analog servo drive can provide up to 25A of peak current and 12.5A of continuous current from a 40-190VDC power supply. It is designed to drive brushless DC motors and interfaces with digital controllers using PWM and direction signals. It has protections against overvoltage, overcurrent, overheating and short circuits.
The document describes an InControl 03AB - DALI 4 x Relay device that provides four independent relay contacts controlled via a DALI interface. It has a push button for manual control and testing of the relays. Each relay contact can be assigned a unique DALI address and controlled individually. The device is housed in a DIN rail mountable box for easy installation in electrical switchboards.
Cataloge ge 3.control and_automation-15_vat300_e_c6-1_rev_dThuan Kieu
Cataloge ge 3.control and_automation-15_vat300_e_c6-1_rev_d
Catalog GE,
Catalog Thiết Bị Điện GE,
Catalog Điện Công Nghiệp GE,
http://dienhathe.com,
Xem thêm các sản phẩm khác của GE tại https://dienhathe.com
Để nhận báo giá sản phẩm GE vui lòng gọi: 0907.764.966
Cataloge ge 3.control and_automation-15_vat300_e_c6-1_rev_dDien Ha The
This document provides a summary of monitor parameters for a VAT300 inverter. It lists numerous parameters that can be monitored, organized by category (e.g. frequency, current, voltage). For each parameter, it indicates the unit of measurement and any notes on applicability based on control mode. It shows that most parameters can be monitored for V/f control, sensorless vector control, and sensor-based vector control. This extensive list of monitor parameters allows users to view real-time feedback on many aspects of the inverter's operation and motor performance.
Cataloge ge 3.control and_automation-16_vat300_e_c6-6-1_rev_aDien Ha The
This document describes the monitor parameters and functions displayed on the inverter control panel. It provides explanations of parameters relating to output frequency, motor speed, output current, torque, faults, I/O status, and more. Parameters include output frequency, motor speed, set frequency, currents, voltages, temperatures, speeds, counts, times, statuses, and fault information. The document also indicates which parameters display in Hz, %, A, V, °C, rpm, and other units.
This document provides an overview and instructions for operating the Honeywell DC1010/1020/1030/1040 digital controller. It includes:
- A description of the front panel display and keys.
- Instructions for auto-tuning the controller and troubleshooting auto-tuning failures.
- An overview of the operating levels and parameters that can be configured in each level, including PID settings, alarms, inputs/outputs and more.
- Instructions for programming the controller and using its two program patterns that each contain up to 8 segments.
Ls catalog thiet bi tu dong i e5_e_1105_dienhathe.vnDien Ha The
Khoa Học - Kỹ Thuật & Giải Trí: http://phongvan.org
Tài Liệu Khoa Học Kỹ Thuật: http://tailieukythuat.info
Thiết bị Điện Công Nghiệp - Điện Hạ Thế: http://dienhathe.org
Ls catalog thiet bi tu dong i e5_e_1105Dien Ha The
Catalog LS, Catalog,
Catalog Thiết Bị Điện LS, Catalog Thiết Bị Điện,
Catalog Biến Tần LS, Catalog Biến Tần,
Catalog Inverter LS, Catalog Inveter,
http://dienhathe.com,
Chi tiết các sản phẩm khác của LS tại https://dienhathe.com
Xem thêm các Catalog khác của LS tại https://dienhathe.info
Để nhận báo giá sản phẩm LS vui lòng gọi: 0907.764.966
Bien tan ls gioi thieu bien tan i e5 series (new)-1Dien Ha The
Catalog LS, Catalog,
Catalog Thiết Bị Điện LS, Catalog Thiết Bị Điện,
Catalog Biến Tần LS, Catalog Biến Tần,
Catalog Inverter LS, Catalog Inveter,
http://dienhathe.com,
Chi tiết các sản phẩm khác của LS tại https://dienhathe.com
Xem thêm các Catalog khác của LS tại https://dienhathe.info
Để nhận báo giá sản phẩm LS vui lòng gọi: 0907.764.966
Bien tan ls gioi thieu bien tan i e5 series (new)-1-dienhathe.vnDien Ha The
Khoa Học - Kỹ Thuật & Giải Trí: http://phongvan.org
Tài Liệu Khoa Học Kỹ Thuật: http://tailieukythuat.info
Thiết bị Điện Công Nghiệp - Điện Hạ Thế: http://dienhathe.org
Bien tan ls gioi thieu bien tan i e5 series (new)-1-dienhathe.vnDien Ha The
Khoa Học - Kỹ Thuật & Giải Trí: http://phongvan.org
Tài Liệu Khoa Học Kỹ Thuật: http://tailieukythuat.info
Thiết bị Điện Công Nghiệp - Điện Hạ Thế: http://dienhathe.org
Mikro,
Catalog Thiết Bị Điện Mikro, Catalog Thiết Bị Điện,
Catalog Phụ Kiện Mikro, Catalog Phụ Kiện,
Catalog Mikro, Catalog,
http://dienhathe.com,
Chi tiết các sản phẩm khác của Mikro tại https://dienhathe.com
Xem thêm các Catalog khác của Mikro tại https://dienhathe.info
Để nhận báo giá sản phẩm Mikro vui lòng gọi: 0907.764.966
Catalog mikro mikro mk232a-user-dienhathe.vnDien Ha The
The MK232A is a microprocessor-based numerical earth-fault relay that uses fundamental frequency current measurement for harmonic rejection. It has independent low-set and high-set elements, with the high-set element configurable. The relay has 4-digit display, two output contacts, soft switches for configuration, and IDMT or definite time trip characteristics. It is panel-mountable with dimensions of 96x96x110mm and has current and voltage ratings for protection applications.
