5464-688 From Woodward, USA

  • Email:sauldcsplc@outlook.com
  • Phone:+86 18350224834
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Description


5464-688 From Woodward, USA

5464-688 Product Introduction

 
5464-688 Details:
 
 
The WOODWARD 5464-688 speed controller has a series of significant product features that make it an ideal choice for engine or generator speed control in industrial applications. The following are its main characteristics:
 
Wide application range: This speed controller can be used in diesel engines, gas engines, steam turbines, or gas turbines, with a wide range of applicability.
Flexible signal input: This controller can set the speed or load of the device based on computer control signals of 4-20mA or 1-5 Vdc, providing users with multiple options to meet different control needs.
Multiple working modes: This controller has two working modes: zero difference adjustment and differential adjustment.
Non differential regulation is mainly used for constant speed control and is suitable for single machine operation or multiple prime movers working together in an isolated power grid. Differential regulation provides more control flexibility.
Highly integrated: This speed controller can be used in conjunction with a range of Woodward devices, such as power automatic transferors, input-output controllers, generator load controllers, etc., to achieve more comprehensive system control.
Rich additional functions: In addition to basic speed or load control functions, the controller also has functions such as synchronous or deceleration control, high and low speed adjustment, and fuel limit for override start,
further enhancing its performance and application range.
High precision output signal: The output signal provided by the controller is proportional to the fuel setting required to achieve the desired speed/load, ensuring precise control.
Durable and sturdy: The design takes into account the complexity of industrial environments, allowing the controller to operate stably under various harsh conditions.
In summary, the WOODWARD 5464-688 speed controller plays an important role in industrial applications due to its wide application range, flexible signal input, multiple working modes, high integration,
rich additional functions, and high-precision output signals. Whether it is in the fields of generator sets, compressors, pump stations, or ships and locomotives, it can effectively ensure the stable operation of equipment within the set range.
 

5464-688 is manufactured by Woodward in the company”s easyYgen 3000XT series. The XT series has some updated features on the older 3000 series. Some new features include plug-in replacement,
power measurement level 1, editable screen, multi interface toolkit connection, etc. All details can be found in Woodward easyYgen manual 37582A
This model is the 3200XT-P1 (Package 1) version. A significant difference between the 5464-688 and similar 3200XT-P1-LT models is their operating temperature range.
The rated operating temperature range of this model is -20 to 70 ° C; the rated temperature range of the LT model is -40 to 70 ° C, suitable for outdoor use.
5464-688 is equipped with a monitor (not available on the 3100 model) and is designed for front panel installation.
The toolkit software used for controlling the generator set has multilingual functionality. English, French, German, and Japanese are just a few of the fourteen supported languages.
The built-in HMI has a color LCD and soft keys (now with dedicated buttons) for direct control of the 5464-688 device. Multi level password protection can prevent unauthorized changes.
The easyYgen 3000XT model 5464-688 has three freely configurable PID controllers. It provides input and output control (kW and kvar), as well as MCB and GCB synchronization (sliding/phase matching).
The generator set has four operating modes and the option to configure a manual circuit breaker control device.

How to use 5464-688?
What is 5464-688  used for?
5464-688 Customs Code

 

Contact Us
 
Mobile phone: 18350224834
 
E-mail: sauldcsplc@outlook.com
 
WhatsApp:+86 18350224834

Analysis of demand for industrial robots in the automotive industryThe automotive industry remains the largest robot application industry globally, with a share of almost 30% of total supply. Investment in new automotive production capacity and modernization processes have driven the automotive industry”s demand for robots. The use of new materials, the development of energy-saving drive systems, and fierce competition among major automotive markets are the fundamental driving forces for the extensive use of industrial robots in the automotive industry.According to OICA statistics, 79% of the installed capacity of industrial robots in the automotive industry is distributed in 5 key markets: China (39,351 units), Japan (17,346 units), Germany (15,673 units), the United States (15,246 units), and South Korea (11,034 units) .In 2019, the year-on-year growth in fixed asset investment in my country”s automobile industry was around 0%, and the overall situation was sluggish. This is also the lowest situation in recent years. It is predicted that with my country”s automobile sales stabilizing in 2020, fixed asset investment is expected to bottom out and rebound, driving the industrial robot industry to pick up.Breakdown of industrial robot status in 3C industry3C is the collective name for computer , communication and consumer electronic products, also known as “information appliances”. Such as computers, tablets, mobile phones or digital audio players. The 3C industry is another important source of demand for industrial robots.In 2018, the global demand for electronic equipment and components continued to decrease, and the Sino-US trade friction had a direct impact on Asia. Asia is an important production base for global electronic products and components. The highest installed capacity of robots in the 3C industry reached 122,000 units in 2017. , dropped to 105,000 units in 2018. The installed robot capacity in the 3C sub-industry mainly comes from three countries: China (43%), South Korea (19%), and Japan (17%).In addition, 5G from the three major operators will enter commercial application in the second half of 2019. In November 2019, the overall domestic smartphone market shipped 130.47 million units, a year-on-year decrease of 1.3%. However, the growth rate has improved significantly compared with the 10.7% year-on-year decline in August. The innovation brought by 5G to smartphones will not only increase smartphone shipments, but will also drive upgrading of mobile phone technology (TWS headsets, TOF lenses, etc.), which can drive demand for 3C automation equipment and thereby increase industrial robot shipments.According to data from the China Business Industry Research Institute, in 2017, my country”s industrial robot applications in the above fields accounted for 33.30%, 27.7%, 10.8%, 7.9%, and 2.3% respectively, of which the automotive industry and 3C accounted for more than 60%. At present, both automobiles and 3C have bottomed out and are rebounding, with obvious signs of improvement in demand. It is expected that the industrial robot industry chain will rebound in 2020. In addition to the automobile and 3C industries, the downstream application fields of industrial robots also include metal processing, plastics and chemicals, food, beverages, tobacco and other industries. The market demand for industrial robots will continue to expand in the future.

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