High Performance Metal Oxide Surge Arrester for Lightning Protection

Product Details
Customization: Available
Type: Power Source Arrester
Structure: Zinc Oxide Arrester
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  • High Performance Metal Oxide Surge Arrester for Lightning Protection
  • High Performance Metal Oxide Surge Arrester for Lightning Protection
  • High Performance Metal Oxide Surge Arrester for Lightning Protection
  • High Performance Metal Oxide Surge Arrester for Lightning Protection
  • High Performance Metal Oxide Surge Arrester for Lightning Protection
  • High Performance Metal Oxide Surge Arrester for Lightning Protection
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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

The Zinc Oxide Arrester from Beierbian Group Co., Ltd is an innovative, state-of-the-art lightning protection device crafted for 10kV power distribution systems. This cutting-edge arrester boasts a fully sealed structure, ensuring unparalleled reliability. It is expertly engineered with zinc oxide valve columns, coupled with upper and lower electrodes, and encased in integrally molded silicone rubber. Experience the superior protection and efficiency of this next-generation lightning arrester, featuring the following outstanding characteristics:

  1. Thanks to its revolutionary design, the new structure of the arrester addresses and completely resolves the sealing challenges faced by traditional devices. By forming a compact, dense whole between the core and jacket, it eliminates the cavity responsible for air ingress. This breakthrough innovation tackles the technical hurdles of preventing moisture seepage, ensuring the internal components remain safeguarded from dampness.
  2. The arrester's core is meticulously engineered to exhibit exceptional resilience against internal overvoltage, boasting robust endurance and remarkable aging properties. Trust in its long-lasting performance and unwavering stability, providing you with peace of mind.

Employing a specially developed valve plate and meticulously designed core parameters, this arrester guarantees that the core can robustly endure arc grounding, PT resonance, and various operating overvoltages. It ensures seamless and safe operation over prolonged periods under line voltage, including 2.5 and 3 times power frequency overvoltage. Its voltage withstand capability exceeds international standards by 1 to 3 orders of magnitude, offering unrivaled protection and reliability.
High Performance Metal Oxide Surge Arrester for Lightning Protection

Detailed Photos

High Performance Metal Oxide Surge Arrester for Lightning Protection

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;

Efficiently operates at altitudes up to 3000 meters;

Functions seamlessly within an ambient temperature range of -40°C to +60°C;

Supports a power supply frequency range from 48Hz to 62Hz;

The power frequency voltage between arrester terminals remains within acceptable limits for extended durations.

Ensures stability with seismic intensities up to 8 degrees.

Withstands outdoor wind speeds of up to 35 meters per second;

Note:

If the usage conditions surpass the stated parameters, users are encouraged to consult 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 rated voltage matches the system voltage at the installation site;

(2) Opt for either suspension or vertical installation. However, avoid using the arrester as a load-bearing support when installed vertically;

(3) Ensure that the lead wire is of appropriate length to maintain optimal protection and avoid exerting unnecessary stress on the arrester.

Test

  • lTo enhance operational insights, conduct preventive tests every 4-5 years. The focus is on measuring U1mA at the DC 1mA arrester's ends.
  • lEnsure the pre-installation U1mA voltage is at least 97% of the factory value, documenting it thoroughly.
  • lDuring preventive tests, the U1mA voltage must be no less than 26kV.
  • lNote: Minimize harmonic components in the DC power supply for accurate U1mA measurements, especially in poor waveform conditions.
  • lOur newly launched 10kV synthetic insulated zinc oxide arrester for power distribution has passed comprehensive laboratory testing and has been successfully operational at outdoor line voltage for over 15 months. The results affirm that the jacket exhibits outstanding performance, with a reliable and rational arrester structure, alongside excellent core stability. Supported by an annual operational review of 2,000 cores, it achieves exceptional protection performance, a reduced accident rate, and zero maintenance needs throughout its service life.High Performance Metal Oxide Surge Arrester for Lightning Protection
Certifications

High Performance Metal Oxide Surge Arrester for Lightning Protection

Company Profile

High Performance Metal Oxide Surge Arrester for Lightning Protection

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