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Street Lamp Energy-saving Voltage Regulation Device, Remote Monitoring and Control Terminal System Shdy-bz-60, Shdy-bz-50

Street Lamp Energy-saving Voltage Regulation Device, Remote Monitoring and Control Terminal System Shdy-bz-60, Shdy-bz-50 photo-1
Street Lamp Energy-saving Voltage Regulation Device, Remote Monitoring and Control Terminal System Shdy-bz-60, Shdy-bz-50 photo-2
Street Lamp Energy-saving Voltage Regulation Device, Remote Monitoring and Control Terminal System Shdy-bz-60, Shdy-bz-50 photo-3
US$ 153.69 1 - 4 Piece
US$ 152.31 ≥5 Piece
Key Specifications
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Main Markets:
North America, South America, Eastern Europe, Southeast Asia, Africa, Oceania, Mid East, Eastern Asia, Western Europe, Central America, Northern Europe, Southern Europe, South Asia, Domestic Market
Location:
Wenzhou, Zhejiang, China
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Port of Shipment:
China
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Delivery time depends on order quantity.

         The power-saving control principle of the intelligent lighting energy-saving controller is to utilize the IGBT dynamic regulation principle combined with microcomputer control technology to control the load voltage and current. It monitors the power grid changes in real-time and tracks and adjusts the voltage and current of the lighting main circuit, enabling the lamps to work under optimal conditions, improving voltage fluctuations and reducing the additional power consumption of the load. Through the longitude and latitude time controller (astronomical clock) and the light control controller, in conjunction with the street lamp energy-saving voltage stabilization and regulation device and the remote monitoring and regulation terminal system SHDY-BZ-60, SHDY-BZ-50, functions such as street lamp switching, energy-saving, and protection can be realized. The control strategy is a hybrid control strategy of "light control + time control". The intelligent control embedded in the control circuit adjusts the duty cycle of PWM control, and then adjusts the voltage amplitude output by the device, so as to achieve the lighting illuminance according to the on-site needs.


         Rated operating current (A): SHDY-BZ-30, SHDY-BZ-40, SHDY-BZ-50, SHDY-BZ-60, SHDY-BZ-80, SHDY-BZ-100, SHDY-BZ-120, SHDY-BZ-150, SHDY-BZ-160, SHDY-BZ-180, SHDY-BZ-200, SHDY-BZ-225, SHDY-BZ-250, SHDY-BZ-300

    

 Technical parameters of the street lamp energy-saving voltage stabilization and regulation device and the remote monitoring and regulation terminal system

  Serial number  Item  Parameter

  1  Input rated voltage  ~380V+10%, -5%

  2  Harmonic pollution  None

  3  Temperature  -20℃~45℃

  4  Storage temperature  -40℃~60℃

  5  Relative humidity  

  6  Altitude  

  7  Insulation class  Class E

  8  Heat dissipation  Fan cooling

  9  Fan voltage  220V

  10  Protection class  IP30 (indoor)/IP54 (outdoor)


Product performance characteristics of the street lamp energy-saving voltage stabilization and regulation device and the remote monitoring and regulation terminal system:

        Remarkable energy-saving effect: The energy-saving rate can be simply set according to the user's requirements, and the adjustable range is between 15% - 35%.

        Soft start function: The soft start time can be set within the range of 0.5 - 120 seconds, allowing the lighting to start smoothly under extremely heavy loads, which can greatly extend the service life of the lamps.

        It adopts static automatic compensation, which is more scientific.

        Remote control (optional). It has an upgradable remote wireless communication function and can be remotely controlled via GPRS.

 

Installation steps for the street lamp energy-saving voltage regulation device and the remote monitoring and control terminal system SHDY-BZ-60 SHDY-BZ-50:

      When installing and constructing the intelligent lighting control cabinet, strictly follow the regulations of the "Code for construction and acceptance of high-voltage electrical appliances in electrical installation projects" (GBJ147 - 90), the "Code for construction and acceptance of busbar devices in electrical installation projects" (GBJ149 - 90), and the "Code for construction and acceptance of switchgear and primary circuit wiring in electrical installation projects" (GBJ50171 - 92).

