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Motor de Bobina de Voz Vcm
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motor de bobina de voz linear
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Motores de Vibração
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Atuador de bobina de voz linear
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Atuador de Motor Linear
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Inteiramente atuador da bobina de voz da casa
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Motor oco do núcleo
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Atuador de alto desempenho
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Modulos de motor
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servo motor linear
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controlador do servo motor
25V High Frequency Vibration Motor For Endoscopic Robots
| Lugar de origem | porcelana, Suzhou |
|---|---|
| Marca | SUPT MOTION |
| Certificação | CE, 3C,ISO9001 |
| Número do modelo | Série de VCAZ |
| Quantidade de ordem mínima | 1 unidade |
| Preço | $112-$230 |
| Detalhes da embalagem | Embalagens personalizadas, etc. |
| Tempo de entrega | 1-5 peças, 5 dias. > 20 peças, a negociar |
| Termos de pagamento | T/T |
| Habilidade da fonte | a ser negociado |
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x| Tipo de motor | Motores de Vibração | Força de pico | 20.5N |
|---|---|---|---|
| Tamanho | 10 mm x 10 mm x 3 mm | Porta | Xangai |
| Specifications modelo | VCZA0020-0040-00A | Certificações | Marcação, 3C, ISO9001 |
| Corrente inicial | 30Ma | Tensão nominal | 25.6V |
| Tensão | 3V | Amplitude de vibração | 0,5 mm |
Product Description:
The vibration motor is manufactured from high-strength, stable materials. The flexible voice coil motor features short response times, high vibration frequencies, and excellent consistency and stability. The voice coil motor-driven flexible vibrating feeder employs specialized drive control technology to achieve part forward/backward movement, flipping, dispersion, and aggregation. The flexible feeding mechanism integrates an adjustable backlight source, enabling vibration-based feeding, automated visual system control, and automated machine-picking system operation.
In endoscopic robots, the vibration motor primarily serves as a haptic feedback device, translating virtual and digital information into perceptible physical sensations. When the physician operates the handle, they feel vibrations of varying intensity or patterns transmitted through the handle (e.g., stronger or higher-frequency vibrations as proximity to hazardous areas increases). This provides proactive safety protection, effectively preventing accidental tissue damage.
Microforce sensors integrated at the robotic instrument tip measure the force between the instrument and tissue. Upon detecting contact, the system maps the magnitude of the contact force to the intensity of vibration from the handle's vibration motor. When the instrument tip lightly touches tissue, the handle produces subtle vibrations; when pressing firmly against tissue, vibrations intensify. This partially restores “tactile feedback,” helping surgeons perform delicate procedures with greater precision—such as tissue dissection or suture knotting—by enabling finer force control.
The vibration motor can simulate different textures. As the instrument scans across varied areas, the physician perceives distinct vibration patterns through the handle, aiding in tissue characterization. Though still in the research phase, this technology holds significant potential.
Vibration motors are also the preferred choice for tactile feedback systems in modern endoscopic robotic surgery, particularly suited for scenarios requiring high-frequency, precise vibration cues.
Features:
Type: Vibration motors, high-response vibration motors, miniature vibration actuators, vibration voice coil motors
Flexible vibration voice coil motor, short response time, high vibration frequency, good consistency and stability.
Precision linear control: sub-micron resolution, suitable for high-precision vision positioning.
Total storke:3mm
Product Parameters:
| Model Number | VCAZ0020-0040-00A | |
| Winding constant | VALUE | UNIT |
| DC resistance | 10.2 | Ω |
| Voltage @ Fp | 25.9 | V |
| Current @ Fp | 2.6 | A |
| Inductance | 1.3 | mH |
| Peak force | 20.5 | N |
| Con force | 8.9 | N |
| Actuator constant | 2.55 | Ka |
| Power @ Fp | 65.3 | W |
| Total stroke | 3 | mm |
| Max winding temp | 150 | ºC |
| Actuator weight | 110 | g |
| Model Number | VCAZ0010-0020-00A | |||
| Coil parameters | Tolerance | Symbol | Value | Unit |
| DCR | ±10% | R | 9.5 | Ω |
| Peak Voltage | standard value | Vp | 14.8 | V |
| Maximum current | standard value | Ip | 1.6 | A |
| Force constant | ±7.5% | KF | 2.7 | N/A |
| Back EMF constant | standard value | KD | 2.7 | V/M/Sec |
| Inductance | ±30% | L | 0.37 | mH |
| Actuator paramters | Symbol | Value | Unit | |
| Peak force | Fp | 4.2 | N | |
| Continuous stall force | Fc | 2.2 | N | |
| Actuator coonstant | Ka | 0.87 | N//W | |
| Electrical time constant | Te | 0.04 | milli-sec | |
| Pmax | Pp | 24 | W | |
| Stroke | S | 1.5 | mm | |
| Clearance of each side of coil | CL | 0.8 | mm | |
| Thermal resistance | Oth | 20 | ℃/W | |
| Maximum coi temp allowed | Tmax | 150 | ℃ | |
| Weight of coil | WTc | 13 | g | |
| Weight of magnet steel | WTE | 56 | g | |
| Weight of Actuator | WTa | 69 | g | |
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Applications:
Vibration motors, as devices that convert electrical energy into mechanical vibration, find applications across multiple critical sectors including industrial, consumer electronics, medical, and automotive fields.
Traditionally and fundamentally, vibration motors are primarily used for material handling and screening.
1. Vibratory Feeding and Conveying
Applications: In food, chemical, pharmaceutical, and packaging industries, vibratory motors uniformly and directionally transport granular or powdered materials from storage bins to subsequent processes.
Motor Type: High-power vibrators, typically adjusting excitation force by modifying eccentric weights.
2. Vibratory Screening and Sorting
Applications: In mining, metallurgy, building materials, and grain processing industries, vibrating screens efficiently separate, sift, and grade materials of varying sizes and densities.
Motor Type: Multiple heavy-duty vibrating motors operating synchronously, mounted on both sides or the bottom of screening equipment.
3. Vibratory Compaction and Consolidation
Applications: In construction engineering, used for compacting soil and asphalt pavement; In foundries, vibrating sand boxes to achieve uniform and dense distribution of molding sand.
Motor Type: High-frequency, high-amplitude motors specifically designed for plate compactors and vibratory rods.
4. Equipment Self-Cleaning
Applications: Materials adhering to silo or hopper walls are prone to bridging and sticking. Installing vibrating motors enables periodic vibration to prevent material buildup and ensure smooth flow.
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