Aldo Compliance

Surge Immunity Testing

Surge
Test

A lightning strike a mile away can still do damage through the power line. So can a heavy machine switch on and off nearby? Both send a short, high-energy pulse through electrical wiring — a surge — and unprotected equipment on the receiving end can fail instantly.

IEC 61000-4-5:2014
Understanding Surge Testing

Surge Test as per IEC 61000-4-5:2014

A lightning strike a mile away can still do damage through the power line. So can a heavy machine switch on and off nearby? Both send a short, high-energy pulse through electrical wiring — a surge — and unprotected equipment on the receiving end can fail instantly.

IEC 61000-4-5:2014 is the standard that measures whether a product survives that pulse. It's built around a specific waveform, often called the 8/20 microsecond surge test, matching how a real surge behaves rather than some abstract worst case.

Here's how it plays out in the lab: a surge generator fires controlled high-voltage pulses into the equipment's power or signal lines. After each pulse, engineers check whether the device is still working normally, or whether something inside has degraded.

Equipment installed outdoors, or wired through long cable runs, has more surge exposure than something sitting on a desk indoors. Lightning surge testing confirms the internal protection circuits are actually doing their job — absorbing the shock instead of passing it straight to sensitive components.

Applicable Standard
IEC 61000-4-5:2014
Surge Test Services

Aldo Compliance runs this in a few defined steps:

01 / WAVEFORM

Surge Generator Verification

Verifying the surge generator's waveform and impedance against IEC 61000-4-5 requirements before any product testing starts

02 / SURGE LEVELS

Increasing Surge Levels

Applying increasing surge levels to find the actual protection limit, not just a single pass/fail point

03 / INSPECTION

Device Inspection

Inspecting the device after each pulse for functional loss or physical degradation

04 / REPORTING

Test Documentation

Documenting every surge level applied, alongside the final pass or fail outcome

FAQs

Frequently Asked Questions

01

What actually causes a power surge?

Lightning strikes, heavy equipment switching, and sudden load changes on the grid are the usual culprits.

02

Is this the same as short circuit testing?

No — surge testing checks voltage spike immunity, while short circuit testing verifies protection against current overload.

AC Power Immunity Testing

Surge Voltage Protection Test

IEC 61000-4-11
INPUT OUTPUT VOLTAGE DIP RECOVERY
AC Power Immunity

Surge Voltage Protection Test as per IEC 61000-4-11

Lightning isn't the only thing that disturbs power lines. Normal grid operation causes its own share of dips, short interruptions, and sudden swings — and low-voltage AC equipment has to handle all of it without missing a beat.

IEC 61000-4-11 covers exactly this. It's aimed at how electrical and electronic equipment respond to voltage dips, brief interruptions, and variations on a standard AC power input — the everyday disturbances, not the dramatic lightning-strike kind.

Testing works by applying these disturbances directly to the power input at different severity levels, then watching how the device reacts. Does it keep running? Reset briefly? Shut down completely? Each response gets compared against the standard's acceptance criteria.

This matters most in places where grid supply isn't rock-solid — industrial zones, defence installations, regions with older infrastructure. Equipment that fails during routine grid noise creates safety risk and downtime that's entirely preventable with the right upfront testing.

Applicable Standard
IEC 61000-4-11
Testing Process

The process at Aldo Compliance

01 / SIMULATION

Calibrated Equipment

Simulating disturbances using calibrated equipment matched to IEC 61000-4-11 parameters

02 / IMMUNITY

Dip Depths and Durations

Testing multiple dip depths and durations to map out full immunity performance, not just one point

03 / MONITORING

Response Logging

Logging every response with precise timing, so nothing gets missed

04 / REPORTING

Immunity Report

Compiling results into a report showing exactly which immunity class the equipment achieves

FAQs

Frequently Asked Questions

01

How is this different from the over/under voltage test?

Both sit under IEC 61000-4-11 and check related immunity — the emphasis just shifts depending on the application.

02

Which industries ask for this most often?

Defence, telecom, industrial automation, lighting, electronic products, battery OEM and power equipment manufacturers are the regulars here.