Sale!

ISH070/60022/0/0/00/0/00/10/00 Motor parameter settings

¥900.00

Brand: ELAU Model:ISH070/60022/0/0/00/0/00/10/00
Package/Specification: 2x19x12.8cm
Minimum Packaging Quantity: 1

Function: Control system accessories Features: Easy installation
Name: Digital Input Module Processing Customization:
No
Origin: USA Packaging: brand new and
widely used
Chemical, papermaking, power
generation, oil and natural gas
Quantity: 1-999
Batch Number ISH070/60022/0/0/00/0/00/10/00

Available for sale in Beijing; Tianjin; Hebei;
Shanxi; Inner Mongolia; Liaoning; Jilin;
Heilongjiang;
Shanghai;Jiangsu; Zhejiang; Anhui; Fujian; Jiangxi; Shandong; Henan;
Hubei; Hunan; Guangdong; Guangxi; Hainan;
Chongqing; Sichuan Guizhou; Yunnan; Xizang
;
Shaanxi Gansu; Qinghai; Ningxia; Xinjiang

Purpose TMR redundant structure

Category:
  • Email:3221366881@qq.com
  • Phone:+86 17750010683
  • Whatsapp:+8617750010683

Description

ISH070/60022/0/0/00/0/00/10/00 Motor parameter settings
ISH070/60022/0/0/00/0/00/10/00 Motor parameter settings
Module Clips Drive controller servo moto

ISH070/60022/0/0/00/0/00/10/00 Motor is a device that converts electrical energy into mechanical energy.

It uses energized coils (i.e. stator windings) to generate a rotating magnetic field and applies it to the rotor (such as a squirrel cage closed aluminum frame) to form a magnetic electric rotational torque.

ISH070/60022/0/0/00/0/00/10/00 Electric motors are divided into DC motors and AC motors according to their power sources. Most electric motors in the power system are AC motors,

which can be synchronous motors or asynchronous motors (the stator magnetic field speed and rotor rotation speed of the motor do not maintain synchronous speed).

The ISH070/60022/0/0/00/0/00/10/00 electric motor is mainly composed of a stator and a rotor. The direction of force movement of the energized wires in the magnetic field is related to the direction

of the current and the direction of the magnetic field lines (magnetic field direction). The working principle of an electric motor is that the magnetic field exerts force on the current, causing the motor to rotate.

Contact: Mr. Lai 
Wechat:17750010683 
Whats app:+86 17750010683 
Skype:+86 17750010683 
QQ: 3221366881 
3221366881@qq.com

Practical application of ABB industrial information control system 800xA in main shaft hoist control
introduction

The mine hoist is an important transportation equipment for mining enterprises. Its main function is to transport the ore, personnel or equipment that need to be transported to the destination by the lifting container. Therefore, it plays a very important role in the mining production process. Usually the mine hoist control system consists of a driving part and a control part. The working mechanism of the driving part is: the motor unit drives the mechanical hoisting device, and the frequency converter or other types of hoisting control systems drive the motor unit: the working mechanism of the control part is: Each component of the hoist is coordinated and controlled by the Distributed Control System (DCS). In addition to completing basic process control, it can also integrate intelligent instruments, intelligent transmission and motor control, and even production management and safety systems into one operation and engineering environment. middle. Therefore, the mine hoist requires a control system with high performance, high reliability, and high integration.

1ABB800xA system and AC800M controller introduction

1.1ABB800xA system introduction

The 800xA system is an industrial information control system launched by ABB. The core of its architecture is object-oriented (ObjectOriented) technology. Due to the adoption of ABB’s unique Aspect0object concept, enterprise-level information access, object navigation and access can become standardized and simple.

In order to provide a unified information platform for enterprise managers and technical personnel, the 800xA system provides a base platform (BasePlatform), which relatively separates the process control part and production control management and organically combines them together. As shown in Figure 1, the middle part is the basic platform, the upper part is the production control management part, and the lower part is the process control part. The basic platform provides standard interfaces for these two parts for data exchange.

1.2 Introduction to ABBAC800M controller and its programming configuration tools

AC800M controller is ABB’s latest controller series, which includes a series of processors from PM851 to PM865. The AC800M controller itself has a pair of redundant TCP/IP interfaces. It can use the MMs protocol to communicate with other control devices and 800xA operator stations through Ethernet. It can also use the Modbus protocol and Point-Point protocol through 2 serial ports. communication. The programming and configuration tool of AC800M is ControlBuilderM, referred to as CBM. It supports standard ladder diagram, function block language, text description language and assembly language to write control logic.