Mikro,
Catalog Thiết Bị Điện Mikro, Catalog Thiết Bị Điện,
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The document describes a hands-on lab using a PowerFlex drive to control fan speed using a PI regulator to maintain constant air pressure. The drive is configured to use a constant setpoint as the reference and an analog input for feedback from a pressure transducer. Digital and analog I/O are configured and the PI regulator is tuned by adjusting proportional gain and integral time parameters to control fan speed in response to a simulated pressure demand change using a damper.
Cataloge ge 3.control and_automation-20_vat300_e_c6-6-4_1_rev_bDien Ha The
This document describes various parameter functions for controlling the operation of an inverter drive.
It explains the settings for the run command method, run/stop methods, emergency stop logic and mode, control source switchover method, sequence input terminal functions, analog input terminal functions, auto start settings, parameter protection, operation panel functions, and analog input modes. Default settings and loading default values are also addressed.
The parameters provide options for remote control, stopping behavior, inputs, functions of terminals, startup settings, locking parameters from changes, display settings, and scaling analog inputs. Settings are selected using numeric codes for different control modes and behaviors.
Cataloge ge 3.control and_automation_dienhathe.com-4_20_vat300_e_c6-6-4_1_rev_bDien Ha The
This document describes various parameter settings for controlling functions and settings of an inverter drive. It explains the functions of parameters C00-0 through C13-1, which control run commands, stopping methods, sequence inputs, analog inputs, pulse train inputs, and more. Parameters can be set to select control logic, running modes, filtering, and default operation settings. Notes provide additional details on functional aspects like auto restart, emergency stopping, and protection of parameter changes.
The document describes the Analog Servo Drive 50A8, which is designed to drive brush DC motors. It can provide up to 50A of peak current and 25A of continuous current. It has adjustable current limits and loop gains. Modes of operation include current, voltage, IR compensation and velocity control. It interfaces with digital controllers or can operate standalone, and has safety protections like overcurrent protection.
FNIRSI SG-004A Multi-function Signal Generator User Manual
FNIRSI SG-004A Multi-function Signal Generator 0-24V 4-20mA Analog Voltage Current Thermocouple Resistance Process Calibrator
This document provides instructions for a lab demonstrating the energy savings from using a variable frequency drive (VFD) to control pump speed compared to throttling valve control. It includes an equipment list, instructions for configuring a PowerFlex 700 drive and connecting it to the pump demo, and steps for collecting power and current data at various flow rates using DriveObserver software to calculate the energy savings. Running the pump at lower speeds with the VFD reduces power consumption and wear compared to throttling the pump.
The document describes an analog servo drive that can provide up to 30A of peak current and 15A of continuous current. It is designed to drive brush DC motors and interface with digital controllers. It has adjustable current limits and loop gains, four quadrants of regenerative operation, and fault protection. Modes of operation include current, voltage, IR compensation and velocity control.
The document provides instructions for navigating menus and accessing various functions and screens on the Fluke 435-II Three Phase Energy and Power Quality Analyzer. It describes the basic menu navigation using arrow keys and function keys. It then provides step-by-step instructions for accessing different screens and functions related to measurements, trends, events, setups, and logging. These include screens for waveforms, voltage/current/frequency, harmonics, power and energy, dips and swells, unbalance, inrush current, power quality monitoring, flicker, transients, power waves, and mains signaling.
