Customizable Polymeric Housed Surge Arrester for Wide Voltage Applications

Product Details
Customization: Available
Type: Power Source Arrester
Structure: Zinc Oxide Arrester
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  • Customizable Polymeric Housed Surge Arrester for Wide Voltage Applications
  • Customizable Polymeric Housed Surge Arrester for Wide Voltage Applications
  • Customizable Polymeric Housed Surge Arrester for Wide Voltage Applications
  • Customizable Polymeric Housed Surge Arrester for Wide Voltage Applications
  • Customizable Polymeric Housed Surge Arrester for Wide Voltage Applications
  • Customizable Polymeric Housed Surge Arrester for Wide Voltage Applications
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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 Zinc Oxide Arrester, an innovative and fully encapsulated lightning protection marvel, tailored specifically for 10kV power distribution systems. This cutting-edge device boasts a sophisticated construction comprising a zinc oxide valve column, precision-engineered upper and lower electrodes, all seamlessly integrated within a robust silicone rubber mold. Key features of this remarkable arrester include:

  1. Revolutionary in design, this new structure adeptly addresses and resolves traditional sealing challenges. The core and jacket coalesce to form an impermeable unity, effectively eliminating internal cavities that historically led to moisture ingress. This breakthrough ensures the protection of internal components, a critical advancement in our ongoing quest for durability and reliability.
  2. The core is engineered with superior resilience, demonstrating exceptional capability to endure internal overvoltage situations. Furthermore, it exhibits outstanding aging characteristics, ensuring sustained performance and reliability over time.

Utilizing a specially developed valve plate alongside meticulously calculated core parameters, the core confidently withstands arc grounding, PT resonance, and various operational overvoltages. Even under standard line voltage conditions, and when subjected to 2.5 to 3 times power frequency overvoltage, it operates with unfaltering safety and endurance. The voltage withstand duration is notably 1 to 3 orders of magnitude beyond international standards, reflecting its unparalleled capability.
Customizable Polymeric Housed Surge Arrester for Wide Voltage Applications

Detailed Photos

Customizable Polymeric Housed Surge Arrester for Wide Voltage Applications

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:

Ideal for both indoor and outdoor settings, offering versatile placement options;

Designed for altitudes up to 3000m, ensuring performance across varied terrains;

Operates seamlessly in ambient temperatures ranging from -40°C to +60°C, ensuring reliability in extreme climates;

Compatible with power supply frequencies from 48Hz to 62Hz, accommodating a broad spectrum of electrical systems;

Maintains safe operational levels with power frequency voltage applied across arrester terminals;

Withstands seismic intensities up to 8 degrees, adding resilience in earthquake-prone regions.

Capable of enduring outdoor wind speeds up to 35 meters/second, ensuring stability in high wind conditions;

Note:

Should standard operational conditions be surpassed, we invite users to engage in discussions with Beierbian Group Co., Ltd 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 matches the installation point's system voltage;

(2) Choose between suspension installation or vertical installation. If opting for vertical, ensure the arrester is not used as a load-bearing insulator;

(3) Avoid excessive lead wire length to not compromise protection efficacy, and prevent over-tightening to reduce stress on the arrester.

Test

  • To gather operational insights, conduct preventive tests every 4-5 years. Measure U1mA at both ends of the DC 1mA arrester during the test;
  • Ensure that the U1mA voltage before installation is at least 97% of the factory value, documenting the results diligently.
  • During preventive tests, U1mA voltage should not fall below 26kV, guaranteeing safety and performance.
  • Note: Minimize the harmonic component in the DC power supply for testing. Poor waveform quality may result in reduced U1mA measurements.
  • The cutting-edge 10kV synthetic insulated zinc oxide arrester, designed for power distribution, has undergone extensive lab testing and has proven its durability at outdoor line voltages for 15 months. Results highlight superior jacket performance, a robust arrester structure, and exceptional core stability. With operational insights from 2,000 cores annually, we assure outstanding protection performance, minimal accident rates, and maintenance-free use throughout its lifetime.Customizable Polymeric Housed Surge Arrester for Wide Voltage Applications
Certifications

Customizable Polymeric Housed Surge Arrester for Wide Voltage Applications

Company Profile

Customizable Polymeric Housed Surge Arrester for Wide Voltage Applications

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