Process flow: Equipment unpacking inspection → Equipment handling → Cabinet stable installation → Secondary wiring inside the cabinet → Testing → Acceptance and power-on operation.

        During installation, arrange the cabinets on the foundation steel section according to the layout of the construction drawings in sequence. For a single cabinet, correct the verticality of the cabinet surface and side. After all the cabinets in a row are in place, first align the cabinets at both ends. Stretch a thin wire at a height of two-thirds from the ground below the cabinets and align each cabinet one by one. Use 0.5㎜ iron sheets for alignment, and the number of gaskets at each place should not exceed three.

        Then, drill holes on the foundation steel frame according to the size of the cabinet's fixing bolt holes. Without special requirements, drill φ12.2㎜ holes for low-voltage cabinets and φ16.2㎜ holes for high-voltage cabinets, and fix them with M12 and M16 galvanized screws and spring washers respectively. The vertical and horizontal unevenness of the cabinet should meet the requirements of the construction specifications. The cabinet body and the side panels should be connected and fixed with galvanized screws.

        The cabinet body should also be reliably grounded. Weld a copper terminal on the side of the foundation steel section at the lower left rear of each cabinet, and connect it firmly to the grounding terminal of the cabinet with a 6㎜2 copper wire. The busbars on the cabinet top should be strictly configured according to the requirements. The connection of copper busbars should be mechanical connection, and the lap joints should be tinned. The busbar spacing should be uniform, and the maximum allowable error should not exceed 5㎜. Wooden tools should be used to straighten the busbars. When cutting the busbars, it is strictly prohibited to use electric or gas welding for cutting. All interfaces should be coated with "conductive glue".

       Check one by one according to the schematic diagram whether the electrical appliances on the cabinet of the remote monitoring and control terminal system for street lights match the diagram. Their rated voltage must be consistent with the control and operating power supply voltage. After the installation is completed, tests should be carried out. The tests should comply with the specifications, the regulations of the power supply department and the requirements of the product technical data. Then, conduct a simulation test and prepare for power transmission.


Street light energy-saving voltage stabilization and control device Remote monitoring and control terminal system Street lighting design description:

On the premise of night-time traffic safety, fully pay attention to the urban landscape vision. Combine the characteristics of the road space and local culture to make the lighting facilities form an overall and unified style, clearly divide the night-time landscape levels of the road, and avoid the situation of one light per road. In modern cities abroad, the forms of road lighting fixtures have shown a trend of simplification and integration. Fixtures with simple forms and generous designs not only show a modern charm, but also save materials, reflecting energy conservation and environmental protection.

Regarding the light color and color rendering of road lighting, the road lighting facilities are basically dominated by high-pressure sodium lamps, with a single form. The restoration of the real colors of objects is poor, making it difficult to meet the multi-level needs of modern urban life in Liaoyuan City. To highlight the characteristics of urban roads and different landscape levels and organically integrate functional lighting and landscape lighting, the plan classifies the roads by light color. For the road lighting renovation, LED street lights are selected, with a relatively high color temperature and a color rendering index greater than or equal to 80, creating a modern and active night-life atmosphere, forming the main color tone of road lighting in Liaoyuan City and reflecting energy conservation and economy.

Product Tags: SHDY-BZ-60 , SHDY-BZ-80 , SHDY-BZ-40 , SHDY-BZ-50 , SHDY-BZ-100

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Main Markets
North America, South America, Eastern Europe, Southeast Asia, Africa, Oceania, Mid East, Eastern Asia, Western Europe, Central America, Northern Europe, Southern Europe, South Asia, Domestic Market
Location
Wenzhou, Zhejiang, China

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