AC DataCenter

Electric shock in Electronics manufacturing

Protecting your team from electrical hazards is a critical responsibility in electronics manufacturing, where high-density components and testing equipment create constant exposure risks. By fostering a culture of vigilance and implementing robust safety protocols, you can effectively mitigate the danger of electric shock and ensure a secure environment for your workers.

Key risk diagnosis for this task

About 100% of related real accidents concentrate in these types.

#194%
Electric shock from live parts
#26%
Arc Flash (Contact)

Key prevention

  • Ensure all electrical equipment is regularly inspected for frayed cords, damaged insulation, or loose connections before each shift.
  • Implement a strict lockout/tagout procedure to guarantee that power sources are fully de-energized during maintenance or repair tasks.
  • Require the use of appropriate, certified personal protective equipment, such as insulating gloves and safety footwear, when handling live circuitry.
  • Maintain clear, unobstructed access to all electrical panels and emergency shut-off switches to facilitate rapid response during an incident.
  • Provide ongoing, hands-on safety training to ensure all staff members understand how to safely operate equipment and recognize potential electrical warning signs.

Related accident cases

Electrical ShockMatch 72%

An electrical shock occurred when a worker touched a 3-phase high-voltage power source during live-line proximity work. The worker sustained skin burns but is expected to make a full recovery.

Key hazard · Electrical shock from high-voltage power source during live-line proximity work
Prevention · Use of insulated protective equipment and adherence to safety rules during live-line work
Electric shockMatch 71%

An electric shock occurred when a worker came into contact with a live part while using metal tape.

Key hazard · Electric shock due to contact with live parts
Prevention · Ensure power is disconnected before work, wear insulating protective gear, and avoid using conductive tools.
Electric ShockMatch 70%

An electric shock occurred when contact was made with a live wire through a metal pole during live-line proximity work.

Key hazard · Electric shock hazard from live electrical wires.
Prevention · Implement insulation measures and adhere to safety protocols when working near live lines.
Electric ShockMatch 70%

The worker experienced an electric shock due to direct contact with exposed live parts. The incident was caused by electric current.

Key hazard · Electric current (Electric shock)
Prevention · Prevent contact with exposed live parts
Electrical ShockMatch 70%

An electrical shock occurred when a repair technician attempted to rotate the phase of a compressor's power supply near a live wire. The incident resulted in flash burns to the worker's eyes and left arm.

Key hazard · Flash and electrical shock due to contact between wires during live wire proximity work.
Prevention · Thoroughly implement power lockout and isolation procedures when working near live wires.
Electrical ShockMatch 69%

An electrical shock occurred due to direct contact with power transmission and distribution lines during live-line work.

Key hazard · Electrical shock from direct contact with power transmission and distribution lines
Prevention · Implement insulation measures and adhere to safety protocols during live-line work.