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  • 400V-DNVV动态在线式电压补偿装置
  • 400V-DNVV动态在线式电压补偿装置
  • 400V-DNVV动态在线式电压补偿装置
  • 400V-DNVV动态在线式电压补偿装置
  • 400V-DNVV动态在线式电压补偿装置
  • 400V-DNVV动态在线式电压补偿装置
  • 400V-DNVV动态在线式电压补偿装置
  • 400V-DNVV动态在线式电压补偿装置
  • 400V-DNVV动态在线式电压补偿装置
  • 400V-DNVV动态在线式电压补偿装置
  • 400V-DNVV动态在线式电压补偿装置
  • 400V-DNVV动态在线式电压补偿装置
400V-DNVV动态在线式电压补偿装置
现代电网的电网故障的不可避免性和用电负荷抗扰能力的脆弱性,增加了对高质量高可靠性供电的需求。对于电力用户来讲,电压暂降(也是国际公认)严重的问题之一。因闪电、暴雨、大风、施工和人员误操作等,引起的短路导致的电压暂降现象,足以影响敏感设备的正常运行。
产品描述

1、 Voltage sag and drop problem

The inevitability of power grid failures in modern power grids and the vulnerability of power load immunity have increased the demand for high-quality and reliable power supply. For power users, voltage sag (also internationally recognized) is one of the most serious problems. The voltage sag caused by short circuit due to lightning, rainstorm, strong wind, construction and personnel misoperation is enough to affect the normal operation of sensitive equipment.


2、 The most common reasons for voltage sag and high voltage are as follows:

1) Voltage sag caused by fault current: When a short circuit fault occurs in the transmission or distribution network, the current increases sharply, resulting in a voltage drop at the common voltage connection point. At the same time, the voltage drop spreads along the power grid, causing interference to a large number of users;

2) Induction motor startup causes voltage sag: When an induction motor starts at full voltage, the voltage value that needs to be drawn from the system is 5-10 times that of full load operation. This large current flowing through the system impedance can cause voltage drop.

3) Lightning strikes, voltage dips caused by lightning strikes, insulator flashover caused by lightning strikes, and line to ground discharge are the main causes of voltage drops in system lines. In rainy seasons or areas with frequent thunderstorms, equipment exposed to the open air is easily affected by lightning interference.

4) Voltage fluctuations caused by low or high power factor can result in voltage losses on the line due to reactive power in the system, which is the reason why capacitive reactive power raises the supply voltage.

5) Unpredictable accidental events: road construction, traffic accidents, human error, etc.


3、 Industry standard requirements for voltage sag and drop

Voltage sag  

The IEEE standard and national standard "Voltage sag and short interruption of power quality" (GB/T30137-2013) define voltage sag as the phenomenon in which the root mean square value of the power frequency voltage at a certain point in the power system suddenly drops to 0.1p.u.~0.9p.u. and returns to normal after a brief duration of 10ms~1min.

Short term interruption

The phenomenon where the root mean square value of the power frequency voltage at a certain point in the power system suddenly drops to 0.1 p.u. and returns to normal after a brief duration of 10 ms to 1 min.




4、 Performance characteristics of DNVV products

DSP fully digital control, all power conversion links including rectification, inversion, charging, and discharging are digitally controlled;

System level single board level device level comprehensive protection, ultimate reliability, and stronger environmental adaptability;

Large 10 inch LCD touch screen display, color graphic display, easy to operate, user-friendly human-machine interface;

Intelligent system self diagnosis solution, rich fault records, and large capacity historical record storage space;

The maximum capacity supports 2MW, making it the best choice for uninterrupted power supply in ultra large data centers


5、 Application scenarios of DNVV products

1. Semiconductor industry (chip manufacturing, testing, and packaging)

2. New energy industry (solar polycrystalline silicon, monocrystalline silicon pulling silicon, battery testing, aging and packaging, etc.)

3. Medical device industry (medical testing equipment, radiotherapy and chemotherapy equipment, liquid phase analyzer, etc.)

4. Automotive manufacturing industry (automatic welding, painting, paint baking, etc.)

5. Food and beverage industry (food baking, packaging, canning, bottle making machines, etc.)

6. Petrochemical industry (refueling machines, refineries, kowtow machines, chemical plants, etc.)

7. Textile industry (screen printing machines, winding machines, winches, etc.)

8. Intelligent factory industry

6、 DNVV product working principle diagram
未标题-3.png
DNVV product working principle diagram


7、 Characteristics of DNVV technology

mutually    Number:

three-phaseThree lines

inputelectricPressure range:

400V±15%

Output voltage:

400V

stableFixed electricityPrecision of compression:

±2%

effect    Rate:

≥99%

frequency    Rate:

The frequency of the input voltage is45-65Hz, the output frequency should also be the corresponding frequency.

