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SH070/60010/0/1/00/00/10/00/00 Motor parameter settings

¥900.00

Brand: ELAU Model:SH070/60010/0/1/00/00/10/00/00
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 SH070/60010/0/1/00/00/10/00/00

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
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Description

SH070/60010/0/1/00/00/10/00/00 Motor parameter settings
SH070/60010/0/1/00/00/10/00/00 Motor parameter settings
Module Clips Drive controller servo moto

SH070/60010/0/1/00/00/10/00/00 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.

SH070/60010/0/1/00/00/10/00/00 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 SH070/60010/0/1/00/00/10/00/00 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 
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Design of ABB industrial robot deburring and grinding workstation based on RobotStudio simulation software
introduction

As an official offline programming software for ABB robots, Robotstudio not only has powerful simulation and offline programming functions, but also has automatic path generation function and simulation monitoring collision function. It can realize the simulation of robots in real scenes, so as to timely update existing robot programs. optimize. On-site teaching programming will affect normal production activities on site.

The application of Robotstudio software offline programming can reduce on-site teaching and programming time.

As a traditional process of mechanical processing, deburring and grinding have a wide range of applications. However, for a long time, in the process of manual deburring and polishing, there have been differences in operations between workers. The manual operation is not repeatable and the deburring effect is unstable, which has seriously affected the surface quality and service life of the finished product; and the working environment There is a large amount of dust floating in the air and the conditions are harsh, seriously endangering the physical and mental health of workers. With the proposal of “Made in China 2025”, intelligent manufacturing production has become an important development direction for the transformation and upgrading of the future manufacturing industry. The use of industrial robot automated production lines for repetitive batch processing operations can not only greatly improve production efficiency, but also greatly improve product quality. Yield and production stability. Therefore, before designing the robot polishing program, if the shape, size and polishing amount of the workpiece to be polished are known, the robot offline program can be written on the Robotstudio software according to the existing conditions, thereby improving the efficiency of on-site programming.

1Design task description

This task is to create a new simulation workstation in ABB robot simulation software Robotstudio. The corresponding training equipment in reality is the Yalong YL-l360A industrial robot deburring and grinding system control and application equipment. The industrial robot selection and method of the simulation workstation are The grinding head installed on the blue plate refers to the Yalong YL-l360A industrial robot deburring and grinding system control and application equipment, and the workpiece is customized. The ABB industrial robot deburring and grinding workstation simulation training process includes: creating a workstation, setting up tools, creating smart components, creating tool coordinate systems, creating trajectories, programming, simulation design, and verification.

2 Task implementation

2.1 Create a workstation

Import the robot: First, create a new simulation workstation in the Robotstudio software. The workstation name is self-named, and then import the corresponding industrial robot IRB1410. The robot position remains unchanged by default. Create a robot system, modify the system options, check 709-1DeviceNetMaster/s1ave, select Chinese as the language, and leave the other options unchanged by default, then click Confirm to create the robot system. After the robot system is created, hide the industrial robot IRB1410 to facilitate subsequent workstation operations.

Import workpiece: The workpiece here is customized, and the corresponding workpiece is selected according to the actual situation on site. This article uses the original workpiece Curvet in Robotstudio software. After importing it into the workstation, according to the reachable range of the robot, just place the workpiece at a suitable location within the reachable range of the robot, as shown in Figure 1.

Import the grinding rotor tool: First, create a new grinding rotor tool component – rotor – copy (2) and rotor – copy (2) in the so1idworks 3D software. The rotor – copy (2) is a rotatable grinding rotor. —The copy is the tool body, which is the grinding rotor frame, and is installed on the robot flange, as shown in Figure 2.

2.2 Setting tools

First, move the rotatable grinding rotor and the tool body to the local origin based on point A, and adjust the initial tool angle so that the grinding rotor is parallel to the x-axis of the geodetic coordinate system, as shown in Figure 3. Set the local origin of the tool body at this time, change the position x, y,: to 0, 0, 0, and change the direction x, y,: to 0, 0, 0.

Figure 3 Tool settings

Create a new frame at point B of the tool body, name it “frame l”, and adjust the direction of frame l so that the axis is perpendicular to the plane of point B. The specific direction is shown in Figure 4.

ABB LST200 Ultrasonic level transmitter
FBM215/218 P0917XV COMPRESSION TERMINATION ASSEMBLY
DS200DCFBG1BLC GE Power Supply Board
ALLEN BRADLEY 192646 PC BOARD
ALLEN BRADLEY 185558 Driver isolation circuit board
ALLEN BRADLEY 154958 PC BOARD
Rockwell 148540 NODE ADAPTER BOARD
ALLEN BRADLEY 74102-462-53 Ac driver board
Rockwell A-B 1336S-EN6 Ac driver
A-B 1336-L5 Control interface board
TRICONEX 4000098-510 Cable assembly 10 ft
WEIDMULLER 915917/67  Terminal Adapter
146031-01 Bently Nevada Transient Data Interface I/O Module
MTL  8724-CA-PS module power supply carrier
Allen-Bradley 1756-OB16E Discrete output module
1452-25M Prosoft  Connector
842E-CM-MIP3BA  Encoder
Foxboro P0926JM 8 Position Modular Baseplate Stock
P0922XS Foxboro TSC Power Cable
FOXBORO RH916DD controller
AO920N 3KDE175533L9200 S900 I/O system
FOXBORO RH916XG FBM 201 TERMINAL ASSEMBLY
AO920B 3KDE175532L9200 S900 I/O System
DO930N 3BDS014114 S900 I/O system Digital Output
DO910S 3KDE175321L9100 S900 I/O system
DO910N 3KDE175323L9100 S900 I/O system
PM862K02 3BSE081636R1 AC800M PM862 controller
PM863K01 3BSE088381R1 AC800M PM863 controller
PM866AK01 3BSE076939R1 AC800M PM866/PM866A controller
PM867K02 3BSE081638R1 AC800M PM867 controller
PM864AK02 3BSE018164R1 AC800M PM864A controller
PM851AK01 3BSE066485R1 AC800M PM851/PM851A controller
PM856AK01 3BSE066490R1 AC800M PM856A controller
SA920N 3BDH000600R1 S900 I/O system
SA920B 3BDH000601R1 S900 I/O system
DX910S 3KDE175311L9100 S900 I/O system
DX910N 3KDE175313L9100 S900 I/O System
DX910B 3KDE175312L9100 S900 I/O System
DP910S 3KDE175361L9100 S900 I/O system
DP910N 3KDE175363L9100 S900 I/O system
DP910B 3KDE175362L9100 S900 I/O system
PM858K02 3BSE082896R1 AC800M PM858 controller unit
PM858K01 3BSE082895R1 AC800M PM858 controller unit
PM857K02 3BSE088386R1 AC800M PM857 controller
PM857K01 3BSE088385R1 AC800M PM857 controller
TU921N 3KDE175113L9210 S900 I/O system
TU921S 3KDE175111L9210 S900 I/O system
CI920AB 3BDH000691R1 S900 I/O system communication interface module
CI920AN 3BDH000692R1 S900 I/O system communication interface module
DO910B 3KDE175322L9100 S900 Digital output module of the I/O system
CI920AS 3BDH000690R1 S900 I/O system communication interface module
FOXBORO RH916YY FBM242 Comp Term Assy
1756-EN2T/B ALLEN BRADLEY Communication interface module
NI-9923 781503-01 NI Terminal Block
CDAQ-9185 785064-01 NI Ethernet CompactDAQ Chassis
MTL MTL831B serial-data outputs

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