Similar to Cataloge ge 3.control and_automation-11_vat300_e_c4-3_rev_a (20)
This document provides a quick start guide for the FED-C Series AC drive. It includes information on safety, wiring, the operating panel, quick setup, standard parameters, troubleshooting, and revision history. The guide contains basic instructions to get started with installation and configuration of the AC drive.
Fed e-quick-start-manual-bientanfuji-dienhathe.comDien Ha The
This quick start guide provides instructions for setting up and operating an inverter. It begins with an overview of product information, including nameplate details and specifications. It then covers wiring, including diagrams for 3-phase and single-phase power supply types. Terminal functions are described for the main circuit and control circuit. The guide presents a timing diagram for the control logic and acceleration/deceleration profiles. It concludes with a step-by-step setup process, including getting familiar with the keypad, setting motor parameters, checking rotation direction, and setting function codes for features like the startup frequency and DC injection braking.
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Mitsubishi graphic operation terminal got2000 series parts library bookDien Ha The
Mitsubishi ,
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Mitsubishi inverter fr-a700-instruction-manualbasic-160425031653Dien Ha The
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Mitsubishi graphic operation terminal got2000 series (concise)Dien Ha The
- Monitor the GOT screen from a remote location.
- Switch screens and operate touch switches.
Control:
- Monitor and operate the GOT from a remote location.
- Switch screens, operate touch switches, change settings, and more.
Number of
simultaneous
connections
1 client
Multiple clients✽1
Screen
switching
Not possible
Possible✽2
Client OS
Windows, Linux, macOS, Android, iOS
Windows, Linux, macOS, Android, iOS
Client software
- Web browser
- Viewer software
- Web browser
- VNC client software✽3
Mitsubishi low voltage ws-v series comparison of previous and new modelsDien Ha The
1. The document compares previous and new models of molded-case circuit breakers and earth-leakage circuit breakers.
2. It outlines differences in dimensions, performance, and specifications between previous W & WS series models and new WS-V series models. Key changes include changes in tripping methods, operating characteristics, dimensions, rated currents, and breaking capacities.
3. Replacement models are identified for previous models, along with any drilling dimension or front plate cutout changes between models. Some models were added or had specifications adjusted.
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Mitsubishi low voltage mccb and elcb(ws-v series) y0720-version 1-mitsuDien Ha The
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Mitsubishi inverter freqrol-f700 pj seriesDien Ha The
Mitsubishi ,
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Mitsubishi ,
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Embedded machine learning-based road conditions and driving behavior monitoringIJECEIAES
Car accident rates have increased in recent years, resulting in losses in human lives, properties, and other financial costs. An embedded machine learning-based system is developed to address this critical issue. The system can monitor road conditions, detect driving patterns, and identify aggressive driving behaviors. The system is based on neural networks trained on a comprehensive dataset of driving events, driving styles, and road conditions. The system effectively detects potential risks and helps mitigate the frequency and impact of accidents. The primary goal is to ensure the safety of drivers and vehicles. Collecting data involved gathering information on three key road events: normal street and normal drive, speed bumps, circular yellow speed bumps, and three aggressive driving actions: sudden start, sudden stop, and sudden entry. The gathered data is processed and analyzed using a machine learning system designed for limited power and memory devices. The developed system resulted in 91.9% accuracy, 93.6% precision, and 92% recall. The achieved inference time on an Arduino Nano 33 BLE Sense with a 32-bit CPU running at 64 MHz is 34 ms and requires 2.6 kB peak RAM and 139.9 kB program flash memory, making it suitable for resource-constrained embedded systems.
Introduction- e - waste – definition - sources of e-waste– hazardous substances in e-waste - effects of e-waste on environment and human health- need for e-waste management– e-waste handling rules - waste minimization techniques for managing e-waste – recycling of e-waste - disposal treatment methods of e- waste – mechanism of extraction of precious metal from leaching solution-global Scenario of E-waste – E-waste in India- case studies.
Using recycled concrete aggregates (RCA) for pavements is crucial to achieving sustainability. Implementing RCA for new pavement can minimize carbon footprint, conserve natural resources, reduce harmful emissions, and lower life cycle costs. Compared to natural aggregate (NA), RCA pavement has fewer comprehensive studies and sustainability assessments.
