Customization: | Available |
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Type: | Power Source Arrester |
Structure: | Zinc Oxide Arrester |
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Introducing the Zinc Oxide Arrester from Beierbian Group Co., Ltd—a revolutionary, fully sealed, and exceedingly reliable lightning protection marvel for 10kV power distribution systems. This avant-garde device is ingeniously crafted using a zinc oxide valve column, complemented by upper and lower electrodes, all seamlessly encapsulated in silicone rubber, offering unparalleled characteristics: Experience unparalleled innovation with the Zinc Oxide Arrester from Beierbian Group Co., Ltd. This cutting-edge, fully sealed solution provides exceptional reliability and state-of-the-art lightning protection for 10kV power systems. Expertly designed, this marvel utilizes a zinc oxide valve column, intricately paired with upper and lower electrodes, all elegantly encased in high-grade silicone rubber, ensuring superior performance and unmatched durability.
Utilizing a specially engineered valve plate coupled with optimized core parameters, this device guarantees that the core withstands challenges such as arc grounding, PT resonance, and a spectrum of operational overvoltages. It confidently operates with unmatched reliability under line voltage, as well as enduring 2.5 to 3 times power frequency overvoltage. Its voltage withstand duration surpasses international benchmarks by 1 to 3 orders of magnitude, promising unparalleled safety and operational longevity. Harnessing the power of a specially engineered valve plate and optimized core parameters, this device ensures the core triumphs over challenges like arc grounding, PT resonance, and a wide range of operational overvoltages. It promises unmatched reliability under regular line voltage, and confidently handles 2.5 to 3 times the power frequency overvoltage. Its exceptional voltage withstand duration exceeds international standards by 1 to 3 orders of magnitude, assuring unparalleled safety, reliability, and longevity in operation.
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:
Engineered for flawless performance in both indoor and outdoor settings, ensuring adaptability and reliability across environments;
Designed to excel at elevations soaring up to an impressive 3000 meters above sea level, extending its operability to high-altitude regions;
Built to endure extreme temperatures, from a brisk -40°C chill to a warm +60°C, providing steadfast performance across varied climates;
Seamlessly compatible with power supply frequencies ranging from a consistent 48Hz to a vibrant 62Hz, accommodating diverse electrical environments;
Crafted to ensure that the power frequency voltage between terminals remains within ideal limits, promoting efficient and prolonged operation;
Designed with resilience to tolerate seismic activities of up to 8 degrees, ensuring reliability during natural disturbances;
Expertly constructed to withstand fierce outdoor winds reaching speeds of up to 35 meters per second, safeguarding its structural integrity;
Note:
Should you face scenarios beyond these specified operational limits, our team is ready to discuss and offer tailored solutions to meet your unique needs.
Main technical parameters
Model |
Nominal Voltage (rms) |
Rated Voltage Of Arrester (rms) |
Continuous Operating Voltage (rms) |
DC 1mA reference voltage |
The residual voltage under nominal discharge current |
Steep wave impact residual voltage |
2ms square wave flow capacity |
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: Boasting a robust Polymeric construction
Model |
Nominal Voltage (rms) |
Rated Voltage Of Arrester (rms) |
Continuous Operating Voltage (rms) |
DC 1mA Reference Voltage |
The Residual Voltage Under Nominal Discharge Current |
Steep Wave Impact Residual Voltage |
2ms Square Wave Flow Capacity |
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 |
Rated Voltage Of Arrester |
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: Features the Porcelain Series Gap specification for enhanced performance
Installation
(1) Prior to installation, always confirm that the nameplate matches the arrester's system-rated voltage with the system voltage at the designated installation site;
(2) Provides versatile installation options, whether suspended or vertical. For vertical installations, ensure the arrester is not used as a load-bearing insulator;
(3) Optimize the lead wire length to maximize protection efficiency and minimize mechanical stress on the equipment.
Test