Customization: | Available |
---|---|
Type: | Power Source Arrester |
Structure: | Zinc Oxide Arrester |
Still deciding? Get samples of $ !
Order Sample
|
Shipping Cost: | Contact the supplier about freight and estimated delivery time. |
---|
Payment Methods: |
![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() |
---|---|
Support payments in USD |
Secure payments: | Every payment you make on Made-in-China.com is protected by the platform. |
---|
Refund policy: | Claim a refund if your order doesn't ship, is missing, or arrives with product issues. |
---|
Suppliers with verified business licenses
Audited by an independent third-party inspection agency
Introducing the Zinc Oxide Arrester from Beierbian Group Co., Ltd - a groundbreaking innovation in lightning protection, specifically engineered for 10kV power distribution systems. This unparalleled piece of technology features a completely sealed design that promises unrivaled reliability. The cutting-edge zinc oxide valve column is a testament to modern engineering excellence, flawlessly integrating with upper and lower electrodes. Each component is encased in premium silicone rubber, offering exceptional attributes that redefine industry standards:
Through the use of a specially crafted valve plate combined with refined core parameters, this product provides exceptional protection. The core is expertly configured to tackle issues such as arc grounding, PT resonance, and a spectrum of operational overvoltages. It operates with extraordinary reliability even under line voltage conditions, enduring 2.5 to 3 times the power frequency overvoltage. Its capacity for withstanding voltage surpasses international standards by an incredible 1 to 3 orders of magnitude, offering unmatched safety and operational durability, establishing itself as a leader in high-performance protection solutions.
Distinctive Features of Jacket Materials and Environmental Adaptability:
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 |
Optimal Working Conditions:
This surge arrester is crafted with precision to ensure impeccable performance across various scenarios, both indoors and outdoors.
Operates confidently at awe-inspiring altitudes up to 3000 meters, showcasing its remarkable adaptability.
Expertly engineered to function effortlessly in temperature ranges from a chilly -40°C to a balmy +60°C, accommodating diverse climatic conditions.
Designed to work in perfect harmony with power supply frequencies from a stable 48Hz to a dynamic 62Hz, delivering consistent performance.
Ensures that the power frequency voltage applied between terminals remains within the optimal range for enduring, sustainable use.
Crafted to endure seismic activities with intensities not exceeding 8 degrees, ensuring robust and unwavering stability.
Boasts the capability to withstand powerful outdoor wind speeds up to 35 meters per second, guaranteeing unwavering reliability against natural elements.
Important Note:
For circumstances surpassing these operational standards, our dedicated team stands ready to deliver custom solutions meticulously tailored to meet your precise needs.
Comprehensive 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: Constructed with durable Polymeric materials, enhancing its robust resilience and longevity.
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 a sophisticated Porcelain Series Gap specification for refined performance.
Installation Guidelines
(1) Prior to installation, verify the nameplate to ensure the arrester's system rated voltage aligns with the system voltage at the designated installation point.
(2) Offers flexible installation choices with either suspension or vertical mounting. For vertical installation, ensure the arrester is not serving as a load-bearing insulator.
(3) Optimize lead wire length to enhance protection efficacy and minimize undue equipment stress.
Testing Procedures