Sale!

HIEE300936R0101 UFC718AE101 Multifunctional control board

Original price was: $1,888.00.Current price is: $1,688.00.

Model:HIEE300936R0101 UFC718AE101

New original warranty for one year

Brand: ABB

Contact person: Mr. Lai

WeChat:17750010683

WhatsApp:+86 17750010683

Email: 3221366881@qq.com

Category:
Phone: +86 17750010683
Email: 3221366881@qq.com
connect:Mr. Lai

Description

Product parameters
Model: HIEE300936R0101 UFC718AE101
Brand: ABB
Size: 10cm x 10cm x 30cm
Weight: 1.2KG
Color: White Black
Working voltage: 5V
Working temperature: -10 ℃ to 50 ℃
Communication interface: RS232, RS485, CAN
Product specifications
Support for MODBUS protocol
Support hardware flow control
Using high-speed CMOS devices
Support for data caching
application area
HIEE300936R0101 UFC718AE101 is mainly used in the field of industrial automation, such as DCS PLCs, industrial controllers, robots, etc.
HIEE300936R0101 UFC718AE101 is mainly used in steel manufacturing, thermal power generation, hydroelectric power generation, glass manufacturing, paper mills, cement factories, petrochemicals
Chemical fiber, pharmaceutical manufacturing, rubber, plastics, ferrous metal food, machine tools, specialized equipment, transportation vehicles, mechanical equipment
Electronic communication equipment, instruments and beverages, tobacco processing, clothing, textiles, leather, wood processing, furniture, printing, etc
Model: HIEE300936R0101 UFC718AE101 Brand: ABB Archive Function: Communication Function Product Certification: Qualified
Working voltage: 24V Internal variable: No pattern Type: Vector diagram Applicable range: Industrial type
Number of screens: 4 Imported or not: Yes Customized for processing: No
Alarm function: Product name: Module Input voltage: 24V Rated current: 5A
Special service: including postage. Remarks: one-year warranty. Operation method: remote control
Applicable motor: servo motor system memory: 8MB Display color: 99.9 color gamut
Power voltage: 220V Input method: Current Input Material code: 65218
Communication interface: HDMI interface Working temperature: 60 Material number 26854 Other functions Analog communication
Output frequency: 50HZ Rated voltage: 24V Alarm type: Light alarm
Disconnect capacity: 0.01 Vector graph support: Minimum number of packages supported: 1
Display type: IPS USB interface quantity: 2 interfaces Memory card slot: 2
Panel protection level: 3 Memory expansion capacity: 128MB User script support: supported
Speed response frequency: 1MS Working environment temperature: -40 to 100 Insulation withstand voltage test: Passed
Third party communication products: ABB controllers available for sale in: nationwide
Product Instructions
Please install HIEE300936R0101 UFC718AE101 correctly on the device and connect the communication interface cable properly.
Please refer to the user manual for operating HIEE300936R0101 UFC718AE101 to ensure proper use.
Product Introduction
HIEE300936R0101 UFC718AE101 is a high-performance industrial automation communication module that uses high-speed CMOS devices, supports MODBUS protocol, and supports
hardware flow control. It is an ideal choice in the field of industrial automation.

Implementation of communication between ABC industrial robot and PLC based on DeviceNet fieldbus technology
introduction

In modern production systems, industrial robots and PLCs need to communicate and collaborate to complete production tasks. That is, the
industrial robots output signals to the PLC, allowing the PLC to control related equipment to drive the robot”s front-end tools. This article
mainly analyzes the communication problems between ABB industrial robots and PLC based on DeviceNet fieldbus technology.
DeviceNet is a common network communication method in the field of automation. ABB industrial robots establish a network to communicate with
Siemens PLC based on the DeviceNet network.

1Configure DSQC652

There are mainly 5 types of standard I/0 boards commonly used in ABB industrial robots [2]. Except for the different addresses assigned to
them during setup, their configuration methods are basically the same. This article mainly analyzes the ABB standard I/0 board DS0C652, which
mainly builds communication modules based on the DeviceNet network. The DS0C652 board has a distributed I/O module with 16 digital input and 16
digital output interfaces. The board is installed in the ABB industrial robot control cabinet. First, define the specific operation steps of the DS0C652 board,
enter the teach pendant control panel, then enter the configuration menu (Figure 1), select the DeviceNetDevice menu, and add a template to enter Figure 2.
ABB standard I/0 board is hung on the DeviceNet
network, so the address of the module in the network must be set. The jumpers 6 to 12 of terminal x5 are used to determine the address of the module.
The available address range is 10 to 63. Modify the parameters in the template parameters to complete the DS0C652 board settings. Click the drop-down
menu to select the “Use value from template” row, select
“DS0C65224VDCI/0Device”, and then the parameters that need to be set include the address of the I/0 board in the bus.
Figure 1 Configuring DSQC652

