Kit di saldatura per esperimento di levitazione magnetica DIY con modulo a bobina, realizzazione di piccoli circuiti elettronici

Prezzo di vendita
$30.51
Prezzo di listino
$43.59
Risparmi
$13.08 (31%)

I prezzi sono comprensivi di IVA e di eventuali dazi doganali.

Modello:Bear 50g with shell
Disponibile in magazzino, spedizione solitamente entro 2-3 giorni lavorativi.

Riepilogo del prodotto

Magnetic Levitation DIY Electronic Small Fabrication Experiment Coil Push-Down modulo is a soldering and rework tool selected for soldering, desoldering, spot welding and scheda repair tasks. È adatto per PCB repair users, makers and electronics assembly workflows che hanno bisogno di hardware elettronico pratico per lavorare in modo affidabile sui propri progetti.

Ideale per

  • soldering, desoldering, spot welding and scheda repair tasks
  • PCB assembly, battery pack work and repair bench setups
  • test elettronici, riparazione, prototipazione e flussi di lavoro maker

FAQ

Per chi è questo prodotto? È destinato a PCB repair users, makers and electronics assembly workflows.

Cosa devo controllare prima di acquistare? Consulta in questa pagina le opzioni del prodotto, le specifiche, gli accessori inclusi e i dettagli di compatibilità.

Product name: push-down maglev DIY welding Kit

Product model: TJ-56-254

Working alimentatore: DC12V2A

Power: 2~5W

Suspended weight: 50g /150

Suspension distance: Not more than 2cm

PCB size: 85 * 85mm

Product Features:

1. The circuit is simple, reliable and practical;

2. This Kit is equipped with acrylic shell, which is not only beautiful, but also can effectively protect circuit components, which is convenient for demonstration and play.

3. This DIY Kit is designed for scientific research and experiment and is not applicable to other purposes!

Product Description:

Magnetic levitation is mainly composed of coil, magnet, Hall sensor and drive circuit. When the magnet is close to the Hall sensor under the coil, the Hall sensor will output an analog quantity when sensing the magnetic field change to the amplification circuit for amplification, and then conduct waveform width modulation through this value. When the magnet and suspended objects fall away from the sensor due to gravity, the sensor output value will increase the voltage duty ratio on the coil and the coil magnetic force, Thus, the magnet and suspended object are pulled. On the contrary, when the distance from the sensor is very close, the sensor output value reduces the coil voltage duty ratio, and the coil magnetic force is weak. The magnet and suspended object depend on their own weight to keep away from the sensor, and the magnetic object is suspended by continuously adjusting the coil voltage duty ratio.

Usage Method:

Placing suspended solids and precautions

1. After the equipment is powered on, the power indicator on the PCB scheda will be lit. At this time, hold the float from the bottom of the ring to the bottom of the coil slowly. At about 5cm, you will feel the force that the coil will absorb the float at this time. At this time, hold the float with one hand to feel the upward force, and use the other hand to adjust the sliding rheostat on the PCB scheda. When you feel that the two forces can almost balance, stop adjusting the sliding rheostat, Then slowly loosen the float to keep it stable. In this way, the float can be successfully floated. The sliding rheostat reduces the magnetic force clockwise and increases the magnetic force counterclockwise. The magnetic force cannot be too large or too small. The rotating position of the sliding rheostat can refer to the above picture.

2. The float must be powered off for cooling if it fails to be placed for many times (up to 5 times), otherwise it is easy to damage the element

3. Do not float the float on the Kit for a long time (up to 5 minutes), which may cause equipment damage.

Circuit Diagram:

Package Included:
Finished Product Display:

Potrebbero interessarti anche