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LD800HSE 3BDH000320R0101 Using parameter ABB

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

Model:LD800HSE 3BDH000320R0101

New original warranty for one year

Brand: Honeywell

Contact person: Mr. Lai

WeChat:17750010683

WhatsApp:+86 17750010683

Email: 3221366881@qq.com

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Email: 3221366881@qq.com
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Description

LD800HSE 3BDH000320R0101 Using parameter ABB
LD800HSE 3BDH000320R0101 Using parameter ABB
LD800HSE 3BDH000320R0101 Using parameter ABB Product details:
LD800HSE 3BDH000320R0101 is an interface communication module from ABB, with product model LD800HSE 3BDH000320R0101. This module is commonly used in industrial automation systems,
especially in the field of process control. Here are some possible application and product operation areas:
Industrial automation: ThLD800HSE 3BDH000320R0101 communication module may be used to communicate with other automation equipment, control systems,
or sensors to achieve automation and integration of industrial production lines.
Process control: This module may be used to monitor and control various processes, such as chemical plants, power plants, pharmaceutical plants,
etc. Through communication with other devices, it can achieve data exchange and control instruction transmission.
PLC (Programmable Logic Controller) systemLD800HSE 3BDH000320R0101 may be integrated into the PLC system for communication with other PLC modules or
external devices, achieving centralized management of the entire control system.
Data collection and monitoring: In the data collection systemLD800HSE 3BDH000320R0101 can be used to obtain data from various sensors and devices,
and transmit this data to the monitoring system for real-time monitoring and analysis.
Remote monitoring and operation: Through collaborative work with other communication modulesLD800HSE 3BDH000320R0101 may support remote monitoring and operation,

allowing operators to monitor and control the production process from different locations.

Contact person: Mr. Lai
Mobil:17750010683
WeChat:17750010683
WhatsApp:+86 17750010683

Design and implementation of variable frequency transmission system based on ABB hardware architecture
introduction

With the increasing development of transmission technology and the increasing demand for actual use, variable frequency transmission systems have been widely used.

As a Fortune 500 company in the world, ABB is a leader in the fields of power and automation technology and has strong capabilities in control
systems, high-voltage, medium-voltage and low-voltage frequency conversion technology and transmission technology. Therefore, this article mainly
relies on ABB”s control, frequency conversion and transmission technology, and uses related hardware products to design and implement the frequency conversion transmission system.

To truly design and implement a usable variable frequency drive system, the entire system must be fully equipped, conveniently operable and
compatible with a wide range of needs, so that it can be used without changing the control method and operation. According to the actual control needs,
that is, combining frequency converters with different performances and variable frequency motors with different speeds or torques to quickly build and realize a variety of control requirements.

1 System design purpose and composition

The design purpose of this system is to control ABB inverters through local and remote control methods and complete 4 independent channels
of closed-loop speed control to drive different test objects to rotate.

The entire control system consists of the following four main components: remote control computer, panel industrial computer (touch screen),
PLC and speed-regulating frequency converter. The system design block diagram is shown in Figure 1.

In order to ensure the accuracy of motor speed control, an encoder module is added. The PLC can obtain the feedback of the rotary encoder in the
frequency converter through the ProfibusDP protocol. The speed control is performed through the frequency converter for internal PID closed-loop control.

2 System hardware implementation

2.1 Control some hardware

The control part of the hardware mainly refers to the sum of hardware that supports operators to use the equipment directly or indirectly and complete
the functions of the equipment. Its main hardware includes computer control terminal, touch screen control terminal, PLC control unit, other auxiliary
circuits and measurement and control components.

2.2 Transmission hardware

The transmission hardware mainly refers to the total number of equipment that can relatively independently perform a complete transmission function.
Its main hardware includes frequency converters, variable frequency motors (configured with rotary encoders as needed) and other auxiliary circuits.
Among them, the selection of motors and frequency converters should be based on the principle of selecting the motor first and then selecting the
frequency converter. details as follows:

First, according to the tangential speed at which the object under test is to complete rotation, select the motor speed according to the following formula:
Secondly, choose based on several other important basic parameters of the motor, such as system hardness, torque, weight, etc
. This system uses ABB”s variable frequency motor.

Finally, select an appropriate frequency converter based on the motor power. In addition, the actual situation of the object being tested must also be taken
into consideration, such as whether the rotating load belongs to the heavy-load usage of the frequency converter, etc.