DEEP LEARNING FOR SMART GRID INTRUSION DETECTION: A HYBRID CNN-LSTM-BASED MODELgerogepatton
As digital technology becomes more deeply embedded in power systems, protecting the communication
networks of Smart Grids (SG) has emerged as a critical concern. Distributed Network Protocol 3 (DNP3)
represents a multi-tiered application layer protocol extensively utilized in Supervisory Control and Data
Acquisition (SCADA)-based smart grids to facilitate real-time data gathering and control functionalities.
Robust Intrusion Detection Systems (IDS) are necessary for early threat detection and mitigation because
of the interconnection of these networks, which makes them vulnerable to a variety of cyberattacks. To
solve this issue, this paper develops a hybrid Deep Learning (DL) model specifically designed for intrusion
detection in smart grids. The proposed approach is a combination of the Convolutional Neural Network
(CNN) and the Long-Short-Term Memory algorithms (LSTM). We employed a recent intrusion detection
dataset (DNP3), which focuses on unauthorized commands and Denial of Service (DoS) cyberattacks, to
train and test our model. The results of our experiments show that our CNN-LSTM method is much better
at finding smart grid intrusions than other deep learning algorithms used for classification. In addition,
our proposed approach improves accuracy, precision, recall, and F1 score, achieving a high detection
accuracy rate of 99.50%.
Batteries -Introduction – Types of Batteries – discharging and charging of battery - characteristics of battery –battery rating- various tests on battery- – Primary battery: silver button cell- Secondary battery :Ni-Cd battery-modern battery: lithium ion battery-maintenance of batteries-choices of batteries for electric vehicle applications.
Fuel Cells: Introduction- importance and classification of fuel cells - description, principle, components, applications of fuel cells: H2-O2 fuel cell, alkaline fuel cell, molten carbonate fuel cell and direct methanol fuel cells.
A review on techniques and modelling methodologies used for checking electrom...nooriasukmaningtyas
The proper function of the integrated circuit (IC) in an inhibiting electromagnetic environment has always been a serious concern throughout the decades of revolution in the world of electronics, from disjunct devices to today’s integrated circuit technology, where billions of transistors are combined on a single chip. The automotive industry and smart vehicles in particular, are confronting design issues such as being prone to electromagnetic interference (EMI). Electronic control devices calculate incorrect outputs because of EMI and sensors give misleading values which can prove fatal in case of automotives. In this paper, the authors have non exhaustively tried to review research work concerned with the investigation of EMI in ICs and prediction of this EMI using various modelling methodologies and measurement setups.
International Conference on NLP, Artificial Intelligence, Machine Learning an...gerogepatton
International Conference on NLP, Artificial Intelligence, Machine Learning and Applications (NLAIM 2024) offers a premier global platform for exchanging insights and findings in the theory, methodology, and applications of NLP, Artificial Intelligence, Machine Learning, and their applications. The conference seeks substantial contributions across all key domains of NLP, Artificial Intelligence, Machine Learning, and their practical applications, aiming to foster both theoretical advancements and real-world implementations. With a focus on facilitating collaboration between researchers and practitioners from academia and industry, the conference serves as a nexus for sharing the latest developments in the field.
Comparative analysis between traditional aquaponics and reconstructed aquapon...bijceesjournal
The aquaponic system of planting is a method that does not require soil usage. It is a method that only needs water, fish, lava rocks (a substitute for soil), and plants. Aquaponic systems are sustainable and environmentally friendly. Its use not only helps to plant in small spaces but also helps reduce artificial chemical use and minimizes excess water use, as aquaponics consumes 90% less water than soil-based gardening. The study applied a descriptive and experimental design to assess and compare conventional and reconstructed aquaponic methods for reproducing tomatoes. The researchers created an observation checklist to determine the significant factors of the study. The study aims to determine the significant difference between traditional aquaponics and reconstructed aquaponics systems propagating tomatoes in terms of height, weight, girth, and number of fruits. The reconstructed aquaponics system’s higher growth yield results in a much more nourished crop than the traditional aquaponics system. It is superior in its number of fruits, height, weight, and girth measurement. Moreover, the reconstructed aquaponics system is proven to eliminate all the hindrances present in the traditional aquaponics system, which are overcrowding of fish, algae growth, pest problems, contaminated water, and dead fish.
KuberTENes Birthday Bash Guadalajara - K8sGPT first impressionsVictor Morales
K8sGPT is a tool that analyzes and diagnoses Kubernetes clusters. This presentation was used to share the requirements and dependencies to deploy K8sGPT in a local environment.