2. Improve the design and implementation of control system functions

2.1 Implementation of elevator operating speed curve

One of the main tasks of the lifting control system is to control the lifting motor to operate according to the speed-position curve given by the design, so that the lifting container passes through the acceleration section, the uniform speed section and the deceleration section successively, and stops accurately after completing the specified lifting distance. somewhere in the wellbore. In order to realize the function of precise position calculation, the designed elevator control system must be able to perform high-precision position calculation based on the photoelectric encoder connected to the main shaft of the elevator drum. The calculation formula is as follows:

In the formula, s is the actual position value of the elevator: sp is the distance corresponding to two consecutive encoder pulses: AN is the difference between the encoder count value at the reference position and the current position (signed variable): s0 is the reference position value.

The encoder counts are distributed according to the circumference of the drum. After the number of pulses Np generated by the encoder rotation is known, the diameter of the circumference of the centerline of the wire rope wrapped around the drum must be accurately known, so that it can be calculated according to formula (2) The distance sp corresponding to the two encoder pulses:

In the formula, D is the circumferential diameter of the centerline of the wire rope: Np is the number of pulses for one revolution of the known encoder.

But in formula (2), there is a value D that keeps getting smaller as the system runs. This is because the wire rope used in the elevator is wrapped around the drum, and there is a lining between the wire rope and the drum that increases friction. This liner will become thinner and thinner as the system continues to wear and tear, causing the diameter of the circle formed by the center line of the steel wire rope to gradually become smaller. When the pad wears to a certain extent, it will cause a large position calculation error. In order to solve the above problems, the two parking position switches in the shaft are used to correct the drum diameter, because the distance between the two parking positions can be obtained through actual measurement with high accuracy. During the actual operation, record the encoder count values ​​at the two parking positions respectively. According to formula (3), the actual correction value of sp can be calculated:

In the formula, sd is the distance between two parking positions: Abs is the absolute value operation: N is the encoder count value when there are two parking positions.

In this way, the initial sp value is first set according to the given design parameter value, and then the value is corrected according to the actual operating conditions, which can effectively ensure the accuracy of position calculation. At the same time, sp’ can also be substituted into formula (2), and the D value can be obtained in turn, which can be used as a basis for judging whether the liner is seriously worn.

After obtaining the elevator position value, the speed control curve can be calculated according to formula (4):

07AC91 GJR5252300R0101  ABB  Analog I/O module
502476L KCEU14201F51PEB  ALSTOM
1794-ASB   Allen-Bradley  FLEX Remote I/O Adapter 24VDC PS 8 I/O Module Capacity
1756-EN2TXT   Allen-Bradley  High Performance Bridge w/ Embedded Switch
TC-CCR014 97197975-A01  HONEYWELL  REDUNDANT NET INTERFACE
VIPC616 91611524 0360-1152D  SBS  IndustryPack Carrier
OKYM175W22  ABB  With battery contactor
J592S-450550  Dual Serial Port I/O Card
IOB-80   NYQUIST   SERVO DRIVE I/O BOARD
NW-BM85C002  Schneider  BM85 BRIDGE MULTIPLEXOR
IC754VSF12CTD  Allen-Bradley  Quick Panel Control
FBM215 P0917TQ   FOXBORO  Output Module
DSQC604 3HAC12928-1  ABB  Power Supply
IC754VSI12CTD  Allen-Bradley  Human Machine Interface (HMI)
A201SR04 01A201S12 5880-0009  MAN  CARRIER BOARD
2364-SPM03A  Allen-Bradley  Main Control Board
70PR05B-ES HESG332204R0001  ABB  Programmable Processor
P0924JH  FOXBORO  COMMUNICATION TERMINAL ASSEMBLY
LYD105A  HITACHI  Processor module
LYD000A  HITACHI  Digital input module
LYA210A  HITACHI  Analog Input Module
CB6687-2L   PILLAR
F8652E   HIMA   SAFETY SYSTEM MODULE CPU
6637517A1 660-MISC-3311  ABB  Backplane Control Circuit Board
TSXPBY10  Schneider   TSX-PBY CPU OBS PROFIBUS DP OPTION MODULE
PCD244A101 3BHE042816R0101  ABB  Channel thermocouple input
K4LCN-16 51403519-160n03W31-s0082  HONEYWELL  TDC 3000 Memory Processor
IS200TBCIH1CCD  GE   Speedtronic Turbine Control PCB board
133819-01  Bently Nevada  RTD/TC Temp I/O Module
1TGE120021R0010  ABB  Communication Gateway
G408-0001   ULTRA SLIMPAK  DC Powered DC Input Field Configurable Isolator
3200-1214-03   Asyst Technologies  Interface Sensor Board
PM3328B-6-1-3-E 80026-524-01  PIONEER MAGNETICS  POWER SUPPLY
TSXPBY100  Schneider  ROFIBUS DP V0 – MODULE KIT
PFEA113-65 3BSE028144R0065  ABB  Tension Electronics
7EX470.50-1  B&R  2003 CAN bus controller
1C31166G01  Westinghouse  Ink Controller Input Module
PPCC322BE HIEE300900R0001  ABB  PSR-2 processor + fieldbus
TK-PRS021 51404305-275  HONEYWELL  Direct Control Systems
TK-PRR021 51309288-275  HONEYWELL  Redundancy Module
TK-FTEB01 51309512-175  HONEYWELL  Ethernet Module
TK-IOLI01 51403427-175  HONEYWELL  Direct Control Systems
1C31122G01  Westinghouse  Digital Output Electronics Module
1398-DDM-075  Allen-Bradley  Ultra 200 Series Digital Servo Drive
IS220PSVOH1A   GE   Servo Control Pack
TC-PPD011  HONEYWELL  Battery Extension Module
T8312-4  ICS TRIPLEX  Trusted TMR Expander Interface Adapter Unit
FC-TSAI-1620M  HONEYWELL  Analog Input Module

