66kv Remote Real-Time on-Line Monitoring System Operating Instruction of Overhead Fault Indicator

Product Details
Customization: Available
Transport Package: Case
Specification: 15KV/33KV/KV
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Registered Capital
500 RMB
Plant Area
1001~2000 square meters
  • 66kv Remote Real-Time on-Line Monitoring System Operating Instruction of Overhead Fault Indicator
  • 66kv Remote Real-Time on-Line Monitoring System Operating Instruction of Overhead Fault Indicator
  • 66kv Remote Real-Time on-Line Monitoring System Operating Instruction of Overhead Fault Indicator
  • 66kv Remote Real-Time on-Line Monitoring System Operating Instruction of Overhead Fault Indicator
  • 66kv Remote Real-Time on-Line Monitoring System Operating Instruction of Overhead Fault Indicator
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Basic Info.

Model NO.
ESI
Origin
China
Production Capacity
1000000

Product Description

66kv Remote Real-Time on-Line Monitoring System Operating Instruction of Overhead Fault Indicator
66kv Remote Real-Time on-Line Monitoring System Operating Instruction of Overhead Fault Indicator
System Composition:
  1. ESI-308: overhead fault indicator (two teleconnection)
  2. ESI-309: overhead fault indicator wireless communication terminal
  3. ESI-800: overhead fault indicator wireless setting terminal (handheld PDA)
  4. ESI-1000: remote real-time on-line monitoring system for overhead fault indicator
 

 

 

System introduction:

Overhead Fault Indicator Remote Real-time On-line Monitoring System is suitable for overhead transmission lines. Fault Indicator is used to monitor the change of cable current in real-time to judge permanent faults, temporary faults and transient faults on the lines. The data information of fault status, real-time current (fault current), battery voltage, cable temperature and voltage to earth electric field are sent to remote server through wireless communication terminal, which provides reliable data for rapid diagnosis and location of various types of faults on overhead lines. Hand held PDA can flexibly configure fault indicators and wireless communication terminals and set parameters during the operation to meet the monitoring needs of various overhead lines.

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