If you’re looking for a lightning detection system, the question isn’t whether you need something. It’s which option holds up on a Friday night with 1000 people in the stands and a storm cell twelve miles out.
So which lightning detection system should you purchase?
That’s harder to answer than it should be, because a phone app, a sensor on a pole, and a network-connected platform all get sold as “lightning detection systems.” However, they behave nothing alike when the sky turns.

The Three Jobs Any System Has to Do
Detecting Lightning
Confirm lightning is actually near your fields, and know exactly how far. A strike eleven miles out and one six miles out are different decisions. If your system can’t tell them apart, it isn’t giving you information you can reliably cancel a game for.
Deciding if the lightning is too close
Compare that strike against your policy. Eight miles because that’s the NCAA standard. Ten because that’s what your city adopted as a part of its emergency action plan. The system should enforce your lightning policy and your emergency action plan.
Notify all parties when to shelter
This is where most options collapse. A “lightning detection system” that lives inside one person’s phone is not a scalable way to operate. A great system should alert officials, coaches, fans and anyone else who needs to know.
Those three jobs are the scorecard for everything below.
The Four Types of Lightning Detection Systems
Paid Weather and Radar Apps
Cheapest entry point, and usually the first thing tried. Low-cost lightning radar apps can get their lightning data in a variety of ways and can be inaccurate if they license data from lower-cost networks with wider location error.
They also have no concept of your policy, and they alert one device. (More on why free and low-cost apps fall short.)

On-Site Lightning Detectors
A single sensor can’t triangulate. It estimates lightning distance based on the signal strength, so accuracy degrades exactly where you need lead time.
Strong EMF emissions for power lines, transformers, and welding equipment can trip a lightning alarm with no storm within thirty miles.
Staff learn to distrust it. And a warning system people ignore is worse than none at all, because now there’s a documented alert nobody acted on.

Lightning Prediction Systems
Electric field mills measure atmospheric charge and estimate what might happen. The pitch sounds better than detection.
The National Lightning Safety Institute has publicly said platforms claiming to predict lightning should be rejected.
The science doesn’t support it. They routinely deliver false alarms when static electricity is in the air. For example, if you mow the field near them, the kicked-up dust in the air can trigger them.
In practice they fail both directions: clearing fields for storms that never arrive, and still missing the first strike. (Detection vs. prediction, explained.)

Network-Based Detection
A national grid of ground sensors detects the same discharge from multiple points and triangulates its exact position, type, and intensity.
This is the category that solves all three jobs, though the major networks vary widely in sensor density and accuracy.

What Is the Best Lightning Detection System for Sports Fields?
So if network-based detection is the most reliable, then which network should you look for?
With more than 187 ground sensors that triangulate each strike to within roughly 84 meters with about 95% precision, the National Lightning Detection Network stands out among the most popular lightning networks
The NWS, NASA, the FAA, the U.S. Military, and the Coast Guard all rely on it.
With the detection data problem solved, you still need to be able to take action on the data and communicate any changes to staff, coaches, fans and visitors.
This is where a system like Perry Weather comes in. Perry Weather is built for how athletic organizations actually operate.
It’s the system that thousands of organizations already use, from single-field high schools to city parks departments managing thirty properties, plus the NFL, MLB, and the PGA of America.

How Perry Weather Works for Sports Fields
Perry Weather lets you add your organization’s weather policies such as lightning distance and your custom instructions on where to shelter when lightning closes in.
And every field lives on one dashboard, so you see active delays across multiple campuses or fields at once instead of needing to calling around.
Keep Everyone on The Same Page, the Moment Lightning Strikes
Notifications to staff and coaches
Push notifications and texts carry the specific instructions, routed by role through user groups. Everyone learns about the delay at the same moment.

Notifying Spectators and Athletes
Mobile alerts don’t reach spectators, officials, or athletes you have no contact info for. Perry Weather’s outdoor warning system triggers sirens, strobes, and custom text-to-speech PA messages automatically letting everyone know where to take shelter.
Control how long the lightning siren sounds, how often it repeats, and what the all-clear signal is. Strobes stay visible from roughly 1,500 feet for the full delay. Hardware is solar powered and cellular connected, so it works through the outage the storm just caused.
Keep your team informed throughout the duration of the delay
A lightning delay countdown timer appears in the app, on the dashboard, and on public-facing widgets you can embed the timer on your website and share access as a QR code.
Automatic all-clear
The timer resets with each new strike and signals all-clear at zero. Nobody has to remember to restart a stopwatch, which is the most common failure point in manually run programs.

Document Lightning Delays with Policy Activity Reporting
Perry Weather keeps a defensible record of all lightning delays for your organization.
Policy activity reporting shows total hours in lightning delay, when each one started and ended, which strikes triggered it, and which sirens fired at which locations. Pull any date range, export it, or schedule recurring reports.
When the insurance review comes or a parent complains, the answer already exists. Timestamped, venue-specific, exportable. Nobody reconstructs it from memory.
That’s the piece an app can’t give you and a siren box was never built to.

Lightning Detection System Built For Sports
In summary, its best to evaluate lightning detection systems as a way to make the same correct call every time, reach everyone who needs to hear it, and prove afterward that you did.
Storms will interrupt your season. That part isn’t negotiable. What you’re buying is whether the response is consistent, whether it covers the whole facility, and whether the record exists when someone asks.
See how Perry Weather works for your fields →
Frequently Asked Questions
How far away can lightning strike from a storm?
Strikes ten or more miles from the parent cell are documented. Clear skies overhead aren’t evidence of safety, which is why policies use a radius instead of visual judgment. (Calculate lightning distance.)
What is the NCAA lightning policy?
Suspend when lightning is detected within eight miles, resume no sooner than thirty minutes after the last strike inside that radius. Many state associations use ten miles instead.
How long do you wait after lightning to resume play?
Thirty minutes from the most recent qualifying strike, with the clock restarting on each new one. Automated timers handle this reliably. Manual timekeeping is where programs break down.
How do lightning detection systems work?
Ground sensors detect the electromagnetic pulse of a discharge. Networked systems compare arrival times across sensors to triangulate exact location. Single-sensor units estimate from signal strength, which is far less precise. (Full breakdown here.)
Do they work without internet?
Depends on the design. Wi-Fi-dependent systems fail exactly when weather disrupts the network. Cellular and solar-powered hardware keeps running through outages.
How accurate is lightning detection?
Varies widely by network. The NLDN locates strikes within roughly 84 meters at about 95% type accuracy. Consumer-app networks carry wider error, and single sensors are less precise still. (How Perry Weather detects lightning.)
Is a weather app enough for a sports field?
For an individual, sure. For an organization responsible for athletes and spectators, no. The data is less accurate, it can’t enforce your policy, and it alerts one phone.