Company advantage service:
1.Has been engaged in industrial control industry for a long time, with a large number of inventories.
2.Industry leading, price advantage, quality assurance
3.Diversified models and products, and all kinds of rare and discontinued products
4.15 days free replacement for quality problems
All kinds of module card driver controller servo motor servo motor embedded card wires and cables Power module control module is applicable to steel, hydropower, nuclear power, power generation, glass factory, tire factory, rubber, thermal power, paper making, shipping, navigation, etc

ABB — AC 800M controller, Bailey, PM866 controller, IGCT silicon controlled 5SHY 3BHB01 3BHE00 3HNA00 DSQC series
BENTLY — 3500 system/proximitor, front and rear card, sensor, probe, cable 3500/20 3500/61 3500/05-01-02-00-001 3500/40M 176449-01 3500/22M 138607-01
Emerson — modbus card, power panel, controller, power supply, base, power module, switch 1C31,5X00, CE400, A6500-UM, SE3008,1B300,1X00,
EPRO — PR6423 PR6424 PR6425 PR6426 PR9376 PR9268 Data acquisition module, probe, speed sensor, vibration sensor
FOXBORO — FCP270 FCP280 FCM10EF FBM207 P0914TD CP40B FBI10E FBM02 FBM202 FBM207B P0400HE Thermal resistance input/output module, power module, communication module, cable, controller, switch
GE —- IS200/215/220/230/420 DS200/215 IC693/695/697/698 VMICPCI VMIVME 369-HI-R-M-0-0-E 469 module, air switch, I/O module, display, CPU module, power module, converter, CPU board, Ethernet module, integrated protection device, power module, gas turbine card
HIMA — F3 AIO 8/4 01 F3231 F8627X Z7116 F8621A 984862160 F3236 F6217 F7553 DI module, processor module, AI card, pulse encoder
Honeywell — Secure digital output card, program module, analog input card, CPU module, FIM card
MOOG — D136-001-007 Servo valve, controller, module
NI — SCXI-1100 PCI – PXIE – PCIE – SBRIO – CFP-AO-210 USB-6525 Information Acquisition Card, PXI Module, Card
Westinghouse — RTD thermal resistance input module, AI/AO/DI/DO module, power module, control module, base module
Woodward — 9907-164 5466-258 8200-1300 9907-149 9907-838 EASYGEN-3500-5/P2 8440-2145 Regulator, module, controller, governor
YOKOGAWA – Servo module, control cabinet node unit

Main products:
PLC, DCS, CPU module, communication module, input/output module (AI/AO/DI/DO), power module, silicon controlled module, terminal module, PXI module, servo drive, servo motor, industrial display screen, industrial keyboard, controller, encoder, regulator, sensor, I/O board, counting board, optical fiber interface board, acquisition card, gas turbine card, FIM card and other automatic spare parts