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โก Feel the pulse of innovation with every vibration!
The HiLetgo 5pcs Piezoelectric Sensor Kit features compact, ceramic-based vibration sensors that convert mechanical shocks into analog electrical signals. Operating efficiently at 3.3V or 5V with under 1mA current, these modules are perfect for Arduino DIY projects requiring precise vibration detection, such as electronic drums or interactive devices. Each sensor measures 30mm by 23mm and includes easy screw connectors for quick integration.
| Asin | B07Q9J5C4G |
| Brand Name | HiLetgo |
| Centerline Length | 30 Millimeters |
| Color | Blue |
| Connector Type | Screw |
| Customer Reviews | 4.3 4.3 out of 5 stars (67) 4.3 out of 5 stars |
| Item Dimensions W X H | 30W x 23H millimeters |
| Manufacturer | HiLetgo |
| Material Type | Ceramic |
| Model | 3-01-1504 |
| Mounting Type | PCB Mount |
| Number Of Contacts | 15 |
| Number Of Items | 5 |
| Number Of Poles | 1 |
| Number Of Positions | 5 |
| Part Number | 3-01-1504 |
| Temperature Range | -1E+1 Degrees Celsius |
| Upper Temperature Rating | 70 Degrees Celsius |
| Voltage | 5 Volts |
User
5V Zener protected
This is a 2 wire connection, not three as implied by the board picture/description.The board (+) is not connected.The board a 1M resistor between Signal and Gnd.The Zener has it's Cathode connected to Signal (S) and Anode connected to Gnd
User
You could theoretically build this...but why?
I bought these for a drum light kit I'm building... and I read from the internet that piezos are capable of putting out a lot of voltage in spikes if hit hard enough, up to 90v! That's way more than the 5v that an arduino can handle.This is essentially a Zener diode with a 1Mohm resistor inline, so that if the voltage gets too much, the circuit will shut down instead of frying your stuff. So far they seem to be working well, even though my project has not yet come to fruition.
User
Piezo vibration sensor
A good piezo vibration sensor that returns the intensity. In the video I have this sensor connected to an Arduino UNO with a RGB LED as the vibration indicator. The Arduino repeatedly reads the piezo sensor for a vibration greater than 0. If the vibration is intense enough, the current LED color intensity is altered to match that vibration intensity before moving to the next color. Otherwise the Arduino stays on the same color. I used a pollination wand as the vibration input. Also, connecting the sensor was simple enough.
User
The green connector is too big.
Itโs pretty much impossible to attach the very small piezo wires to that large connector. I ruined one connector trying to tighten it. Cannot tell if the device works.
User
Are you kidding?
Red hot garbage, the piezo sensor might be ok if taped to the side of a big bass drum but it could not be triggered by a vibrating phone. the tiny wires coming off the sensor are very difficult to connect to the terminal block as they are finer than frog hair. I was able to solder some thicker wires and that helped a bit.Overall this product is a fail from my experience.
Trustpilot
2 months ago
3 days ago