3Software system

System software includes three major categories in total, namely computer control software, touch screen software and PLC software. Among them, the PLC software, as the
underlying software, is responsible for the interaction with the computer control software and touch screen software on the upper side, and the interaction
with the frequency converter on the lower side. Therefore, from the architecture of the entire software system, it can be defined as a host and slave computer structure.
3.1 System development platform

The software system has two control methods: remote and local. The development platforms for the three major categories of software are Windows operating system,
LabVIEW[4] integrated development environment, CodesysV2.3, and CP400.

3.2 System software architecture

The software of the entire system is divided into three types, namely remote control software, PLC control software and local control software. Among them,
the remote control software runs under the Windows operating system and is developed under the LabVIEW integrated development environment; the PLC control software is
developed under the CodesysV2.3 programming environment; the local control software runs on the touch screen computer and is developed under the CP400 environment.
The relationship between the three software is shown in Figure 2.

SAIA MURTEN PCD2.M110 CONTROL DEVICE
SAIA MURTEN PCD2.C100 CONTROL DEVICE
SAIA BURGESS PCD2.M110 CONTROL DEVICE
SABROE RMM SLAVE CARDS REFRIGERATION CONTROL SYSTEM
SAACKE CMFS1-T09-B BURNER CONTROL UNIT
SAACKE BOILER CONTROL UNIT SAACKE IMS INTEGRATED MANAGEMENT SYSTEM
SAACKE BAC-UV BURNER CONTROL UNIT
ROLLS-ROYCE W-1440-00-07 STEERING GEAR CONTROL PANEL
ROLLS-ROYCE MARINE DTL-NT-318-106 WINCH CONTROL SYSTEM
ROLLS-ROYCE MARINE AQM-STBD CONTROL PANEL
ROLLS ROYCE MARINE WINCON-ULSTEIN-MASTER-DISPLAY CONTROL PANEL
ROLLS ROYCE MARINE ULSTEIN-WINCH-SPEED-LEVER CONTROL PANEL
ROLLS ROYCE DECK MACHINERY MPC-300-A7029099 TERMINAL CONTROLLER UNIT
REXROTH VT-11013-12-7087-06W30-MNR-R900010960 CONTROL UNIT
REXROTH MNR-3460690120-HW-D-SW-O3WG-MAREX-OS-III MPC CABINET
REXROTH MAREX-OS-II-MPC-MODULAR-3460690000 CONTROL UNIT
REXROTH MANNESMANN-VT11025-16 AMPLIFIER MODULE
REXROTH 7291-FD-14W14-MNR-R419300356 CONTROL PANEL
REXROTH 7291-FD-09W31-MNR-R417000517 CONTROL PANEL
ABB  216AB61  HESG216881/B
ABB  216AB61  HESG324013R100
ABB  216AB61  HESG324013R100 / HESG216881/B
ABB  216AB61
ABB  216EA61b
GE   VMIVME-5565-010000
GE   VMIVME-5565-110000
REXROTH 7291-FD-09W27-MNR-3622312020 CONTROL PANEL
PRECIMA PRODUCTION AB-ROLLS-ROYCE-KAMEWA 1082 WATER JET CONTROL UNIT-2
PRECIMA PRODUCTION AB-ROLLS-ROYCE-KAMEWA 1082 WATER JET CONTROL UNIT-1
POUNDFUL PF-MF-3Q-3 TRANSMITTER MODULE
PLEIGER ELEKTRONIK 362-D 5810 WITTEN 3 CONTROL PANEL
PLEIGER EHS-CM CONTROL MODULE
PLEIGER EHS CM-2 CONTROL MODULE
PHONTECH DICS-6112 UNIT
PHOENIX CONTACT BLOMBERG GERMANY MINI MCR-2-UI-UI-PT 3-WAY SIGNAL CONDITIONER
PCS SYSTEME LAUER-PCS-200FZ CONTROL PANEL
PAN DELTA CONTROLS ENGINE TELEGRAPH EOT-706 CONTROL PANEL
PAN ASIA TOTAL INSTRUMENT & CONTROL MODEL-P940-P-I CONVERTER MODULE
NUNOTANI KEIKI TYPE-RE-S8A ELECTRIC PROPELLER SHAFT REVOLUTION COUNTER
NUNOTANI KEIKI PA-SPA K118 ELECTRIC PROPELLER SHAFT REVOLUTION INDICATOR CONTROL BOX
NORCONTROL LOS-LOCAL OPERATOR STATION CONTROL PANEL

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