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


New original warranty for one year

Brand: ABB

Contact person: Mr. Lai


WhatsApp:+86 17750010683




Product parameters
Model: TP830
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
TP830 is mainly used in the field of industrial automation, such as DCS PLCs, industrial controllers, robots, etc.
TP830 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: TP830 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 TP830 correctly on the device and connect the communication interface cable properly.
Please refer to the user manual for operating TP830 to ensure proper use.
Product Introduction
TP830 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.

Contact person: Mr. Lai
WhatsApp:+86 17750010683

On April 25, 2017, ABB and IBM announced a strategic cooperation today. ABB’s industry-leading digital solution ABB Ability will join forces with IBM Watson IoT cognitive computing technology to create new innovations for customers in the power, industry, transportation and infrastructure fields. the value of.

ABB has deep industry expertise and cross-industry digital solutions, and IBM is an expert in artificial intelligence, machine learning and different vertical industries. The cooperation between the two parties will benefit customers. ABB Ability and Watson will first cooperate in the fields of factories and smart grids to provide real-time cognitive analysis.

“The strong alliance between the two parties marks a new stage in the development of industrial technology. We will not only have the interconnected systems that currently collect data, but will also use data to sense, analyze, optimize and take countermeasures in industrial operations and equipment to help industrial customers Improve uptime, speed and production.” ABB Group CEO Spiesshofer said, “ABB has installed 70 million connected devices around the world, has 70,000 running control systems and 6,000 enterprise software solutions. As a trusted leader in the industrial field, ABB has been deeply involved in industrial digitalization for more than 40 years. IBM is a leader in artificial intelligence and cognitive computing. IBM and ABB will work together to create powerful solutions for customers and seize the fourth The great opportunities presented by the sub-industrial revolution.”

Groundbreaking new solutions

This breakthrough solution, jointly developed by ABB and IBM, will provide users with a new way to address major challenges in the industrial field, such as strengthening quality control, reducing downtime, and increasing the speed and output of industrial processes. These solutions will not only have the data collection capabilities of existing connected devices, but will also cover cognitive industrial devices that use data to detect, analyze and take response measures, helping workers eliminate ineffective processes and redundant work.

IBM Chairman, President and CEO Rometty said: “This important cooperation with ABB will help Watson more deeply participate in industrial applications in different fields such as manufacturing, power and transportation. In the products, equipment and systems of industrial enterprises The data generated will also significantly improve innovation, efficiency and safety. Through Watson’s extensive cognitive capabilities and the platform’s special support for the industrial sector, these huge amounts of new resources can be transformed into trusted value. We eagerly look forward to working with ABB on cooperation in this new industrial sector.”

Bringing real-time cognitive analytics to the factory

For example, ABB and IBM will use Watson artificial intelligence to help users identify substandard products through real-time product images. These

The images are captured by the ABB system and analyzed through IBM Watson IoT for Manufacturing. Previously, this product inspection process was completed manually, which was not only slow but also prone to errors. Through the perfect combination of Watson’s real-time cognitive analysis directly in the factory with ABB’s industrial automation technology, users can increase production line output while improving production accuracy and product consistency. The solution alerts producers to critical faults that cannot be discerned by the human eye during the assembly process of product parts, allowing quality control experts to quickly intervene. This easier problem detection will improve the quality of all products on the production line, help users avoid expensive product recalls and suffer reputational losses, and significantly improve their competitiveness.

Smart grid real-time cognitive analysis

ABB and IBM will use Watson technology to extract historical and weather data to predict power supply patterns on the power generation side and demand side, helping power customers optimize operations and maintain smart grids, and solve the increasingly complex balance between traditional and renewable energy faced by smart grids. Sexual issues. Forecasts of temperature, light and wind speed will be used to predict electricity consumption demand, helping power customers determine optimal load management and real-time electricity prices.

Excitation system ABB module ITCTU05
Excitation system ABB module ITCTU04
Excitation system ABB module ITCTU03/11
Excitation system ABB module ITCTU03
Excitation system ABB module IT94-3 HESG440310R2 HESG112699/B
Excitation system ABB module IPSYS01
Excitation system ABB module IPSYS01
Excitation system ABB module IPSYS01
Excitation system ABB module IPS21-35AD
Excitation system ABB module IPMON01
Excitation system ABB module IPMON01
Excitation system ABB module IPFLD48
Excitation system ABB module IPFLD24
Excitation system ABB module IPFLD125
Excitation system ABB module IPFLD01
Excitation system ABB module IPFCH01
Excitation system ABB module IPFAN14
Excitation system ABB module IPFAN13
Excitation system ABB module IPFAN12
Excitation system ABB module IPFAN11
Excitation system ABB module IPESW11
Excitation system ABB module IPECB13
Excitation system ABB module IPECB11
Excitation system ABB module IPCHS02
Excitation system ABB module IPCHS01
Excitation system ABB module IPBLK01
Excitation system ABB module IPBLC01
Excitation system ABB module INTKM01
Excitation system ABB module INSPM01
Excitation system ABB module INSOE01
Excitation system ABB module INSIM01
Excitation system ABB module INSEM11
Excitation system ABB module INSEM01
Excitation system ABB module INSCS01
Excitation system ABB module INPTM01
Excitation system ABB module INPPT01
Excitation system ABB module INPCT01
Excitation system ABB module INPCI02
Excitation system ABB module INPCI01
Excitation system ABB module INPBS01
Excitation system ABB module INNTP01
Excitation system ABB module INNPM22
Excitation system ABB module INNPM22
Excitation system ABB module INNPM22
Excitation system ABB module INNPM22
Excitation system ABB module INNPM12
Excitation system ABB module INNPM12
Excitation system ABB module INNPM12
Excitation system ABB module INNPM11
Excitation system ABB module INNPM01
Excitation system ABB module INNIS21
Excitation system ABB module INNIS21
Excitation system ABB module INNIS21
Excitation system ABB module INNIS11
Excitation system ABB module INNIS11
Excitation system ABB module INNIS11
Excitation system ABB module INNIS01
Excitation system ABB module INNIS01
Excitation system ABB module INNIS01
Excitation system ABB module INLIM03
Excitation system ABB module INLIM02
Excitation system ABB module INIT03
Excitation system ABB module INIT03
Excitation system ABB module INIPT02
Excitation system ABB module INIPT01
Excitation system ABB module INIIT14


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