A SYSTEMATIC RISK ASSESSMENT APPROACH FOR SECURING THE SMART IRRIGATION SYSTEMSIJNSA Journal
The smart irrigation system represents an innovative approach to optimize water usage in agricultural and landscaping practices. The integration of cutting-edge technologies, including sensors, actuators, and data analysis, empowers this system to provide accurate monitoring and control of irrigation processes by leveraging real-time environmental conditions. The main objective of a smart irrigation system is to optimize water efficiency, minimize expenses, and foster the adoption of sustainable water management methods. This paper conducts a systematic risk assessment by exploring the key components/assets and their functionalities in the smart irrigation system. The crucial role of sensors in gathering data on soil moisture, weather patterns, and plant well-being is emphasized in this system. These sensors enable intelligent decision-making in irrigation scheduling and water distribution, leading to enhanced water efficiency and sustainable water management practices. Actuators enable automated control of irrigation devices, ensuring precise and targeted water delivery to plants. Additionally, the paper addresses the potential threat and vulnerabilities associated with smart irrigation systems. It discusses limitations of the system, such as power constraints and computational capabilities, and calculates the potential security risks. The paper suggests possible risk treatment methods for effective secure system operation. In conclusion, the paper emphasizes the significant benefits of implementing smart irrigation systems, including improved water conservation, increased crop yield, and reduced environmental impact. Additionally, based on the security analysis conducted, the paper recommends the implementation of countermeasures and security approaches to address vulnerabilities and ensure the integrity and reliability of the system. By incorporating these measures, smart irrigation technology can revolutionize water management practices in agriculture, promoting sustainability, resource efficiency, and safeguarding against potential security threats.
Cataloge ge 3.control and_automation-11_vat300_e_c4-3_rev_a
1. 4. Operation Panel
4-3 Various operations and displays when LED panel is connected
The various LED panel operations and displays are displayed.
First, the various operation methods and displayed for the sub-No. selection method (C11-7=1) are
explained.
4-3-1 Operating and displaying the parameter No.
The methods for operating the parameter No. are shown below.
Refer to Table 4-1 for details on the key functions.
<Keys> <Display, unit LED> <Explanation>
After viewing the output current with a [%] unit, the parameter which displays the output frequency
with a [Hz] unit is displayed.
+
+
A
%
Hz D00-0 : Output frequency
A
%
Hz The main No. increases.
%
Hz
A
The main No. increases.
Hz
A
%
↓
The sub-No. increases.
D02-1 is displayed.
+
+
Hz
A
%
After one second, the display will show the output
current as a percentage.
A
%
Hz The main No. decreases.
A
%
Hz
↓
The main No. decreases.
A
%
Hz After one second, the display will show the output
frequency as Hz.
When operating with the sub-No. selection method, the decimal point dot for the third digit from the right
turns ON while the key is pressed to indicate that the main No. is being changed.
Press the
LCL
SET key to check the parameter No. with the monitor display.
4 – 14
2. 4. Operation Panel
4-3-2 Operating and displaying the setting value
Refer to Sections 6-2 to 6-5, for the details of the Block-A, B and C parameters.
<Keys> <Display, unit LED> <Explanation>
Change the Parameter: B00-4 maximum output frequency (Fmax) from 50.0 to 60.0
RST
MOD
RST
MOD
Three times
A
%
Hz (In Monitor Mode)
A
%
Hz Changes to the Block-A Parameter setting Mode.
Changes to the Block-B Parameter setting Mode.
A
%
Hz
↓ ↑
Increase the parameter No. from parameter B00-0 to
B00-4.
LCL
SET
A
%
Hz The display will alternate between Parameter Number
B00-4 and the present setting value 50.00.
Three times
LCL
SET
A
%
Hz Enable the value to be changed.
The preset setting value will display.
A
%
Hz Press three times to move the flicker to the digit that
is to be changed.
(Note: Parameter B00-4 cannot be changed while the
inverter is running.)
A
%
Hz Change the flicker digit from 5 to 6.
A
%
Hz
↓ ↑
Fix the data.
Changing of Parameter B00-4 to 60.0 will be
completed.
A
%
Hz The display will alternate between parameter No.: B00-
4 and current setting value: 60.00.
4 – 15
3. 4. Operation Panel
<Keys> <Display, unit LED> <Explanation>
Change the parameter A03-1 (DC Breaking Time) from 2.0 (default value) to 3.5.
RST
MOD
RST
MOD
RST
MOD
RST
MOD
+
+
+
A
%
Hz (In B00-4 Parameter Setting Mode)
Changes to the Block-C Parameter Setting Mode.
Changes to the Utility Mode. (For future use)
A
%
Hz Changes to the Monitor Mode.
