Efficient Lightning Surge Protection with High Capacity Zinc Oxide Arrester

Product Details
Customization: Available
Type: Power Source Arrester
Structure: Zinc Oxide Arrester
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  • Efficient Lightning Surge Protection with High Capacity Zinc Oxide Arrester
  • Efficient Lightning Surge Protection with High Capacity Zinc Oxide Arrester
  • Efficient Lightning Surge Protection with High Capacity Zinc Oxide Arrester
  • Efficient Lightning Surge Protection with High Capacity Zinc Oxide Arrester
  • Efficient Lightning Surge Protection with High Capacity Zinc Oxide Arrester
  • Efficient Lightning Surge Protection with High Capacity Zinc Oxide Arrester
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  • Overview
  • Product Description
  • Detailed Photos
  • Product Parameters
  • Certifications
  • Company Profile
Overview

Basic Info.

Model NO.
YH series
Installation
According to Customer Requirements
Application
AC/DC System/Power Plants/Substation
Size
According to Customer Requirements
Operation Voltage
3 - 36kv
Shape
According to Customer Requirements
Material
ZnO
Certification
ROHS, ISO9001, CCC
Brand
Chbeb
Customizable
OEM/According to Customer Requirements
Voltage Customizable
30kv 33kv 36kv
Transport Package
Pallet
Trademark
CHBEB
Origin
China
HS Code
8535400000
Production Capacity
50000 Pieces/Quarter

Product Description

Product Description

Introducing the Efficient Lightning Surge Protection with High Capacity Zinc Oxide Arrester, a breakthrough in modern lightning protection technology for 10kV power distribution systems, crafted with precision by Beierbian Group Co., Ltd. This state-of-the-art arrester features a zinc oxide valve column complemented by upper and lower electrodes, all seamlessly encapsulated in durable silicone rubber. Experience the tremendous advantages of our zinc oxide arrester, designed to provide exceptional reliability and security.

  1. Revolutionary design innovations fundamentally resolve the sealing challenges of traditional arresters. Our arrester's core and outer jacket form a cohesive and impermeable unit, effectively eliminating voids that could allow for moisture ingress. This groundbreaking design ensures that the internal components remain perfectly dry, tackling the critical technical challenge of moisture prevention head-on.
  2. Our arrester's core is engineered to deliver outstanding performance, boasting robust resilience against internal overvoltage. Moreover, it is endowed with superior aging characteristics, ensuring long-lasting durability and efficacy in the most demanding environments.

Utilizing a specially formulated valve plate and meticulously optimized core parameters, our arrester guarantees the reliable endurance of arc grounding, PT resonance, and a wide range of operational overvoltages. It is designed to function safely and continuously under standard line voltages, and even withstands 2.5 to 3 times the power frequency overvoltage. The voltage endurance capability of our product surpasses international standards, with withstand times that are 1 to 3 orders of magnitude greater than the norm.
Efficient Lightning Surge Protection with High Capacity Zinc Oxide Arrester

Detailed Photos

Efficient Lightning Surge Protection with High Capacity Zinc Oxide Arrester

Product Parameters

Main Characteristics Of Jacket Materials And Product Usage Environment:

Item

Unit

Norm

Shore Hardness A

/

60

Tensile Strength

mpa

≥35

Breaking Elongation

%

≥250

Oxygen Index

/

45

Resistivity

Ω.m

≥1×1013

Breakdown Strength

MV/m

≥25

Tracking

kV

4.5

Durability

Not less than 20 years

Working Environment:

Perfectly designed for both indoor and outdoor applications;

Crafted to perform at altitudes not exceeding 3000 meters;

Withstand ambient temperature variations from -40°C to +60°C;

Functions seamlessly within a power supply frequency range of 48Hz to 62Hz;

Ensures that long-term power frequency voltage between arrester terminals remains within safe limits;

Capable of enduring seismic intensities of up to 8 degrees.

Built to resist outdoor wind speeds up to 35 meters per second;

Important Note:

Should usage conditions exceed typical parameters, the user is encouraged to engage in discussions with our company for tailored solutions.

Main Technical Parameters

Model

Nominal Voltage

(rms)

Rated Voltage OArrester

(rms)

Continuous Operating Voltage

(rms)

DC 1mA reference voltage
kV not less than

The residual voltage under nominal discharge current
kV (Crest) not greater than

Steep wave impact residual voltage
kV (Crest) not greater than

2ms square wave flow capacity
A

Operation Place

YH5WS-3.8/17

3

3.8

2.0

7.5

17.0

19.6

100

 