Reaction speed:

<2millisecond

Speed:

<2millisecond

Insulation level:

Grade E

Insulation resistance:

Ground insulation resistance of the whole machine>5MΩ

Insulation strength:

Sine AC voltage2500V/1min without flashing or breakdown

Output waveform:

Output waveform without distortion and harmonic increment

Instantaneous overload capacity:

2 times the rated current

Display mode:

LED digital display

operation mode:

Long term continuous operation

Protection function:

Overload, overvoltage, undervoltage, phase loss, short circuit protection

Heat dissipation method:

Temperature controlled forced air cooling

Voltage compensation range

0-100%

Voltage compensation time

1 minute

1、 Voltage sag and drop problem

The inevitability of power grid failures in modern power grids and the vulnerability of power load immunity have increased the demand for high-quality and reliable power supply. For power users, voltage sag (also internationally recognized) is one of the most serious problems. The voltage sag caused by short circuit due to lightning, rainstorm, strong wind, construction and personnel misoperation is enough to affect the normal operation of sensitive equipment.


2、 The most common reasons for voltage sag and high voltage are as follows:

1) Voltage sag caused by fault current: When a short circuit fault occurs in the transmission or distribution network, the current increases sharply, resulting in a voltage drop at the common voltage connection point. At the same time, the voltage drop spreads along the power grid, causing interference to a large number of users;

2) Induction motor startup causes voltage sag: When an induction motor starts at full voltage, the voltage value that needs to be drawn from the system is 5-10 times that of full load operation. This large current flowing through the system impedance can cause voltage drop.

3) Lightning strikes, voltage dips caused by lightning strikes, insulator flashover caused by lightning strikes, and line to ground discharge are the main causes of voltage drops in system lines. In rainy seasons or areas with frequent thunderstorms, equipment exposed to the open air is easily affected by lightning interference.

4) Voltage fluctuations caused by low or high power factor can result in voltage losses on the line due to reactive power in the system, which is the reason why capacitive reactive power raises the supply voltage.

5) Unpredictable accidental events: road construction, traffic accidents, human error, etc.


3、 Industry standard requirements for voltage sag and drop

Voltage sag  

The IEEE standard and national standard "Voltage sag and short interruption of power quality" (GB/T30137-2013) define voltage sag as the phenomenon in which the root mean square value of the power frequency voltage at a certain point in the power system suddenly drops to 0.1p.u.~0.9p.u. and returns to normal after a brief duration of 10ms~1min.

Short term interruption

The phenomenon where the root mean square value of the power frequency voltage at a certain point in the power system suddenly drops to 0.1 p.u. and returns to normal after a brief duration of 10 ms to 1 min.




4、 Performance characteristics of DNVV products

DSP fully digital control, all power conversion links including rectification, inversion, charging, and discharging are digitally controlled;

System level single board level device level comprehensive protection, ultimate reliability, and stronger environmental adaptability;

Large 10 inch LCD touch screen display, color graphic display, easy to operate, user-friendly human-machine interface;

Intelligent system self diagnosis solution, rich fault records, and large capacity historical record storage space;

The maximum capacity supports 2MW, making it the best choice for uninterrupted power supply in ultra large data centers


5、 Application scenarios of DNVV products

1. Semiconductor industry (chip manufacturing, testing, and packaging)

2. New energy industry (solar polycrystalline silicon, monocrystalline silicon pulling silicon, battery testing, aging and packaging, etc.)

3. Medical device industry (medical testing equipment, radiotherapy and chemotherapy equipment, liquid phase analyzer, etc.)

4. Automotive manufacturing industry (automatic welding, painting, paint baking, etc.)

5. Food and beverage industry (food baking, packaging, canning, bottle making machines, etc.)

6. Petrochemical industry (refueling machines, refineries, kowtow machines, chemical plants, etc.)

7. Textile industry (screen printing machines, winding machines, winches, etc.)

8. Intelligent factory industry

6、 DNVV product working principle diagram
未标题-3.png
DNVV product working principle diagram


7、 Characteristics of DNVV technology

mutually    Number:

three-phaseThree lines

inputelectricPressure range:

400V±15%

Output voltage:

400V

stableFixed electricityPrecision of compression:

±2%

effect    Rate:

≥99%

frequency    Rate:

The frequency of the input voltage is45-65Hz, the output frequency should also be the corresponding frequency.

Reaction speed:

<2millisecond

Speed:

<2millisecond

Insulation level:

Grade E

Insulation resistance:

Ground insulation resistance of the whole machine>5MΩ

Insulation strength:

Sine AC voltage2500V/1min without flashing or breakdown

Output waveform:

Output waveform without distortion and harmonic increment

Instantaneous overload capacity:

2 times the rated current

Display mode:

LED digital display

operation mode:

Long term continuous operation

Protection function:

Overload, overvoltage, undervoltage, phase loss, short circuit protection

Heat dissipation method:

Temperature controlled forced air cooling

Voltage compensation range

0-100%

Voltage compensation time

1 minute

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