A
%
Hz Changes to the Block-A Parameter Setting Mode.
A
%
Hz
Increase the Parameter Block Number from A00-0 to
A03-1.
Increase the Parameter Number.
Hz
A
%
↓ ↑ The display will alternate between Parameter Number
A03-1 and the present value 2.0.
LCL
SET
Five times
LCL
SET
Enable the value to be changed.
The preset setting value will display.
Change the flicker digit from 0 to 5.
Move the flickering digit to the digit to be changed
Change the flicker digit from 2 to 3.
↓ ↑
Fix the data.
Changing of parameter A03-1 to 3.5 will be completed.
The display will alternate between the Parameter
Number A03-1 and the present value.
(Parameter Number Changing Mode.)
(Note) If the (RUN) display appears when changing from the parameter No. to the setting No.
change state, the parameter is one that can be changed only while the inverter is stopped.
4 – 16
4. 4. Operation Panel
4-3-3 Operating the monitor parameters with the main & sub-No. selection method
An example of the operations when the main & sub-No. selection method (C11-7=2) is selected is given
below.
<Keys> <Display, unit LED> <Explanation>
After viewing the output current with a [%] unit, the parameter which displays the output frequency
with a [Hz] unit is displayed.
A
%
Hz D00-0 : Output frequency
A
%
Hz Changes to the main No. selection.
A
%
Hz The main No. increases.
%
Hz
A
The main No. increases.
%
Hz
A
Changes to the sub-No. selection.
Hz
A
%
↓
The sub-No. increases.
D02-1 is displayed.
Hz
A
%
After one second, the display will show the output
current as a percentage.
%
Hz
A
The main No. decreases.
A
%
Hz The main No. decreases.
A
%
Hz
↓
A
%
Hz After one second, the display will show the output
frequency as Hz.
When operating the parameters with the main & sub-No. selection method, the third decimal dot turns
ON while the parameter is selected to differentiate between the sub-No. selection method.
Press the
LCL
SET key to check the parameter No. during the monitor display.
4 – 17
5. 4. Operation Panel
4-3-4 Changing the Block-A, B, C parameters with main & sub-No. selection method
Refer to Sections 6-2 to 6-5, for the details of the Block-A, B and C parameters.
<Keys> <Display, unit LED> <Explanation>
Change the parameter A03-1 (DC Breaking Time) from 2.0 (default value) to 3.5.
RST
MOD
LCL
SET
A
%
Hz (In D00-0 Parameter Setting Mode)
A
%
Hz Changes to the Block-A Parameter Setting Mode.
A
%
Hz Changes to the main No. selection.
A
%
Hz The main No. increases.
The main No. increases.
Hz
A
%
The main No. increases.
Hz
A
%
Changes to the sub-No. selection.
↓ ↑
The sub-No. increases.
LCL
SET
Five times
LCL
SET
The display will alternate between Parameter Number
A03-1 and the present value 2.0.
Enable the value to be changed.
The preset setting value will display.
Change the flicker digit from 0 to 5.
Move the flickering digit to the digit to be changed
Change the flicker digit from 2 to 3.
↓ ↑
Fix the data.
Changing of parameter A03-1 to 3.5 will be completed.
The display will alternate between the Parameter
Number A03-1 and the present value.
(Parameter Number Changing Mode.)
4 – 18
6. 4. Operation Panel
(Note) If the (RUN) display appears when changing from the parameter No. to the setting No.
change state, the parameter is one that can be changed only while the inverter is stopped.
With the main & sub-No. selection method, if the sub-No. increases from the maximum state or
decreases from the minimum state, it will lop within the same main No.
The operation is summarized in the following figure. (D10: Simple PLC monitor is shown as an
example.)
Press the key to return to the main No. selection.
Press the
LCL
SET key to move to the setting value setting.
4-3-5 Changing the block No.
The operation panel block No. will change between five modes each time the
RST
MOD key is pressed.
The monitor mode D20-0, 1, 2 is the entry to the extended monitor mode.
Block-D
Monitor mode
Block-A
Parameter mode
Block-B
Parameter mode
Block-C
Parameter mode
Block-U
Parameter mode
RST
MOD
RST
MOD
RST
MOD
RST
MOD
RST
MOD
Fault history
reading
Minor fault history
reference
Non-default value
Parameter list
or
RST
MOD
LCL
SET
LCL
SET
LCL
SET
LCL
SET
Mode change Extended monitor mode
4-3-6 Displaying the sequence
With the LED panel, the D04-0 to 3: sequence input and D04-4 to 7: sequence output are displayed as
shown below. The D04-4: Sequence output 1 is shown as a display example.