Distribution Type

YH5WS-5/15

3

5

4.0

7.5

15.0

17.3

150

YH5WS-7.6/30

6

7.6

4.0

15.0

15.0

34.5

100

YH5WS-10/30

6

10

8.0

15.0

30.0

34.6

150

YH5WS-12.7/50

10

12.7

10

26.0

50.0

57.5

100

YH5WS-16.5/50

10

16.5

12.7

26.0

50.0

57.5

100

YH5WS-17/50

10

17

13.6

26.0

50.0

57.5

150

YH5WS-17/45

10

17

13.6

25.0

45.0

/

250

YH10WS-17/45

10

17

13.6

25.0

45.0

/

400

YH5WZ-5/13.5

3

5

4.0

7.2

13.5

15.5

200

Power Station Type

YH5WZ-7.6/27

6

7.6

4.0

14.4

27.0

31.0

150

YH5WZ-10/27

6

10

8.0

14.4

27.0

31.0

200

YH5WZ-42/134

35

42

23.4

73

134

154

150

YH5WZ-12.7/45

10

12.7

6.6

24.0

45.0

51.8

150

YH5WZ-16.5/45

10

16.5

13.2

24.0

45.0

51.8

150

YH5WZ-17/45

10

17

13.6

24.0

45.0

51.8

200

YH5WZ-51/134

35

51

40.8

73.0

134

154

400

YH10WZ-17/45

10

17

13.6

24.0

45.0

51.8

200

YH10WZ-51/134

35

51

40.8

73.0

134

154

400

YH5WR-5/13.5

3

5

4.0

7.2

13.5

/

400

Capacitive Type

YH5WR-7.6/27

6

7.6

4.0

13.8

27.0

/

400

YH5WR-10/27

6

10

8.0

14.4

27.0

/

400

YH5WR-12.7/45

10

12.7

6.6

23.0

45.0

/

400

YH5WR 17/45

10

17

13.6

24.0

45.0

/

400

YH5WX-51/134

35

51

40.8

73

134.0

154

400

Line type

YH1.5W-30/80

35

30

24

44

80.0

/

600

Neutral Type

Note:Polymeric

Model

Nominal Voltage

(rms)

Rated Voltage OArrester

(rms)

Continuous Operating Voltage

(rms)

DC 1mA Reference Voltage
kV Not Less Than

The Residual Voltage Under Nominal Discharge Current
kV (Crest)
Not Greater Than

Steep Wave Impact Residual Voltage
kV (Crest)
Not Greater Than

2ms Square Wave Flow Capacity
A

Operation Place

Y5WS-5/15

3

5

4.0

7.5

15.0

17.3

150

Distribution Type

Y5WS-7.6/30

6

7.6

4.0

15.0

15.0

34.5

100

Y5WS-10/30

6

10

8.0

15.0

30.0

34.6

150

Y5WS-12.7/50

10

12.7

10

26.0

50.0

57.5

100

Y5WS-16.5/50

10

16.5

12.7

26.0

50.0

57.5

100

Y5WS-17/50

10

17

13.6

26.0

50.0

57.5

150

Y5WZ-5/13.5

3

5

4.0

7.2

13.5

15.5

200

Power Station Type

Y5WZ-7.6/27

6

7.6

4.0

14.4

27.0

31.0

150

Y5WZ-10/27

6

10

8.0

14.4

27.0

31.0

200

Y5WZ-42/134

35

42

23.4

73

134

154

150

Y5WZ-12.7/45

10

12.7

6.6

24.0

45.0

51.8

150

Y5WZ-16.5/45

10

16.5

13.2

24.0

45.0

51.8

150

Y5WZ-17/45

10

17

13.6

24.0

45.0

51.8

200

Y5WZ-51/134

35

51

40.8

73.0

134

154

400

Y5WR-5/13.5

3

5

4.0

7.2

13.5

/

400

Capacitive Type

Y5WR-7.6/27

6

7.6

4.0

13.8

27.0

/

400

Y5WR-10/27

6

10

8.0

14.4

27.0

/

400

Y5WR-12.7/45

10

12.7

6.6

23.0

45.0

/

400

Y5WR-17/45

10

17

13.6

24.0

45.0

/

400

Y1.5W-0.28/1.3

0.22

0.28

0.24

0.6

1.3

/

75

Low Voltage

Y1.5W-0.5/2.6

0.38

0.5

0.24

1.2

2.6

/

75

Note:Porcelain

Model

 

Nominal Voltage
(Valid values)

 

Rated Voltage Of Arrester
(Valid values)

 

The Wave Front

Steepness Of The Shock Discharge

 

DC 1mA Reference Voltage

kV Not Less Than

 

1.2/50 Impulse Discharge Voltage

Not Greater Than

 

Wavefront Impulse

Discharge Voltage

 

kV Not Greater Than

The Residual Voltage Under Nominal Discharge

Current 8/20μs

 

kV Not Greater Than

 

2000μs Square

Wave Flow Capacity

 

4/10μs Impulse

Current Capacity

Y5CS-7.6/27

6

7.6

63

16

35

43.8

27

75

25

Y5CZ-7.6/24

6

7.6

63

16

30

37.5

24

150

40

Y5CS-12.7/45

10

12.7

106

26

50

62.5

45

75

25

Y5CS-12.7/41

10

12.7

106

26

45

56.5

41

200

40

Y5CZ-42/124

35

42.0

343

82

134

168

124

200

40

Note:Porcelain Series Gap

Installation

(1) Prior to installation, verify the nameplate to ensure the arrester's system rated voltage aligns with the installation point's system voltage;

(2) Choose between suspension or vertical installation modes. Note: In vertical installations, the arrester should not serve as a load-bearing support insulator;

(3) Ensure lead wires are optimized in length to maintain peak protection efficacy, avoiding undue tension on the arrester.

Testing Protocols

  • lTo enhance operational insights, conduct preventive tests every 4-5 years, focusing on measuring U1mA at both ends of the DC 1mA arrester.
  • lPre-installation U1mA voltage readings should be no less than 97% of the original factory value, with careful documentation maintained.
  • lPreventive test U1mA voltage must meet or exceed 26kV benchmarks.
  • lNote: Minimize the harmonic components in the DC power supply during tests. Poor waveforms can result in lower U1mA readings.
  • lOur cutting-edge 10kV synthetic insulated zinc oxide arrester for power distribution has undergone exhaustive laboratory testing and proven its resilience, operating smoothly at outdoor line voltage for 15 months. Testing confirms superior jacket performance, exceptional structural reliability, and robust core stability. With over 2,000 cores in annual operation, it achieves unmatched protection, a low incident rate, and maintenance-free longevity.Efficient Lightning Surge Protection with High Capacity Zinc Oxide Arrester
Certifications

Efficient Lightning Surge Protection with High Capacity Zinc Oxide Arrester

Company Profile

Efficient Lightning Surge Protection with High Capacity Zinc Oxide Arrester

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