HEALTHCARE

Hospital Lightning Protection, Earthing & Medical Equipment Surge Protection

Hospital lightning protection for ICU, OT, MRI, CT, medical gas, UPS, DG, BMS, fire alarm, earthing and surge protection.

SN Engineering Scope
  • Site survey and data review
  • Risk-assessment support
  • Design, BOQ and material selection
  • Supply, installation, testing and AMC

Facilities and Assets Covered

Main hospital and emergency blocks

Included in the project-specific lightning, earthing and surge-protection review.

ICU, NICU, CCU and operating theatres

Included in the project-specific lightning, earthing and surge-protection review.

MRI, CT, cath lab and diagnostics

Included in the project-specific lightning, earthing and surge-protection review.

Oxygen plants and medical gas systems

Included in the project-specific lightning, earthing and surge-protection review.

UPS, DG and electrical rooms

Included in the project-specific lightning, earthing and surge-protection review.

HIS, PACS, BMS and communication networks

Included in the project-specific lightning, earthing and surge-protection review.

Hostels, parking and utility buildings

Included in the project-specific lightning, earthing and surge-protection review.

Why Protection Is Critical

Life-safety continuity

Requires dedicated engineering attention during risk assessment and detailed design.

Sensitive and expensive medical equipment

Requires dedicated engineering attention during risk assessment and detailed design.

Multiple emergency power sources

Requires dedicated engineering attention during risk assessment and detailed design.

Equipotential bonding requirements

Requires dedicated engineering attention during risk assessment and detailed design.

Power and data surge protection

Requires dedicated engineering attention during risk assessment and detailed design.

Sector Design Philosophy

The protection strategy should combine external lightning interception, down-conductor routing, earth termination, equipotential bonding and coordinated SPDs. The selected system must follow the current project specification, site conditions and authority requirements.

Engineering Design Workflow

1. Site Data

Collect drawings, dimensions, roof levels, coordinates, occupancy, critical equipment, hazardous classification and incoming services.

2. Risk Review

Evaluate strike exposure, local lightning activity, consequences of failure, fire risk, service continuity and project requirements.

3. System Selection

Select ESE or conventional IEC 62305 route only where accepted by the project specification.

4. External LPS

Define air termination, masts, down conductors, bonding and earth termination.

5. Internal Protection

Coordinate Type 1, Type 2 and signal-line SPDs with the electrical distribution and lightning protection zones.

6. Documentation

Prepare calculations, layouts, BOQ, technical specifications, method statement, test records and as-built drawings.

Typical BOQ

ItemDescriptionQuantity Basis
Air terminationESE terminal or conventional rods/mesh as specifiedCoverage and roof geometry
Mast/supportGI/SS mast, brackets, base or guyingMechanical and wind-load design
Down conductorSpecified conductor, holders and test jointsMeasured route and number of paths
EarthingElectrodes, conductors, chambers and bondingSoil study and earthing design
SPDsPower and signal-line surge protectionPanel and circuit survey
ServicesInstallation, testing, commissioning and documentationComplete project

Inspection, Maintenance and AMC

Visual Inspection

Check terminals, masts, conductors, joints, labels, supports, corrosion and mechanical damage.

Electrical Testing

Verify continuity, bonding, earth-system performance and SPD status using appropriate test methods.

Post-Strike Review

Inspect after a recorded event, severe storm, roof alteration or electrical modification.

AMC Documentation

Maintain inspection reports, earth-test records, event-counter readings, photographs and corrective-action BOQ.

Request a Technical Proposal

SN Engineering Project Support

Site survey, lightning risk assessment support, ESE or conventional system design, BOQ, material supply, installation, testing, commissioning and AMC.

Required inputs: site location, building dimensions, roof drawing, application, electrical single-line diagram, existing earthing and project specification.

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