Sequence OFF (OFF)
Sequence ON (ON)
Not a target (always OFF)
When the corresponding sequence turns ON, the vertical segment on the LED panel turns ON.
The decimal point LED flickers at a one-second cycle.
Each segment is updated as soon as the sequence status changes.
4 – 19
7. 4. Operation Panel
4-3-7 Fault History Display
Refer to Appendix Table 3 Fault Code Table for the fault codes and details.
<Keys> <Display, unit LED> <Explanation>
+
A
%
Hz (d00-0 will display in the Monitor Mode.)
↓
Select Monitor Parameter d20-0.
LCL
SET
The [ERR] symbol will display after one second.
↓ ↑
Enter the Faulty History Reference Mode by pressing
the
LCL
SET key.
The fault history number (E00 to E37) and the fault
code will display alternately.
↓ ↑
Refer to the contents of the fault buffer by pressing the
keys.
RST
MOD
LCL
SET
or
↓
End the Fault history Mode and return to the Monitor
Mode by pressing the
RST
MOD key or
LCL
SET key.
The [ERR] symbol will display after one second.
4 – 20
8. 4. Operation Panel
The fault history display has the following type of configuration.
The faults up to the previous faults are listed as display examples.
Fault
sequence
Fault history
No.
Display Explanation
Fault 1
(The latest)
E00 Primary fault (overcurrent)
E01 Secondary fault (retry over)
E02 Output frequency at fault
E03 Output current at fault
E04 DC voltage at fault
E05 Hardware detection fault at fault
E06 Cumulative power ON time at fault
E07 Cumulative run time at fault
Fault 2 E10 Primary fault (undervoltage)
E11 ----- Secondary fault (none)
E12 Output frequency at fault
E13 Output current at fault
E14 DC voltage at fault
E15 Hardware detection fault at fault (no display)
E16 Cumulative power ON time at fault
E17 Cumulative run time at fault
Fault 3 E20 -----
"----" indicates that a fault is not recorded.
The frequency value, voltage value, current
value, cumulative power ON time and
cumulative run time values are all 0 when no
fault is recorded.
* E00 to E37 are all ---- or 0 in the default state.
E21 -----
E22
E23
E24
E25
E26
E27
Fault 4 E30 -----
E31 -----
E32
E33
E34
E35
E36
E37
4 – 21
9. 4. Operation Panel
4-3-8 Operations and display when Block-A, B, C parameter change list is selected
Monitor parameter D20-2 is an entry into the Block-A, B, C parameter change list mode.
In this change list mode, only the Block-A, B, C parameters which differ from the default values can be
referred to and changed.
<Keys> <Display, unit LED> <Explanation>
An example of referring to the change list and changing C14-0 (A01 output gain) is shown below.
A
%
Hz (Monitor mode initial display)
↓
The block No. and parameter No. increases from
parameter D00-0 to D20-2.
Refer to sections 4-3-3 or 4-3-5 for these operations.
LCL
SET
One second after D20-2 is selected, "LST" will appear.
The change list mode is entered when the
LCL
SET key is
pressed.
↓ ↑
The number of the parameter (A03-1) which has been
changed from the first setting value and the current
setting value will alternately display.
A
%
Hz
↓ ↑
Next, the changed parameter will appear.
A
%
Hz The parameters which differ from the setting values
can be displayed in order by pressing the key.
↓ ↑ Display parameter: C14-0 (A01 output gain).
LCL
SET
LCL
SET
Select parameter C14-0.
The setting value change status will be entered.
Set the data.
Change parameter C14-0 to 0.95.
4 – 22
10. 4. Operation Panel
<Keys> <Display, unit LED> <Explanation>
↓ ↑ The parameter No. and current setting value will
alternately display.
Hz
A
%
↓ ↑
The parameters which differ from the setting values
can be displayed in order by pressing the key.
Hz
A
%
d.CHG and d.END will alternately display to indicate
the end of the change list.
RST
MOD
When the key is pressed, the change list will
display from the start.
↓
If the
RST
MOD key is pressed in the parameter change
state, the change list display mode will end.
The monitor parameter selection status will be entered.
("LST" will appear after one second.)
4 – 23
11. 4. Operation Panel
4-3-9 LED panel display at fault occurrence, and resetting methods
When a fault occurs in the inverter, the following type of display will appear on the LED panel.
