Portable Anemometer Digital Wind Speed Meter - App Connectivity
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Find Out if you Have the Wind, Before you Buy the Turbine.
Everyone thinks their place is windy. Standing on a ridge with your hat coming off feels like proof. It isn't — a turbine runs on the average across a week, not the gust that got your attention, and the difference between those two numbers is what decides how well a turbine performs for you.
This is a cup anemometer that talks to your phone. Peg it where the turbine would go, leave it, and read the actual numbers: current, maximum, minimum and average wind speed, logged to an app so you have a record instead of an impression.
It is also a pocket weather station — barometric pressure, altitude, temperature, humidity, dew point and wind chill. Useful for knowing what is coming at a remote camp, and for working out why the turbine had a quiet week.
What it will Not Do: it will not tell you which turbine to buy, and one afternoon of readings proves nothing. Wind varies by season. Leave it running across a few weeks in different conditions before you make a decision on the strength of it.
What it Solves
- Size the Turbine to the Site: check your measured average against the cut-in speed listed in the turbine's specification table, so you choose the right model first time.
- Pick the Right Spot on the Block: move it around over a few days. Ten metres and a bit of height often separate a good position from a sheltered one, and the shed roof is rarely the answer.
- Work Out a Quiet Week: when output drops, the first question is always whether it was the wind or the gear. Logged data answers it without pulling anything apart.
- Call the Weather at Camp: a falling barometer and a shifting wind give you an hour or two of warning to get the awning down.
- Drones & Spraying: check the wind before you put a drone up or spray a paddock.
Key Features
- Omnidirectional Cup Head: registers wind from any angle, so it does not need aiming into the breeze like a fan-style meter.
- Reads 0.7 to 42 m/s: that is 2.5 to 151 km/h, or 1.4 to 81.6 knots.
- Current, Max, Min & Average: the average is the number that matters for siting a turbine.
- Bluetooth to your Phone: live readings and logging through the app, so you keep a record rather than a memory.
- Six More Measurements: atmospheric pressure, altitude, temperature, humidity, dew point and wind chill.
- Backlit LCD: readable at dusk without getting the phone out.
- 150 Grams with Batteries in: light enough to live in a pack or a glovebox permanently.
- Runs on 2 x AAA: standard cells, with a low battery indicator and auto or manual shutdown.
What Else you'll Need
Once you know what your site does, these are the parts that go with a turbine:
- A Turbine Matched to your Wind: the vertical axis wind turbine range lists a cut-in speed on every spec table. Compare it against the average you measured and pick accordingly.
- A Hybrid Controller: a turbine cannot charge a battery bank on its own. The wind and solar hybrid controllers handle the wild AC coming down the pole and give the turbine somewhere to dump surplus.
- Breakers, Bus Bars & Cable: every input and output wants a breaker or isolator on it, so you can safely shut down and isolate the turbine before you touch anything. The electrical supplies range covers it.
Q & A
How Long Should I Leave it Running Before I Trust the Numbers?
Longer than feels necessary. Wind is seasonal, and a single still week or one windy afternoon will both mislead you. Take readings across several weeks and in different conditions. If you are deciding on a purchase worth thousands, a month of data is cheap.
Where Should I Put it to Get a Useful Reading?
As close as you can to where the turbine head would actually sit — same spot, same height if you can manage it. Wind speed changes a lot with height and with anything upwind of it. A reading taken at head height next to a shed will not match a turbine on a pole in the open.
Will it Tell Me How Much Power a Turbine Would Make?
No, and be wary of anything that claims it will. It gives you wind speed. You then compare that against the power curve and cut-in speed on the turbine's own specification table. Those two numbers together give you a realistic idea; the anemometer alone does not.
Does it Need the Phone to Work?
No. It reads on its own backlit LCD. The Bluetooth app adds logging and history, which is the part that makes it useful for siting a turbine rather than just checking the breeze.
Is it Waterproof?
Not specified by supplier. No IP rating is given, so treat it as a shower-and-retrieve instrument rather than something to leave pegged out through a storm.
What is the Accuracy?
Temperature is stated at ±2°C. A wind speed accuracy figure is not specified by supplier. For siting a turbine that is generally fine, because you are looking at averages and trends rather than a certified measurement.