2Configure signals and parameters

After completing the DS0C652 board setting, the I/0 signal setting will be performed. Setting the I/0 signal is the basis for establishing communication with
the PLC. The PLC communicates and transmits data with the ABB industrial robot through the I/0 signal and the DS0C652 board. As shown in Figure 3, in the
signal configuration interface, there are many default I/0 points after the system is established. Modification is not allowed. Click “Add” to add signals. When setting
input and output signals, their address range is 0~15. First, enter the signal menu in the configuration options to set the input and output types, and modify the corresponding parameters.
After completing the settings, the computer prompts that you need to restart the settings. If there are multiple signals that need to be defined and the waiting time
is long after restarting multiple times, you can click “Cancel” and wait for all signals to be defined before clicking the “Yes” button to restart. After the signal settings are
completed, click to select “Input and Output” in the ABB menu to check whether all signals have been set.
Figure 2 Configure DSQC652 parameters
Figure 3 Signal parameter settings

During the signal establishment process, attention should be paid to the DSoC652 port and PLC port addresses used, and the corresponding address table should be
established, as shown in Table 1. The robot interacts with the PLC through I/O signals. During the setting process, there must be no errors in the port and address number
of the PLC connected to the DSoC652. If the address is set incorrectly, the communication between the robot and the PLC will not work properly.

The entire robot teaching pendant setting process is shown in Figure 4.

Contact person: Mr. Lai
Mobil:17750010683
WeChat:17750010683
WhatsApp:+86 17750010683
Email: 3221366881@qq.com

Excitation system ABB module CI840
Excitation system ABB module CI830 3BSE020773R1401
Excitation system ABB module CI830
Excitation system ABB module CI830
Excitation system ABB module CI820V1
Excitation system ABB module CI820-2
Excitation system ABB module CI820-1
Excitation system ABB module CI820
Excitation system ABB module CI810V2
Excitation system ABB module CI810V1
Excitation system ABB module CI810V1
Excitation system ABB module CI810B 3BSE020520R1
Excitation system ABB module CI810B
Excitation system ABB module CI810B
Excitation system ABB module CI810B
Excitation system ABB module CI810A
Excitation system ABB module CI810
Excitation system ABB module CI801kit
Excitation system ABB module CI801-eA
Excitation system ABB module CI801-2
Excitation system ABB module CI801
Excitation system ABB module CI801
Excitation system ABB module CI801
Excitation system ABB module CI773F 3BDH000395R0005
Excitation system ABB module CI773F
Excitation system ABB module CI773F
Excitation system ABB module CI773
Excitation system ABB module CI741F
Excitation system ABB module CI687K01
Excitation system ABB module CI627A 3BSE017457R1
Excitation system ABB module CI627A 3BSE008799R1
Excitation system ABB module CI627A
Excitation system ABB module CI627 3BSE009799R1
Excitation system ABB module CI627
Excitation system ABB module CI627
Excitation system ABB module CI626V1
Excitation system ABB module CI626A 3BSE005029R1
Excitation system ABB module CI626
Excitation system ABB module CI615
Excitation system ABB module CI610
Excitation system ABB module CI570 3BSE001440R1
Excitation system ABB module CI547
Excitation system ABB module CI546 3BSE012545R1
Excitation system ABB module CI546 3BSE012545R1
Excitation system ABB module CI541V1 3BSE014666R1
Excitation system ABB module CI540 3BSE001077R1
Excitation system ABB module CI535V30 3BSE022162R1
Excitation system ABB module CI534V02 3BSE010700R1
Excitation system ABB module CI532V09
Excitation system ABB module CI532V05 3BSE007297R1
Excitation system ABB module CI532V03
Excitation system ABB module CI522A 3BSE018283R1
Excitation system ABB module CI522A 3BSE018283R1
Excitation system ABB module CI522A
Excitation system ABB module CI520V1
Excitation system ABB module CD722F
Excitation system ABB module CB810
Excitation system ABB module CB801 3BSE042245R1
Excitation system ABB module CB801
Excitation system ABB module CB801
Excitation system ABB module CB801
Excitation system ABB module CB220S
Excitation system ABB module CB220N
Excitation system ABB module CB220B
Excitation system ABB module CAI04

Reviews

There are no reviews yet.

Be the first to review “HIEE300936R0101 UFC718AE101 Multifunctional control board”

Your email address will not be published. Required fields are marked *