REVFWD FLT LCL FLTFWD LCLREV
A
%
Hz
A
%
Hz
FLTFWD LCLREV
A
%
Hz
Alternate
display
Display before fault
occurrence
Moves to fault history display simultaneously with fault occurrence
The No. and details appear alternately at a 1-second cycle.
Fault
occurrence
When a fault occurs, the inverter stops operation, and the "FLT" status display LED on the panel will turn
ON.
At the same time, the head "E00" for the fault history and the fault code appear on the LED panel.
The cause of the fault code displayed at E00 to E07 is saved.
Refer to Appendix Table 3 Fault codes for details on the fault codes.
In the above figure, an overvoltage occurred during constant speed operation and a fault occurred.
If the keys are pressed while the history is displayed, the fault details can be displayed in the
range of E00 to E37.
To return to the normal parameter selection from the fault history display, press the
RST
MOD key.
Resetting a fault:
Refer to the details of E00 to E07 in the fault history display and the Appendix Table 3 Fault code
table, and remove the cause of the fault.
The FLT LED will turn OFF when the +
STOP RST
MOD keys are pressed or the sequence input RESET is
turned ON.
Refer to Chapter 5 section 5-3 Programmable sequence input function (PSI) for details on resetting
the fault with the sequence input RESET.
The display in this case is shown below.
FWD FLT LCL
A
%
Hz
FLTFWD LCLREV
A
%
Hz
FLTFWD LCLREV
A
%
Hz
Alternate
display
REV
+
STOP RST
MOD
Current display
The D monitor parameter displayed
just before the fault occurred is
returned to with fault reset.
Fault reset
When the fault is reset, the LED panel display will return to the D monitor parameter from the fault
history state.
Confirm that the cause of the fault has been removed, and then resume operation.
4 – 24
12. 4. Operation Panel
4-4 Customizing block-B, C parameter
Block-B, C parameters can be assigned to any Block-A Parameter in the range of A04-0 to A04-7, and
can be read and changed in the Block-A Parameter Setting Mode.
To use this function, set parameter No. to be displayed in A04-0 to 7 in parameter C10-0 to 7.
The case for the V/f control (C30-0 f0 = 1) of control selection (C30-0:f0) is shown below.
The operation example applies when the LED panel is connected.
<Block-A Parameters>
A00-n
Frequency setting
A01-n
Accel/decel time
A02-n
Torque Boost
A03-n
DC Brake
A04 : Custom Parameters
A05-0
Parameter B, C block skip
Read/Change
C10 : Custom Parameters
Parameter
Number
Setting
B10-0
[Acceleration time 2]
B10-1
[Deceleration time 2]
•
•
B10-2
•
•
C14-0
•
C15-2
•
•
-0
-1
-2
-3
-4
•
•
-7
-0
-1
-2
-3
-4
•
•
-7
<Block-C Parameters>
An example of selecting the custom parameter and changing the selected custom parameter setting
value is given on the following page.
4 – 25
13. 4. Operation Panel
<Keys> <Display, unit LED> <Explanation>
Register parameter B10-0 on Parameter C10-0 (Custom Setting).
(Mode and Parameter Number Change to C10-0)
LCL
SET
LCL
SET
↓ ↑ The display shows Parameter C10-0.
(Setting value 1.9F.F is the initial setting, and indicates
that nothing has been selected.)
The C10-0 setting value setting is started by pressing
the
LCL
SET key.
Set the parameter B10-0 sub-No. to "0".
The flickering digit will move when the key is
pressed.
↓ ↑
Set so that the high-order digit is block No. 10.
When the
LCL
SET key is pressed, the data will be set, and
the parameter selection screen will appear.
(Note) For parameter C, set as 2.xx.x.
Change parameter B10-0 that has been assigned to A04-0.
+
Enter the Block-A Parameter Setting Mode.
The Custom Parameter Number A04-0 will display.
LCL
SET
LCL
SET
↓ ↑ The display will alternate between Parameter Number
A04-0 and the value of Parameter Number B10-0
(Acceleration cushion time 2). Parameter Number A04-
0 is the same value as that of Parameter Number B10-
0.
When the
LCL
SET key is pressed, the B10-0 setting value
setting state will be entered.
Change the value.
When the
LCL
SET key is pressed, the data will be set, and
the parameter selection screen will appear.
↓ ↑
Note) If an undefined parameter No. such as the default 1.9F.F is set for C10-n, it will be interpreted
that a custom setting has not been made, and the A04-n display will be automatically set.
4 – 26