Specs
| Device Type | Omnidirectional Cup Anemometer & Portable Weather Station |
| Wind Speed Range | 0.7 to 42 m/s |
| Wind Speed Range (km/h) | 2.5 to 151 km/h |
| Wind Speed Range (Knots) | 1.4 to 81.6 Knots |
| Wind Readings | Current, Maximum, Minimum & Average |
| Wind Speed Accuracy | Not Specified by Supplier |
| Other Measurements | Atmospheric pressure (hPa/mbar), altitude (metres), temperature, humidity, dew point, wind chill |
| Temperature Accuracy | ±2°C |
| Display | Backlit LCD |
| Connectivity | Bluetooth to Smartphone, with App Data Logging |
| Weight | 150 g Including Batteries |
| Power | 2 x 1.5V AAA Batteries |
| Battery Features | Low Battery Indicator, Automatic or Manual Shutdown |
| Dimensions | Not Specified by Supplier |
| Ingress Rating | Not Specified by Supplier |
| Mounting | Not Specified by Supplier — Handheld or Set Down |
Watch Me
No video on this one yet. If you are working out whether a turbine suits your site, these two guides cover what happens after you have the wind readings:
- How to install and start up a wind turbine — the correct sequence, and the two shock hazards worth knowing about first.
- Wind turbine spinning but showing 0W — almost always wiring or setup, and this is where measured wind data earns its keep.
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Wind Turbine FAQs
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- Start with two questions: how much wind your site actually gets, and how much room you have.
- Vertical turbines (the X-300, H1000 and H2000) start turning at 2 to 2.5 m/s and take wind from any direction, so they keep working where the wind swirls and shifts — around buildings, trees and rooflines. They run from 300 W up to 2000 W.
- Horizontal turbines (M-400, M-600, M-800, and the L1, L2 and G series) want cleaner, steadier wind and a clear run at it. In clean, steady wind a horizontal of the same rating is usually the better harvester, and they scale further — 400 W up to 5000 W.
- Match the turbine to your battery bank, not to the biggest number. 12 V suits a camper, 4WD or tinnie; 24 V a van, cabin or boat; 48 V a shed or remote block.
- The largest models run at mains voltage, and the L2-3000, G-3000 and G-5000 are ground-mount only — they need a 10–15 m mast and are not rooftop units.
- Rated power is measured at 10–14 m/s, depending on the model. What you get at your place depends on your wind, your mast height and the season — not on a number on our website.
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- No. Wind turbines generate "wild" 3-phase AC power that changes voltage constantly with the wind speed.
- Connecting it directly to a battery or a standard solar inverter will destroy your equipment.
- You must wire the turbine into a dedicated wind charge controller (pure-wind or wind-solar hybrid) with a dump-load resistor.
- The controller converts the power to stable DC to charge your batteries safely.
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Match the turbine and its controller to the voltage of your existing battery bank:
- 12 V: compact mobile setups — caravans, 4WDs and camper trailers.
- 24 V: medium setups — off-grid sheds, cabins and motorhomes.
- 48 V: most of this range, and the sensible choice for a full off-grid system. Higher voltage means less current in the cable, so less loss over a long run and lighter cable.
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- When your battery bank is fully charged it stops accepting power.
- If a storm hits at night with the batteries full, a turbine with nowhere to send its power will free-spin out of control and can physically fly apart.
- The controller prevents that by diverting the excess into the dump load resistor, which burns it off safely as heat and acts as an electronic brake to slow the turbine down.
- Yes, you need one.
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- Usually quieter, but not silent — no turbine is.
- Why a Horizontal is Louder: its blade tips travel several times faster than the wind, and blade noise climbs steeply with tip speed. The whoosh rises and falls as each blade comes round — a rhythmic swish that carries through wind noise more than a steady hiss does.
- Why a Vertical is Usually Quieter: its blades turn more slowly, so there is less of that whoosh.
- What we won't Tell you: that it's silent. Every turbine gets louder as the wind picks up. The wind often covers much of it in a strong blow, but a close neighbour can still hear one in light to moderate wind.
- The manufacturer publishes no noise figure for the turbines themselves (the "65 dB or less" on some Specs tabs is the controller's), so we don't quote one.
- On a building, use vibration isolators — a turbine bolted to a structure carries its sound into the rooms — and check your council's rules on noise, height and placement before you order a mast.
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- It will turn, but turning is not charging. The blades start turning at 2 to 2.5 m/s (about 7 to 9 km/h) — a light breeze.
- Charging starts at the cut-in speed: 3 m/s (about 11 km/h) on every model except the X-300, which starts and charges from 2 m/s. Output then climbs steeply with wind speed.
- The rated figure is measured much higher — 10 to 14 m/s depending on the model, a 36 to 50 km/h wind, not a normal afternoon. Each product page's spec table gives that model's own numbers.
- A gentle breeze keeps the turbine ticking over; it takes real wind to push real power into your batteries. Every horizontal model has its measured power curve published on its product page — work from that, not from the number in the product name.
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- No — small turbines are built to spin fast. The smaller the rotor, the faster it has to turn to keep its blade tips up with the wind: the M-400's 1.35 m rotor runs at about 800 rpm, the M-600 and M-800 at about 500, the big G-series at 300.
- In the manufacturer's words, the high rpm is a design necessity, not a defect. A slower generator would need a bigger stator and more magnets and copper — heavier and dearer.
- They start turning at 2 to 2.5 m/s and make power right across the wind range — just less when the wind is light. What you get depends on your site and how high you mount it.
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- Yes — connect the turbine to a battery bank first, through a dedicated charge controller.
- Never straight to an inverter. Connecting a wind turbine directly to a standard inverter will damage the equipment or cause the system to fail.
The Correct Order:
- 1. Wind Turbine — generates wild, fluctuating 3-phase AC as the wind changes.
- 2. Hybrid or Wind Charge Controller — converts it to steady DC, and protects the turbine from over-speeding with an electronic brake.
- 3. Battery Bank (12 V, 24 V or 48 V) — absorbs the gusts and provides a steady source of energy.
- 4. Off-Grid Inverter — connects to the battery, converting stored DC into AC for your appliances.
Why you Cannot Skip the Battery:
- Unstable Voltage: wind changes second by second. Without a battery to smooth it out, a direct-connected inverter would constantly cut out.
- Turbine Damage: when a battery is full or disconnected, the turbine loses its load. Without that resistance the blades can spin out of control in high wind and destroy the unit. The controller uses the battery connection to dump excess power and slow it down.
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- This turbine generates 3-phase AC power and cannot be connected directly to a battery, a solar controller or a home inverter.
- It must run through a dedicated wind charge controller (pure-wind or wind-solar hybrid) with a dump-load resistor. The dump load stops the turbine over-speeding and destroying itself in high winds once your batteries are full.
- Installation and commissioning must be carried out by a suitably qualified and licensed electrician.
- Cable, breakers, isolators and all protective devices are selected to suit your site and are the electrician's call, not ours.
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It is almost always one of three installation issues. Check them in order.
Quick Checks — Tick as You Go
- Is the Meter Set to AC Volts (V~)?
- Does it Spin Freely Once Disconnected from the Controller?
- Is the Cable from the Mast Heavy Enough for the Run?
1. The Multimeter is Set to DC — The Most Common Mistake.
- Measuring the three turbine wires with the meter set to DC volts gives a false reading near zero.
- Wind turbines generate 3-phase AC directly from the stator. Switch the meter to AC volts (V~).
2. The Turbine is Stalling Because of a Short.
- The blades turn heavily and slowly, or lock up: if any of the three AC output wires touch each other, or the controller's braking diodes have short-circuited, it acts as a magnetic brake — the turbine can never spin fast enough to build voltage.
- Disconnect the turbine from the controller. If it frees up and spins much faster, the problem is a short in the wiring or a faulty controller.
3. Voltage Drop from Thin Cable.
- Thin solar or automotive cable over 20 metres or more loses the power as heat before it reaches the controller.
- Use heavy cable between the mast and the controller on long runs — minimum 8 AWG, ideally 6 AWG. Final sizing is your electrician's call.
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- The number in the name is a peak rating, not a promise.
- A turbine's rated output is measured at a specific wind speed — 10 to 14 m/s depending on the model, which is about 36 to 50 km/h — and most sites see far less than that most of the time.
- Your display shows what the wind is delivering right now, so it will sit well below the rated figure and move second by second as the wind changes. That is physics, not a fault.
- As an example, the L2-2500 is rated 2,500 W at 11 m/s. On a decent steady coastal breeze of 7 m/s the manufacturer's own curve gives about 813 W. That is why we publish the full power curve on every horizontal turbine's product page.
- Where these machines earn their keep is time: they keep charging through the night and through the weather that shuts solar down.
- If the display shows 0 W while the blades are spinning, that is a different problem — see the 0 W question.
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- Not necessarily — this is one of the most common questions we get, and it is rarely a faulty unit.
- It is usually a quick settings check, or (on a first-time install) how the wiring and start-up sequence were done.
- See our full Wind Turbine 0W Troubleshooting Guide for the complete walkthrough, or the Set-Up Guide — or contact us and we will help you sort it out.
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- Wire your bus bar and breakers before and after the controller, then power up in the right order. Getting the sequence right prevents almost all wiring issues, including the common "spinning but 0 W" problem.
- Fit a breaker before the controller (turbine/solar side) and after it (battery side), landing on a DC bus bar.
- Keep the turbine-to-controller cable run to 2–10 metres to limit voltage drop.
- Power up in this order: battery breaker first, then solar, then wind turbine last.
- See our full How to Install & Start Up guide for the complete step-by-step walkthrough and wiring diagram.







